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Proximity Sensors Technical Guide

The following conditions must be considered to understand the conditions of the application and location as well as the relation to control 

equipment.

Model Selection

* mT (millitesla) is a unit for expressing magnetic flux density. One tesla is the equivalent of 10,000 gauss.

Precautions for Correct Use

Item

Points of consideration

Sensing
object and 
operating 
condition of 
Proximity 
Sensor

Electrical
conditions

Environ-
mental
conditions

Mounting
conditions

Influence of 
external 
electromag-
netic fields

The influence within a DC magnetic field is 20 mT

*

 max. Do not use the Sensor at a level higher than 20 mT.

Sudden changes in the DC magnetic field may cause malfunction. Do not use the Sensor for applications that involve turning a 
DC electromagnet ON and OFF.

Do not place a transceiver near the Sensor or its wiring. Doing so may cause malfunction.

Other con-
siderations

Cost feasibility: Price/delivery time

 Life: Power-ON time/frequency of use

Check the relation between the sensing object 
and the Proximity Sensor.

Sensing object

Proximity Sensor

Sensing

distance

Surrounding

 metals

Specific condi-
tions of object

Direction of ob-
ject movement

Peripheral metal

Sensing distance

Material, size, 
shape, existence 
of plating, etc.

Transit interval, 
speed, existence 
of vibration, etc.

Material, distance 
to Sensor, orien-
tation, etc.

Fluctuation in tran-
sit point, allowable 
error, etc.

Sensing (set) distance, shape of Sensor (rectangular, cylindrical, through-
beam, grooved), influence of peripheral metal (Shielded Sensors, Non-
shielded Sensors), response speed (response frequency), influence of 
temperature, influence of voltage, etc.

Verify the electrical conditions of the control system 
to be used and the electrical performance of the 
Proximity Sensor.

Load

Output

Pro

x

im

ity 

Sensor

P

o

w

er 

supply

Sw

itch

ing element

DC (voltage fluctuation, current ca-
pacity value)
AC (voltage fluctuation, frequency, etc.)
Need for S3D2 Controller

Power
supply

Selecting the power 
supply type

DC
DC + S3D2 Controller
AC

{

Resistive load - Non-contact control system
Inductive load - Relay, solenoid, etc.

Steady-state current, inrush current

Operating, reset voltage (current)

Lamp load

Steady-state current, inrush current

Open/close frequency

Load

Selecting the power 
supply type

DC
DC + S3D2 Controller
AC

Control output

Maximum current 
(voltage)

Leakage current
Residual load voltage

{

The environmental tolerance of the Proximity Sensor 
is better than that of other types of Sensors. However, 
investigate carefully before using a Proximity Sensor 
under harsh temperatures or in special atmospheres.

Water Resistance

Do not use the Sensor in water, rain, or outdoors.

Ambient Conditions

To maintain reliability of operation, do not use the 
Sensor outside the specified temperature range or 
outdoors. Even though the Proximity Sensor has a 
water-resistant structure, it must be covered to pre-
vent direct contact with water or water-soluble cutting 
oil. Do not use the Sensor in atmospheres with chem-
ical vapors, in particular, strong alkalis or acids (nitric 
acid, chromic acid, or hot concentrated sulfuric acid).

Explosive Atmospheres

Do not use the Sensor in atmospheres where 
there is a danger of explosion. Use an Explosion-
proof Sensor.

Temperature 
and humidity

Highest or lowest 
values, existence 
of direct sunlight, 
etc.

Temperature influence, 
high-temperature use, 
low temperature use, 
need for shade, etc.

Atmosphere

Water, oil, iron 
powder, or other 
special chemicals

Need for water resis-
tance or oil resistance,
need for explosion-
proof structure

Vibration and 
shock

Size, duration

Need for strength, 
mounting method

When deciding the mounting method, take into consideration not 
only restrictions due to mechanical devices, but also ease of main-
tenance and inspection, and interference between Sensors.

Wiring method, 
existence of in-
ductance surges

Connection

Wires
Wire type, length, oil-resistant 
cable, shielded cable, robot 
cable, etc.

