LiDar Sensing Ranging
1310/1550nm 100mW Narrow Linewidth DFB Butterfly Laser Diode with Single-mode/Polarization-maintaining Fiber Pigtail
1310/1550nm High Output Power Narrow Linewidth Laser Diode Butterfly Package 1310/1550 nm DFB butterfly lasers feature high output power and narrow linewidth, widely applied in optical sensing, optical measurement and other fields.
Multi-mode Pulsed High Power Laser Diode TO-CAN with 27W Output Power and 1537nm Peak Wavelength
Multi-mode Pulsed High Power Laser Diode TO-CAN Product Overview Multi-mode Pulsed High Power Laser Diode TO-CAN delivers exceptional performance with pulsed operation, achieving a maximum output power of 27 W. The miniaturized TO package for free-space optics enables broad application scenarios across various industrial and manufacturing environments. Key Features High Output Power High Reliability Applications LiDAR Systems Laser Ranging
610-690nm Red Laser iTOF Ranging Module for Short-to-Medium Range Detection with Millimeter to Micrometer Accuracy
610-690nm Red Laser iTOF Ranging Module This product utilizes indirect Time-of-Flight (iToF) technology, specifically phase-difference laser ranging. It is engineered for short-to-medium range detection applications and delivers measurement accuracy ranging from millimeter to micrometer precision. Performance Specifications Type Parameter Value Performance Measuring Range 0.03m~60m (reflectivity: 1.0, Interference Light Intensity: 3kLux) Distance Unit mm Measurement Time 0.05
Tunable 14pin Butterfly Laser with 35nm Tuning Range, SM Fiber Pigtail, and 5dBm Output Power
Butterfly Tunable Laser with SM Fiber Pigtail Key Features Operating Bands: O-band, C-band, or L-band Tuning Range: 10-40nm Integrated Components: TEC and thermistor Control System: Simple tuning algorithm Form Factor: Small package size Fiber Type: Single-mode fiber Applications Test and measurement LIDAR systems Sensing applications Notes: 1. Output Power, For all channels. 2. Linewidth, Intrinsic Lorentzian linewidth,measured e.g.using a phase noise spectral density