FQ1216ME/PH-3 [NXP]

Multi-Standard Desktop Video Modules; 多标准桌面视频模块
FQ1216ME/PH-3
型号: FQ1216ME/PH-3
厂家: NXP    NXP
描述:

Multi-Standard Desktop Video Modules
多标准桌面视频模块

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中文:  中文翻译
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RF SOLUTIONS  
FQ1216ME (MK3 family)  
Multi-Standard Desktop Video Modules  
Product specification  
3139 149 10330  
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Rev g : 16.02.2004  
Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
FEATURES  
Multi-Standard TV Systems Broadcast reception  
True 5 V device (low power dissipation)  
Full frequency range from channel E2 (48.25 MHz)  
to channel E69 (855.25 MHz)  
PLL controlled tuning  
Programmable PLL step size (31.25 / 50 kHz or  
62.5 kHz)  
True-synchronous vision IF demodulator (PLL)  
Ultra linear FM PLL demodulator  
Demodulated video output, AF sound output,  
second IF sound output.  
I2C-bus control of tuning, address selection, AFC  
status information  
User-settable 2nd IF address for PIP application  
Complies with European regulations on radiation,  
signal handling and immunity (“CENELEC 55020,  
55013” )  
Small horizontally mounted metal 70 mm housing  
ORDERING INFORMATION  
TYPE  
DESCRIPTION  
ORDER NUMBERS  
3139 147 18291  
3139 147 18321  
3139 147 19151  
3139 147 18771  
3139 147 18891  
IEC / Horizontal / User-settable 2nd IF address  
IEC / Horizontal User-settable 2nd IF address  
IEC / Vertical / 2nd fixed IF address  
FQ1216ME/I H-3  
FQ1216MP/I H-3  
FQ1216ME/I V-3  
FQ1216ME/P H-3  
FQ1216ME/L H-3  
Phono / Horizontal / User-settable 2nd IF address  
Long IEC / Horizontal / User-settable 2nd IF address  
MARKING  
The following items of information are printed on a sticker that is on the top cover of the tuner:  
Type number  
Code number  
Origin letter of factory  
Change code  
Year and week code  
3139 149 10330  
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Rev g : 16.02.2004  
Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
DESCRIPTION  
The FQ1216ME family belongs to the new FM1200 MK3 family of small size frontends, which are designed to  
meet a wide range of RF applications in the PC /TV Multi-Media environment. The FQ1216ME combines the  
functions of an all-band TV tuner, and a multi-standard TV IF demodulation unit for both positive and negative  
modulated TV systems. The FQ1216ME is intended for CCIR L/L’ (France), B/G, I and D/K systems. The  
FQ1216MP covers only CCIR B/G, D/K and I.  
The frontends have a built-in digital (I2C) PLL tuning system. A DC-DC converter circuit is built-in in the  
FQ1216ME to synthesize the tuning voltage required, thus making the frontend a true 5V device.  
The FQ1216ME/IV-3 has a fixed address of # 84 for the IF processor. For all others, a second address can be  
set by using a 2K2 resistor at 10 of the module.  
All modules use the narrowband AGC detection system.  
INTERMEDIATE FREQUENCIES  
SYSTEM  
Picture carrier  
Colour  
L
L’  
B/G  
D/K  
38.90  
34.47  
32.40  
-
I
38.90  
34.47  
32.40  
-
33.95  
38.38  
40.40  
-
38.90  
34.47  
33.40  
33.16  
33.05  
38.90  
34.47  
32.90  
-
Sound 1  
Sound 2  
NICAM  
33.05  
39.80  
33.05  
32.348  
CHANNEL COVERAGE  
BAND  
FREQUENCY (MHz)  
48.25 to 158.00 MHz+  
160.00 to 442.00 MHz  
442.00 to 863.25 MHz  
Low band  
Mid band  
High band  
+ Can cover down to 45.75 MHz (Ch A for Ireland)  
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Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
PINNING  
SYMBOL  
N.C.  
PIN  
1
DESCRIPTION  
(AGC Monitor) Do Not Connect *  
(Tuning Voltage Monitor) Do Not Connect *  
Supply Voltage Vb, Tuner section  
I²C-Serial Clock  
N.C.  
2
+5V  
3
SCL  
4
SDA  
5
I²C-Serial Data  
AS_TU  
-
6
I²C-Address Select_Tuner part (see Pg 20)  
Not Connected  
x
-
x
Not Connected  
NC  
9
Not Connected  
IF-AS  
2nd IF sound  
CVBS  
10  
11  
12  
Second Address for IF circuit * see Pg 20)  
Second IF sound output  
Composite Video Baseband Signal  
+5V, IF  
13  
14  
Supply Voltage, IF section  
AF O/P  
AF sound output  
GROUND  
Mounting Tags (TH1,TH2,TH3,TH4)  
* For process use only  
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Rev g : 16.02.2004  
Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
LIMITING VALUES  
Limiting values under operational conditions  
The tuners are guaranteed to function properly under the following conditions.  
