92HD206XX5PRGXYYX [IDT]
8-CHANNEL HIGH DEFINITION AUDIO CODEC; 8声道高清晰音频编码解码器![92HD206XX5PRGXYYX](http://pdffile.icpdf.com/pdf1/p00118/img/icpdf/92HD206_646093_icpdf.jpg)
型号: | 92HD206XX5PRGXYYX |
厂家: | ![]() |
描述: | 8-CHANNEL HIGH DEFINITION AUDIO CODEC |
文件: | 总176页 (文件大小:1429K) |
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DATASHEET
8-CHANNEL HIGH DEFINITION AUDIO CODEC
92HD206
Description
Software Support
•
SKPI (Kernel Processing Interface)
The 92HD206 is a Theater Quality 8-channel audio
CODEC that enables systems with 7.1 audio or 5.1 audio
playing simultaneously with VoIP or another stereo audio
stream. IDT's proprietary SD technology provides high
fidelity, with a DAC SNR of 95dB.
•
Enables plug-ins that can operate globally on all audio
streams of the system
•
12 band parametric equalizer SKPI plug-in
•
Constant, system-level effects tuned to optimize a
particular platform can be combined with user-mode
“presets” tailored for specific acoustical environments
and applications
Features
•
•
•
High performance HD Audio CODEC provides
•
System-level effects automatically disabled when
external connections made
Theater Quality Audio
Targeted for designs meeting Premium Windows
Logo Program
High performance SD technology
•
Dynamics Processing SKPI plug-in
•
Enables improved voice articulation
Compressor/limiter allows higher average noise level
without resonances
•
•
95dB DAC SNR
90dB ADC SNR
•
•
•
Dolby PC Entertainment Experience Logo Program
•
•
Dolby Home Theater™
Dolby Sound Room™
•
Four stereo DACs and two stereo ADCs
•
Supports 7.1 Audio
•
Supports 5.1 Audio with simultaneous Real Time
Communication (RTC) channel such as VoIP or separate
stereo audio stream
Dolby Technologies
•
•
•
Dolby Headphone™, Dolby Virtual Speaker™
Dolby ProLogic II™, Dolby ProLogic IIx™
Dolby Digital Live™
•
•
24-bit resolution with up to 192 KHz sample rates
Analog Stereo Microphone
•
•
•
Intel Audio Studio™ from Sonic Focus
•
Microphone Boost 0, 10, 20, 30, 40dB
Maxx Player from Waves
™
•
Six adjustable Vref outputs for microphone bias
Microphone Beam Forming, Acoustic Echo
Cancellation, & Noise Suppression from Knowles
•
•
•
•
Integrated Headphone Amps (3)
S/PDIF In and Out
™
Volume Up/Down Control
Jack Insertion Detect and Impedance Sensing
supports Jack Retasking and Universal Jacks
Digital PC Beep to all outputs
™
•
•
•
+5 V Analog Power Supply
Environmental 48-pin LQFP Package
IDT™ 8-CHANNEL HIGH DEFINITION AUDIO CODEC
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8-CHANNEL HIGH DEFINITION AUDIO CODEC
PCAUDIO
Table of Contents
1. DESCRIPTION .........................................................................................................................12
2. CHARACTERISTICS ...............................................................................................................13
2.1. Audio Fidelity ................................................................................................................................... 13
2.2. Electrical Specifications ................................................................................................................... 13
2.3. 92HD206 5 V Analog Performance Characteristics ........................................................................ 14
3. DETAILED DESCRIPTION ......................................................................................................18
3.1. Universal Jacks™ ............................................................................................................................ 18
3.2. SPDIF Input ..................................................................................................................................... 19
3.3. SPDIF Output .................................................................................................................................. 19
3.4. Headphone Drivers (Restrictions) ................................................................................................... 20
3.5. Device IDs ....................................................................................................................................... 20
4. FUNCTIONAL BLOCK DIAGRAMS ........................................................................................21
4.1. 92HD206 ......................................................................................................................................... 21
5. WIDGET DIAGRAM .................................................................................................................22
5.1. Pin Configuration Default Register Settings .................................................................................... 23
6. WIDGET INFORMATION FOR THE 92HD206 FAMILY ........................................................24
6.1. Root Node (NID = 0x00) .................................................................................................................. 26
6.2. AFG Node (NID = 0x01) .................................................................................................................. 27
6.3. DAC0 Node (NID = 0x02) ................................................................................................................ 44
6.4. DAC1 Node (NID = 0x03) ................................................................................................................ 48
6.5. DAC2 Node (NID = 0x04) ................................................................................................................ 53
6.6. DAC3 Node (NID = 0x05) ................................................................................................................ 58
6.7. ADC0 Node (NID = 0x07) ................................................................................................................ 63
6.8. ADC1 Node (NID = 0x08) ................................................................................................................ 68
6.9. SPDIFOut Node (NID = 0x1E) ......................................................................................................... 73
6.10. SPDIFIn Node (NID = 0x20) .......................................................................................................... 78
6.11. PortA Node (NID = 0x0A) .............................................................................................................. 86
6.12. PortB Node (NID = 0x0B) .............................................................................................................. 92
6.13. PortC Node (NID = 0x0C) .............................................................................................................. 98
6.14. PortD Node (NID = 0x0D) ............................................................................................................ 103
6.15. PortE Node (NID = 0x0E) ............................................................................................................ 109
6.16. PortF Node (NID = 0x0F) ............................................................................................................ 114
6.17. PortG Node (NID = 0x10) ............................................................................................................ 119
6.18. PortH Node (NID = 0x11) ............................................................................................................ 124
6.19. DigOut0 Node (NID = 0x21) ........................................................................................................ 129
6.20. InPort0Mux Node (NID = 0x15) ................................................................................................... 134
6.21. InPort1Mux Node (NID = 0x16) ................................................................................................... 139
6.22. PCBEEP Node (NID = 0x23) ....................................................................................................... 144
6.23. CD Node (NID = 0x12) ................................................................................................................ 146
6.24. VolumeKnob Node (NID = 0x24) ................................................................................................. 149
6.25. InPort0Vol Node (NID = 0x18) ..................................................................................................... 153
6.26. InPort1Vol Node (NID = 0x19) ..................................................................................................... 156
6.27. ADC0Mux Node (NID = 0x1B) ..................................................................................................... 158
6.28. ADC1Mux Node (NID = 0x1C) .................................................................................................... 162
7. ORDERING INFORMATION ..................................................................................................167
7.1. 92HD206 Family Options and Part Order Numbers ...................................................................... 167
8. PIN INFORMATION ...............................................................................................................168
8.1. 92HD206 48-Pin LQFP Diagram ................................................................................................... 168
8.2. Pin Table for 92HD206 in 48 Pin LQFP ......................................................................................... 168
9. PACKAGE OUTLINE AND PACKAGE DIMENSIONS .........................................................171
9.1. 48-Pin LQFP .................................................................................................................................. 171
10. SOLDER REFLOW PROFILE .............................................................................................172
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10.1. Standard Reflow Profile Data ...................................................................................................... 172
10.2. Pb Free Process - Package Classification Reflow Temperatures ............................................... 173
11. REVISION HISTORY ...........................................................................................................174
List of Figures
Figure 1. 92HD206 Functional Block Diagram ............................................................................................. 21
Figure 2. 92HD206 Widget Diagram ............................................................................................................. 22
Figure 3. 48-Pin LQFP Pinout .................................................................................................................... 168
Figure 4. 48-Pin LQFP Package Outline and Package Dimensions ........................................................... 171
Figure 5. Solder Reflow Profile ................................................................................................................... 172
List of Tables
Table 1. Impedance Sense Levels ................................................................................................................ 19
Table 2. CODEC IDs ..................................................................................................................................... 20
Table 3. Pin Configuration Default Settings ................................................................................................... 23
Table 4. High Definition Audio Widget ........................................................................................................... 24
Table 5. Root ID Command Verb Format ...................................................................................................... 26
Table 6. Root ID Command Response Format ............................................................................................. 26
Table 7. Root RevID Command Verb Format ................................................................................................ 26
Table 8. Root RevID Command Response Format ....................................................................................... 26
Table 9. Root NodeInfo Command Verb Format ........................................................................................... 27
Table 10. Root NodeInfo Command Response Format ................................................................................ 27
Table 11. AFG Reset Command Verb Format .............................................................................................. 27
Table 12. AFG Reset Command Response Format ...................................................................................... 27
Table 13. AFG NodeInfo Command Verb Format ......................................................................................... 28
Table 14. AFG NodeInfo Command Response Format ................................................................................. 28
Table 15. AFG Type Command Verb Format ................................................................................................ 28
Table 16. AFG Type Command Response Format ....................................................................................... 28
Table 17. AFG Cap Command Verb Format ................................................................................................. 28
Table 18. AFG Cap Command Response Format ......................................................................................... 29
Table 19. AFG PCMCap Command Verb Format ......................................................................................... 29
Table 20. AFG PCMCap Command Response Format ................................................................................. 29
Table 21. AFG Stream Command Verb Format ............................................................................................ 30
Table 22. AFG Stream Command Response Format .................................................................................... 30
Table 23. AFG InAmpCap Command Verb Format ....................................................................................... 31
Table 24. AFG InAmpCap Command Response Format .............................................................................. 31
Table 25. AFG SupPwrState Command Verb Format ................................................................................... 31
Table 26. AFG SupPwrState Command Response Format .......................................................................... 31
Table 27. AFG GPIOCnt Command Verb Format ......................................................................................... 32
Table 28. AFG GPIOCnt Command Response Format ................................................................................. 32
Table 29. AFG OutAmpCap Command Verb Format .................................................................................... 32
Table 30. AFG OutAmpCap Command Response Format ........................................................................... 33
Table 31. AFG PwrState Command Verb Format ......................................................................................... 33
Table 32. AFG PwrState Command Response Format ................................................................................. 33
Table 33. AFG UnsolResp Command Verb Format ...................................................................................... 34
Table 34. AFG UnsolResp Command Response Format .............................................................................. 34
Table 35. AFG GPIO Command Verb Format ............................................................................................... 34
Table 36. AFG GPIO Command Response Format ...................................................................................... 34
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Table 37. AFG GPIOEn Command Verb Format .......................................................................................... 35
Table 38. AFG GPIOEn Command Response Format .................................................................................. 35
Table 39. AFG GPIODir Command Verb Format .......................................................................................... 36
Table 40. AFG GPIODir Command Response Format .................................................................................. 36
Table 41. AFG GPIOWakeEn Command Verb Format ................................................................................. 36
Table 42. AFG GPIOWakeEn Command Response Format ......................................................................... 36
Table 43. AFG GPIOUnsol Command Verb Format ...................................................................................... 37
Table 44. AFG GPIOUnsol Command Response Format ............................................................................. 37
Table 45. AFG GPIOSticky Command Verb Format ..................................................................................... 38
Table 46. AFG GPIOSticky Command Response Format ............................................................................. 38
Table 47. AFG SubID Command Verb Format .............................................................................................. 39
Table 48. AFG SubID Command Response Format ..................................................................................... 39
Table 49. AFG TCKT Command Verb Format .............................................................................................. 40
Table 50. AFG TCKT Command Response Format ...................................................................................... 40
Table 51. AFG Sply Command Verb Format ................................................................................................. 40
Table 52. AFG Sply Command Response Format ........................................................................................ 40
Table 53. AFG DACMode Command Verb Format ....................................................................................... 41
Table 54. AFG DACMode Command Response Format ............................................................................... 41
Table 55. AFG GPIOPlrty Command Verb Format ........................................................................................ 41
Table 56. AFG GPIOPlrty Command Response Format ............................................................................... 41
Table 57. AFG GPIODrive Command Verb Format ...................................................................................... 42
Table 58. AFG GPIODrive Command Response Format .............................................................................. 43
Table 59. AFG DMic Command Verb Format ................................................................................................ 43
Table 60. AFG DMic Command Response Format ....................................................................................... 43
Table 61. DAC0 Cnvtr Command Verb Format ............................................................................................. 44
Table 62. DAC0 Cnvtr Command Response Format .................................................................................... 44
Table 63. DAC0 OutAmpRight Command Verb Format ................................................................................ 45
Table 64. DAC0 OutAmpRight Command Response Format ....................................................................... 45
Table 65. DAC0 OutAmpLeft Command Verb Format .................................................................................. 45
Table 66. DAC0 OutAmpLeft Command Response Format .......................................................................... 46
Table 67. DAC0 WCap Command Verb Format ............................................................................................ 46
Table 68. DAC0 WCap Command Response Format ................................................................................... 46
Table 69. DAC0 PwrState Command Verb Format ....................................................................................... 47
Table 70. DAC0 PwrState Command Response Format .............................................................................. 47
Table 71. DAC0 CnvtrID Command Verb Format ......................................................................................... 47
Table 72. DAC0 CnvtrID Command Response Format ................................................................................. 48
Table 73. DAC0 LR Command Verb Format ................................................................................................. 48
Table 74. DAC0 LR Command Response Format ........................................................................................ 48
Table 75. DAC1 Cnvtr Command Verb Format ............................................................................................. 48
Table 76. DAC1 Cnvtr Command Response Format .................................................................................... 49
Table 77. DAC1 OutAmpRight Command Verb Format ................................................................................ 50
Table 78. DAC1 OutAmpRight Command Response Format ....................................................................... 50
Table 79. DAC1 OutAmpLeft Command Verb Format .................................................................................. 50
Table 80. DAC1 OutAmpLeft Command Response Format .......................................................................... 50
Table 81. DAC1 WCap Command Verb Format ............................................................................................ 50
Table 82. DAC1 WCap Command Response Format ................................................................................... 51
Table 83. DAC1 PwrState Command Verb Format ....................................................................................... 51
Table 84. DAC1 PwrState Command Response Format .............................................................................. 52
Table 85. DAC1 CnvtrID Command Verb Format ......................................................................................... 52
Table 86. DAC1 CnvtrID Command Response Format ................................................................................. 52
Table 87. DAC1 LR Command Verb Format ................................................................................................. 53
Table 88. DAC1 LR Command Response Format ........................................................................................ 53
Table 89. DAC2 Cnvtr Command Verb Format ............................................................................................. 53
Table 90. DAC2 Cnvtr Command Response Format .................................................................................... 53
Table 91. DAC2 OutAmpRight Command Verb Format ................................................................................ 54
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Table 92. DAC2 OutAmpRight Command Response Format ....................................................................... 55
Table 93. DAC2 OutAmpLeft Command Verb Format .................................................................................. 55
Table 94. DAC2 OutAmpLeft Command Response Format .......................................................................... 55
Table 95. DAC2 WCap Command Verb Format ............................................................................................ 55
Table 96. DAC2 WCap Command Response Format ................................................................................... 55
Table 97. DAC2 PwrState Command Verb Format ....................................................................................... 56
Table 98. DAC2 PwrState Command Response Format .............................................................................. 56
Table 99. DAC2 CnvtrID Command Verb Format ......................................................................................... 57
Table 100. DAC2 CnvtrID Command Response Format ............................................................................... 57
Table 101. DAC2 LR Command Verb Format ............................................................................................... 57
Table 102. DAC2 LR Command Response Format ...................................................................................... 58
Table 103. DAC3 Cnvtr Command Verb Format ........................................................................................... 58
Table 104. DAC3 Cnvtr Command Response Format .................................................................................. 58
Table 105. DAC3 OutAmpRight Command Verb Format .............................................................................. 59
Table 106. DAC3 OutAmpRight Command Response Format ..................................................................... 59
Table 107. DAC3 OutAmpLeft Command Verb Format ................................................................................ 60
Table 108. DAC3 OutAmpLeft Command Response Format ........................................................................ 60
Table 109. DAC3 WCap Command Verb Format .......................................................................................... 60
Table 110. DAC3 WCap Command Response Format ................................................................................. 60
Table 111. DAC3 PwrState Command Verb Format ..................................................................................... 61
Table 112. DAC3 PwrState Command Response Format ............................................................................ 61
Table 113. DAC3 CnvtrID Command Verb Format ....................................................................................... 62
Table 114. DAC3 CnvtrID Command Response Format ............................................................................... 62
Table 115. DAC3 LR Command Verb Format ............................................................................................... 62
Table 116. DAC3 LR Command Response Format ...................................................................................... 62
Table 117. ADC0 Cnvtr Command Verb Format ........................................................................................... 63
Table 118. ADC0 Cnvtr Command Response Format .................................................................................. 63
Table 119. ADC0 WCap Command Verb Format .......................................................................................... 64
Table 120. ADC0 WCap Command Response Format ................................................................................. 64
Table 121. ADC0 ConLst Command Verb Format ........................................................................................ 65
Table 122. ADC0 ConLst Command Response Format ................................................................................ 65
Table 123. ADC0 ConLstEntry Command Verb Format ................................................................................ 65
Table 124. ADC0 ConLstEntry Command Response Format ....................................................................... 66
Table 125. ADC0 ProcState Command Verb Format .................................................................................... 66
Table 126. ADC0 ProcState Command Response Format ........................................................................... 66
Table 127. ADC0 PwrState Command Verb Format ..................................................................................... 66
Table 128. ADC0 PwrState Command Response Format ............................................................................ 67
Table 129. ADC0 CnvtrID Command Verb Format ....................................................................................... 67
Table 130. ADC0 CnvtrID Command Response Format ............................................................................... 67
Table 131. ADC1 Cnvtr Command Verb Format ........................................................................................... 68
Table 132. ADC1 Cnvtr Command Response Format .................................................................................. 68
Table 133. ADC1 WCap Command Verb Format .......................................................................................... 69
Table 134. ADC1 WCap Command Response Format ................................................................................. 69
Table 135. ADC1 ConLst Command Verb Format ........................................................................................ 70
Table 136. ADC1 ConLst Command Response Format ................................................................................ 70
Table 137. ADC1 ConLstEntry Command Verb Format ................................................................................ 70
Table 138. ADC1 ConLstEntry Command Response Format ....................................................................... 71
Table 139. ADC1 ProcState Command Verb Format .................................................................................... 71
Table 140. ADC1 ProcState Command Response Format ........................................................................... 71
Table 141. ADC1 PwrState Command Verb Format ..................................................................................... 71
Table 142. ADC1 PwrState Command Response Format ............................................................................ 72
Table 143. ADC1 CnvtrID Command Verb Format ....................................................................................... 72
Table 144. ADC1 CnvtrID Command Response Format ............................................................................... 72
Table 145. SPDIFOut Cnvtr Command Verb Format .................................................................................... 73
Table 146. SPDIFOut Cnvtr Command Response Format ............................................................................ 73
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8-CHANNEL HIGH DEFINITION AUDIO CODEC
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Table 147. SPDIFOut WCap Command Verb Format ................................................................................... 74
Table 148. SPDIFOut WCap Command Response Format .......................................................................... 74
Table 149. SPDIFOut PCM Command Verb Format ..................................................................................... 75
Table 150. SPDIFOut PCM Command Response Format ............................................................................ 75
Table 151. SPDIFOut Stream Command Verb Format ................................................................................. 76
Table 152. SPDIFOut Stream Command Response Format ......................................................................... 76
Table 153. SPDIFOut CnvtrID Command Verb Format ................................................................................. 77
Table 154. SPDIFOut CnvtrID Command Response Format ........................................................................ 77
Table 155. SPDIFOut DigCnvtr Command Verb Format ............................................................................... 77
Table 156. SPDIFOut DigCnvtr Command Response Format ...................................................................... 77
Table 157. SPDIFIn Cnvtr Command Verb Format ....................................................................................... 78
Table 158. SPDIFIn Cnvtr Command Response Format .............................................................................. 78
Table 159. SPDIFIn WCap Command Verb Format ...................................................................................... 79
Table 160. SPDIFIn WCap Command Response Format ............................................................................. 79
Table 161. SPDIFIn PCMCap Command Verb Format ................................................................................. 80
Table 162. SPDIFIn PCMCap Command Response Format ........................................................................ 80
Table 163. SPDIFIn Stream Command Verb Format .................................................................................... 81
Table 164. SPDIFIn Stream Command Response Format ........................................................................... 81
Table 165. SPDIFIn ConLst Command Verb Format .................................................................................... 82
Table 166. SPDIFIn ConLst Command Response Format ............................................................................ 82
Table 167. SPDIFIn ConLstEntry Command Verb Format ............................................................................ 82
Table 168. SPDIFIn ConLstEntry Command Response Format ................................................................... 82
Table 169. SPDIFIn CnvtrID Command Verb Format ................................................................................... 83
Table 170. SPDIFIn CnvtrID Command Response Format ........................................................................... 83
Table 171. SPDIFIn DigCnvtr Command Verb Format .................................................................................. 83
Table 172. SPDIFIn DigCnvtr Command Response Format ......................................................................... 83
Table 173. SPDIFIn VCSR0 Command Verb Format .................................................................................... 84
Table 174. SPDIFIn VCSR0 Command Response Format ........................................................................... 84
Table 175. PortA WCap Command Verb Format .......................................................................................... 86
Table 176. PortA WCap Command Response Format .................................................................................. 86
Table 177. PortA PinCap Command Verb Format ........................................................................................ 87
Table 178. PortA PinCap Command Response Format ................................................................................ 87
Table 179. PortA ConLst Command Verb Format ......................................................................................... 88
Table 180. PortA ConLst Command Response Format ................................................................................ 88
Table 181. PortA ConLstEntry Command Verb Format ................................................................................ 89
Table 182. PortA ConLstEntry Command Response Format ........................................................................ 89
Table 183. PortA ConSelectCtrl Command Verb Format .............................................................................. 89
Table 184. PortA ConSelectCtrl Command Response Format ..................................................................... 89
Table 185. PortA PinWCntrl Command Verb Format .................................................................................... 89
Table 186. PortA PinWCntrl Command Response Format ........................................................................... 90
Table 187. PortA UnsolResp Command Verb Format ................................................................................... 90
Table 188. PortA UnsolResp Command Response Format .......................................................................... 90
Table 189. PortA ChSense Command Verb Format ..................................................................................... 91
Table 190. PortA ChSense Command Response Format ............................................................................. 91
Table 191. PortA ConfigDefault Command Verb Format .............................................................................. 91
Table 192. PortA ConfigDefault Command Response Format ...................................................................... 92
Table 193. PortB WCap Command Verb Format .......................................................................................... 92
Table 194. PortB WCap Command Response Format .................................................................................. 92
Table 195. PortB PinCap Command Verb Format ........................................................................................ 93
Table 196. PortB PinCap Command Response Format ................................................................................ 93
Table 197. PortB ConLst Command Verb Format ......................................................................................... 94
Table 198. PortB ConLst Command Response Format ................................................................................ 94
Table 199. PortB ConLstEntry Command Verb Format ................................................................................ 94
Table 200. PortB ConLstEntry Command Response Format ........................................................................ 94
Table 201. PortB ConSelectCtrl Command Verb Format .............................................................................. 95
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Table 202. PortB ConSelectCtrl Command Response Format ..................................................................... 95
Table 203. PortB PinWCntrl Command Verb Format .................................................................................... 95
Table 204. PortB PinWCntrl Command Response Format ........................................................................... 95
Table 205. PortB UnsolResp Command Verb Format ................................................................................... 96
Table 206. PortB UnsolResp Command Response Format .......................................................................... 96
Table 207. PortB ChSense Command Verb Format ..................................................................................... 97
Table 208. PortB ChSense Command Response Format ............................................................................. 97
Table 209. PortB ConfigDefault Command Verb Format .............................................................................. 97
Table 210. PortB ConfigDefault Command Response Format ...................................................................... 98
Table 211. PortC WCap Command Verb Format .......................................................................................... 98
Table 212. PortC WCap Command Response Format ................................................................................. 98
Table 213. PortC PinCap Command Verb Format ........................................................................................ 99
Table 214. PortC PinCap Command Response Format ................................................................................ 99
Table 215. PortC ConLst Command Verb Format ....................................................................................... 100
Table 216. PortC ConLst Command Response Format .............................................................................. 100
Table 217. PortC ConLstEntry Command Verb Format .............................................................................. 100
Table 218. PortC ConLstEntry Command Response Format ...................................................................... 100
Table 219. PortC PinWCntrl Command Verb Format .................................................................................. 101
Table 220. PortC PinWCntrl Command Response Format ......................................................................... 101
Table 221. PortC UnsolResp Command Verb Format ................................................................................ 101
Table 222. PortC UnsolResp Command Response Format ........................................................................ 102
Table 223. PortC ChSense Command Verb Format ................................................................................... 102
Table 224. PortC ChSense Command Response Format ........................................................................... 102
Table 225. PortC ConfigDefault Command Verb Format ............................................................................ 103
Table 226. PortC ConfigDefault Command Response Format .................................................................... 103
Table 227. PortD WCap Command Verb Format ........................................................................................ 103
Table 228. PortD WCap Command Response Format ............................................................................... 103
Table 229. PortD PinCap Command Verb Format ...................................................................................... 104
Table 230. PortD PinCap Command Response Format .............................................................................. 104
Table 231. PortD ConLst Command Verb Format ....................................................................................... 105
Table 232. PortD ConLst Command Response Format .............................................................................. 105
Table 233. PortD ConLstEntry Command Verb Format .............................................................................. 106
Table 234. PortD ConLstEntry Command Response Format ...................................................................... 106
Table 235. PortD PinWCntrl Command Verb Format .................................................................................. 106
Table 236. PortD PinWCntrl Command Response Format ......................................................................... 106
