Fiber Coupled Lasers

Box Optronics offer Fiber Coupled Lasers diodes, Including 1270nm~1610nm CWDM or DWDM DFB 14-PIN Butterfly fiber coupled Lasers diodes; 1392nm 1512nm 1567nm 1653nm DFB butterfly laser diode for Gas detection; 974nm 976nm 100~700mW FBG pump fiber coupled laser diode with SM fiber or PM fiber; 830nm 850nm 1310nm 1550nm 1610nm Broadband SLED fiber coupled Lasers, Superluminescent diodes; 1310nm 1550nm 14-PIN buttefly package Semiconductor Optical Amplifiers SOA. 793nm 808nm 915nm 976nm 1064nm 2W to 300W high Power fiber coupled diode lasers, CWDM Coaxial DFB pigtail laser diodes and so on.
View as  
 
  • The 1064nm 9W Multimode fiber pigtailed 2 PIN laser diode modules have a high efficiency, stability and superior beam quality. The modules are achieved by transforming the asymmetric radiation from the laser diode chip into an output fiber with small core diameter by using special micro optics. Inpection and burn-in procedures guarantee reliability, stability and long lifetime of each modules.

  • The 1064nm 25W 2-PIN Fiber Coupled Diode Laser have a high efficiency, stability and superior beam quality. The modules are achieved by transforming the asymmetric radiation from the laser diode chip into an output fiber with small core diameter by using special micro optics. Inpection and burn-in procedures guarantee reliability, stability and long lifetime of each modules.

  • The 1064nm 100W Fiber Coupled Laser Module is a high output power of 100 watts, and center wavelength of 1064nm. This laser manufactured by using specialized fiber-coupling techniques to couple the high power light from a multi-single laser emitter design into a 106 micrometer core fiber. This laser offer a high efficiency and high stability beam and a long mean time to failure.

  • The 1550nm 8dBm SM SOA Semiconductor Optical Amplifier is a semiconductor optical amplifier with high Signal Gain, designed to be used in general applications to increase optical launch power to compensate for loss of other optical devices. The 1550nm 8dBm SM SOA Semiconductor Optical Amplifier can be ordered with Single Mode (SM) or Polarization Maintaining (PM) fiber input/output. This module version is an ideal building block for system integrators, especially in optical communication networks and CATV applications.

  • The 1310nm 10dBm SOA Semiconductor Optical Amplifier SM Butterfly is designed by using a high quality angled SOA chip and a TEC which can assure a stable amplified output for a large dynamic input signal. The devices are available in a standard, 14-pin butterfly package at the 1310nm and 1550nm bands. The SOA devices have high optical gain, high saturation output power, low polarization dependent loss, low noise figure and broad wavelength range. We have options of optical isolators for input and/or output side as well as output fibers of SM fibers, PM fibers and other special fibers per customer specifications. The products are Telcordia GR-468 qualified, and in compliance with RoHS requirement.

  • The 1310nm Superluminescent Diode SLDs SLED is a high-capability,wide spectral range,high stability,low degree of coherence broadband light source.Single-mode or polarization maintaining fiber output,can choose a variety types of connectors or adapters,to facilitate rapid interconnection with external devices,and low loss.Output optical power can be adjusted.

Customized Fiber Coupled Lasers can be bought from Box Optronics. As one of the professional China Fiber Coupled Lasers manufacturers and suppliers, we assist customers to provide better product solutions and optimize industry costs. Fiber Coupled Lasers made in China is not only of high quality, but also cheap. You can wholesale our products at low prices. In addition, we also support bulk packaging. Our value is "customer first, service foremost, credibility foundation, win-win cooperation". For more info, welcome to visit our factory. Let us cooperate with each other to create a better future and mutual benefit.
X
We use cookies to offer you a better browsing experience, analyze site traffic and personalize content. By using this site, you agree to our use of cookies. Privacy Policy
Reject Accept