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MN715P
Receiving and Installation
3-4
Line Impedance
The Baldor Series 15J control requires a minimum line impedance of 1%. The
input impedance of the power lines can be determined as follows:
Measure the line to line voltage at no load and at full rated load. Use
these measured values to calculate impedance as follows:
%Impedance
+
(Volts
NoLoad
*
Volts
FullLoad
)
(Volts
NoLoad
)
100
Table 3-3 Recommended Line Reactors
230VAC, 60Hz, 3% Impendance
460VAC, 60Hz, 3% Impendance
Catalog No.
HP
Amps
Inductance
(mH)
Catalog No.
HP
Amps
Inductacne
(mH)
LRAC00401
1
4
3
LRAC00202
1
2
12
LRAC00801
1.5
8
1.15
LRAC00202
1.5
2
12
LRAC00801
2
8
1.15
LRAC00402
2
4
6.5
LRAC01201
3
12
1.25
LRAC00402
3
4
6.5
LRAC01801
5
18
0.8
LRAC00802
5
8
3.0
LRAC3501
7.5
25
0.5
LRAC01202
7.5
12
2.5
LRAC01802
10
18
1.5
Line Reactors
3 phase line reactors are available from Baldor. The size of the line reactor to
use is based on the maximum continuous load. If providing your own line
reactor, use the following formula to calculate the minimum inductance
required. Table 3-2 lists the input current required for this calculation. Line
reactors may be used at the control output to the motor. When used this way,
they are called Load Reactors.
L
+
(V
L
*
L
0.01)
(I
3
Ǹ
377)
Where:
L
Minimum inductance in henrys.
V
L-L
Input volts measured line to line.
0.01
Desired percentage of input impedance (1% shown).
I
Input current rating of control.
377
Constant used with 60Hz power.
Use 314 with 50Hz power.
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