RFI-Filter for Regeneration Units
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•
•
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•
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•
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35 to 300A current ratings
Exceptional attenuation from 150kHz to 30MHz
Excellent saturation resistance
Suitable for regeneration of returning power (via line reactor)
Nennströme von 35 bis 300A
Hervorragende Einfügungsdämpfung von 150kHz bis 30MHz
Sehr hohe Sättigungsfestigkeit
Geeignet für Rückspeisebetrieb ins Netz (via Netzdrossel)
Courants de service de 35 à 300A
Excellente atténuation de 150kHz à 30MHz
Seuil de saturation élevé
Convient pour la récupération d’énergie (à travers une self de ligne)
FN 3100/FN 3110
Electrical schematic
L1
L2
L3
Cx
L
L1’
L2’
L3’
R
R
1
E
LINE
C
y
E
LOAD
Cx
1
Approvals
C
US
EN 133’200
IEC 60’939
FN 3100 up to 150A
Technical specifications
Max. operating voltage:
Operating frequency:
High potential test voltage (factory test):
Protection category:
Overload:
Temperature range:
Flammability corresponding to:
Design corresponding to:
Filter
FN 3100-series
520VAC @ 50°C
DC to 60Hz @ 50°C
P
⇒
E 3000VDC for 2 sec
P
⇒
P 2900VDC for 2 sec
IP20
4 times rated current at switch on, 1.5 times
rated current for 1 minute, once per hour
–25°C to +100°C
UL 94V-2
UL 1283, CSA22.2 No. 8 1986, EN 133200
Current rating
Leakage current
†
Power loss
FN 3110-series
480VAC @ 50°C
DC to 60Hz @ 50°C
P
⇒
E 2700VDC for 2 sec
P
⇒
P 2100VDC for 2 sec
IP20
4 times rated current at switch on, 1.5 times
rated current for 1 minute, once per hour
–25°C to +100°C
UL 94V-2
UL 1283, CSA22.2 No. 8 1986, EN 133200
I/O connections
Weight
@ 50°C (40°C)
A
FN
FN
FN
FN
FN
FN
FN
FN
3100
3100
3100
3100
3100
3100
3100
3100
–
–
–
–
–
–
–
–
35
50
80
110
150
200
230
300
50
80
–
–
–
–
–
–
–
–
–
–
33
34
35
35
40
40
40
99
52
35
35 (39.5)
50 (56.5)
80 (90.4)
110 (124.3)
150 (169.5)
200 (226)
230 (230)
300 (335)
50 (55)
80 (88)
400VAC/50Hz
mA
48.9
66.1
71.5
71.5
71.5
71.5
71.5
71.5
66.1
71.5
W
11.8
18
25.9
32.7
50.6
60
36.5
54
19.5
36.5
33
34
35
35
40
40
40
99
52
35
kg
2.3
3.4
5.3
5.4
8.5
9.1
9.2
11.8
2.7
4.4
FN 3110 –
FN 3110 –
†
Max. leakage under normal working conditions. Note: if two phases are interrupted, worst case leakage could reach 5.3 times higher levels.
210