AWT6224RM28Q7 [ANADIGICS]

HELP3TM Dual-band 900 MHz/IMT UMTS 3.4 V HSPA Linear Power Amplifier Module; HELP3TM双频段900兆赫/ UMTS IMT 3.4 V HSPA线性功率放大器模块
AWT6224RM28Q7
型号: AWT6224RM28Q7
厂家: ANADIGICS, INC    ANADIGICS, INC
描述:

HELP3TM Dual-band 900 MHz/IMT UMTS 3.4 V HSPA Linear Power Amplifier Module
HELP3TM双频段900兆赫/ UMTS IMT 3.4 V HSPA线性功率放大器模块

放大器 射频 微波 功率放大器
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AWT6224R  
HELP3TM Dual-band 900 MHz/IMT UMTS  
3.4 V HSPA Linear Power Amplifier Module  
Data Sheet - Rev 2.2  
FEATURES  
InGaP HBT Technology  
High Efficiency:  
20 % @ +16 dBm POUT  
(without DC/DC Converter)  
40 % @ maximum POUT  
A
W
T6224R  
Low Quiescent Current: 8 mA  
Internal Voltage Regulation  
Common VMODE Control Line  
Simplified VCC Bus PCB routing  
Reduced External Component Count  
Low Profile Surface Mount Package: 1 mm  
HSDPA Compliant  
RoHS Compliant Package, 250 oC MSL-3  
M28 Package  
14 Pin 3 mm x 5 mm x 1 mm  
Surface Mount Module  
APPLICATIONS  
WCDMA/HSPA 900/IMT Dual-Band Wireless  
Handsets and Data Devices  
GND at slug (pad)  
PRODUCT DESCRIPTION  
The AWT6224 addresses the demand for increased  
integration in dual-band handsets for EGSM network  
deployments. The small footprint 3 mm x 5 mm  
x 1 mm surface mount RoHS compliant package  
contains independent RF PA paths to ensure optimal  
performance in both frequency bands, while achieving  
a 25% PCB space savings compared with solutions  
requiring two single-band PAs. The package pinout  
was chosen to enable handset manufacturers  
to easily route VCC to both power amplifiers and  
simplify control with a common VMODE pin. The  
device is manufactured on an advanced InGaP HBT  
MMIC technology offering state-of-the-art reliability,  
temperature stability, and ruggedness. TheAWT6224  
incorporates ANADIGICS’ HELP3™ technology to  
provide low power consumption without the need for  
an external voltage regulator. Two operating modes  
provide optimum efficiency at high and medium/low  
power output levels, thereby dramatically increasing  
handset talk-time and standby-time. Its built-in voltage  
regulator eliminates the need for external voltage  
regulation and load switches. The 3 mm x 5 mm x 1  
mm surface mount package incorporates matching  
networks optimized for output power, efficiency and  
linearity in a 50 system.  
V
EN_900  
1
14  
13  
12  
11  
10  
9
GND  
Bias Control  
RFIN_900  
2
3
4
5
RFOUT_900  
V
MODE1  
V
CC  
CC  
V
BATT  
V
A
V
MODE2 (N/C)  
GND  
RFIN_IMT  
GND  
6
7
Bias Control  
VEN_IMT  
8
RFOUT_IMT  
GND  
Figure 1: Block Diagram  
11/2008  
AWT6224R  
GND  
V
EN_900  
GND  
1
2
3
4
5
6
7
14  
RFIN_900  
RFOUT_900  
13  
12  
VCC  
V
MODE1  
V
BATT  
11 VCC  
10  
A
V
MODE2 (N/C)  
GND  
RFIN_IMT  
9
GND  
VEN_IMT  
8
RFOUT_IMT  
GND  
Figure 2: Pinout  
Table 1: Pin Description  
PIN  
1
NAME  
DESCRIPTION  
V
EN_900  
Enable Voltage for 900 MHz Band  
RF Input for 900 MHz Band  
Mode Control Voltage 1  
Battery Voltage  
2
RFIN_900  
3
V
MODE1  
4
V
BATT  
5
V
MODE2 (N/C) No Connection  
RFIN_IMT RF Input for IMT Band  
6
7
V
EN_IMT  
Enable Voltage for IMT Band  
RF Output for IMT Band  
Ground  
8
RFOUT_IMT  
GND  
9
10  
11  
12  
13  
14  
GND  
Ground  
V
CC  
A
Supply Voltage A  
Supply Voltage  
V
CC  
RFOUT_900  
GND  
RF Output for 900 MHz Band  
Ground  
Data Sheet - Rev 2.2  
11/2008  
2
AWT6224R  
ELECTRICAL CHARACTERISTICS  
Table 2: Absolute Minimum and Maximum Ratings  
PARAMETER  
MIN  
0
MAX  
+5  
UNIT  
V
Supply Voltage (VBATT, VCC, VCCA)  
Mode Control Voltage (VMODE  
)
0
+3.5  
+3.5  
+10  
+150  
V
Enable Voltage (VEN_CELL, VEN_IMT  
)
0
V
RF Input Power (PIN  
)
-
dBm  
°C  
Storage Temperature (TSTG  
)
-40  
Stresses in excess of the absolute ratings may cause permanent damage.  
