IMP Series, Proximity Sensors

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24
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IMP
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ImageProduct DetailPriceAvailabilityECAD ModelOperating TemperatureTermination StyleShieldingPackage / CaseMaterial - BodyVoltage - SupplySensor TypeSensing DistanceOutput TypeResponse FrequencyIndicatorSeriesIngress Protection
IMP14-03BPOVC0S
INDUCT PROXIM SENSOR
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-25°C ~ 80°C
Connector
Unshielded
Cylinder, Threaded - M12
Stainless Steel
10V ~ 30V
Inductive
0.118" (3mm)
PNP-NC, 3-Wire
-
No Indicator
IMP
IP68
IMP12-1B5NOVC0D
INDUCT PROXIM SENSOR
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-25°C ~ 80°C
Connector
Unshielded
Cylinder, Threaded - M12
Stainless Steel
10V ~ 30V
Inductive
0.059" (1.5mm)
NPN-NC, 3-Wire
-
No Indicator
IMP
IP68
IMP14-03BNOVC0S
INDUCT PROXIM SENSOR
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-25°C ~ 80°C
Connector
Unshielded
Cylinder, Threaded - M12
Stainless Steel
10V ~ 30V
Inductive
0.118" (3mm)
NPN-NC, 3-Wire
-
No Indicator
IMP
IP68
IMP12-1B5NOVC0F
INDUCT PROXIM SENSOR
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-25°C ~ 80°C
Connector
Unshielded
Cylinder, Threaded - M12
Stainless Steel
10V ~ 30V
Inductive
0.059" (1.5mm)
NPN-NC, 3-Wire
-
No Indicator
IMP
IP68

About  Proximity Sensors

Proximity sensors are devices that are designed to detect the presence or absence of objects within a specified range. These sensors are essential in industrial and manufacturing settings, where they are used to monitor movement and ensure safety. The range of proximity sensors can vary from 0 inches (0 mm) up to 50 feet (15.2 m). The sensors utilize different detection principles, including capacitive, inductive, infrared, light, and ultrasonic. Capacitive sensors detect changes in capacitance caused by the presence of an object, while inductive sensors use electromagnetic fields to detect metallic objects. Infrared sensors utilize infrared light to detect objects, while light sensors rely on visible light. Ultrasonic sensors emit high-frequency sound waves and detect reflections from nearby objects. The output types of proximity sensors also vary depending on their specific applications. Analog current or voltage outputs are used for continuous measurement, while configurable outputs can be adjusted to specific settings. I2C outputs enable digital communication, while NC and NO outputs indicate whether the sensor is normally closed or normally open. NPN and PNP outputs are used to indicate the type of transistor used in the sensor, and push-pull and relay outputs are used to control external devices. Some sensors require an amplifier or SCR for signal conditioning or amplification. Proximity sensors are used in a variety of applications, including automated manufacturing and assembly lines, security systems, and robotics. They can also be used in consumer electronics, such as smartphones and tablets, to detect movement and adjust device settings accordingly. In summary, proximity sensors are crucial devices used to detect and respond to movement within a specified range. They utilize different detection principles and offer various output types to cater to specific application requirements. These sensors are used in industrial and manufacturing settings, as well as consumer electronics, to monitor movement and ensure safety and efficiency.