Description
j-fiber's 100/140µm and 100/125µm Graded Index Multimode Fiber is engineered to deliver exceptional performance in short-distance connections, making it the preferred choice for applications requiring maximum coupling efficiency. The fiber's large core diameter of 100µm, combined with a high numerical aperture (NA), ensures easy splicing and low-loss connections, which are crucial for maintaining signal integrity and reducing operational costs.
Designed with a graded index profile, this multimode fiber offers flexibility with its 100µm core and options for 140µm or 125µm cladding. This design not only enhances the fiber's compatibility with existing photonics components but also provides excellent splicing performance. The fiber can be customized with specific bandwidth and attenuation combinations to meet diverse application needs, ensuring optimal performance across various environments.
For demanding environments, j-fiber offers a 500µm coating diameter or a high-temperature option, ensuring durability and reliability under challenging conditions. The fiber complies with international standards, including IEC 60793-2-10, ITU G651.1, and TIA/EIA 492AAAB-A, guaranteeing quality and consistency in performance.
Ordering j-fiber's multimode optical fiber is straightforward. Customers can specify parameters such as fiber type, desired attenuation, bandwidth at 850nm/1300nm, and fiber quantity in kilometers. Additional requests, such as desired ship date and reel length, can also be accommodated to tailor the product to specific project requirements.
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 |
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.
Frequently Asked Questions
What are the core and cladding diameters of the j-fiber multimode fiber?
What are the standard compliance standards for the j-fiber multimode fiber?
What is the numerical aperture of the j-fiber multimode fiber?
What are the typical attenuation coefficients for the j-fiber multimode fiber?
What is the proof test value for the j-fiber multimode fiber?
What are the available coating diameters for the j-fiber multimode fiber?
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