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Optical Fiber

cylindrical dielectric waveguide, which transmits light through total internal refraction.


Showing results: 646 - 660 of 963 items found.

  • PXI Single 2x2 Insert/Bypass Switch SC

    40-860-212-M - Pickering Interfaces Ltd.

    Pickering PXI Fiber Optic MEMS Switching cards are available in many high density formats with a choice of 5 different connector styles to suit most applications: FC/APC (for optimal performance), FC/PC and SC/PC for general applications and LC and MU for high density applications. Fiber optic multiplexers create a signal path by redirecting the optical signal into a selected output fiber. This is achieved using Micro-Mechanical Mirrors driven by a highly precise mechanism and activated via an electrical control signal.

  • PXI Single 2 Channel Fibre Optic SC/PC

    40-855-212 - Pickering Interfaces Ltd.

    Pickering PXI Fiber Optic MEMS Switching cards are available in many high density formats with a choice of 5 different connector styles to suit most applications: FC/APC (for optimal performance), FC/PC and SC/PC for general applications and LC and MU for high density applications. Fiber optic multiplexers create a signal path by redirecting the optical signal into a selected output fiber. This is achieved using Micro-Mechanical Mirrors driven by a highly precise mechanism and activated via an electrical control signal.

  • PXI Single 2 Channel Fiber MUX ST

    40-855-512-M - Pickering Interfaces Ltd.

    Pickering PXI Fiber Optic MEMS Switching cards are available in many high density formats with a choice of 5 different connector styles to suit most applications: FC/APC (for optimal performance), FC/PC and SC/PC for general applications and LC and MU for high density applications. Fiber optic multiplexers create a signal path by redirecting the optical signal into a selected output fiber. This is achieved using Micro-Mechanical Mirrors driven by a highly precise mechanism and activated via an electrical control signal.

  • PXI Dual 2 x 2 Fibre Optic (M Mode) SC M50

    40-860-222-M50 - Pickering Interfaces Ltd.

    Pickering PXI Fiber Optic MEMS Switching cards are available in many high density formats with a choice of 5 different connector styles to suit most applications: FC/APC (for optimal performance), FC/PC and SC/PC for general applications and LC and MU for high density applications. Fiber optic multiplexers create a signal path by redirecting the optical signal into a selected output fiber. This is achieved using Micro-Mechanical Mirrors driven by a highly precise mechanism and activated via an electrical control signal.

  • PXI Dual 2 x 2 Fibre Optic (M Mode) SC M62.5

    40-860-222-M62.5 - Pickering Interfaces Ltd.

    Pickering PXI Fiber Optic MEMS Switching cards are available in many high density formats with a choice of 5 different connector styles to suit most applications: FC/APC (for optimal performance), FC/PC and SC/PC for general applications and LC and MU for high density applications. Fiber optic multiplexers create a signal path by redirecting the optical signal into a selected output fiber. This is achieved using Micro-Mechanical Mirrors driven by a highly precise mechanism and activated via an electrical control signal.

  • PXI Dual 2 x 2 Fibre Optic (M Mode) ST M50

    40-860-522-M50 - Pickering Interfaces Ltd.

    Pickering PXI Fiber Optic MEMS Switching cards are available in many high density formats with a choice of 5 different connector styles to suit most applications: FC/APC (for optimal performance), FC/PC and SC/PC for general applications and LC and MU for high density applications. Fiber optic multiplexers create a signal path by redirecting the optical signal into a selected output fiber. This is achieved using Micro-Mechanical Mirrors driven by a highly precise mechanism and activated via an electrical control signal.

  • PXI Dual 2 x 2 Fibre Optic (M Mode) STM62.5

    40-860-522-M62.5 - Pickering Interfaces Ltd.

    Pickering PXI Fiber Optic MEMS Switching cards are available in many high density formats with a choice of 5 different connector styles to suit most applications: FC/APC (for optimal performance), FC/PC and SC/PC for general applications and LC and MU for high density applications. Fiber optic multiplexers create a signal path by redirecting the optical signal into a selected output fiber. This is achieved using Micro-Mechanical Mirrors driven by a highly precise mechanism and activated via an electrical control signal.

  • PXI Dual 2 Channel Fiber MUX SC

    40-855-222-M - Pickering Interfaces Ltd.

