Shop

  • TTL-modulated miniature laser diode module (635–980nm) with elliptical beam and 10.5mm housing, ideal for applications requiring precise laser control.
  • The LTG-A24 Series laser diode modules support 24–28VDC input and offer a high-performance elliptical beam across 635–980nm wavelengths. Housed in a compact ⌀0.5″ case with adjustable focus, they are ideal for industrial and precision alignment tasks.
  • The LXG Series high performance laser diode modules operate from 635nm to 980nm, featuring an elliptical beam, focus adjustability, and soft-start protection. Designed with a compact ⌀0.5in housing and DC-Jack connector for convenient integration in precision applications.
  • The LTG Series laser diode modules deliver high performance across 635–980nm wavelengths with an elliptical beam profile. Featuring a ⌀0.5in housing, adjustable focus, and built-in LED indicator, they’re ideal for precision applications requiring clear beam visibility and easy setup.
  • Class II 650nm laser diode module with elliptical beam and 8mm housing, compliant with IEC60825-1/EN60825-1 standards, delivering safe and reliable performance.
  • Miniature 635–980nm laser diode module with circular beam and 10.5mm housing, designed for compact and reliable optical applications.
  • Miniature 635–980nm laser diode module with elliptical beam and 10.5mm housing, ideal for compact and precise optical solutions.
  • The LTG-T Series high performance laser diode modules offer TTL modulation up to 100kHz and an elliptical beam profile over 635–980nm. Featuring a compact ⌀0.5in housing, ultra-fine 0.25mm pitch for precision focus adjustment, and adjustable focus, they’re ideal for demanding applications requiring speed and accuracy.

  • The VCT-F85A31-OH is an 850nm 8mW VCSEL diode with built-in monitor PD in a TO-46 package, supporting 1Gbps data transmission for high-speed communication and precision optical sensing.
  • The VCT-F85A3x-SL is an 850nm 0.5mW single-mode VCSEL diode in a TO-46 package with integrated monitor photodiode, designed for sensing, laser mouse, and consumer electronics applications.
  • Lasermate provides 850nm, multimode Vertical Cavity Surface Emitting Laser (VCSEL) chip array designed for use in 25Gbps data rate operation. The 25G VCSEL chip array features dual top contact, low threshold and low operating current.
  • The VCC-94A20SM is a high-quality 940nm Gaussian beam VCSEL chip providing 20mW of output power, specifically designed for sensing applications. Its stable performance and compact design ensure accurate and reliable measurements in various optical sensing environments.
  • The VCC-85A350H is a powerful 850nm VCSEL chip featuring 350mW output and a multi-emitter design. Ideal for infrared illumination and safety sensors, as well as consumer electronics and gesture sensor applications, this chip delivers exceptional performance and reliability in diverse settings.
  • The VCC-94A8H is a high-performance 940nm VCSEL chip offering 8mW of output power. Engineered for sensing applications, it delivers stable performance and precision, making it an excellent choice for a wide range of optical systems.
  • The VCC-94A6H is a high-quality 940nm VCSEL chip delivering 6mW of output power. Perfect for sensing applications, it ensures consistent performance and accuracy, making it an essential choice for modern optical systems.
  • The VCC-94A5H is a versatile 940nm VCSEL chip providing 4.7mW of output power. Engineered for both optical communication and sensing applications, it ensures stable and accurate performance, making it a valuable component for various optical systems.
  • Lasermate provides high speed 850nm Vertical Cavity Surface Emitting Laser (VCSEL) chip array with 4 channels (array form) designed for use in 14Gbps data rate operation.
  • The VCC-85A120H is a high-output 850nm oxide VCSEL chip delivering 120mW of power, specifically designed for sensing applications. Its robust design ensures reliable performance and precision, making it ideal for advanced optical sensing solutions in diverse environments.
Go to Top