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Introduction
Large-core fiber patch cords usually have core diameters ranging from 105 µm to 1000 µm or even larger. Unlike standard communication fibers (single-mode 9 µm, standard multimode 50/62.5 µm), it is primarily designed to deliver optical power/energy, instead of transmit data signals.
The difference compared with the standard communication fibers
Standard communication patch cord:Designed for low attenuation, low dispersion, and signal integrity, they are used to carry high-frequency modulated data signals.
Large-core fiber patch cord:By increasing the core cross-sectional area, the optical power density per unit area is reduced, thereby enabling the safe transmission of high-power lasers ranging from hundreds of milliwatts to several kilowatts.
Application
High-power laser delivery: industrial laser welding, cutting, and marking; medical surgical lasers (e.g., Holmium and Thulium lasers for lithotripsy and tissue resection).
Pump light delivery: in fiber lasers and ytterbium-doped fiber amplifiers (YDFAs), the energy from semiconductor pump sources is injected into the gain medium.
Spectroscopy and Sensing: optical path connections for instruments such as spectrometers and optical power meters; optical signal acquisition in the UV/VIS/NIR bands.
Illumination and Special Bands: energy and signal transmission across various bands from ultraviolet (UV) to infrared (IR).
Usage Precautions
Endface Cleaning: Before use, the ferrule endface must be wiped with alcohol and absorbent cotton. Dust and oil contamination can degrade optical coupling and even burn the endface.
Avoid Direct Viewing: During laser transmission, it is strictly prohibited to look directly at the fiber endface to prevent retinal damage.
Bending Radius: Avoid excessive bending; otherwise, optical attenuation will increase.
Thermal Design: In high-power scenarios, an optional epoxy-free process inside the connector enhances heat dissipation and extends service life.
Ordering Information:HC-LCFPC-A-B-C-D-E-F
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A |
B |
C |
D |
E |
F |
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Wavelength Range |
Numerical Aperture |
Core Diameter |
Armored, Ø3.0 mm, Fiber Length L |
A-end Connector |
B-end Connector |
|
Z:200-1200nm |
11:0.11NA |
50:50um |
05:0.5m |
SMA:SMA905 |
SMA:SMA905 |
|
H:400-2500nm |
22:0.22NA |
60:60um |
10:1m |
FA:FC/APC |
FA:FC/APC |
|
X:Others |
39:039NA |
100:100um |
15:1.5m |
FP:FC/UPC |
FP:FC/UPC |
|
|
X:Others |
105:105um |
X:Others |
LA:LC/APC |
LA:LC/APC |
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113:113um |
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LP:LC/UPC |
LP:LC/UPC |
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200:200um |
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SA:SC/APC |
SA:SC/APC |
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|
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300:300um |
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SP:SC/UPC |
SP:SC/UPC |
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400:400um |
|
X:Others |
X:Others |
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600:600um |
|
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|
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800:800um |
|
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1000:1000um |
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X:Other (specify other fiber type/model) |
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Introduction to Large-Core
Introduction
The UV silica fiber series features a step-index refractive index profile and a high-OH silica core. The waveguide characteristics in the UV window have been comprehensively optimized, providing excellent transmission performance in the UV band and Gamma radiation resistance at 800 nm.
Features
Large Fiber Core
High Temperature Range
Spectral range: 200–1200 nm
Good flexibility and mechanical strength
High Laser-Induced Damage Threshold (LIDT)
Application
Scientific Research Applications: Infrared Imaging and Imaging Bundles
Energy and Environment: Energy Development, Environmental Monitoring
Medical Applications: Laser Surgery, Spectroscopic Diagnosis, and Laser Cosmetics
Industrial Applications: Laser Transmission, Laser Welding & Cutting, Laser Coupling, Laser Diode Pigtails, and Sensing
Technical Specifications
|
Fiber Type PTUU |
100/110/230 AA22 |
105/125/250 AA22 |
200/220/320 AA22 |
300/330/520 AA22 |
400/440/730 AA22 |
600/660/960 AA22 |
800/880/1000 AA22 |
1000/1100/1350 AA22 |
|
Optical Performance |
||||||||
|
Numerical Aperture (NA) |
0.22±0.02 |
|||||||
|
Geometric Performance |
||||||||
|
Fiber Core Diameter (μm) |
100 |
105 |
200 |
300 |
400 |
600 |
800 |
1000 |
|
Fiber Cladding Diameter (μm) |
110 |
125 |
220 |
330 |
440 |
660 |
880 |
1100 |
|
Fiber Coating Diameter (μm) |
230 |
250 |
230 |
520 |
730 |
960 |
1000 |
1350 |
|
