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[. . . ] Housing size
10. Operation mode
11. Specials (e. g. , cable material, oscillating frequency) 12. Cable length Blank: Connector type Numeral: Cable length
5. Sensing distance Numeral: Sensing distance: e. g. 02=2 mm, 16=16 mm
D-10
Inductive Sensors
Specifications
DC 3-wire Models / DC 4-wire (NO+NC)
Size Type M12 Shielded Non-shielded E2AX-M12@S04--C@ 4 mm ± 10% 8 mm ± 10% 0 to 3. 2 mm 0 to 6. 4 mm 10% max. [. . . ] (under load current of 100 mA with cable length of 2 m) NO type: Operation indicator (Yellow), Setting indicator (Red) NC type: Operation indicator (Yellow) -D1 models: NO -D2 models: NC Surget suppressor, Short circuit protection Operating: -40°C to 70°C, Storage: -40°C to 85°C (with no icing or condensation) ±10% max. of sensing distance at 23°C within temperature range of -25°C to 70°C ±15% max. of sensing distance at 23°C within temperature range of -40°C to 70°C Operating: 35% to 95%, Storage: 35% to 95% ±1% max. of sensing distance in rated voltage range ±15% 50 M min. (at 500 VDC) between current carry parts and case 1, 000 VAC at 50/60 Hz for 1 min between current carry parts and case 10 to 55 Hz, 1. 5-mm double amplitude for 2 hours each in X, Y and Z directions 1, 000 m/s2, 10 times each in X, Y and Z directions IP65 EMC after EN60947-5-2 ATEX after EN50014 EN50281-1-1/2 Please see chapter 'Connectivity' for details on different cable materials and lenghts and M8 or M12 connectors. 35 g Brass-nickel plated or stainless steel PBT Brass-nickel plated for brass models stainless steel for steel models
Connection method Weight (packaged) Material Pre-wired model Connector model Case Sensing surface Clamping nut
Note 1. The response frequency is an average value. Measurement conditions are as follows: standard target, a distance of twice the standard target distance between targets, and a setting distance of half the sensing distance. When using any model at an ambient temperature between -40°C and -25°C and a power voltage between 30 and 32 VDC, use a load current of 50 mA max. 200 g short body: long body: 200 g 260 g
Brass-nickel plated or stainless steel PBT brass-nickel plated for brass models stainless steel for steel models
Note 1. The response frequency is an average value. Measurement conditions are as follows: standard target, a distance of twice the standard target distance between targets, and a setting distance of half the sensing distance. When using any model at an ambient temperature between -40°C and -25°C and a power voltage between 30 and 32 VDC, use a load current of 50 mA max. For USA and Canada: Use class 2 circuit only.
D-14
Inductive Sensors
Engineering Data
Operating Range (Typical)
Shielded Models Sensing distance X (mm)
18 16 14 12 10 8 6 4 2 0 -30 -20 -10 5 0 -50 -40 -30 -20 -10 E2A-M12@S04 Y X E2A-M18@S08 E2A-M30@S15
Non-shielded Models Sensing distance X (mm)
35 E2A-M30LN30 30 Y 25 20 E2A-M18@N16 15 E2A-M12@N08 10 X E2A-M30KN20
0
10
20
30
0
10
20
30
40
50
Distance Y (mm)
Distance Y (mm)
Influence of Sensing Object Size and Materials
