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Ku Band 10-13GHz 20W CW GaN Power Amplifier SSPA Module
SSPA

Ku Band 10-13GHz 20W CW GaN Power Amplifier SSPA Module

This 20W Ku-band SSPA module adopts GaN technology and operates in CW mode within 10~13GHz. With 28V power supply and TTL control & status detection, it works from -25℃ to 55℃. Designed for communication systems, it must be mounted on a cold plate for heat dissipation.

    This is ZDTECH Ku Band 10-13GHz 20W SSPA Module adopting GaN HEMT devices. It works in continuous wave mode with output power over 43dBm. Powered by +28V DC, it is equipped with DB9 power connector and SMA-K RF output connector, and operates at -25℃~+55℃. Integrated with TTL-based enable, power and temperature detection functions, the module requires cold plate contact heat dissipation and is widely used in communication systems.

    FEATURES

    GaN HEMT Device

    High power

    CW output

    Direct current supply

    APPLICATIONS

    Communication system

    DESCRIPTION

    Broadband solid-state CW GaN power amplifier with an output peak power better than 20W. It can be used in communication system

    SPECIFICATIONS

    NO.

    Parameter

    Value

    unit

    Comments

    1

    Frequency range

    10-13

    GHz

    2

    Output Power

    >43

    dBm

    3

    Working Mode

    CW

    Sweep

    4

    Output Connector

    SMA-K

    -

    5

    Temp Range

    -25~+55

    degree

    6

    Supply

    +28

    V

    7

    Power Supply Connector

    DB9

    8

    Outline Dimensions

    mm

    Caution :The product needs to be installed on a cold plate for contact heat dissipation.

    Connector definition

    1

    2

    3

    4

    5

    6

    7

    8

    9

    +28V

    +28V

    GND

    GND

    GND

    Enable

    DC power

    Temp

    Enable

    Temp:TTL, Normal operation at low level,When Temperature exceeds the safe temperature will turn to high level

    DC power:TTL, High level output when the power supply is normal

    Enable:TTL, The module operates at high level and remains in a silent state at low level.

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