Product Description
Discover unmatched versatility and cutting-edge efficiency with our cylindrical proximity sensor, available in both flush and non-flush installation types. Engineered for cost-effectiveness and simplicity, this sensor integrates sophisticated power inverse pole protection and short circuit protection features. Perfectly suited for use in a variety of applications such as automatic doors, factory automation, and logistics automation.
![Durable NPN PNP Inductive Switch with Nickel Plated Brass Shell Material](//www.micstatic.com/athena/img/transparent.png)
![Durable NPN PNP Inductive Switch with Nickel Plated Brass Shell Material](//www.micstatic.com/athena/img/transparent.png)
![Durable NPN PNP Inductive Switch with Nickel Plated Brass Shell Material](//www.micstatic.com/athena/img/transparent.png)
![Durable NPN PNP Inductive Switch with Nickel Plated Brass Shell Material](//www.micstatic.com/athena/img/transparent.png)
![Durable NPN PNP Inductive Switch with Nickel Plated Brass Shell Material](//www.micstatic.com/athena/img/transparent.png)
Experience a breakthrough in non-contact metal detection with our Inductive Proximity Switch. This budget-friendly solution empowers precise detection as metal objects approach or distance from the switch, automatically adjusting the signal to achieve precise detection. Discover the IM Series proximity sensor, which boasts outstanding features like high-performance metal cylindrical proximity sensors.
1. Integrated reverse polarity protection ensures seamless operation in diverse environments;
2. Advanced short circuit protection available in M8, M12, M18, M30 DC types;
3. Designed for long life with exceptional reliability;
4. Equipped with a yellow LED to provide clear indication of sensor operational status;
5. User-friendly design that combines affordability with ease of operation;
6. An ideal replacement for traditional micro switches and limit switches, enhancing performance and durability;
7. Features a power-on delay mechanism to effectively prevent false triggering.