1. Sample
2. Sample
3. Sample
4. Sample
5. Sample
6. Sample
7. Sample
8. Sample
9. Sample
10. Sample
11. Sample
12. Sample
13. Sample
14. Sample
15. Sample
16. Sample
17. Sample
18. Sample
19. Sample
20. Sample
0.00
0.00
2.00
0.75
1.50
0.50
0.20
0.80
0.30
2.40
3.20
2.50
2.70
0.50
0.00
0.35
2.50
3.20
3.00
2.70
0.00
1.00
1.50
1.00
1.80
2.00
1.50
0.00
0.40
3.50
4.00
4.50
2.90
1.00
-0.10
1.00
0.50
4.70
4.20
0.50
1.50
-
-
-
-
-
-
1.50
-
0.50
-
-
0.80
-
-
1.60
0.50
-
-
-
-
2.00
-
0.50
2.20
-
1.00
1.00
0.20
0.80
1.50
1.30
-
0.05
1.00
2.30
2.5
0.20
0.50
-
0.65
-
1.30
1.70
-
1.50
1.50
-
0.70
-
2.00
1.70
0.50
-
2.00
-
-
0.40
1.00
0.50
1.35
1.00
2.10
-
1.00
2.50
1.50
3.00
1.50
0.50
1.00
7.50
5.00
6.00
8.00
1.50
1.00
1.50
10.0
7.50
1.50
1.50
0.50
1.50
1.00
2.50
1.90
0.50
0.35
4.50
1.50
1.90
3.20
1.50
0.50
1.70
1.50
5.50
2.50
1.50
571
525
490
470
453
400
385
350
300
295
280
257
236
205
192
180
120
100
70
45
L1
L2
L3
Time
(min.)
3 Phase
Capacitor
(kvar)
Single phase
(L1) Capacitor
(kvar)
Single phase
(L2) Capacitor
(kvar)
Single phase
(L3) Capacitor
(kvar)
Step Value Determination According to Power Analysis Samples
Three Phase capacitors have the lowest 0.5kVAr and the highest 10kVAr.
0.50kVAr,
1kVAr, 1.5kVAr, 2.5kVAr, 5kVAr
ve
7.5kVAr
three-phase capacitor can be used.
The single phase capacitors to be used in the L1 phase have the lowest 0.50kVAr and the
highest 2.2kvAr.
0.5kVAr, 1kVAr
ve
1.5kVAr
single phase capacitor can be used.
The single phase capacitors to be used in the L2 phase have the lowest 0.20kvAr and the
highest 2.3kVAr.
0.25kVAr, 0.5kVAr, 1kVAr
ve
1.5kVAr
single phase capacitor can be used.
The single phase capacitors to be used in the L3 phase have the lowest 0.40kvAr and the
highest 2.1kVAr
0.25kVAr, 0.5kvar, 1kVAr
ve
1.5kVAr
single phase capacitor can be used.
According to the power analysis examples in Table 1, the capacitor structure was created in
Table 2. Intermediate values should be intervenable when creating a step structure.
Connect the highest three-phase capacitor values to the first stages.
Table1
Table
2
31
According to the table;
32
Factory Defaults
Parameter Name
Factory
Value
Min.
Value
Max.
Value
Unit
Current Transformer Value
Step Drive Time
Step Release Time
Passive
Passive
Passive
Harmonic Voltage Value
Delay Value
Harmonic Current Value
High Voltage Value
Control Mode ( / )
A
P
Low Voltage Value
Delay Value
Capacitive Alarm Value ( / )
A
P
Step Discharge Time
Step Settling Time
PFC ( / )
A
P
TCR ( / )
A
P
Offset Value
Auto Step Measure. Period ( / )
A
P
Baudrate
Parity
Stop Bit
Modbus ID
Inductive Alarm Value ( / )
A
P
5/5
3
3
10
50
30
250
180
5
20
15
15
400
Active
Passive
0.00
0
9600
No
1
1
5/5
1
1
3
3
1
240
120
1
1
1
1
100
Active
-99.00
0
1200
Even
1
1
5000/5
30
30
A
sec.
sec.
99
99
60
270
210
60
50
50
60
3000
99.00
26
19200
Odd
2
247
sec.
msec.
-
-
kVAr
week
bps.
sec.
V
V
sec.
%
%
Set Value
Tolerance Value
0
-50
1.0
50
10.0
%
%
%
%
( / ): It can be active or passive.
A
P
Passive
Active
Passive
1.0
-
-
Set Value
Tolerance Value
20
-50
1.0
50
10.0
%
%
4.0
Passive
Delay Value ( / )
A
P
5
1
90
min.
Active
Backligh Shutdown Time ( / )
A
P
5
1
30
min.
Step Time
Settings
PFC
Settings
Step Menu
Current Trans. Menu
Password
0000
0000
9999
-
Device
Settings
Power Factor
Correction Settings
ModBus
RS485
Settings
Operating
Voltage
Settings
Passive
-
Passive
Control Mode ( / )
A
P
Passive
-
Operating
Harmonic
Settings
Passive
Control Mode ( / )
A
P
Passive
-
Generator
Settings
PF Correction
Alarm
Settings
Menu Name
Passive
Active
Active
Active
Active
Passive
Passive
Passive
Passive