Shielded Models
E2AX-M12@S04/ E2A-S12@S04 Sensing distance X (mm)
5. 0
E2AX-M18@S08/E2A-S18@S08 Sensing distance X (mm)
8. 0 Iron 7. 0 6. 0 5. 0 4. 0 3. 0 2. 0 Brass Aluminum Copper Stainless steel (SUS303)
E2AX-M30@S15/ E2A-S30@S15 Sensing distance X (mm)
20
@d
X
t = 1 mm
Iron
@d
X
16
t = 1 mm
Iron
4. 0 Stainless steel (SUS303) 3. 0 Brass 2. 0 Aluminum Copper
12 Stainless steel (SUS303)
8
Brass Aluminum Copper
@d
X
t = 1 mm
4
1. 0 1. 0
0
5
10
15
20
25
30
35
0
10
20
30
40
50
60
0
10
20
30
40
50
60
70
80
Side length of sensing object d (mm)
Side length of sensing object d (mm)
Side length of sensing object d (mm)
E2AX
D-15
E2AX
Non-shielded Models
E2AX-M12@N08/E2A-S12@N08 Sensing distance X (mm)
10
E2AX-M18@N16/E2A-S18@N16 Sensing distance X (mm)
20
@d
X
8
t = 1 mm
Iron
@d
X
16
t = 1 mm
Iron
6 Stainless steel (SUS303) 4 Brass Aluminum 2 Copper
12
Stainless steel (SUS303)
8
Brass Aluminum Copper
4
0
10
20
30
40
50
0
20
40
60
80
Side length of sensing object d (mm) E2AX-M30KN20/E2A-S30KN20 Sensing distance X (mm)
25
Side length of sensing object d (mm) E2AX-M30LN30/E2A-S30LN30 Sensing distance X (mm)
35
@d
X t = 1 mm
Iron
@d
30
X
t = 1 mm
Iron
20
25 Stainless steel (SUS303) 20 Brass Aluminum Copper 10 5
15 Stainless steel (SUS303) 10 Brass Aluminum Copper 5
15
0
20
40
60
80
100
0
20
40
60
80
100
Side length of sensing object d (mm)
Side length of sensing object d (mm)
D-16
Inductive Sensors
Operation
DC 3-wire models
PNP Output
Operation mode Model
Non-sensing zone Sensing object (%) 100 Rated sensing distance ON OFF ON OFF 0
Proximity Sensor main circuits
Timing chart
Sensing zone
Output circuit
Proximity Sensor
+V
(See note 1. ) Load 0V
NO
E2AX-@-@-B1
Yellow indicator Control output
M12 Connector Pin Arrangement (See note)
1 2 3 4
Note: Pin 2 of the M12 connector is not used.
Non-sensing zone Sensing object (%) 100 Rated sensing distance
Sensing zone
Proximity Sensor
+V
0
Proximity Sensor main circuits
(See note 1. ) Load
NC
E2AX-@-@-B2
ON OFF ON OFF
Yellow indicator
0V
Control output
1 2 3
Non-sensing zone Sensing object (%) 100 Rated sensing distance ON OFF ON OFF ON OFF Load Yellow indicator NO output 0
Proximity Sensor main circuits
4
Note:
Pin 4 of the M12 connector is not used.
Sensing zone
Proximity Sensor
1
+V
4 NO output
Load
2
NC output
NO + NC
E2AX-@-@-B3
NC output
3
0V
M12 Connector Pin Arrangement
1 2 3 4
E2AX
D-17
E2AX
M12 Connector Pin Arrangement (See note)
DC 3-wire models
NPN Output
Operation mode Model
Non-sensing zone Sensing object (%) 100 Rated sensing distance 0
Proximity Sensor main circuits
Timing chart
Sensing zone
Output circuit
Proximity Sensor
Load (See note 1. ) +V
NO
E2AX-@-@-C1
ON OFF ON OFF
Yellow indicator Control output
0V
M12 Connector Pin Arrangement (See note)
1 2 3 4
Note: Pin 2 of the M12 connector is not used.
Non-sensing zone Sensing object (%) 100 Rated sensing distance
Sensing zone
Proximity Sensor
Load 0
Proximity Sensor main circuits
+V
(See note 1. )
NC
E2AX-@-@-C2
ON OFF ON OFF
Yellow indicator
0V
Control output
M12 Connector Pin Arrangement (See note)
1 2 3 4
Note: Pin 4 of the M12 connector is not used.
