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UV Curing 3mm 5mm 8mm 10mm Optical Fiber Bundle

UV Curing 3mm 5mm 8mm 10mm Optical Fiber Bundle
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Core Diameter: Ø3mm Ø5mm Ø8mm Ø10mm
Transmission Range: 300-1100
Keyword: Bare Optical Bundles Fiber
Branch Output: Circle/ Square/Line
Branch Structures: 1-in-1-out/ 1-in-multiple-out/ Multiple-in-1-out/ Multiple-in-multiple-out,
Options: Standard Or Non-standard End Structures
Connectors: Standard (SMA-905, FC, ST, Etc.) Or Custom Connectors
High Light:

10mm Optical Fiber Bundle


8mm Optical Fiber Bundle


uv curing fiber optic cable bundle

Basic Infomation
Place of Origin: China
Certification: IEC 60794-2-10/11
Model Number: Customized Ø3mm Ø5mm Ø8mm Ø10mm Optical Bundles Fiber
Payment & Shipping Terms
Packaging Details: Standard length: 50M/roll (as per your requirements)
Payment Terms: Western Union, L/C, T/T
Supply Ability: 1000KM Per Month
Product Description

UV-curing optical fiber bundle Customized Ø3mm Ø5mm Ø8mm Ø10mm Optical Fiber Bundle


Hicorpwell UV-curing optical fiber bundle is used in fast curing of UV-curing resin or adhesive.


It`s made by quartz fiber with excellent UV transmission performance.


We can produce various branch structures such as 1-in-1-out/ 1-in-multiple-out/ multiple-in-1-out/ multiple-in-multiple-out,


and various output form such as circle/square/line, and we also can provide all kinds of standard or non-standard end structures.

Advantage: wide transmission range, especially on 300nm ~ 1100nm


Hicorpwell ensures the highest quality and best transmission for fiber optic bundles, while working within the boundaries of your application.


In order to optimize your bundle, we take several parameters into consideration: packing efficiency, fiber area efficiency, Numerical Aperture


optimization, fiber transmission, reflections, and an error factor (which includes numerical aperture discrepancies).


Our high quality fiber optic bundles can be made with any fiber and your choice of several configuration and construction possibilities.


In addition, a number of connectors, including all standard connectors—or custom ferrules, machined in-house—are available.


In addition,  UVNS (UV Non-Solarizing) fibers can be fused at the ends to eliminate inter-fiber spaces—while maintaining the fibers’ NA


and increasing transmission by 50%. Please see our following Bundle data sheet for more information about our non-solarizing bundles


for UV applications. We are open for providing the fiber bundles with different fiber type, bundle diameter, length, connectors
and jackets. Lens collimating or coupling is available.


All bundles and assemblies are custom designed to meet your specifications. All standard connectors (SMA 905, SMA 906, ST, FC)


are available—or custom ferrules, machined in-house to your specifications. Refer to individual fiber data sheets for more information


and to determine the best fiber for your application. NA is measured at the 95% intensity angle.


We strive to ensure the accuracy of all information provided; however, we imply no warranties and


disclaim any liability in connection with the use of this information.


Fiber Bundle Features

  • Fiber materials: Fused silica, hard polymer clad silica, polymer clad silica, borosilicate glass bundle, ZBLAN & indium fluoride and plastic (POF)
  • Fiber type: Multimode step-index and graded-index fibers, singlemode fibers
  • Numerical aperture (NA): 0.10 to 0.66
  • Length up to 100 m, even for multi-fiber assemblies
  • Wavelength coverage: options spanning from Deep-UV to MIR (190 to 5500 nm)
  • Straight, bifurcated and multi-branch configurations
  • Standard (SMA-905, FC, ST, etc.) or custom connectors, custom design ferrules
  • Custom fiber arrangement (random, scrambled or mapped)
  • Fiber coatings can be stripped to improve packing efficiency
  • Standard temperature range: -40 °C to + 100 °C; both cryogenic and high temperature (up to 280 °C) available
  • Additional options: high vacuum compatibility, chemical resistance


  • Design flexibility in light distribution and management
  • Greater mechanical flexibility when compared to rigid single large core fibers


  • Split light from a source into several outputs
  • Merge light from several sources into a single output
  • Locate equipment away from harsh environments
  • Reconfigure the shape of light beam to adapt it to particular conditions
  • Redistribute input light intensity


  • Spectroscopy
  • Process control
  • Petrochemical
  • Aerospace
  • Military
  • Academia
  • Research labs
  • Laser power delivery




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Fax : 86-755-23036652
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