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15

E3F2

Safety precautions

This product is not designed or rated for directly or 
indirectly ensuring safety of persons. Do not use it for 
such a purpose.

Do not use the product with voltage in excess of the 
rated voltage. Excess voltage may result in malfunc-
tion or fire.

Never use the product with an AC power supply. 
Otherwise, explostion may result.

When cleaning the product, do not apply a high-pres-
sure spray of water to one part of the product. Other-
wise, parts may become damaged and the degree of 
protection may be degraded.

High-temperature environments may result in burn 
injury.

The following precautions must be observed to ensure safe 
operation of the Sensor.

Operating Environment

Do not use the Sensor in an environment where explosive or 
flammable gas is present.

Connecting Connectors

Be sure to hold the connector cover when inserting or removing 
the connector. Be sure to tighten the connector lock by hand; 
do not use pliers or other tools. If the tightening is insufficient, the 
degree of protection will not be maintained and the Sensor may 
become loose due to vibration. The appropriate tightening torque 
is 0.

3

9 to 0.49 N·m for M12 connectors.

Load

Do not use a load that exceeds the rated load.

Rotation Torque for Sensitivity Adjustment

Adjust with a torque of 0.05 N·m or less.

Environements with Cleaners and Disinfectants 
(e.g., Food Processing Lines)

Do not use the Sensor in environments subject to cleaners and 
disifectants. They may reduce the degree of protection.

Modifications

Do not attempt to disassemble, repair, or modify the Sensor.

Outdoor Use

Do not use the Sensor in locations subject to direct sunlight.

Cleaning

Do not use thinner, alcohol, or other organic solvents. Otherwise, 
the optical properties and degree of protection may be degraded.

Surface Temperature

Burn injury may occur. The Sensor surface temperature rises de-
pending on application conditions, such as the surrounding tem-
perature and the power supply voltage. Use caution when 
operating or washing the Sensor.

Do not use the Sensor in any atmosphere or environment that 
exceeds the ratings.

Do not install the Sensor in the following locations.

(1) Locations subject to direct sunlight
(2) Locations subject to condensation due to high humidity
(

3

) Locations subject to corrosive gas

(4) Locations where the Sensor may receive direct vibration or 

shock

Connecting and Mounting

(1) The maximum power supply voltage is 

3

0 VDC. Before turning 

the power ON, make sure that the power supply voltage does 
not exceed the maximum voltage.

(2) Laying Sensor wiring in the same conduit or duct as high-volt-

age wires or power lines may result in malfunction or damage 
due to induction. As a general rule, wire the Sensor in a sepa-
rate conduit or use shielded cable.

(

3

) Use an extension cable with a minimum thickness of 0.

3

 mm

2

 

and less than 100 m long.

(4) Do not pull on the cable with excessive force.
(5) Pounding the Photoelectric Sensor with a hammer or other 

tool during mounting will impair water resistance.

(6)Mount the Sensor using  a bracket (sold separately). 

Do not exceed a torque of 2.0 Nm when tightening mounting 
nuts for plastic models or 20.0 Nm when tightening mounting 
nuts for metal models

(7) Be sure to turn OFF the power supply before inserting or re-

moving the connector.

Cleaning

Never use thinner or other solvents. Otherwise, the Sensor sur-
face may be dissolved.

Power Supply

If a commercial switching regulator is used, ground the FG (frame 
ground) terminal.

Power Supply Reset Time

The Sensor will be able to detect objects 100 ms after the power 
supply is tuned ON. Start using the Sensor 100 ms or more after 
turning ON the power supply. If the load and the Sensor are con-
nected to separate power supplies, be sure to turn ON the Sensor 
first.

Turning OFF the Power Supply

Output pulses may be generated even when the power supply is 
OFF. Therefore, it is recommended to first turn OFF the power 
supply for the load or the load line.

Load Short-circuit Protection

This Sensor is equipped with load short-circuit protection, but be 
sure to not short circuit the load. Be sure to not use an output cur-
rent flow that exceeds the rated current. If a load short circuit oc-
curs, the output will turn OFF, so check the wiring before turning 
ON the power supply again. The short-circuit protection circuit will 
be reset.

Water Resistance

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

!

 Warning

!

 Caution

Precautions for Safe Use

Precautions for Correct Use

Содержание E3F2 -

Страница 1: ...l beam models High power LED to compensate for dirt and misalignment Performance and portfolio variety 1 SUS types see seperate datasheet 2 AC types see seperate datasheet 7 m 7 m 3 m Plastic Shape Se...