Non-sensing zone Sensing object (%) 100 Rated sensing distance
Sensing zone
Proximity Sensor
1
Load
Proximity Sensor main circuits
+V
4
NO output
0
Load ON OFF ON OFF ON OFF Yellow indicator NO output
2
NC output
NO + NC
E2AX-@-@-C3
NC output
3
0V
M12 Connector Pin Arrangement
1 2 3 4
D-18
Inductive Sensors
DC 2-wire models
Output Circuit Diagrams (Operation)
Operation mode Model
Non-sensing zone Sensing object (%) 100 Rated sensing distance 80 0
Timing chart
Sensing zone
Output circuit
Proximity Sensor
Load Brown +V
NO
E2AX-@-D1
ON OFF ON OFF ON OFF
Blue Yellow indicator Load can be connected to +V or 0V side. Red indicator Control output
0V
M12 Connector Pin Arrangement
1 2 3 4
Non-sensing zone Sensing object (%) 100 Rated sensing distance
Sensing zone
Proximity Sensor
Load
Brown
+V
0
NC
E2AX-@-D2
ON OFF ON OFF
Blue Yellow indicator Load can be connected to +V or 0V side. Control output
0V
M12 Connector Pin Arrangement
1 2 3 4
E2AX
D-19
E2AX
Dimensions
Note: All units are in millimeters unless otherwise indicated.
M12 Connector Models (Shielded)
E2AX-M12KS04-M1-/E2A-S12KS04-M1-@
48 34 17 4 7 M12×1
M12 Connector Models (Non-shielded)
E2AX-M12KN08-M1-4 7 M12×1
M12×1
Indicator (See note. ) Two, clamping nuts Note 1: Note 2: Operation indicator (yellow LED, 4×90°) for NO+NC (-B3 / -C3) models the total length is 4 mm longer M12×1
Indicator (See note. ) Two, clamping nuts Operation indicator (yellow LED, 4×90°) for NO+NC (-B3 / -C3) models the total length is 4 mm longer
Note 1: Note 2:
E2AX-M18KS08-M1-/E2A-S18KS08-M1-@
53 39 24 4 10 M12×1
E2AX-M18KN16-M1-/E2A-S18KN16-M1-@
53 24 10 39 4 10 M12×1
15. 3 dia. Indicator (See note. ) M18×1 Indicator (See note. ) Two, clamping nuts Note: Operation indicator (yellow LED, 4×90°) Note: Operation indicator (yellow LED, 4×90°) M18×1 Two, clamping nuts
E2AX-M30KS15-M1-/E2A-S30KS15-M1-@
58 44 36 5 10 M12×1
E2AX-M30KN20-M1- [. . . ] Check for loose wiring and connections, improper contacts, and line breakage. Check for attachment or accumulation of metal powder or dust. Check for abnormal temperature conditions and other environmental conditions. Check for proper lighting of indicators (for models with a set indicator. ) Never disassemble or repair the Sensor.
A B Non-shiel- A ded B
Wiring
High-tension Lines
Wiring through Metal Conduit: If there is a power or high-tension line near the cable of the Proximity Sensor, wire the cable through an independent metal conduit to prevent against Proximity Sensor damage or malfunctioning.
Environment
Water Resistivity
The Proximity Sensors are tested intensively on water resistance, but in order to ensure maximum performance and life expectancy avoid immersion in water and provide protection from rain or snow.
Operating Environment
Ensure storage and operation of the Proximity Sensor within the given specifications.
Inrush Current
A load that has a large inrush current (e. g. , a lamp or motor) will damage the Proximity Sensor, in which case connect the load to the Proximity Sensor through a relay.
<SUITABILITY FOR USE>
OMRON shall not be responsible for conformity with any standards, codes, or regulations that apply to the combination of the products in the customer's application or use of the products. [. . . ]
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