Functional operation is not implied under these conditions. Exposure  
to absolute ratings for extended periods of time may adversely affect  
reliability.  
Table 3: Operating Ranges  
PARAMETER  
MIN  
TYP  
-
MAX  
UNIT  
MHz  
V
COMMENTS  
EGSM  
880  
1920  
915  
1980  
Operating Frequency (f)  
IMT  
Supply Voltage (VCC and VBATT  
)
+3.2  
+3.4  
+4.2  
+2.2  
0
+2.4  
-
+3.1  
+0.5  
PA "on"  
PA "shut down"  
Enable Voltage (VEN  
)
V
+2.2  
0
+2.4  
-
+3.1  
+0.5  
Low Bias Mode  
High Bias Mode  
Mode Control Voltage (VMODE  
)
V
900 MHz Output Power (POUT  
)
R99 WCDMA, HPM  
HSPA (MPR=0), HPM  
R99 WCDMA, LPM  
HSPA (MPR=0), LPM  
28.5 (1)  
27.5 (1)  
15.5 (1)  
14.5 (1)  
29  
28  
16  
15  
29  
28  
16  
15  
3GPP TS 34.121-1, Rel  
7 Table C.11.1.3  
dBm  
IMT Output Power (POUT  
)
R99 WCDMA, HPM  
HSPA (MPR=0), HPM  
R99 WCDMA, LPM  
HSPA (MPR=0), LPM  
28 (1)  
27 (1)  
28.5  
27.5  
16  
28.5  
27.5  
16  
3GPP TS 34.121-1, Rel  
7 Table C.11.1.3  
dBm  
15.5 (1)  
14.5 (1)  
15  
15  
Case Temperature (T  
C
)
-20  
-
+90  
°C  
The device may be operated safely over these conditions; however, parametric performance is guaranteed only  
over the conditions defined in the electrical specifications.  
Notes:  
(1) For operation at VCC = +3.2 V, POUT is derated by 0.5 dB (all operating modes).  
Data Sheet - Rev 2.2  
3
11/2008  
AWT6224R  
Table 4: Electrical Specifications - 900 MHz Band  
(T  
C
= +25 °C, VBATT = VCC = +3.4 V, VENABLE = +2.4 V, 50 system)  
COMMENTS  
PARAMETER  
MIN  
TYP  
MAX  
UNIT  
dB  
P
OUT  
V
MODE1  
25.5  
13.5  
28  
16  
30.5  
18.5  
+29 dBm  
+16 dBm  
0 V  
2.4 V  
Gain  
-
-
-41  
-43  
-37.5  
-38  
+29 dBm  
+16 dBm  
0 V  
2.4 V  
ACLR1 at 5 MHz offset (1)  
dBc  
-
-
-62  
-57  
-48  
-48  
+29 dBm  
+16 dBm  
0 V  
2.4 V  
ACLR2 at 10 MHz offset  
Power-Added Efficiency (1)  
dBc  
37  
17  
40  
20  
-
-
+29 dBm  
+16 dBm  
0 V  
2.4 V  
%
Quiescent Current (Icq)  
Mode Control Current  
Enable Current  
-
-
-
-
8
0.35  
0.5  
3
13  
0.8  
0.8  
5
mA  
mA  
mA  
mA  
VMODE1 = +2.4 V  
through VMODE pin, VMODE = +2.4 V  
through VENABLE pin  
BATT Current  
through VBATT pin, VMODE1 = +2.4 V  
V
V
BATT = +4.3 V, VCC = +4.3 V,  
ENABLE = 0 V, VMODE1 = 0 V  
Leakage Current  
-
<1  
5
µA  
-
-
-135  
-140  
-133 dBm/Hz  
-138 dBm/Hz  
P
P
OUT = +29 dBm, VMODE1 = 0 V  
OUT = +16 dBm, VMODE1 = +2.4 V  
Noise in Receive Band (2)  
Harmonics  
2fo  
3fo, 4fo  
-
-
-44  
-45  
-30  
dBc  
-35  
P
OUT < +29 dBm  
Input Impedance  
-
-
-
-
2:1  
VSWR  
dBc  
Spurious Output Level  
(all spurious outputs)  
-70  
See note 3.  
