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Sick IME30-15BPOZC0S Proximity Sensor

The Sick IME30-15BPOZC0S proximity sensor provides 15 mm sensing range with M30 housing and PNP NC output for automation. This IME30-15BPOZC0S Sick M30 Non Flush Proximity Sensors model from Sick proximity sensor range belongs to the IME series and supports flush installation, 500 Hz switching frequency, M12 4-pin connector, and IP67 enclosure rating for industrial automation.

BrandSick
Product TypeProximity Sensor
ProductIME30-15BPOZC0S

Sick IME30-15BPOZC0S Proximity Sensor – Technical Specifications

SpecificationValue
HousingCylindrical thread design, Standard design
Thread sizeM30 x 1.5
DiameterØ 30 mm
Sensing range Sn15 mm
Safe sensing range Sa12.15 mm
Installation typeFlush
Switching frequency500 Hz
Connection typeMale connector M12, 4-pin
Switching outputPNP
Output functionNC
Electrical wiringDC 3-wire
Enclosure ratingIP67 1)
Items suppliedMounting nut, brass, nickel-plated (2x)

The IME30-15BPOZC0S Sick M30 Non Flush Proximity Sensors variant is an inductive proximity sensor engineered for industrial automation environments. This model features a 15 mm sensing range, M30 x 1.5 cylindrical housing, PNP normally closed output, and DC 3-wire electrical wiring. The IME30-15BPOZC0S is part of the IME series and aligns with standardized sensing requirements.

In conveyor systems, packaging machines, automated assembly lines, and material handling equipment, the IME30-15BPOZC0S proximity sensor delivers consistent metal detection. Its defined switching frequency supports stable signal response in repetitive automation cycles, while the connector-based interface allows structured installation and simplified maintenance in control panels.

The IME30-15BPOZC0S proximity sensor reflects Sick engineering consistency and controlled sensing behavior. With IP67 enclosure protection, standardized IME series construction, and predictable electrical output, it is suitable for long-term industrial use. Sick proximity sensors are commonly specified where reliability, mechanical strength, and electrical stability are required.