    Pickering PXI Fiber Optic MEMS Switching cards are available in many high density formats with a choice of 5 different connector styles to suit most applications: FC/APC (for optimal performance), FC/PC and SC/PC for general applications and LC and MU for high density applications. Fiber optic multiplexers create a signal path by redirecting the optical signal into a selected output fiber. This is achieved using Micro-Mechanical Mirrors driven by a highly precise mechanism and activated via an electrical control signal.

  • PXI Single 2 x 2 Fibre Optic (M Mode)STM62.5

    40-860-512-M62.5 - Pickering Interfaces Ltd.

    Pickering PXI Fiber Optic MEMS Switching cards are available in many high density formats with a choice of 5 different connector styles to suit most applications: FC/APC (for optimal performance), FC/PC and SC/PC for general applications and LC and MU for high density applications. Fiber optic multiplexers create a signal path by redirecting the optical signal into a selected output fiber. This is achieved using Micro-Mechanical Mirrors driven by a highly precise mechanism and activated via an electrical control signal.

  • PXI Single 2 x 2 Fibre Optic (M Mode) ST M50

    40-860-512-M50 - Pickering Interfaces Ltd.

    Pickering PXI Fiber Optic MEMS Switching cards are available in many high density formats with a choice of 5 different connector styles to suit most applications: FC/APC (for optimal performance), FC/PC and SC/PC for general applications and LC and MU for high density applications. Fiber optic multiplexers create a signal path by redirecting the optical signal into a selected output fiber. This is achieved using Micro-Mechanical Mirrors driven by a highly precise mechanism and activated via an electrical control signal.

  • PXI Single 2 x 2 Fibre Optic (M Mode) SC M50

    40-860-212-M50 - Pickering Interfaces Ltd.

    Pickering PXI Fiber Optic MEMS Switching cards are available in many high density formats with a choice of 5 different connector styles to suit most applications: FC/APC (for optimal performance), FC/PC and SC/PC for general applications and LC and MU for high density applications. Fiber optic multiplexers create a signal path by redirecting the optical signal into a selected output fiber. This is achieved using Micro-Mechanical Mirrors driven by a highly precise mechanism and activated via an electrical control signal.

  • Optical Test And Measurement

    AMS Technologies AG

    Any type of fiber optic interconnection requires its interfaces to be free of dust and scratches in order to reach the lowest transmission loss. Small, handheld and battery powered inspection tools are available from AMS Technologies for inspection of fiber optic connectors in the field as well as high resolution type microscopes suitable for use in a production environment for qualifying the endface preparation. Additional S/W tools can support the user in making a quick decision if a certain defect is acceptable or if the surface fault disqualifies it for further use. Small and lightweight test equipment for measurement of the transmitted power in an optical fiber is needed wherever technicians handle optical fibers. Our product portfolio comprises light sources for various wavelengths, power meters for the visible and infrared and integrated solutions for sources and meters as well as optical time domain reflectometers (OTDR) coupled with visible wavelength light sources for easy fault detection within a fiber optic link.

  • Rack Type Light Source

    JW8007 - Shanghai Joinwit optoelectronic Tech,co.,Ltd

    Rack type light source is a new instrument with high output stability and good wavelength stability, which is developed by Joinwit Company using automatic optical power control (APC) technology and automatic temperature control (ATC) technology. It is an ideal instrument for measuring optical device characteristics, device aging, monitoring, experiment and other application fields in many optical device manufacturers, scientific research institutes and colleges and universities in the field of measuring optical device characteristics, device aging, monitoring and experiment. It is simple in application and design, easy to use and maintain, and widely used in the fields of optical communication, optical transmission, optical fiber sensing and other fields such as scientific research, production and engineering.

  • OTDR Launch Cable Box

    TM1000 - T&M Tools Limited Co

    Designed to aid in the testing of fiber optic cable when using an OTDR. The OTDR LaunchFiber box is used with Optical Time Domain Reflectometers (OTDR's) to help minimize the effects of the OTDR's launch pulse onmeasurement uncertainty.

  • Optical Loss Test Set

    KI 23400 - Kingfisher International

    A Bidirectional Optical Loss Test set (OLTS) that's perfect for medium to ultra-high fiber count loss, length & ORL testing. A pair of compact instruments set new standards of productivity, accuracy, and ease of use.

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