Committed to Providing Specialty Optical Fiber and Solution
Phone: +0086-156-1818-3621
Email: jasmin-xu@sollektor.com

Product Details

Polyimide Mutimode Fiber

Sollektor

Polyimide Mutimode Fiber

+0086+15618183621

jasmin_xu@sollektor.com

info@sollektor.com

+86-4006-888-937

Polyimide-coated fiber integrates multiple functions as a medical fiber, dental laser fiber, high temperature resistant fiber, and power delivery fiber. It is used in dental procedures like gum and root canal therapies, as well as industrial applications including high-low temperature sensing, fluorescent thermometry, spectral delivery, and 308nm excimer laser transmission for ELCA.
Polyimide (PI) is a polymer material renowned for its exceptional high-temperature resistance, superior mechanical strength, ductility, and overall outstanding comprehensive performance. As an ideal coating material for high temperature resistant fiber,PI significantly enhances the thermal durability of power delivery fiber. This application prolongs the service life of these fibers in high-temperature environments, such as those found in power generation and transmission systems, while ensuring stable performance. Furthermore, even in extremely low-temperature conditions, PI-coated high temperature resistant fiber maintains excellent mechanical properties without becoming brittle, thereby guaranteeing the integrity and signal reliability of the power delivery fiber  in applications subject to wide thermal cycling.

 

Moreover, Polyimide is non-toxic, chemically stable, and biocompatible. These properties not only make it suitable for manufacturing food-contact tableware and medical consumables but also open possibilities for using PI-based high temperature resistant fiber in biomedical sensors and devices. In terms of chemical resistance, Polyimide can withstand almost all organic solvents, various inorganic acids, and hydrolysis. This robust resistance to chemical degradation ensures that  high temperature resistant fiber coated with PI can operate reliably in harsh environments, including chemical processing, oil and gas exploration, and other corrosive settings.
Therefore, whether for high temperature resistant fiber responsible for critical signal and energy transmission in the energy sector, or for high temperature resistant fiber that must operate stably under extreme thermal conditions, Polyimide demonstrates its irreplaceable advantages. It stands as a premier coating material of choice for advancing the performance and reliability of high-performance specialty fibers.
Product code Core diameter(um) Cladding diameter(um) Coating diameter(um) Operating wavelength(nm)
PSC60/66/75PI 60 66 75 UEP:190~1200/LEP:300-2400
PSC100/110/150PI 100 110 150 UEP:190~1200/LEP:300-2400
PSC145/152/200PI 145 152 200 UEP:190~1200/LEP:300-2400
PSC200/220/261PI 200 220 261 UEP:190~1200/LEP:300-2400
PSC300/330/370PI 300 330 370 UEP:190~1200/LEP:300-2400
PSC400/440/480PI 400 440 480 UEP:190~1200/LEP:300-2400
PSC600/660/710PI 600 660 710 UEP:190~1200/LEP:300-2400

Product Details

Polyimide Mutimode Fiber

Sollektor

Polyimide Mutimode Fiber

+0086+15618183621

jasmin_xu@sollektor.com

info@sollektor.com

+86-4006-888-937

Polyimide-coated fiber integrates multiple functions as a medical fiber, dental laser fiber, high temperature resistant fiber, and power delivery fiber. It is used in dental procedures like gum and root canal therapies, as well as industrial applications including high-low temperature sensing, fluorescent thermometry, spectral delivery, and 308nm excimer laser transmission for ELCA.
Polyimide (PI) is a polymer material renowned for its exceptional high-temperature resistance, superior mechanical strength, ductility, and overall outstanding comprehensive performance. As an ideal coating material for high temperature resistant fiber,PI significantly enhances the thermal durability of power delivery fiber. This application prolongs the service life of these fibers in high-temperature environments, such as those found in power generation and transmission systems, while ensuring stable performance. Furthermore, even in extremely low-temperature conditions, PI-coated high temperature resistant fiber maintains excellent mechanical properties without becoming brittle, thereby guaranteeing the integrity and signal reliability of the power delivery fiber  in applications subject to wide thermal cycling.

 

Moreover, Polyimide is non-toxic, chemically stable, and biocompatible. These properties not only make it suitable for manufacturing food-contact tableware and medical consumables but also open possibilities for using PI-based high temperature resistant fiber in biomedical sensors and devices. In terms of chemical resistance, Polyimide can withstand almost all organic solvents, various inorganic acids, and hydrolysis. This robust resistance to chemical degradation ensures that  high temperature resistant fiber coated with PI can operate reliably in harsh environments, including chemical processing, oil and gas exploration, and other corrosive settings.
Therefore, whether for high temperature resistant fiber responsible for critical signal and energy transmission in the energy sector, or for high temperature resistant fiber that must operate stably under extreme thermal conditions, Polyimide demonstrates its irreplaceable advantages. It stands as a premier coating material of choice for advancing the performance and reliability of high-performance specialty fibers.

Medical Industry
Power Industry
Optical Communication Industry
Aerospace, Chemical, and Nuclear Industries
High Temperature resistant, High Pressure resistant, and Low Temperature resistant
Compatible with Ethylene Oxide (ETO) Sterilization and Radiation Sterilization (Pure Silica Core)
Mining Industry, Oil and Gas Industry
Electromagnetic Radiation Environment, Underwater Use, Water-resistant
Medical Interventional Therapy :medical fiber, dental laser fiber and power delivery fiber

 

Product code GI_MM50/125/155PI GI_MM62.5/125/155PI PSC_GI_MM50/125/155PI
Numerical Aperture(NA) 0.22-0.24 0.25-0.28 0.22-0.24
Spectral loss(dB/km) @850 nm<4 dB/km

@1300 nm<2 dB/km

@850 nm<4 dB/km

@1300 nm<2 dB/km

@850 nm<4 dB/km

@1300 nm<2 dB/km

Core Material Germanium-doped silica Fluorine-doped gradient   refractive   index silica High purity quartz
Core diameter 50±2μm 62.5±2μm 50±2μm
Cladding diameter 125±1μm
Length ≤30km
Jacket diameter 155±5μm
Concentricity of core cladding ≤1.5μm
Cladding non-circularity ≤1%
Jacket Materia Polyimide
Long-term working temperature ①-60~300℃;②-195~350℃(HTPI)
Short-term temperature tolerance 400℃
Screening strentgh 100kpsi
Product code Core diameter(um) Cladding diameter(um) Coating diameter(um) Operating wavelength(nm)
PSC60/66/75PI 60 66 75 UEP:190~1200/LEP:300-2400
PSC100/110/150PI 100 110 150 UEP:190~1200/LEP:300-2400
PSC145/152/200PI 145 152 200 UEP:190~1200/LEP:300-2400
PSC200/220/261PI 200 220 261 UEP:190~1200/LEP:300-2400
PSC300/330/370PI 300 330 370 UEP:190~1200/LEP:300-2400
PSC400/440/480PI 400 440 480 UEP:190~1200/LEP:300-2400
PSC600/660/710PI 600 660 710 UEP:190~1200/LEP:300-2400

Related products

Contact Information