Technical Documents
Specifications
Brand
OmronProduct Type
Reflective Optical Sensor
Peak Sensor Distance
3mm
Output Device
Phototransistor
Typical Rise Time
20μs
Typical Fall Time
20μs
Mount Type
Surface
Standards/Approvals
No
Maximum Operating Temperature
85°C
Minimum Operating Temperature
-25°C
Automotive Standard
No
Country of Origin
China
Product Details
The Omron photomicrosensor has built-in lens achieves 3 mm focal length acts as small surface mounting type reflection sensor. The photomicrosensor is a compact optical sensor that senses objects or object positions with an optical beam. The transmissive photomicrosensor and reflective photomicrosensor are typical photomicrosensors. When an object is located in the sensing position between the emitter and the detector, the object intercepts the optical beam of the emitter, thus reducing the amount of optical energy reaching the detector. When an object is located in the sensing area of the reflective photomicrosensor, the object reflects the optical beam of the emitter, thus changing the amount of optical energy reaching the detector.
Stock information temporarily unavailable.
AED 9,630.00
AED 9.63 Each (On a Reel of 1000) (ex VAT)
AED 10,111.50
AED 10.112 Each (On a Reel of 1000) (inc. VAT)
1000
AED 9,630.00
AED 9.63 Each (On a Reel of 1000) (ex VAT)
AED 10,111.50
AED 10.112 Each (On a Reel of 1000) (inc. VAT)
Stock information temporarily unavailable.
1000
Technical Documents
Specifications
Brand
OmronProduct Type
Reflective Optical Sensor
Peak Sensor Distance
3mm
Output Device
Phototransistor
Typical Rise Time
20μs
Typical Fall Time
20μs
Mount Type
Surface
Standards/Approvals
No
Maximum Operating Temperature
85°C
Minimum Operating Temperature
-25°C
Automotive Standard
No
Country of Origin
China
Product Details
The Omron photomicrosensor has built-in lens achieves 3 mm focal length acts as small surface mounting type reflection sensor. The photomicrosensor is a compact optical sensor that senses objects or object positions with an optical beam. The transmissive photomicrosensor and reflective photomicrosensor are typical photomicrosensors. When an object is located in the sensing position between the emitter and the detector, the object intercepts the optical beam of the emitter, thus reducing the amount of optical energy reaching the detector. When an object is located in the sensing area of the reflective photomicrosensor, the object reflects the optical beam of the emitter, thus changing the amount of optical energy reaching the detector.