PEEK Fiber Optic Cables Features:
1.Reasonable mechanical and environmental performance;
2.Standard flame retardant and incombustible;
3.Minimum bending radius can cable for indoor large-quantity and multi-user and also can be applied independently to connect with every terminal conveniently;
4.Recommended to use in field directly connected with the end-user,insulating lightening and improving the system’s reliability;
5.Applied in HD cabling and space with small installing room and installing curvature.
CITCABLE: 260°C Temperature Sensing Fiber Optic PEEK Cable
Product Construction:
Conductor: 125uM,1 core temperature sensing armored cable
PEEK insulated OD: 0.25—5.0mm
Key Features:
1, Working temperature:-75℃---- +260℃ ( 500°F)
2,300V,
3,Halogen free and low toxicity
4,Excellent radiation resistance
5,High Radiation Resistance 109 Rad= 107 Gy
6,PEEK cable outstanding and excellent abrasion resistance, dielectric strength, chemical resistance, thermal endurance in long. protects against corrosion
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CITCABLE: High Temperature Radio-Resistant fibers Cable
Characteristics: Suitable for use in harsh environments, up to 10Gbits/s, Tight and semi-loose cables, EASY TERMINATION
Temperature Range: -196°C to +260°C and short time 300°C
Applications
CITCABLE: PEEK Reinforced Optical Fiber cable/Single-Mode Polyimide and PEEK
Characteristics: Suitable for use in harsh environments, up to 10Gbits/s, Tight and semi-loose cables, EASY TERMINATION
Temperature Range: -65°C to +200°C Fluoropolymer
-196°C to +260°C TPI/PEEK
Jacket: Fluoropolymer/PEEK/TPI
Manufactured from polymers such as PEEK, PTFE, PFA, ETFE, PVDF, and FEP, these products deliver innovative fiber optic solutions for a range of industries and applications:
Aerospace
Telecoms
Medical
Automotive
Energy
Nuclear
CITCABLE: ETFE Tubing Fibre Cable
CITCABLE 0.9MM ETFE tubing can be employed as buffering material and provide additional protection for use with 250μm fibre.
Made from ETFE possessing, ETFE tubing has some excellent property of the material, such as resistance to heat and flame, and high specific dielectric strength, and gives optimal protection to 250μm fibre.
Applications
CITCABLE: High Radiation Absorbed dose rate Optical Fibre Cable
Characteristics: Suitable for use in harsh environments, up to 10Gbits/s, Tight and semi-loose cables, EASY TERMINATION
Temperature Range: -196°C to +260°C and short time 300°C
Applications
CITCABLE: 200000Gy Radiation Resistant Single-mode Fibre
Characteristics: Suitable for use in harsh environments, up to 10Gbits/s, Tight and semi-loose cables, EASY TERMINATION
Temperature Range: -196°C to +260°C and short time 300°C
Applications
CITCABLE: Ultra-thin PEEK Optical Fibre cable
Temperature Range: -196°C to +260°C, short 300°C
it's meeting the special application requirements of the optical fibre in the radiation environment, the multi-mode fibre with radiation resistance is developed by adjusting the optical fibre components and improving the process technology. This fibre has graded refractive index profile, which fully optimizes the waveguide characteristics of 850nm & 1300nm operating wavelength, and has very low attenuation and high bandwidth. CITCABLE radiation resistant multi-mode fibres have 50μm core, Besides, CITCABLE also can make customized tight-buffered radiation resistant multi-mode fibre
CITCABLE:Radiation resistant fibers cable
Characteristics: Suitable for use in harsh environments, up to 10Gbits/s, Tight and semi-loose cables, EASY TERMINATION
Temperature Range: -196°C to +260°C
Radiation-resistance Characteristcics | |||||
According to Standard TIA/EIA 455-64 (dB/100m) |
1310 | Total dose 50Krad dose rate 0.1rad/s(25℃) induced attenuation |
-- | ≤ 0.3 | ≤ 0.3 |
1310, 1550 | Total dose 2000Gy dose rate 0.5Gy/s(25℃) induced attenuation |
≤ 0.9 | ≤ 0.8 | ≤ 0.8 | |
1310, 1550 | Total dose 200000Gy dose rate 0.5Gy/s(25℃) induced attenuation |
≤ 2.5 | ≤ 2.0 | ≤ 2.0 |
Manufactured from polymers such as PEEK, PTFE, PFA, ETFE, PVDF, and FEP, these products deliver innovative fiber optic solutions for a range of industries and applications:
Aerospace
Telecoms
Medical
Automotive
Energy
Nuclear