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OZ510

The OZ510 is an RFoF transmitter/receiver module that carries timing and synchronization signals such as RS422, IRIG-B, 1PPS and TTL over fiber.

  • Product Summary
  • Product Details
  • The OZ510 carries timing and synchronization signals — RS422, IRIG-B, 1PPS and TTL — over fiber alongside the standard 30 MHz to 3 GHz RF band. Measuring 38 x 64 x 15 mm and powered from +12 VDC, it uses an uncooled isolated DFB laser and an InGaAs photodiode. Optional 5V or 12V Bias-T supply options also allow remote equipment (antenna/LNB) to be powered over the same fiber link.

    • Frequency range: 30 MHz - 3 GHz (lower limit reducible to 10 kHz)
    • Dimensions: 38 x 64 x 15 mm, weight 90 grams (with pigtail)
    • Supply voltage: +12 VDC
    • Operating temperature: -40C to +70C (1310 nm)
    • Wavelengths: 1310 nm, 1550 nm, CWDM options
    • Laser: uncooled isolated DFB (Class 1 emission, CDRH/IEC-825/EN 60825)
    • Receiver: high-performance InGaAs photodiode
    • RF connector: standard 50 Ohm SMA (optional surface-mount 50 Ohm SMB)
    • Additional interfaces: RS422, IRIG-B, 1PPS, TTL
    • Bias-T options: none, 5V or 12V
    • Optional +20 dB transmitter LNA
    • Optical pigtail options: SC/APC, FC/APC, LC/APC
    • Fiber compatibility: single-mode standard; multimode (62.5 um OM1, 50 um OM3/OM4) option for 3 GHz models
    • Up to two OZ5xx modules mount in a single J slot

    Applications: L-Band satcom, cellular backhaul, MMDS, antenna remoting, GPS distribution, low phase noise clock distribution, optical delay lines.

    Official product page: opticalzonu.com – OZ510

Product Summary

The OZ510 carries timing and synchronization signals — RS422, IRIG-B, 1PPS and TTL — over fiber alongside the standard 30 MHz to 3 GHz RF band. Measuring 38 x 64 x 15 mm and powered from +12 VDC, it uses an uncooled isolated DFB laser and an InGaAs photodiode. Optional 5V or 12V Bias-T supply options also allow remote equipment (antenna/LNB) to be powered over the same fiber link.

Product Details

  • Frequency range: 30 MHz - 3 GHz (lower limit reducible to 10 kHz)
  • Dimensions: 38 x 64 x 15 mm, weight 90 grams (with pigtail)
  • Supply voltage: +12 VDC
  • Operating temperature: -40C to +70C (1310 nm)
  • Wavelengths: 1310 nm, 1550 nm, CWDM options
  • Laser: uncooled isolated DFB (Class 1 emission, CDRH/IEC-825/EN 60825)
  • Receiver: high-performance InGaAs photodiode
  • RF connector: standard 50 Ohm SMA (optional surface-mount 50 Ohm SMB)
  • Additional interfaces: RS422, IRIG-B, 1PPS, TTL
  • Bias-T options: none, 5V or 12V
  • Optional +20 dB transmitter LNA
  • Optical pigtail options: SC/APC, FC/APC, LC/APC
  • Fiber compatibility: single-mode standard; multimode (62.5 um OM1, 50 um OM3/OM4) option for 3 GHz models
  • Up to two OZ5xx modules mount in a single J slot

Applications: L-Band satcom, cellular backhaul, MMDS, antenna remoting, GPS distribution, low phase noise clock distribution, optical delay lines.

Official product page: opticalzonu.com – OZ510

Brief overview of OZ510

The OZ510 is an RFoF transmitter/receiver module that carries timing and synchronization signals such as RS422, IRIG-B, 1PPS and TTL over fiber.

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

Time, frequency, NTP/PTP and synchronization

Meinberg solution context

Meinberg provides reliable time sources for critical infrastructure through LANTIME NTP servers, IMS modular systems, microSync products, PTP grandmaster clocks, GNSS and IRIG synchronization solutions.

Positioned for accurate time distribution, log integrity and compliance in energy, telecom, finance, defense, broadcasting, data center and industrial automation projects.

Official manufacturer source Meinberg Teknoa guide
Product family / related solutions
  • LANTIME time servers
  • IMS modular synchronization platform
  • microSync compact grandmaster systems
  • GNSS antenna and receiver options
Use cases
  • Critical log and event timestamping
  • Industrial synchronization with PTP grandmaster clocks
  • Reliable time distribution in finance and telecom networks
Selection criteria
  • NTP/PTP comparison
  • GNSS antenna and holdover scenarios
  • IEEE 1588 profile selection
  • LANTIME, IMS and microSync differences