Polski

Iron Triangle releases fiber Bragg gratings and arrays based on multi-core fibers

734
2023-10-28 11:10:28
Zobacz tłumaczenie

T35 multi-core fiber grating and T103 multi-core fiber grating arrays can be engraved into all fiber cores in physical locations, or only onto certain fiber cores.
They can also have the same wavelength, or they can have all different wavelengths at the same physical location along the fiber or at different physical locations along the fiber.


T35 and T103 are very suitable for projects that require monitoring of strain and/or temperature at many points along the MCF fiber optic.
Provide inherent advantages of FBG based sensors. Not affected by electromagnetic interference.
The standard uses acrylic coated fibers, which can be used for OEM packaging according to requirements.
With the expansion of optical sensing applications in industries that require high data output and precision while maintaining cost-effectiveness, the demand for special fiber Bragg grating sensors is growing.
The unique 3D sensing capabilities of T35 and T103 provide new measurement capabilities for developers of global optical sensing solutions.
TECHNICA optical components are a leading developer, manufacturer, and global supplier of high-quality fiber Bragg gratings, FBG arrays, FBG sensors, and optical sensing instruments required for monitoring them.
The headquarters of Iron Triangle is located in Atlanta, USA.
TECHNICASA is a registered trademark of TECHNICA optical components.


Source: Laser Network

Powiązane rekomendacje
  • Phil Energy from South Korea wins mysterious order from European battery manufacturer

    Recently, Phil Energy, a South Korean secondary battery equipment manufacturer, successfully won an order from a European battery manufacturer to manufacture the next generation 46 series cylindrical battery manufacturing equipment. At present, both parties have signed a supply agreement for this cooperation, but have not disclosed the customer name and order size to the public. It is understood...

    2024-07-25
    Zobacz tłumaczenie
  • The First Operation of Two Color Mode in Infrared Free Electron Laser

    The Fritz Haber Institute of the Max Planck Institute in Berlin has achieved a technological milestone. The infrared free electron laser operates in dual color mode for the first time. This globally unique technology makes it possible to conduct experiments on synchronous dual color laser pulses, opening up new possibilities for research.There are over a dozen free electron lasers worldwide, with ...

    2024-02-18
    Zobacz tłumaczenie
  • TRUMPF high-power laser dynamic beam shaping technology creates opportunities for the electric vehicle industry

    It is reported that researchers from TRUMPF in Germany reported research on using dynamic beam shaping of high-power lasers to improve the productivity of hairpin stators, creating opportunities for the electric vehicle industry. Relevant research was published in "PhotonicsViews" under the title "Unlocking opportunities for the EV industry with beam shaping of high-power lasers".The electric vehi...

    2024-07-01
    Zobacz tłumaczenie
  • Wuhan Semiconductor Laser Equipment Industry Innovation Joint Laboratory Achieves New Breakthrough

    On February 7th, at the Wuhan Semiconductor Laser Equipment Industry Innovation Joint Laboratory located in the HGTECH Technology Intelligent Manufacturing Future Industrial Park, Huang Wei, the technical director of the laboratory and the director of HGTECH Technology's semiconductor product line, gestured with his hands to introduce the principle of "glass through-hole technology" to Changjiang ...

    02-18
    Zobacz tłumaczenie
  • China has successfully developed the world's first 193 nanometer compact solid-state laser

    The Chinese Academy of Sciences reduced the volume of the deep ultraviolet laser by 90% and achieved 193 nm vortex beam output for the first time. Professor Xuan Hongwen described "loading truck equipment into the car trunk". This technology enables a 30% reduction in the size of lithography features, breaking through the bottleneck of the 2-nanometer process. In the next three years, laser power ...

    03-24
    Zobacz tłumaczenie