Core-Cladding Concentricity (μm) |
≤ 2 |
≤ 2 |
≤ 3 |
≤ 3 |
≤ 3 |
≤ 3 |
≤ 3 |
≤ 3 |
|
Core Non-Circularity (%) |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
|
Cladding Non-Circularity (%) |
≤ 1 |
≤ 1 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
|
Operation Temperature |
-40℃ ~ +85℃ |
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Material |
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Fiber core material |
High-OH Pure Silica |
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Cladding Material |
Fluorine-Doped Silica |
|||||||
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Coating Material |
Acrylate |
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|
Fiber Type PTUU |
50/55/66 P22 |
60/66/75 P22 |
74/77/85 P22 |
100/110/125 P22 |
113/124/145 P22 |
200/220/250 P22 |
300/330/360 P22 |
400/440/480 P22 |
600/660/690 P22 |
|
Optical Performance |
|||||||||
|
Numerical Aperture (NA) |
0.22±0.02 |
||||||||
|
Geometric Performance |
|||||||||
|
Fiber Core Diameter (μm) |
50 |
60 |
74 |
100 |
113 |
200 |
300 |
400 |
600 |
|
Fiber Cladding Diameter (μm) |
55 |
66 |
77 |
110 |
124 |
220 |
330 |
440 |
660 |
|
Fiber Coating Diameter (μm) |
66 |
75 |
8 |
125 |
145 |
250 |
360 |
480 |
690 |
|
Core-Cladding Concentricity (μm) |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 3 |
≤ 3 |
≤ 3 |
≤ 3 |
|
Core Non-Circularity (%) |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
|
Cladding Non-Circularity (%) |
≤ 1 |
≤ 1 |
≤ 1 |
≤ 1 |
≤ 1 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
|
Operation Temperature |
-200℃~ +350℃ |
||||||||
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Material |
|||||||||
|
Fiber core material |
High-OH Pure Silica |
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Cladding Material |
Fluorine-Doped Silica |
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|
Coating Material |
Acrylate |
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Introduction to Large-Core Fibers
Infrared (IR) Specialty Optical Fiber
Introduction
The infrared silica fiber series features a step-index refractive index profile and a low-OH silica core. It offers excellent transmission performance in the VIS-NIR band, making it suitable for high-power laser transmission applications, while also providing advantages in infrared spectroscopy applications.
Features
Spectral range: 400–2500 nm
Excellent transmission performance in the VIS-NIR band and high-temperature capability.
OH content < 0.7 ppm
High Temperature Range
Good flexibility and mechanical strength
Application
Industrial Applications: Laser Transmission, Laser Welding & Cutting, Laser Coupling, Laser Diode Pigtails, and Sensin
Medical Applications: Laser Surgery, Spectroscopic Diagnosis, and Laser Cosmetics
Scientific Research Applications: Infrared Imaging and Imaging Bundles
Energy and Environment: Energy Development, Environmental Monitoring
Technical Specifications
|
Fiber Type PTIU |
100/110/230 AA22 |
105/125/250 AA22 |
200/220/320 AA22 |
300/330/520 AA22 |
400/440/730 AA22 |
600/660/960 AA22 |
800/880/1000 AA22 |
1000/1100/1350 AA22 |
|
Optical Performance |
||||||||
|
Numerical Aperture (NA) |
0.22±0.02 |
|||||||
|
Geometric Performance |
||||||||
|
Fiber Core Diameter (μm) |
100 |
105 |
200 |
300 |
400 |
600 |
800 |
1000 |
|
Fiber Cladding Diameter (μm) |
110 |
125 |
220 |
330 |
440 |
660 |
880 |
1100 |
|
Fiber Coating Diameter (μm) |
230 |
250 |
230 |
520 |
730 |
960 |
1000 |
1350 |
|
Core-Cladding Concentricity (μm) |
≤ 2 |
≤ 2 |
≤ 3 |
≤ 3 |
≤ 3 |
≤ 3 |
≤ 3 |
≤ 3 |
|
Core Non-Circularity (%) |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
|
Cladding Non-Circularity (%) |
≤ 1 |
≤ 1 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
|
Operation Temperature |
-40 ℃~ +85℃ |
|||||||
|
Material |
||||||||
|
Fiber Core Material |
Low-OH Pure Silica |
|||||||
|
Cladding Material |
Fluorine-Doped Silica |
|||||||
|
Coating Material |
Acrylate |
|||||||
|
Fiber Type PTIU |
50/55/66 P22 |
60/66/75 P22 |
74/77/85 P22 |
100/110/125 P22 |
113/124/145 P22 |
200/220/250 P22 |
300/330/360 P22 |
400/440/480 P22 |
600/660/690 P22 |
|
Optical Performance |
|||||||||
|
Numerical Aperture (NA) |
0.22±0.02 |
||||||||
|
Geometric Performance |
|||||||||
|
Fiber Core Diameter (μm) |
50 |
60 |
74 |
100 |
113 |
200 |
300 |
400 |
600 |
|
Fiber Cladding Diameter (μm) |
55 |
66 |
77 |
110 |
124 |
220 |
330 |
440 |
660 |
|
Fiber Coating Diameter (μm) |
66 |
75 |
8 |
125 |
145 |
250 |
360 |
480 |
690 |
|
Core-Cladding Concentricity (μm) |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 3 |
≤ 3 |
≤ 3 |
≤ 3 |
|
Core Non-Circularity (%) |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
|
Cladding Non-Circularity (%) |
≤ 1 |
≤ 1 |
≤ 1 |
≤ 1 |
≤ 1 |
≤ 2 |
≤ 2 |
≤ 2 |
≤ 2 |
|
Operation Temperature |
-200℃~ +350℃ |
||||||||
|
Material |
|||||||||
|
Fiber core material |
Low-OH Pure Silica |
||||||||
|
Cladding Material |
Fluorine-Doped Silica |
||||||||
|
Coating Material |
Acrylate |
||||||||