SYMBOL  
VAGC  
PARAMETER  
PIN  
MIN.  
10 M  
TYP.  
MAX.  
UNIT  
1
AGC Voltage Monitor (not to be  
connected)  
(See Note 1)  
VT  
VS  
Tuning Voltage Monitor (not to be  
connected)  
Supply Voltage Vb  
2
3
-
-
-
-
4.75  
5
5.25  
V
Ripple susceptibility (see Note 2)  
2
10  
150  
mVpp  
mVpp  
mA  
20Hz  
1kHz  
-
-
1kHz  
200kHz  
80  
Supply current  
VSCL  
VSDA  
SCL bus input voltage  
4
5
-0.3  
5.25  
V
SDA Bus input voltage  
-0.3  
-1.0  
5.25  
5
V
mA  
SDA Bus current (open collector)  
AS voltage (see Note 3)  
6
5.25  
V
2nd IF sound output  
- Load impedanceD.C.  
A.C.  
11  
1.0  
1.0  
k  
kΩ  
Composite Video Baseband Signal  
- Load impedanceD.C. (see 10.3)  
12  
13  
75  
75  
ns  
(modulus)  
A.C.  
- Load time constant  
100  
Supply voltage, IF section  
4.75  
5.25  
V
Ripple susceptibility (see Note 2)  
2
10  
160  
mVpp  
mVpp  
mA  
20Hz  
1kHz  
Current  
-
-
1kHz  
500kHz  
100  
AF output  
- Load impedance  
14  
100.0  
10.0  
kΩ  
kΩ  
D.C.  
A.C.  
Note 1 : Minimum impedance required is 10M, otherwise AGC voltage is loaded down. For process only.  
Note 2 : Maximum allowable Ripple voltage superimposed on the +5V supply in the frequency range from 20  
Hz to 500 kHz. Criteria : for TV : f<2.12 kHz or AM < 0.28%  
Note 3 : For detailed information about address coding, refer to Application Information.  
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Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
Environmental conditions  
SYMBOL  
PARAMETER  
CONDITIONS  
MIN.  
MAX.  
UNIT  
Non-operational Conditions  
TAMB  
RH  
gB  
Ambient temperature  
-25  
+85  
100  
245  
490  
0.35  
°C  
%
Relative humidity  
Bump acceleration  
Shock acceleration  
Vibration amplitude  
-
-
-
-
25 g  
m/s2  
m/s2  
mm  
gS  
50 g  
(10-55 Hz)  
Operational conditions  
TAMB  
RH  
Ambient temperature  
Relative humidity  
0
-
+60  
95  
°C  
%
OVERALL PERFORMANCE  
Conditional data  
Unless otherwise specified, all electrical values for “Overall performance” apply at the following conditions.  
SYMBOL PARAMETER  
VALUE  
25 ± 5  
60 ± 15  
5 ± 0.125  
75  
UNIT  
oC  
%
TAMB  
RH  
ambient temperature  
relative humidity  
VS  
supply voltage (tuner and IF section)  
aerial source impedance (unbalanced)  
second IF sound output load  
Video output load  
V
ZS(AE)  
ZIF  
0.5  
kΩ  
75  
VST  
AF1 sound output load  
100  
kΩ  
3139 149 10330  
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Rev g : 16.02.2004  
Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
TUNER CHARACTERISTICS  
EQUIPMENT  
DC Voltmeter  
Oscilloscope  
PARAMETER  
VALUE  
UNIT  
input impedance  
10  
MΩ  
input impedance  
resistance  
1
MΩ  
pF  
capacitance  
15  
50  
Spectrum analyzer  
FET probe  
input impedance  
input impedance  
resistance  
10  
MΩ  
capacitance  
3.5  
pF  
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Rev g : 16.02.2004  
Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
TEST DIAGRAM  
The frontend characteristics are measured according to the test diagram depicted below :  
aerial  
connector  
TV  
7
8
1 2 3 4 5 6  
9 10 11 12 13 14  
1
nF  
SCL  
SDA  
3
k  
33  
+
µ
F
10  
nF  
+ 5V  
FM1200 MK3  
Evaluation board  
BU4  
BU5  
BU6  
Video  
out  
P
(1)  
SA  
DA  
(1) BU4 loaded with 75 (video monitor)  
SA = Spectrum Analyzer  
P
= FET probe  
DA = Distortion Analyzer (Zi - 100 k )  
The minimum load impedance required at the CVBS output75 (both AC and DC)  
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Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
Definitions of test signals  
TEST SIGNAL  
FREQ.  
(MHz)  
AMPLITUDE  
MODULATION  
A0: unmodulated vision  
carrier  
A1: L-system signal  
with video modulation  
A2: B/G/D/K/I -system  
signal with video  
480.25  
480.25  
60 dB(µV)  
100 % (sync. level at 0%), 2T-pulse  
and bar, unless otherwise indicated.  
