W-Band Transceivers

970980W-20/387S || 95 GHz to 100 GHz

Description

The Mi-Wave 970980W-20/387S W-Band RF Transceiver is a fully integrated transmit-and-receive system designed for operation across 95 to 100 GHz. Combining transmitter and receiver signal paths within one compact platform, it provides dependable frequency conversion for millimeter-wave research, communications, instrumentation, and system development.

The transceiver provides bidirectional frequency translation between a 2.1 GHz intermediate frequency and W-Band RF. This allows conventional microwave instrumentation, digitizers, and signal-processing equipment to generate, receive, and analyze signals near 100 GHz.

A mechanically controlled VCO-based local oscillator supports stable and repeatable operation for both transmit and receive paths. Using a shared LO architecture helps maintain consistent frequency relationships between transmitted and received signals while reducing external equipment and integration complexity.

In transmit mode, the transceiver converts the 2.1 GHz IF input to W-Band and provides typical RF output power of approximately +20 dBm. This output supports experimental transmitters, short-range point-to-point links, component testing, and laboratory signal-generation systems.

In receive mode, incoming W-Band signals are converted to the 2.1 GHz IF output for amplification, digitization, analysis, or additional processing. High receiver conversion gain and low noise performance help preserve weak millimeter-wave signals.

A WR-10 waveguide RF interface provides efficient signal transmission and reception at W-Band frequencies. IF, power, and control connections are provided through PCB-mounted pins for direct system integration. A TTL control input enables or disables the transmitter, while the receiver remains active for continuous signal monitoring.

Operating from a single DC power supply, the compact transceiver is intended for controlled laboratories, research facilities, test platforms, and advanced system-integration environments requiring stable and repeatable W-Band performance.

Typical applications include W-Band communications research, point-to-point links, radar development, millimeter-wave instrumentation, component testing, signal monitoring, and experimental systems operating near 100 GHz.

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

Key Specifications (Summary)

RF Frequency (Tx/Rx): 95 – 100 GHz (W-band)
IF Frequency: 2.1 GHz (fixed)
RF Interface: WR-10 Waveguide (Miniature Flange)
LO Architecture: Internal mechanically controlled VCO (set at 95 GHz)

Transmitter Performance

  • Conversion Gain: 30 dB nominal (38 dB typical)

  • RF Output Power: ~20 dBm typical over band

  • Maximum IF Input Power (CW): +5 dBm

  • Antenna Gain Options: 10 dB or 15 dB

Receiver Performance

  • Conversion Gain: 35 dB nominal (45 dB typical)

  • Noise Figure: 5 dB nominal (4 dB typical over band)

  • Maximum RF Input Power (CW): 0 dBm

  • Antenna Gain Options: 10 dB or 15 dB

Control and Power

  • DC Bias: +5 V to +6 V (typical +6 V @ ~1.06 A)

  • TTL Control:

    • TTL High (+5 V): Transmitter ON

    • TTL Low (0 V): Transmitter OFF

    • Receiver always ON

  • Power Sequence: Apply DC bias before TTL control

*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.

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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