Table 237. PortD UnsolResp Command Verb Format ................................................................................ 107
Table 238. PortD UnsolResp Command Response Format ........................................................................ 107
Table 239. PortD ChSense Command Verb Format ................................................................................... 107
Table 240. PortD ChSense Command Response Format ........................................................................... 108
Table 241. PortD ConfigDefault Command Verb Format ............................................................................ 108
Table 242. PortD ConfigDefault Command Response Format .................................................................... 108
Table 243. PortE WCap Command Verb Format ........................................................................................ 109
Table 244. PortE WCap Command Response Format ................................................................................ 109
Table 245. PortE PinCap Command Verb Format ...................................................................................... 110
Table 246. PortE PinCap Command Response Format .............................................................................. 110
Table 247. PortE ConLst Command Verb Format ....................................................................................... 110
Table 248. PortE ConLst Command Response Format .............................................................................. 111
Table 249. PortE ConLstEntry Command Verb Format .............................................................................. 111
Table 250. PortE ConLstEntry Command Response Format ...................................................................... 111
Table 251. PortE PinWCntrl Command Verb Format .................................................................................. 111
Table 252. PortE PinWCntrl Command Response Format ......................................................................... 111
Table 253. PortE UnsolResp Command Verb Format ................................................................................. 112
Table 254. PortE UnsolResp Command Response Format ........................................................................ 112
Table 255. PortE ChSense Command Verb Format ................................................................................... 112
Table 256. PortE ChSense Command Response Format ........................................................................... 113
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Table 257. PortE ConfigDefault Command Verb Format ............................................................................ 113
Table 258. PortE ConfigDefault Command Response Format .................................................................... 114
Table 259. PortF WCap Command Verb Format ........................................................................................ 114
Table 260. PortF WCap Command Response Format ................................................................................ 114
Table 261. PortF PinCap Command Verb Format ....................................................................................... 115
Table 262. PortF PinCap Command Response Format .............................................................................. 115
Table 263. PortF ConLst Command Verb Format ....................................................................................... 116
Table 264. PortF ConLst Command Response Format .............................................................................. 116
Table 265. PortF ConLstEntry Command Verb Format ............................................................................... 116
Table 266. PortF ConLstEntry Command Response Format ...................................................................... 116
Table 267. PortF PinWCntrl Command Verb Format .................................................................................. 117
Table 268. PortF PinWCntrl Command Response Format .......................................................................... 117
Table 269. PortF UnsolResp Command Verb Format ................................................................................. 117
Table 270. PortF UnsolResp Command Response Format ........................................................................ 118
Table 271. PortF ChSense Command Verb Format .................................................................................... 118
Table 272. PortF ChSense Command Response Format ........................................................................... 118
Table 273. PortF ConfigDefault Command Verb Format ............................................................................. 119
Table 274. PortF ConfigDefault Command Response Format .................................................................... 119
Table 275. PortG WCap Command Verb Format ........................................................................................ 119
Table 276. PortG WCap Command Response Format ............................................................................... 119
Table 277. PortG PinCap Command Verb Format ...................................................................................... 120
Table 278. PortG PinCap Command Response Format ............................................................................. 120
Table 279. PortG ConLst Command Verb Format ...................................................................................... 121
Table 280. PortG ConLst Command Response Format .............................................................................. 121
Table 281. PortG ConLstEntry Command Verb Format .............................................................................. 121
Table 282. PortG ConLstEntry Command Response Format ..................................................................... 122
Table 283. PortG PinWCntrl Command Verb Format .................................................................................. 122
Table 284. PortG PinWCntrl Command Response Format ......................................................................... 122
Table 285. PortG UnsolResp Command Verb Format ................................................................................ 122
Table 286. PortG UnsolResp Command Response Format ........................................................................ 123
Table 287. PortG ChSense Command Verb Format ................................................................................... 123
Table 288. PortG ChSense Command Response Format .......................................................................... 123
Table 289. PortG ConfigDefault Command Verb Format ............................................................................ 124
Table 290. PortG ConfigDefault Command Response Format ................................................................... 124
Table 291. PortH WCap Command Verb Format ........................................................................................ 124
Table 292. PortH WCap Command Response Format ............................................................................... 124
Table 293. PortH PinCap Command Verb Format ...................................................................................... 125
Table 294. PortH PinCap Command Response Format .............................................................................. 125
Table 295. PortH ConLst Command Verb Format ....................................................................................... 126
Table 296. PortH ConLst Command Response Format .............................................................................. 126
Table 297. PortH ConLstEntry Command Verb Format .............................................................................. 126
Table 298. PortH ConLstEntry Command Response Format ...................................................................... 127
Table 299. PortH PinWCntrl Command Verb Format .................................................................................. 127
Table 300. PortH PinWCntrl Command Response Format ......................................................................... 127
Table 301. PortH UnsolResp Command Verb Format ................................................................................ 127
Table 302. PortH UnsolResp Command Response Format ........................................................................ 128
Table 303. PortH ChSense Command Verb Format ................................................................................... 128
Table 304. PortH ChSense Command Response Format ........................................................................... 128
Table 305. PortH ConfigDefault Command Verb Format ............................................................................ 129
Table 306. PortH ConfigDefault Command Response Format .................................................................... 129
Table 307. DigOut0 WCap Command Verb Format .................................................................................... 129
Table 308. DigOut0 WCap Command Response Format ........................................................................... 129
Table 309. DigOut0 PinCap Command Verb Format .................................................................................. 130
Table 310. DigOut0 PinCap Command Response Format .......................................................................... 130
Table 311. DigOut0 ConLst Command Verb Format ................................................................................... 131
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Table 312. DigOut0 ConLst Command Response Format .......................................................................... 131
Table 313. DigOut0 ConLstEntry0 Command Verb Format ........................................................................ 131
Table 314. DigOut0 ConLstEntry0 Command Response Format ................................................................ 132
Table 315. DigOut0 ConLstEntry4 Command Verb Format ........................................................................ 132
Table 316. DigOut0 ConLstEntry4 Command Response Format ................................................................ 132
Table 317. DigOut0 ConSelectCtrl Command Verb Format ........................................................................ 132
Table 318. DigOut0 ConSelectCtrl Command Response Format ............................................................... 133
Table 319. DigOut0 PinWCntrl Command Verb Format .............................................................................. 133
Table 320. DigOut0 PinWCntrl Command Response Format ..................................................................... 133
Table 321. DigOut0 ConfigDefault Command Verb Format ........................................................................ 133
Table 322. DigOut0 ConfigDefault Command Response Format ................................................................ 134
Table 323. InPort0Mux WCap Command Verb Format ............................................................................... 134
Table 324. InPort0Mux WCap Command Response Format ...................................................................... 134
Table 325. InPort0Mux ConLst Command Verb Format ............................................................................. 135
Table 326. InPort0Mux ConLst Command Response Format ..................................................................... 135
Table 327. InPort0Mux OutAmpCap Command Verb Format ..................................................................... 135
Table 328. InPort0Mux OutAmpCap Command Response Format ............................................................ 136
Table 329. InPort0Mux OutAmpRight Command Verb Format ................................................................... 136
Table 330. InPort0Mux OutAmpRight Command Response Format ........................................................... 136
Table 331. InPort0Mux OutAmpLeft Command Verb Format ...................................................................... 137
Table 332. InPort0Mux OutAmpLeft Command Response Format ............................................................. 137
Table 333. InPort0Mux ConSelectCtrl Command Verb Format ................................................................... 137
Table 334. InPort0Mux ConSelectCtrl Command Response Format .......................................................... 137
Table 335. InPort0Mux ConLstEntry0 Command Verb Format ................................................................... 137
Table 336. InPort0Mux ConLstEntry0 Command Response Format .......................................................... 138
Table 337. InPort0Mux ConLstEntry4 Command Verb Format ................................................................... 138
Table 338. InPort0Mux ConLstEntry4 Command Response Format .......................................................... 138
Table 339. InPort0Mux ConLstEntry8 Command Verb Format ................................................................... 138
Table 340. InPort0Mux ConLstEntry8 Command Response Format .......................................................... 138
Table 341. InPort1Mux WCap Command Verb Format ............................................................................... 139
Table 342. InPort1Mux WCap Command Response Format ...................................................................... 139
Table 343. InPort1Mux ConLst Command Verb Format ............................................................................. 140
Table 344. InPort1Mux ConLst Command Response Format ..................................................................... 140
Table 345. InPort1Mux OutAmpCap Command Verb Format ..................................................................... 140
Table 346. InPort1Mux OutAmpCap Command Response Format ............................................................ 140
Table 347. InPort1Mux OutAmpRight Command Verb Format ................................................................... 141
Table 348. InPort1Mux OutAmpRight Command Response Format ........................................................... 141
Table 349. InPort1Mux OutAmpLeft Command Verb Format ...................................................................... 141
Table 350. InPort1Mux OutAmpLeft Command Response Format ............................................................. 142
Table 351. InPort1Mux ConSelectCtrl Command Verb Format ................................................................... 142
Table 352. InPort1Mux ConSelectCtrl Command Response Format .......................................................... 142
Table 353. InPort1Mux ConLstEntry0 Command Verb Format ................................................................... 142
Table 354. InPort1Mux ConLstEntry0 Command Response Format .......................................................... 142
Table 355. InPort1Mux ConLstEntry4 Command Verb Format ................................................................... 143
Table 356. InPort1Mux ConLstEntry4 Command Response Format .......................................................... 143
Table 357. InPort1Mux ConLstEntry8 Command Verb Format ................................................................... 143
Table 358. InPort1Mux ConLstEntry8 Command Response Format .......................................................... 143
Table 359. PCBEEP OutAmpLeft Command Verb Format ......................................................................... 144
Table 360. PCBEEP OutAmpLeft Command Response Format ................................................................. 144
Table 361. PCBEEP WCap Command Verb Format ................................................................................... 144
Table 362. PCBEEP WCap Command Response Format .......................................................................... 144
Table 363. PCBEEP OutAmpCap Command Verb Format ......................................................................... 145
Table 364. PCBEEP OutAmpCap Command Response Format ................................................................ 145
Table 365. PCBEEP Gen Command Verb Format ...................................................................................... 145
Table 366. PCBEEP Gen Command Response Format ............................................................................. 146
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Table 367. CD WCap Command Verb Format ............................................................................................ 146
Table 368. CD WCap Command Response Format ................................................................................... 146
Table 369. CD PinCap Command Verb Format .......................................................................................... 147
Table 370. CD PinCap Command Response Format .................................................................................. 147
Table 371. CD PinWCntrl Command Verb Format ...................................................................................... 148
Table 372. CD PinWCntrl Command Response Format ............................................................................. 148
Table 373. CD ConfigDefault Command Verb Format ................................................................................ 148
Table 374. CD ConfigDefault Command Response Format ........................................................................ 149
Table 375. VolumeKnob WCap Command Verb Format ............................................................................. 149
Table 376. VolumeKnob WCap Command Response Format .................................................................... 149
Table 377. VolumeKnob VolKnobCap Command Verb Format .................................................................. 150
Table 378. VolumeKnob VolKnobCap Command Response Format .......................................................... 150
Table 379. VolumeKnob ConLst Command Verb Format ........................................................................... 150
Table 380. VolumeKnob ConLst Command Response Format ................................................................... 150
Table 381. VolumeKnob ConLstEntry0 Command Verb Format ................................................................. 150
Table 382. VolumeKnob ConLstEntry0 Command Response Format ........................................................ 151
Table 383. VolumeKnob ConLstEntry4 Command Verb Format ................................................................. 151
Table 384. VolumeKnob ConLstEntry4 Command Response Format ........................................................ 151
Table 385. VolumeKnob UnsolResp Command Verb Format ..................................................................... 151
Table 386. VolumeKnob UnsolResp Command Response Format ............................................................ 152
Table 387. VolumeKnob Cntrl Command Verb Format ............................................................................... 152
Table 388. VolumeKnob Cntrl Command Response Format ...................................................................... 152
Table 389. VolumeKnob VCSR0 Command Verb Format ........................................................................... 152
Table 390. VolumeKnob VCSR0 Command Response Format .................................................................. 153
Table 391. InPort0Vol WCap Command Verb Format ................................................................................ 153
Table 392. InPort0Vol WCap Command Response Format ........................................................................ 153
Table 393. InPort0Vol ConLst Command Verb Format ............................................................................... 154
Table 394. InPort0Vol ConLst Command Response Format ...................................................................... 154
Table 395. InPort0Vol InAmpRight Command Verb Format ........................................................................ 154
Table 396. InPort0Vol InAmpRight Command Response Format ............................................................... 155
Table 397. InPort0Vol InAmpLeft Command Verb Format .......................................................................... 155
Table 398. InPort0Vol InAmpLeft Command Response Format ................................................................. 155
Table 399. InPort0Vol ConLstEntry Command Verb Format ....................................................................... 155
Table 400. InPort0Vol ConLstEntry Command Response Format .............................................................. 155
Table 401. InPort1Vol WCap Command Verb Format ................................................................................ 156
Table 402. InPort1Vol WCap Command Response Format ........................................................................ 156
Table 403. InPort1Vol ConLst Command Verb Format ............................................................................... 157
Table 404. InPort1Vol ConLst Command Response Format ...................................................................... 157
Table 405. InPort1Vol InAmpRight Command Verb Format ........................................................................ 157
Table 406. InPort1Vol InAmpRight Command Response Format ............................................................... 157
Table 407. InPort1Vol InAmpLeft Command Verb Format .......................................................................... 157
Table 408. InPort1Vol InAmpLeft Command Response Format ................................................................. 158
Table 409. InPort1Vol ConLstEntry Command Verb Format ....................................................................... 158
Table 410. InPort1Vol ConLstEntry Command Response Format .............................................................. 158
Table 411. ADC0Mux WCap Command Verb Format ................................................................................. 158
Table 412. ADC0Mux WCap Command Response Format ........................................................................ 158
Table 413. ADC0Mux ConLst Command Verb Format ............................................................................... 159
Table 414. ADC0Mux ConLst Command Response Format ....................................................................... 159
Table 415. ADC0Mux ConSelectCtrl Command Verb Format ..................................................................... 160
Table 416. ADC0Mux ConSelectCtrl Command Response Format ............................................................ 160
Table 417. ADC0Mux ConLstEntry Command Verb Format ....................................................................... 160
Table 418. ADC0Mux ConLstEntry Command Response Format .............................................................. 160
Table 419. ADC0Mux LR Command Verb Format ...................................................................................... 161
Table 420. ADC0Mux LR Command Response Format .............................................................................. 161
Table 421. ADC0Mux OutAmpCap Command Verb Format ....................................................................... 161
Table 422. ADC0Mux OutAmpCap Command Response Format .............................................................. 161
Table 423. ADC0Mux OutAmpRight Command Verb Format ..................................................................... 162
Table 424. ADC0Mux OutAmpRight Command Response Format ............................................................. 162
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Table 425. ADC0Mux OutAmpLeft Command Verb Format ........................................................................ 162
Table 426. ADC0Mux OutAmpLeft Command Response Format ............................................................... 162
Table 427. ADC1Mux WCap Command Verb Format ................................................................................. 162
Table 428. ADC1Mux WCap Command Response Format ........................................................................ 163
Table 429. ADC1Mux ConLst Command Verb Format ............................................................................... 163
Table 430. ADC1Mux ConLst Command Response Format ....................................................................... 164
Table 431. ADC1Mux ConSelectCtrl Command Verb Format ..................................................................... 164
Table 432. ADC1Mux ConSelectCtrl Command Response Format ............................................................ 164
Table 433. ADC1Mux ConLstEntry Command Verb Format ....................................................................... 164
Table 434. ADC1Mux ConLstEntry Command Response Format .............................................................. 164
Table 435. ADC1Mux LR Command Verb Format ...................................................................................... 165
Table 436. ADC1Mux LR Command Response Format .............................................................................. 165
Table 437. ADC1Mux OutAmpCap Command Verb Format ....................................................................... 165
Table 438. ADC1Mux OutAmpCap Command Response Format .............................................................. 165
Table 439. ADC1Mux OutAmpRight Command Verb Format ..................................................................... 166
Table 440. ADC1Mux OutAmpRight Command Response Format ............................................................. 166
Table 441. ADC1Mux OutAmpLeft Command Verb Format ........................................................................ 166
Table 442. ADC1Mux OutAmpLeft Command Response Format ............................................................... 166
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1. DESCRIPTION
The 92HD206 is a high fidelity, 8-channel audio CODEC compatible with the Intel High Definition
(HD) Audio Interface. The 92HD206 CODEC provides high quality HD Audio capability to notebook
and cost sensitive desktop PC applications.
The 92HD206 incorporates IDT's proprietary technology to achieve a DAC SNR of 95dB. The higher
performance and quality of IDT’s audio solutions brings consumer electronics level performance to
the notebook, desktop and media center PC.
The 92HD206 provides stereo, 24-bit, full duplex resolution, supporting sample rates up to 192 KHz
by the DAC and ADC. The SPDIF In/Out supports sample rates of 96 KHz, 48 KHz and 44.1 KHz
plus SPDIF OUT supports 88.2 KHz. Additional sample rates are supported by the driver software.
The 92HD206 supports all desired eight channel configurations, including switchable Headphone
Out, and Universal Jacks
™ functionality for jack detection and re-tasking. The SPDIF interface pro-
vides connectivity to Consumer Electronic equipment like Dolby Digital decoders, powered speak-
ers, mini disk drives or a home entertainment systems. All analog I/O pairs support LINE_IN,
LINE_OUT and MIC.
MIC inputs can be programmed with 0/10/20/30/40dB boost. For more advanced configurations, the
92HD206 has up to three General Purpose I/O (GPIO) pins. The 92HD206 also provides a single
ended CD input for compatibility with DRM solutions and to support leg¬acy OS issues.
The 92HD206 integrates a headphone amplifier on Ports A, B and D. The headphone amplifier is
dedicated to these three outputs for increased flexibility, enhanced user experience, and reduced
implementation costs.
The Universal Jack™ feature allows the CODEC to detect when audio devices are plugged in, and
for the CODEC to be reconfigured to support these devices regardless of which port they are
plugged into. SPDIF input sensing is also supported. The fully parametric IDT SoftEQ can be initi-
ated/disabled upon headphone jack insertion/removal for protection of notebook speakers. Note:
The Jack Detect circuit and component selection are critical for accurate detection of audio jacks on
individual ports. Please see the IDT 92HD206 reference design for circuit implementation details.
The 92HD206 operates with a 3.3 V digital supply and a 5 V analog supply.
The 92HD206 is available in 48-pin LQFP Environmental (ROHS) packages.
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2. CHARACTERISTICS
2.1. Audio Fidelity
DAC SNR:
ADC SNR:
95dB
90dB
A-Weighted
A-Weighted
5.0 V +/- 5%
5.0 V +/- 5%
2.2. Electrical Specifications
2.2.1.
Absolute Maximum Ratings
Stresses above the ratings listed below can cause permanent damage to the 92HD206. These ratings, which are
standard values for IDT commercially rated parts, are stress ratings only. Functional operation of the device at
these or any other conditions above those indicated in the operational sections of the specifications is not implied.
Exposure to absolute maximum rating conditions for extended periods can affect product reliability. Electrical
parameters are guaranteed only over the recommended operating temperature range.
Item
Pin
Maximum Rating
Analog maximum supply voltage
Digital maximum supply voltage
VREFOUT output current
Voltage on any pin relative to ground
Operating temperature
AVdd 6 Volts
DVdd 5.5 Volts
5 mA
Vss - 0.3 V to Vdd + 0.3 V
o
o
0 C to +70 C
o
o
Storage temperature
-55 C to +125 C
o
260 C for 10 seconds
Soldering temperature
Soldering temperature information for all available packages
begins on page 173.
2.2.2.
Recommended Operation Conditions
Parameter
Min.
3.135
4.75
0
Typ.
3.3
5
Max.
3.465
5.25
+70
Units
V
Power Supply Voltage
Digital - 3.3 V
Analog - 5 V
V
Ambient Operating Temperature
Case Temperature
°C
T
(48-LQFP)
+90
°C
case
ESD: The 92HD206 is an ESD (electrostatic discharge) sensitive device. The human body and test equipment
can accumulate and discharge electrostatic charges up to 4000 Volts without detection. Even though the 92HD206
implements internal ESD protection circuitry, proper ESD precautions should be followed to avoid damaging the
functionality or performance.
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2.3. 92HD206 5 V Analog Performance Characteristics
(T
= 25 ºC, AVdd = 5 V ± 5%, DVdd = 3.3 V ± 5%, AVss = DVss = 0 V; 1 KHz input sine wave; Sample
ambient
Frequency = 48 KHz; 0dB = 1 VRMS, 10 KW / 50 pF load, Testbench Characterization BW: 20 Hz – 20 kHz, 0dB set-
tings on all gain stages)
Parameter
Digital to Analog Converters
Resolution
Conditions
AVdd
Min
Typ
Max
Unit
5 V
5 V
24
95
Bits
dB
SNR - DAC to All Line-Out Ports
(Note 4)
Analog Mixer Disabled,
PCM data
THD+N - DAC to All Line-Out Ports
(Note 3)
Analog Mixer Disabled,
-3dB Signal, PCM data
5 V
5 V
5 V
5 V
5 V
5 V
5 V
5 V
5 V
5 V
5 V
5 V
90
90
80
93
95
85
95
85
90
79
87
74
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
SNR - DAC to All Line-Out Ports
(Note 4)
Analog Mixer Enabled,
PCM data
THD+N - DAC to All Line-Out Ports
(Note 3)
Analog Mixer Enabled,
-3dB Signal, PCM data
Dynamic Range: DAC to All Line Out Ports
(Note2)
-60dB Signal Level
-
-
SNR - DAC to All Headphone Ports
(Note 4)
Analog Mixer Disabled,
10 KΩ load, PCM data
THD+N - DAC to All Headphone Ports
(Note 3)
Analog Mixer Disabled,
-3dB Signal, 10 KΩ load, PCM data
SNR - DAC to All Headphone Ports
(Note 4)
Analog Mixer Disabled,
32 Ω load, PCM data
THD+N - DAC to All Headphone Ports
(Note 3)
Analog Mixer Disabled,
-3dB Signal, 32 Ω load, PCM data
SNR - DAC to All Headphone Ports
(Note 4)
Analog Mixer Enabled,
10 kΩ load, PCM data
THD+N - DAC to All Headphone Ports
(Note 3)
Analog Mixer Enabled,
-3dB Signal, 10 kΩ load, PCM data
SNR - DAC to All Headphone Ports
(Note 4)
Analog Mixer Enabled,
32 Ω load, PCM data
THD+N - DAC to All Headphone Ports
(Note 3)
Analog Mixer Enabled,
-3dB Signal,32 Ω load, PCM data
Any Analog Input to DAC Crosstalk
Any Analog Input to DAC Crosstalk
Gain Error
10 KHz Signal Frequency
1 KHz Signal Frequency
Analog Mixer Disabled
Analog Mixer Disabled
5 V
5 V
5 V
5 V
5 V
-
-
-85
-80
-
dB
dB
dB
dB
Hz
Hz
Hz
dB
dB
-
0.5
Interchannel Gain Mismatch
0.5
D/A Digital Filter Pass Band (Note 5)
D/A Digital Filter Transition Band
D/A Digital Filter Stop Band
20
-
-
-
-
-
19,200
5 V 19,200
5 V 28,800
28,800
-
-
-
D/A Digital Filter Stop Band Rejcn (Note 6)
D/A Out-of-Band Rejection (Note 7)
5 V
5 V
-100
-55
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Parameter
Group Delay (48 KHz sample rate)
Attenuation, Gain Step Size DIGITAL
Gain Drift
Conditions
AVdd
5 V
Min
Typ
-
Max
Unit
ms
-
-
-
-
-
1
-
5 V
0.75
100
100
1
dB
5 V
-
ppm/ºC
mV
DAC Offset Voltage
5 V
20
10
Deviation from Linear Phase
Analog Outputs
5 V
deg.
Full Scale All Line-Outs
Full Scale All Line-Outs
All Headphone Capable Outputs (peak)
Analog inputs
DAC PCM Data
DAC PCM Data
32 Ω load
5 V
5 V
5 V
1.00
2.83
31
-
-
-
-
-
Vrms
Vp-p
mW
50
Full Scale Input Voltage
All Analog Inputs with boost
All Analog Inputs with boost
All Analog Inputs with boost
All Analog Inputs with boost
Input Impedance
0dB Boost @ 4.75 V
10dB Boost
5 V
5 V
5 V
5 V
5 V
5 V
5 V
1.00
0.31
0.10
0.03
0.01
-
-
-
-
-
-
-
-
-
-
Vrms
Vrms
Vrms
Vrms
Vrms
KΩ
20dB Boost
-
30dB Boost
-
40dB Boost
-
50
15
Input Capacitance
-
pF
Analog Mixer
SNR - CD to Ports A,B, & D Line-Out
(Note 4)
5 V
90
dB
THD+N - CD to Ports A,B, & D Line-Out
(Note 3)
-3dB Input
-3dB Input
5 V
5 V
5 V
70
90
70
dB
dB
dB
SNR - All Line-In to A,B, & D Line-Out (Note 4)
THD+N - All Line-In to A,B, & D Line-Out
(Note 3)
SNR - Analog PC Beep to Ports
A, B, & D Line-Out (Note 4)
5 V
5 V
85
70
dB
dB
THD+N - Analog PC Beep to Ports
A, B, & D Line-Out (Note 3)
-3dB Input
Analog to Digital Converter
Resolution
5 V
5 V
5 V
5 V
24
90
90
85
Bits
dB
dB
dB
Dynamic Range, All Analog Inputs to A/D
(Note 1)
High Pass Filer Enabled,
1 Vrms Input, No boost
88
88
SNR All Analog Inputs to A/D (Note 4)
High Pass Filter enabled
High Pass Filter enabled,
-3dBV input Level
THD+N All Analog Inputs to A/D (Note 3)
Analog Frequency Response (Note 2)
A/D Digital Filter Pass Band (Note 5)
A/D Digital Filter Transition Band
5 V
5 V
10
20
-
-
-
30,000
19,200
28,800
Hz
Hz
Hz
5 V 19,200
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Parameter
A/D Digital Filter Stop Band
A/D Digital Filter Stop Band Rejection (Note 6)
Group Delay (48 KHz sample rate)
Any Analog Input to ADC Crosstalk
Any Analog Input to ADC Crosstalk
Spurious Tone Rejection
Attenuation, Gain Step Size ANALOG
Interchannel Gain Mismatch ADC
Noise Floor when 40dB Mic Boost Enabled
40dB Mic Boost Enabled SNR
40dB Mic Boost Enabled THD+N
Power Supply
Conditions
AVdd
Min
Typ
-
Max
Unit
Hz
dB
ms
dB
dB
dB
dB
dB
mV
dB
dB
5 V 28,800
-
5 V
5 V
5 V
5 V
5 V
5 V
5 V
5 V
5 V
5 V
-100
-
-
-
-
-
-
-
-
-
1
10 KHz Signal Frequency
1 KHz Signal Frequency
-85
-80
-100
1.5
-
-
-
-
-
0.5
0.01
5 mV Input
5 mV Input
60
55
Power Supply Rejection Ratio
Power Supply Rejection Ratio
D0 Didd
1 KHz
5 V
5 V
5 V
5 V
5 V
5 V
5 V
5 V
5 V
5 V
5 V
5 V
5 V
5 V
-
-
-70
-40
75
85
75
85
23
58
23
37
8
-
-
dB
dB
20 KHz
90
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
D0 Aidd
D1 Didd
90
30
30
10
5
D1 Aidd
D2 Didd
D2 Aidd
D3 Didd
D3 Aidd
One Stereo ADC Didd
One Stereo ADC Aidd
One Stereo DAC Didd
One Stereo DAC Aidd
CD Input
10
3
2
CD Common Mode Rejection (CMR)
Voltage Reference Outputs
VREFout (Note 8)
All
50
-
55
dB
All
0.5 X AVdd
-
V
V
VREFILT (VAG)
5 V
0.45 X AVdd
Phased Locked Loop
PLL lock time
5 V
5 V
96
200
500
µsec
PLL (HD Bit CLK) 24 MHz clock jitter
150
psec
1. Ratio of Full Scale signal to noise output with -60dB signal, measured “A weighted” over a 20 Hz to a 20 KHz
bandwidth.
2. ± 3dB limits for Line Output and 0dB gain, at -20dBV
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3. Amplitude of THD+N, measured with A-weighting filter, over 20 Hz to 20 KHz bandwidth.
4. Ratio of Full Scale signal to idle channel noise output is measured “A weighted” over a 20 Hz to a 20 KHz
bandwidth. (AES17-1991 Idle Channel Noise or EIAJ CP-307 Signal-to-noise Ratio.)
5. Peak-to-Peak Ripple over Passband meets ± 0.25dB limits, 48 KHz Sample Frequency.
6. Stop Band rejection determines filter requirements. Out-of-Band rejection determines audible noise.
7. The integrated Out-of-Band noise generated by the DAC process, during normal PCM audio playback, over a
bandwidth 28.8 KHz to 100 KHz, with respect to a 1 Vrms DAC output.
8. Can be set to 0.5 or 0.8 AVdd.
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3. DETAILED DESCRIPTION
3.1. Universal Jacks
™
IDT’s Universal Jacks technology allows for the greatest flexibility in board design and implementa-
tion.
1
For the 92HD206 family the Universal Jacks capabilities are as follows :
2
•
Ports A, B, and D support :
• Headphone Out
• Line Out
• Line In
3
• Mic with 0/10/20/30/40 dB Mic boost
2
•
Ports C, E, F, G, H support :
• Line Out
• Line In
3
• Mic with 0/10/20/30/40 dB Mic boost
• Ports G & H do not have VrefOut Support
1
Note : On the 92HD206 family, only one function can be selected on each pin pair at a time. For
example, a pin pair cannot be configured as an input and output at the same time. Configuration can
be changed at any time.
2
Note : Three headphones should not be used simultaneously. Performance degradation will occur
when using two headphones simultaneously. See electrical specs for details.
3
Note : When the 40dB microphone boost feature is enabled, additional gain increases greater than
6dB may result in significant audio quality degradation of the microphone audio input. In particular,
when the 40dB microphone boost is active, the SNR, THD+N and DC offset will significantly degrade
regardless of the input signal level.
3.1.1.
Audio Jack Presence Detect
SENSE_A pin is used to detect the presence of plugs in ports A, B, C, and D. SENSE_B pin is used
to detect the presence of plugs in ports E, F, G, ad H. Refer to the reference design for details of the
port detect circuitry.
Impedance Sense is accomplished by on-chip circuitry that measures the impedance at the pin of
the chip and compares it to internal reference impedance bins. Below, is a table that contains the bin
information and codes returned when the pin widget impedance field in the Port Pin Sense widget is
read. Please note that even under the best conditions, there is no method to guarantee 100%
impedance sensing due to variations in external circuitry and impedance overlap of devices that can
be plugged into a jack. The impedance sense table reflects both standard Line Out and Headphone
output drivers. Please reference the HD Audio Universal Jack Application Note on the IDT Extranet
for more information.
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Table 1. Impedance Sense Levels
Impedance Level (Ohms) General Device Detected
Bins
000b
001b
010b
011b
100b
101b
110b
111b
Return Hex Code
0064h
Impedance < 300
Impedance = 300 +/- 25%
300 > Impedance < 1275
Impedance = 1275 +/- 25%
1275 > Impedance < 2000
Impedance = 2000 +/- 25%
> 2000
Passive Speakers, Headset Speakers
Some Headset Speakers
Some Microphones
012Ch
028Ah
03E8h
Microphones
07D0h
Microphones
0BB8h
Amplified Speakers
2710h
Amplified Speakers, Line In
Amplified Speakers, Line In
2710h
> 2000
3.2. SPDIF Input
SPDIF_IN can operate at 44.1 KHz, 48 KHz or 96 KHz and implements internal Jack Detect.
A sophisticated digital PLL allows automatic rate detection and accurate data recovery. The ability to
directly accept consumer SPDIF voltage levels eliminates the need for costly external receiver ICs.
Advanced features such as record slot select and SPDIF_IN routing to the DAC allows for simulta-
neous record and play.
3.3. SPDIF Output
SPDIF Ouput can operate at 44.1 KHz, 48 KHz, 88.2 KHz and 96 KHz, as defined in the Intel High
Definition Audio Specification, with resolutions up to 24 bits. This insures compatibility with all con-
sumer audio gear and allows for convenient integration into home theater systems and media center
PCs.
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3.4. Headphone Drivers (Restrictions)
Three headphones should not be used simultaneously. Performance degradation will occur when
using two headphones simultaneously. See electrical specifications for details.
3.5. Device IDs
Table 2. CODEC IDs
Part Number DAC SNR dB VID
DID Rev ID Step ID SSID* Assm ID* Dolby Volume Pkg Pins
92HD206X
95
8384h 7645h xxh
xxh
xxxxxxh
xxh
No
Yes
48
92HD206D
95
8384h 7646h xxh
xxh
xxxxxx1h
xxh
HT/SR
Yes
48
Note: SVIDs, SSIDs and Assembly IDs are read/writable by BIOS. All other ID fields are
read-only.
Note: MS refers to Master Studio and HT/SR refers to Home Theater/Sound Room
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4. FUNCTIONAL BLOCK DIAGRAMS
4.1. 92HD206
Figure 1. 92HD206 Functional Block Diagram
M U X
Boost
Gain
M U X
E n a b l e
O u t p u t
E n a b l e
O u t p u t
1 bit
E n a b l e
O u t p u t
E n a b l e
O u t p u t
E n a b l e
O u t p u t
MUX
MUX
E n a b l e
O u t p u t
E n a b l e
O u t p u t
E n a b l e
O u t p u t
M U X
Boost
Gain
M U X
M U X
1 bit
PCM ADC
HD Audio LINK LOGIC
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NID=24h
5. WIDGET
DIAGRAM
VOLUME
KNOB
NID=0Ah
PortA
NID=02h
DAC0
DAC1
DAC0
NID=0Bh
PortB
NID=03h
DAC1
DAC1
DAC0
NID=0Ch
PortC
NID=04h
DAC2
DAC1
NID=0Dh
PortD
NID=05h
DAC3
DAC0
NID=0Eh
PortE
DAC2
NID=1Bh
NID=15h
NID=0Fh
PortF
NID=07h
A
ADC0
MUX
DAC3
DAC2
ADC0
B
C
NID=18h
NID=10h
PortG
INPORT0
VOL
INPORT0ED
MUX
F
G
ADC0MUX
H
CD
NID=11h
PortH
HD
Audio
Link
DAC1
NID=16h
NID=1Ch
NID=08h
ADC1
A
NID=23h
PCBEEP
ADC1
MUX
B
C
NID=19h
D
INPORT1
VOL
INPORT1
E
MUX
F
G
ADC1MUX
NID=13h
DMIC0
H
CD
NID=14h
DMIC1
NID=12h
CD
NID=20h
NID=22h
DIGIN
SPDIF
IN
NID=1Eh
NID=21h
SPDIF
OUT
ADC0MUX
ADC1MUX
DIGOUT
0
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Figure 2. 92HD206 Widget Diagram
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5.1. Pin Configuration Default Register Settings
The following table shows the Pin Widget Configuration Default settings.
