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6-18
[ 4 ] Output Circuit Filters (OFLs)
Include an OFL in the inverter power output circuit to:
- Suppress the voltage fluctuation at the motor input terminals
This protects the motor from insulation damage caused by the application of high voltage surge
currents by the 400 V class of inverters.
- Suppress leakage current from the inverter output lines (due to harmonic components)
This reduces the leakage current when the motor is connected by long power feed lines. It is
recommended that the length of the power feed line be kept to less than 400m.
- Minimize emission and/or induction noise issued from the inverter output lines
OFLs are effective in reducing noise from long power feed lines, such as those used in plants,
etc.
Use an ACR within the allowable carrier frequency range specified by function code F26.
Otherwise, the filter will overheat.
Figure 6.11 External View of Output Circuit Filter (OFL) and Connection Example
Table 6.12 Output Circuit Filter (OFL)
0.1
FRN0.1C1
-2
0.2
FRN0.2C1
-2
3
0.4
FRN0.4C1
-2
150 % for 1 min.
Three-phase
0.75
FRN0.75C1
-2
200 % for 0.5 sec 200 to 240 V
8 to 15
400
1.5
FRN1.5C1
-2
50/60 Hz
2.2
FRN2.2C1
-2
3.7, 4.0
FRN3.7C1
-2
0.4
FRN0.4C1
-4
OFL-0.4-4A
1.5
0.75
FRN0.75C1
-4
150% for 1min.
Three-phase
1.5
FRN1.5C1
-4
200 % for 0.5 sec 380 to 480 V
0.75 to 15
400
2.2
FRN2.2C1
-4
50/60 Hz
3.7
4.0
FRN3.7C1
-4
FRN4.0C1
-4
OFL-3.7-2
Maximum
frequency
(Hz)
3.7
9
8
17
Rated
current
(A)
Overload
capability
Inverter
power
input
voltage
Carrier
frequency -
allowable
range
(kHz)
Three-
phase
200 V
OFL-3.7-4A
OFL-1.5-4A
Inverter type
Three-
phase
400 V
Power
supply
voltage
Filter type
Applicable
motor
rating
(kW)
OFL-0.4-2
OFL-1.5-2
Note 1: The OFL-***-4A models have no restrictions on carrier frequency.
Note 2: A box (
) in the above table replaces S or E depending on enclosure.
Note 3: A box (
) in the above table replaces A, E, or J depending on shipping destination.
Содержание frenic mini series
Страница 1: ...USER S MANUAL Fuji Electric Co Ltd MEH446...
Страница 2: ...Compact Inverter User s Manual...
Страница 60: ...4 2 4 2 Drive Frequency Command Generator Figure 4 1 Block Diagram for Drive Frequency Command Generator...
Страница 62: ...4 4 4 3 Drive Command Generator Figure 4 2 Drive Command Generator...
Страница 66: ...4 8 Figure 4 3 d Terminal Command Decoder ORing with Link Commands Ignoring Link Commands...
Страница 68: ...4 10 4 5 Digital Output Selector Figure 4 4 Digital Output Signal Selector...
Страница 70: ...4 12 4 6 Analog Output FMA Selector Figure 4 5 Analog Output FMA Selector...
Страница 72: ...4 14 4 7 Drive Command Controller Figure 4 6 Drive Command Controller and Related Part of the Inverter...
Страница 74: ...4 16 4 8 PID Frequency Command Generator Figure 4 7 PID Frequency Command Generator...
Страница 81: ...Part 3 Peripheral Equipment and Options Chapter 6 SELECTING PERIPHERAL EQUIPMENT...
Страница 109: ...Part 4 Selecting Optimal Inverter Model Chapter 7 SELECTING OPTIMAL MOTOR AND INVERTER CAPACITIES...
Страница 124: ...Part 5 Specifications Chapter 8 SPECIFICATIONS Chapter 9 FUNCTION CODES...
Страница 134: ...8 3 Common Specifications 8 9 Chap 8 SPECIFICATIONS 8 3 Common Specifications...
Страница 135: ...8 10...
Страница 257: ...App H Replacement Information A 33 App FVR C11S vs FRENIC Mini...
Страница 261: ...Glossary This glossary explains the technical terms that are frequently used in this manual...