100% (rest carrier 10%), 2T-pulse  
and bar, unless otherwise indicated  
60 dB(µV) (peak white)  
480.25  
60 dB(µV) (top sync.)  
modulation  
A3: L' - system signal  
with video modulation.  
B1: unmodulated main  
100% (sync. white < 6%), 2T pulse  
and bar, unless otherwise indicated  
55.75  
A2 +  
60 dB(µV) (peak white)  
-13 dB respectively wrt  
A2  
sound carrier B/G/I/D/K 5.5/6.0/6.5  
system as chosen  
B2: AM-modulated  
sound carrier L-system  
B3: FM-modulated  
main sound carrier  
B/G/I/D/K system  
respectively  
MHz  
486.75 MHz -10 dB with respect to  
test signals A0 or A1  
m=0.54, mod. freq. 1 kHz, unless  
otherwise indicated  
freq.dev.=27 kHz, mod.freq. 1kHz,  
50 µs pre-emphasis, unless  
otherwise indicated  
A2 +  
-13 dB respectively wrt  
5.5/6.0/6.5  
A2  
MHz  
B4: unmodulated 2nd  
sound carrier B/G –  
system  
A2 + 5.85  
MHz  
-20 dB respectively wrt  
A2  
B5: unmodulated main  
sound carrier L system  
B6: AM modulated  
A1 + 6.5  
MHz  
A3 - 6.5  
-10 dB wrt test signal  
A1  
-10 dB wrt test signal  
A3  
M = 0.54, mod. freq. 1 kHz, unless  
otherwise indicated  
sound carrier L' system MHz  
3139 149 10330  
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Rev g : 16.02.2004  
Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
AERIAL INPUT CHARACTERISTICS  
SYMBOL PARAMETER  
CONDITIONS  
MIN.  
MAX.  
UNIT  
VSWR  
referred to 75 at RF picture  
carrier frequency  
-
5
VSURGE  
VANT  
surge protection  
5
-
kV  
antenna terminal disturbance up to 1.75 GHz  
voltage  
46  
dBµV  
GENERAL CHARACTERISTICS  
SYMBOL PARAMETER  
CONDITIONS  
MIN.  
TYP.  
MAX.  
UNIT  
fb  
frequency range  
low band  
48.25  
160.00  
442.00  
158.00  
442.00  
863.25  
MHz  
MHz  
MHz  
mid band  
high band  
margin  
fb  
low band  
mid/high band  
voltage low band  
1.5  
1.5  
36  
36  
36  
MHz  
MHz  
dB  
dB  
dB  
45  
45  
45  
55  
55  
55  
gain  
mid band  
high band  
- wanted test signal Fant  
at 60 dBuV  
- unwanted test signal at  
(Fant + 77.7) MHz  
Image rejection  
low band  
αj  
65  
60  
50  
60  
dB  
dB  
dB  
dB  
mid band  
high band  
IF rejection  
All bands  
- wanted test signal F  
.
ant  
αIF  
- unwanted test signal A0  
with frequency (FIF,PC - 1)  
MHz  
tlj  
Oscillators lock-in time  
Tuning speed (lock bit, CP  
= 1)  
150  
ms  
All terminals of each  
frontend are protected  
against electrostatic  
discharge up to  
VESD  
ESD protection at the  
terminals  
2
KV  
The products are classified  
in category B (MIL-STD-  
883C).  
Fwanted  
Maximum signal handling  
100  
110  
-
dBµV  
3139 149 10330  
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Rev g : 16.02.2004  
Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
Video and audio characteristics  
PARAMETER  
TEST SIGNAL TEST  
MIN.  
TYP.  
MAX.  
UNIT  
POINT  
CVBS output level  
Amplitude video signal  
DC level of sync. Pulse  
A1  
A1  
BU4  
0.7  
1.0  
1.3  
Vpp  
V
BU4  
0.35  
CVBS amplitude at discrete frequencies  
2
3
4.43  
MHz  
MHz  
MHz  
A1  
A1  
A1  
BU4  
BU4  
BU4  
0.0  
- 0.5  
-1.0  
- 1.5  
- 2.5  
- 4.0  
dB  
dB  
dB  
Sound Carriers Rejection  
Specification valid for : B/G, I and D/K A2 + B1 + B4  
mode wrt 1 MHz for :  
BU4  
5.5/6.0 MHz  
42  
40  
dB  
dB  
6.5  
MHz  
Unweighted CVBS Signal to Noise Ratio  
Specification valid for : L/L’, B/G, I, D/K  
modes  
Unweighted SNR  
Gain limited sensitivity  
(-1dB video signal)  
A1 or A2 or A3  
A2  
BU4  
BU4  
40  
44  
dB  
33  
dBµV  
Carrier level of test signal  
PARAMETER  
TEST SIGNAL TEST  
POINT  
MIN.  
TYP.  
MAX.  
