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Shanghai Lianjian Optoelectronic Technology Co., Ltd
Room 1004, No. 92, Lane 501, Sichen Road, Songjiang District, Shanghai
Molex infrared hollow fiber 100W carbon dioxide/50W erbium laser transmission
In the infrared region (2.9-20um), traditional applications that use optical fibers or other flexible waveguides to transmit optical power still rely on linear transmission of light, lenses/mirrors, and bulky articulated arms due to the lack of reliability and cost-effectiveness. This severely limits the potential application range, especially in remote spectroscopy, minimally invasive optical surgery, and CO2 laser material processing and printing. Due to the severe absorption of light with wavelengths exceeding 1.9 micrometers by typical silicon-based optical fibers, a different technique is required. Flexible hollow silica waveguide (HSW) optical fibers have provided excellent solutions in many cases. For example, power transmission of CO2 and erbium lasers, as well as spectroscopic applications utilizing hollow structures. This is achieved by appropriately handling waveguides and designing/controlling light emitting devices to maximize performance optimization.
Hollow silica waveguide fiber produced by Polymicro Technologies (PT) under Molex, also known as HSW fiber, HSW waveguide fiber, or hollow core fiber, hollow waveguide fiber, Polymicro hollow fiber, Molex hollow fiber. Including JTHWCH fiber, also known as CO2 laser fiber (10.6um fiber), JTHWEH fiber, also known as erbium laser fiber (2940nm fiber), and laser energy therapy fiber, they have been optimized to operate with lower optical power loss at CO2 (10.6 µ m) or Er: YAG (2.94 µ m) wavelengths, although relatively low loss operations can also be performed in between these two bands. The inner diameter sizes of these waveguides are available in 300, 500, 750, and 1000 micrometers. They can also be designed into customized components with protective shells and connectors. Molex's infrared hollow fiber belongs to laser energy therapy fiber, coated with silver iodide fiber, and has passed biocompatibility certification. It can be used for therapy fiber, beauty fiber, dental fiber, etc. It can replace traditional light guide arm transmission solutions, is lightweight, compact, flexible, and has high transmission efficiency.

Molex infrared hollow fiber 100W carbon dioxide/50W erbium laser transmissionSpecification parameters:
The wavelength range is 2.9Mmto 10.6Mm
High laser damage threshold:10.6umUp to wavelength100W
Optimized forCo2Laser andEr:YAGTransmission characteristics of laser wavelength
strong and flexible
Non toxic: Can be disinfected*
Can provide customized buffer layer
No end face reflection
Low insertion loss
MolexUnder the umbrella of (Molex)Polymicro Technologies(PT)The hollow silica waveguide optical fibers produced have been optimized and can be used inCO2(10.6µm)orEr:YAG(2.94µm)Operate with lower optical power loss at wavelengths, although relatively low loss operation can also be performed between these two bands. The inner diameter dimensions of these waveguides are300、500、750and1000Microns are optional. They can also be designed into customized components with protective shells and connectors.
Molex infrared hollow fiber 100W carbon dioxide/50W erbium laser transmissionPerformance advantages:
1Integrating laser energy transmission and visible beam alignment functions within the same fiber optic cable:1)Compared to typical dual fiber solutions, it reduces cable volume. 2)ReducedThe probability of laser burning optical fibers due to insufficient accuracy;
2:Hollow silica waveguide(HSW)zuiGreatly optimized mid infrared(IR)Transmission of wavelengths: In carbon dioxide(CO2)andEr:YAGThe application of lasers has become more lightweight, improving ergonomics;
3:500、750The1000µminner diameter(ID)Optional:More laser power solutions are available;
4:Tefzel*Biocompatible shell material: can be used forResistant to ethylene oxide(ETO)Disinfected human intervention therapy;
Molex infrared hollow fiber 100W carbon dioxide/50W erbium laser transmissionConnector selection:
Polymicro Technologies(PT)Produced byPoly-lok
1The connector is detachable and reusable, making it an ideal product for prototype design.
2:SMA(905),SMA(906),STIIandFC(Not used for)1000MmdrilledSTIIandFCProduct)
Conventional in the marketSMA(905),SMA(906),STIIandFC
1The waveguide fiber extends from inside the connector1to2mm
Molex infrared hollow fiber 100W carbon dioxide/50W erbium laser transmissionTypical Applications:
· CO2Laser (carbon dioxide laser);
· Erbium laser
· Remote spectroscopy
· Minimally invasive surgery, Yi therapy beauty; Dental optical fiber;
· CO2Laser material processing and printing, etc
Molex infrared hollow fiber 100W carbon dioxide/50W erbium laser transmissionRelated charts:
Product code |
Inner diameter (μ m)m) |
Outer diameter of glass layer (μ m)m) |
Outer diameter of buffer layer (μ m)m) |
Linear loss(dB/m Max) |
Bending loss(dB Max) |
JTHWCH5006801040 |
500µm ±25 |
650µm ±20 |
1040µm ±30 |
0.8 |
1.5 |
JTHWCH7509801300 |
750µm ±30 |
950µm ±25 |
1300µm ±50 |
0.5 |
1 |
Model No.: JTHWCH100013301550 |
1000µm ±50 |
1300µm ±25 |
1550µm ±60 |
0.5 |
1 |

Molex mid infrared hollow fiber Molex mid infrared hollow fiber
aboutConnected ship optoelectronics:
Shanghai Lianjian Optoelectronic Technology Co., Ltd. is a comprehensive service provider specializing in the agency and system integration of optoelectronic products. Shanghai Lianjian Optoelectronic Technology Co., Ltd. isMolexsubsidiaryPolymicro TechnologiesChina agent for the full range of products, to understand the relevant informationPolymicroFor more information on the solution, please contact Shanghai Lianjian Optoelectronics Technology Co., Ltd