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Allen-Bradley - 12 mm Barrel Inductive Prox Sensor - 872C-MH4NP12-E2

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Allen-Bradley - 12 mm Barrel Inductive Prox Sensor
£38.63

/ each

£38.63

1

Delivery

Number of available items for delivery:0

Essential specifications

  • Switching distance - 4 mm

  • Type of switch function - Normally open contact (NO)

  • Coating housing - Nickel-plated

  • Supply voltage - 24...24 V

  • Diameter sensor - 12 mm

Packaging

  • 1 each

GTIN

10662074946867

Supplier Ref

872C-MH4NP12-E2

Manufacturer Ref

872C-MH4NP12-E2

Commercial Reference

872C-MH4NP12-E2

Switching distance:

4 mm

Type of switch function:

Normally open contact (NO)

Coating housing:

Nickel-plated

Supply voltage:

24...24 V

Diameter sensor:

12 mm

Type of switching output:

PNP

Type of electric plug connection:

Cable

Type of actuation:

Metallic Target

Construction type housing:

Cylinder, screw-thread

Max. output current at protected output:

200 mA

Rated control supply voltage Us at DC:

10...30 V

Voltage type:

DC

Switching frequency:

1300 Hz

Material housing:

Metal

Proximity Sensor, 3-Wire DC, Extended Range Short Barrel, 12mm Diameter, Tubular:Nickel Plated Brass, Short, 4mm Sensing Distance, Shielded, N.O., Source (PNP) Output, PVC Cable (5 Cond)


  • 10…30V DC Operating voltage
  • 6.5 mm (smooth barrel)
  • 8 mm, 12 mm, 18 mm, and 30 mm (threaded barrel)
  • Shielded and unshielded versions (6.5 mm shielded only, 8 mm unshielded only)
  • Up to three times the sensing range of standard range inductive sensors
  • PNP or NPN units (all units normally open)
  • 3-pin Pico QD or 4-pin micro QD connectors
  • -25...+70˚ C operating temperature
  • IP67 enclosure rating
  • Short circuit, false pulse, reverse polarity and transient noise protection
  • cULus and CE marked for applicable directives
  • The most common cause of sensor failure is contact with the intended
  • target. Sensors with a longer range can be used to eliminate and/or limit
  • contact with the target, thus reducing the cost associated with replacing damaged sensors (cost of the sensor, maintenance time, and lost production).
  • Achieve the same sensing range with a smaller sensor. Smaller diameter
  • sensors may be a superior physical fi t for your application. Additionally,
  • you may now be able to use a sensor in a previously inaccessible area.
  • Solve previously unsolvable applications, especially in diffi cult environments where other sensors may not be reliable.