UNIT  
Audio output characteristics  
Specification valid for : B/G, D/K and I  
modes  
AF output level (C7 = 0)  
measured via LP 20 kHz filter, RMS  
detector 50µs de-emphasis  
for AF1 at 1 kHz (C5 = 1, C6 = 1)  
Specification valid for : L/L’ mode  
(C5 = 0) modulation = 54%  
AF output level (C7 = 0)  
A2 + B3  
BU6  
BU6  
400  
350  
500  
450  
600  
550  
mVrms  
mVrms  
A1 +B2 or  
A3 + B6  
Specification valid for : B/G, D/K, I  
modes  
THD (Total Harmonic Distortion)  
Signal-to –Noise ratio  
-
50  
0.2  
63  
0.6  
-
%
dB  
measured via LP 20 kHz filter, RMS  
detector 50µs de-emphasis  
for AF1 at 1 kHz (C5 = 1, C6 = 1)  
Specification valid for : L/L’ mode  
THD (Total Harmonic Distortion)  
Signal-to –Noise ratio  
A2 + B3  
BU6  
-
42  
0.8  
50  
1.5  
-
%
dB  
A1 + B2 or  
A3 + B6  
measured via LP 20 kHz filter, RMS  
detector for AF1 at 1 kHz  
Specification valid for : B/G, D/K and I  
modes (S/N = 40 dB) (C5 = 1, C6 = 1)  
Audio sensitivity  
BU6  
BU6  
A2 + B3  
40  
45  
dBµV  
dBµV  
Specification valid for : L/L’ mode (S/N =  
38 dB)  
Audio sensitivity  
A1 + B2 or  
A3 + B6  
BU6  
3139 149 10330  
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Rev g : 16.02.2004  
Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
APPLICATION INFORMATION  
DEMONSTRATION KIT  
A demonstration kit is available for the FQ1216ME (software, Application Note and evaluation board). Please  
contact your local Sales Engineer for details about the price and availability  
I2C PROGRAMMING  
For information regarding general aspects of I²C bus control see 'The I2C-bus and how to use it', published by  
Philips Semiconductors under the code : 9398 393 40011.  
The FQ1216ME contains two I2C transceivers, one in the tuner part and one in the IF part. It is imperative to  
ensure that both I2C devices are programmed correctly according to their addresses  
If in doubt, please refer to the demonstration software.  
3139 149 10330  
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Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
Tuner Part Programming (Write Mode)  
BIT ALLOCATION  
(WRITE MODE , R/W = 0).  
Write Data  
MSB bit6  
bit5  
0
bit4  
0
bit3  
0
bit2  
MA1  
N10  
N2  
bit1  
MA0  
N9  
LSB  
R/W=0  
N8  
ACK  
A
Address Byte ADB  
Divider Byte 1 DB1  
Divider Byte 2 DB2  
Control Byte CB  
Bandswitch Byte BB  
Auxiliary Byte AB (note *)  
1
1
0
N14  
N6  
CP  
P6  
N13  
N5  
T2  
N12  
N4  
T1  
N11  
N3  
T0  
P3  
0
A
N7  
1
N1  
N0  
A
RSA  
P2  
RSB  
P1  
OS  
P0  
A
P7  
ATC  
P5  
P4  
A
AL2  
AL1  
AL0  
0
0
0
A
Note *: By default it is set to AL2=0, AL1=1, AL0=0. This sets the tuner TOP to 112 dBuV upon power-on  
reset.  
ADDRESS SELECTION (BYTE ADB)  
Voltage at terminal 6  
0 .......... 0.1 Vcc  
0.2..........0.3 Vcc  
0.4 ........ 0.6 Vcc  
0.9 Vcc ...... 5 V  
Address  
C0  
MA1  
MA0  
0
0
1
1
0
1
0
1
C2  
C4  
C6  
Note: If the AS pin is left floating, the internal biasing will automatically set the address to C2.  
PROGRAMMABLE DIVIDER SETTING (BYTES DB1 AND DB2)  
Divider ratio:  
N
= FOSC/Fss  
where FOSC = ( FRF + FIF ) and Fss is the step-size set by RSA and RSB as described below.  
N = 8192*N13 + 4096*N12 + 2048*N11 + 1024*N10 + 512*N9 + 256*N8 +  
128*N7 + 64*N6 + 32*N5 + 16*N4 + 8*N3 + 4*N2 + 2*N1 + N0  
Note: FIF = 38.9 MHz, except for L' mode. In this case FIF = 33.95 MHz  
CONTROL BYTE CB  
Charge Pump Setting:  
CP can be set to either 0 (low current) or 1 (high current).  
CP = 1, charge pump current = 280uA results in fastest tuning (default mode)  
CP = 0 , charge pump current = 60uA results in moderate speed tuning with slightly better residual oscillator  
Test Mode Setting:  
T2 = 0, T1 = 0, T0 = 1 for normal operation (default)  
T2 = 0, T1 = 1, T0 = 1 indicates that Byte AB will follow Byte CB instead of Byte BB for the current IIC Byte  
sequence.  
