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AWT6138 PDF预览

AWT6138

更新时间: 2024-11-17 22:05:59
品牌 Logo 应用领域
ANADIGICS 放大器功率放大器
页数 文件大小 规格书
8页 218K
描述
LINEAR POWER AMPLIFIER MODULE

AWT6138 数据手册

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AWT6138  
HELPTM PCS/CDMA 3.4V/28dBm  
Linear PowerAmplifier Module  
ADVANCED PRODUCT INFORMATION - Rev 0.0  
FEATURES  
•
InGaP HBT Technology  
•
High Efficiency:  
• 38% at +28 dBm  
• 20% at +16 dBm  
• 1.5% at 0 dBm  
•
•
•
•
•
Low Quiescent Current: 20 mA  
Low Leakage Current in Shutdown Mode: <1 mA  
VREF = +2.85 V (+2.7 V min over temp)  
Low Profile Surface Mount Package: 1.56mm Max  
CDMA 1XRTT and 1xEV-DO Compliant  
APPLICATIONS  
M7 Package  
10 Pin 4mm x 4mm  
Surface Mount Module  
•
PCS CDMA Wireless Handsets  
•
Dual Band CDMA Wireless Handsets  
PRODUCT DESCRIPTION  
The AWT6138 PCS CDMA Power Amplifier is a high  
performance CDMA2000/ 1XRTT amplifier designed  
specifically for PCS wireless applications. This  
rugged, easy to use InGaP HBT design delivers  
state of the art efficiency and temperature stability  
with very low DC power consumption. The  
AWT6138 PA module has the lowest CDG currents  
available to handset manufacturers today.  
handset. The device has mode-switching to take  
advantage of its high efficiency operation over a wide  
range of output powers. Higher low power efficiency  
is achieved without an external DAC or DC-DC  
converter. The integrated power amplifier module  
employs a proprietary bias control and temperature  
compensation circuit that assures stable operation,  
even at extreme temperature conditions.  
A combination of low idle current and mode  
switching enables the AWT6138 to deliver  
unparalleled CDMA average power efficiencies.  
This bias feature allows theAWT6138 to significantly  
increase the battery usage time of a mobile  
The self contained 4mm x 4mm surface mount  
package incorporates matching networks optimized  
for output power, efficiency and linearity in a 50[ohm]  
system making it easy to incorporate the device into  
BOTH new and existing designs.  
GND at slug (pad)  
1
2
3
4
5
10  
9
V
CC  
VCC  
RFIN  
GND  
RFOUT  
GND  
GND  
8
GND  
Bias Control  
7
V
MODE  
6
V
REF  
Figure 1: Block Diagram  
09/2003  

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