Ka-Band Transceiver Up-Downconverter

970980-43.5/50/14/383AC| 43.5 to 50 GHz

Description

The Mi-Wave 970980-43.5/50/14/383AC U-Band Transceiver combines microwave upconversion and downconversion functions in a single integrated assembly. Designed for RF operation from 43.5 to 50 GHz, the unit supports broadband transmit-and-receive applications requiring high conversion gain, adjustable signal levels, and external analog control.

In transmitter mode, the transceiver accepts IF input frequencies from 1 MHz to 7.2 GHz and converts them into RF output signals between 43.5 and 50 GHz. The transmitter provides approximately 27 dB of conversion gain and a typical RF output power of approximately +14 dBm. Test data for the displayed unit shows RF output power between 14.35 and 15.1 dBm, with 14.5 dBm typical.

An internal variable attenuator provides up to 14 dB of transmit attenuation. The attenuation level is controlled through an external 0 to +6 VDC analog control input.

In receiver mode, incoming RF signals from 43.5 to 50 GHz are translated into lower-frequency IF signals. The receiver provides approximately 25 dB of conversion gain and includes an internal variable attenuator with up to 30 dB of adjustment. The receiver attenuation is also controlled using a 0 to +6 VDC analog input.

The transceiver uses a WR-19 waveguide RF interface with a UG-383 flange and an SMA-female IF connector. Power is supplied through an IEC 320 C-14 AC input. Separate binding-post banana connectors provide external LO and attenuator-control access.

The aluminum chassis measures approximately 8.13 × 10.06 × 4.1 inches and is suitable for laboratory, rack-mounted, and system-level installations.

Typical applications include U-band communications, radar systems, telemetry, spectrum monitoring, electronic warfare, signal intelligence, test and measurement, laboratory research, and custom frequency-conversion systems.

Watch our informational video to learn more about this product family, including its key features, operating principles, and common applications.

*Actual product may be different from the image shown per customers specifcations
*All data presented is collected from a sample lot.
* Actual data may vary unit to unit, slightly.
*All testing was performed under +25 °C case temperature.
*Consult factory to confirm if material, plating, size, shape, orientation and any electrical parameter is critical for the application as website information is for reference only.
*Millimeter Wave Products, Inc. reserves the right to change the information presented on website without notice as we continue to enhance the performance and design of our products.

Key Specifications

RF Operating Frequency: 43.5–50 GHz
Transmit IF Input Frequency: 0.001–7.2 GHz
Receive IF Output Frequency: 0.001–7.2 GHz, as listed
Transmit Conversion Gain: 27 dB typical
Receive Conversion Gain: 25 dB typical
Transmit RF Output Power: +14 dBm typical
Tested RF Output Power: 14.35–15.1 dBm
Receiver IF Output Power: +30 dBm typical, as listed
Transmit Attenuation Range: 0–14 dB
Receive Attenuation Range: 0–30 dB
Analog Control Range: 0 to +6 VDC
RF Interface: WR-19 waveguide with UG-383 flange
IF Interface: SMA female
AC Input: IEC 320 C-14


Features

  • Integrated U-band transmitter and receiver
  • 43.5–50 GHz RF operating range
  • IF frequency coverage from 1 MHz to 7.2 GHz
  • Typical 27 dB transmitter conversion gain
  • Typical 25 dB receiver conversion gain
  • Typical transmitter RF output power of +14 dBm
  • Internal variable LO control
  • Internal variable attenuation
  • Up to 14 dB transmit attenuation
  • Up to 30 dB receive attenuation
  • External analog voltage control
  • WR-19 RF waveguide interface
  • UG-383 waveguide flange
  • SMA-female IF interface
  • IEC C-14 AC power input
  • Separate binding-post control connections
  • Rugged aluminum chassis
  • Suitable for laboratory and integrated system applications

Interested in this product or other Mi-Wave solutions?

Contact our team to discuss your frequency range, interface needs, and application requirements.

Custom configurations are available for specialized RF, microwave, and millimeter-wave systems.

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