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ABA-32563 Datasheet, PDF (1/7 Pages) Agilent(Hewlett-Packard) – 2.5 GHz Broadband Silicon RFIC Amplifier
ABA-32563
2.5 GHz Broadband Silicon RFIC Amplifier
Data Sheet
Description
Features
Avago’s ABA-32563 is an economical, easy-to-use,
internally 50Ω matched, silicon monolithic broadband
amplifier that offers excellent gain and broadband
response from DC to 2.5 GHz. Packaged in an ultra-
miniature SOT-363 package, it requires half the board
spaceof a SOT-143 package.
At 2 GHz, the ABA-32563 offers a small-signal gain of
19 dB, output P1dB of 8.4 dBm and 19.5 dBm ­output third
order intercept point. It is suitable for use as wideband
applications. They are designed for low cost gain blocks in
cellular applications, DBS tuners, LNB and other wireless
communication systems.
• Operating Frequency DC ~ 2.5 GHz
• 19 dB Gain
• VSWR < 2.0 throughout operating frequency
• 8.4 dBm Output P1dB
• 19.5 dBm Output IP3
• 3.5 dB Noise Figure
• Unconditionally Stable
• Single 3V Supply (Id = 37 mA)
• Lead-free
ABA-32563 is fabricated using Avago’s HP25 silicon
bipolar process, which employs a double-diffused single
polysilicon process with self-aligned submicron emitter
geometry. The process is capable of ­simultaneous high
fT and high NPN breakdown (25 GHz fT at 6V BVCEO). The
process utilizes ­industry standard device oxide isolation
technologies and submicron aluminum multilayer
interconnect to achieve superior performance, high
uniformity, and proven reliability.
Applications
• Amplifier for Cellular, Cordless, Special Mobile Radio, PCS, ISM, Wireless
LAN, DBS, TVRO, and TV Tuner Applications
Surface Mount Package: SOT-363 /SC70
Attention:
Observe precautions for handling electrostatic
­sensitive devices.
ESD Machine Model (Class A)
ESD Human Body Model (Class 1B)
Refer to Avago Application Note A004R:
Electrostatic Discharge Damage and Control.
Pin Connections and Package Marking
GND 2
GND 1
Output
& Vcc
GND 3
Input
Vcc
Note:
Top View. Package marking provides orientation and identification.
“x” is the date code.
Simplified Schematic
Vcc
RF
Input
Ground 1
Ground 3
RF
Output
& Vcc
Ground 2