Fiberguide Industries, Inc. Superguide PCS SPC300N

Description
When looking for low cost fiber with a high numerical aperture (N.A.) for more efficient light coupling, The Superguide™ PCS is the low cost fiber of choice. The pure fused silica (SiO2) used in the core of the Superguide™ fiber is made by reacting silicon tetrachloride (SiCl4) with oxygen (O2) using an oxy-hydrogen flame resulting in superior ultraviolet (UV) to visible (VIS) transmission as compared to its companion product Anhydroguide, which has superior visible (VIS) to infrared (IR) transmission.
Description
When looking for low cost fiber with a high numerical aperture (N.A.) for more efficient light coupling, The Superguide™ PCS is the low cost fiber of choice. The pure fused silica (SiO2) used in the core of the Superguide™ fiber is made by reacting silicon tetrachloride (SiCl4) with oxygen (O2) using an oxy-hydrogen flame resulting in superior ultraviolet (UV) to visible (VIS) transmission as compared to its companion product Anhydroguide, which has superior visible (VIS) to infrared (IR) transmission.

Suppliers

Company
Product
Description
Supplier Links
Superguide PCS - SPC300N - Fiberguide Industries, Inc.
Stirling, NJ, USA
Superguide PCS
SPC300N
Superguide PCS SPC300N
When looking for low cost fiber with a high numerical aperture (N.A.) for more efficient light coupling, The Superguide™ PCS is the low cost fiber of choice. The pure fused silica (SiO2) used in the core of the Superguide™ fiber is made by reacting silicon tetrachloride (SiCl4) with oxygen (O2) using an oxy-hydrogen flame resulting in superior ultraviolet (UV) to visible (VIS) transmission as compared to its companion product Anhydroguide, which has superior visible (VIS) to infrared (IR) transmission.

When looking for low cost fiber with a high numerical aperture (N.A.) for more efficient light coupling, The Superguide™ PCS is the low cost fiber of choice. The pure fused silica (SiO2) used in the core of the Superguide™ fiber is made by reacting silicon tetrachloride (SiCl4) with oxygen (O2) using an oxy-hydrogen flame resulting in superior ultraviolet (UV) to visible (VIS) transmission as compared to its companion product Anhydroguide, which has superior visible (VIS) to infrared (IR) transmission.

Technical Specifications

  Fiberguide Industries, Inc.
Product Category Light Guides
Product Number SPC300N
Product Name Superguide PCS
Light Guide Type Fiber Optic
Angle Flexible
Diameter 0.3000 mm (0.0118 inch)
Core Material Silica / Quartz
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