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1064 nm Faraday Mirror (GK-FM Series)
Faraday Mirror

1064 nm Faraday Mirror (GK-FM Series)

The 1064 nm Faraday Mirror is a passive device that provides 90 degree rotation regarding to the polarization state of the input light. The FM offers excellent performance including the lowest possible insertion loss and enviromental stability. It is used in EDFAs, fiber lasers and fiber instruments to mininize the polarization effect.

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    Specifications

    Parameter

    Unit

    Value

    Center Wavelength (λc)

    nm

    1064

    Operating Wavelength Range

    nm

    λc ± 5

    Typ. Insertion Loss

    dB

    2.8

    Max. Insertion Loss

    dB

    3.0

    Faraday Rotation Angle (single pass)

    degree

    45

    Max. Rotation Angle Tolerance, λc, 23 ℃

    degree

    ± 3

    Max. Polarization Dependent Loss

    dB

    0.1

    Max. Polarization Mode Dispersion

    ps

    0.05

    Fiber Type

    -

    HI 1060 Fiber

    Max. Optical Power (Continuous Wave)

    mW

    150

    Max. Tensile Load

    N

    5

    Operating Temperature

    -5 to +50

    Storage Temperature

    -40 to +85

    ¹IL is 0.5 dB higher and RL is 5 dB lower for each connector added.

    Package Dimensions

    1064 nm Faraday Mirror (GK-F)nws

    product description

    The GKER Photonics 1064 nm Faraday Mirror (GK-FM Series) is a highly reliable passive optical device engineered to rotate the polarization of the input light by 90 degrees. This rotation helps minimize polarization-related effects, making it an essential component in high-performance optical systems. With a center wavelength of 1064 nm, the Faraday Mirror is designed for use in applications such as Erbium-Doped Fiber Amplifiers (EDFAs), fiber lasers, and other fiber optic instruments where maintaining signal integrity is critical.

    The device boasts excellent environmental stability, ensuring consistent performance across a range of operating conditions. It features a low typical insertion loss of 2.8 dB, which helps to maintain the overall efficiency of the optical system. The Faraday Mirror is also designed to handle a maximum continuous wave optical power of 150 mW, making it suitable for demanding applications.

    Its compact design and use of HI 1060 fiber make it easy to integrate into various optical setups. The device also offers a low polarization-dependent loss and minimal polarization mode dispersion, ensuring high signal quality and reliability. The 1064 nm Faraday Mirror is an ideal choice for professionals seeking to enhance the performance and stability of their optical systems, particularly in environments where polarization effects can significantly impact signal quality.

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