E2EX10Y1 Omron, E2EX10Y1 Datasheet - Page 48

PROXIMITY SWITCH, M30, AC

E2EX10Y1

Manufacturer Part Number
E2EX10Y1
Description
PROXIMITY SWITCH, M30, AC
Manufacturer
Omron
Datasheet

Specifications of E2EX10Y1

Svhc
No SVHC (15-Dec-2010)
Frequency Response Max
25Hz
Sensing Range Max
10mm
Sensor Input
Inductive
Supply Voltage Ac Max
240V
Approval Bodies
UL
External Length / Height
48mm
Ip/nema Rating
IP67
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Cat. No. D058-E1-1D In the interest of product improvement, specifications are subject to change without notice.
OMRON Corporation
Industrial Automation Company
Industrial Sensors Division
Sensing Devices and Components Division H.Q.
28th Fl., Crystal Tower Bldg.,
1-2-27, Shiromi, Chuo-ku,
Osaka 540-6028 Japan
Tel: (81)6-6949-6012/Fax: (81)6-6949-6021
E2E/E2E2
48
AC
2-wire
DC
3-wire
Model
OR
(parallel connection)
AND
(serial connection)
Connection type
ALL DIMENSIONS SHOWN ARE IN MILLIMETERS.
To convert millimeters into inches, multiply by 0.03937. To convert grams into ounces, multiply by 0.03527.
A
A
B
B
Incorrect
Correct
Correct
Method
Load
Load
Load
VAC power
supply V
S
In principle, more than two Proximity Sensors
cannot be connected in parallel.
Provided that Proximity Sensor A does not
operate with Proximity Sensor B simultaneously
and there is no need to keep the load operating
continuously, the Proximity Sensors can be
connected in parallel. In this case, however, due
to the total leakage current of the Proximity
Sensors, the load may not reset properly.
It is not possible to keep the load operating
continuously with Proximity Sensors A and B in
simultaneous operation to sense sensing objects
due to the following reason.
When Proximity Sensor A is ON, the voltage
imposed on Proximity Sensor A will drop to
approximately 10 V and the load current flows
into Proximity Sensor A, and when one of the
sensing objects is close to Proximity Sensor B,
Proximity Sensor B will not operate because the
voltage imposed on Proximity Sensor B is 10 V,
which is too low. When Proximity Sensor A is
OFF, the voltage imposed on Proximity Sensor B
will reach the supply voltage and Proximity
Sensor B will be ON. Then, Proximity Sensor A
as well as Proximity Sensor B will be OFF for
approximately 10 ms, which resets the load for
an instant. To prevent the instantaneous
resetting of the load, use a relay as shown on the
left.
The Sensors connected together must satisfy the
following conditions.
i
each Sensor
V
N:
V
V
i:
i
If the MY Relay, which operates at 24 VDC, is
used as a load for example, a maximum of two
Proximity Sensors can be connected to the load.
L
L
S
R
S
:
+ (N –1 ) x i x Upper-limit of control output of
: Residual voltage of each Sensor
: Supply voltage
– N x V
No. of Sensors
Current consumption of the Sensor
Load current
R
y Load operating voltage
Description
Printed in Japan
0300-0.5M (0296)
E2E/E2E2

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