AP501
AP501 is PCS-band 4W HBT Amplifier Module manufactured by WJ Communication.
Features
- 1930
- 1990 MHz
- 32.5 d B Gain
- +36 d Bm P1d B
- -62 d Bc ACPR
@ 27 d Bm IS-95A linear power
The munications Edge TM Product Information
PCS-band 4W HBT Amplifier Module
Product Description
The AP501 is a high dynamic range power amplifier in a Ro HS-pliant flange-mount package. The multi-stage amplifier module has 32.5 d B gain, while being able to achieve high performance for PCS-band applications with +36 d Bm of pressed 1d B power. The module has been internally optimized for driver applications provide -62 d Bc ACPR at 27 d Bm for IS-95A applications or -55 d Bc ACLR at 26.5 for w CDMA applications. The module can be biased down for current when higher efficiency is required. The AP501 uses a high reliability In Ga P/Ga As HBT process technology and does not require any external matching ponents. The module operates off a +12V supply and does not requiring any negative biasing voltages; an internal active bias allows the amplifier to maintain high linearity over temperature. It has the added feature of a +5V power down control pin. A low-cost metal housing allows the device to have a low thermal resistance to ensure long lifetimes. All devices are 100% RF and DC tested.
Functional Diagram
- -55 d Bc ACLR
@ 26.5 d Bm w CDMA linear power
Top View Pin No. 1 2/4 3/5 6 Case Function RF Output Vcc Vpd RF Input Ground
- +12 V Single Supply
- Power Down Mode
- Bias Current Adjustable
- Ro HS-pliant flange-mount pkg
Applications
- Final stage amplifiers for repeaters
- Optimized for driver amplifier The AP501 is targeted for use as a driver or final stage amplifier PA mobile infrastructure in wireless infrastructure where high linearity and high power is required. This bination makes the device an excellent candidate for next generation multi-carrier 3G base stations.
Specifications
25 ºC, Vcc=12V, Vpd=5V, Icq=820m A, R7=0Ω, 50Ω unmatched fixture
Typical Performance (4)
Units Min Typ Max Parameter
Operating Current @ 27 d Bm Quiescent Current, Icq...