XX Series M18 With 90° Head Ultrasonic Sensor Replacement Sensing Distance 0.105 to 1 m M12 Connection
- Model
- XX Series | XXA18B1AM12, XXA18B1PM12, XXA18B1VM12, XXA18P1AM12, XXA18P1PM12, XXA18P1VM12, XXA18S1AM12, XXA18S1PM12, XXA18S1VM12
Item specifics
- Series:
- XX Series
- Size:
- M18
- Sensing Distance:
- 0.105 - 1 m
- Output Method:
- 4-20mA, PNP NO/NC, 0-10V
- Connection Type:
- M12
- Security level:
- IP67
- Material:
- Nickel plated brass, plastics, stainless steel
Review
Description
XX Series M18 With 90° Head Ultrasonic Sensor Replacement Sensing Distance 0.105 to 1 m M12 Connection Parameter
Brand | From network | DADISICK |
|
Models | XXA18B1AM12 | CSB18-1000-JA55-I-V15 | |
XXA18B1PM12 | CSB18-1000-JA55-E3-V15 | ||
XXA18B1VM12 | CSB18-1000-JA55-U-V15 | ||
5XXA18P1AM12 | CSB18-1000-JA55-I-V15 | ||
XXA18P1PM12 | CSB18-1000-JA55-E3-V15 | ||
XXA18P1VM12 | CSB18-1000-JA55-U-V15 | ||
XXA18S1AM12 | CSB18-1000-JA55-I-V15 | ||
XXA18S1PM12 | CSB18-1000-JA55-E3-V15 | ||
XXA18S1VM12 | CSB18-1000-JA55-U-V15 | ||
Thread Size | M18 | M18 | |
Sensing Distance | 0.105 - 1 m | 60 mm - 1000 mm | |
Output Method | 4-20mA, PNP NO/NC, 0-10V | 4-20mA, PNP NO/NC, 0-10V | |
Connector | M12 | M12 | |
Security level | IP67, IP65 | IP67 | |
Material | Nickel plated brass, plastics, stainless steel | Nickel plated copper | |
We are able to reproduce the specific connection configuration of each brand with high level of accuracy. |
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Product recommendations
FAQ
1.What precautions should be taken when using ultrasonic sensors in outdoor environments?
A: When used outdoors, it is important to consider the ambient temperature, humidity, and wind speed in order to ensure optimal sensor performance. The selection of waterproof and dustproof designs for ultrasonic sensors can enhance their reliability in harsh environments.
2. Please describe the operational principles of an ultrasonic sensor.
A: An ultrasonic sensor emits ultrasonic waves, which are reflected back when they encounter an object. The sensor then receives the reflected waves and calculates the distance to the object based on the travel time of the waves.
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