j-fiber 100/140µm & 100/125µm Graded Index Multimode Fiber

Specifications

Core Diameter: 100 um
Wavelength Range: 850 – 1300 nm
Cable Length: 1100 m
Fiber Core Material: Not Specified
Zero Dispersion Wavelength: 1330 ≤ λ₀ ≤ 1385 nm
Core Diameter: 100 ± 4.0 µm
Proof Test: ≥ 10.7 N
Proof Test: ≥ 0.69 GPa
Standard Lengths: 1.1 - 4.4 km
Coating/Clad Concentricity Error: ≤ 12 µm
Cladding Non-Circularity: ≤ 2.0 %
Core/Clad Concentricity Error: ≤ 3.0 µm
Core Non-Circularity: ≤ 6.0 %
Zero Dispersion Slope From 1365 ≤ λ₀ ≤ 1385: ≤ 0.0005·(1575 - λ₀) ps/nm²·km
Zero Dispersion Slope From 1330 ≤ λ₀ ≤ 1365: ≤ 0.105 ps/nm²·km
Cladding Diameter: 140 ± 3 µm
Attenuation At 1383nm (OH-Peak): < 2.0 dB/km
Attenuation Coefficient At 1300nm: ≤ 1.0 dB/km
Attenuation Coefficient At 850nm: ≤ 3.5 dB/km
Bandwidth At 1300nm: ≥ 100 - ≥ 400 MHz·km
Bandwidth At 850nm: ≥ 100 - ≥ 400 MHz·km
Effective Group Index Of Refraction At 1300nm: 1.497
Effective Group Index Of Refraction At 850nm: 1.502
Numerical Aperture: 0.290 ± 0.020
Coating Diameter: 242 ± 7 µm
Cladding Diameter: 125 ± 2 µm
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Features

  • Graded Index Profile: Designed with a 100µm core and 140µm or 125µm cladding for optimal performance.
  • Customizable Options: Offers tailored bandwidth and attenuation combinations to meet specific needs.
  • Durable Coating: Available with a 500µm coating diameter or a high-temperature option for challenging environments.
  • Excellent Splicing Performance: Ensures compatibility with existing fiber bases and photonics components for seamless integration.
  • Standardization and Compliance: Meets IEC 60793-2-10, ITU G651.1, and TIA/EIA 492AAAB-A standards.
  • Low Attenuation: Attenuation coefficient of ≤ 3.5 dB/km at 850nm and ≤ 1.0 dB/km at 1300nm.
  • High Bandwidth: Supports bandwidth of ≥ 100 - ≥ 400 MHz·km at both 850nm and 1300nm.
  • Numerical Aperture: Offers a numerical aperture of 0.290 ± 0.020 for efficient light capture.
  • Geometrical Precision: Core diameter of 100 ± 4.0 µm with core non-circularity ≤ 6.0% and core/clad concentricity error ≤ 3.0 µm.
  • Mechanical Strength: Proof tested to ≥ 0.69 GPa and dynamic tensile strength for unaged fiber.

Applications

  • Data Communication: Ideal for short-distance data communication applications due to its large core diameter and high numerical aperture, which ensure maximum coupling efficiency.
  • Telecommunications: Suitable for telecommunications networks requiring high bandwidth and low attenuation over short distances.
  • Industrial Networking: Perfect for industrial environments that demand robust fiber solutions with high-temperature coatings and excellent splicing performance.
  • Medical Equipment: Used in medical devices and equipment that require reliable and efficient optical fiber connections.
  • Research and Development: Applicable in R&D settings where customized bandwidth and attenuation combinations are needed for specific experiments or projects.
  • Photonics Components: Compatible with various photonics components, making it a versatile choice for integrated photonics systems.
  • Military and Aerospace: Can be used in military and aerospace applications where high-performance fiber optics are critical.
  • Broadcasting: Suitable for broadcasting applications that require high-quality signal transmission over optical fiber.
  • Educational Institutions: Useful in educational labs and institutions for teaching and research purposes in optical communications.