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Absolute EMC Fiber Optic OM3 LC-LC Armored Duplex Fiber Patch Cable

Absolute EMC Fiber Optic OM3 LC-LC Armored Duplex Fiber Patch Cable

Absolute EMC Fiber Optic OM1 ST ST Duplex Patch Cables

Absolute EMC Fiber Optic OM1 ST ST Duplex Patch Cables

Absolute EMC Duplex Fiber Optic OM1 FSMA-FSMA Patch Cables

Absolute EMC Duplex Fiber Optic OM1 FSMA-FSMA Patch Cables

TBTP3 Wooden Tripod

TBTP3 Wooden Tripod

TBBT01 High Current Bias-Tee

TBBT01 High Current Bias-Tee

Products

Absolute EMC Fiber Optic OM3 LC-LC Armored Duplex Fiber Patch Cable

Upgrade your fiber infrastructure with Absolute EMC’s OM3 LC-LC Armored Duplex Patch Cable—designed for high-speed 10G data transmission and built to withstand rugged environments. Perfect for EMC labs, defense applications, and industrial networks where durability and performance are critical.

  • Works with EMSCOPE Products

Absolute EMC Fiber Optic OM1 ST ST Duplex Patch Cables

OM1 ST ST Indoor/Outdoor Duplex Fiber Patch Cable, Corning 62.5/125 Multimode fiber jumpers. OFNR Riser Rated fiber cord, tightly buffered in a black, indoor/outdoor protective jacket.  Flexible, easy to install and reliable multi-mode fiber patch cord terminated with duplex ST fiber connectors on both ends. Each fiber breakout has 18" of 3.0mm furcation tubing for added durability.

Absolute EMC Duplex Fiber Optic OM1 FSMA-FSMA Patch Cables

OM1 Duplex FSMA FSMA Indoor Duplex Fiber Patch Cable, Corning 62.5/125 Multimode fiber jumpers.  Each end pre-terminated with 2 stainless steel FSMA connectors.  OM1 duplex jumpers have 62.5um Corning optical core and 125um cladding for high speed, low loss, data transmission.  OFNR rated, orange colored, 3.0mm diameter, PVC jacket with zip-cord.

TBTP3 Wooden Tripod

The TBTP3 tripod, made out of beech wood, is suitable for most of our antennas up to 8kg.

TBBT01 High Current Bias-Tee

The TBBT01 Bias-Tee is a device for measuring the saturation effects of power inductors and bias voltage effects on capacitors. The majority of available Bias-Tees for power inductor testing operate at low frequencies, rendering them unsuitable for evaluating decoupling/bias inductors of RF power amplifiers or EMC filters. 


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