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Long sensing distance that is approximately 8 times that of our conventional model (for the Through-beam and Diffuse-reflective models). (Through-beam: 40 m, Retro-reflective: 7 m, and Diffuse-reflective: 2.5...
Long sensing distance that is approximately 8 times that of our conventional model (for the Through-beam and Diffuse-reflective models). (Through-beam: 40 m, Retro-reflective: 7 m, and Diffuse-reflective: 2.5...
DS-G Long sensing distance that is approximately 8 times that of our conventional model (for the Through-beam and Diffuse-reflective models). (Through-beam: 40 m, Retro-reflective: 7 m, and Diffuse-reflective:...
DS-G Long sensing distance that is approximately 8 times that of our conventional model (for the Through-beam and Diffuse-reflective models). (Through-beam: 40 m, Retro-reflective: 7 m, and Diffuse-reflective:...
Long sensing distance that is approximately 8 times that of our conventional model (for the Through-beam and Diffuse-reflective models). (Through-beam: 40 m, Retro-reflective: 7 m, and Diffuse-reflective: 2.5...
Long sensing distance that is approximately 8 times that of our conventional model (for the Through-beam and Diffuse-reflective models). (Through-beam: 40 m, Retro-reflective: 7 m, and Diffuse-reflective: 2.5...
Long sensing distance that is approximately 8 times that of our conventional model (for the Through-beam and Diffuse-reflective models). (Through-beam: 40 m, Retro-reflective: 7 m, and Diffuse-reflective: 2.5...
DS-G Long sensing distance that is approximately 8 times that of our conventional model (for the Through-beam and Diffuse-reflective models). (Through-beam: 40 m, Retro-reflective: 7 m, and Diffuse-reflective:...
DS-G Long sensing distance that is approximately 8 times that of our conventional model (for the Through-beam and Diffuse-reflective models). (Through-beam: 40 m, Retro-reflective: 7 m, and Diffuse-reflective:...
DS-G Long sensing distance that is approximately 8 times that of our conventional model (for the Through-beam and Diffuse-reflective models). (Through-beam: 40 m, Retro-reflective: 7 m, and Diffuse-reflective:...
DS-G Long sensing distance that is approximately 8 times that of our conventional model (for the Through-beam and Diffuse-reflective models). (Through-beam: 40 m, Retro-reflective: 7 m, and Diffuse-reflective:...
Long sensing distance that is approximately 8 times that of our conventional model (for the Through-beam and Diffuse-reflective models). (Through-beam: 40 m, Retro-reflective: 7 m, and Diffuse-reflective: 2.5...
Fiber Amplifier/Small production sensing 3mm Fiber Amplifier/Small production sensing DS-G Long sensing distance that is approximately 8 times that of our conventional model (for the Through-beam and Diffuse...
... tempered glass). The non-reflective glass which adopting advanced magnetron sputtering vacuum coating technology, coating the Nano optics multilayer film on the glass surface, it can enhance the transmittan...
Nd:YAG Laser Output Coupler, Partially Reflective Mirrors, Various Transmittances Overview: Nd:YAG Laser Output Couplers are partially reflective mirrors used in laser cavities to transmit a portion of the reso...
...Reflective Film/Reflective Sheeting Roll Product Parameters Reflective film is a special structure PVC film that uses optical principles to retroreflect light back to the light source. It comes in many types...
...Reflective Vinyl 10 Year Red White Dot-C2 Reflective Tape Conspicuity Tape for Truck Certified to meet rigorous U.S. DOT-C2 and ASTM4956 standards, this high-performance reflective tape delivers unmatched ni...
... sensors used the photoelectric effect. However, with the mature application of TOF technology in mobile phone face recognition, AGV, drones and other industries, the technology has gradually been decentrali...
...Sensor UART TTL Introduction Long range laser distance sensor is a modern tool that uses laser for measurement, and it can measure the target more accurately. The laser distance sensor long range can emit a ...
... to reflect incident light. Using a high-reflection mirror can double the output power of the laser; and it is reflected by the first reflecting surface. If an ordinary mirror is used as the second reflectin...