Table 3. Pin Configuration Default Settings
Pin Name
Port
Location
Device
Connection
Color
Misc
Assoc. Seq
Mainboard
Not Connected
SPDIF In
RCA
Gray
DigInPin
Rear
Jack Detect Overide = 1
9h
7h
2h
8h
4h
1h
4h
1h
1h
0h
0h
0h
0h
Eh
0h
0h
2h
1h
01b
Ch
4h
2h
1h
Mainboard
Connect to Jack
SPDIF Out
RCA
4h
Gray
2h
DigOutPin
PortAPin
PortBPin
PortCPin
PortDPin
PortEPin
PortFPin
PortGPin
Rear
Jack Detect Overide = 0
Jack Detect Overide = 0
Jack Detect Overide = 0
Jack Detect Overide = 0
Jack Detect Overide = 0
Jack Detect Overide = 0
Jack Detect Overide = 0
Jack Detect Overide = 0
00b
4h
1h
Mainboard
Connect to Jack
HP Out
2h
1/8 inch Jack
Green
4h
Front
00b
1h
2h
Mainboard
Connect to Jack
Mic In
Ah
1/8 inch Jack
Pink
9h
Front
00b
1h
2ht
Mainboard
Connect to Jack
Line In
8h
1/8 inch Jack
Blue
3h
Rear
00b
1h
1h
Mainboard
Connect to Jack
Line Out
1/8 inch Jack
Green
4h
Rear
00b
0h
1h
1h
Mainboard
Connect to Jack
Mic In
Ah
1/8 inch Jack
Pink
9h
Rear
00b
1h
1h
Mainboard
Connect to Jack
Line Out
1/8 inch Jack
Black
1h
Rear
00b
0h
1h
1h
Mainboard
Connect to Jack
Line Out
1/8 inch Jack Orange
Rear
00b
0h
1h
6h
1h
Mainboard
Connect to Jack
Line Out
1/8 inch Jack
Gray
PortHPin
CDPin
Rear
Jack Detect Overide = 0
Jack Detect Overide = 1
1h
Fh
Fh
0h
00b
0h
1h
2h
1h
Internal
01000b
Not Connected
CD
3h
ATAPI Internal Unknown
3h 0h
01b
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6. WIDGET INFORMATION FOR THE 92HD206 FAMILY
Table 4. High Definition Audio Widget
ID
Widget Name
Root
Description
00h
01h
02h
03h
04h
05h
06h
07h
08h
09h
0Ah
0Bh
0Ch
0Dh
0Eh
0Fh
10h
11h
12h
13h
14h
15h
16h
17h
18h
19h
1Ah
1Bh
1Ch
1Dh
1Eh
1Fh
Root Node
Audio Function Group
DAC0
Audio Function Group
Stereo Output Converter to DAC
Stereo Output Converter to DAC
Stereo Output Converter to DAC
Stereo Output Converter to DAC
Reserved
DAC1
DAC2
DAC3
Reserved
ADC0
Stereo Input Converter to ADC
Stereo Input Converter to ADC
Reserved
ADC1
Reserved
Port A
Port A Pin Widget (Configurable as HP, Line In, Line Out, Mic)
Port B
Port B Pin Widget (Configurable as HP, Line In, Line Out, Mic)
Port C
Port C Pin Widget (Configurable as Line In, Line Out, Mic)
Port D
Port D Pin Widget (Configurable as HP, Line In, Line Out, Mic)
Port E
Port E Pin Widget (Configurable as Line In, Line Out, Mic)
Port F
Port F Pin Widget (Configurable as Line In, Line Out, Mic)
Port G
Port G Pin Widget (Configurable as Line In, Line Out, Mic)
Port H
Port H Pin Widget (Configurable as Line In, Line Out, Mic)
CD
CD Pin Widget
Reserved
Reserved
Reserved
InPort0Mux
InPort1Mux
Reserved
InPort0Vol
InPort1Vol
Reserved
ADC0Mux
ADC1Mux
Reserved
SPDIF_OUT
Reserved
Reserved
ADC0 Input Port Mux
ADC1 Input Port Mux
Reserved
ADC0 Input Port Volume
ADC1 Input Port Volume
Reserved
ADC0 Mux
ADC1 Mux
Reserved
Stereo Output for SPDIF_Out
Reserved
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Table 4. High Definition Audio Widget
Description
ID
Widget Name
20h
21h
22h
23h
24h
SPDIF_IN
DigOut
Stereo Input for SPDIF_In
Digital Output Pin
Reserved
Reserved
PCBEEP
VolumeKnob
Digital PC Beep
Master Volume Controls
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6.1. Root Node (NID = 0x00)
6.1.1.
Root ID
Table 5. Root ID Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F00
00
Table 6. Root ID Command Response Format
Bit
Bitfield Name
Vendor
RW
R
Reset
0x8384
0x76
Description
[31:16]
[15:8]
Vendor ID.
DeviceFix
R
Fixed portion of Device ID.
Dependant on device - See device ID table
in section 3.5.
[7:0]
DeviceProg
R
0x10
6.1.2.
Root RevID
Table 7. Root RevID Command Verb Format
Verb ID
Payload
Response
Get
F00
02
See bitfield table.
Table 8. Root RevID Command Response Format
Bit
Bitfield Name
Rsvd
RW
R
Reset
0x00
0x1
Description
[31:24]
[23:20]
[19:16]
[15:12]
[11:8]
Reserved
Major
R
Major rev number of compliant HD Audio spec.
Minor rev number of compliant HD Audio spec.
Fixed portion of Vendor's rev number for this device.
Vendor's rev number for this device.
Minor
R
0x0
VendorFix
VendorProg
R
0x0
R
0x1
Fixed portion of vendor stepping number within the
Vendor RevID.
[7:4]
[3:0]
SteppingFix
R
R
0x0
0x1
SteppingProg
vendor stepping number within the Vendor RevID.
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6.1.3.
Root NodeInfo
Table 9. Root NodeInfo Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F00
04
Table 10. Root NodeInfo Command Response Format
Bit
Bitfield Name
Rsvd2
RW
R
Reset
0x00
0x01
0x00
0x01
Description
[31:24]
[23:16]
[15:8]
[7:0]
Reserved
StartNID
R
Starting node number (NID) of first function group
Reserved
Rsvd1
R
TotalNodes
R
Total number of nodes
6.2. AFG Node (NID = 0x01)
6.2.1.
AFG Reset
Table 11. AFG Reset Command Verb Format
Verb ID
7FF
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
7FF
See bits [7:0] of bitfield table.
Table 12. AFG Reset Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:0]
Response
R
0x0
Reserved. Overlaps Execute.
Function Reset. Function Group reset is
executed when the Set verb 7FF is written
with 8-bit payload of 00h. The CODEC
should issue a response to acknowledge
receipt of the verb, and then reset the
affected Function Group and all associated
widgets to their power-on reset values.
Some controls such as Configuration
Default controls should not be reset.
Overlaps Response.
[0]
Execute
W
0x0
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6.2.2.
AFG NodeInfo
Table 13. AFG NodeInfo Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F00
04
Table 14. AFG NodeInfo Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:24]
Rsvd2
R
0x0
Reserved
Starting node number for function group
subordinate nodes.
[23:16]
StartNID
R
0x2
[15:8]
[7:0]
Rsvd1
R
R
0x0
Reserved
TotalNodes
0x23
Total number of nodes.
6.2.3.
AFG Type
Table 15. AFG Type Command Verb Format
Verb ID
Payload
Response
Get
F00
05
See bitfield table.
Table 16. AFG Type Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:9]
Rsvd
R
0x0
Reserved
This node is capable of generating an
unsolicited response, and will respond to
the Unsolicited Response verb (Verb ID
708h).
[8]
UnSol
R
R
0x1
[7:0]
NodeType
0x01
Node type = Audio Function Group
6.2.4.
AFG Type
Table 17. AFG Cap Command Verb Format
Verb ID
Payload
Response
Get
F00
08
See bitfield table.
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Table 18. AFG Cap Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x0
Description
[31:17]
[16]
Rsvd3
BeepGen
Rsvd2
Reserved
R
0x1
Optional Beep Generator is present
Reserved
[15:12]
R
0x0
Typical latency = 13 frames. Number of
samples between when the sample is
received as an analog signal at the pin and
when the digital representation is
[11:8]
InputDelay
R
0xD
transmitted on the HD Audio link.
[7:4]
[3:0]
Rsvd1
R
R
0x0
Reserved
Typical latency = 13 frames. Number of
samples between when the signal is
received from the HD Audio link and when it
appears as an analog signal at the pin.
OutputDelay
0xD
6.2.5.
AFG PCMCap
Table 19. AFG PCMCap Command Verb Format
Verb ID
Payload
Response
Get
F00
0A
See bitfield table.
Table 20. AFG PCMCap Command Response Format
Bit
[31:21]
[20]
Bitfield Name
Rsvd2
B32
RW
R
Reset
0x0
0x0
0x1
0x1
0x1
0x0
0x0
Description
Reserved
R
32 bit audio formats are NOT supported
24 bit audio formats are supported
20 bit audio formats are supported
16 bit audio formats are supported
8 bit audio formats are NOT supported
Reserved
[19]
B24
R
[18]
B20
R
[17]
B16
R
[16]
B8
R
[15:12]
Rsvd1
R
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Table 20. AFG PCMCap Command Response Format
Bitfield Name Description
Bit
[11]
[10]
[9]
[8]
[7]
[6]
[5]
[4]
[3]
[2]
[1]
[0]
RW
R
R
R
R
R
R
R
R
R
R
R
R
Reset
0x0
0x1
0x1
0x1
0x1
0x1
0x1
0x0
0x0
0x0
0x0
0x0
R12
R11
R10
R9
384 KHz rate (8/1*48 KHz) NOT supported
192.0 KHz rate (4/1*48 KHz) supported
176.4 KHz rate (4/1*44.1 KHz) supported
96.0 KHz rate (2/1*48 KHz) supported
88.2 KHz rate (2/1*44.1 KHz) supported
48.0 KHz rate supported (REQUIRED)
44.1 KHz rate supported
R8
R7
R6
R5
32.0 KHz rate (2/3*48 KHz) supported
22.05 KHz rate (1/2*44.1 KHz) supported
16.0 KHz rate (1/3*48 KHz) supported
11.025 KHz rate (1/4*44.0 KHz) supported
8.0 KHz rate (1/6*48 KHz) supported
R4
R3
R2
R1
6.2.6.
AFG Stream
Table 21. AFG Stream Command Verb Format
Verb ID
Payload
Response
Get
F00
0B
See bitfield table.
Table 22. AFG Stream Command Response Format
Bit
[31:3]
[2]
Bitfield Name
Rsvd
RW
R
Reset
0x0
Description
Reserved
NonPCM
Float32
PCM
R
0x0
No support for non-PCM data.
No support for Float32 data.
PCM-formatted data supported.
[1]
R
0x0
[0]
R
0x1
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6.2.7.
AFG InAmpCap
Table 23. AFG InAmpCap Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F00
0D
Table 24. AFG InAmpCap Command Response Format
Bit
[31]
Bitfield Name
Mute
RW
R
Reset
0x0
Description
No mute capability
Reserved
[30:23]
[22:16]
[15]
Rsvd3
R
0x0
StepSize
Rsvd2
R
0x5
Size of each step in the gain range = 1.5dB
Reserved
R
0x0
Number of steps in the gain range = 15
(0dB to 22.5 dB)
[14:8]
NumSteps
R
0x0E
[7]
Rsvd1
Offset
R
R
0x0
Reserved
[6:0]
0x00
0dB-step is programmed with this offset
6.2.8.
AFG SupPwrState
Table 25. AFG SupPwrState Command Verb Format
Verb ID
Payload
Response
Get
F00
0F
See bitfield table.
Table 26. AFG SupPwrState Command Response Format
Bit
Bitfield Name RW
Reset
Description
[31:4]
Rsvd
R
0x0
Reserved
Power State D3 is supported. Allows for lowest possible
power consuming state under software control (and still
properly respond to a subsequent Power State command).
[3]
[2]
D3Sup
R
0x1
0x1
Power State D2 is supported. Allows for lowest possible
power consuming state from which it can return to fully-on
state within 10 ms.
D2Sup
R
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Table 26. AFG SupPwrState Command Response Format
Bit
Bitfield Name RW
Reset
Description
Power State D1 is supported. Allows for lowest possible
power consuming state from which it can return to fully on
state within 10ms, excepting analog pass-through circuits
which must remain fully on.
[1]
D1Sup
D0Sup
R
R
0x1
[0]
0x1
Power State D0 is supported. Node power state is fully on.
6.2.9.
AFG GPIOCnt
Table 27. AFG GPIOCnt Command Verb Format
Verb ID
Payload
Response
Get
F00
11
See bitfield table.
Table 28. AFG GPIOCnt Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Wake capability. Assuming the Wake Enable
Mask controls are enabled, GPIOs configured
as inputs can cause a wake (generate a
Status Change event on the link) when there
is a change in level on the pin.
[31]
GPIWake
R
0x1
Unsolicited Response capability. Assuming
the Unsolicited Enable Mask controls are
enabled, GPIOs configured as inputs can
generate an Unsolicited Response on the link
when there is a change in level on the pin.
[30]
GPIUnsol
R
0x1
[29:24]
[23:16]
[15:8]
[7:0]
Rsvd
R
R
R
R
0x0
0x00
0x00
Reserved
NumGPIs
NumGPOs
NumGPIOs
Number of GPI pins supported by function
Number of GPO pins supported by function
0x03 = 48-pin Number of GPIO pins supported by function
6.2.10. AFG OutAmpCap
Table 29. AFG OutAmpCap Command Verb Format
Verb ID
Payload
Response
Get
F00
12
See bitfield table.
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Table 30. AFG OutAmpCap Command Response Format
Bit
[31]
Bitfield Name
RW
R
Reset
0x1
Description
Amplifier is capable of muting
Reserved
Mute
Rsvd3
[30:23]
[22:16]
[15]
R
0x0
StepSize
Rsvd2
R
0x02
0x0
Size of each step in the gain range = 0.75dB
Reserved
R
Number of steps in the gain range = 128
(-96dB to +0dB)
[14:8]
NumSteps
R
0x7F
[7]
Rsvd1
Offset
R
R
0x0
Reserved
[6:0]
0x7F
0dB-step is programmed with this offset
6.2.11. AFG PwrState
Table 31. AFG PwrState Command Verb Format
Verb ID
F05
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
705
See bits [7:0] of bitfield table.
Table 32. AFG PwrState Command Response Format
Bit
[31:8]
[7:4]
[3:2]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
Reserved
Act
R
0x2
PS-Act: Actual power state of referenced node.
Reserved
Rsvd1
R
0x0
PS-Set: Current power setting of referenced
node.
0: All Powered-On
1: D1 = > PR0, PR1
[1:0]
Set
RW
0x2
2: D2 = > PR0, PR1, PR2, PR6, EAPD
3: D3 = > PR6, PR5, PR3, PR2, PR1, PR0,
EAPD
Note: PR4 is not mapped in HD Audio
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6.2.12. AFG UnsolResp
Table 33. AFG UnsolResp Command Verb Format
Verb ID
F08
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
708
See bits [7:0] of bitfield table.
Table 34. AFG UnsolResp Command Response Format
Bit
[31:8]
[7]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd2
En
Reserved
RW
R
0x0
Allow generation of Unsolicited Responses.
Reserved
[6]
Rsvd1
0x0
Software programmable field returned in top
six bits (31:26) of every Unsolicited
Response generated by this node.
[5:0]
Tag
RW
0x0
6.2.13. AFG GPIO
Table 35. AFG GPIO Command Verb Format
Verb ID
F15
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
715
See bits [7:0] of bitfield table.
Table 36. AFG GPIO Command Response Format
Bit
[31:5]
[4]
Bitfield Name
Rsvd
RW
R
Reset
0x0
Description
Reserved
Reserved
Reserved
Rsvd
RW
RW
0x0
[3]
Rsvd
0x0
Data for GPIO2. If this GPIO bit is
configured as Sticky (edge-sensitive) input,
it can be cleared by writing zero (one) here
when the corresponding Polarity Control bit
is zero (one).
[2]
Data2
RW
0x0
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Table 36. AFG GPIO Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Data for GPIO1. If this GPIO bit is
configured as Sticky (edge-sensitive) input,
it can be cleared by writing zero (one) here
when the corresponding Polarity Control bit
is zero (one).
[1]
Data1
Data0
RW
0x0
Data for GPIO0. If this GPIO bit is
configured as Sticky (edge-sensitive) input,
it can be cleared by writing zero (one) here
when the corresponding Polarity Control bit
is zero (one).
[0]
RW
0x0
6.2.14. AFG GPIOEn
Table 37. AFG GPIOEn Command Verb Format
Verb ID
F16
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
716
See bits [7:0] of bitfield table.
Table 38. AFG GPIOEn Command Response Format
Bit
[31:5]
[4]
Bitfield Name
Rsvd
RW
R
Reset
0x0
Description
Reserved
Reserved
Reserved
Rsvd
RW
RW
0x0
[3]
Rsvd
0x0
Enable for GPIO2:
0 = pin is disabled (Hi-Z state);
1 = pin is enabled; behavior determined by
GPIO Direction control
[2]
[1]
[0]
Mask2
Mask1
Mask0
RW
RW
RW
0x0
0x0
0x0
Enable for GPIO1:
0 = pin is disabled (Hi-Z state);
1 = pin is enabled; behavior determined by
GPIO Direction control
Enable for GPIO0:
0 = pin is disabled (Hi-Z state);
1 = pin is enabled; behavior determined by
GPIO Direction control
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6.2.15. AFG GPIODir
Table 39. AFG GPIODir Command Verb Format
Verb ID
F17
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
717
See bits [7:0] of bitfield table.
Table 40. AFG GPIODir Command Response Format
Bit
[31:5]
[4]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd
Rsvd
Rsvd
Reserved
Reserved
Reserved
RW
RW
0x0
[3]
0x0
Direction control for GPIO2
[2]
[1]
Control2
Control1
Control0
RW
RW
RW
0x0
0x0
0x0
0 = GPIO signal is configured as input
1 = GPIO signal is configured as output
Direction control for GPIO1
0 = GPIO signal is configured as input
1 = GPIO signal is configured as output
Direction control for GPIO0
0 = GPIO signal is configured as input
1 = GPIO signal is configured as output
[0]
6.2.16. AFG GPIOWakeEn
Table 41. AFG GPIOWakeEn Command Verb Format
Verb ID
F18
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
718
See bits [7:0] of bitfield table.
Table 42. AFG GPIOWakeEn Command Response Format
Bit
[31:5]
[4]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd
Rsvd
Reserved
Reserved
RW
0x0
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Table 42. AFG GPIOWakeEn Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[3]
Rsvd
W2
RW
0x0
Reserved
Wake enable for GPIO2:
0 = wake-up event is disabled;
1 = when HD Audio link is powered down
(RST# is asserted), a wake-up event will
trigger a Status Change Request event on
the link.
[2]
[1]
RW
RW
RW
0x0
0x0
0x0
Wake enable for GPIO1:
0 = wake-up event is disabled;
1 = when HD Audio link is powered down
(RST# is asserted), a wake-up event will
trigger a Status Change Request event on
the link.
W1
W0
Wake enable for GPIO0:
0 = wake-up event is disabled;
1 = when HD Audio link is powered down
(RST# is asserted), a wake-up event will
trigger a Status Change Request event on
the link.
[0]
6.2.17. AFG GPIOUnsol
Table 43. AFG GPIOUnsol Command Verb Format
Verb ID
F19
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
719
See bits [7:0] of bitfield table.
Table 44. AFG GPIOUnsol Command Response Format
Bit
[31:5]
[4]
Bitfield Name
Rsvd
RW
R
Reset
0x0
Description
Reserved
Reserved
Reserved
Rsvd
RW
RW
0x0
[3]
Rsvd
0x0
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Table 44. AFG GPIOUnsol Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Unsolicited enable mask for GPIO2. If set,
and the Unsolicited Response control for
this widget has been enabled, an unsolicited
response will be sent when GPIO0 is
configured as input and changes state.
[2]
EnMask2
EnMask1
EnMask0
RW
0x0
Unsolicited enable mask for GPIO1. If set,
and the Unsolicited Response control for
this widget has been enabled, an unsolicited
response will be sent when GPIO0 is
configured as input and changes state.
[1]
RW
RW
0x0
0x0
Unsolicited enable mask for GPIO0. If set,
and the Unsolicited Response control for
this widget has been enabled, an unsolicited
response will be sent when GPIO0 is
configured as input and changes state.
[0]
6.2.18. AFG GPIOSticky
Table 45. AFG GPIOSticky Command Verb Format
Verb ID
F1A
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
71A
See bits [7:0] of bitfield table.
Table 46. AFG GPIOSticky Command Response Format
Bit
[31:5]
[4]
Bitfield Name
Rsvd
RW
R
Reset
0x0
Description
Reserved
Reserved
Reserved
Rsvd
RW
RW
0x0
[3]
Rsvd
0x0
GPIO2 input type (when configured as
input):
0 = Non-Sticky (level-sensitive);
1 = Sticky (edge-sensitive). Sticky inputs are
cleared by writing zero to corresponding bit
of GPIO Data register. GPIOPolarity
determines rising or falling edge sensitivity.
[2]
Mask2
RW
0x0
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Table 46. AFG GPIOSticky Command Response Format
Bit
Bitfield Name
RW
Reset
Description
GPIO1 input type (when configured as
input):
0 = Non-Sticky (level-sensitive);
1 = Sticky (edge-sensitive). Sticky inputs are
cleared by writing zero to corresponding bit
of GPIO Data register. GPIOPolarity
determines rising or falling edge sensitivity.
[1]
Mask1
Mask0
RW
0x0
GPIO0 input type (when configured as
input):
0 = Non-Sticky (level-sensitive);
1 = Sticky (edge-sensitive). Sticky inputs are
cleared by writing zero to corresponding bit
of GPIO Data register. GPIOPolarity
determines rising or falling edge sensitivity.
[0]
RW
0x0
6.2.19. AFG SubID
Table 47. AFG SubID Command Verb Format
Verb ID
F20
Payload
Response
See bitfield table.
0000_0000h
0000_0000h
0000_0000h
0000_0000h
Get
00
Set1
Set2
Set3
Set4
720
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
721
722
723
Table 48. AFG SubID Command Response Format
Bit
Bitfield Name
Subsys3
RW
RW
RW
RW
RW
Reset
0x00
0x00
0x01
0x00
Description
[31:24]
[23:16]
[15:8]
[7:0]
Subsystem ID. (Any non-zero value)
Subsystem ID. (Any non-zero value)
Subsystem ID. (Any non-zero value)
Assembly ID. (Not applicable to CODEC vendors)
Subsys2
Subsys1
Assembly
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6.2.20. AFG TCKT
Table 49. AFG TCKT Command Verb Format
Verb ID
FE5
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
7E5
See bits [7:0] of bitfield table.
Table 50. AFG TCKT Command Response Format
Bit
[31:8]
[7]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd
AnaD3Enable
TCKT
Reserved
RW
RW
0x0
D3 enable signal for analog
[6:0]
0x0
Test circuit (default reset on) TBD [6:0]
6.2.21. AFG Sply
Table 51. AFG Sply Command Verb Format
Verb ID
FE6
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
7E6
See bits [7:0] of bitfield table.
Table 52. AFG Sply Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:7]
Rsvd
R
0x0
Reserved
00 = Normal Current;
01 = 80% nominal Analog Current;
10 = 120% nominal Analog Current;
11 = 140% nominal Analog Current
[6:5]
[4]
IBIAS
PinLvl
RW
RW
0x0
0x1
0 = low-level SPDIF Input (special buffer for low
level signals)
1 = standard SPDIF Input (for high level signals)
Supply Override Control. See Table below.
0 = invert ADC supply;
[3:0]
SplyOvr
RW
0x0
1 = invert DAC supply;
2 = supply value;
3 = supply override enable
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6.2.22. AFG DACMode
Table 53. AFG DACMode Command Verb Format
Verb ID
FEB
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
7EB
See bits [7:0] of bitfield table.
Table 54. AFG DACMode Command Response Format
Bit
[31:7]
[6]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd2
Reserved
ADCMixDAC
FadeFast
RW
RW
0x0
Enable mixing of ADC with DAC signal (for karaoke)
Gain ramps at the maximum rate
[5]
0x0
Gain ramping is dB linear instead of voltage linear
over time
[4]
FadeLog
Rsvd
RW
R
0x0
0x0
[3:0]
Reserved
6.2.23. AFG GPIOPlrty
Table 55. AFG GPIOPlrty Command Verb Format
Verb ID
FEE
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
7EE
See bits [7:0] of bitfield table.
Table 56. AFG GPIOPlrty Command Response Format
Bit
[31:5]
[4]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd
Rsvd
Rsvd
Reserved
Reserved
Reserved
RW
RW
0x0
[3]
0x0
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Table 56. AFG GPIOPlrty Command Response Format
Bit
Bitfield Name
RW
Reset
Description
GPIO2 Polarity
If configured as an output:
0 = inverting
1 = non-inverting
If configured as a non-sticky input:
0 = inverting
[2]
GP2
GP1
GP0
RW
0x1
1 = non-inverting
If configured as a sticky input:
0 = falling events will be detected
1 = rising events will be detected
GPIO1 Polarity;
If configured as an output:
0 = inverting
1 = non-inverting
If configured as a non-sticky input:
0 = inverting
[1]
RW
0x1
1 = non-inverting
If configured as a sticky input:
0 = falling events will be detected
1 = rising events will be detected
GPIO0 Polarity;
If configured as an output:
0 = inverting
1 = non-inverting
If configured as a non-sticky input:
0 = inverting
[0]
RW
0x1
1 = non-inverting
If configured as a sticky input:
0 = falling events will be detected
1 = rising events will be detected
6.2.24. AFG GPIODrive
Table 57. AFG GPIODrive Command Verb Format
Verb ID
FEF
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
7EF
See bits [7:0] of bitfield table.
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Table 58. AFG GPIODrive Command Response Format
Bit
[31:5]
[4]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd
Rsvd
Rsvd
Reserved
Reserved
Reserved
RW
RW
0x0
[3]
0x0
GPIO2 Drive Mode;
[2]
[1]
OD2
OD1
OD0
RW
RW
RW
0x0
0x0
0x0
0 = push-pull (drive 0 and 1),
1 = open drain (drive 0, float for 1).
GPIO1 Drive Mode;
0 = push-pull (drive 0 and 1),
1 = open drain (drive 0, float for 1).
GPIO0 Drive Mode;
0 = push-pull (drive 0 and 1),
1 = open drain (drive 0, float for 1).
[0]
6.2.25. AFG DMic
Table 59. AFG DMic Command Verb Format
Verb ID
FF0
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
7F0
See bits [7:0] of bitfield table.
Table 60. AFG DMic Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:4]
Rsvd
R
0x0
Reserved
Selects what phase of the DigMic clock the
data should be latched:
0 = rising edge,
[3:2]
[1:0]
PhAdj
Rate
RW
RW
0x0
0x2
1 = center of high,
2 = falling edge,
3 = center of low.
Selects the DigMic rate:
0 = 4.704 MHz,
1 = 3.528 MHz,
2 = 2.352 MHz,
3 = 1.176 MHz.
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6.3. DAC0 Node (NID = 0x02)
6.3.1.
DAC0 Cnvtr
Table 61. DAC0 Cnvtr Command Verb Format
Verb ID
Payload
0000
Response
Get
A
2
See bitfield table.
0000_0000h
Set1
See bits [15:0] of bitfield table.
Table 62. DAC0 Cnvtr Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:16]
Rsvd2
R
0x0
Reserved
Stream Type: only PCM streams are
supported by this widget.
[15]
[14]
StrmType
R
0x0
0x0
Sample Base Rate
0 = 48 KHz
1 = 44.1 KHz
FrmtSmplRate
RW
Sample Base Rate Multiple
000 = 48 KHz/44.1 KHz or less
001 = x2
[13:11]
SmplRateMultp
RW
0x0
010 = Reserved (x3)
011 = x4
100-111 = Reserved
Sample Base Rate Divisor
000 = Divide by 1
001 = Divide by 2
010 = Divide by 3
011 = Divide by 4
100 = Divide by 5
101 = Divide by 6
110 = Divide by 7
111 = Divide by 8
[10:8]
[7]
SmplRateDiv
Rsvd1
RW
R
0x0
0x0
Reserved
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Table 62. DAC0 Cnvtr Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Bits per Sample
000 = 8 bits
001 = 16 bits
010 = 20 bits
011 = 24 bits
[6:4]
BitsPerSmpl
NmbrChan
RW
0x3
100-111 = Reserved
Number of Channels Number of channels in
each frame of the stream.
0000 = 1 channel
[3:0]
RW
0x1
0001 = 2 channels
...
1111 = 16 channels
6.3.2.
DAC0 OutAmpRight
Table 63. DAC0 OutAmpRight Command Verb Format
Verb ID
B80
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
390
See bits [7:0] of bitfield table.
