RECTANGULAR Proximity Sensors 1,163

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Part RoHS Manufacturer Sensors or Transducers Type Mounting Feature No. of Terminals Output Type Package Shape or Style Output Range Package Body Material Maximum Supply Voltage Maximum Output Current Technology Screening Level Input Mode Body Length/Diameter Body Width Power Supplies (V) Output Circuit Type Maximum Accuracy (%) Resistance Package Equivalence Code No. of Axes Sub-Category Linearity (%) Body Height Minimum Supply Voltage Maximum Operating Temperature Response Time Minimum Operating Temperature Sensitivity (mV/G) Terminal Finish Termination Type Output Interface Type Output (V) Maximum Operating Current Output Polarity Additional Features Maximum Measurement Range (mm) Housing JESD-609 Code Minimum Measurement Range (mm)

E3JK-TR11-C2M

Omron

PROXIMITY SENSOR,PHOTOELECTRIC

MOUNTING HOLE

RELAY

RECTANGULAR

264 V

50 mm

18 inch

50 mm

21.6 V

55 Cel

20000 us

-25 Cel

CABLE

IP 64

40000 mm

ABS

0 mm

E3JK-TP122M

Omron

PROXIMITY SENSOR,PHOTOELECTRIC

MOUNTING HOLE

PNP

RECTANGULAR

30 V

50 mm

18 inch

50 mm

10 V

55 Cel

1000 us

-25 Cel

CABLE

40 mA

IP 64, REVERSE POLARITY PROTECTION, SHORT CIRCUIT PROTECTION

5000 mm

ABS

0 mm

E3T-ST21M2M

Omron

LINEAR POSITION SENSOR,PHOTOELECTRIC,THROUGH BEAM

BOARD MOUNT/ PANEL MOUNT

NPN

RECTANGULAR

26.4 V

12.8 mm

7 inch

22 mm

10.8 V

55 Cel

1000 us

-25 Cel

WIRE

30 mA

IP 67, REVERSE POLARITY, SHORT CIRCUIT PROTECTION

300 mm

PBT

0 mm

E3Z-T86-IL2

Omron

PROXIMITY SENSOR,PHOTOELECTRIC

PNP

RECTANGULAR

30 V

20 mm

10.8 inch

31 mm

10 V

55 Cel

1000 us

-25 Cel

CONNECTOR

IO-LINK

50 mA

IP 67, REVERSE POLARITY PROTECTION, SHORT CIRCUIT PROTECTION

15000 mm

PBT

0 mm

E3T-ST11M2M

Omron

LINEAR POSITION SENSOR,PHOTOELECTRIC,THROUGH BEAM

BOARD MOUNT/ PANEL MOUNT

NPN

RECTANGULAR

26.4 V

12.8 mm

7 inch

22 mm

10.8 V

55 Cel

1000 us

-25 Cel

WIRE

30 mA

IP 67, REVERSE POLARITY, SHORT CIRCUIT PROTECTION

1000 mm

PBT

0 mm

E3S-AT312M

Omron

PROXIMITY SENSOR,PHOTOELECTRIC

BOARD MOUNT

PNP

RECTANGULAR

30 V

40 mm

12 inch

21 mm

10 V

55 Cel

500 us

-25 Cel

CABLE

20 mA

IP67, REVERSE POLARITY PROTECTION, SHORT CIRCUIT PROTECTION

7000 mm

PBT

0 mm

HSDL-9100-001

Broadcom

PROXIMITY SENSOR,PHOTOELECTRIC

SURFACE MOUNT

ANALOG CURRENT

RECTANGULAR

0.1mA

1.6 V

7.1 mm

2.75 inch

2.7 mm

1.5 V

85 Cel

-40 Cel

100 mA

60 mm

0 mm

APDS-9130-200

Broadcom

PROXIMITY SENSOR,PHOTOELECTRIC

SURFACE MOUNT

DIGITAL CURRENT

RECTANGULAR

3.6 V

4.94 mm

3.36 inch

3.5 mm

2.2 V

85 Cel

-30 Cel

SOLDER

2-WIRE INTERFACE

.25 mA

APDS-9190

Broadcom

PROXIMITY SENSOR,PHOTOELECTRIC

SURFACE MOUNT

RECTANGULAR

3.6 V

3.94 mm

2.36 inch

1.35 mm

2.5 V

85 Cel

-30 Cel

SOLDER

2-WIRE INTERFACE

.25 mA

APDS-9130-140

Broadcom

PROXIMITY SENSOR,PHOTOELECTRIC

SURFACE MOUNT

DIGITAL CURRENT

RECTANGULAR

3.6 V

4.94 mm

3.36 inch

2.8 mm

2.2 V

85 Cel

-30 Cel

SOLDER

2-WIRE INTERFACE

.25 mA

APDS-9950

Broadcom

PROXIMITY SENSOR,PHOTOELECTRIC

SURFACE MOUNT

RECTANGULAR

3.5 V

3.94 mm

2.36 inch

3

1.35 mm

2.5 V

85 Cel

-30 Cel

SOLDER

2-WIRE INTERFACE

.33 mA

Proximity Sensors

Proximity sensors are electronic sensors that are used to detect the presence or absence of an object in close proximity to the sensor. They work by detecting changes in the electromagnetic field around the sensor caused by the presence of an object. Proximity sensors are widely used in a variety of applications, such as industrial control systems, robotics, automotive, and consumer electronics.

There are several types of proximity sensors, including inductive sensors, capacitive sensors, magnetic sensors, and ultrasonic sensors. Inductive sensors use electromagnetic induction to detect metallic objects, while capacitive sensors use changes in capacitance to detect non-metallic objects. Magnetic sensors use changes in magnetic fields to detect metallic objects, and ultrasonic sensors use sound waves to detect objects.

Proximity sensors offer several advantages over other types of sensors. They are highly reliable and can operate in harsh environments and extreme temperatures. They are also non-contact sensors, which means they can detect objects without physical contact with the object being measured. Additionally, they can be used to detect objects of different shapes and sizes, making them highly versatile.

However, proximity sensors also have some limitations, such as limited range of operation and sensitivity to external disturbances. They can also be affected by the material composition and surface texture of the object being detected.