Multimode Single Fiber Collimator (GK-MMC Series)
description1
Specifications
Parameter |
Unit |
Type A |
Center Wavelength (λc) |
nm |
1310, 1550, or, specified |
Operating Wavelength Range |
nm |
λc ± 30 |
Working Distance |
mm |
5, or specified |
Typ. Insertion Loss |
dB |
0.20 |
Max. Insertion Loss |
dB |
0.25 |
Min. Return Loss |
dB |
35 |
Max. Tensile Load |
N |
5 |
Fiber Type |
- |
Multimode Fiber 105/125, 62.5/125, 50/125 µm, or specified |
Operating Temperature |
℃ |
- 5 to + 70 |
Storage Temperature |
℃ |
- 40 to + 85 |
IL is 0.3 dB higher for each connector added.
Above specifications are measured at low order modes.
Package Dimensions
product description
The GKER Photonics Multimode Single Fiber Collimator (GK-MMC Series) is a versatile and high-performance optical component designed for precision in-line fiber optic applications. It serves as the foundational element for devices such as isolators and fiber wavelength division multiplexers (FWDM), ensuring efficient light transmission with minimal signal loss. This collimator features low insertion loss and high return loss, making it ideal for high-power handling scenarios.
Engineered with unique processing techniques and superior anti-reflective (AR) coating, the GK-MMC Series offers exceptional durability and performance across a range of wavelengths. It is available with various multimode fiber types and core sizes, including 105/125 µm, 62.5/125 µm, and 50/125 µm, making it adaptable to diverse optical setups. The device operates effectively over a wide temperature range, ensuring reliability in demanding environments. Whether used in telecommunications, sensors, or other advanced optical systems, the GKER Photonics Multimode Single Fiber Collimator provides the accuracy and consistency required for high-end optical applications.
The Multimode Fiber Collimator's combination of low insertion loss, high return loss, and high power handling capabilities make it a valuable component for a variety of fiber optic applications. Its robust design and performance characteristics are essential for ensuring the efficiency and reliability of fiber optic communication and sensing systems.


