AWL6153
2.4 GHz Wireless LAN Power Amplifier Module
PRELIMINARY DATA SHEET - Rev 1.0
FEATURES
• • InGaP HBT Technology < 3.5% EVM at +25 dBm Output Power (+5 V Supply), with 802.11g Modulation at 54 Mbps Data Rate < 3% EVM at +21 dBm Output Power (+3.3 V Supply), with 802.11g Modulation at 54 Mbps Data Rate +3 V to +5 V Supply High Efficiency 4 x 4 x 1.5 mm Surface Mount Module 50Ω - Matched RF Ports for Reduced External Component Count Designated Pb-free Packaging
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• • • • •
APPLICATIONS
• • 802.11g/b WLAN Stations and Client Cards 802.11g/b WLAN Access Points
M7 Package 10 Pin 4 x 4 x 1.5 mm Surface Mount Module
PRODUCT DESCRIPTION
The ANADIGICS AWL6153 WLAN Power Amplifier is an easy to use module that delivers high levels of linearity and efficiency for high data rate applications. Designed for the 2.4 GHz WLAN standards, it supports the 54 Mbps data rates specified in IEEE 802.11g. Requiring a single +3 V to +5 V supply and a reference voltage input, the AWL6153 reduces system power consumption by offering a low leakage current while the amplifier is shut down. No external circuits are required for RF impedance matching, thus reducing component costs and making it easy to incorporate the device into new designs. The AWL6153 is manufactured using an advanced InGaP HBT technology that offers state-of-the-art reliability, temperature stability and ruggedness. It is offered in a 4 x 4 x 1.5 mm surface mount module optimized for a 50Ω system.
VCC
VREF
Bias Control
RFIN
Matching Network
Matching Network
RFOUT
GND
Figure 1: Module Block Diagram
08/2004
AWL6153
GND VCC RFIN GND N/C VREF 1 2 3 4 5 GND
Figure 2: Pinout (X-ray Top View)
10 VCC 9 8 7 6 GND RFOUT GND GND
Table 1: Pin Description
PIN 1 2 3 4 5 6 7 8 9 10 NAME V CC RFIN GND N/C VREF GND GND RFOUT GND V CC DESCRIPTION Supply Voltage RF Input Ground No Connection Reference Voltage Ground Ground RF Output Ground Supply Voltage
2
PRELIMINARY DATA SHEET - Rev 1.0 08/2004
AWL6153
ELECTRICAL CHARACTERISTICS
Table 2: Absolute Minimum and Maximum Ratings PARAMETER Supply Voltage (VCC) Reference Voltage (VREF) RF Input Power (PIN) Storage Temperature MIN 0 0 -40 MAX +5.5 +3.5 +10 +150 UNIT V V dB m °C
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 Operating Frequency (f) Supply Voltage (VCC) Reference Voltage (VREF) MIN 2400 +3.0 0 -25 TYP +2.85 +21 +25 +25 +28 MAX 2485 +5.5 +0.5 +85 UNIT MHz V V PA"on" PA"shut down" V CC V CC V CC V CC = +3.3 = +5.0 = +3.3 = +5.0 V, 802.11g V, 802.11g V, 802.11b V, 802.11b modulation modulation modulation modulation COMMENTS
RF Output Power (POUT)
dB m
Case Temperature (TC)
°C
The device may be operated safely over these conditions; however, parametric performance is guaranteed only over the conditions defined in the electrical specifications.
PRELIMINARY DATA SHEET - Rev 1.0 08/2004
3
AWL6153 Table 4: Electrical Specifications - 802.11g Modulation, 54 Mbps Data Rate (TC = +25 °C, VCC = +3.3 V, VREF = +2.85 V, POUT = +21 dBm, 50 Ω system)
PARAMETER Gain Gain Ripple Constellation RMS Error Spectrum Mask at 611 MHz Offset Spectrum Mask at 620 MHz Offset Spectrum Mask at 630 MHz Offset Current Consumption VCC VREF Leakage Current Input Return Loss P 1dB Harmonics 2fo 3fo On Time Maximum load mismatch stress with no permanent degradation or failure MIN TYP 31.5 3 -30 190 5.5
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