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9-54
H70
Overload Prevention Control
Enables overload suppressing control. If enabled, this function code is used to set the
deceleration (Hz/s).
Before the inverter enters Alarm mode due to heat sink overheat or overload (alarm code:
0H1
or
0LU
), this control decreases the output frequency of the inverter to suppress the
trip.
Data
Function
0.00
Decelerate by deceleration time 1 (F08) or 2 (E11).
0.01 to 100.0
Decelerate by 0.01 to 100.0 Hz/sec.
999
Disable overload suppression control
- When overload suppressing control is enabled, the inverter decelerates the motor
according to the set deceleration rate if the temperature anywhere inside the inverter
exceeds the alarm detection level.
- Apply this control to equipment (such as pumps) whose drive frequency drops in line
with any decrease in load. If you want to proceed to drive such kind of equipment even
the inverter slows down the output frequency, enable this control.
• Do not use this function to equipment whose load does not slow if the inverter
output frequency drops, as it will have no effect.
• To avoid any conflict between overload suppressing control and any other
frequency lowering features, this control does not function if the features to
limit the output current are enabled (F43
≠
0 and H12 = 1). To force this control
to enabled status, set 0 for function codes F43 and H12.
H80
Gain for Suppression of Output Current Fluctuation
The inverter output current driving the motor may fluctuate due to the motor characteristics
and/or backlash in the load mechanism. Modify the data in function code H80 to adjust the
amount in order to suppress such fluctuation. However, as incorrect setting of this amount
may cause a much larger current fluctuation, do not modify the default setting unless it is
necessary.
- Data setting range: 0.00 to 0.20
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...