Sick IME12-02BPSZW6K Proximity Sensor
The Sick IME12-02BPSZW6K proximity sensor offers 2 mm sensing range, M12 short-body housing, flush mounting, and PNP NO output. Manufactured by Sick, this Sick Proximity Sensor belongs to the IME series and supports 2,000 Hz switching frequency, DC 3-wire wiring, IP67 enclosure, and a 10 m cable connection.
| Brand | Sick |
| Product Type | Proximity Sensor |
| Product | IME12-02BPSZW6K |
Sick IME12-02BPSZW6K Proximity Sensor β Technical Specifications
| Specification | Value |
|---|---|
| Housing | Cylindrical thread design, Short-body |
| Thread size | M12 x 1 |
| Diameter | Γ 12 mm |
| Sensing range Sn | 2 mm |
| Safe sensing range Sa | 1.62 mm |
| Installation type | Flush |
| Switching frequency | 2,000 Hz |
| Connection type | 10 m Cable |
| Switching output | PNP |
| Output function | NO |
| Electrical wiring | DC 3-wire |
| Enclosure rating | IP67 1) |
| Items supplied | Mounting nut, brass, nickel-plated (2x) |
The IME12-02BPSZW6K Sick 10 m Cable Proximity Sensor is an inductive proximity sensor designed for compact industrial automation systems. This Sick proximity sensor provides a 2 mm sensing range, M12 short-body cylindrical housing, flush installation, and PNP normally open output. As part of the IME series, the IME12-02BPSZW6K proximity sensor is used in standard industrial control environments.
The IME12-02BPSZW6K proximity sensor is commonly applied in conveyors, packaging equipment, automated assembly stations, and compact machinery. Its stable switching frequency enables consistent detection, while DC 3-wire electrical wiring ensures dependable signal transmission in industrial automation applications.
The Sick IME12-02BPSZW6K proximity sensor delivers reliable inductive sensing performance for industrial use. As a member of the IME series, this Sick proximity sensor combines defined sensing distance, protected enclosure design, and stable electrical characteristics. These features make it suitable for proximity sensing tasks in industrial automation systems.