Страница 2: ...ed wide beam 2 m E3F2 DS10B4 N 2M E3F2 DS10C4 N 2M E3F2 DS10B4 P1 E3F2 DS10C4 P1 0 3 m adjustable 2 m E3F2 DS30B4 2M E3F2 DS30C4 2M E3F2 DS30B4 P1 E3F2 DS30C4 P1 1 m adjustable 2 m E3F2 D1B4 2M E3F2 D...

Страница 3: ...ical 1 1 Values in parentheses indicate the minimum required distance between the sensor and reflector Remark Order code Reflectors 3 m 100 mm axial types 2 m 100 mm radial types 60 x 40 mm E39 R1 4 m...

Страница 4: ...ion resistance 10 to 55 Hz 1 5 mm double amplitude for 2 hrs each direction X Y Z Shock resistance Destruction 500 m s2 each direction X Y Z Degree of protection 1 1 The IP69k test according to DIN 40...

Страница 5: ...5 3 0 0 50 100 50 100 Distance Y mm Distance X m 4 3 5 typical sensing distances E39 R1 2 4 m E39 R7 2 7 m E39 R8 3 1 m X Y Reflector 20 40 60 80 100 120 0 0 5 10 15 5 10 15 Distance Y mm Distance X m...

Страница 6: ...Gain Reflectors E39 RS3 E39 R1S E39 R40 E39 R7 E39 R8 1 2 3 4 5 0 100 10 1 0 1 Excess gain Distance X m reflector E39 R1 reflector E39 R7 reflector E39 R8 20 40 60 80 100 120 0 100 10 1 0 1 Excess ga...

Страница 7: ...g distance Background suppression Models E3F2 LS 0 2 4 6 0 50 100 150 Distance mm Spot diameter mm 20 00 10 00 0 00 10 00 20 00 40 30 20 10 0 10 20 30 40 Incline Angle Sensing Distence movement 20 00...

Страница 8: ...ase Output indicator red Output transistor Load relay Light indicator Red Main circuit 1 2 3 4 1 2 3 4 Connector Pin Arrangement 10 to 30 VDC 100 mA max Load 0 V Mode selection Brown Black Blue Pink Z...

Страница 9: ...30 VDC 100 mA max Load 0 V Mode selection Brown Black Blue Pink ZD VZ 36 V Stability indicator Green Only on models E3F2 R4C4 and E3F2 D1C4 Incident Interrupted ON OFF ON OFF Operate Release Output in...

Страница 10: ...0 4 E3F2 D1 4 E3F2 R4 E3F2 DS30 4 P1 E3F2 D1 4 P1 E3F2 R4 P1 4 8 dia 37 42 3 64 9 M18x1 6g Light indicator 5 4 8 16 4 dia 6 2 22 24 4 dia optical area 5 4 8 M18x1 6g Light indicator 4 7 dia 42 3 37 M1...

Страница 11: ...a 4 8 dia 4 dia 6 9 3 45 24 22 optical area 13 2 5 4 8 M18x1 6g Light indicator 4 7 dia 42 3 37 M12x1 6g 16 6 dia 73 62 6 9 optical area 24 13 2 22 3 45 37 42 3 49 3 M18x1 6g Light indicator Sensitivi...

Страница 12: ...0 4 M1 M E3F2 R4 4 M1 M E3F2 D1 4 M1 M 4 8 dia 37 42 3 64 9 Light indicator 16 4 dia 4 dia 4 M18x1 6g 24 27 7 6 2 optical area 37 42 3 Light indicator 4 8 dia 76 16 4 dia M12x1 6g 4 M18x1 6g 24 27 7 6...

Страница 13: ...dia 4 M18x1 6g 6 9 optical area 24 3 45 27 7 13 2 37 42 3 Light indicator 4 8 dia 76 16 4 dia M12x1 6g 4 M18x1 6g 65 5 6 9 24 27 7 3 45 13 2 optical area 37 42 3 49 3 64 9 Light indicator Sensitivity...

Страница 14: ...39 F31 Material reflective surface acrylic Rear surface ABS 34 40 3 52 59 9 2 7 8 1 6 7 5 7 Two 3 5 dia 4 5 84 7 4 f for M3 for M3 9 100 100 92 92 for M3 8 7 84 5 84 5 77 77 80 4 R1 70 0 6 Adhesive ta...

Страница 15: ...following locations 1 Locations subject to direct sunlight 2 Locations subject to condensation due to high humidity 3 Locations subject to corrosive gas 4 Locations where the Sensor may receive direc...

Страница 16: ...isted may be suitable for the products Outdoor use uses involving potential chemical contamination or electrical interference or conditions or uses not described in this document Nuclear energy contro...

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