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OZ200

The OZ200 is a digitally controlled RF-over-Fiber transmitter/receiver module managed over USB-C, offering a high dynamic range of up to 60 dB.

  • Product Summary
  • Product Details
  • The OZ200 is an RFoF module operating in the standard 30 MHz to 3 GHz band, digitally configurable over USB, I2C or UART through its onboard microcontroller. It provides separate 30 dB gain control on transmit and receive (optionally 60 dB on transmit) for an overall high dynamic range of about 60 dB, supporting Automatic Optical Power Control (AAPC) plus Manual and Automatic Gain Control (MGC/AGC) modes. Up to 4 units can be mounted together in a J3U Quad system.

    • Frequency range: 30 MHz - 3 GHz (optional 1 MHz - 6 GHz)
    • RF interface: 50 Ohm SMA
    • Optical interface: SC/APC fiber pigtail
    • Control/power: USB-C connector
    • Dimensions: 19 x 106 x 9 mm, weight 32 g (including fiber)
    • Supply voltage: approx 6.5 VDC
    • Dynamic range: approx 60 dB
    • Gain control: 30 dB on Tx/Rx (optional 60 dB on Tx)
    • Operating temperature: -40C to +70C
    • Fiber: 9/125 um single-mode (standard), multimode optional
    • Wavelengths: 1310 nm, 1550 nm, CWDM
    • Laser: uncooled isolated DFB
    • Control interface: USB, I2C or UART
    • Up to 4 units co-mountable in a J3U Quad system
    • Local LED alarm indicator

    Applications: high dynamic range links (256 QAM), teleport distribution, antenna diversity, phased arrays, radar, avionics, 4G/5G/CBRS, satcom and cellular communications.

    Official product page: opticalzonu.com – OZ200

Product Summary

The OZ200 is an RFoF module operating in the standard 30 MHz to 3 GHz band, digitally configurable over USB, I2C or UART through its onboard microcontroller. It provides separate 30 dB gain control on transmit and receive (optionally 60 dB on transmit) for an overall high dynamic range of about 60 dB, supporting Automatic Optical Power Control (AAPC) plus Manual and Automatic Gain Control (MGC/AGC) modes. Up to 4 units can be mounted together in a J3U Quad system.

Product Details

  • Frequency range: 30 MHz - 3 GHz (optional 1 MHz - 6 GHz)
  • RF interface: 50 Ohm SMA
  • Optical interface: SC/APC fiber pigtail
  • Control/power: USB-C connector
  • Dimensions: 19 x 106 x 9 mm, weight 32 g (including fiber)
  • Supply voltage: approx 6.5 VDC
  • Dynamic range: approx 60 dB
  • Gain control: 30 dB on Tx/Rx (optional 60 dB on Tx)
  • Operating temperature: -40C to +70C
  • Fiber: 9/125 um single-mode (standard), multimode optional
  • Wavelengths: 1310 nm, 1550 nm, CWDM
  • Laser: uncooled isolated DFB
  • Control interface: USB, I2C or UART
  • Up to 4 units co-mountable in a J3U Quad system
  • Local LED alarm indicator

Applications: high dynamic range links (256 QAM), teleport distribution, antenna diversity, phased arrays, radar, avionics, 4G/5G/CBRS, satcom and cellular communications.

Official product page: opticalzonu.com – OZ200

Brief overview of OZ200

The OZ200 is a digitally controlled RF-over-Fiber transmitter/receiver module managed over USB-C, offering a high dynamic range of up to 60 dB.

Teknoa helps organizations with product selection, technical positioning, integration and after-sales support for Optical Zonu solutions.

RF over Fiber and GPS/RF signal transport

Optical Zonu solution context

Optical Zonu RF over Fiber modules and GPS/RF transport solutions help overcome coaxial cable limits in distance, isolation and flexibility.

Used in SATCOM, radar, defense, GPS distribution, DAS, laboratory and remote antenna connectivity projects.

Official manufacturer source Optical Zonu Teknoa guide
Product family / related solutions
  • OZ600 medium RFoF modules
  • OZ81x RF over Fiber links
  • OZ18xx broadband RFoF solutions
  • GPS/RF fiber distribution systems
Use cases
  • RF transport between remote antennas and central equipment
  • GPS signal distribution over fiber
  • Isolation in radar, SATCOM and laboratory links
Selection criteria
  • OZ600 frequency range and form factors
  • Transmitter, receiver and transceiver selection
  • Low phase noise scenarios
  • GPS over Fiber architecture