Table 64. DAC0 OutAmpRight Command Response Format
Bit
[31:8]
[7]
Bitfield Name
Rsvd
RW
R
Reset
0x0
Description
Reserved
1 = mute is active
Amplifier gain step number
Mute
RW
RW
0x1
[6:0]
Gain
0x7F
6.3.3.
DAC0 OutAmpLeft
Table 65. DAC0 OutAmpLeft Command Verb Format
Verb ID
BA0
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
3A0
See bits [7:0] of bitfield table.
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Table 66. DAC0 OutAmpLeft Command Response Format
Bit
[31:8]
[7]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd
Mute
Gain
Reserved
RW
RW
0x1
1 = mute is active
[6:0]
0x7F
Amplifier gain step number
6.3.4.
DAC0 WCap
Table 67. DAC0 WCap Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F00
09
Table 68. DAC0 WCap Command Response Format
Bit
[31:24]
[23:20]
[19:16]
[15:12]
[11]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
0x0
0xD
0x0
0x1
0x1
0x0
0x0
0x0
0x0
0x0
Description
Reserved
Type
R
Widget type = Audio Output
Delay
R
Number of sample delays through widget
Reserved
Rsvd1
R
SwapCap
PwrCntrl
Dig
R
Left and right channels can be swapped
Power State control is supported
Widget supports an Analog stream
No connection list is present
No support for Unsolicited Response
No Processing Controls parameter.
No support for striping
[10]
R
[9]
R
[8]
ConnList
UnSolCap
ProcWidget
Stripe
R
[7]
R
[6]
R
[5]
R
No format info; use default format parameters
from Audio Function node instead
[4]
[3]
FormatOvrd
AmpParOvrd
R
R
0x0
0x0
No amplifier info; use default amplifier
parameters from Audio Function node instead
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Table 68. DAC0 WCap Command Response Format
Bit
[2]
[1]
[0]
Bitfield Name
RW
R
Reset
0x1
Description
OutAmpPrsnt
InAmpPrsnt
Stereo
Output amp
No input amp
Stereo widget
R
0x0
R
0x1
6.3.5.
DAC0 PwrState
Table 69. DAC0 PwrState Command Verb Format
Verb ID
F05
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
705
See bits [7:0] of bitfield table.
Table 70. DAC0 PwrState Command Response Format
Bit
[31:8]
[7:4]
[3:2]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
Reserved
Act
R
0x3
PS-Act: Actual power state of referenced node.
Reserved
Rsvd1
R
0x0
PS-Set: Current power setting of referenced
node.
00 - Fully on.
01 - Fully on.
10 - Fully on.
11 - Powered down.
[1:0]
Set
RW
0x3
6.3.6.
DAC0 CnvtrID
Table 71. DAC0 CnvtrID Command Verb Format
Verb ID
F06
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
706
See bits [7:0] of bitfield table.
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Table 72. DAC0 CnvtrID Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
Strm
Ch
R
0x0
Reserved
Software-programmable integer representing link
stream ID used by the converter widget. By convention
stream 0 is reserved as unused.
[7:4]
RW
RW
0x0
0x0
[3:0]
Integer representing lowest channel used by converter.
6.3.7.
DAC0 LR
Table 73. DAC0 LR Command Verb Format
Verb ID
F0C
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
70C
See bits [7:0] of bitfield table.
Table 74. DAC0 LR Command Response Format
Bit
[31:3]
[2]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
Reserved
SwapEn
Rsvd1
RW
R
0x0
1 = enable swapping of left and right channels.
Reserved
[1:0]
0x0
6.4. DAC1 Node (NID = 0x03)
6.4.1.
DAC1 Cnvtr
Table 75. DAC1 Cnvtr Command Verb Format
Verb ID
Payload
0000
Response
See bitfield table.
0000_0000h
Get
A
2
Set1
See bits [15:0] of bitfield table.
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Table 76. DAC1 Cnvtr Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:16]
Rsvd2
R
0x0
Reserved
Stream Type: only PCM streams are
supported by this widget.
[15]
[14]
StrmType
R
0x0
0x0
Sample Base Rate
0 = 48 KHz
1 = 44.1 KHz
FrmtSmplRate
SmplRateMultp
RW
Sample Base Rate Multiple
000 = 48 KHz / 44.1 KHz or less
001 = x2
010 = Reserved (x3)
011 = x4
100-111 = Reserved
[13:11]
[10:8]
RW
RW
0x0
0x0
Sample Base Rate Divisor
000 = Divide by 1
001 = Divide by 2
010 = Divide by 3
011 = Divide by 4
100 = Divide by 5
101 = Divide by 6
110 = Divide by 7
111 = Divide by 8
SmplRateDiv
[7]
Rsvd1
R
0x0
0x3
Reserved
Bits per Sample
000 = 8 bits
001 = 16 bits
[6:4]
BitsPerSmpl
RW
010 = 20 bits
011 = 24 bits
100-111 = Reserved
Number of Channels Number of channels in
each frame of the stream.
0000 = 1 channel
[3:0]
NmbrChan
RW
0x1
0001 = 2 channels
...
1111 = 16 channels
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6.4.2.
6.4.3.
6.4.4.
DAC1 OutAmpRight
Table 77. DAC1 OutAmpRight Command Verb Format
Verb ID
B80
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
390
See bits [7:0] of bitfield table.
Table 78. DAC1 OutAmpRight Command Response Format
Bit
[31:8]
[7]
Bitfield Name
Rsvd
RW
R
Reset
0x0
Description
Reserved
1 = mute is active
Amplifier gain step number
Mute
RW
RW
0x1
[6:0]
Gain
0x7F
DAC1 OutAmpLeft
Table 79. DAC1 OutAmpLeft Command Verb Format
Verb ID
BA0
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
3A0
See bits [7:0] of bitfield table.
Table 80. DAC1 OutAmpLeft Command Response Format
Bit
[31:8]
[7]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd
Mute
Gain
Reserved
1 = mute is active
Amplifier gain step number
RW
RW
0x1
[6:0]
0x7F
DAC1 WCap
Table 81. DAC1 WCap Command Verb Format
Verb ID
Payload
Response
Get
F00
09
See bitfield table.
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Table 82. DAC1 WCap Command Response Format
Bit
[31:24]
[23:20]
[19:16]
[15:12]
[11]
Bitfield Name
RW
R
Reset
0x0
0x0
0xD
0x0
0x1
0x1
0x0
0x0
0x0
0x0
0x0
Description
Rsvd2
Type
Reserved
Widget type = Audio Output
R
Delay
R
Number of sample delays through widget
Reserved
Rsvd1
R
SwapCap
PwrCntrl
Dig
R
Left and right channels can be swapped
Power State control is supported
Widget supports an Analog stream
No connection list is present
[10]
R
[9]
R
[8]
ConnList
UnSolCap
ProcWidget
Stripe
R
[7]
R
No support for Unsolicited Response
No Processing Controls parameter.
No support for striping
[6]
R
[5]
R
No format info; use default format
parameters from Audio Function node
instead
[4]
[3]
FormatOvrd
AmpParOvrd
R
R
0x0
0x0
No amplifier info; use default amplifier
parameters from Audio Function node
instead
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x1
0x0
0x1
Output amp
No input amp
Stereo widget
6.4.5.
DAC1 PwrState
Table 83. DAC1 PwrState Command Verb Format
Verb ID
F05
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
705
See bits [7:0] of bitfield table.
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Table 84. DAC1 PwrState Command Response Format
Bit
[31:8]
[7:4]
[3:2]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd2
Act
Reserved
R
0x3
PS-Act: Actual power state of referenced node.
Reserved
Rsvd1
R
0x0
PS-Set: Current power setting of referenced
node.
00 - Fully on.
01 - Fully on.
10 - Fully on.
11 - Powered down.
[1:0]
Set
RW
0x3
6.4.6.
DAC1 CnvtrID
Table 85. DAC1 CnvtrID Command Verb Format
Verb ID
F06
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
706
See bits [7:0] of bitfield table.
Table 86. DAC1 CnvtrID Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
R
0x0
Reserved
Software-programmable integer
representing link stream ID used by the
converter widget. By convention stream 0 is
reserved as unused.
[7:4]
[3:0]
Strm
Ch
RW
RW
0x0
0x0
Integer representing lowest channel used by
converter.
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6.4.7.
DAC1 LR
Table 87. DAC1 LR Command Verb Format
Verb ID
F0C
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
70C
See bits [7:0] of bitfield table.
Table 88. DAC1 LR Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:3]
Rsvd2
R
0x0
Reserved
1 = enable swapping of left and right
channels.
[2]
SwapEn
Rsvd1
RW
R
0x0
0x0
[1:0]
Reserved
6.5. DAC2 Node (NID = 0x04)
6.5.1.
DAC2 Cnvtr
Table 89. DAC2 Cnvtr Command Verb Format
Verb ID
Payload
0000
Response
See bitfield table.
0000_0000h
Get
A
2
Set1
See bits [15:0] of bitfield table.
Table 90. DAC2 Cnvtr Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:16]
Rsvd2
R
0x0
Reserved
Stream Type: only PCM streams are
supported by this widget.
[15]
[14]
StrmType
R
0x0
0x0
Sample Base Rate
0 = 48 KHz
1 = 44.1 KHz
FrmtSmplRate
RW
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Table 90. DAC2 Cnvtr Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Sample Base Rate Multiple
000 = 48 KHz / 44.1 KHz or less
001 = x2
[13:11]
SmplRateMultp
SmplRateDiv
RW
0x0
010 = Reserved (x3)
011 = x4
100-111 = Reserved
Sample Base Rate Divisor
000 = Divide by 1
001 = Divide by 2
010 = Divide by 3
011 = Divide by 4
100 = Divide by 5
101 = Divide by 6
110 = Divide by 7
111 = Divide by 8
[10:8]
RW
0x0
[7]
Rsvd1
R
0x0
0x3
Reserved
Bits per Sample
000 = 8 bits
001 = 16 bits
[6:4]
BitsPerSmpl
RW
010 = 20 bits
011 = 24 bits
100-111 = Reserved
Number of Channels Number of channels in
each frame of the stream.
0000 = 1 channel
[3:0]
NmbrChan
RW
0x1
0001 = 2 channels
...
1111 = 16 channels
6.5.2.
DAC2 OutAmpRight
Table 91. DAC2 OutAmpRight Command Verb Format
Verb ID
B80
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
390
See bits [7:0] of bitfield table.
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Table 92. DAC2 OutAmpRight Command Response Format
Bit
[31:8]
[7]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd
Mute
Gain
Reserved
RW
RW
0x1
1 = mute is active
[6:0]
0x7F
Amplifier gain step number
6.5.3.
DAC2 OutAmpLeft
Table 93. DAC2 OutAmpLeft Command Verb Format
Verb ID
BA0
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
3A0
See bits [7:0] of bitfield table.
Table 94. DAC2 OutAmpLeft Command Response Format
Bit
[31:8]
[7]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd
Mute
Gain
Reserved
1 = mute is active
Amplifier gain step number
RW
RW
0x1
[6:0]
0x7F
6.5.4.
DAC2 WCap
Table 95. DAC2 WCap Command Verb Format
Verb ID
Payload
Response
Get
F00
09
See bitfield table.
Table 96. DAC2 WCap Command Response Format
Bit
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
[31:24]
[23:20]
[19:16]
Reserved
Type
R
0x0
Widget type = Audio Output
Delay
R
0xD
Number of sample delays through widget
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Table 96. DAC2 WCap Command Response Format
Bit
[15:12]
[11]
[10]
[9]
Bitfield Name
RW
R
Reset
0x0
0x1
0x1
0x0
0x0
0x0
0x0
0x0
Description
Rsvd1
SwapCap
PwrCntrl
Dig
Reserved
R
Left and right channels can be swapped
Power State control is supported
Widget supports an Analog stream
No connection list is present
R
R
[8]
ConnList
UnSolCap
ProcWidget
Stripe
R
[7]
R
No support for Unsolicited Response
No Processing Controls parameter.
No support for striping
[6]
R
[5]
R
No format info; use default format parameters
from Audio Function node instead
[4]
[3]
FormatOvrd
AmpParOvrd
R
R
0x0
0x0
No amplifier info; use default amplifier
parameters from Audio Function node instead
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x1
0x0
0x1
Output amp
No input amp
Stereo widget
6.5.5.
DAC2 PwrState
Table 97. DAC2 PwrState Command Verb Format
Verb ID
F05
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
705
See bits [7:0] of bitfield table.
Table 98. DAC2 PwrState Command Response Format
Bit
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
[31:8]
[7:4]
Reserved
PS-Act: Actual power state of referenced node.
Act
R
0x3
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Table 98. DAC2 PwrState Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[3:2]
Rsvd1
Set
R
0x0
Reserved
PS-Set: Current power setting of referenced
node.
00 - Fully on.
01 - Fully on.
10 - Fully on.
11 - Powered down.
[1:0]
RW
0x3
6.5.6.
DAC2 CnvtrID
Table 99. DAC2 CnvtrID Command Verb Format
Verb ID
F06
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
706
See bits [7:0] of bitfield table.
Table 100. DAC2 CnvtrID Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
R
0x0
Reserved
Software-programmable integer
representing link stream ID used by the
converter widget. By convention stream 0 is
reserved as unused.
[7:4]
Strm
Ch
RW
RW
0x0
0x0
Integer representing lowest channel used by
converter.
[3:0]
6.5.7.
DAC2 LR
Table 101. DAC2 LR Command Verb Format
Verb ID
F0C
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
70C
See bits [7:0] of bitfield table.
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Table 102. DAC2 LR Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:3]
Rsvd2
SwapEn
Rsvd1
R
0x0
Reserved
1 = enable swapping of left and right
channels.
[2]
RW
R
0x0
0x0
[1:0]
Reserved
6.6. DAC3 Node (NID = 0x05)
6.6.1.
DAC3 Cnvtr
Table 103. DAC3 Cnvtr Command Verb Format
Verb ID
Payload
0000
Response
See bitfield table.
0000_0000h
Get
A
2
Set1
See bits [15:0] of bitfield table.
Table 104. DAC3 Cnvtr Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:16]
Rsvd2
R
0x0
Reserved
Stream Type: only PCM streams are
supported by this widget.
[15]
[14]
StrmType
R
0x0
0x0
Sample Base Rate
0 = 48 KHz
1 = 44.1 KHz
FrmtSmplRate
RW
Sample Base Rate Multiple
000 = 48 KHz / 44.1 KHz or less
001 = x2
[13:11]
SmplRateMultp
RW
0x0
010 = Reserved (x3)
011 = x4
100-111 = Reserved
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Table 104. DAC3 Cnvtr Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Sample Base Rate Divisor
000 = Divide by 1
001 = Divide by 2
010 = Divide by 3
011 = Divide by 4
100 = Divide by 5
101 = Divide by 6
110 = Divide by 7
111 = Divide by 8
[10:8]
SmplRateDiv
RW
0x0
[7]
Rsvd1
R
0x0
0x3
Reserved
Bits per Sample
000 = 8 bits
001 = 16 bits
[6:4]
BitsPerSmpl
RW
010 = 20 bits
011 = 24 bits
100-111 = Reserved
Number of Channels Number of channels in
each frame of the stream.
0000 = 1 channel
[3:0]
NmbrChan
RW
0x1
0001 = 2 channels
...
1111 = 16 channels
6.6.2.
DAC3 OutAmpRight
Table 105. DAC3 OutAmpRight Command Verb Format
Verb ID
B80
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
390
See bits [7:0] of bitfield table.
Table 106. DAC3 OutAmpRight Command Response Format
Bit
[31:8]
[7]
Bitfield Name
Rsvd
RW
R
Reset
0x0
Description
Reserved
1 = mute is active
Amplifier gain step number
Mute
RW
RW
0x1
[6:0]
Gain
0x7F
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6.6.3.
DAC3 OutAmpLeft
Table 107. DAC3 OutAmpLeft Command Verb Format
Verb ID
BA0
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
3A0
See bits [7:0] of bitfield table.
Table 108. DAC3 OutAmpLeft Command Response Format
Bit
[31:8]
[7]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd
Mute
Gain
Reserved
1 = mute is active
Amplifier gain step number
RW
RW
0x1
[6:0]
0x7F
6.6.4.
DAC3 WCap
Table 109. DAC3 WCap Command Verb Format
Verb ID
Payload
Response
Get
F00
09
See bitfield table.
Table 110. DAC3 WCap Command Response Format
Bit
[31:24]
[23:20]
[19:16]
[15:12]
[11]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
0x0
0xD
0x0
0x1
0x1
0x0
0x0
0x0
Description
Reserved
Type
R
Widget type = Audio Output
Delay
R
Number of sample delays through widget
Reserved
Rsvd1
R
SwapCap
PwrCntrl
Dig
R
Left and right channels can be swapped
Power State control is supported
Widget supports an Analog stream
No connection list is present
[10]
R
[9]
R
[8]
ConnList
UnSolCap
R
[7]
R
No support for Unsolicited Response
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Table 110. DAC3 WCap Command Response Format
Bit
[6]
[5]
Bitfield Name
RW
R
Reset
0x0
Description
ProcWidget
Stripe
No Processing Controls parameter.
No support for striping
R
0x0
No format info; use default format
parameters from Audio Function node
instead
[4]
[3]
FormatOvrd
AmpParOvrd
R
R
0x0
0x0
No amplifier info; use default amplifier
parameters from Audio Function node
instead
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x1
0x0
0x1
Output amp
No input amp
Stereo widget
6.6.5.
DAC3 PwrState
Table 111. DAC3 PwrState Command Verb Format
Verb ID
F05
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
705
See bits [7:0] of bitfield table.
Table 112. DAC3 PwrState Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd2
R
0x0
Reserved
PS-Act: Actual power state of referenced
node.
[7:4]
[3:2]
Act
R
R
0x3
0x0
Rsvd1
Reserved
PS-Set: Current power setting of referenced
node.
00 - Fully on.
01 - Fully on.
10 - Fully on.
11 - Powered down.
[1:0]
Set
RW
0x3
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6.6.6.
DAC3 CnvtrID
Table 113. DAC3 CnvtrID Command Verb Format
Verb ID
F06
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
706
See bits [7:0] of bitfield table.
Table 114. DAC3 CnvtrID Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
R
0x0
Reserved
Software-programmable integer
representing link stream ID used by the
converter widget. By convention stream 0 is
reserved as unused.
[7:4]
Strm
Ch
RW
RW
0x0
0x0
Integer representing lowest channel used by
converter.
[3:0]
6.6.7.
DAC3 LR
Table 115. DAC3 LR Command Verb Format
Verb ID
F0C
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
70C
See bits [7:0] of bitfield table.
Table 116. DAC3 LR Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:3]
Rsvd2
R
0x0
Reserved
1 = enable swapping of left and right
channels.
[2]
SwapEn
Rsvd1
RW
R
0x0
0x0
[1:0]
Reserved
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6.7. ADC0 Node (NID = 0x07)
6.7.1.
ADC0 Cnvtr
Table 117. ADC0 Cnvtr Command Verb Format
Verb ID
Payload
0000
Response
Get
A
2
See bitfield table.
0000_0000h
Set1
See bits [15:0] of bitfield table.
Table 118. ADC0 Cnvtr Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:16]
Rsvd2
R
0x0
Reserved
Stream Type: only PCM streams are
supported by this widget.
[15]
[14]
StrmType
R
0x0
0x0
Sample Base Rate
0 = 48 KHz
1 = 44.1 KHz
FrmtSmplRate
RW
Sample Base Rate Multiple
000 = 48 KHz / 44.1 KHz or less
001 = x2
[13:11]
SmplRateMultp
RW
0x0
010 = Reserved (x3)
011 = x4
100-111 = Reserved
Sample Base Rate Divisor
000 = Divide by 1
001 = Divide by 2
010 = Divide by 3
011 = Divide by 4
100 = Divide by 5
101 = Divide by 6
110 = Divide by 7
111 = Divide by 8
[10:8]
[7]
SmplRateDiv
Rsvd1
RW
R
0x0
0x0
Reserved
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Table 118. ADC0 Cnvtr Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Bits per Sample
000 = 8 bits
001 = 16 bits
010 = 20 bits
011 = 24 bits
[6:4]
BitsPerSmpl
NmbrChan
RW
0x3
100-111 = Reserved
Number of Channels Number of channels in
each frame of the stream.
0000 = 1 channel
[3:0]
RW
0x1
0001 = 2 channels
...
1111 = 16 channels
6.7.2.
ADC0 WCap
Table 119. ADC0 WCap Command Verb Format
Verb ID
Payload
Response
Get
F00
09
See bitfield table.
Table 120. ADC0 WCap Command Response Format
Bit
[31:24]
[23:20]
[19:16]
[15:12]
[11]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
0x1
0xD
0x0
0x0
0x1
0x0
0x1
0x0
Description
Reserved
Type
R
Widget type = Audio Input
Delay
R
Number of sample delays through widget
Reserved
Rsvd1
R
SwapCap
PwrCntrl
Dig
R
No left/right swap capability
Power State control is supported
Widget supports an Analog stream
Connection list is present
[10]
R
[9]
R
[8]
ConnList
UnSolCap
R
[7]
R
No support for Unsolicited Response
Software should query the Processing
Controls parameter for this widget.
[6]
ProcWidget
R
0x1
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Table 120. ADC0 WCap Command Response Format
Bit
Bitfield Name
RW
Reset
Description
No support for striping
[5]
Stripe
R
0x0
No format info; use default format
parameters from Audio Function node
instead
[4]
[3]
FormatOvrd
R
R
0x0
0x0
No amplifier info; use default amplifier
parameters from Audio Function node
instead
AmpParOvrd
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x0
0x0
0x1
No output amp
No input amp
Stereo widget
6.7.3.
ADC0 ConLst
Table 121. ADC0 ConLst Command Verb Format
Verb ID
Payload
Response
Get
F00
0E
See bitfield table.
Table 122. ADC0 ConLst Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
R
0x0
Reserved.
Connection list uses short-form (7-bit) NID
entries.
[7]
LForm
ConL
R
R
0x0
[6:0]
0x01
Number of NID entries in connection list.
6.7.4.
ADC0 ConLstEntry
Table 123. ADC0 ConLstEntry Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
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Table 124. ADC0 ConLstEntry Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x00
0x00
0x00
0x1B
Description
Unused list entry.
[31:24]
[23:16]
[15:8]
[7:0]
ConL3
ConL2
ConL1
ConL0
R
Unused list entry.
Unused list entry.
ADC0Mux widget
R
R
6.7.5.
ADC0 ProcState
Table 125. ADC0 ProcState Command Verb Format
Verb ID
F03
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
703
See bits [7:0] of bitfield table.
Table 126. ADC0 ProcState Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd2
R
0x0
Reserved
High Pass Filter Offset Calculation Disable
0 = Calculation enabled.
[7]
HPFOCDIS
Rsvd1
RW
R
0x0
0x0
1 = Calculation disabled.
[6:2]
Reserved
Processing State = 00 (OFF): bypass the
ADC high pass filter;
Processing State = 01, 10, 11 (ON or
BENIGN): ADC high pass filter is enabled.
[1:0]
ADCHPFByp
RW
0x1
6.7.6.
ADC0 PwrState
Table 127. ADC0 PwrState Command Verb Format
Verb ID
F05
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
705
See bits [7:0] of bitfield table.
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Table 128. ADC0 PwrState Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd2
Act
R
0x0
Reserved
PS-Act: Actual power state of referenced
node.
[7:4]
[3:2]
R
R
0x3
0x0
Rsvd1
Reserved
PS-Set: Current power setting of referenced
node.
00 - Fully on.
[1:0]
Set
RW
0x3
01 - Fully on.
10 - Fully on.
11 - Powered down (default)
6.7.7.
ADC0 CnvtrID
Table 129. ADC0 CnvtrID Command Verb Format
Verb ID
F06
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
706
See bits [7:0] of bitfield table.
Table 130. ADC0 CnvtrID Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
R
0x0
Reserved
Software-programmable integer
representing link stream ID used by the
converter widget. By convention stream 0 is
reserved as unused.
[7:4]
[3:0]
Strm
Ch
RW
RW
0x0
0x0
Integer representing lowest channel used by
converter
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6.8. ADC1 Node (NID = 0x08)
6.8.1.
ADC1 Cnvtr
Table 131. ADC1 Cnvtr Command Verb Format
Verb ID
Payload
0000
Response
Get
A
2
See bitfield table.
0000_0000h
Set1
See bits [15:0] of bitfield table.
Table 132. ADC1 Cnvtr Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:16]
Rsvd2
R
0x0
Reserved
Stream Type: only PCM streams are
supported by this widget.
[15]
[14]
StrmType
R
0x0
0x0
Sample Base Rate
0 = 48 KHz
1 = 44.1 KHz
FrmtSmplRate
RW
Sample Base Rate Multiple
000 = 48 KHz / 44.1 KHz or less
001 = x2
[13:11]
SmplRateMultp
RW
0x0
010 = Reserved (x3)
011 = x4
100-111 = Reserved
Sample Base Rate Divisor
000 = Divide by 1
001 = Divide by 2
010 = Divide by 3
011 = Divide by 4
100 = Divide by 5
101 = Divide by 6
110 = Divide by 7
111 = Divide by 8
[10:8]
[7]
SmplRateDiv
Rsvd1
RW
R
0x0
0x0
Reserved
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Table 132. ADC1 Cnvtr Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Bits per Sample
000 = 8 bits
001 = 16 bits
010 = 20 bits
011 = 24 bits
[6:4]
BitsPerSmpl
NmbrChan
RW
0x3
100-111 = Reserved
Number of Channels Number of channels in
each frame of the stream.
0000 = 1 channel
[3:0]
RW
0x1
0001 = 2 channels
...
1111 = 16 channels
6.8.2.
ADC1 WCap
Table 133. ADC1 WCap Command Verb Format
Verb ID
Payload
Response
Get
F00
09
See bitfield table.
Table 134. ADC1 WCap Command Response Format
Bit
[31:24]
[23:20]
[19:16]
[15:12]
[11]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
0x1
0xD
0x0
0x0
0x1
0x0
0x1
0x0
Description
Reserved
Type
R
Widget type = Audio Input
Delay
R
Number of sample delays through widget
Reserved
Rsvd1
R
SwapCap
PwrCntrl
Dig
R
No left/right swap capability
Power State control is supported
Widget supports an Analog stream
Connection list is present
[10]
R
[9]
R
[8]
ConnList
UnSolCap
R
[7]
R
No support for Unsolicited Response
Software should query the Processing
Controls parameter for this widget.
[6]
ProcWidget
R
0x1
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Table 134. ADC1 WCap Command Response Format
Bit
Bitfield Name
RW
Reset
Description
No support for striping
[5]
Stripe
R
0x0
No format info; use default format
parameters from Audio Function node
instead
[4]
[3]
FormatOvrd
R
R
0x0
0x0
No amplifier info; use default amplifier
parameters from Audio Function node
instead
AmpParOvrd
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x0
0x0
0x1
No output amp
No input amp
Stereo widget
6.8.3.
ADC1 ConLst
Table 135. ADC1 ConLst Command Verb Format
Verb ID
Payload
Response
Get
F00
0E
See bitfield table.
Table 136. ADC1 ConLst Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
R
0x0
Reserved.
Connection list uses short-form (7-bit) NID
entries.
[7]
LForm
ConL
R
R
0x0
[6:0]
0x01
Number of NID entries in connection list.
6.8.4.
ADC1 ConLstEntry
Table 137. ADC1 ConLstEntry Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
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Table 138. ADC1 ConLstEntry Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x00
0x00
0x00
0x1C
Description
Unused list entry.
[31:24]
[23:16]
[15:8]
[7:0]
ConL3
ConL2
ConL1
ConL0
R
Unused list entry.
Unused list entry.
ADC1Mux widget
R
R
6.8.5.
ADC1 ProcState
Table 139. ADC1 ProcState Command Verb Format
Verb ID
F03
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
703
See bits [7:0] of bitfield table.
Table 140. ADC1 ProcState Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd2
HPFOCDIS
Rsvd1
R
0x0
Reserved
High Pass Filter Offset Calculation Disable
0 = Calculation enabled.
1 = Calculation disabled.
[7]
RW
R
0x0
0x0
[6:2]
Reserved
Processing State = 00 (OFF): bypass the ADC
high pass filter;
Processing State = 01, 10, 11 (ON or
BENIGN): ADC high pass filter is enabled.
[1:0]
ADCHPFByp
RW
0x1
6.8.6.
ADC1 PwrState
Table 141. ADC1 PwrState Command Verb Format
Verb ID
F05
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
705
See bits [7:0] of bitfield table.
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Table 142. ADC1 PwrState Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd2
Act
R
0x0
Reserved
PS-Act: Actual power state of referenced
node.
[7:4]
[3:2]
R
R
0x3
0x0
Rsvd1
Reserved
PS-Set: Current power setting of referenced
node.
00 - Fully on.
[1:0]
Set
RW
0x3
01 - Fully on.
10 - Fully on.
11 - Powered down (default)
6.8.7.
ADC1 CnvtrID
Table 143. ADC1 CnvtrID Command Verb Format
Verb ID
F06
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
706
See bits [7:0] of bitfield table.
Table 144. ADC1 CnvtrID Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
R
0x0
Reserved
Software-programmable integer
representing link stream ID used by the
converter widget. By convention stream 0 is
reserved as unused.
[7:4]
[3:0]
Strm
Ch
RW
RW
0x0
0x0
Integer representing lowest channel used by
converter
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6.9. SPDIFOut Node (NID = 0x1E)
6.9.1.
SPDIFOut Cnvtr
Table 145. SPDIFOut Cnvtr Command Verb Format
Verb ID
Payload
0000
Response
Get
A
2
See bitfield table.
0000_0000h
Set1
See bits [15:0] of bitfield table.
