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204
Learning Advanced Features
Code
Description
PRT-73 LDT Dly
Time
Sets the delay time for the operation set at PRT-70.
PRT-74 LDT
Level
Sets the level for the level detection.
The following are the setting ranges and default values by the source.
Source
Default Value
Setting Range
Output
Current
Rated current
0
–150% of the rated current
DC Link
Voltage
350
700
0
–450 V (2 Type)
0
–900 V (4 Type)
Output
Voltage
230
460
0
–250 (2 Type)
0
–500 (4 Type)
kW
90% of the Inverter
rated power
0
–150% of the Inverter rated
power
V1
9.00 V
0.00
–12.00
V2
9.00
-12.00
–12.00
I2
18.00
0.00
–25.00
PID Ref
Value
50
PID Unit Min
–PID Unit Max
PID Fdb
Val
50
PID Unit Min
–PID Unit Max
PID Output
50
-100.00%
–100.00%
EPID1 Fdb
Val
50
EPID1 Unit Min
–EPID1 Unit
Max
EPID2 Fdb
Val
50
EPID2 Unit Min
–EPID2 Unit
Max
PRT-75 LDT
Band
Width
If the source is detected below the set level, it must be adjusted to be
above the ‘LDT Level + LDT Band Width’ value to release the level
detection fault trip.
If the source is detected above the set level, it must be adjusted to be
below the ‘LDT Level - LDT Band Width’ value to release the level
detection fault trip.
The level detection trip bandwidth is 10% of the maximum source value.
PRT-76 LDT
Freq
Sets the start frequency for the level detection. When setting the level
detection frequency, take into consideration the source type and the LDT
level.
PRT-77 LDT
Restart DT
If PRT-
08 (RST restart) is set to ‘YES,’ the inverter restarts after the time
set at PRT-76 elapses when an LDT trip is released. The LDT Restart
operates each time an LDT trip is released.
If PRT-
77 is set to any other value than ‘0’ and the inverter is operating in
HAND mode, the inverter resets and the LDT trip is released. However,
the inverter stays in OFF mode and does not restart the operation
instantly.
Summary of Contents for LSLV-H100 Series
Page 17: ...Preparing the Installation 4 37 90 kW 3 Phase ...
Page 18: ...Preparing the Installation 5 110 132 kW 3 Phase ...
Page 19: ...Preparing the Installation 6 160 185 kW 3 Phase ...
Page 20: ...Preparing the Installation 7 220 250 kW 3 Phase ...
Page 21: ...Preparing the Installation 8 315 400 kW 3 Phase ...
Page 22: ...Preparing the Installation 9 500 kW 3 Phase ...
Page 35: ...Installing the Inverter 22 ...
Page 50: ...37 Installing the Inverter Input and Output Control Terminal Block Wiring Diagram ...
Page 104: ...91 Learning Basic Features 0 10 V Input Voltage Setting Details V1 Quantizing ...
Page 181: ...168 Learning Advanced Features PID Command Block ...
Page 182: ...169 Learning Advanced Features ...
Page 183: ...170 Learning Advanced Features PID Feedback Block ...
Page 184: ...171 Learning Advanced Features PID Output Block ...
Page 185: ...172 Learning Advanced Features PID Output Mode Block ...
Page 198: ...185 Learning Advanced Features EPID1 Control block ...
Page 199: ...186 Learning Advanced Features EPID2 Control block ...
Page 220: ...207 Learning Advanced Features ...
Page 235: ...222 Learning Advanced Features The Time Chart for the Exception Day ...
Page 506: ...Table of Functions 493 ...
Page 520: ...Table of Functions 507 8 16 4 Cooling Tower MC4 Group ...
Page 549: ...Troubleshooting 536 ...
Page 569: ...Technical Specification 556 11 3 External Dimensions 0 75 30 kW 3 phase 37 90 kW 3 phase ...
Page 570: ...Technical Specification 557 110 185 kW 3 phase ...
Page 601: ...588 ...
Page 602: ...589 ...
Page 603: ...590 ...