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Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
PLL Disabling:  
OS=0 for normal operation,  
OS=1 switches off the PLL tuning amplifier (PLL tuning is disabled)  
Ratio Select Bits  
RSA = 0, RSB = 0 gives 50 kHz step-size  
RSA = 0, RSB = 1 gives 31.25 kHz step-size (for slow picture-search)  
RSA = 1, RSB = 0 gives 166.7 kHz step-size  
RSA = 1, RSB = 1 gives 62.5 kHz step-size (for normal picture-search)  
BANDSWITCHING BYTE BB  
PORTS  
P0  
1
P1  
0
P2  
0
P3  
0
P4  
0
P5  
X
P6  
X
P7  
X
LOW BAND  
MID BAND  
HIGH BAND  
0
1
0
0
0
X
X
X
0
0
1
0
0
X
X
X
AUXILLIARY BYTE AB  
The AGC Take Over Point can be set by programming the following bits AL2, AL1, AL0  
IF output level,  
Remark  
AL2  
AL1  
AL0  
symmetrical mode  
115 dBµV  
115 dBµV  
112 dBµV  
109 dBµV  
106 dBµV  
103 dBµV  
I AGC = 0  
0
0
0
0
1
1
1
1
0
0
1
1
0
0
1
1
0
1
0
1
0
1
0
1
default mode at POR  
Recommended for negative modulation  
Recommended for positive modulation  
External AGC . See remarks (1) & (3).  
Disabled . See remarks (2).  
3.5 V  
Remarks:  
1). The AGC detector is disabled. Both the sinking and sourcing current from the IC is disabled. The AGC output goes  
into a high impedance state and an external AGC source can be connected in parallel and will not be influenced.  
2). The AGC detector is disabled and I AGC = 9 µA.  
Note:  
The AGC detection system has been changed to the narrowband mode for both negative and positive  
modulation systems. All new versions carry the code SV21 (old versions carry the code SV20).  
The settings have been hard-coded inside the modules and customers are not required to change  
their software to adapt to the new AGC system.  
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Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
Tuner Part Programming (Read Mode)  
BIT ALLOCATION (READ MODE R/W = 1)  
MSB  
1
bit6  
1
bit5  
0
bit4  
0
bit3  
0
bit2  
MA1  
A2  
bit1  
MA0  
A1  
LSB  
R/W=1  
A0  
ACK  
A
Address Byte ADB  
Status Byte SB  
POR  
FL  
1
1
AGC  
A
The following data can be read from the device through the status byte:  
POR (power on reset): POR is internally set to 1 in case Vcc drops below 3V. The POR bit is reset when an  
end of data is detected by the PLL-IC.  
FL: in lock flag (FL = 1 when the phase lock loop is in lock).  
The loop must be phase-locked during at least 8 periods of the internal 7.8125 kHz reference-frequency (i.e.  
1 msec) before the FL flag is internally set to 1.  
AGC : internal AGC flag.  
A2, A1, A0 : Not used.  
AGC=1 when internal AGC is active (level below 3V)  
3139 149 10330  
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Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
IF Part Programming (Write Mode)  
The IF uses the new TDA9887 demodulation IC from Philips Semiconductors.  
I2C Bus Control –format to WRITE (slave receives data)  
S
SLAVE ADDRESS  
R/W=0  
A
SAD  
A
DATA  
A
P
BIT  
FUNCTION  
S
START condition  
Standard SLAVE ADDRESS  
100 0011X where X is the value of R/W **  
Write Mode  
R/W = 0  
A
acknowledge, generated by slave  
See table below  
SUBADDRESS (SAD)  
DATA  
P
Bytes B, C and E (described below)  
STOP condition  
** Note The FQ1216ME/IV-3 (12 NC = 3139 147 19151) has a fixed IF address of # 84.  
SUB ADDRESS BYTE (SAD, first byte after slave address)  
MSB  
D7  
LSB  
D0  
DATA BYTE  
D6  
D5  
D4  
D3  
D2  
D1  
FOLLOWING SAD  
SWITCHING (B DATA)  
ADJUST (C DATA)  
DATA (E DATA)  
0
0
0
0
0
0
X
0
0
X
0
0
X
0
0
X
0
0
0
0
1
0
1
0
DESCRIPTION OF THE BITS OF THE VARIOUS DATA BYTES  
DATA BYTE BIT  
SUBADDRESS  
SWITCHING  
SWITCHING  
SWITCHING  
SWITCHING  
SWITCHING  
SWITCHING  
SWITCHING  
ADJUST  
FUNCTION  
B0  
B1  
B2  
video mode (sound trap)  
auto mute FM  
carrier mode  
B DATA  
B3 and B4  
B5  
TV standard positive/negative modulation (B3=0)  
forced mute audio  
not used  
B6  
B7  
L/L’ Sound  
Co to C4  
C5 to C6  
C7  
TOP adjustment  
C DATA  
E DATA  
ADJUST  
de-emphasis  
ADJUST  
audio gain  
E0 and E1  
E2 to E4  
E5  
DATA  
standard sound carrier  
standard video IF  
DATA  
DATA  
VIF, SIF and tuner minimum gain  
L standard PLL gating HIGH  
VIF-AGC  
E6  
DATA  
E7  
DATA  
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Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
For convenience, the programming has been consolidated as a single table.  