Table 146. SPDIFOut Cnvtr Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:16]
Rsvd2
R
0x0
Reserved
Stream Type
0 = PCM
[15]
[14]
FrmtNonPCM
FrmtSmplRate
RW
RW
0x0
0x0
1 = Non-PCM (remaining bits in this verb
have other meanings)
Sample Base Rate
0 = 48 KHz
1 = 44.1 KHz
Sample Base Rate Multiple
000 = 48 KHz / 44.1 KHz or less
001 = x2
[13:11]
SmplRateMultp
RW
0x0
010 = Reserved (x3)
011 = x4
100-111 = Reserved
Sample Base Rate Divisor
000 = Divide by 1
001 = Divide by 2
010 = Divide by 3
011 = Divide by 4
100 = Divide by 5
101 = Divide by 6
110 = Divide by 7
111 = Divide by 8
[10:8]
[7]
SmplRateDiv
Rsvd1
RW
R
0x0
0x0
Reserved
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Table 146. SPDIFOut Cnvtr Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Bits per Sample
000 = 8 bits
001 = 16 bits
010 = 20 bits
011 = 24 bits
[6:4]
BitsPerSmpl
NmbrChan
RW
0x3
100-111 = Reserved
Number of Channels Number of channels in
each frame of the stream.
0000 = 1 channel
[3:0]
SPDIFOut WCap
Get
RW
0x1
0001 = 2 channels
...
1111 = 16 channels
6.9.2.
Table 147. SPDIFOut WCap Command Verb Format
Verb ID
Payload
Response
F00
09
See bitfield table.
Table 148. SPDIFOut WCap Command Response Format
Bit
[31:24]
[23:20]
[19:16]
[15:12]
[11]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
0x0
0x4
0x0
0x0
0x0
0x1
0x0
0x0
0x0
Description
Reserved
Type
R
Widget type = Audio Output
Delay
R
Number of sample delays through widget
Reserved
Rsvd1
R
SwapCap
PwrCntrl
Dig
R
No left/right channel swap capability
No support for Power State control
Widget supports a Digital stream
No connection list is present
[10]
R
[9]
R
[8]
ConnList
UnSolCap
ProcWidget
R
[7]
R
No support for Unsolicited Response
No Processing Controls parameter
[6]
R
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Table 148. SPDIFOut WCap Command Response Format
Bit
Bitfield Name
RW
Reset
Description
No support for striping
[5]
Stripe
R
0x0
Widget contains format info; software
should query
[4]
[3]
FormatOvrd
R
R
0x1
0x0
No amplifier info; use default amplifier
parameters from Audio Function node
instead
AmpParOvrd
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x0
0x0
0x1
No output amp
No input amp
Stereo widget
6.9.3.
SPDIFOut PCM
Table 149. SPDIFOut PCM Command Verb Format
Verb ID
Payload
Response
Get
F00
0A
See bitfield table.
Table 150. SPDIFOut PCM Command Response Format
Bit
[31:21]
[20]
Bitfield Name
Rsvd2
B32
RW
R
Reset
0x0
0x0
0x1
0x1
0x1
0x0
0x0
0x0
0x1
0x1
Description
Reserved
R
32 bit audio formats are NOT supported
24 bit audio formats are supported
20 bit audio formats are supported
16 bit audio formats are supported
8 bit audio formats are NOT supported
Reserved
[19]
B24
R
[18]
B20
R
[17]
B16
R
[16]
B8
R
[15:12]
[11]
Rsvd1
R12
R
R
384 KHz rate (8/1*48 KHz) NOT supported
192.0 KHz rate (4/1*48 KHz) supported
176.4 KHz rate (4/1*44.1 KHz) supported
[10]
R11
R
[9]
R10
R
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Table 150. SPDIFOut PCM Command Response Format
Bit
[8]
[7]
[6]
[5]
[4]
Bitfield Name
RW
R
Reset
0x1
Description
R9
R8
R7
R6
R5
96.0 KHz rate (2/1*48 KHz) supported
88.2 KHz rate (2/1*44.1 KHz) supported
48.0 KHz rate supported (REQUIRED)
44.1 KHz rate supported
R
0x1
R
0x1
R
0x1
R
0x0
32.0 KHz rate (2/3*48 KHz) NOT supported
22.05 KHz rate (1/2*44.1 KHz) NOT
supported
[3]
[2]
[1]
[0]
R4
R3
R2
R1
R
R
R
R
0x0
0x0
0x0
0x0
16.0 KHz rate (1/3*48 KHz) NOT supported
11.025 KHz rate (1/4*44.0 KHz) NOT
supported
8.0 KHz rate (1/6*48 KHz) NOT supported
6.9.4.
SPDIFOut Stream
Table 151. SPDIFOut Stream Command Verb Format
Verb ID
Payload
Response
Get
F00
0B
See bitfield table.
Table 152. SPDIFOut Stream Command Response Format
Bit
[31:3]
[2]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd
NonPCM
Float32
PCM
Reserved
R
0x1
Non-PCM data supported.
No support for Float32 data.
PCM-formatted data supported.
[1]
R
0x0
[0]
R
0x1
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6.9.5.
SPDIFOut CnvtrID
Table 153. SPDIFOut CnvtrID Command Verb Format
Verb ID
F06
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
706
See bits [7:0] of bitfield table.
Table 154. SPDIFOut CnvtrID Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
R
0x0
Reserved
Software-programmable integer
representing link stream ID used by the
converter widget. By convention stream 0 is
reserved as unused.
[7:4]
Strm
RW
RW
0x0
0x0
Integer representing lowest channel used by
converter
[3:0]
Ch
6.9.6.
SPDIFOut DigCnvtr
Table 155. SPDIFOut DigCnvtr Command Verb Format
Verb ID
F0D
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
Set2
70D
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
70E
0000_0000h
Table 156. SPDIFOut DigCnvtr Command Response Format
Bit
[31:16]
[15]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd2
Rsvd1
CC
Reserved
Rsvd
R
0x0
[14:8]
[7]
RW
RW
RW
0x00
0x0
CC[6:0] - Category Code
L - Generation Level
PRO - Professional
L
[6]
PRO
0x0
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Table 156. SPDIFOut DigCnvtr Command Response Format
Bit
[5]
[4]
[3]
[2]
[1]
[0]
Bitfield Name
RW
RW
RW
RW
RW
RW
RW
Reset
0x0
0x0
0x0
0x0
0x0
0x0
Description
/AUDIO - Non-Audio
AUDIO
COPY
PRE
COPY - Copyright
PRE - Preemphasis
VCFG - Validity Config
V - Validity
VCFG
V
DigEn
DigEn - Digital Enable
6.10. SPDIFIn Node (NID = 0x20)
6.10.1. SPDIFIn Cnvtr
Table 157. SPDIFIn Cnvtr Command Verb Format
Verb ID
Payload
0000
Response
Get
A
2
See bitfield table.
0000_0000h
Set1
See bits [15:0] of bitfield table.
Table 158. SPDIFIn Cnvtr Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:16]
Rsvd2
R
0x0
Reserved
Stream Type
0 = PCM
[15]
[14]
FrmtNonPCM
RW
RW
0x0
0x0
1 = Non-PCM (remaining bits in this verb
have other meanings)
Sample Base Rate
0 = 48 KHz
1 = 44.1 KHz
FrmtSmplRate
SmplRateMultp
Sample Base Rate Multiple
000 = 48 KHz / 44.1 KHz or less
001 = x2
010 = Reserved (x3)
011 = x4
100-111 = Reserved
[13:11]
RW
0x0
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Table 158. SPDIFIn Cnvtr Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Sample Base Rate Divisor
000 = Divide by 1
001 = Divide by 2
010 = Divide by 3
011 = Divide by 4
100 = Divide by 5
101 = Divide by 6
110 = Divide by 7
111 = Divide by 8
[10:8]
SmplRateDiv
RW
0x0
[7]
Rsvd1
R
0x0
0x3
Reserved
Bits per Sample
000 = 8 bits
001 = 16 bits
[6:4]
BitsPerSmpl
RW
010 = 20 bits
011 = 24 bits
100-111 = Reserved
Number of Channels Number of channels in
each frame of the stream.
0000 = 1 channel
[3:0]
6.10.2. SPDIFIn WCap
Get
NmbrChan
RW
0x1
0001 = 2 channels
...
1111 = 16 channels
Table 159. SPDIFIn WCap Command Verb Format
Verb ID
Payload
Response
F00
09
See bitfield table.
Table 160. SPDIFIn WCap Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:24]
Rsvd2
Type
R
0x0
Reserved
0x1 = Enabled
0xF = Disabled
[23:20]
R
Widget type = Audio Input
[19:16]
[15:12]
Delay
R
R
0x4
0x0
Number of sample delays through widget
Reserved
Rsvd1
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Table 160. SPDIFIn WCap Command Response Format
Bit
[11]
[10]
[9]
Bitfield Name
RW
R
Reset
0x0
0x0
0x1
0x1
0x0
0x0
0x0
Description
SwapCap
PwrCntrl
Dig
No left/right channel swap capability
No support for Power State control
Widget supports a Digital stream
Connection list is present
R
R
[8]
ConnList
UnSolCap
ProcWidget
Stripe
R
[7]
R
Unsolicited Response is not supported
No Processing Controls parameter
No support for striping
[6]
R
[5]
R
Widget contains format info; software
should query
[4]
[3]
FormatOvrd
AmpParOvrd
R
R
0x1
0x0
No amplifier info; use default amplifier
parameters from Audio Function node
instead
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x0
0x0
0x1
No output amp
No input amp
Stereo widget
6.10.3. SPDIFIn PCMCap
Table 161. SPDIFIn PCMCap Command Verb Format
Verb ID
Payload
Response
Get
F00
0A
See bitfield table.
Table 162. SPDIFIn PCMCap Command Response Format
Bit
[31:21]
[20]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd2
B32
Reserved
R
0x0
32 bit audio formats are NOT supported
24 bit audio formats are supported
20 bit audio formats are supported
[19]
B24
R
0x1
[18]
B20
R
0x1
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Table 162. SPDIFIn PCMCap Command Response Format
Bit
[17]
[16]
[15:12]
[11]
[10]
[9]
Bitfield Name
RW
R
R
R
R
R
R
R
R
R
R
R
R
R
R
R
Reset
0x1
0x0
0x0
0x0
0x0
0x0
0x1
0x0
0x1
0x1
0x0
0x0
0x0
0x0
0x0
Description
B16
B8
16 bit audio formats are supported
8 bit audio formats are NOT supported
Reserved
Rsvd1
R12
R11
R10
R9
384 KHz rate (8/1*48 KHz) NOT supported
192.0 KHz rate (4/1*48 KHz) NOT supported
176.4 KHz rate (4/1*44.1 KHz) NOT supported
96.0 KHz rate (2/1*48 KHz) supported
88.2 KHz rate (2/1*44.1 KHz) NOT supported
48.0 KHz rate supported (REQUIRED)
44.1 KHz rate supported
[8]
[7]
R8
[6]
R7
[5]
R6
[4]
R5
32.0 KHz rate (2/3*48 KHz) NOT supported
22.05 KHz rate (1/2*44.1 KHz) NOT supported
16.0 KHz rate (1/3*48 KHz) NOT supported
11.025 KHz rate (1/4*44.0 KHz) NOT supported
8.0 KHz rate (1/6*48 KHz) NOT supported
[3]
R4
[2]
R3
[1]
R2
[0]
R1
6.10.4. SPDIFIn Stream
Table 163. SPDIFIn Stream Command Verb Format
Verb ID
Payload
Response
Get
F00
0B
See bitfield table.
Table 164. SPDIFIn Stream Command Response Format
Bit
[31:3]
[2]
Bitfield Name
Rsvd
RW
R
Reset
0x0
Description
Reserved
Non-PCM data supported.
NonPCM
R
0x1
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Table 164. SPDIFIn Stream Command Response Format
Bit
[1]
[0]
Bitfield Name
RW
R
Reset
0x0
Description
No support for Float32 data.
PCM-formatted data supported.
Float32
PCM
R
0x1
6.10.5. SPDIFIn ConLst
Table 165. SPDIFIn ConLst Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F00
0E
Table 166. SPDIFIn ConLst Command Response Format
Bit
[31:8]
[7]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd
LForm
ConL
Reserved.
R
0x0
Connection list uses short-form (7-bit) NID entries.
Number of NID entries in connection list.
[6:0]
R
0x01
6.10.6. SPDIFIn ConLstEntry
Table 167. SPDIFIn ConLstEntry Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
Table 168. SPDIFIn ConLstEntry Command Response Format
Bit
Bitfield Name
ConL3
RW
R
Reset
0x00
0x00
0x00
0x22
Description
Unused list entry.
[31:24]
[23:16]
[15:8]
[7:0]
ConL2
R
Unused list entry.
Unused list entry.
DigIn pin widget
ConL1
R
ConL0
R
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6.10.7. SPDIFIn CnvtrID
Table 169. SPDIFIn CnvtrID Command Verb Format
Verb ID
F06
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
706
See bits [7:0] of bitfield table.
Table 170. SPDIFIn CnvtrID Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
R
0x0
Reserved
Software-programmable integer
representing link stream ID used by the
converter widget. By convention stream 0 is
reserved as unused.
[7:4]
Strm
RW
RW
0x0
0x0
Integer representing lowest channel used by
converter
[3:0]
Ch
6.10.8. SPDIFIn DigCnvtr
Table 171. SPDIFIn DigCnvtr Command Verb Format
Verb ID
F0D
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
Set2
70D
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
70E
0000_0000h
Table 172. SPDIFIn DigCnvtr Command Response Format
Bit
[31:15]
[14:8]
[7]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd2
CC
Reserved
R
0x00
0x0
CC[6:0] - Category Code
L - Generation Level
PRO - Professional
L
R
[6]
PRO
AUDIO
R
0x0
[5]
R
0x0
/AUDIO - Non-Audio
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Table 172. SPDIFIn DigCnvtr Command Response Format
Bit
[4]
[3]
Bitfield Name
RW
R
Reset
0x0
Description
COPY - Copyright
PRE - Preemphasis
COPY
PRE
R
0x0
Reserved (VCFG bit applies only to output
streams)
[2]
Rsvd1
R
0x0
[1]
[0]
V
R
0x0
0x0
V - Validity
DigEn
RW
DigEn - Digital Enable
6.10.9. SPDIFIn VCSR0
Table 173. SPDIFIn VCSR0 Command Verb Format
Verb ID
FE0
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
7E0
See bits [7:0] of bitfield table.
Table 174. SPDIFIn VCSR0 Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Recovered sample rate base
0 = 48 KHz
1 = 44.1 KHz
[31]
RcvSmplRate
R
0x0
Recovered sample rate multiplier
000 = 1X
[30:28]
RcvRateMult
R
0x0
001 = 2X,
all others reserved
[27:26]
[25:22]
Rsvd
R
R
0x0
0x0
Reserved
OrigFS
Original sample rate (IEC spec).
Clock accuracy 00 = Level II
01 = Level I
[21:20]
CA
R
0x0
10 = Level III
11 = Reserved
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Table 174. SPDIFIn VCSR0 Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Sample Rate
0000 = 44.1 KHz
0010 = 48 KHz
0011 = 32 KHz
[19:16]
FS
R
0x0
All other combinations are reserved and
shall not be used until further defined (IEC
spec).
Channel Number (audio channel)
0000 = do not take into account
0001 = A (left channel for stereo channel
format)
[15:12]
CN
R
0x0
0010 = B (right channel for stereo channel
format)
0011 = C
.....
1111 = O
Sample Word Length [2:0]
If MaxWrdL = 1:
000 = unspecified
001 = 20 bits
010 = 22 bits
011 = reserved
100 = 23 bits
101 = 24 bits
110 = 21 bits
[11:9]
SmplWrdL
R
0x0
111 = reserved
If MaxWrdL = 0:
000 = unspecified
001 = 16 bits
010 = 18 bits
011 = reserved
100 = 19 bits
101 = 20 bits
110 = 17 bits
111 = reserved
Max Word Length
0 = maximum audio sample word length is
[8]
MaxWrdL
R
0x0
20 bits
1 = maximum audio sample word length is
24 bits
0 = normal behavior
[7]
[6]
NOBLKCH
VI
RW
RW
0x0
0x0
1 = disable block size checking for spdif_in.
0 = Respond to SPDIF_IN Valid tag
1 = Ignore SPDIF_IN valid tag
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Table 174. SPDIFIn VCSR0 Command Response Format
Bit
Bitfield Name
RW
Reset
Description
0 = Auto mute when SPDIF stream marked
non PCM
1 = Auto Mute disabled.
[5]
AMuteDis
RW
0x0
SPDIF_IN Parity Limit: Loss of DPLL Lock
after
00 = 4 parity errors
01 = 3 parity errors
[4:3]
SPL
RW
0x0
0x0
10 = 2 parity errors
11 = 1 parity errors
NEW LOCATION -- was at Register 72h,
Page 0, D13:12, moved as part of SPDIF In
consolidation
SPDIF IN Running
0 = no signal on pin 47
1 = signal on pin 47
[2]
SPRun
R
NEW LOCATION -- was at Register 72h,
Page 0, D2, moved as part of SPDIF In
consolidation
SPDIF_IN PARITY ERROR. Set to clear.
Overlaps SIPERSTAT.
[1]
[0]
SIPER
RW
RW
0x0
0x0
COPYINV
Copyright invert bit.
6.11. PortA Node (NID = 0x0A)
6.11.1. PortA WCap
Table 175. PortA WCap Command Verb Format
Verb ID
Payload
Response
Get
F00
09
See bitfield table.
Table 176. PortA WCap Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x0
Description
[31:24]
[23:20]
[19:16]
Rsvd2
Type
Reserved
R
0x4
Widget type = Pin Complex
Delay
R
0x0
Number of sample delays through widget
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Table 176. PortA WCap Command Response Format
Bit
[15:12]
[11]
[10]
[9]
Bitfield Name
RW
R
Reset
0x0
0x0
0x0
0x0
0x1
0x1
0x0
0x0
0x0
Description
Rsvd1
SwapCap
PwrCntrl
Dig
Reserved
R
No left/right channel swap capability
No support for Power State control
Widget supports an Analog stream
Connection list is present
R
R
[8]
ConnList
UnSolCap
ProcWidget
Stripe
R
[7]
R
Unsolicited Response is supported
No Processing Controls parameter
No support for striping
[6]
R
[5]
R
[4]
FormatOvrd
R
N/A for pin complex
No amplifier info; use default amplifier
parameters from Audio Function node
instead
[3]
AmpParOvrd
R
0x0
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x0
0x0
0x1
No output amp
No input amp
Stereo widget
6.11.2. PortA PinCap
Table 177. PortA PinCap Command Verb Format
Verb ID
Payload
Response
Get
F00
0C
See bitfield table.
Table 178. PortA PinCap Command Response Format
Bit
[31:17]
[16]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
Reserved
This widget does not control EAPD pin
EapdCap
R
0x0
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Table 178. PortA PinCap Command Response Format
Bit
Bitfield Name
RW
Reset
Description
VRef generation is supported by this pin
complex, and the following voltages can be
produced on the associated VRef pin: 80%
Avdd; 50% Avdd; GND; Hi-Z (required since
pin complex is output capable)
[15:8]
VrefCntrl
R
0x17
[7]
[6]
[5]
[4]
[3]
[2]
Rsvd1
BalancedIO
InCap
R
R
R
R
R
R
0x0
0x0
0x1
0x1
0x1
0x1
Reserved
Pin complex does not have balanced pins.
Pin complex is input capable.
OutCap
Pin complex is output capable.
Pin complex has headphone amplifier.
Pin complex can perform Presence Detect.
HdphDrvCap
PresDtctCap
Trigger is required for impedance
measurement
[1]
[0]
TrigRqd
R
R
0x1
0x1
ImpSenseCap
Pin complex supports impedance sense.
6.11.3. PortA ConLst
Table 179. PortA ConLst Command Verb Format
Verb ID
Payload
Response
Get
F00
0E
See bitfield table.
Table 180. PortA ConLst Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
R
0x0
Reserved
Connection list uses short-form (7-bit) NID
entries.
[7]
LForm
ConL
R
R
0x0
0x03 = Enabled
0x02 = Disabled
[6:0]
Number of NID entries in connection list.
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6.11.4. PortA ConLstEntry
Table 181. PortA ConLstEntry Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
Table 182. PortA ConLstEntry Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Unused list entry.
[31:24]
ConL3
ConL2
R
0x00
0x06 = Enabled
0x00 = Disabled
[23:16]
R
DAC4 Converter widget
[15:8]
[7:0]
ConL1
ConL0
R
R
0x03
0x02
DAC1 Converter widget
DAC0 Converter widget
6.11.5. PortA ConSelectCtrl
Table 183. PortA ConSelectCtrl Command Verb Format
Verb ID
F01
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
701
See bits [7:0] of bitfield table.
Table 184. PortA ConSelectCtrl Command Response Format
Bit
Bitfield Name
Rsvd
RW
R
Reset
0x0
Description
[31:2]
[1:0]
Reserved
Connection select control index.
Index
RW
0x0
6.11.6. PortA PinWCntrl
Table 185. PortA PinWCntrl Command Verb Format
Verb ID
F07
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
707
See bits [7:0] of bitfield table.
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Table 186. PortA PinWCntrl Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd2
R
0x0
Reserved
1 = enable the low impedance amplifier
associated with the output.
[7]
[6]
HPhnEn
RW
RW
0x0
0x0
1 = (CODEC) output path of Pin Widget is
enabled
OutEn
[5]
InEn
RW
R
0x0
0x0
1 = (CODEC) input path of Pin Widget is enabled
Reserved
[4:3]
Rsvd1
VRefEn: Selects one of the possible states for the
VRef signal associated with the Pin Widget. If the
value written to this control does not correspond
to a supported value defined in the VRefCntrl field
of the Pin Capabilities parameter (0C), then this
control will take the value of 000b (Hi-Z).
[2:0]
VRefEn
RW
0x0
6.11.7. PortA UnsolResp
Table 187. PortA UnsolResp Command Verb Format
Verb ID
F08
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
708
See bits [7:0] of bitfield table.
Table 188. PortA UnsolResp Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd2
R
0x00
Reserved
Allow generation of Unsolicited Responses.
Unsolicited response events occur upon
jack-insertion OR completion of a
Jack-Sense cycle.
[7]
En
RW
0x0
[6]
Rsvd1
Tag
R
0x0
Reserved
Software programmable field returned in top
six bits (31:26) of every Unsolicited
Response generated by this node.
[5:0]
RW
0x00
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6.11.8. PortA ChSense
Table 189. PortA ChSense Command Verb Format
Verb ID
F09
Payload
00
Response
Get
Set1
Set2
See bitfield table.
0000_0000h
709
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
709
0000_0000h
Table 190. PortA ChSense Command Response Format
Bit
Bitfield Name
RW
Reset
Description
1 = something is plugged into jack associated
with Pin Complex.
[31]
PresDtct
R
0x0
Measured impedance of the widget. A value of
all 1s indicates that a valid sense reading is not
available, or the sense measurement is busy if
it has been recently triggered.
[30:0]
Impedance
R
0x7FFF_FFFF
Set 1 = perform impedance sensing on right
channel or ring of the connector
[0]
[0]
RightCh
LeftCh
W
W
0x0
0x0
Set 0 = perform impedance sensing on left
channel or tip of the connector
6.11.9. PortA ConfigDefault
Table 191. PortA ConfigDefault Command Verb Format
Verb ID
F1C
Payload
Response
See bitfield table.
0000_0000h
0000_0000h
0000_0000h
0000_0000h
Get
Set1
Set2
Set3
Set4
00
71C
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
71D
71E
71F
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Table 192. PortA ConfigDefault Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Port Connectivity = Jack;
Location = Mainboard front.
[31:24]
Config4
RW
0x02
Default Device = HP Out;
[23:16]
[15:8]
[7:0]
Config3
Config2
Config1
RW
RW
RW
0x21
0x40
0x20
Connection Type = 1/8 inch jack.
Color = Green;
Misc = No jack detect override.
Association = 2h;
Sequence = 0h.
6.12. PortB Node (NID = 0x0B)
6.12.1. PortB WCap
Table 193. PortB WCap Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F00
09
Table 194. PortB WCap Command Response Format
Bit
[31:24]
[23:20]
[19:16]
[15:12]
[11]
Bitfield Name
RW
R
Reset
0x0
0x4
0x0
0x0
0x0
0x0
0x0
0x1
0x1
Description
Rsvd2
Type
Reserved
R
Widget type = Pin Complex
Delay
R
Number of sample delays through widget
Reserved
Rsvd1
R
SwapCap
PwrCntrl
Dig
R
No left/right channel swap capability
No support for Power State control
Widget supports an Analog stream
Connection list is present
[10]
R
[9]
R
[8]
ConnList
UnSolCap
R
[7]
R
Unsolicited Response is supported
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Table 194. PortB WCap Command Response Format
Bit
[6]
[5]
[4]
Bitfield Name
RW
R
Reset
0x0
Description
ProcWidget
Stripe
No Processing Controls parameter
No support for striping
R
0x0
FormatOvrd
R
0x0
N/A for pin complex
No amplifier info; use default amplifier
parameters from Audio Function node
instead
[3]
AmpParOvrd
R
0x0
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x0
0x0
0x1
No output amp
No input amp
Stereo widget
6.12.2. PortB PinCap
Table 195. PortB PinCap Command Verb Format
Verb ID
Payload
Response
Get
F00
0C
See bitfield table.
Table 196. PortB PinCap Command Response Format
Bit
[31:17]
[16]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
Reserved
EapdCap
R
0x0
This widget does not control EAPD pin
VRef generation is supported by this pin
complex, and the following voltages can be
produced on the associated VRef pin: 80%
Avdd; 50%Avdd; GND; Hi-Z (required since
pin complex is output capable)
[15:8]
VrefCntrl
R
0x17
[7]
[6]
[5]
[4]
Rsvd1
BalancedIO
InCap
R
R
R
R
0x0
0x0
0x1
0x1
Reserved
Pin complex does not have balanced pins.
Pin complex is input capable.
Pin complex is output capable.
OutCap
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Table 196. PortB PinCap Command Response Format
Bit
[3]
[2]
Bitfield Name
RW
R
Reset
0x1
Description
HdphDrvCap
PresDtctCap
Pin has a headphone amplifier.
R
0x1
Pin complex can perform Presence Detect.
Trigger is required for impedance
measurement
[1]
[0]
TrigRqd
R
R
0x1
0x1
ImpSenseCap
Pin complex supports impedance sense.
6.12.3. PortB ConLst
Table 197. PortB ConLst Command Verb Format
Verb ID
Payload
Response
Get
F00
0E
See bitfield table.
Table 198. PortB ConLst Command Response Format
Bit
Bitfield Name RW
Reset
Description
[31:8]
Rsvd
R
R
0x0
Reserved
Connection list uses short-form (7-bit) NID
entries.
[7]
LForm
0x0
0x03 = Enabled DAC4
0x02 = Disabled DAC4
[6:0]
ConL
R
Number of NID entries in connection list.
6.12.4. PortB ConLstEntry
Table 199. PortB ConLstEntry Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
Table 200. PortB ConLstEntry Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Unused list entry.
DAC4 Converter widget
[31:24]
ConL3
ConL2
R
0x00
0x06 = Enabled
0x00 = Disabled
[23:16]
R
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Table 200. PortB ConLstEntry Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x03
0x02
Description
[15:8]
[7:0]
ConL1
ConL0
DAC1 Converter widget
DAC0 Converter widget
R
6.12.5. PortB ConSelectCtrl
Table 201. PortB ConSelectCtrl Command Verb Format
Verb ID
F01
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
701
See bits [7:0] of bitfield table.
Table 202. PortB ConSelectCtrl Command Response Format
Bit
Bitfield Name
Rsvd
RW
R
Reset
0x0
Description
[31:2]
[1:0]
Reserved
Connection select control index.
Index
RW
0x0
6.12.6. PortB PinWCntrl
Table 203. PortB PinWCntrl Command Verb Format
Verb ID
F07
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
707
See bits [7:0] of bitfield table.
Table 204. PortB PinWCntrl Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd2
R
0x0
Reserved
1 = enable the low impedance amplifier
associated with the output.
[7]
[6]
HPhnEn
OutEn
RW
RW
0x0
0x0
1 = (CODEC) output path of Pin Widget is
enabled
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Table 204. PortB PinWCntrl Command Response Format
Bit
[5]
Bitfield Name
RW
RW
R
Reset
Description
1 = (CODEC) input path of Pin Widget is
enabled
InEn
0x0
[4:3]
Rsvd1
0x0
Reserved
VRefEn: Selects one of the possible states
for the VRef signal associated with the Pin
Widget. If the value written to this control
does not correspond to a supported value
defined in the VRefCntrl field of the Pin
Capabilities parameter (0C), then this
control will take the value of 000b (Hi-Z).
[2:0]
VRefEn
RW
0x0
6.12.7. PortB UnsolResp
Table 205. PortB UnsolResp Command Verb Format
Verb ID
F08
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
708
See bits [7:0] of bitfield table.
Table 206. PortB UnsolResp Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd2
R
0x00
Reserved
Allow generation of Unsolicited Responses.
Unsolicited response events occur upon
jack-insertion OR completion of a
Jack-Sense cycle.
[7]
En
RW
0x0
[6]
Rsvd1
Tag
R
0x0
Reserved
Software programmable field returned in top
six bits (31:26) of every Unsolicited
Response generated by this node.
[5:0]
RW
0x00
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6.12.8. PortB ChSense
Table 207. PortB ChSense Command Verb Format
Verb ID
F09
Payload
00
Response
Get
Set1
Set2
See bitfield table.
0000_0000h
709
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
709
0000_0000h
Table 208. PortB ChSense Command Response Format
Bit
Bitfield Name
RW
Reset
Description
1 = something is plugged into jack
associated with Pin Complex.
[31]
PresDtct
R
0x0
Measured impedance of the widget. A value
of all 1s indicates that a valid sense reading
is not available, or the sense measurement
is busy if it has been recently triggered.
