RIM251K6-20G

Microwave Generator by RFHIC | Visit website (20 more products)

Note : Your request will be directed to RFHIC.

RIM251K6-20G Image

The RIM251K6-20G from RFHIC is a GaN SSPA based Microwave Generator that operates from 2400 to 2500 MHz. It delivers an adjustable output power from 100 to 1600 W with an efficiency of up to 55%. The generator uses GaN-on-SiC HEMT transistors that provide excellent thermal stability and efficiency for high-power applications. It consists of a high-grade phase-locked-loop (PLL) synthesizer that generates the desired frequency in a precise and stable manner. The generator allows sweeping of frequency, power, and signal source and is ideally designed for ISM (Industrial, Scientific, and Medical) and plasma generation applications.

The RIM251K6-20G is available in a module that measures 200.0 x 361.5 x 53.0 mm with 7/16 DIN (female) connectors and supports RS-232 and RS-485 interfaces. It is ideal for plasma generation, industrial heating, and drying, microwave CVD, microwave welding, microwave chemistry, microwave sintering, materials processing, the study of biological phenomena, semiconductor equipment, and building block for high-power system applications.

Product Specifications

View similar products

Product Details

  • Part Number
    RIM251K6-20G
  • Manufacturer
    RFHIC
  • Description
    1.6 kW GaN SSPA Based Microwave Generator from 2.4 to 2.5 GHz

General Parameters

  • Applications
    Industrial, Scientific, Medical
  • Technology
    Solid State
  • Semiconductor Technology
    GaN
  • Frequency
    2.4 to 2.5 GHz
  • Bandwidth
    100 MHz
  • CW/Pulse
    CW / Pulsed
  • Power
    100 to 1600 W
  • Efficiency
    55%
  • Duty Cycle
    1 to 99 %
  • VSWR
    6.0:1
  • Cooling Type
    Water Cooled
  • Package Type
    Module
  • Interface
    RS232, RS422
  • Connector
    7/16 DIN
  • Voltage
    50 V(DC)
  • Dimension
    200 x 361.5 x 53 mm
  • Power Supply Type
    DC
  • RoHS
    Yes
  • Note
    Frequency Resolution : 100 kHz, Frequency Accuracy & Stability : +/- 2.5 ppm

Technical Documents