J599Ⅲ Series Fiber Optic Expansion Connector | Modular Non-Contact Optical Interconnect | JARON

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Non-Contact Fiber Optic Connector Series

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J599Ⅲ Series Fiber Optic Expansion Connector

The JARON J599Ⅲ Series Fiber Optic Expansion Connector is designed for high-reliability optical interconnection in microwave and electronic systems. It features modular, non-contact optical coupling technology, providing excellent environmental sealing, high vibration resistance, and outstanding optical stability. The connector supports multi-channel expansion and hybrid optical/electrical integration, making it ideal for complex signal networks and long-term field operation.

Product Feature

  • Fits GJB599B(MIL-DTL-38999)Ⅲ interface
  • Outer housing materials/cladding at choice
  • 5-key positioning, blind plug, error-proof
  • Triple screw, fast connection, anti-loosening
  • Collimating lens, non-contact, end face damage resistant, large outgoing light spot, insensitive to dust, environmental resistant

   

Technical Index

Mechanical Performance

  • Mechanical life: 2000-cycle (un)plugging
  • Impact: 980m/s 2
  • Vibration: 10Hz~2000Hz, a 147m/s 2
  • Tensile resistance: ≥68N (Φ2mm cable)

Environmental Performance

  • Temp range: -55℃~+125℃ (due to cable)
  • Salt mist: K: 500h  F: 48h  W: 500h  MW: 192h (acidic atmosphere)
  • Resistance to liquid: fuels, coolant, etc

Optical Performance

Insertion loss:

  • ≤0.6dB (≤ 4-core)
  • ≤0.75dB (≥ 5-core)

   

Applications

     The JARON J599Ⅲ Series Fiber Optic Expansion Connector is used in advanced optical communication and electronic systems requiring long-term reliability and modular scalability. Typical applications include:

  • Shipborne & Radar Systems: Enabling high-speed optical signal synchronization.
  • Aerospace Platforms: Maintaining optical performance under vibration and temperature variations.
  • Ground Communication Equipment: Supporting dense optical interconnections between subsystems.
  • Electronic Test & Measurement Systems: Offering reliable, scalable optical interface solutions.
  • Optoelectronic Hybrid Systems: Integrating optical and electrical signals in unified architectures.

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