[30:0]
Impedance
R
0x7FFF_FFFF
Set 1 = perform impedance sensing on right
channel or ring of the connector
[0]
[0]
RightCh
LeftCh
W
W
0x0
0x0
Set 0 = perform impedance sensing on left
channel or tip of the connector
6.12.9. PortB ConfigDefault
Table 209. PortB ConfigDefault Command Verb Format
Verb ID
F1C
Payload
Response
See bitfield table.
0000_0000h
0000_0000h
0000_0000h
0000_0000h
Get
Set1
Set2
Set3
Set4
00
71C
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
71D
71E
71F
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Table 210. PortB ConfigDefault Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Port Connectivity = Jack;
Location = Mainboard front.
[31:24]
Config4
RW
0x02
Default Device = Mic In;
[23:16]
[15:8]
[7:0]
Config3
Config2
Config1
RW
RW
RW
0xA1
0x90
0x80
Connection Type = 1/8 inch jack.
Color = Pink;
Misc = No jack detect override.
Association = 8h;
Sequence = 0h.
6.13. PortC Node (NID = 0x0C)
6.13.1. PortC WCap
Table 211. PortC WCap Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F00
09
Table 212. PortC WCap Command Response Format
Bit
[31:24]
[23:20]
[19:16]
[15:12]
[11]
Bitfield Name
RW
R
Reset
0x0
0x4
0x0
0x0
0x0
0x0
0x0
0x1
0x1
Description
Rsvd2
Type
Reserved
R
Widget type = Pin Complex
Delay
R
Number of sample delays through widget
Reserved
Rsvd1
R
SwapCap
PwrCntrl
Dig
R
No left/right channel swap capability
No support for Power State control
Widget supports an Analog stream
Connection list is present
[10]
R
[9]
R
[8]
ConnList
UnSolCap
R
[7]
R
Unsolicited Response is supported
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Table 212. PortC WCap Command Response Format
Bit
[6]
[5]
[4]
Bitfield Name
RW
R
Reset
0x0
Description
ProcWidget
Stripe
No Processing Controls parameter
No support for striping
R
0x0
FormatOvrd
R
0x0
N/A for pin complex
No amplifier info; use default amplifier
parameters from Audio Function node
instead
[3]
AmpParOvrd
R
0x0
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x0
0x0
0x1
No output amp
No input amp
Stereo widget
6.13.2. PortC PinCap
Table 213. PortC PinCap Command Verb Format
Verb ID
Payload
Response
Get
F00
0C
See bitfield table.
Table 214. PortC PinCap Command Response Format
Bit
[31:17]
[16]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
Reserved
EapdCap
R
0x0
This widget does not control EAPD pin
VRef generation is supported by this pin
complex, and the following voltages can be
produced on the associated VRef pin: 80%
Avdd; 50% Avdd; GND; Hi-Z (required since
pin complex is output capable)
[15:8]
VrefCntrl
R
0x17
[7]
[6]
[5]
[4]
Rsvd1
BalancedIO
InCap
R
R
R
R
0x0
0x0
0x1
0x1
Reserved
Pin complex does not have balanced pins.
Pin complex is input capable.
Pin complex is output capable.
OutCap
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Table 214. PortC PinCap Command Response Format
Bit
[3]
[2]
Bitfield Name
RW
R
Reset
0x0
Description
HdphDrvCap
PresDtctCap
Pin does not have a headphone amplifier.
Pin complex can perform Presence Detect.
R
0x1
Trigger is required for impedance
measurement
[1]
[0]
TrigRqd
R
R
0x1
0x1
ImpSenseCap
Pin complex supports impedance sense.
6.13.3. PortC ConLst
Table 215. PortC ConLst Command Verb Format
Verb ID
Payload
Response
Get
F00
0E
See bitfield table.
Table 216. PortC ConLst Command Response Format
Bit
[31:8]
[7]
Bitfield Name
Rsvd
RW
R
Reset
0x0
Description
Reserved
LForm
R
0x0
Connection list uses short-form (7-bit) NID entries.
Number of NID entries in connection list.
[6:0]
ConL
R
0x01
6.13.4. PortC ConLstEntry
Table 217. PortC ConLstEntry Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
Table 218. PortC ConLstEntry Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x00
0x00
Description
Unused list entry.
Unused list entry.
[31:24]
[23:16]
ConL3
ConL2
R
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Table 218. PortC ConLstEntry Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x00
0x03
Description
Unused list entry.
DAC1 Converter widget
[15:8]
[7:0]
ConL1
ConL0
R
6.13.5. PortC PinWCntrl
Table 219. PortC PinWCntrl Command Verb Format
Verb ID
F07
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
707
See bits [7:0] of bitfield table.
Table 220. PortC PinWCntrl Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:7]
Rsvd2
OutEn
R
0x0
Reserved
1 = (CODEC) output path of Pin Widget is
enabled
[6]
RW
0x0
[5]
InEn
RW
R
0x0
0x0
1 = (CODEC) input path of Pin Widget is enabled
Reserved
[4:3]
Rsvd1
VRefEn: Selects one of the possible states for the
VRef signal associated with the Pin Widget. If the
value written to this control does not correspond
to a supported value defined in the VRefCntrl field
of the Pin Capabilities parameter (0C), then this
control will take the value of 000b (Hi-Z).
[2:0]
VRefEn
RW
0x0
6.13.6. PortC UnsolResp
Table 221. PortC UnsolResp Command Verb Format
Verb ID
F08
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
708
See bits [7:0] of bitfield table.
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Table 222. PortC UnsolResp Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd2
R
0x00
Reserved
Allow generation of Unsolicited Responses.
Unsolicited response events occur upon
jack-insertion OR completion of a
Jack-Sense cycle.
[7]
En
RW
0x0
[6]
Rsvd1
Tag
R
0x0
Reserved
Software programmable field returned in top
six bits (31:26) of every Unsolicited
Response generated by this node.
[5:0]
RW
0x00
6.13.7. PortC ChSense
Table 223. PortC ChSense Command Verb Format
Verb ID
F09
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
Set2
709
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
709
0000_0000h
Table 224. PortC ChSense Command Response Format
Bit
Bitfield Name
RW
Reset
Description
1 = something is plugged into jack
associated with Pin Complex.
[31]
PresDtct
R
0x0
Measured impedance of the widget. A value
of all 1s indicates that a valid sense reading
is not available, or the sense measurement
is busy if it has been recently triggered.
[30:0]
Impedance
R
0x7FFF_FFFF
Set 1 = perform impedance sensing on right
channel or ring of the connector
[0]
[0]
RightCh
LeftCh
W
W
0x0
0x0
Set 0 = perform impedance sensing on left
channel or tip of the connector
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6.13.8. PortC ConfigDefault
Table 225. PortC ConfigDefault Command Verb Format
Verb ID
F1C
Payload
Response
Get
Set1
Set2
Set3
Set4
00
See bitfield table.
0000_0000h
0000_0000h
0000_0000h
0000_0000h
71C
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
71D
71E
71F
Table 226. PortC ConfigDefault Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Port Connectivity = Jack;
Location = Mainboard rear.
[31:24]
Config4
RW
0x01
Default Device = Line In;
[23:16]
[15:8]
[7:0]
Config3
Config2
Config1
RW
RW
RW
0x81
0x30
0x4E
Connection Type = 1/8 inch jack.
Color = Blue;
Misc = No jack detect override.
Association = 4h;
Sequence = Eh.
6.14. PortD Node (NID = 0x0D)
6.14.1. PortD WCap
Table 227. PortD WCap Command Verb Format
Verb ID
Payload
Response
Get
F00
09
See bitfield table.
Table 228. PortD WCap Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x0
Description
[31:24]
[23:20]
Rsvd2
Type
Reserved
Widget type = Pin Complex
R
0x4
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Table 228. PortD WCap Command Response Format
Bit
[19:16]
[15:12]
[11]
[10]
[9]
Bitfield Name
RW
R
Reset
0x0
0x0
0x0
0x0
0x0
0x1
0x1
0x0
0x0
0x0
Description
Delay
Rsvd1
Number of sample delays through widget
Reserved
R
SwapCap
PwrCntrl
Dig
R
No left/right channel swap capability
No support for Power State control
Widget supports an Analog stream
Connection list is present
R
R
[8]
ConnList
UnSolCap
ProcWidget
Stripe
R
[7]
R
Unsolicited Response is supported
No Processing Controls parameter
No support for striping
[6]
R
[5]
R
[4]
FormatOvrd
R
N/A for pin complex
No amplifier info; use default amplifier
parameters from Audio Function node instead
[3]
AmpParOvrd
R
0x0
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x0
0x0
0x1
No output amp
No input amp
Stereo widget
6.14.2. PortD PinCap
Table 229. PortD PinCap Command Verb Format
Verb ID
Payload
Response
Get
F00
0C
See bitfield table.
Table 230. PortD PinCap Command Response Format
Bit
[31:17]
[16]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
Reserved
This widget does not control EAPD pin
EapdCap
R
0x0
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Table 230. PortD PinCap Command Response Format
Bit
Bitfield Name
RW
Reset
Description
VRef generation is supported by this pin
complex, and the following voltages can be
produced on the associated VRef pin: 80%
Avdd; 50% Avdd; GND; Hi-Z (required since
pin complex is output capable)
[15:8]
VrefCntrl
R
0x17
[7]
[6]
[5]
[4]
[3]
[2]
Rsvd1
BalancedIO
InCap
R
R
R
R
R
R
0x0
0x0
0x1
0x1
0x1
0x1
Reserved
Pin complex does not have balanced pins.
Pin complex is input capable.
OutCap
Pin complex is output capable.
Pin complex has headphone amplifier.
Pin complex can perform Presence Detect.
HdphDrvCap
PresDtctCap
Trigger is required for impedance
measurement
[1]
[0]
TrigRqd
R
R
0x1
0x1
ImpSenseCap
Pin complex supports impedance sense.
6.14.3. PortD ConLst
Table 231. PortD ConLst Command Verb Format
Verb ID
Payload
Response
Get
F00
0E
See bitfield table.
Table 232. PortD ConLst Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
R
0x0
Reserved
Connection list uses short-form (7-bit) NID
entries.
[7]
LForm
ConL
R
R
0x0
[6:0]
0x01
Number of NID entries in connection list.
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6.14.4. PortD ConLstEntry
Table 233. PortD ConLstEntry Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
Table 234. PortD ConLstEntry Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x00
0x00
0x00
0x02
Description
Unused list entry.
[31:24]
[23:16]
[15:8]
[7:0]
ConL3
ConL2
ConL1
ConL0
R
Unused list entry.
R
Unused list entry.
R
DAC0 Converter widget
6.14.5. PortD PinWCntrl
Table 235. PortD PinWCntrl Command Verb Format
Verb ID
F07
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
707
See bits [7:0] of bitfield table.
Table 236. PortD PinWCntrl Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd2
R
0x0
Reserved
1 = enable the low impedance amplifier associated
with the output.
[7]
HPhnEn
RW
0x0
[6]
[5]
OutEn
InEn
RW
RW
0x0
0x0
1 = (CODEC) output path of Pin Widget is enabled
1 = (CODEC) input path of Pin Widget is enabled
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Table 236. PortD PinWCntrl Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[4:3]
Rsvd1
R
0x0
Reserved
VRefEn: Selects one of the possible states for the
VRef signal associated with the Pin Widget. If the
value written to this control does not correspond to
a supported value defined in the VRefCntrl field of
the Pin Capabilities parameter (0C), then this
control will take the value of 000b (Hi-Z).
[2:0]
VRefEn
RW
0x0
6.14.6. PortD UnsolResp
Table 237. PortD UnsolResp Command Verb Format
Verb ID
F08
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
708
See bits [7:0] of bitfield table.
Table 238. PortD UnsolResp Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd2
R
0x00
Reserved
Allow generation of Unsolicited Responses.
Unsolicited response events occur upon
jack-insertion OR completion of a
Jack-Sense cycle.
[7]
En
RW
0x0
[6]
Rsvd1
Tag
R
0x0
Reserved
Software programmable field returned in top
six bits (31:26) of every Unsolicited
Response generated by this node.
[5:0]
RW
0x00
6.14.7. PortD ChSense
Table 239. PortD ChSense Command Verb Format
Verb ID
F09
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
Set2
709
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
709
0000_0000h
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Table 240. PortD ChSense Command Response Format
Bit
Bitfield Name RW
Reset
Description
1 = something is plugged into jack associated with Pin
Complex.
[31]
PresDtct
R
0x0
Measured impedance of the widget. A value of all 1s
indicates that a valid sense reading is not available, or
the sense measurement is busy if it has been recently
triggered.
[30:0]
Impedance
R
0x7FFF_FFFF
Set 1 = perform impedance sensing on right channel
or ring of the connector
[0]
[0]
RightCh
LeftCh
W
W
0x0
0x0
Set 0 = perform impedance sensing on left channel or
tip of the connector
6.14.8. PortD ConfigDefault
Table 241. PortD ConfigDefault Command Verb Format
Verb ID
F1C
Payload
Response
See bitfield table.
0000_0000h
0000_0000h
0000_0000h
0000_0000h
Get
Set1
Set2
Set3
Set4
00
71C
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
71D
71E
71F
Table 242. PortD ConfigDefault Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Port Connectivity = Jack;
Location = Mainboard rear.
[31:24]
Config4
RW
0x01
Default Device = Line Out;
[23:16]
[15:8]
[7:0]
Config3
Config2
Config1
RW
RW
RW
0x01
0x40
0x10
Connection Type = 1/8 inch jack.
Color = Green;
Misc = No jack detect override.
Association = 1h;
Sequence = 0h.
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6.15. PortE Node (NID = 0x0E)
6.15.1. PortE WCap
Table 243. PortE WCap Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F00
09
Table 244. PortE WCap Command Response Format
Bitfield Name Description
Bit
[31:24]
[23:20]
[19:16]
[15:12]
[11]
RW
R
R
R
R
R
R
R
R
R
R
R
R
Reset
0x0
0x4
0x0
0x0
0x0
0x0
0x0
0x1
0x1
0x0
0x0
0x0
Rsvd2
Type
Reserved
Widget type = Pin Complex
Number of sample delays through widget
Reserved
Delay
Rsvd1
SwapCap
PwrCntrl
Dig
No left/right channel swap capability
No support for Power State control
Widget supports an Analog stream
Connection list is present
[10]
[9]
[8]
ConnList
UnSolCap
ProcWidget
Stripe
[7]
Unsolicited Response is supported
No Processing Controls parameter
No support for striping
[6]
[5]
[4]
FormatOvrd
N/A for pin complex
No amplifier info; use default amplifier
parameters from Audio Function node instead
[3]
AmpParOvrd
R
0x0
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x0
0x0
0x1
No output amp
No input amp
Stereo widget
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6.15.2. PortE PinCap
Table 245. PortE PinCap Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F00
0C
Table 246. PortE PinCap Command Response Format
Bit
[31:17]
[16]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd2
Reserved
EapdCap
R
0x0
This widget does not control EAPD pin
VRef generation is supported by this pin
complex, and the following voltages can be
produced on the associated VRef pin: 80%
Avdd; 50% Avdd; GND; Hi-Z (required since
pin complex is output capable)
[15:8]
VrefCntrl
R
0x17
[7]
[6]
[5]
[4]
[3]
[2]
Rsvd1
BalancedIO
InCap
R
R
R
R
R
R
0x0
0x0
0x1
0x1
0x0
0x1
Reserved
Pin complex does not have balanced pins.
Pin complex is input capable.
OutCap
Pin complex is output capable.
Pin does not have a headphone amplifier.
Pin complex can perform Presence Detect.
HdphDrvCap
PresDtctCap
Trigger is required for impedance
measurement
[1]
[0]
TrigRqd
R
R
0x1
0x1
ImpSenseCap
Pin complex supports impedance sense.
6.15.3. PortE ConLst
Table 247. PortE ConLst Command Verb Format
Verb ID
Payload
Response
Get
F00
0E
See bitfield table.
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Table 248. PortE ConLst Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
LForm
ConL
R
0x0
Reserved
Connection list uses short-form (7-bit) NID
entries.
[7]
R
R
0x0
[6:0]
0x01
Number of NID entries in connection list.
6.15.4. PortE ConLstEntry
Table 249. PortE ConLstEntry Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
Table 250. PortE ConLstEntry Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x00
0x00
0x00
0x04
Description
Unused list entry.
[31:24]
[23:16]
[15:8]
[7:0]
ConL3
ConL2
ConL1
ConL0
R
Unused list entry.
R
Unused list entry.
R
DAC2 Converter widget
6.15.5. PortE PinWCntrl
Table 251. PortE PinWCntrl Command Verb Format
Verb ID
F07
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
707
See bits [7:0] of bitfield table.
Table 252. PortE PinWCntrl Command Response Format
Bit
[31:7]
[6]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd2
OutEn
Reserved
1 = (CODEC) output path of Pin Widget is enabled
RW
0x0
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Table 252. PortE PinWCntrl Command Response Format
Bit
[5]
Bitfield Name
RW
RW
R
Reset
0x0
Description
InEn
1 = (CODEC) input path of Pin Widget is enabled
Reserved
[4:3]
Rsvd1
0x0
VRefEn: Selects one of the possible states for the
VRef signal associated with the Pin Widget. If the
value written to this control does not correspond to
a supported value defined in the VRefCntrl field of
the Pin Capabilities parameter (0C), then this
control will take the value of 000b (Hi-Z).
[2:0]
VRefEn
RW
0x0
6.15.6. PortE UnsolResp
Table 253. PortE UnsolResp Command Verb Format
Verb ID
F08
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
708
See bits [7:0] of bitfield table.
Table 254. PortE UnsolResp Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd2
R
0x00
Reserved
Allow generation of Unsolicited Responses.
Unsolicited response events occur upon
jack-insertion OR completion of a
Jack-Sense cycle.
[7]
En
RW
0x0
[6]
Rsvd1
Tag
R
0x0
Reserved
Software programmable field returned in top
six bits (31:26) of every Unsolicited
Response generated by this node.
[5:0]
RW
0x00
6.15.7. PortE ChSense
Table 255. PortE ChSense Command Verb Format
Verb ID
Payload
Response
Get
F09
00
See bitfield table.
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Table 255. PortE ChSense Command Verb Format
Verb ID
709
Payload
Response
Set1
Set2
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
0000_0000h
0000_0000h
709
Table 256. PortE ChSense Command Response Format
Bit
Bitfield Name
RW
Reset
Description
1 = something is plugged into jack
associated with Pin Complex.
[31]
PresDtct
R
0x0
Measured impedance of the widget. A value
of all 1s indicates that a valid sense reading
is not available, or the sense measurement
is busy if it has been recently triggered.
[30:0]
Impedance
R
0x7FFF_FFFF
Set 1 = perform impedance sensing on right
channel or ring of the connector
[0]
[0]
RightCh
LeftCh
W
W
0x0
0x0
Set 0 = perform impedance sensing on left
channel or tip of the connector
6.15.8. PortE ConfigDefault
Table 257. PortE ConfigDefault Command Verb Format
Verb ID
F1C
Payload
Response
See bitfield table.
0000_0000h
0000_0000h
0000_0000h
0000_0000h
Get
Set1
Set2
Set3
Set4
00
71C
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
71D
71E
71F
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Table 258. PortE ConfigDefault Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Port Connectivity = Jack;
Location = Mainboard rear.
[31:24]
Config4
RW
0x01
Default Device = Mic In;
[23:16]
[15:8]
[7:0]
Config3
Config2
Config1
RW
RW
RW
0xA1
0x90
0x40
Connection Type = 1/8 inch jack.
Color = Pink;
Misc = No jack detect override.
Association = 4h;
Sequence = 0h.
6.16. PortF Node (NID = 0x0F)
6.16.1. PortF WCap
Table 259. PortF WCap Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F00
09
Table 260. PortF WCap Command Response Format
Bit
[31:24]
[23:20]
[19:16]
[15:12]
[11]
Bitfield Name
RW
R
Reset
0x0
0x4
0x0
0x0
0x0
0x0
0x0
0x1
0x1
Description
Rsvd2
Type
Reserved
R
Widget type = Pin Complex
Delay
R
Number of sample delays through widget
Reserved
Rsvd1
R
SwapCap
PwrCntrl
Dig
R
No left/right channel swap capability
No support for Power State control
Widget supports an Analog stream
Connection list is present
[10]
R
[9]
R
[8]
ConnList
UnSolCap
R
[7]
R
Unsolicited Response is supported
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Table 260. PortF WCap Command Response Format
Bit
[6]
[5]
[4]
Bitfield Name
RW
R
Reset
0x0
Description
ProcWidget
Stripe
No Processing Controls parameter
No support for striping
R
0x0
FormatOvrd
R
0x0
N/A for pin complex
No amplifier info; use default amplifier
parameters from Audio Function node
instead
[3]
AmpParOvrd
R
0x0
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x0
0x0
0x1
No output amp
No input amp
Stereo widget
6.16.2. PortF PinCap
Table 261. PortF PinCap Command Verb Format
Verb ID
Payload
Response
Get
F00
0C
See bitfield table.
Table 262. PortF PinCap Command Response Format
Bit
[31:17]
[16]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
Reserved
EapdCap
R
0x0
This widget does not control EAPD pin
VRef generation is supported by this pin
complex, and the following voltages can be
produced on the associated VRef pin: 80%
Avdd; 50% Avdd; GND; Hi-Z (required since
pin complex is output capable)
[15:8]
VrefCntrl
R
0x17
[7]
[6]
[5]
[4]
Rsvd1
BalancedIO
InCap
R
R
R
R
0x0
0x0
0x1
0x1
Reserved
Pin complex does not have balanced pins.
Pin complex is input capable.
Pin complex is output capable.
OutCap
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Table 262. PortF PinCap Command Response Format
Bit
[3]
[2]
Bitfield Name
RW
R
Reset
0x0
Description
HdphDrvCap
PresDtctCap
Pin does not have a headphone amplifier.
Pin complex can perform Presence Detect.
R
0x1
Trigger is required for impedance
measurement
[1]
[0]
TrigRqd
R
R
0x1
0x1
ImpSenseCap
Pin complex supports impedance sense.
6.16.3. PortF ConLst
Table 263. PortF ConLst Command Verb Format
Verb ID
Payload
Response
Get
F00
0E
See bitfield table.
Table 264. PortF ConLst Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
R
0x0
Reserved
Connection list uses short-form (7-bit) NID
entries.
[7]
LForm
ConL
R
R
0x0
[6:0]
0x01
Number of NID entries in connection list.
6.16.4. PortF ConLstEntry
Table 265. PortF ConLstEntry Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
Table 266. PortF ConLstEntry Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x00
0x00
Description
Unused list entry.
Unused list entry.
[31:24]
[23:16]
ConL3
ConL2
R
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Table 266. PortF ConLstEntry Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x00
0x05
Description
Unused list entry.
DAC3 Converter widget
[15:8]
[7:0]
ConL1
ConL0
R
6.16.5. PortF PinWCntrl
Table 267. PortF PinWCntrl Command Verb Format
Verb ID
F07
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
707
See bits [7:0] of bitfield table.
Table 268. PortF PinWCntrl Command Response Format
Bit
[31:7]
[6]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd2
OutEn
InEn
Reserved
RW
RW
R
0x0
1 = (CODEC) output path of Pin Widget is enabled
1 = (CODEC) input path of Pin Widget is enabled
Reserved
[5]
0x0
[4:3]
Rsvd1
0x0
VRefEn: Selects one of the possible states for the
VRef signal associated with the Pin Widget. If the
value written to this control does not correspond to
a supported value defined in the VRefCntrl field of
the Pin Capabilities parameter (0C), then this
control will take the value of 000b (Hi-Z).
[2:0]
VRefEn
RW
0x0
6.16.6. PortF UnsolResp
Table 269. PortF UnsolResp Command Verb Format
Verb ID
F08
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
708
See bits [7:0] of bitfield table.
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Table 270. PortF UnsolResp Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd2
R
0x00
Reserved
Allow generation of Unsolicited Responses.
Unsolicited response events occur upon
jack-insertion OR completion of a
Jack-Sense cycle.
[7]
En
RW
0x0
[6]
Rsvd1
Tag
R
0x0
Reserved
Software programmable field returned in top
six bits (31:26) of every Unsolicited
Response generated by this node.
[5:0]
RW
0x00
6.16.7. PortF ChSense
Table 271. PortF ChSense Command Verb Format
Verb ID
F09
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
Set2
709
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
709
0000_0000h
Table 272. PortF ChSense Command Response Format
Bit
Bitfield Name RW
Reset
Description
1 = something is plugged into jack associated with Pin
Complex.
[31]
PresDtct
R
0x0
Measured impedance of the widget. A value of all 1s
indicates that a valid sense reading is not available, or
the sense measurement is busy if it has been recently
triggered.
[30:0]
Impedance
R
0x7FFF_FFFF
Set 1 = perform impedance sensing on right channel
or ring of the connector
[0]
[0]
RightCh
LeftCh
W
W
0x0
0x0
Set 0 = perform impedance sensing on left channel or
tip of the connector
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6.16.8. PortF ConfigDefault
Table 273. PortF ConfigDefault Command Verb Format
Verb ID
F1C
Payload
Response
Get
Set1
Set2
Set3
Set4
00
See bitfield table.
0000_0000h
0000_0000h
0000_0000h
0000_0000h
71C
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
71D
71E
71F
Table 274. PortF ConfigDefault Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Port Connectivity = Jack;
Location = Mainboard rear.
[31:24]
Config4
RW
0x01
Default Device = Line Out;
[23:16]
[15:8]
[7:0]
Config3
Config2
Config1
RW
RW
RW
Ox01
0x10
0x12
Connection Type = 1/8 inch jack.
Color = Black;
Misc = No jack detect override.
Association = 1h;
Sequence = 2h.
6.17. PortG Node (NID = 0x10)
6.17.1. PortG WCap
Table 275. PortG WCap Command Verb Format
Verb ID
Payload
Response
Get
F00
09
See bitfield table.
Table 276. PortG WCap Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x0
Description
[31:24]
[23:20]
Rsvd2
Type
Reserved
Widget type = Pin Complex
R
0x4
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Table 276. PortG WCap Command Response Format
Bit
[19:16]
[15:12]
[11]
[10]
[9]
Bitfield Name
RW
R
Reset
0x0
0x0
0x0
0x0
0x0
0x1
0x1
0x0
0x0
0x0
Description
Delay
Rsvd1
Number of sample delays through widget
Reserved
R
SwapCap
PwrCntrl
Dig
R
No left/right channel swap capability
No support for Power State control
Widget supports an Analog stream
Connection list is present
R
R
[8]
ConnList
UnSolCap
ProcWidget
Stripe
R
[7]
R
Unsolicited Response is supported
No Processing Controls parameter
No support for striping
[6]
R
[5]
R
[4]
FormatOvrd
R
N/A for pin complex
No amplifier info; use default amplifier
parameters from Audio Function node
instead
[3]
AmpParOvrd
R
0x0
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x0
0x0
0x1
No output amp
No input amp
Stereo widget
6.17.2. PortG PinCap
Table 277. PortG PinCap Command Verb Format
Verb ID
Payload
Response
Get
F00
0C
See bitfield table.
Table 278. PortG PinCap Command Response Format
Bit
[31:17]
[16]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
Reserved
This widget does not control EAPD pin
EapdCap
R
0x0
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Table 278. PortG PinCap Command Response Format
Bit
Bitfield Name
RW
Reset
Description
VRef generation not supported by this pin
complex.
[15:8]
VrefCntrl
R
0x00
[7]
[6]
[5]
[4]
[3]
[2]
Rsvd1
BalancedIO
InCap
R
R
R
R
R
R
0x0
0x0
0x1
0x1
0x0
0x1
Reserved
Pin complex does not have balanced pins.
Pin complex is input capable.
OutCap
Pin complex is output capable.
Pin does not have a headphone amplifier.
Pin complex can perform Presence Detect.
HdphDrvCap
PresDtctCap
Trigger is required for impedance
measurement
[1]
[0]
TrigRqd
R
R
0x1
0x1
ImpSenseCap
Pin complex supports impedance sense.
6.17.3. PortG ConLst
Table 279. PortG ConLst Command Verb Format
Verb ID
Payload
Response
Get
F00
0E
See bitfield table.
Table 280. PortG ConLst Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
R
0x0
Reserved
Connection list uses short-form (7-bit) NID
entries.
[7]
LForm
ConL
R
R
0x0
[6:0]
0x01
Number of NID entries in connection list.
6.17.4. PortG ConLstEntry
Table 281. PortG ConLstEntry Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
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Table 282. PortG ConLstEntry Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x00
0x00
0x00
0x04
Description
Unused list entry.
[31:24]
[23:16]
[15:8]
[7:0]
ConL3
ConL2
ConL1
ConL0
R
Unused list entry.
R
Unused list entry.
R
DAC2 Converter widget
6.17.5. PortG PinWCntrl
Table 283. PortG PinWCntrl Command Verb Format
Verb ID
F07
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
707
See bits [7:0] of bitfield table.
Table 284. PortG PinWCntrl Command Response Format
Bit
[31:7]
[6]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd2
OutEn
InEn
Reserved
RW
RW
R
0x0
1 = (CODEC) output path of Pin Widget is enabled
1 = (CODEC) input path of Pin Widget is enabled
Reserved
[5]
0x0
[4:3]
[2:0]
Rsvd1
VRefEn
0x0
R
0x0
Vref Out not supported on this Port
6.17.6. PortG UnsolResp
Table 285. PortG UnsolResp Command Verb Format
Verb ID
F08
Payload
Response
See bitfield table.
0000_0000h
Get
00
Set1
708
See bits [7:0] of bitfield table.
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Table 286. PortG UnsolResp Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd2
R
0x00
Reserved
Allow generation of Unsolicited Responses.
Unsolicited response events occur upon
jack-insertion OR completion of a
Jack-Sense cycle.
[7]
En
RW
0x0
[6]
Rsvd1
Tag
R
0x0
Reserved
Software programmable field returned in top
six bits (31:26) of every Unsolicited
Response generated by this node.
