976nm 200mW PM Stabilized Laser Diodes Manufacturers

Our staff are generally while in the spirit of "continuous improvement and excellence", and while using the excellent high quality merchandise, favorable value and great after-sales services, we try to gain each customer's have faith in for 976nm 200mW PM Stabilized Laser Diodes, Adhering for the enterprise philosophy of 'customer initial, forge ahead', we sincerely welcome consumers from in the home and abroad to cooperate with us.
976nm 200mW PM Stabilized Laser Diodes, We aspire to meet the demands of our customers globally. Our range of solutions and services is continuously expanding to meet customers' requirements. We welcome new and old customers from all walks of life to contact us for future business relationships and achieving mutual success!

Hot Products

  • High Power C-band 3W 35dBm Erbium-Doped Fiber Amplifiers EDFA

    High Power C-band 3W 35dBm Erbium-Doped Fiber Amplifiers EDFA

    The High Power C-band 3W 35dBm Erbium-Doped Fiber Amplifiers EDFA(EYDFA-HP) is based on the double-clad erbium-doped fiber amplifier technology, using a unique optical packaging process, coupled with a reliable high-power laser protection design, to achieve high-power laser output in the 1540~1565nm wavelength range. With high power and low noise, it can be used in fiber optic communication, Lidar, etc.
  • 905nm 25W Pulsed Laser Chip

    905nm 25W Pulsed Laser Chip

    The 905nm 25W Pulsed Laser Chip , output power 25W, long lifetime, high efficiency, widely used in LiDAR, Measuring instrumen,Security, R&D and other fields.
  • 1470nm DFB Pigtailed Laser Diode With Single Mode Fiber

    1470nm DFB Pigtailed Laser Diode With Single Mode Fiber

    The 1470nm DFB Pigtailed Laser Diode With Single Mode Fiber consists of Distributed Feedback (DFB) lasers, having a fiber pigtail precisely attached for optimum coupling efficiency. This 1550nm center wavelength version has a typical 1mW~4mW of output power and includes a back facet photodiode, and an integrated optical isolator. The 9/125 single mode fiber pigtail is terminated with an FC/APC or FC/PC style fiber optic connector. Applications include high-speed data and telecommunications systems and instrumentation, and optical instruments requiring a laser diode light source.
  • 1310nm DFB Coaxial Laser Diode with TEC

    1310nm DFB Coaxial Laser Diode with TEC

    The 1310nm DFB Coaxial Laser Diode with TEC is generally applied for stabilizing or modulating light source. In addition, the high stability laser source can be used for testing apparatus and OTDR equipment. The laser diode is composed of a CWDM-DFB chip, built-in isolator, built-in monitor photodiode and TEC cooler, and SC/APC,SC/PC, FC/APC,FC/PC optical fiber connector. Customers can select the length of optical fiber and pin definition based on actual demand. The output power is available from 1MW, 1270nm~1610nm CWDM wavelength available.
  • 850nm 7mW SLEDs SLDs For Ophthalmic And Medical OCT

    850nm 7mW SLEDs SLDs For Ophthalmic And Medical OCT

    The 850nm 7mW SLEDs SLDs for ophthalmic and medical OCT 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.
  • 840nm  850nm 20mW Superluminescent Diode (SLD) Light Sources

    840nm 850nm 20mW Superluminescent Diode (SLD) Light Sources

    The 840nm 850nm 20mW Superluminescent Diode (SLD) Light Sources adopts semiconductor super radiant diode technology to output a broadband spectrum and at the same time has a higher output power. The working wavelength can be selected from 840nm 1310nm 1550nm and other wavelength, which is suitable for applications such as optical fiber sensing. We can provide communication interface and host computer software to facilitate the monitoring of the state of the light source.

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