1064 nm Single fiber Collimator (GK-C Series)
description1
Specifications
Parameter |
Unit |
Type A |
Center Wavelength (λc) |
nm |
1064 |
Operating Wavelength Range |
nm |
λc ± 30 |
Working Distance |
mm |
5 or specify |
Typ. Insertion Loss |
dB |
0.25 |
Max. Insertion Loss |
dB |
0.30 |
Min. Return Loss |
dB |
55 |
Max.Optical Power (continuous wave) |
mW |
300 |
Tensile Load |
N |
5 |
Fiber Type |
- |
PM 980 Panda Fiber |
Operating Temperature |
℃ |
- 5 to + 70 |
Storage Temperature |
℃ |
- 40 to + 85 |
Package Dimensions
product description
The 1064 nm Single Fiber Collimator from GKER Photonics Co., Ltd. is meticulously engineered to meet the demands of high-precision fiber optic systems. Designed specifically for applications involving isolators and Wavelength Division Multiplexers (WDMs), this collimator stands out with its exceptional performance metrics. Operating at a center wavelength of 1064 nm, it accommodates a wavelength range of ±30 nm, offering flexibility for various optical setups.
This collimator features an impressively low typical insertion loss of 0.25 dB, ensuring minimal signal attenuation. The maximum insertion loss is capped at 0.30 dB, which maintains high transmission efficiency. The high return loss of 55 dB guarantees excellent signal integrity by minimizing reflections that can interfere with optical performance. It is capable of handling up to 300 mW of continuous wave optical power, making it suitable for high-power applications without compromising performance or stability.
The collimator’s construction incorporates high-quality anti-reflective (AR) coatings, enhancing its durability and efficiency. The design supports tensile loads up to 5 N, ensuring mechanical robustness. It is compatible with PM 980 Panda Fiber, providing reliable and consistent performance in demanding environments.
Engineered for a broad range of operating conditions, this collimator functions optimally within temperatures from -5°C to +70°C and is stored safely within a temperature range of -40°C to +85°C. Its precision manufacturing and high-quality materials make it an ideal choice for sophisticated fiber optic systems requiring high performance and reliability.