[5:0]
RW
0x00
6.17.7. PortG ChSense
Table 287. PortG ChSense Command Verb Format
Verb ID
F09
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
Set2
709
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
709
0000_0000h
Table 288. PortG ChSense Command Response Format
Bit
Bitfield Name RW
Reset
Description
1 = something is plugged into jack associated with Pin
Complex.
[31]
PresDtct
R
0x0
Measured impedance of the widget. A value of all 1s
indicates that a valid sense reading is not available, or
the sense measurement is busy if it has been recently
triggered.
[30:0]
Impedance
R
0x7FFF_FFFF
Set 1 = perform impedance sensing on right channel
or ring of the connector
[0]
[0]
RightCh
LeftCh
W
W
0x0
0x0
Set 0 = perform impedance sensing on left channel or
tip of the connector
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6.17.8. PortG ConfigDefault
Table 289. PortG ConfigDefault Command Verb Format
Verb ID
F1C
Payload
Response
Get
Set1
Set2
Set3
Set4
00
See bitfield table.
0000_0000h
0000_0000h
0000_0000h
0000_0000h
71C
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
71D
71E
71F
Table 290. PortG ConfigDefault Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Port Connectivity = Jack;
Location = Mainboard rear.
[31:24]
Config4
RW
0x01
Default Device = Line Out;
[23:16]
[15:8]
[7:0]
Config3
Config2
Config1
RW
RW
RW
0x01
0x60
0x11
Connection Type = 1/8 inch jack.
Color = Orange;
Misc = No jack detect override.
Association = 1h;
Sequence = 1h.
6.18. PortH Node (NID = 0x11)
6.18.1. PortH WCap
Table 291. PortH WCap Command Verb Format
Verb ID
Payload
Response
Get
F00
09
See bitfield table.
Table 292. PortH WCap Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x0
Description
[31:24]
[23:20]
Rsvd2
Type
Reserved
Widget type = Pin Complex
R
0x4
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Table 292. PortH WCap Command Response Format
Bit
[19:16]
[15:12]
[11]
[10]
[9]
Bitfield Name
RW
R
Reset
0x0
0x0
0x0
0x0
0x0
0x1
0x1
0x0
0x0
0x0
Description
Delay
Rsvd1
Number of sample delays through widget
Reserved
R
SwapCap
PwrCntrl
Dig
R
No left/right channel swap capability
No support for Power State control
Widget supports an Analog stream
Connection list is present
R
R
[8]
ConnList
UnSolCap
ProcWidget
Stripe
R
[7]
R
Unsolicited Response is supported
No Processing Controls parameter
No support for striping
[6]
R
[5]
R
[4]
FormatOvrd
R
N/A for pin complex
No amplifier info; use default amplifier
parameters from Audio Function node
instead
[3]
AmpParOvrd
R
0x0
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x0
0x0
0x1
No output amp
No input amp
Stereo widget
6.18.2. PortH PinCap
Table 293. PortH PinCap Command Verb Format
Verb ID
Payload
Response
Get
F00
0C
See bitfield table.
Table 294. PortH PinCap Command Response Format
Bit
[31:17]
[16]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
Reserved
This widget does not control EAPD pin
EapdCap
R
0x0
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Table 294. PortH PinCap Command Response Format
Bit
Bitfield Name
RW
Reset
Description
VRef generation not supported by this pin
complex.
[15:8]
VrefCntrl
R
0x00
[7]
[6]
[5]
[4]
[3]
[2]
Rsvd1
BalancedIO
InCap
R
R
R
R
R
R
0x0
0x0
0x1
0x1
0x0
0x1
Reserved
Pin complex does not have balanced pins.
Pin complex is input capable.
OutCap
Pin complex is output capable.
Pin does not have a headphone amplifier.
Pin complex can perform Presence Detect.
HdphDrvCap
PresDtctCap
Trigger is required for impedance
measurement
[1]
[0]
TrigRqd
R
R
0x1
0x1
ImpSenseCap
Pin complex supports impedance sense.
6.18.3. PortH ConLst
Table 295. PortH ConLst Command Verb Format
Verb ID
Payload
Response
Get
F00
0E
See bitfield table.
Table 296. PortH ConLst Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
R
0x0
Reserved
Connection list uses short-form (7-bit) NID
entries.
[7]
LForm
ConL
R
R
0x0
[6:0]
0x01
Number of NID entries in connection list.
6.18.4. PortH ConLstEntry
Table 297. PortH ConLstEntry Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
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Table 298. PortH ConLstEntry Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x00
0x00
0x00
0x03
Description
Unused list entry.
[31:24]
[23:16]
[15:8]
[7:0]
ConL3
ConL2
ConL1
ConL0
R
Unused list entry.
R
Unused list entry.
R
DAC1 Converter widget
6.18.5. PortH PinWCntrl
Table 299. PortH PinWCntrl Command Verb Format
Verb ID
F07
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
707
See bits [7:0] of bitfield table.
Table 300. PortH PinWCntrl Command Response Format
Bit
[31:7]
[6]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd2
OutEn
InEn
Reserved
RW
RW
R
0x0
1 = (CODEC) output path of Pin Widget is enabled
1 = (CODEC) input path of Pin Widget is enabled
Reserved
[5]
0x0
[4:3]
[2:0]
Rsvd1
VRefEn
0x0
R
0x0
Vref Out not supported on this Port
6.18.6. PortH UnsolResp
Table 301. PortH UnsolResp Command Verb Format
Verb ID
F08
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
708
See bits [7:0] of bitfield table.
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Table 302. PortH UnsolResp Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd2
R
0x00
Reserved
Allow generation of Unsolicited Responses.
Unsolicited response events occur upon
jack-insertion OR completion of a
Jack-Sense cycle.
[7]
En
RW
0x0
[6]
Rsvd1
Tag
R
0x0
Reserved
Software programmable field returned in top
six bits (31:26) of every Unsolicited
Response generated by this node.
[5:0]
RW
0x00
6.18.7. PortH ChSense
Table 303. PortH ChSense Command Verb Format
Verb ID
F09
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
Set2
709
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
709
0000_0000h
Table 304. PortH ChSense Command Response Format
Bit
Bitfield Name RW
Reset
Description
1 = something is plugged into jack associated with Pin
Complex.
[31]
PresDtct
R
0x0
Measured impedance of the widget. A value of all 1s
indicates that a valid sense reading is not available, or
the sense measurement is busy if it has been recently
triggered.
[30:0]
Impedance
R
0x7FFF_FFFF
Set 1 = perform impedance sensing on right channel
or ring of the connector
[0]
[0]
RightCh
LeftCh
W
W
0x0
0x0
Set 0 = perform impedance sensing on left channel or
tip of the connector
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6.18.8. PortH ConfigDefault
Table 305. PortH ConfigDefault Command Verb Format
Verb ID
F1C
Payload
Response
Get
Set1
Set2
Set3
Set4
00
See bitfield table.
0000_0000h
0000_0000h
0000_0000h
0000_0000h
71C
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
71D
71E
71F
Table 306. PortH ConfigDefault Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Port Connectivity = Jack;
Location = Mainboard rear.
[31:24]
Config4
RW
0x01
Default Device = Line Out;
[23:16]
[15:8]
[7:0]
Config3
Config2
Config1
RW
RW
RW
0x01
0x20
0x14
Connection Type = 1/8 inch jack.
Color = Grey;
Misc = No jack detect override.
Association = 1h;
Sequence = 4h.
6.19. DigOut0 Node (NID = 0x21)
6.19.1. DigOut0 WCap
Table 307. DigOut0 WCap Command Verb Format
Verb ID
Payload
Response
Get
F00
09
See bitfield table.
Table 308. DigOut0 WCap Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x0
Description
[31:24]
[23:20]
Rsvd2
Type
Reserved
Widget type = Pin Complex
R
0x4
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Table 308. DigOut0 WCap Command Response Format
Bit
[19:16]
[15:12]
[11]
[10]
[9]
Bitfield Name
RW
R
Reset
0x0
0x0
0x0
0x0
0x1
0x1
0x0
0x0
0x0
0x0
Description
Delay
Rsvd1
Number of sample delays through widget
Reserved
R
SwapCap
PwrCntrl
Dig
R
No support for swapping left and right channels
No support for Power State control
Widget supports a Digital stream
Connection list is present
R
R
[8]
ConnList
UnSolCap
ProcWidget
Stripe
R
[7]
R
No support for Unsolicited Response
No Processing Controls parameter
No support for striping
[6]
R
[5]
R
[4]
FormatOvrd
R
N/A for pin complex
No amplifier info; use default amplifier
parameters from Audio Function node instead
[3]
AmpParOvrd
R
0x0
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x0
0x0
0x1
No output amp
No input amp
Stereo widget
6.19.2. DigOut0 PinCap
Table 309. DigOut0 PinCap Command Verb Format
Verb ID
Payload
Response
Get
F00
0C
See bitfield table.
Table 310. DigOut0 PinCap Command Response Format
Bit
[31:17]
[16]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd2
Reserved
EapdCap
VrefCntrl
R
0x0
This widget does not control EAPD pin
Vref generation not supported on this pin
[15:8]
R
0x00
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Table 310. DigOut0 PinCap Command Response Format
Bit
[7]
[6]
[5]
[4]
[3]
[2]
[1]
[0]
Bitfield Name
RW
R
Reset
0x0
0x0
0x0
0x1
0x0
0x0
0x0
0x0
Description
Rsvd1
BalancedIO
InCap
Reserved
R
Pin complex does not have balanced pins.
Pin complex is not input capable.
Pin complex is output capable.
R
OutCap
R
HdphDrvCap
PresDtctCap
TrigRqd
R
Pin does not have a headphone amplifier.
Pin complex cannot perform Presence Detect.
N/A
R
R
ImpSenseCap
R
Pin complex does not support impedance sense.
6.19.3. DigOut0 ConLst
Table 311. DigOut0 ConLst Command Verb Format
Verb ID
Payload
Response
Get
F00
0E
See bitfield table.
Table 312. DigOut0 ConLst Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
LForm
ConL
R
0x0
Reserved.
Connection list uses short-form (7-bit) NID
entries.
[7]
R
R
0x0
[6:0]
0x05
Number of NID entries in connection list.
6.19.4. DigOut0 ConLstEntry0
Table 313. DigOut0 ConLstEntry0 Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
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Table 314. DigOut0 ConLstEntry0 Command Response Format
Bit
Bitfield Name
ConL3
RW
R
Reset
0x1C
0x1B
0x1F
0x1E
Description
ADC1Mux widget
[31:24]
[23:16]
[15:8]
[7:0]
ConL2
R
ADC0Mux widget
Reserved
Rsvd
R
ConL0
R
SPDIF Out Converter widget
6.19.5. DigOut0 ConLstEntry4
Table 315. DigOut0 ConLstEntry4 Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F02
04
Table 316. DigOut0 ConLstEntry4 Command Response Format
Bit
Bitfield Name
ConL7
RW
R
Reset
0x00
0x00
0x00
0x1D
Description
[31:24]
[23:16]
[15:8]
[7:0]
No connection
No connection
No connection
ConL6
R
ConL5
R
ConL4
R
ADC2Mux widget
6.19.6. DigOut0 ConSelectCtrl
Table 317. DigOut0 ConSelectCtrl Command Verb Format
Verb ID
F01
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
701
See bits [7:0] of bitfield table.
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Table 318. DigOut0 ConSelectCtrl Command Response Format
Bit
Bitfield Name
Rsvd
RW
R
Reset
0x0
Description
[31:1]
[2:0]
Reserved
Connection select control index.
Index
RW
0x0
6.19.7. DigOut0 PinWCntrl
Table 319. DigOut0 PinWCntrl Command Verb Format
Verb ID
F07
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
707
See bits [7:0] of bitfield table.
Table 320. DigOut0 PinWCntrl Command Response Format
Bit
[31:7]
[6]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd2
OutEn
Rsvd1
Reserved
RW
R
0x0
1 = (CODEC) output path of Pin Widget is enabled
Reserved
[5:0]
0x0
6.19.8. DigOut0 ConfigDefault
Table 321. DigOut0 ConfigDefault Command Verb Format
Verb ID
F1C
Payload
Response
See bitfield table.
0000_0000h
0000_0000h
0000_0000h
0000_0000h
Get
Set1
Set2
Set3
Set4
00
71C
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
71D
71E
71F
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Table 322. DigOut0 ConfigDefault Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Port Connectivity = Jack;
Location = Mainboard rear.
[31:24]
Config4
RW
0x01
Default Device = SPDIF Out;
Connection Type = RCA.
[23:16]
[15:8]
[7:0]
Config3
Config2
Config1
RW
RW
RW
0x44
0x21
0x70
Color = Grey;
Misc = Jack detect override.
Association = 7h;
Sequence = 0h.
6.20. InPort0Mux Node (NID = 0x15)
6.20.1. InPort0Mux WCap
Table 323. InPort0Mux WCap Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F00
09
Table 324. InPort0Mux WCap Command Response Format
Bit
[31:24]
[23:20]
[19:16]
[15:12]
[11]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
0x3
0x0
0x0
0x0
0x0
0x0
0x1
0x0
Description
Reserved
Type
R
Widget type = Audio Selector
Number of sample delays through widget
Reserved
Delay
R
Rsvd1
R
SwapCap
PwrCntrl
Dig
R
No left/right channel swap capability
No support for Power State control
Widget supports an Analog stream
Connection list is present
[10]
R
[9]
R
[8]
ConnList
UnSolCap
R
[7]
R
No support for Unsolicited Response
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Table 324. InPort0Mux WCap Command Response Format
Bit
[6]
[5]
Bitfield Name
RW
R
Reset
0x0
Description
No Processing Controls parameter.
No support for striping
ProcWidget
Stripe
R
0x0
No format info; use default format parameters
from Audio Function node instead
[4]
[3]
FormatOvrd
AmpParOvrd
R
R
0x0
0x1
This widget contains its own amplifier
parameters.
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x1
0x0
0x1
Output amp is present
No input amp
Stereo widget
6.20.2. InPort0Mux ConLst
Table 325. InPort0Mux ConLst Command Verb Format
Verb ID
Payload
Response
Get
F00
0E
See bitfield table.
Table 326. InPort0Mux ConLst Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
LForm
ConL
R
0x0
Reserved
Connection list uses short-form (7-bit) NID
entries.
[7]
R
R
0x0
[6:0]
0x09
Number of NID entries in connection list.
6.20.3. InPort0Mux OutAmpCap
Table 327. InPort0Mux OutAmpCap Command Verb Format
Verb ID
Payload
Response
Get
F00
12
See bitfield table.
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Table 328. InPort0Mux OutAmpCap Command Response Format
Bit
[31]
Bitfield Name
Mute
RW
R
Reset
0x0
Description
No mute capability
Reserved
[30:23]
[22:16]
[15]
Rsvd3
R
0x0
StepSize
Rsvd2
R
0x27
0x0
Size of each step in the gain range = 10dB
Reserved
R
Number of steps in the gain range = 5
(0dB to +40dB)
[14:8]
NumSteps
R
0x04
[7]
Rsvd1
Offset
R
R
0x0
Reserved
[6:0]
0x00
0dB-step is programmed with this offset
6.20.4. InPort0Mux OutAmpRight
Table 329. InPort0Mux OutAmpRight Command Verb Format
Verb ID
B80
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
390
See bits [7:0] of bitfield table.
Table 330. InPort0Mux OutAmpRight Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:3]
Rsvd1
R
0x0
Reserved
Amplifier gain step number:
000 = 0dB;
001 = 10dB;
[2:0]
Gain
RW
0x0
010 = 20dB;
011 = 30dB;
100 = 40dB
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6.20.5. InPort0Mux OutAmpLeft
Table 331. InPort0Mux OutAmpLeft Command Verb Format
Verb ID
BA0
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
3A0
See bits [7:0] of bitfield table.
Table 332. InPort0Mux OutAmpLeft Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:3]
Rsvd1
R
0x0
Reserved
Amplifier gain step number:
000 = 0dB;
001 = 10dB;
[2:0]
Gain
RW
0x0
010 = 20dB;
011 = 30dB;
100 = 40dB
6.20.6. InPort0Mux ConSelectCtrl
Table 333. InPort0Mux ConSelectCtrl Command Verb Format
Verb ID
F01
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
701
See bits [7:0] of bitfield table.
Table 334. InPort0Mux ConSelectCtrl Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:4]
[3:0]
Rsvd
R
0x0
Reserved
Connection select control index.
(Default = Port E)
Index
RW
0x0
6.20.7. InPort0Mux ConLstEntry0
Table 335. InPort0Mux ConLstEntry0 Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
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Table 336. InPort0Mux ConLstEntry0 Command Response Format
Bit
Bitfield Name
ConL3
RW
R
Reset
0x0B
0x0F
0x12
0x0E
Description
[31:24]
[23:16]
[15:8]
[7:0]
Port B
ConL2
R
Port F
ConL1
R
CD In
ConL0
R
Port E (default)
6.20.8. InPort0Mux ConLstEntry4
Table 337. InPort0Mux ConLstEntry4 Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F02
04
Table 338. InPort0Mux ConLstEntry4 Command Response Format
Bit
Bitfield Name
ConL7
RW
R
Reset
0x10
0x0A
0x0D
0x0C
Description
[31:24]
[23:16]
[15:8]
[7:0]
Port G
Port A
Port D
Port C
ConL6
R
ConL5
R
ConL4
R
6.20.9. InPort0Mux ConLstEntry8
Table 339. InPort0Mux ConLstEntry8 Command Verb Format
Verb ID
Payload
Response
Get
F02
08
See bitfield table.
Table 340. InPort0Mux ConLstEntry8 Command Response Format
Bit
Bitfield Name
ConL11
RW
R
Reset
0x0
Description
[31:24]
[23:16]
No connection.
No connection.
ConL10
R
0x0
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Table 340. InPort0Mux ConLstEntry8 Command Response Format
Bit
Bitfield Name
ConL9
RW
R
Reset
0x0
Description
[15:8]
[7:0]
No connection.
Port H
ConL8
R
0x11
6.21. InPort1Mux Node (NID = 0x16)
6.21.1. InPort1Mux WCap
Table 341. InPort1Mux WCap Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F00
09
Table 342. InPort1Mux WCap Command Response Format
Bit
[31:24]
[23:20]
[19:16]
[15:12]
[11]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
0x3
0x0
0x0
0x0
0x0
0x0
0x1
0x0
0x0
0x0
Description
Reserved
Type
R
Widget type = Audio Selector
Number of sample delays through widget
Reserved
Delay
R
Rsvd1
R
SwapCap
PwrCntrl
Dig
R
No left/right channel swap capability
No support for Power State control
Widget supports an Analog stream
Connection list is present
[10]
R
[9]
R
[8]
ConnList
UnSolCap
ProcWidget
Stripe
R
[7]
R
No support for Unsolicited Response
No Processing Controls parameter.
No support for striping
[6]
R
[5]
R
No format info; use default format
parameters from Audio Function node
instead
[4]
FormatOvrd
R
0x0
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Table 342. InPort1Mux WCap Command Response Format
Bit
Bitfield Name
RW
Reset
Description
This widget contains its own amplifier
parameters.
[3]
AmpParOvrd
R
0x1
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x1
0x0
0x1
Output amp is present
No input amp
Stereo widget
6.21.2. InPort1Mux ConLst
Table 343. InPort1Mux ConLst Command Verb Format
Verb ID
Payload
Response
Get
F00
0E
See bitfield table.
Table 344. InPort1Mux ConLst Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
LForm
ConL
R
0x0
Reserved
Connection list uses short-form (7-bit) NID
entries.
[7]
R
R
0x0
[6:0]
0x09
Number of NID entries in connection list.
6.21.3. InPort1Mux OutAmpCap
Table 345. InPort1Mux OutAmpCap Command Verb Format
Verb ID
Payload
Response
Get
F00
12
See bitfield table.
Table 346. InPort1Mux OutAmpCap Command Response Format
Bit
Bitfield Name
RW
R
Reset
0x0
Description
[31]
Mute
Rsvd3
No mute capability
Reserved
[30:23]
[22:16]
R
0x0
StepSize
R
0x27
Size of each step in the gain range = 10dB
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Table 346. InPort1Mux OutAmpCap Command Response Format
Bit
[15]
[14:8]
[7]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
Reserved
NumSteps
Rsvd1
R
0x04
0x0
Number of steps in the gain range = 5 (0dB to +40dB)
Reserved
R
[6:0]
Offset
R
0x00
0dB-step is programmed with this offset
6.21.4. InPort1Mux OutAmpRight
Table 347. InPort1Mux OutAmpRight Command Verb Format
Verb ID
B80
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
390
See bits [7:0] of bitfield table.
Table 348. InPort1Mux OutAmpRight Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:3]
Rsvd1
R
0x0
Reserved
Amplifier gain step number:
000 = 0dB;
001 = 10dB;
[2:0]
Gain
RW
0x0
010 = 20dB;
011 = 30dB;
100 = 40dB
6.21.5. InPort1Mux OutAmpLeft
Table 349. InPort1Mux OutAmpLeft Command Verb Format
Verb ID
BA0
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
3A0
See bits [7:0] of bitfield table.
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Table 350. InPort1Mux OutAmpLeft Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:3]
Rsvd1
R
0x0
Reserved
Amplifier gain step number:
000 = 0dB;
001 = 10dB;
[2:0]
Gain
RW
0x0
010 = 20dB;
011 = 30dB;
100 = 40dB
6.21.6. InPort1Mux ConSelectCtrl
Table 351. InPort1Mux ConSelectCtrl Command Verb Format
Verb ID
F01
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
701
See bits [7:0] of bitfield table.
Table 352. InPort1Mux ConSelectCtrl Command Response Format
Bit
Bitfield Name
Rsvd
RW
R
Reset
0x0
Description
[31:4]
[3:0]
Reserved
Connection select control index. (Default = Port E)
Index
RW
0x0
6.21.7. InPort1Mux ConLstEntry0
Table 353. InPort1Mux ConLstEntry0 Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
Table 354. InPort1Mux ConLstEntry0 Command Response Format
Bit
Bitfield Name
ConL3
RW
R
Reset
0x0B
0x0F
Description
[31:24]
[23:16]
Port B
Port F
ConL2
R
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Table 354. InPort1Mux ConLstEntry0 Command Response Format
Bit
Bitfield Name
ConL1
RW
R
Reset
0x12
Description
[15:8]
[7:0]
CD In
ConL0
R
0x0E
Port E (default)
6.21.8. InPort1Mux ConLstEntry4
Table 355. InPort1Mux ConLstEntry4 Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F02
04
Table 356. InPort1Mux ConLstEntry4 Command Response Format
Bit
Bitfield Name
ConL7
RW
R
Reset
0x10
0x0A
0x0D
0x0C
Description
[31:24]
[23:16]
[15:8]
[7:0]
Port G
Port A
Port D
Port C
ConL6
R
ConL5
R
ConL4
R
6.21.9. InPort1Mux ConLstEntry8
Table 357. InPort1Mux ConLstEntry8 Command Verb Format
Verb ID
Payload
Response
Get
F02
08
See bitfield table.
Table 358. InPort1Mux ConLstEntry8 Command Response Format
Bit
Bitfield Name
ConL11
RW
R
Reset
0x0
Description
[31:24]
[23:16]
[15:8]
[7:0]
No connection.
No connection.
No connection.
Port H
ConL10
ConL9
R
0x0
R
0x0
ConL8
R
0x11
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6.22. PCBEEP Node (NID = 0x23)
6.22.1. PCBEEP OutAmpLeft
Table 359. PCBEEP OutAmpLeft Command Verb Format
Verb ID
BA0
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
3A0
See bits [7:0] of bitfield table.
Table 360. PCBEEP OutAmpLeft Command Response Format
Bit
[31:8]
[7]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
Reserved
Mute
RW
R
0x0
1 = disable Digital PC Beep
Reserved
[6:2]
[1:0]
Rsvd1
0x0
Gain
RW
0x0
Mono (left) amplifier gain step number
6.22.2. PCBEEP WCap
Table 361. PCBEEP WCap Command Verb Format
Verb ID
Payload
Response
Get
F00
09
See bitfield table.
Table 362. PCBEEP WCap Command Response Format
Bit
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
[31:24]
[23:20]
[19:4]
Reserved
Type
R
0x7
Widget type = Beep Generator
Reserved
Rsvd1
R
0x0
This widget contains its own amplifier
parameters.
[3]
[2]
AmpParOvrd
OutAmpPrsnt
R
R
0x1
0x1
Output amp is present
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Table 362. PCBEEP WCap Command Response Format
Bit
[1]
[0]
Bitfield Name
RW
R
Reset
0x0
Description
InAmpPrsnt
Stereo
N/A
R
0x0
Mono widget
6.22.3. PCBEEP OutAmpCap
Table 363. PCBEEP OutAmpCap Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F00
12
Table 364. PCBEEP OutAmpCap Command Response Format
Bit
[31]
Bitfield Name
Mute
RW
R
Reset
0x0
Description
Amplifier is capable of muting
Reserved
[30:23]
[22:16]
[15]
Rsvd3
R
0x0
StepSize
Rsvd2
R
0x17
0x0
Size of each step in the gain range = 6 dB
Reserved
R
Number of steps in the gain range = 4
(-18dB to 0dB)
[14:8]
NumSteps
R
0x03
[7]
Rsvd1
Offset
R
R
0x0
Reserved
[6:0]
0x03
0dB-step is programmed with this offset
6.22.4. PCBEEP Gen
Table 365. PCBEEP Gen Command Verb Format
Verb ID
F0A
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
70A
See bits [7:0] of bitfield table.
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Table 366. PCBEEP Gen Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
R
0x0
Reserved
Enable internal PC-Beep generation.
Divider = 00h - disables internal PC Beep
generation and enables normal operation of
the CODEC.
Divider not 00h - generates the beep tone
on all Pin Complexes that are currently
configured as outputs. The HD Audio spec
states that the beep tone frequency =
(48 KHz HD Audio SYNC rate) / (4*Divider),
producing tones from 47 Hz to 12 KHz
(logarithmic scale). Instead, this part
generates tones with frequency = 48000 *
(257 - Divider) / 1024, yielding a linear
range from 12 KHz to 93.75 Hz in steps of
46.875 Hz. If JackSenseVSR[Rate2x], then
the beep tones generated have frequency =
48000 * (513 - Divider) / 1024, yielding a
range of 24 KHz to 12093.75 Hz in steps of
46.875 Hz.
[7:0]
Divider
RW
0x0
6.23. CD Node (NID = 0x12)
6.23.1. CD WCap
Table 367. CD WCap Command Verb Format
Verb ID
Payload
Response
Get
F00
09
See bitfield table.
Table 368. CD WCap Command Response Format
Bit
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
[31:24]
[23:20]
[19:16]
[15:12]
[11]
Reserved
Type
R
0x4
Widget type = Pin Complex
Number of sample delays through widget
Reserved
Delay
R
0x0
Rsvd1
R
0x0
SwapCap
R
0x0
No left/right channel swap capability
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Table 368. CD WCap Command Response Format
Bit
[10]
[9]
[8]
[7]
[6]
[5]
[4]
[3]
[2]
[1]
[0]
Bitfield Name
RW
R
Reset
0x0
0x0
0x0
0x0
0x0
0x0
0x0
0x0
0x0
0x0
0x1
Description
PwrCntrl
Dig
No support for Power State control
Widget supports an Analog stream
No connection list is present
No support for Unsolicited Response
No Processing Controls parameter
No support for striping
N/A for pin complex
R
ConnList
R
UnSolCap
ProcWidget
Stripe
R
R
R
FormatOvrd
AmpParOvrd
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
No amp
R
No output amp
R
No input amp
R
Stereo widget
6.23.2. CD PinCap
Table 369. CD PinCap Command Verb Format
Verb ID
Payload
Response
Get
F00
0C
See bitfield table.
Table 370. CD PinCap Command Response Format
Bit
[31:17]
[16]
[15:8]
[7]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
Reserved
EapdCap
VrefCntrl
Rsvd1
R
0x0
This widget does not control EAPD pin
Vref generation not supported on this pin
Reserved
R
0x00
0x0
R
[6]
BalancedIO
InCap
R
0x0
Pin complex does not have balanced pins.
Pin complex is input capable.
[5]
R
0x1
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Table 370. CD PinCap Command Response Format
Bit
[4]
[3]
Bitfield Name
RW
R
Reset
0x0
Description
OutCap
Pin complex is not output capable.
HdphDrvCap
R
0x0
Pin does not have a headphone amplifier.
Pin complex cannot perform Presence
Detect.
[2]
[1]
[0]
PresDtctCap
TrigRqd
R
R
R
0x0
0x0
0x0
N/A
Pin complex does not support impedance
sense.
ImpSenseCap
6.23.3. CD PinWCntrl
Table 371. CD PinWCntrl Command Verb Format
Verb ID
F07
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
707
See bits [7:0] of bitfield table.
Table 372. CD PinWCntrl Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:6]
Rsvd2
R
0x0
Reserved
1 = (CODEC) input path of Pin Widget is
enabled
[5]
InEn
RW
R
0x0
0x0
[4:0]
Rsvd1
Reserved
6.23.4. CD ConfigDefault
Table 373. CD ConfigDefault Command Verb Format
Verb ID
F1C
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
Set2
71C
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
71D
0000_0000h
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Table 373. CD ConfigDefault Command Verb Format
Verb ID
71E
Payload
Response
Set3
Set4
See bits [7:0] of bitfield table.
See bits [7:0] of bitfield table.
0000_0000h
0000_0000h
71F
Table 374. CD ConfigDefault Command Response Format
Bit
Bitfield Name
RW
Reset
Description
Port Connectivity = No connect;
Location = Internal.
[31:24]
Config4
Config3
Config2
Config1
RW
0x50
Default Device = CD;
Connection Type = ATAPI internal.
[23:16]
[15:8]
[7:0]
RW
RW
RW
0x33
0x01
0xF0
Color = Unknown;
Misc = Jack detect override.
Association = Fh;
Sequence = 0h.
6.24. VolumeKnob Node (NID = 0x24)
6.24.1. VolumeKnob WCap
Table 375. VolumeKnob WCap Command Verb Format
Verb ID
Payload
Response
Get
F00
09
See bitfield table.
