RIK0960K-40TDG

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

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The RIK090K-40TDG from RFHIC is a Solid-State Microwave Generator that operates in the UHF band from 900 to 930 MHz. It delivers a CW/Pulsed output power of up to 60 kW in 0.1 kW steps with a peak efficiency of 60%. This microwave generator integrates thirty-two GaN solid-state amplifiers, a 162 kW 380 VAC power supply unit, and the main control module (PLL synthesizer) and can be controlled using Windows-based GUI software. The included Phase Locked Loop (PLL) synthesizer ensures high-frequency stability and provides high reliability over the long run. It is available in a combined dual rack enclosure that measures 793 x 1017 x 1900 mm with a WR975 waveguide interface.

The RIK090K-40TDG is ideal for use as a building block for high-power systems, plasma generation, the study of biological phenomena, materials processing, microwave sintering, microwave chemistry, microwave CVD and industrial heating and drying applications.

Product Specifications

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Product Details

  • Part Number
    RIK0960K-40TDG
  • Manufacturer
    RFHIC
  • Description
    60 kW Solid-State GaN Microwave Generator from 900 to 930 MHz

General Parameters

  • Applications
    Drying, Heating, Industrial, Microwave Chemistry, Microwave CVD, Plasma Generation, Microwave Sintering, Materials Processing
  • Technology
    Solid State
  • Semiconductor Technology
    GaN
  • Frequency
    900 to 930 MHz
  • Bandwidth
    500 kHz (Power Spectrum)
  • CW/Pulse
    CW / Pulsed
  • Power
    1 to 60 kW
  • Efficiency
    60 %
  • Pulse Width
    20 us
  • Cooling Type
    Water Cooled
  • Package Type
    System
  • Interface
    Ethernet, USB
  • Output Interface
    Waveguide
  • Waveguide Size
    WR-975
  • Connector
    D-Sub 9-Pin (DC)
  • Voltage
    380 to 415 V
  • Dimension
    793 x 1017 x 1900 mm
  • Weight
    1000 kg
  • Power Supply Type
    AC
  • Operating Temperature
    15 to 50 Degree C
  • RoHS
    Yes
  • Note
    Storage Temperature:10 to 40 Degree C

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