Video Trap Bypass  
Auto Mute FM  
Carrier Mode  
FM Mode  
TV Modulation  
Forced Mute Audio  
Not Used (OP1)  
L/L’ Sound (OP2)  
TOP Adjustment  
De-Emphasis  
De-Emphasis Time  
Audio Gain  
Sound Intercarrier  
Video IF  
IF Gain  
L/L’ PLL Gating  
VIF AGC Output  
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Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
IF Part Programming (Read Mode)  
The IF uses the new TDA9885 (MP versions) or TDA9886 (ME versions) demodulation IC from Philips  
Semiconductors.  
I2C Bus Control –format to READ (slave transmits data)  
S
SLAVE ADDRESS  
R/W=1  
A
DATA  
AN  
P
BIT  
S
FUNCTION  
START condition  
Standard SLAVE ADDRESS  
100 0011X where X is the value of R/W **  
Read Mode  
R/W = 1  
A
acknowledge, generated by slave  
DATA  
AN  
Byte D (described below)  
acknowledge not, generated by the master  
P
STOP condition, generated by the master  
The master generates an acknowledge when it has received the dataword READ. The master next  
generates an acknowledge, then slave begins transmitting the dataword READ, and so on until the master  
generates no acknowledge and transmits a STOP condition.  
** Note The FQ1216ME/IV-3 (12 NC = 3139 147 19151) has a fixed IF address of # 84.  
Byte D (Transmitted byte after read condition - Status Register)  
MSB  
D7  
AFCWIN  
LSB  
D0  
PONR  
FUNCTION  
READ  
D6  
VIFL  
D5  
FMIFL  
D4  
AFC4  
D3  
AFC3  
D2  
AFC2  
D1  
AFC1  
PONR = 1 After power-on reset or after supply breakdown  
PONR = 0 After a successful reading of the status register  
FMIFL = Not used.  
VIFL = 1 Video IF level HIGH  
VIFL = 0 Video IF level LOW  
3139 149 10330  
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Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
AFC STATUS  
It is possible to monitor the AFC status via the D1-D4 bits.  
Function  
Bits  
AFC F  
vs F (1)  
D4  
D3  
D2  
D1  
VIF  
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
1
1
1
1
0
0
0
0
1
1
1
1
0
0
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
FVIF  
F0187.5 kHz  
FVIF = F0 162.5 kHz  
FVIF = F0 137.5 kHz  
FVIF = F0 112.5 kHz  
FVIF = F0 87.5 kHz  
FVIF = F0 62.5 kHz  
FVIF = F0 37.5 kHz  
FVIF = F0 12.5 kHz  
FVIF = F0 + 12.5 kHz  
FVIF = F0 + 37.5 kHz  
FVIF = F0 + 62.5 kHz  
FVIF = F0 + 87.5 kHz  
FVIF = F0 + 112.5 kHz  
FVIF = F0 + 137.5 kHz  
FVIF = F0 + 162.5 kHz  
FVIF F0 + 187.5 kHz  
Note  
1. F0 = nominal FVIF  
AFCWIN = 1 FVIF inside AFC Window  
AFCWIN = 0 FVIF outside AFC Window  
PROGRAMMING EXAMPLES  
Example 1: To tune to Ch E21 (471.25 MHz) in high band  
Fosc = 471.25 + 38.9 = 510.15 MHz  
N = (510.15 MHz) / (62.5 kHz) = 1F E2 (Hexadecimal)  
So DB1 = 1F H  
and DB2 = E2 H  
CB = 86H if CP is set to low or CB = C6H if CP is set to high  
BB = 44H (because of high band selected)  
3139 149 10330  
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Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
Example 2 : To tune to a PAL B/G program at 471.25 MHz  
IF I2C program  
Tuner I2C program  
Example 3 : To tune to a SECAM program at 471.25 MHz (L system)  
IF I2C program  
Tuner I2C program  
3139 149 10330  
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Rev g : 16.02.2004  
Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
LOADING OF I2C BUS  
The FQ1216ME contains series impedances in the SCL and SDA lines : a total of R= 220 ohms leading to  
the tuner part and R= 300 ohms leading to the IF demodulation part. See the diagram below. Both lines also  
have capacitive loads of C= 22 pF max. Care must be taken to ensure that the total load on the bus does not  
exceed that as mentioned in the brochure "The I2C-bus and how to use it".  
100  
180  
180  
100  
120  
120  
SDA  
SCL  
AUDIO EMPHASIS  
The audio de-emphasis (50 us) is set by the bits C5 and C6  
C5=0 de-emphasis OFF  
C5=1 de-emphasis ON  
C6=1 50us  
C6=0 75 us  
De-emphasis should be switched off in L/L’ mode since it is not required for AM sound.  
