100
F8 - 23 swing setting method
0
~
1 [0]
This parameter is used to determine the reference amount of the swing.
0: relative center frequency (current frequency source), variable swing system. The swing amplitude changes
with the change of the center frequency (set frequency).
1: the relative maximum frequency (F0 - 16) is a fixed swing system, and the swing is fixed.
F8 - 24 swing amplitude
0.0%
~
100.0% [0.0%]
F8 - 25 sudden jump frequency amplitude
0.0%
~
50.0% [0.0%]
This parameter is used to determine the values of swing amplitude and sudden jump frequency.
When setting the swing relative to the center frequency (F8 - 23 = 0), swing aw = setting frequency X swing
amplitude F8 - 24.
When setting the swing relative to the maximum frequency (F8 - 23 = 1), the swing aw = maximum frequency F0
- 16 * swing amplitude F8-24.
The sudden jump frequency amplitude is the percentage of the sudden jump frequency relative to the swing
amplitude when the swing frequency is running, i.e. sudden adjustment frequency = swing amplitude aw * sudden
jump frequency amplitude F8 - 25.
If the swing amplitude is selected relative to the center frequency (F8 - 23 = 0), the sudden adjustment
frequency is a change value.
If the swing amplitude is selected relative to the maximum frequency (F8 - 23 = 1), the sudden adjustment
frequency is a fixed value.
The frequency of swing frequency operation is limited by the upper limit frequency and the lower limit frequency.
F8 - 26 frequency swing period
0.0s
~
3000.0s [10.0s]
F8 - 27 triangular wave rise time coefficient
0.0%
~
100.0% [50.0%]
Frequency swing period: the time value of a complete frequency swing period.
The triangular wave rise time coefficient F8 - 27 is the percentage of the triangular wave rise time relative to the
wobble period F8 - 26.
Triangular wave rise time = frequency swing period F8 - 26
×
triangular wave rise time coefficient F8 - 27 in
seconds.
Triangle wave falling time = swing frequency period F8 - 26
×
(1 - triangle wave rising time coefficient F8 - 27),
in seconds.
F8-28 set length
0m
~
65535m [1000m]
F8-29 actual length
0m
~
65535m [0m]
F8-30 number of pulses per meter
0.1
~
6553.5 [100.0]
The above function code is used for fixed length control.
Length information needs to be collected through a multifunctional digital input terminal, and the number of
pulses sampled by the terminal and the number of pulses per meter The actual length F8 - 29 can be calculated by
dividing F8 - 30.
During the fixed length control process, the length reset operation can be performed through the multi-function X
terminal (the X terminal function is selected as follows 28), please refer to F5 - 00 ~ F5 - 06 for details.
The corresponding input terminal function needs to be set to “length count input" (function 27) in the application.
In the pulse frequency X5 port must be used when it is high.
Содержание HV480 Series
Страница 1: ...HV610 Series Frequency Inverter User Manual HNC Electric Limited ...
Страница 12: ...8 2 2 3 Frequency inverter control loop terminal description ...
Страница 13: ...9 ...
Страница 166: ...162 Appendix II Plastic shell dimensions and mounting dimensions Fig 1 R75G3 2R2G3 Fig 2 004G3 7R5G3 ...
Страница 167: ...163 Appendix III dimensions and mounting dimensions of sheet metal machines Fig 3 011G3 200G3 Fig 4 185G3 560G3 ...