Low Noise 1550nm Nanosecond Pulse Fiber Laser Module Manufacturers

We've been also focusing on improving upon the stuff management and QC program to make sure that we could hold fantastic gain in the fiercely-competitive enterprise for Low Noise 1550nm Nanosecond Pulse Fiber Laser Module,Nanosecond Pulse Laser,Nanosecond laser, Honesty is our principle, professional operation is our work, service is our goal, and customers' satisfaction is our future!
Low Noise 1550nm Nanosecond Pulse Fiber Laser Module, At Current, our solutions have been exported to more than sixty countries and different regions, such as Southeast Asia, America, Africa, Eastern Europe, Russia, Canada etc. We sincerely hope to establish wide contact with all potential customers both in China and the rest part of the world.

Hot Products

  • 532nm 1064nm Picosecond Pulse Fiber Laser For Supercontinuum Generation

    532nm 1064nm Picosecond Pulse Fiber Laser For Supercontinuum Generation

    532nm 1064nm Picosecond Pulse Fiber Laser For Supercontinuum Generation has the characteristics of very narrow laser pulse, high peak power and so on. The light source can be used in the scientific research of high power laser, supercontinuum, nonlinear optics and other fields. We can accept the customization of pulse width, power, repetition frequency and other parameters.
  • L-band ASE Broadband Light Source Module For Optical Sensor

    L-band ASE Broadband Light Source Module For Optical Sensor

    As a professional L-band ASE Broadband Light Source Module For Optical Sensor manufactures, You can rest assured to buy L-band ASE Broadband Light Source Module For Optical Sensor from our factory and we will offer you the best after-sale service and timely delivery.
  • 3Ghz High Speed InGaAs Photo Detector Module

    3Ghz High Speed InGaAs Photo Detector Module

    3Ghz High speed InGaAs Photo detector Module is with photoelectric response bandwidth ≥3GHz, a pulse rise time of 125ps and wavelength range of 1020~1650nm. SMA interface is used for RF signal output, which connect with RF test equipment. for optical transmission system, ultrafast laser pulse detection.
  • 1310 nm Single Mode SM Fiber Optic Circulators

    1310 nm Single Mode SM Fiber Optic Circulators

    BoxOptronics' 1310 nm Single Mode SM Fiber Optic Circulators are available unterminated, with FC/PC connectors, or with FC/APC connectors. Our 1310 nm SM Fiber Optic Circulators have a maximum power handling of 500 mW (CW). The 1310 nm Single Mode SM Fiber Optic Circulators advanced micro optics design, it features low insertion loss, low polarization sensitivity, high isolation, and high stability. The excellent characteristics of this product make it an ideal choice for application in fiber amplifier systems, pump laser diodes, and optical fiber sensors.
  • 1410nm DFB Butterfly Laser Diode

    1410nm DFB Butterfly Laser Diode

    The 1410nm DFB Butterfly Laser Diode higher output power, low noise and ultra narrow linewidth ideally position this semiconductor optical solution for multiple applications where absolute accuracy, lifetime reliability over demanding field conditions, and high resolution are vital, such as remote sensing, distributed temperature, strain, or acoustic fiber optic monitoring, high resolution spectroscopy, LIDAR and other precision metrology applications.
  • 1270nm to 1610nm or 1550nm Fiber Bragg Grating FBGs

    1270nm to 1610nm or 1550nm Fiber Bragg Grating FBGs

    1270nm to 1610nm or 1550nm Fiber Bragg Grating FBGs are a kind of diffraction grating formed by periodically modulating the refractive index of the core of the fiber through a certain method. It is a passive filter device. Grating fibers are widely used in the fields of optical fiber communication, optical fiber sensing and optical fiber signal processing because of their small size, low fusion loss, full compatibility with optical fibers and embedded intelligent materials, and their resonant wavelength is sensitive to the changes of temperature, strain, refractive index, concentration and other external environment.

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