Products

  • Nine fiber pigtail

    Nine fiber pigtail

    The  Nine Fiber Pigtail  is a compact and reliable fiber optic solution designed for applications requiring low insertion loss, wide bandwidth, and minimal polarization-dependent loss. It features an epoxy-free optical path for enhanced long-term performance and is available in both P and A grades to meet varying system requirements. Compatible with wavelengths from 1250–1650 nm, including 1310 nm and 1550 nm, this pigtail supports various fiber types such as SMF-28E, OM3/OM4 multimode, and 50/125μm fibers. It is widely used in isolators, circulators, WDM systems, optical sensing, VR, and fiber optic slip rings. Multiple connector types and fiber lengths are available for flexible integration.

  • OLP1-1 Optical Line Protection System

    OLP1-1 Optical Line Protection System

    The OLP1-1 Optical Line Protection System is a robust, rack-mounted device designed to ensure high reliability in optical communication networks. It continuously monitors the optical power on both working and backup fibers, automatically switching to the backup path within 15ms if the primary path degrades below a user-defined threshold. Supporting key wavelengths of 1310 nm and 1550 nm, it features low insertion loss, high return loss, and dual power supply redundancy. With flexible management via LAN, RS-232, or a web-based NMS, the OLP1-1 is ideal for protecting critical fiber links in telecom and enterprise networks against interruptions.

  • Online adjustable VOA

    Online adjustable VOA

    This online adjustable VOA (Variable Optical Attenuator) provides precise and stable optical power management with low insertion loss and high accuracy. It offers a wide attenuation range up to 65dB and supports multiple wavelengths including 1310nm, 1550nm, and broadband operation from 1310–1630nm.

    Ideal for power equalization, optical sensing, laboratory testing, and transmission systems, the VOA ensures reliable performance with low polarization-dependent loss. Available in various configurations, it supports multiple fiber types and connector options to meet diverse application needs.

  • Optical Patch Cord

    Optical Patch Cord

    These high-density optical patch cords feature compact ceramic ferrule connectors with half the size of standard connectors, providing excellent mechanical endurance and reliable performance. They offer low insertion loss and high return loss in both single-mode and multi-mode configurations.

    Available with FC, SC, LC, ST, MU, and MTRJ connectors in UPC and APC polish types, these patch cords are widely used in telecommunications, CATV, FTTH, LANs, optical sensors, and test equipment. Custom boot and dust cap colors are available to support various installation and identification needs.

  • OSW-11×10

    OSW-11×10

    The OSW-11×10 is a high-port-density, rack-mounted optical switch designed for reliable and flexible routing in optical networks. It supports 11 input and 10 output channels, operating at standard wavelengths of 1310 nm and 1550 nm with low insertion loss and high isolation. Featuring LC/PC connectors and single-mode fiber compatibility, it offers versatile control via RS-232 or Ethernet interfaces. Ideal for applications in optical protection, signal monitoring, and test automation, this 2U chassis ensures robust performance in a wide temperature range and simplifies integration into existing communication systems.

  • PLC Splitter - Insert Type

    PLC Splitter – Insert Type

    This Insert-Type PLC Splitter provides a compact and high-performance solution for splitting optical signals in passive networks. It features low insertion loss, excellent channel uniformity, and high reliability across a broad operating wavelength from 1260nm to 1650nm.

    Ideal for FTTX systems, PON networks, CATV links, and optical signal distribution, the splitter is available in both 1xN and 2xN configurations, supporting up to 128 channels. With a wide operating temperature range and multiple packaging options, it offers flexibility and stable performance in various environments. Custom fiber types, connector styles, and lengths are available to meet specific application needs.

  • PLC Splitter - Mini

    PLC Splitter – Mini

    The Mini PLC Splitter is a compact and high-performance passive component designed for efficient optical signal distribution. It features low insertion loss, excellent channel uniformity, and high reliability across a broad operating wavelength from 1260nm to 1650nm.

    Ideal for space-sensitive applications such as FTTX systems, PON networks, and CATV links, this splitter is available in both 1×N and 2×N configurations. Its small form factor and wide operating temperature range make it a versatile and durable choice for modern optical networks. Custom fiber types, connector options, and lengths are available to suit various installation requirements.

     

  • PLC Splitter -ABS Box

    PLC Splitter -ABS Box

    Reliable PLC Splitters housed in durable ABS boxes, designed for a wide range of optical network applications. These splitters deliver low insertion loss, excellent uniformity, and high stability across operating wavelengths from 1260nm to 1650nm. Ideal for FTTX, PON, CATV, and optical distribution systems, they ensure consistent performance in temperatures from -40℃ to 85℃. Available in various configurations (1×N and 2×N), with options for fiber type, connector, and length to meet specific customer requirements.

  • PM 1030nm Polarization Maintaining Fiber Isolator

    PM 1030nm Polarization Maintaining Fiber Isolator

    The PM1030 Polarization Maintaining Fiber Isolator provides excellent optical isolation while maintaining polarization integrity in 1030nm optical systems. Featuring low polarization sensitivity and an epoxy-free optical path, this isolator ensures reliable performance with high return loss and consistent polarization preservation.

    Available in both single-stage and dual-stage configurations, the isolator offers isolation values up to 50dB and maintains precise polarization alignment through slow axis operation with fast axis cutoff. The compact package design makes it suitable for various installation environments.

