Fiberguide Industries, Inc. Anhydroguide PCS APC1500N

Description
When looking for a low cost fiber with a high numerical aperture (N.A.) for more efficient light coupling, the Anhydroguide™ PCS is the fiber of choice. With an N.A. of 0.37 and a plastic cladding that allows a high core-to-clad ratio, satisfies those requirements and more. The pure fused silica (SiO2) used in the core of the Anhydroguide™ fiber is made by reacting silicon tetrachloride (SiCi4) with oxygen (O2) using a plasma arc rather than an oxy-hydrogen flame. This ensures that the residual hydroxyl concentration (OH) will be low in the core material resulting in superior infrared transmission as compared with flame prepared silica that is used in the companion product, Superguide™ which has superior ultraviolet (UV) transmission.
Description
When looking for a low cost fiber with a high numerical aperture (N.A.) for more efficient light coupling, the Anhydroguide™ PCS is the fiber of choice. With an N.A. of 0.37 and a plastic cladding that allows a high core-to-clad ratio, satisfies those requirements and more. The pure fused silica (SiO2) used in the core of the Anhydroguide™ fiber is made by reacting silicon tetrachloride (SiCi4) with oxygen (O2) using a plasma arc rather than an oxy-hydrogen flame. This ensures that the residual hydroxyl concentration (OH) will be low in the core material resulting in superior infrared transmission as compared with flame prepared silica that is used in the companion product, Superguide™ which has superior ultraviolet (UV) transmission.

Suppliers

Company
Product
Description
Supplier Links
Anhydroguide PCS - APC1500N - Fiberguide Industries, Inc.
Stirling, NJ, USA
Anhydroguide PCS
APC1500N
Anhydroguide PCS APC1500N
When looking for a low cost fiber with a high numerical aperture (N.A.) for more efficient light coupling, the Anhydroguide™ PCS is the fiber of choice. With an N.A. of 0.37 and a plastic cladding that allows a high core-to-clad ratio, satisfies those requirements and more. The pure fused silica (SiO2) used in the core of the Anhydroguide™ fiber is made by reacting silicon tetrachloride (SiCi4) with oxygen (O2) using a plasma arc rather than an oxy-hydrogen flame. This ensures that the residual hydroxyl concentration (OH) will be low in the core material resulting in superior infrared transmission as compared with flame prepared silica that is used in the companion product, Superguide™ which has superior ultraviolet (UV) transmission.

When looking for a low cost fiber with a high numerical aperture (N.A.) for more efficient light coupling, the Anhydroguide™ PCS is the fiber of choice. With an N.A. of 0.37 and a plastic cladding that allows a high core-to-clad ratio, satisfies those requirements and more. The pure fused silica (SiO2) used in the core of the Anhydroguide™ fiber is made by reacting silicon tetrachloride (SiCi4) with oxygen (O2) using a plasma arc rather than an oxy-hydrogen flame. This ensures that the residual hydroxyl concentration (OH) will be low in the core material resulting in superior infrared transmission as compared with flame prepared silica that is used in the companion product, Superguide™ which has superior ultraviolet (UV) transmission.

Technical Specifications

  Fiberguide Industries, Inc.
Product Category Light Guides
Product Number APC1500N
Product Name Anhydroguide PCS
Light Guide Type Fiber Optic
Angle Flexible
Diameter 1.5 mm (0.0591 inch)
Core Material Silica / Quartz
Unlock Full Specs
to access all available technical data

Similar Products

UV Curing Light Guides and Adapters - OmniCure S Series - Excelitas Technologies Corp.
Specs
Light Guide Type Liquid (optional feature); Fiber Optic (optional feature)
Angle Flexible
View Details
Light Guides -  - Dymax
Specs
Angle Flexible
View Details
Fiber Optic Bundle, Glass, 11 mm Ferrules, 0.125 in. Diameter, 48 in. - 77526 - Newport MKS
Specs
Light Guide Type Fiber Optic
Length 1219 mm (48 inch)
Diameter 3.2 mm (0.1260 inch)
View Details
Light Pipes - 2173482-3 - TE Connectivity
Specs
Operating Temp -40 to 85 C (-40 to 185 F)
View Details