CVBS LOAD / TUNING VOLTAGE SUPPLY  
A video buffer is built into the frontend to enable the unit to drive a 75 load directly (e.g. into the SAA711x  
directly). A DC-DC converter for providing the required tuning voltage supply is already built into the  
FQ1216ME.  
PIP APPLICATION  
The FQ1216ME has a second user-defined address for the IF circuit. By setting a 2K2 resistor at pin 10,  
the AFRIC address is set to # 84. In the same manner, with a 1K resistor to ground at pin 6, the tuner is  
set to an address of # C0. The other FQ1216ME Mk3 remains unchanged with an address of # C2 and #  
86 respectively. An example is shown below.  
PIP Frontend  
Address: # C0 and  
# 84  
FQ1216ME /PH-3  
1
6
10  
Active  
Splitter  
Module  
1K0  
2K2  
Main Frontend  
Address: # C2 and  
# 86  
FQ1216ME/PH-3  
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Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
CVBS Output level  
CVBS at pin 12 (into 75 ohm load)  
V dc  
1.35 V  
1 Vpp  
0.65 V  
0.35 V  
VIDEO SIGNAL TO NOISE RATIO  
V id e o S ig n a l-to -N o ise R a tio (W eig h ted ) @ C h 2 1  
6 5  
6 0  
5 5  
5 0  
4 5  
4 0  
3 5  
3 0  
2 5  
2 0  
1 5  
1 0  
1 0  
2 0  
3 0  
4 0  
5 0  
6 0  
7 0  
8 0  
9 0  
1 0 0  
1 1 0  
In p u t L ev e l d B u V  
3139 149 10330  
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Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
MECHANICAL DATA  
See product drawing 3139 149 0120  
AERIAL CONNECTIONS  
ROBUSTNESS OF PINS  
Standard connector in accordance with type order  
information found on Page 2 and drawings found on  
Page 25.  
The pins will not be damaged when tested in  
accordance with “IEC 60068-2-21”:  
Test Ua1, tensile of 10N in axial direction  
Test Ua2, thrust of 4N in axial direction  
SOLDERABILITY  
The solderability of pins and mounting tags when  
tested initially and after 16 hour steam ageing in  
accordance with “IEC 60068-2-20”, test Ta, method  
1 (solder bath 235°C for 2s), results in a wetted area  
of 95%. No de-wetting will occur when soldered at  
260°C for 5s.  
PUNCHING PATTERN OF CHASSIS PCB  
For optimum mounting of the tuner to a PCB,  
the punching pattern is recommended (see  
3139 149 0120).  
RESISTANCE TO SOLDERING HEAT  
The tuner must be mounted without clearance  
between the tuner supporting surface and the  
printed circuit board (PCB). When mounted in  
this way, the tuner must be soldered to the  
PCB. This can be achieved by pressing the  
unit vertically onto the PCB during soldering.  
The product will not be damaged when tested in  
accordance with “IEC 60068-2-20”, test Tb, ,method  
1A (solder bath 260°C for 10±1 s).  
MASS  
Approximately 45g.  
PACKAGING INFO  
Example of Carton Box:  
The products are packed in the carton box and  
transferred to customers by Pallet Transport.  
b
Dimension  
B x w x h (cm)  
No. of  
sets  
Gross  
Wt (Kg)  
Mounting Type  
Carton  
Pallet  
46 x 34 x 5.4  
120 x 105 x 105  
46 x 34 x 10.2  
120 x 105 x 105  
40  
2.34  
272.38  
6.38  
Horizontal-  
mount type  
4280  
120  
w
Carton  
Pallet  
Vertical-  
mount type  
6960  
392.04  
Carton Boxes are made of Corrugated Fibreboard  
which are free of environmentally banned substances.  
h
3139 149 10330  
23  
Rev g : 16.02.2004  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
3139 149 10330  
24  
Rev g : 16.02.2004  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
3139 149 10330  
25  
Rev g : 16.02.2004  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
3139 149 10330  
26  
Rev g : 16.02.2004  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
3139 149 10330  
27  
Rev g : 16.02.2004  
Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
Document revision history  
Rev #  
0
Date  
Approved by  
Toh Kong Lim  
Toh Kong Lim  
Toh Kong Lim  
Remarks  
New  
20-02-01  
16-04-01  
17-07-01  
0.1  
0.2  
Trigger by Soh KL, changes in page 18  
Trigger by Toh KL, changes in pg 10-13, 16-19  
Trigger by Paxton Tan, changes in pg 11-20 and product  
drawings.  
0.3  
18-10-01  
Toh Kong Lim  
0.3  
0.3  
0.4  
10-12-01  
28-02-02  
01-04-02  
Updating last page  
Updating last page  
Toh Kong Lim  
Toh Kong Lim  
Trigger by Toh KL, changes in pg 2  
Trigger by Soh KL, product drawings changed under CP  
63459  
1
06-05-02  
15-05-02  
21-06-02  
15-07-02  
Trigger by Paxton Tan, changes in pg 2 (1 new model  
added), pg 3 (Channel Coverage) and product drawings.  