Load mismatch stress with no  
permanent degradation or failure  
8:1  
-
-
VSWR Applies over full operating range  
Notes:  
(1) ACLR and Efficiency measured at 897.5 MHz.  
(2) 925 MHz to 960 MHz.  
3. POUT < +29 dBm, In-band load VSWR < 5:1, Out-of-band load VSWR < 10:1. Applies over all operating conditions.  
Data Sheet - Rev 2.2  
4
11/2008  
AWT6224R  
Table 5: Electrical Specifications - IMT Band  
(TC  
= +25 °C, VBATT = VCC = +3.4 V, VENABLE = +2.4 V, 50 system)  
COMMENTS  
PARAMETER  
MIN  
TYP  
MAX  
UNIT  
P
OUT  
V
MODE1  
25.0  
12.0  
27.5  
14.0  
30.0  
16.5  
+28.5 dBm  
+16 dBm  
0 V  
2.4 V  
Gain  
dB  
dBc  
dBc  
%
-
-
-41  
-43  
-37.5  
-37.5  
+28.5 dBm  
+16 dBm  
0 V  
2.4 V  
ACLR1 at 5 MHz offset (1)  
ACLR2 at 10 MHz offset  
Power-Added Efficiency (1)  
-
-
-55  
-56  
-48  
-48  
+28.5 dBm  
+16 dBm  
0 V  
2.4 V  
37  
18  
40  
22  
-
-
+28.5 dBm  
+16 dBm  
0 V  
2.4 V  
Quiescent Current (Icq)  
Low Bias Mode  
-
-
-
-
8
13  
0.8  
0.8  
5
mA  
mA  
mA  
mA  
VMODE1 = +2.4 V  
Mode Control Current  
Enable Current  
0.35  
0.35  
2.5  
through VMODE pin, VMODE1 = +2.4 V  
through VENABLE pin  
BATT Current  
through VBATT pin, VMODE1 = 2.4 V  
V
V
BATT = +4.3 V, VCC = +4.3 V,  
ENABLE = 0 V, VMODE1 = 0 V  
Leakage Current  
-
<1  
5
µA  
-
-
-137  
-144  
-135 dBm/Hz  
-139 dBm/Hz  
P
P
OUT < +28.5 dBm, VMODE1 = 0 V  
OUT < +16 dBm, VMODE1 = +2.4 V  
Noise in Receive Band(2)  
Harmonics  
2fo  
3fo, 4fo  
-
-
-37  
-46  
-30  
dBc  
-35  
Input Impedance  
-
-
-
-
2:1  
VSWR  
dBc  
Spurious Output Level  
(all spurious outputs)  
-70  
See note 3.  
Load mismatch stress with no  
permanent degradation or failure  
8:1  
-
-
VSWR Applies over full operating range  
Notes:  
(1) ACLR and Efficiency measured at 1950 MHz.  
(2) Noise measured at 2110 to 2170 MHz.  
3. POUT < +28.5 dBm; In-band load VSWR < 5:1; Out-of-band load VSWR < 10:1; Applies over all operating conditions.  
Data Sheet - Rev 2.2  
11/2008  
5
AWT6224R  
APPLICATION INFORMATION  
The Bias Control table lists the recommended modes  
of operation for various applications. VMODE2 is not  
necessary for this PA.  
To ensure proper performance, refer to all related  
Application Notes on the ANADIGICS web site:  
http://www.anadigics.com  
Two operating modes are available to optimize  
current consumption. High Bias/High Power operating  
mode is for POUT levels > 16 dBm. At around 16 dBm  
output power, the PA should be “Mode Switched” to  
Medium/Low power mode for lowest quiescent current  
consumption.  