Table 376. VolumeKnob WCap Command Response Format
Bit
Bitfield Name RW
Reset
Description
[31:24]
Rsvd2
Type
R
R
0x0
Reserved
0x6 = Enabled
0xF = Disabled
[23:20]
[19:0]
Widget type = Volume Knob Widget
Reserved. Software assumes capability of
unsolicited responses and a connection list for this
widget type.
Rsvd1
R
0x0
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6.24.2. VolumeKnob VolKnobCap
Table 377. VolumeKnob VolKnobCap Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F00
13
Table 378. VolumeKnob VolKnobCap Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd
R
0x0
Reserved
Indicates if software can write a base
volume to the Volume Control Knob.
[7]
Delta
R
R
0x1
Total number of steps in the range of the
volume knob = 128
[6:0]
NumSteps
0x7F
6.24.3. VolumeKnob ConLst
Table 379. VolumeKnob ConLst Command Verb Format
Verb ID
Payload
Response
Get
F00
0E
See bitfield table.
Table 380. VolumeKnob ConLst Command Response Format
Bit
Bitfield Name RW
Reset
Description
[31:8]
Rsvd
R
R
0x0
Reserved.
Connection list uses short-form (7-bit) NID
entries.
[7]
LForm
0x0
DAC4 enable = 0x05
DAC4 disable = 0x04
[6:0]
ConL
R
Number of NID entries in connection list.
6.24.4. VolumeKnob ConLstEntry0
Table 381. VolumeKnob ConLstEntry0 Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
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Table 382. VolumeKnob ConLstEntry0 Command Response Format
Bit
Bitfield Name
ConL3
RW
R
Reset
0x05
0x04
0x03
0x02
Description
[31:24]
[23:16]
[15:8]
[7:0]
DAC3
DAC2
DAC1
DAC0
ConL2
R
ConL1
R
ConL0
R
6.24.5. VolumeKnob ConLstEntry4
Table 383. VolumeKnob ConLstEntry4 Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F02
04
Table 384. VolumeKnob ConLstEntry4 Command Response Format
Bit
Bitfield Name
ConL7
RW
R
Reset
0x0
Description
No connection.
[31:24]
[23:16]
[15:8]
ConL6
R
0x0
No connection.
No connection.
ConL5
R
0x0
0x06 = Enabled
0x00 = Disabled
[7:0]
ConL4
R
DAC4
6.24.6. VolumeKnob UnsolResp
Table 385. VolumeKnob UnsolResp Command Verb Format
Verb ID
F08
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
708
See bits [7:0] of bitfield table.
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Table 386. VolumeKnob UnsolResp Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:8]
Rsvd2
R
0x00
Reserved
Allow generation of Unsolicited Responses.
Unsolicited response events occur upon
jack-insertion OR completion of a
Jack-Sense cycle.
[7]
En
RW
0x0
[6]
Rsvd1
Tag
R
0x0
Reserved
Software programmable field returned in top
six bits (31:26) of every Unsolicited
Response generated by this node.
[5:0]
RW
0x00
6.24.7. VolumeKnob Cntrl
Table 387. VolumeKnob Cntrl Command Verb Format
Verb ID
F0F
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
70F
See bits [7:0] of bitfield table.
Table 388. VolumeKnob Cntrl Command Response Format
Bitfield Name RW Reset Description
Bit
[31:8]
Rsvd
R
0x0
Reserved
Direct = 1 causes the volume control to directly control the
hardware volume of the slave amps.
[7]
Direct
RW
RW
0x0
Direct = 0 causes unsolicited responses to be generated.
[6:0]
Volume
0x7F
Volume, specified in steps of amplifier gain
6.24.8. VolumeKnob VCSR0
Table 389. VolumeKnob VCSR0 Command Verb Format
Verb ID
FE0
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
7E0
See bits [7:0] of bitfield table.
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Table 390. VolumeKnob VCSR0 Command Response Format
Bit
Bitfield Name
RW
Reset
Description
[31:4]
Rsvd
R
0x0
Reserved
Allow continuous incrementing/
[3]
Continuous
Rate
RW
RW
0x1
0x0
decrementing of the volume knob value.
Volume knob update rate, for continuous
mode and de-bouncing (2.5 Hz to 20 Hz, in
increments of 2.5 Hz)
[2:0]
6.25. InPort0Vol Node (NID = 0x18)
6.25.1. InPort0Vol WCap
Table 391. InPort0Vol WCap Command Verb Format
Verb ID
Payload
Response
Get
F00
09
See bitfield table.
Table 392. InPort0Vol WCap Command Response Format
Bit
[31:24]
[23:20]
[19:16]
[15:12]
[11]
Bitfield Name
Rsvd2
RW Reset
Description
R
R
R
R
R
R
R
R
R
R
R
0x0
0x3
0x0
0x0
0x0
0x0
0x0
0x1
0x0
0x0
0x0
Reserved
Widget type = Audio Selector
Type
Delay
Number of sample delays through widget
Reserved
Rsvd1
SwapCap
PwrCntrl
Dig
No left/right channel swap capability
No support for Power State control
Widget supports an Analog stream
Connection list is present
[10]
[9]
[8]
ConnList
UnSolCap
ProcWidget
Stripe
[7]
No support for Unsolicited Response
No Processing Controls parameter.
No support for striping
[6]
[5]
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Table 392. InPort0Vol WCap Command Response Format
Bit
Bitfield Name
RW Reset
Description
No format info; use default format parameters from Audio
Function node instead
[4]
FormatOvrd
R
R
0x0
0x0
No amplifier info; use default amplifier parameters from
Audio Function node instead
[3]
AmpParOvrd
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x0
0x1
0x1
No output amp
input amp is present
Stereo widget
6.25.2. InPort0Vol ConLst
Table 393. InPort0Vol ConLst Command Verb Format
Verb ID
Payload
Response
Get
F00
0E
See bitfield table.
Table 394. InPort0Vol ConLst Command Response Format
Bit
[31:8]
[7]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd
LForm
ConL
Reserved
R
0x0
Connection list uses short-form (7-bit) NID entries.
Number of NID entries in connection list.
[6:0]
R
0x01
6.25.3. InPort0Vol InAmpRight
Table 395. InPort0Vol InAmpRight Command Verb Format
Verb ID
B00
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
350
See bits [7:0] of bitfield table.
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Table 396. InPort0Vol InAmpRight Command Response Format
Bit
Bitfield Name
Rsvd1
RW
R
Reset
0x0
Description
[31:4]
[3:0]
Reserved
Amplifier gain step number
Gain
RW
0x0
6.25.4. InPort0Vol InAmpLeft
Table 397. InPort0Vol InAmpLeft Command Verb Format
Verb ID
B20
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
360
See bits [7:0] of bitfield table.
Table 398. InPort0Vol InAmpLeft Command Response Format
Bit
Bitfield Name
Rsvd1
RW
R
Reset
0x0
Description
[31:4]
[3:0]
Reserved
Amplifier gain step number
Gain
RW
0x0
6.25.5. InPort0Vol ConLstEntry
Table 399. InPort0Vol ConLstEntry Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
Table 400. InPort0Vol ConLstEntry Command Response Format
Bit
Bitfield Name
ConL3
RW
R
Reset
0x00
0x00
0x00
0x15
Description
[31:24]
[23:16]
[15:8]
[7:0]
No Connection
No Connection
No Connection
ConL2
R
ConL1
R
ConL0
R
InPort0 Mux widget
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6.26. InPort1Vol Node (NID = 0x19)
6.26.1. InPort1Vol WCap
Table 401. InPort1Vol WCap Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F00
09
Table 402. InPort1Vol WCap Command Response Format
Bitfield Name RW Reset Description
Bit
[31:24]
[23:20]
[19:16]
[15:12]
[11]
Rsvd2
Type
R
R
R
R
R
R
R
R
R
R
R
0x0
0x3
0x0
0x0
0x0
0x0
0x0
0x1
0x0
0x0
0x0
Reserved
Widget type = Audio Selector
Number of sample delays through widget
Reserved
Delay
Rsvd1
SwapCap
PwrCntrl
Dig
No left/right channel swap capability
No support for Power State control
Widget supports an Analog stream
Connection list is present
[10]
[9]
[8]
ConnList
UnSolCap
ProcWidget
Stripe
[7]
No support for Unsolicited Response
No Processing Controls parameter.
No support for striping
[6]
[5]
No format info; use default format parameters from Audio
Function node instead
[4]
[3]
FormatOvrd
AmpParOvrd
R
R
0x0
0x0
No amplifier info; use default amplifier parameters from Audio
Function node instead
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x0
0x1
0x1
No output amp
input amp is present
Stereo widget
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6.26.2. InPort1Vol ConLst
Table 403. InPort1Vol ConLst Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F00
0E
Table 404. InPort1Vol ConLst Command Response Format
Bit
[31:8]
[7]
Bitfield Name
Rsvd
RW
R
Reset
0x0
Description
Reserved
LForm
R
0x0
Connection list uses short-form (7-bit) NID entries.
Number of NID entries in connection list.
[6:0]
ConL
R
0x01
6.26.3. InPort1Vol InAmpRight
Table 405. InPort1Vol InAmpRight Command Verb Format
Verb ID
B00
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
350
See bits [7:0] of bitfield table.
Table 406. InPort1Vol InAmpRight Command Response Format
Bit
Bitfield Name
Rsvd1
RW
R
Reset
0x0
Description
[31:4]
[3:0]
Reserved
Amplifier gain step number
Gain
RW
0x0
6.26.4. InPort1Vol InAmpLeft
Table 407. InPort1Vol InAmpLeft Command Verb Format
Verb ID
B20
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
360
See bits [7:0] of bitfield table.
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Table 408. InPort1Vol InAmpLeft Command Response Format
Bit
Bitfield Name
Rsvd1
RW
R
Reset
0x0
Description
[31:4]
[3:0]
Reserved
Amplifier gain step number
Gain
RW
0x0
6.26.5. InPort1Vol ConLstEntry
Table 409. InPort1Vol ConLstEntry Command Verb Format
Verb ID
Payload
Response
See bitfield table.
Get
F02
00
Table 410. InPort1Vol ConLstEntry Command Response Format
Bit
Bitfield Name
ConL3
RW
R
Reset
0x00
0x00
0x00
0x16
Description
[31:24]
[23:16]
[15:8]
[7:0]
No Connection
No Connection
No Connection
ConL2
R
ConL1
R
ConL0
R
InPort1Mux widget
6.27. ADC0Mux Node (NID = 0x1B)
6.27.1. ADC0Mux WCap
Table 411. ADC0Mux WCap Command Verb Format
Verb ID
Payload
Response
Get
F00
09
See bitfield table.
Table 412. ADC0Mux WCap Command Response Format
Bit
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
[31:24]
[23:20]
[19:16]
Reserved
Type
R
0x3
Widget type = Audio Selector
Delay
R
0x0
Number of sample delays through widget
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Table 412. ADC0Mux WCap Command Response Format
Bit
[15:12]
[11]
[10]
[9]
Bitfield Name
RW
R
Reset
0x0
0x1
0x0
0x0
0x1
0x0
0x0
0x0
Description
Rsvd1
SwapCap
PwrCntrl
DigitalStrm
ConnList
UnsolCap
ProcWidget
Stripe
Reserved
R
Left and right channels can be swapped
No support for Power State control
Widget supports an Analog stream
Connection list is present
R
R
[8]
R
[7]
R
No support for Unsolicited Response
No Processing Controls parameter.
No support for striping
[6]
R
[5]
R
No format info; use default format
parameters from Audio Function node
instead
[4]
[3]
FormatOvrd
R
R
0x0
0x1
This widget contains its own amplifier
parameters.
AmpParamOvrd
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x1
0x0
0x1
Output amp is present
No input amp
Stereo widget
6.27.2. ADC0Mux ConLst
Table 413. ADC0Mux ConLst Command Verb Format
Verb ID
Payload
Response
Get
F00
0E
See bitfield table.
Table 414. ADC0Mux ConLst Command Response Format
Bit
Bitfield Name RW
Rsvd
Reset
Description
[31:8]
R
0x0
Reserved
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Table 414. ADC0Mux ConLst Command Response Format
Bit
Bitfield Name RW
Reset
Description
[7]
LForm
ConL
R
R
0x0
Connection list uses short-form (7-bit) NID entries.
Number of NID entries in connection list.
0x03 = Enabled
0x01 = Disabled
[6:0]
6.27.3. ADC0Mux ConSelectCtrl
Table 415. ADC0Mux ConSelectCtrl Command Verb Format
Verb ID
F01
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
701
See bits [7:0] of bitfield table.
Table 416. ADC0Mux ConSelectCtrl Command Response Format
Bit
Bitfield Name
Rsvd
RW
R
Reset
0x0
Description
[31:2]
[1:0]
Reserved
Connection select control index.
Index
RW
0x0
6.27.4. ADC0Mux ConLstEntry
Table 417. ADC0Mux ConLstEntry Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
Table 418. ADC0Mux ConLstEntry Command Response Format
Bit
Bitfield Name
RW
Reset
Description
No connection
[31:24]
ConL3
R
0x00
0x14 = Enabled
0x00 = Disabled
[23:16]
ConL2
R
DMic1 pin widget
0x13 = Enabled
0x00 = Disabled
[15:8]
[7:0]
ConL1
ConL0
R
R
DMic0 pin widget
InPort0Vol widget
0x18
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6.27.5. ADC0Mux LR
Table 419. ADC0Mux LR Command Verb Format
Verb ID
F0C
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
70C
See bits [7:0] of bitfield table.
Table 420. ADC0Mux LR Command Response Format
Bit
[31:3]
[2]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd2
SwapEn
Rsvd1
Reserved
RW
R
0x0
1 = swap left and right channels of this Widget.
Reserved
[1:0]
0x0
6.27.6. ADC0Mux OutAmpCap
Table 421. ADC0Mux OutAmpCap Command Verb Format
Verb ID
Payload
Response
Get
F00
12
See bitfield table.
Table 422. ADC0Mux OutAmpCap Command Response Format
Bit
[31]
Bitfield Name
Mute
RW
R
Reset
0x1
Description
Amplifier is capable of muting
Reserved
[30:23]
Rsvd3
R
0x0
Size of each step in the gain range, N/A
since there are no steps
[22:16]
StepSize
R
0x00
[15]
[14:8]
[7]
Rsvd2
NumSteps
Rsvd1
R
R
R
R
0x0
0x00
0x0
Reserved
No steps, gain is fixed at 0dB
Reserved
[6:0]
Offset
0x00
0dB-step is programmed with this offset
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6.27.7. ADC0Mux OutAmpRight
Table 423. ADC0Mux OutAmpRight Command Verb Format
Verb ID
B80
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
390
See bits [7:0] of bitfield table.
Table 424. ADC0Mux OutAmpRight Command Response Format
Bit
[31:8]
[7]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
Reserved
Mute
RW
R
0x1
1 = mute is active
Reserved
[6:0]
Rsvd1
0x0
6.27.8. ADC0Mux OutAmpLeft
Table 425. ADC0Mux OutAmpLeft Command Verb Format
Verb ID
BA0
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
3A0
See bits [7:0] of bitfield table.
Table 426. ADC0Mux OutAmpLeft Command Response Format
Bit
[31:8]
[7]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
Reserved
Mute
RW
R
0x1
1 = mute is active
Reserved
[6:0]
Rsvd1
0x0
6.28. ADC1Mux Node (NID = 0x1C)
6.28.1. ADC1Mux WCap
Table 427. ADC1Mux WCap Command Verb Format
Verb ID
Payload
Response
Get
F00
09
See bitfield table.
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Table 428. ADC1Mux WCap Command Response Format
Bit
[31:24]
[23:20]
[19:16]
[15:12]
[11]
Bitfield Name
RW
R
Reset
0x0
0x3
0x0
0x0
0x1
0x0
0x0
0x1
0x0
0x0
0x0
Description
Rsvd2
Type
Reserved
Widget type = Audio Selector
R
Delay
R
Number of sample delays through widget
Reserved
Rsvd1
R
SwapCap
PwrCntrl
DigitalStrm
ConnList
UnsolCap
ProcWidget
Stripe
R
Left and right channels can be swapped
No support for Power State control
Widget supports an Analog stream
Connection list is present
[10]
R
[9]
R
[8]
R
[7]
R
No support for Unsolicited Response
No Processing Controls parameter.
No support for striping
[6]
R
[5]
R
No format info; use default format
parameters from Audio Function node
instead
[4]
[3]
FormatOvrd
R
R
0x0
0x1
This widget contains its own amplifier
parameters.
AmpParamOvrd
[2]
[1]
[0]
OutAmpPrsnt
InAmpPrsnt
Stereo
R
R
R
0x1
0x0
0x1
Output amp is present
No input amp
Stereo widget
6.28.2. ADC1Mux ConLst
Table 429. ADC1Mux ConLst Command Verb Format
Verb ID
Payload
Response
Get
F00
0E
See bitfield table.
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Table 430. ADC1Mux ConLst Command Response Format
Bit
[31:8]
[7]
Bitfield Name
Rsvd
RW
R
Reset
0x0
Description
Reserved
LForm
R
0x0
Connection list uses short-form (7-bit) NID entries.
Number of NID entries in connection list.
0x03 = Enabled
0x01 = Disabled
[6:0]
ConL
R
6.28.3. ADC1Mux ConSelectCtrl
Table 431. ADC1Mux ConSelectCtrl Command Verb Format
Verb ID
F01
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
701
See bits [7:0] of bitfield table.
Table 432. ADC1Mux ConSelectCtrl Command Response Format
Bit
Bitfield Name
Rsvd
RW
R
Reset
0x0000_0000
0x0
Description
[31:2]
[1:0]
Reserved
Connection select control index.
Index
RW
6.28.4. ADC1Mux ConLstEntry
Table 433. ADC1Mux ConLstEntry Command Verb Format
Verb ID
Payload
Response
Get
F02
00
See bitfield table.
Table 434. ADC1Mux ConLstEntry Command Response Format
Bit
Bitfield Name
RW
Reset
Description
No connection
DMic1 pin widget
[31:24]
ConL3
R
0x00
0x14 = Enabled
0x00 = Disabled
[23:16]
ConL2
R
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Table 434. ADC1Mux ConLstEntry Command Response Format
Bit
Bitfield Name
RW
Reset
Description
0x13 = Enabled
0x00 = Disabled
[15:8]
[7:0]
ConL1
R
DMic0 pin widget
InPort1Vol widget
ConL0
R
0x19
6.28.5. ADC1Mux LR
Table 435. ADC1Mux LR Command Verb Format
Verb ID
F0C
Payload
00
Response
Get
See bitfield table.
0000_0000h
Set1
70C
See bits [7:0] of bitfield table.
Table 436. ADC1Mux LR Command Response Format
Bit
[31:3]
[2]
Bitfield Name
RW
R
Reset
0x0
Description
Rsvd2
SwapEn
Rsvd1
Reserved
RW
R
0x0
1 = swap left and right channels of this Widget.
Reserved
[1:0]
0x0
6.28.6. ADC1Mux OutAmpCap
Table 437. ADC1Mux OutAmpCap Command Verb Format
Verb ID
Payload
Response
Get
F00
12
See bitfield table.
Table 438. ADC1Mux OutAmpCap Command Response Format
Bit
[31]
Bitfield Name
Mute
RW
R
Reset
0x1
Description
Amplifier is capable of muting
Reserved
[30:23]
Rsvd3
R
0x0
Size of each step in the gain range, N/A
since there are no steps
[22:16]
[15]
StepSize
Rsvd2
R
R
0x00
0x0
Reserved
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Table 438. ADC1Mux OutAmpCap Command Response Format
Bit
[14:8]
[7]
Bitfield Name
NumSteps
Rsvd1
RW
R
Reset
0x00
0x0
Description
No steps, gain is fixed at 0dB
Reserved
R
[6:0]
Offset
R
0x00
0dB-step is programmed with this offset
6.28.7. ADC1Mux OutAmpRight
Table 439. ADC1Mux OutAmpRight Command Verb Format
Verb ID
B80
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
390
See bits [7:0] of bitfield table.
Table 440. ADC1Mux OutAmpRight Command Response Format
Bit
[31:8]
[7]
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
Reserved
Mute
RW
R
0x1
1 = mute is active
Reserved
[6:0]
Rsvd1
0x0
6.28.8. ADC1Mux OutAmpLeft
Table 441. ADC1Mux OutAmpLeft Command Verb Format
Verb ID
BA0
Payload
00
Response
See bitfield table.
0000_0000h
Get
Set1
3A0
See bits [7:0] of bitfield table.
Table 442. ADC1Mux OutAmpLeft Command Response Format
Bit
Bitfield Name
Rsvd2
RW
R
Reset
0x0
Description
[31:8]
[7]
Reserved
Mute
RW
R
0x1
1 = mute is active
Reserved
[6:0]
Rsvd1
0x0
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7. ORDERING INFORMATION
7.1. 92HD206 Family Options and Part Order Numbers
Part Order Number
92HD206XX5PRGXyyX
92HD206DX5PRGXyyX
Voltage
5 V
5 V
DAC SNR
95dB
95dB
Dolby
No
Pkg Pins
48 LQFP
48 LQFP
Home Theater/Sound Room
NOTE: When ordering these parts the “yy” will be replaced with the CODEC revision. Add an “8” to the end of any of
these part numbers for delivery on Tape and Reel. The minimum order quantity for Tape and Reel is 2,000 units.
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8. PIN INFORMATION
8.1. 92HD206 48-Pin LQFP Diagram
Figure 3. 48-Pin LQFP Pinout
DVDD_CORE
1
2
3
4
5
6
7
8
36
35
34
33
32
31
30
29
28
27
26
25
PORTD_R
V
O
L
U
M
E
U
P
/GPIO1
PORTD_L
SENSE_B
CAP2
VREFOUT-D
VREFOUT-E
VREFOUT-F
VREFOUT-C
VREFOUT-B
VREFFILT
AVSS1
VOLUME DOWN
/GPIO2
DVSS
SDO
BITCLK
DVSS
48 LQFP
SDI
DVDD_CORE
SYNC
9
10
11
12
RESET#
PCBEEP
AVDD1
8.2. Pin Table for 92HD206 in 48 Pin LQFP
Internal
Pin
Pin Name
Pin Function
I/O
I(Digital)
Pull-up/
Location
Pull-down
DVDD_CORE
Digital Vdd = 3.3 V
None
1
2
Volume Control
OR
Volume Up/GPIO1
I/O(Digital) Pull-up 50 KΩ
General Purpose I/O
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Internal
Pull-up/
Pin
Pin Name
Pin Function
I/O
Location
Pull-down
Volume Control
OR
Volume Down/GPIO2
I/O(Digital) Pull-up 50 KΩ
3
General Purpose I/O
DVSS
Digital Ground
I(Digital)
None
None
4
5
HD Audio Serial Data output
(inbound stream)
SDATA_OUT
I/O(Digital)
BIT_CLK
DVSS3
HD Audio Bit Clock
Digital Ground
I(Digital)
I(Digital)
None
None
6
7
HD Audio Serial Data
(outbound stream)
SDATA_IN
O(Digital)
None
8
DVDD_CORE
SYNC
Digital Vdd = 3.3 V
HD Audio Frame Sync
HD Audio Reset
PC Beep
I(Digital)
I(Digital)
I(Digital)
I(Analog)
None
None
None
None
None
None
None
None
None
None
None
None
None
None
None
None
None
None
None
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
RESET#
PCBEEP
SENSE_A
PORT-E_L
PORT-E_R
PORT-F_L
PORT-F_R)
CD-L
Jack insertion detection Ports A, B, C, D I(Analog)
Input/Output of Left DAC2
Input/Output of Right DAC2
Input/Output of Left DAC3
Input/Output of Right DAC3
CD Audio Left Channel
CD Audio Analog Ground
CD Audio Right Channel
Input/Output of Left DAC0, 3, 4
Input/Output of Right DAC0, 3, 4
Input/Output of Left DAC1
Input/Output of Right DAC1
Analog Vdd = 5 V
I/O(Analog)
I/O(Analog)
I/O(Analog)
I/O(Analog)
I(Analog)
CD-GND
I(Analog)
CD-R
I(Analog)
PORT-B_L (HP)
PORT-B_R (HP)
PORT-C_L
PORT-C_R
AVDD1
I/O(Analog)
I/O(Analog)
I/O(Analog)
I/O(Analog)
I(Analog)
AVSS1
Analog Ground
I(Analog)
VREF FILT
Analog Virtual Ground
O(Analog)
Reference Voltage out drive
VREFOUT-B
VREFOUT-C
VREFOUT-F
VREFOUT-E
O(Analog)
O(Analog)
O(Analog)
O(Analog)
None
None
None
None
28
29
30
31
(intended for mic bias) for Port B
Reference Voltage out drive
(intended for mic bias) for Port C
Reference Voltage out drive
(intended for mic bias) for Port F
Reference Voltage out drive
(intended for mic bias) for Port E
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Internal
Pull-up/
Pin
Pin Name
Pin Function
I/O
Location
Pull-down
Reference Voltage out drive
VREFOUT-D
O(Analog)
O(Analog)
None
32
(intended for mic bias) for Port D
CAP2
ADC reference Cap
None
None
None
None
33
34
35
36
SENSE_B
Jack insertion detection Ports E, F, G, H I(Analog)
PORT-D_L (HP)
PORT-D_R (HP)
Input/Output of Left DAC0
Input/Output of Right DAC0
I/O(Analog)
I/O(Analog)
Reference Voltage out drive
(ntended for mic bias) for Port A
VREFOUT-A
O(Analog)
None
37
AVDD2
PORT-A_L (HP)
DVDD_CORE
PORT-A_R (HP)
AVSS3
Analog Vdd = 5 V
Input/Output of Left DAC0, 3, 4
Digital Vdd = 3.3 V
I(Analog)
I/O(Analog)
I(Digital)
None
None
None
None
None
None
None
None
None
Pull-up
38
39
40
41
42
43
44
45
46
Input/Output of Right DAC0, 3, 4
Analog Ground
I/O(Analog)
I(Analog)
PORT-G_L
Input/Output of Left DAC2
Input/Output of Right DAC2
Input/Output of Left DAC1
Input/Output of Right DAC1
I/O(Analog)
I/O(Analog)
I/O(Analog)
I/O(Analog)
PORT-G_R
PORT-H_L
PORT-H_R
SPDIF Input, General Purpose I/O,
EAPD
SPDIFIN/GPIO0/EAPD
S/PDIF_OUT
I/O(Digital)
O(Digital)
47
50 KΩ or more
SPDIF Digital Output
(50 KΩ internal pull-down)
50 KΩ internal
pull-down
48
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9. PACKAGE OUTLINE AND PACKAGE DIMENSIONS
Package dimensions are kept current with JEDEC Publication No. 95
9.1. 48-Pin LQFP
Figure 4. 48-Pin LQFP Package Outline and Package Dimensions
A2
LQFP Dimensions in mm
Key
A
A1
A2
D
D1
E
E1
L
Min
1.40
0.05
1.35
8.80
6.90
8.80
6.90
0.45
Nom
1.50
0.10
1.40
9.00
7.00
9.00
7.00
0.60
0.50
-
Max
1.60
0.15
1.45
9.20
7.10
9.20
7.10
0.75
D
D1
A
A1
b
48 pin LQFP
e
e
Pin 1
C
b
0.09
0.17
0.20
0.27
0.22
c
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10.SOLDER REFLOW PROFILE
10.1. Standard Reflow Profile Data
Note: These devices can be hand soldered at 360 oC for 3 to 5 seconds.
FROM: IPC / JEDEC J-STD-020C “Moisture/Reflow Sensitivity Classification for Nonhermetic Solid State Surface
Mount Devices” (www.jedec.org/download).
Profile Feature
Average Ramp-Up Rate (Ts
Pb Free Assembly
o
- Tp)
3 C / second max
max
o
Temperature Min (Ts
Temperature Max (Ts
)
)
)
150 C
min
max
max
o
Preheat
200 C
Time (ts
- ts
60 - 180 seconds
min
o
Temperature (T )
217 C
L
Time maintained above
Time (t )
60 - 150 seconds
L
See “Package Classification Reflow Temperatures”
on page 174.
Peak / Classification Temperature (Tp)
o
Time within 5 C of actual Peak Temperature (tp)
20 - 40 seconds
o
Ramp-Down rate
6 C / second max
o
Time 25 C to Peak Temperature
8 minutes max
Note: All temperatures refer to topside of the package, measured on the package body surface.
Figure 5. Solder Reflow Profile
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10.2. Pb Free Process - Package Classification Reflow Temperatures
Package Type
MSL
Reflow Temperature
o
LQFP 48-pin
3
260 C
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11. REVISION HISTORY
Revision
1.0
Date
Description of Change
9 November 2006
Initial release.
1.1
14 November 2006 Update Section reference in Table 6.
Remove erroneous references to ADAT in Widget List and Widget Diagram.
1.2
20 November 2006
Remove erroneous reference to 3.3 V analog operation.
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Innovate with IDT audio for high fidelity. Contact:
www.IDT.com
For Sales
800-345-7015
408-284-8200
Fax: 408-284-2775
For Tech Support
HA.CM@idt.com
Corporate Headquarters
Integrated Device Technology, Inc.
6024 Silver Creek Valley Road
San Jose, CA 95138
Europe
IDT Europe, Limited
Prime House
Barnett Wood Lane
Leatherhead, Surrey
United States
800 345 7015
+408 284 8200 (outside U.S.)
United Kingdom KT22 7DE
+44 1372 363 339
© 2006 Integrated Device Technology, Inc. All rights reserved. Product specifications subject to change without notice. IDT and the IDT logo are trademarks of Integrated Device
Technology, Inc. Accelerated Thinking is a service mark of Integrated Device Technology, Inc. All other brands, product names and marks are or may be trademarks or registered
trademarks used to identify products or services of their respective owners.
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