Data sheet updated by Paxton, changes in pg 2, 3, 4, 5,  
8, 10, 13, 14, 15, 20, 22 & prod. dwgs.  
Trigger by Toh KL, updating pg 10 (Audio output  
characteristics)  
1
Toh Kong Lim  
Toh Kong Lim  
Toh Kong Lim  
1.1  
1.2  
1.3  
1.4  
b
-
-
no change  
20-09-02  
18-12-02  
Toh Kong Lim  
Toh Kong Lim  
Trigger by Toh KL, updating pg 9, 10 & last page.  
Updating front and last page  
Updating last page & Pg 13 : 1) change of TOP to a lower  
value; 2) set ATC = 0  
c
15-07-03  
01-10-03  
Toh Kong Lim  
Toh Kong Lim  
d
Trigger by Soh KL, updating mechanical drawings  
Triggered by Toh KL;  
e
10-11-03  
10-02-04  
16-02-04  
Toh Kong Lim  
Toh Kong Lim  
Toh Kong Lim  
Pg 2, 3, 13, 15, 17 : remarks added.  
Pg 20 : Adding I2C drawing and PIP drawing;  
Trigger by Toh KL;  
Pg 2 : features description add - User-settable 2nd IF  
address for PIP application and ordering information  
description changed.  
f
Pg 3 : description add - For all others, a second address  
can be set by using a 2K2 resistor at 10 of the module.  
All modules use the narrowband AGC detection system.  
Pg 14 : add notes.  
Trigger by Toh KL;  
Pg 14 – notes – all new versions carry the code SV21  
instead of SV22 with effect from 1 April 2004  
g
3139 149 10330  
28  
Rev g : 16.02.2004  
Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
DEFINITIONS  
Data sheet status  
Objective specification  
Preliminary specification  
Product specification  
This data sheet contains target or goal specifications for product development.  
This data sheet contains preliminary data; supplementary data may be published later.  
This data sheet contains final product specification.  
Application Information  
Where application information is given, it is advisory and does not form part of the specification  
LIFE SUPPORT APPLICATIONS  
These products are not designed for use in life support appliances, devices, or systems where malfunction  
of these products can reasonably be expected to result in personal injury. Philips customers using or  
selling these products for use in such applications do so at their own risk and agree to fully indemnify  
Philips for any damages resulting from such improper use or sale.  
PURCHASE OF PHILIPS I2 C COMPONENTS  
Purchase of Philips I2C components conveys a license under the Philips I2C patent to use  
the components in the I2C systems to the I2C specification defined by Philips.  
This specification can be ordered using the code 9398 393 40011.  
3139 149 10330  
29  
Rev g : 16.02.2004  
Philips RF Solutions  
Product specification  
Multi-Standard Desktop Video Module  
FQ1216ME MK3  
RF Solutions Sales Offices  
Brazil: Philips RF Solutions,  
Tel: +55 11 2125 0833, Fax: +55 11 2125 0828  
China: Philips RF Solutions,  
Tel. +86 21 6354 1088, ext. 5806, Fax. +86 21 6354 1060 (Shanghai)  
Tel: +86 512 6824 6688 ext 3786, Fax: +86 512 6825 0413 (Suzhou)  
Germany: Philips RF Solutions,  
Tel. +49 170 203 230 8, Fax. +49 221 2854452  
Hong Kong: Philips RF Solutions,  
Tel. +852 2666 2809, Fax. +852 2666 2814  
India: Philips RF Solutions,  
Tel. +91 22 5 691 2127, Fax. +91 22 5 691 2184  
Korea (Republic of): Philips RF Solutions,  
Tel. +82 2 709 1475, Fax. +82 2 709 1480  
Spain: Philips RF Solutions,  
Tel. +34 93 270 4059, Fax. +34 93 270 4012  
Taiwan: Philips RF Solutions,  
Tel. +886 2 3789 2388, Fax. +886 2 3789 2394  
Turkey: Philips RF Solutions,  
Tel. +90 216 522 1799, Fax. +90 216 522 1813  
United States: Philips RF Solutions,  
Tel. +1 734 944 4299, Fax. +1 734 944 4427  
For all other countries apply to:  
Philips RF Solutions  
Prof. Holstlaan 4, Building WL  
5656 AA Eindhoven, The Netherlands  
Tel. +31 40 27 45 799, Fax. +31 40 27 43 653  
Internet: www.rfsolutions.philips.com  
© Philips Electronics N.V. 2004.  
All rights are reserved. Reproduction in whole or in part is prohibited without the prior written consent of the copyright  
owner. The information presented in this document does not form part of any quotation or contract, is believed to be  
accurate and reliable and may be changed without notice. No liability will be accepted by the publisher for any  
consequence of its use. Publication thereof does not convey nor imply any license under patent- or other industrial or  
intellectual property rights.  
3139 149 10330  
30  
Rev g : 16.02.2004  

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