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AMM-9619PSM Image

The AMM-9619PSM from Marki Microwave is a GaAs LO Driver Amplifier that operates from 2 to 26 GHz. It delivers a small signal gain of 14.5 to 16.1 dB and has a noise figure of 1.6 to 3.4 dB with an output P1dB of 15.6 to 18.2 dBm. This amplifier has a reverse isolation of 33-46 dB and a return loss of 11-16 dB (input) & 14.3 to 18.4 dB (output). It can be used as a single-tone driver or general-purpose gain block and can drive an L or H diode mixer. 

The AMM-9619PSM exhibits a positive gain slope to equalize frequency-dependent losses. It requires a DC supply of +5 or -0.4 V and consumes 74 mA of current. This driver amplifier is available in a surface mount QFN package that measures 4.0 x 4.0 x 1.2 mm. It is ideal for mobile test and measurement equipment, radar,   satellite communications, driver amplifiers for H & S-diode mixers, and electronic warfare applications.


Product Specifications

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Product Details

  • Part Number
    AMM-9619PSM
  • Manufacturer
    Marki Microwave
  • Description
    GaAs LO Driver Amplifier from 2 to 26 GHz

General Parameters

  • Type
    Driver Amplifier View all
  • Configuration
    IC/MMIC/SMT View all
  • Display Application
    Mobile test and measurement equipment, Driver Amplifier for H and S - Diode Mixers
  • Industry Application
    Electronic Warfare, Radar, SATCOM, Test & Measurement
  • Frequency
    2 to 26 GHz
  • Small Signal Gain
    14.5 to 16.1 dB
  • Noise Figure
    1.6 to 3.3 dB
  • P1dB
    15.6 to 18.2 dBm
  • IP3
    24.6 to 28.2 dBm
  • IP3
    0.28 to 0.66 W
  • Input Power
    20 dBm
  • Input Power
    0.1 W
  • Impedance
    50 Ohms View all
  • Reverse Isolation
    33 to 46 dB
  • Input Return Loss
    11 to 16 dB
  • Output Return Loss
    14.3 to 18.4 dB
  • Supply Voltage
    5 V
  • Current Consumption
    130 mA
  • Quiscent Current
    74 mA
  • Package Type
    Surface Mount View all
  • Dimensions
    4 x 4 mm
  • Operating Temperature
    -55 to 85 Degree C
  • Storage Temperature
    -65 to 150 Degree C
  • RoHS
    Yes

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