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105
Section V.
Parameter Function Table
When Pb.01 is set to 0, it meansthe swing amplitude is 0, andthe swing frequency is invalid.
Fig.5-28Swing frequency schematic diagram
Code
Description/
Keyboard Display
Setting Range
Factory
Setting
Change
Limit
Pb.00
Swing setup mode
Relative to the center frequency
0
0
☆
Relative to the maximum frequency
1
It is used to determine the swing amplitude benchmark value.
0
:
Relative to the center frequency (P0.07 frequency source)
:
It is a variable swing amplitude
system, with the swing amplitude changing with the center frequency (setup frequency).
1
:
Relative to the maximum frequency (P0.10 maximum output frequency)
:
It is a fixed swing
amplitude system, with fixed swing amplitude that is calculated by the maximum frequency.
Pb.01
Swing frequency amplitude
0.0%~100.0%
0.0%
☆
Pb.02
Jump frequency amplitude
0.0%~50.0%
0.0%
☆
It is used to determine the amplitude value and the jump frequency value. Swing relative to the center
frequency (variable swing, select Pb.00=0)
:
Swing (AW) =frequency source P0.07 setup times swing
amplitude Pb.01. Swing relative to the maximum frequency (fixed swing, Pb.00=1)
:
Swing (AW) =
maximum frequency P0.10 times swing amplitude Pb.01. When the swing is running, the jump frequency
relative to the swing= Swing (AW) times jump frequency amplitude Pb.02.
If “Swing relative to the center frequency (variable swing amplitude, Pb.00=0)” is selected, the jump
frequency is variable value.
If “Swing relative to the maximum frequency (fixed swing, Pb.00=1)” is selected, the jump frequency is
fixed value.
The swing operation frequency is constrained by upper frequency limit and lower frequency limit.
Pb.03
Swing frequency cycle
0.0s~3000.0s
10.0s
☆
Pb.04
Triangle wave rise time coef.
0.0%~100.0%
50.0%
☆
Swing frequency cycle
:
It defines the time of a whole cycle for rising and falling of the swing
frequency.
The coefficient of triangle wave rising time is Pb.04,it is time percentage of triangle rising time
relativing to swing frequency cycle Pb.03.
Triangle wave rising time= Swing frequency cycle Pb.03 times triangle wave rising time coefficient
Pb.04(unit
:
s)
Output frequency
Hz
Swing frequency upper limit
Central frequency Fset
Swing frequency lower limit
Running command
Acceleration according to acceleration time
Swing frequency cycle
Triangle wave rise time
Deceleration according to deceleration time
t
+Aw
-Aw
Swing frequency amplitude
Pb.00=0:Aw=Fset*Pb.01
Pb.00=1:Aw=Fmax*Pb.01
Textile hopping frequency
=Aw*Pb.02
Summary of Contents for HV590 Series
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