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PDF E2EL Data sheet ( Hoja de datos )

Número de pieza E2EL
Descripción Cylindrical Proximity Sensor
Fabricantes Omron Electronics 
Logotipo Omron Electronics Logotipo



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Cylindrical Proximity Sensor
A new series of easy–to–use models for
standard– and double–distance
Stainless steel and brass housing
Two housing length for each type
Pre–wired and Plug–in connector types
Short–circuit protection and reverse pola-
rity protection
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E2EL
Ordering Information
Cable types
Brass housing
Diameter Length
6,5
M8
M12
30 mm
32 mm
45 mm
47 mm
30 mm
32 mm
45 mm
47 mm
41 mm
53 mm
M18 40 mm
73 mm
M30 40 mm
80 mm
Mounting
Sensing
Distance
Shielded
Non–shielded
Shielded
Non–shielded
Shielded
Non–shielded
Shielded
Non–shielded
Shielded
Shielded
Non–shielded
Shielded
Shielded
Non–shielded
Shielded
Shielded
Non–shielded
Shielded
Shielded
Non–shielded
Shielded
Non–shielded
Shielded
Non–shielded
1,5 mm
2,0 mm
1,5 mm
2,0 mm
1,5 mm
2,0 mm
1,5 mm
2,0 mm
2,0 mm
4,0 mm
4,0 mm
2,0 mm
4,0 mm
4,0 mm
5,0 mm
8,0 mm
8,0 mm
5,0 mm
8,0 mm
8,0 mm
10,0 mm
15,0 mm
10,0 mm
15,0 mm
NPN / NO
E2EL–C1R5E1 2M
E2EL–C2ME1 2M
E2EL–C1R5E1–L 2M
E2EL–C2ME1–L 2M
E2EL–X1R5E1 2M
E2EL–X2ME1 2M
E2EL–X1R5E1–L 2M
E2EL–X2ME1–L 2M
E2EL–X2E1 2M
E2EL–X4E1–D 2M
E2EL–X4ME1 2M
E2EL–X2E1–L 2M
E2EL–X4E1–DL 2M
E2EL–X4ME1–L 2M
E2EL–X5E1 2M
E2EL–X8E1–D 2M
E2EL–X8ME1 2M
E2EL–X5E1–L 2M
E2EL–X8E1–DL 2M
E2EL–X8ME1–L 2M
E2EL–X10E1 2M
E2EL–X15ME1 2M
E2EL–X10E1–L 2M
E2EL–X15ME1–L 2M
Output
NPN / NC
E2EL–C1R5E2 2M
PNP / NO
E2EL–C1R5F1 2M
E2EL–C2ME2 2M E2EL–C2MF1 2M
E2EL–C1R5E2–L 2M E2EL–C1R5F1–L 2M
E2EL–C2ME2–L 2M E2EL–C2MF1–L 2M
E2EL–X1R5E2 2M E2EL–X1R5F1 2M
E2EL–X2ME2 2M E2EL–X2MF1 2M
E2EL–X1R5E2–L 2M E2EL–X1R5F1–L 2M
E2EL–X2ME2–L 2M E2EL–X2MF1–L 2M
E2EL–X2E2 2M
E2EL–X2F1 2M
E2EL–X4E2–D 2M E2EL–X4F1–D 2M
E2EL–X4ME2 2M E2EL–X4MF1 2M
E2EL–X2E2–L 2M E2EL–X2F1–L 2M
E2EL–X4E2–DL 2M E2EL–X4F1–DL 2M
E2EL–X4ME2–L 2M E2EL–X4MF1–L 2M
E2EL–X5E2 2M
E2EL–X5F1 2M
E2EL–X8E2–D 2M E2EL–X8F1–D 2M
E2EL–X8ME2 2M E2EL–X8MF1 2M
E2EL–X5E2–L 2M E2EL–X5F1–L 2M
E2EL–X8E2–DL 2M E2EL–X8F1–DL 2M
E2EL–X8ME2–L 2M E2EL–X8MF1–L 2M
E2EL–X10E2 2M
E2EL–X10F1 2M
E2EL–X15ME2 2M E2EL–X15MF1 2M
E2EL–X10E2–L 2M E2EL–X10F1–L 2M
E2EL–X15ME2–L 2M E2EL–X15MF1–L 2M
PNP / NC
E2EL–C1R5F2 2M
E2EL–C2MF2 2M
E2EL–C1R5F2–L 2M
E2EL–C2MF2–L 2M
E2EL–X1R5F2 2M
E2EL–X2MF2 2M
E2EL–X1R5F2–L 2M
E2EL–X2MF2–L 2M
E2EL–X2F2 2M
E2EL–X4F2–D 2M
E2EL–X4MF2 2M
E2EL–X2F2–L 2M
E2EL–X4F2–DL 2M
E2EL–X4MF2–L 2M
E2EL–X5F2 2M
E2EL–X8F2–D 2M
E2EL–X8MF2 2M
E2EL–X5F2–L 2M
E2EL–X8F2–DL 2M
E2EL–X8MF2–L 2M
E2EL–X10F2 2M
E2EL–X15MF2 2M
E2EL–X10F2–L 2M
E2EL–X15MF2–L 2M
1