Conduits, ducts, pre-wired, 
terminal wiring, ease of main-
tenance and inspection

Mounting procedure

Installation location

Existence of mounting 
brackets, direct mounting, 
secured with bolts or screws

Ease of maintenance and 
inspection, mounting space

http://www.ia.omron.com/

C-2

(c)Copyright OMRON Corporation 2007   All Rights Reserved. 

Содержание E2EC -

Страница 1: ...e also available The model numbers are E2EC 5 example E2EC CR8D15 DC 3 Wire Models Models with different frequencies are also available The model numbers are E2EC 5 example E2EC CR5D15 Accessories Ord...

Страница 2: ...proaching D1 Models NO D2 Models NC Refer to the timing charts under I O Circuit Diagrams on page 5 for details NO Refer to the timing charts under I O Circuit Diagrams on page 5 for details Protectio...

Страница 3: ...nce X mm Distance Y mm Sensing Head Y X 4 3 2 1 0 3 1 2 0 1 2 3 4 4 Distance X mm Distance Y mm Sensing Head Y X 6 5 4 3 2 1 0 4 2 0 2 4 Distance Y mm Distance X mm Sensing Head Y X 0 6 0 5 0 4 0 3 0...

Страница 4: ...er Brass Distance X mm Side length of sensing object d mm Stainless steel SUS304 Iron X 5 4 3 2 1 0 5 35 30 25 15 20 10 d d t 1 mm Distance X mm Side length of sensing object d mm Brass Copper Stainle...

Страница 5: ...tor green Operation indicator red Control output 0 V V Load Brown Blue Prox imity Sensor main circuit Note The load can be connected to either the V or 0 V side 0 100 Sensing object Rated sensing dist...

Страница 6: ...Permissible Tightening Range and Torque x The tightening torque applied to the E2EC X4D Threaded Cylindrical Models must be 12 N m max Amplifier Mounting Bracket for DC 2 Wire Models Mounting 1 Insert...

Страница 7: ...8 25 5 35 5 18 8 dia 5 4 24 2 1 10 3 6 1 6 dia shielded robotics cable Standard length 400 mm 2 9 dia vinyl insulated round robotics cable with 2 conductors Conductor cross section 0 15 mm2 Insulator...

Страница 8: ...round cable with 3 conductors Conductor cross section 0 2 mm2 Insulator diameter 1 2 mm Standard length 2 m 2 The cable can be extended up to 50 m separate metal conduit 3 2 5 dia shielded cable Stan...

Страница 9: ...t The load short circuit protection function op erates when the power supply is connected with the correct polarity and the power is within the rated voltage range DC 3 Wire NPN Output Sensors DC 2 Wi...

Страница 10: ...stive load Non contact control system Inductive load Relay solenoid etc Steady state current inrush current Operating reset voltage current Lamp load Steady state current inrush current Open close fre...

Страница 11: ...or is affected by magnetism or static capacitance from an adjacent Sensor and the output is unstable One means of avoiding interference when mounting Proximity Sensors close together is to alternate S...

Страница 12: ...o do not use a Proximity Sensor to turn the power supply ON and OFF for electronic devices that use DC half wave rectification In such a case use a relay to turn the power supply ON and OFF and check...

Страница 13: ...sert the front of the Sensor into the special Mounting Bracket included or DIN Track 2 Press the rear of the Sensor into the special Mounting Bracket or DIN Track When mounting the side of the Sensor...

Страница 14: ...in series with an AND circuit the limit is three Sensors Be careful of the VS value in the diagram at left OR parallel connection In general it is not possible to use two or more Proximity Sensors in...

Страница 15: ...M1J T is 5 V Model Type of connection Connection Description DC 3 wire AND series connection Keep the number of connected Sensors N within the range of the following equation iL N 1 i Upper limit of...

Страница 16: ...or hot concentrated sulfuric acid Maintenance and inspection Periodic Inspection To ensure long term stable operation of the Proximity Sensor inspect for the following on a regular basis Conduct these...

Страница 17: ...may be suitable for the products Outdoor use uses involving potential chemical contamination or electrical interference or conditions or uses not described in this catalog Nuclear energy control syst...

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