LR2K0310 TELEMECANIQUE, LR2K0310 Datasheet - Page 26

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LR2K0310

Manufacturer Part Number
LR2K0310
Description
RELAY, OVERLOAD, MINIATURE, CLASS 10, 2.6 TO 3.7 AMPS
Manufacturer
TELEMECANIQUE
Type
Overloadr
Datasheet

Specifications of LR2K0310

Contact Rating
2.6 to 3.7 A
Current, Rating Max
3.7
Function
Overload
Number Of Circuits
1
Number Of Poles
3
Primary Type
Contactor
Relay Type
Electro Mechanical
Reset Type
Manual or Auto
Standard Tripping Time
Between 4 and 10 Sec. for 7.2 Times the Setting Current
Dimensions (l × W × H, Mm)
58 × 45 × 65
Long Distance Control Data
26
Residual Current in the Coil Due to Cable Capacitance
When the control contact of a relay is opened the cable capacitance is effectively in series with the coil of the electromagnet. This capacitance can cause
a residual current to be maintained in the coil, with the risk that the relay will remain closed.
This only applies to relays operating on an a.c. supply.
This phenomenon is aggravated by:
- a long line length between the coil control contact and the relay, or between the coil control contact and the power supply,
- a high control circuit voltage,
- a low coil consumption, sealed,
- a low value of relay drop-out voltage.
The maximum control cable length, according to the relay coil supply voltage, is indicated in the graph on page 27.
Remedial action
Various solutions can be adopted to avoid the risk of the contactor remaining closed due to cable capacitance:
- use a d.c. control voltage, or,
- add a rectifier, connected as shown in the scheme below, but retaining an a.c. operating coil: in this way, rectified a.c. current flows in the control circuit
cable.
When calculating the maximum cable length, take the resistance of the conductors into account.
- Connect a resistor in parallel with the contactor coil (1).
Value of the resistance:
Power to be dissipated
(1)
R
PW
=
To avoid increasing the voltage drop due to inrush current, this resistor must be brought into operation after the relay has closed by using a
N/O contact.
---------------------------- -
10
=
3 –
U
------ -
R
2
1
C uF
(C capacitance of the control cable)
©
2001 Schneider Electric All Rights Reserved
+
1
2
04/01

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