1 page




E2EL pdf
E2EL
Engineering Data
Standardized characteristic for lateral approach
standard target
1,2
axial
approach
1
0,8
E2EL
’switch–on’ curve
switch–off’ curve
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lateral approach
0,6
on
0,4
off
0,2
0
–1 –0,8 –0,6 –0,4 –0,2
0
0,2 0,4 0,6 0,8
lateral distance related to radius of ’active surface’ (r/ract)
Output Circuit Diagram and Timing Chart
E2EL–XjEj
NPN Output
E2EL-XjFj
PNP Output
Brown 1
Main
circuit
4,7 k
Load
Black 4 (or 2)
Blue 3
Main
circuit
4,7 k
Brown 1
Black 4 (or 2)
Load
Blue 3
0V
1
E2EL–XjEj
NPN Output
Sensing object
Yellow indicator
Control output
Yes
No
Lit
Not lit
ON
OFF
NO
NC
E2EL–XjFj
PNP Output
Sensing object
Yellow indicator
Control output
Yes
No
Lit
Not lit
ON
OFF
NO
NC
5

5 Page





E2EL arduino
E2EL
Item
AND
(serial
connection)
www.DataSheet4UO.Rcom
(parallel
connection)
Examples
E2EL
Item
The Sensors connected together must satisfy the
following conditions:
iL + (N–1) x i = Upper–limit of control output of each
Sensor
VS – N x VR = Load operating voltage
N = No. of Sensors
VR =
VS =
i=
Residual voltage of each Sensor
Supply voltage
Current consumption of the Sensor
iL = Load current
If the MY Relay, which operate at 24 VDC, is used as a
load for example, a maximum of two Proximity Sensors
can be connected to the load.
The number of Sensors connected in parallel varies with
the Proximity Sensor model.
Effects of Surrounding Metal
Shielded types:
Shielded types allow direct installation on metal plates in an em-
bedded manner without performance change. A minimum distance
of 3sn is required between the active surface and a metallic surface
in front of the device. (Fig. 1).
For SUS shielded types the following minimum distances are re-
quired to avoid performance change (see Fig.2 and table below):
Shielded SUS Types
E2EL–C2j–DS
E2EL–X2j–DS
E2EL–X4j–DjS
E2EL–X8j–DjS
0,5 mm
0,5 mm
1,0 mm
2,0 mm
Free zone
w3sn
Non–shielded types:
Installation of non–shielded types in metal require the minimum di-
stances according to Fig. 3.
w3sn w2sn
d w3d
Fig.3: Non–shielded type
Fig.1: Shielded type (except SUS)
Freezone
w3sn
Fig.2: Shielded SUS type
11

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