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New Products

New Products

  • 1650nm High Temperature Fiber Collimator, SM, Bandwidth ±20n

    1650nm High Temperature Fiber Collimator, SM, Bandwidth ±20n

    The high-temperature fiber collimator uses high-temperature resistant optical fiber, high-temperature resistant manufacturing process and materials, which can meet the application environment of working temperature of -40~220℃. The FC/APC high-temperature resistant connectors specially used for high-temperature devices ensure the stability of the optical fiber docking signal in high-temperature environment. The product must undergo a 48-hour 220° high-temperature reliability test before leaving the factory to ensure the reliability of the device in long-term working in high-temperature environment.

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  • 1550nm High Temperature Fiber Collimator, MM, Bandwidth ±20n

    1550nm High Temperature Fiber Collimator, MM, Bandwidth ±20n

    The high-temperature fiber collimator uses high-temperature resistant optical fiber, high-temperature resistant manufacturing process and materials, which can meet the application environment of working temperature of -40~220℃. The FC/APC high-temperature resistant connectors specially used for high-temperature devices ensure the stability of the optical fiber docking signal in high-temperature environment. The product must undergo a 48-hour 220° high-temperature reliability test before leaving the factory to ensure the reliability of the device in long-term working in high-temperature environment.

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  • 1850 nm 45°Faraday Rotator

    1850 nm 45°Faraday Rotator

    Faraday rotator is a device that realizes precise non-reciprocal rotation of laser polarization. It provides non-reciprocal rotation while maintaining the linear polarization of the beam. In combination with a polarizer, it can block the return light in the optical path and realize a device that realizes precise non-reciprocal rotation of laser polarization. Faraday rotators provide non-reciprocal rotation while maintaining the linear polarization of the light beam. When light passes through the Faraday rotator in a certain direction, the polarization state will rotate 45°; when the light beam passes through the Faraday rotator in the opposite direction, the polarization state will rotate another 45° in the same direction relative to the magnetic field. Based on this principle, in combination with a polarizer, the return light in the optical path can be blocked. The Faraday rotator we provide is made of magneto-optical crystal with high Verdet constant and low absorption coefficient, with high reliability and small M2 degradation. Combined with high damage threshold technology, the average power of the product can reach 500W Max., with a wavelength range of 355 nm-4500n

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  • 1550nm High Temperature Fiber Collimator, SM, Bandwidth ±20n

    1550nm High Temperature Fiber Collimator, SM, Bandwidth ±20n

    The high-temperature fiber collimator uses high-temperature resistant optical fiber, high-temperature resistant manufacturing process and materials, which can meet the application environment of working temperature of -40~220℃. The FC/APC high-temperature resistant connectors specially used for high-temperature devices ensure the stability of the optical fiber docking signal in high-temperature environment. The product must undergo a 48-hour 220° high-temperature reliability test before leaving the factory to ensure the reliability of the device in long-term working in high-temperature environment.

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  • 1310nm High Temperature Fiber Collimator, MM, Bandwidth ±20n

    1310nm High Temperature Fiber Collimator, MM, Bandwidth ±20n

    The high-temperature fiber collimator uses high-temperature resistant optical fiber, high-temperature resistant manufacturing process and materials, which can meet the application environment of working temperature of -40~220℃. The FC/APC high-temperature resistant connectors specially used for high-temperature devices ensure the stability of the optical fiber docking signal in high-temperature environment. The product must undergo a 48-hour 220° high-temperature reliability test before leaving the factory to ensure the reliability of the device in long-term working in high-temperature environment.

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  • 750nm TGG SM Isolator

    750nm TGG SM Isolator

    Isolators, TGG technology; fiber coupled free space; custom solutions available

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  • 1750 nm 45° Faraday Rotator

    1750 nm 45° Faraday Rotator

    Faraday rotator is a device that realizes precise non-reciprocal rotation of laser polarization. It provides non-reciprocal rotation while maintaining the linear polarization of the beam. In combination with a polarizer, it can block the return light in the optical path and realize a device that realizes precise non-reciprocal rotation of laser polarization. Faraday rotators provide non-reciprocal rotation while maintaining the linear polarization of the light beam. When light passes through the Faraday rotator in a certain direction, the polarization state will rotate 45°; when the light beam passes through the Faraday rotator in the opposite direction, the polarization state will rotate another 45° in the same direction relative to the magnetic field. Based on this principle, in combination with a polarizer, the return light in the optical path can be blocked. The Faraday rotator we provide is made of magneto-optical crystal with high Verdet constant and low absorption coefficient, with high reliability and small M2 degradation. Combined with high damage threshold technology, the average power of the product can reach 500W Max., with a wavelength range of 355 nm-4500n

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  • 1310nm High Temperature Fiber Collimator, SM, Bandwidth ±20n

    1310nm High Temperature Fiber Collimator, SM, Bandwidth ±20n

    The high-temperature fiber collimator uses high-temperature resistant optical fiber, high-temperature resistant manufacturing process and materials, which can meet the application environment of working temperature of -40~220℃. The FC/APC high-temperature resistant connectors specially used for high-temperature devices ensure the stability of the optical fiber docking signal in high-temperature environment. The product must undergo a 48-hour 220° high-temperature reliability test before leaving the factory to ensure the reliability of the device in long-term working in high-temperature environment.

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  • 650nm TGG SM Isolator

    650nm TGG SM Isolator

    Isolators, TGG technology; fiber coupled free space; custom solutions available

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  • 980nm   TGG SM Isolator

    980nm TGG SM Isolator

    Isolators, TGG technology; fiber coupled free space; custom solutions available

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  • 1030nm TGG SM Isolator

    1030nm TGG SM Isolator

    Isolators, TGG technology; fiber coupled free space; custom solutions available

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  • 1060nm TGG SM Isolator

    1060nm TGG SM Isolator

    Isolators, TGG technology; fiber coupled free space; custom solutions available

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  • 10000 10k + Diodes sold worldwide
  • 30 30+ Invention patent
  • 10 10+ Advanced Optical Solutions