Shutdown Mode  
The power amplifier may be placed in a shutdown  
mode by applying logic low levels (see Operating  
Ranges table) to the VENABLE and VMODE1 pins.  
Bias Modes  
The power amplifier may be placed in either a Low Bias  
mode or a High Bias mode by applying the appropriate  
logic level (see Operating Ranges table) to VMODE1.  
Table 6: Bias Control  
P
OUT  
BIAS  
MODE  
APPLICATION  
V
ENABLE  
V
MODE1  
V
CC  
V
BATT  
LEVELS  
< +16 dBm  
> +16 dBm  
< +7 dBm  
-
UMTS - low power  
UMTS - high power  
OPTIONAL - low power  
Shutdown  
Low  
High  
+2.4 V +2.4 V  
+2.4 V 0 V  
+2.4 V +2.4 V  
0 V 0 V  
3.2 - 4.2 V  
3.2 - 4.2 V  
1.5 - 3.2 V  
3.2 - 4.2 V  
> 3.2 V  
> 3.2 V  
> 3.2 V  
> 3.2 V  
Low  
Shutdown  
GND at slug (pad)  
VEN_900  
1
14  
13  
12  
11  
10  
9
GND  
0.01 F  
(3)  
Bias Control  
(1)  
(3)  
68 pF  
TRL1  
RFIN_900  
2
3
4
5
TRL2  
RFOUT_900  
VMODE  
VCC  
1000 pF  
(4)  
VBATT  
TRL5  
(2)  
68 pF  
2.2 F  
2.2 F  
GND  
GND  
N/C  
(1)  
(3)  
RFIN_IMT  
TRL3  
6
7
Bias Control  
(3)  
68 pF  
TRL4  
RFOUT_IMT  
VEN_IMT  
8
0.01 F  
GND  
Note:  
(1) Add blocking cap if DC voltage is present on input pin.  
(2) 68 pF cap should be placed as close as possible to Pin 4.  
(3) TRL should be short and of 50 characteristic impedance.  
(4) TRL 5 should be as long as possible (minimum of 0.1 at 800 MHz) and capable of handling 750 mA current.  
Optional 4.7 nH coil may be substituted.  
Figure 3: Application Circuit  
Data Sheet - Rev 2.2  
11/2008  
6
AWT6224R  
PACKAGE OUTLINE  
Figure 4: Package Outline - 14 Pin 3 mm x 5 mm x 1 mm Surface Mount Module  
Figure 5: Branding Specification  
Data Sheet - Rev 2.2  
11/2008  
7
AWT6224R  
ORDERING INFORMATION  
ORDER  
NUMBER  
TEMPERATURE  
RANGE  
PACKAGE  
DESCRIPTION  
COMPONENT PACKAGING  
RoHS Compliant 14 Pin  
3 mm x 5 mm x 1 mm  
Surface Mount Module  
AWT6224RM28Q7 -20 °C to +90 °C  
AWT6224RM28P9 -20 °C to +90 °C  
Tape and Reel, 2500 pieces per Reel  
RoHS Compliant 14 Pin  
3 mm x 5 mm x 1 mm  
Surface Mount Module  
Partial Tape and Reel  
ANADIGICS, Inc.  
141 Mount Bethel Road  
Warren, New Jersey 07059, U.S.A.  
Tel: +1 (908) 668-5000  
Fax: +1 (908) 668-5132  
URL: http://www.anadigics.com  
E-mail: Mktg@anadigics.com  
IMPORTANT NOTICE  
ANADIGICS, Inc. reserves the right to make changes to its products or to discontinue any product at any time without notice.  
The product specifications contained in Advanced Product Information sheets and Preliminary Data Sheets are subject to  
change prior to a product’s formal introduction. Information in Data Sheets have been carefully checked and are assumed  
to be reliable; however, ANADIGICS assumes no responsibilities for inaccuracies. ANADIGICS strongly urges customers  
to verify that the information they are using is current before placing orders.  
WARNING  
ANADIGICS products are not intended for use in life support appliances, devices or systems. Use of anANADIGICS product  
in any such application without written consent is prohibited.  
Data Sheet - Rev 2.2  
8
11/2008  

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