Products

View as  
 
  • The 1310nm 1mW SLED or SLD Superluminescent Light Emitting Diodes is highly qualified SLEDs for a diverse range of Fiber Optic Gyroscopes(FOG) applications. These SLEDs can operate over demanding temperature ranges, increased shock/vibrations levels, and have verified long lifetimes due to their use in defense and space environments.

  • Pulsed Erbium-doped Fiber Amplifier For Optical Sensor outputs high-power laser pulses while minimizing fiber nonlinear effects, and has the advantages of high gain and low noise. Support the software control of the host computer.

  • The 850nm Superluminescent Diodes SLD is a light source for ophthalmic and medical OCT application, fiber transmission systems, fiber optic gyros, fiber optic sensors,optical coherence tomography, optical measurements. The diode is packaged in 14-pin standard butterfly package with monitor photodiode and thermo-electric cooler (TEC). Module is pigtailed with single mode polarization maintaining fiber and connectorized by FC/APC connector.

  • The following is about PM1550 Fiber Coupled 1480nm Fiber Laser Module For Nonlinear Optics related, I hope to help you better understand PM1550 Fiber Coupled 1480nm Fiber Laser Module For Nonlinear Optics. Welcome new and old customers to continue to cooperate with us to create a better future together!

  • The following is about 1570~1603nm L-band EDFA Amplifier related, I hope to help you better understand 1570~1603nm L-band EDFA Amplifier. Welcome new and old customers to continue to cooperate with us to create a better future together!

  • 1273nm DFB Butterfly Laser Diode For HF Sensing have been designed specifically to satisfy the requirements of the sensor application. The devices feature high output power and wide operating temperature range. Their 14-pin butterfly packages are either pincompatible with standard SONET OC-48 devices.

 ...910111213...48 
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