    Ideal for CATV fiber optic links, fiber amplifiers, optical test systems, LAN networks, and telecommunications, this isolator is offered with various fiber types, connector options, and cable lengths to meet diverse system integration requirements.

  • PM 1064nm 1×2 Polarization Beam Combiner/Splitter

    PM 1064nm 1×2 Polarization Beam Combiner/Splitter

    The PM1064 1×2 Polarization Beam Combiner/Splitter provides high-performance polarization management with excellent isolation, low insertion loss, and high extinction ratio. Operating at 1064nm with a ±20nm wavelength range, this component ensures reliable polarization beam combining or splitting while maintaining signal integrity and stability.

    Ideal for optical fiber gyros, coherent telecommunication systems, fiber optic testing, fiber sensors, and research applications, this device supports slow axis operation with fast axis cutoff, making it suitable for polarization-sensitive setups.

    This device is available with various power handling capabilities (0.3W to 10W), fiber types (bare fiber, HI1060, PM980), and connector options (FC/PC, FC/APC, SC/PC, SC/APC) to meet diverse system requirements in demanding polarization-controlled environments.

  • PM 1064nm 2×2 Polarization Beam Combiner/Splitter

    PM 1064nm 2×2 Polarization Beam Combiner/Splitter

    The PM1064 2×2 Polarization Beam Combiner/Splitter delivers high-performance polarization management with excellent isolation, low insertion loss, and high extinction ratio. Operating at 1064nm with a ±20nm wavelength range, this component enables reliable polarization beam combining or splitting while maintaining signal integrity and stability.

    Ideal for optical fiber gyros, coherent telecommunication systems, fiber optic testing, fiber sensors, and research applications, this device supports slow axis operation with fast axis cutoff, making it suitable for polarization-sensitive setups.

    This device is available with various power handling capabilities (0.3W to 10W), fiber types (bare fiber, HI1060, PM980), and connector options (FC/PC, FC/APC, SC/PC, SC/APC) to meet diverse system requirements in demanding polarization-controlled environments.

  • PM 1064nm Circulator

    PM 1064nm Circulator

    The PM 1064 Circulator provides low insertion loss, high return loss, and excellent isolation with reliable polarization-maintaining performance. Designed for 1064 nm operation, it supports applications in optical amplifiers, fiber sensing, and bi-directional communication systems. Available in both single and double stage configurations, the circulator offers flexible customization options including fiber type, connector style, and cable length to meet diverse system requirements.

  • PM 1064nm Fiber Optic Isolator

    PM 1064nm Fiber Optic Isolator

    This PM 1064nm Fiber Optical Isolator provides high isolation, low insertion loss, and excellent optical performance for sensitive polarization-maintaining systems. Designed for operation at 1064±5 nm, it features an epoxy-free optical path to ensure high reliability and stable performance under varying conditions. The isolator maintains precise slow-axis operation with fast-axis cutoff, delivering consistent polarization extinction ratio.

    Ideal for fiber amplifiers, telecommunications, CATV links, and optical test systems, the isolator is available in both single-stage and dual-stage configurations to accommodate different isolation requirements. Its compact package and wide operating temperature range make it suitable for diverse application environments. Custom configurations including fiber type, connector style, and fiber length are available to meet specific system requirements.

  • PM 1064nm High-Power Optical Isolator

    PM 1064nm High-Power Optical Isolator

    This PM 1064nm High-Power Isolator provides high isolation, low insertion loss, and excellent return loss for demanding optical systems. Designed for operation at 1064nm, it is optimized for slow-axis operation with fast-axis cutoff, ensuring reliable polarization maintenance and high extinction ratio under high-power conditions.

    Ideal for MOPA fiber lasers, fiber amplifiers, CATV links, and optical test systems, the isolator is available in both single-stage and dual-stage configurations to meet different isolation requirements. Its compact and robust design guarantees stable performance across a wide operating temperature range. Custom configurations including fiber type, connector style, and fiber length are available to meet specific system integration needs.

  • PM 1064nm In-Line Polarizer

    PM 1064nm In-Line Polarizer

    This PM 1064nm In-Line Polarizer delivers high extinction ratio, low insertion loss, and precise polarization control for optical systems operating at 1064 nm. Featuring an operating wavelength range of ±30 nm, it ensures reliable slow-axis transmission with effective fast-axis cutoff while maintaining excellent return loss and minimal polarization-dependent loss.

    Ideal for communication systems, fiber amplifiers, research applications, and precision sensing, the polarizer supports high power handling up to 10 W and delivers stable performance across extended temperature ranges. Its compact packaging and customizable options including fiber type, connector style, and power rating enable flexible integration into various polarization-sensitive optical systems.

  • PM 1064nm Polarization Maintaining Collimator

    PM 1064nm Polarization Maintaining Collimator

    This PM1064 collimator is designed for polarization-sensitive applications at 1064nm wavelength, offering low insertion loss and high extinction ratio. It features an epoxy-free optical path and maintains polarization integrity with precise beam collimation.

    Ideal for isolators, circulators, optical sensing, and laboratory instruments, the collimator supports PM1064 fiber and is available in various working distances, connector types, and fiber lengths to meet specific system requirements.