LAD9R1V TELEMECANIQUE, LAD9R1V Datasheet - Page 27

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LAD9R1V

Manufacturer Part Number
LAD9R1V
Description
CONTACTOR, ACCESSORY, REVERSING KIT, INCL. MECHANICAL INTERLOCKS AND CONNECTORS
Manufacturer
TELEMECANIQUE
Datasheets

Specifications of LAD9R1V

Contact Form
2 NC
Function
Contactor
Primary Type
Contactor
Relay Type
Electro Mechanical
Accessory Type
Mechanical Interlock Kit
Approval Bodies
CSA, UL
Insulation Voltage
690V
Standard
EN60947 - 1
For Use With
TeSys Contactors
04/01
Residual Current in the Coil due to Cable Capacitance (continued)
These graphs are for a capacitance, between conductors, of 0.2 F/km. They make it possible to determine whether there is a risk of the contactor
remaining closed due to the power drawn by the coil when sealed and the control circuit voltage, according to the length of the control cable.
Power drawn, sealed in VA
1 24 Vac
2 48 Vac
3 115 Vac
In the zones below the straight lines for 3-wire and 2-wire control respectively, there is a risk of the relay remaining closed.
Examples
What is the maximum length for the control cable of a CAD50 relay, operating on 230 V, with 2-wire control?
- CAD50 relay, voltage 230 V, 60 Hz: power sealed 8 VA.
On the left-hand graph, point A is at the intersection of the vertical line for 8 VA with the a 230 V voltage curve.
On the right-hand graph, point B is at the intersection of the horizontal line with the 2-wire control curve.
The maximum cable length is therefore 300 m.
In the same example, with a 600 m cable, the point lies in the risk zone. A resistor must therefore be connected in parallel with the relay coil.
Using right hand table above, find 600 meter along the bottom and follow up to line B (2 wire control) and then to the left to obtain C value.
Value of this resistance:
Power to be dissipated:
Alternative solution: use a d.c. control supply.
Calculating the Cable Length
The maximum permitted length of control cable to avoid the effects of capacitance is calculated using the formula:
L: distance between the contactor and the control device in km (length of the cable),
S: apparent power, sealed, in VA,
U: control voltage in V,
Co: cable capacitance in F/km. (to be supplied by wire manufacturer for type of wire used)
P
=
0,01
R
100
U
------ -
L
0,1
R
10
2
=
1
=
=
1
--------------------- -
10
455
---------------- -
230
8300
3 –
1
-------------------- -
U
2
C
=
2
=
S
6.5 W
Co
---------------------------- -
10
3 –
1
0.12
5
A
=
©
8 10
8.3k
2001 Schneider Electric All Rights Reserved
4 230 Vac
5 400 Vac
6 690 Vac
2
4
6
1
3
5
50
Cable capacitance in uF
100
0,01
100
0,1
10
1
Length of control cable in m
7 3-wire control
8 2-wire control
100
B
300
Long Distance Control Data
500
1000
7
8
5000 10 000
27

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