F69 Input/Output Parameter - Powtran PI7800 User Manual

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H10: T4 Multi-step speed 4 running time T4
H11: T5 Multi-step speed 5 running time T5
H12: T6 Multi-step speed 6 running time T6
H13: T7 Multi-step speed 7 running time T7
Actual acc/dec time equals to the set acc/dec time multiples a time
multiple which is decided by the tens digit of F56. Please refer to F56.
H14: Acceleration time at1
H15: Deceleration time dt1
H16: Acceleration time at2
H17: Deceleration time dt2
H18: Acceleration time at3
H19: Deceleration time dt3
H20: Acceleration time at4
H21: Deceleration time dt4
H22: Acceleration time at5
H23: Deceleration time dt5
H24: Acceleration time at6
H25: Deceleration time dt6
H26: Acceleration time at7
H27: Deceleration time dt7
Set the Acc/Dec time of 7 steps respectively. They determine the time
needed to reach the speed, respectively depending on the acceleration
time for acceleration or on the deceleration time for deceleration, but the
time is not the actual time needed. Actual acc/dec time equals to the set
acc/dec time multiples a time multiple which is decided by the tens digit
of F56. Please refer to F56.
Definite acceleration and deceleration time for multi-step speed.
output
frequency
1X
T1
T2
at1
at2
Definition of multi-step speed acceleration/deceleration time
at1: Step 1 acceleration time
dt2: Step 2 deceleration time
H28: Multi-step speed 1 running direction
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S
VI. F
P
D
ECTION
UNCTION
ARAMETER
ESCRIPTION
factory setting: 2.0s
factory setting: 2.0s
factory setting: 2.0s
factory setting: 2.0s
factory setting: 10.0s
factory setting: 10.0s
factory setting: 10.0s
factory setting: 10.0s
factory setting: 10.0s
factory setting: 10.0s
factory setting: 10.0s
factory setting: 10.0s
factory setting: 10.0s
factory setting: 10.0s
factory setting: 10.0s
factory setting: 10.0s
factory setting: 10.0s
factory setting: 10.0s
2X
3X
T3
dt2
dt3
time
at2: Step 2 acceleration time
dt3: Step 3 deceleration time
factory setting: 0
71
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S
VI. F
P
D
ECTION
UNCTION
ARAMETER
ESCRIPTION
H29: Multi-step speed 2 running direction
H30: Multi-step speed 3 running direction
H31: Multi-step speed 4 running direction
H32: Multi-step speed 5 running direction
H33: Multi-step speed 6 running direction
H34: Multi-step speed 7 running direction
In program multi-speed l running, the digit parameters decide the direction of
each speed.
Running direction
Setting value
forward
reverse
When running control mode F05=0/1/2, these parameters decide the direction
of each speed.
When running control mode F05=3, the setting value and terminal FWD/REV
decide the direction of each speed together. FWD is first.
FWD=1 Running
REV=1 Running
direction
direction
reverse
forward
forward
reverse
The parameter adjusts Actual running time unit. The digit determines
running direction, the tens place determines running time (multi-step running
time) unit, the hundred's place determines acceleration time unit, the kilobit
determines deceleration time unit. Take Multi-step speed 1 for example, as
following:
range(for example F09=3200.0)
Acc/dec time Tens/hundred's place
×
1s
0
×
30s
1
×
3200.0×600=32000 min=533.33 h
600s
2
×
3200.0×3600=192000 min=3200 h
3600s
3
range(for example H07=3200.0)
Running time
digit
×
1s
0
×
3200.0×10=32000 s=533.33 min
10s
1
×
3200.0×100=320000 s=5333.33 min
100s
2
×
3200.0×1000=3200000 s=888.88 h
1000s
3
6-2-3. F69 Input/output parameter [I/O]
o00: filter time of V2 signal input
It may be 2~200ms. If the time is too long, setting frequency change is steady,
but response speed will become bad; if the time is too short, setting frequency
stability become badly, but response speed will be rapider.
72
factory setting: 0
factory setting: 0
factory setting: 0
factory setting: 0
factory setting: 0
factory setting: 0
0
1
Setting value
0
1
3200.0 s
3200.0×30=96000 s=1600 min
3200.0 min
factory setting: 10ms

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