Technical Documents
Specifications
Brand
BannerProduct Type
Photoelectric Sensor
Sensor Style
Rectangular
Detection Type
Receiver
Output Type
PNP
Maximum DC Voltage
30V dc
Light Source
Infrared LED
Minimum Operating Temperature
-40°C
IP Rating
IP69K
Maximum Operating Temperature
70°C
Maximum Current
150mA
Standards/Approvals
CE, RoHS
Response Time
3ms
Hazardous Area Certification
No
Series
EZ-BEAM Q25
Housing Material
Thermoplastic
Detection Range
2 m
Country of Origin
United States
Product Details
The Banner Q25 series right angle base mount rectangle sensor features an infrared LED sensing beam and operates on dc power. designed for opposed sensing mode with a receiver configuration, it is housed in a rectangular thermoplastic casing. the sensor offers discrete input and output, with a maximum sensing distance of 20000 mm. it supports pnp outputs, making it ideal for a variety of applications requiring precise sensing over long distances.
Stock information temporarily unavailable.
818.10 MOP
818.10 MOP Each (ex VAT)
1
818.10 MOP
818.10 MOP Each (ex VAT)
Stock information temporarily unavailable.
1
Technical Documents
Specifications
Brand
BannerProduct Type
Photoelectric Sensor
Sensor Style
Rectangular
Detection Type
Receiver
Output Type
PNP
Maximum DC Voltage
30V dc
Light Source
Infrared LED
Minimum Operating Temperature
-40°C
IP Rating
IP69K
Maximum Operating Temperature
70°C
Maximum Current
150mA
Standards/Approvals
CE, RoHS
Response Time
3ms
Hazardous Area Certification
No
Series
EZ-BEAM Q25
Housing Material
Thermoplastic
Detection Range
2 m
Country of Origin
United States
Product Details
The Banner Q25 series right angle base mount rectangle sensor features an infrared LED sensing beam and operates on dc power. designed for opposed sensing mode with a receiver configuration, it is housed in a rectangular thermoplastic casing. the sensor offers discrete input and output, with a maximum sensing distance of 20000 mm. it supports pnp outputs, making it ideal for a variety of applications requiring precise sensing over long distances.