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Chapter 5 Function parameter
107
Ch
ap
ter 5
When the swing is set to Relative To Center frequency(E0.00=0), Swing (AW) = frequency
source (F0.07) × swing amplitude((E0.01). When the swing is set to Relative To Maximum
Frequency(E0.00=1), Swing (AW) = maximum frequency (F0.19) × swing amplitude((E0.01).
If the sudden jump frequency range is selected for wobbulate operation, the frequency
percentage of sudden jump frequency range relative to swing, i.e.: Sudden jump frequency =
Swing(AW)×Sudden jump frequency range(E0.02). When the swing is set to Relative To Center
frequency(E0.00=0), the sudden jump frequency is the variable value. When the swing is set to
Relative To Middle Frequency(E0.00=1), the sudden jump frequency is the fixed value.
The frequency of wobbulate operation is restricted by the upper and lower frequencies.
E0.03 Wobbulate cycle
0.1s~3000.0s
10.0s
☆
E0.04 Triangle wave rise time coefficient
0.1%~100.0%
50.0%
☆
Wobbulate cycle: the time of a complete wobbulate cycle.
Triangle wave rise time coefficient(E0.04), the time percentage of Triangle Wave Rise Time
relative to Wobbulate Cycle(E0.03) Triangle wave rise time = Wobbulate cycle(E0.03) ×
Triangle wave rise time coefficient(E0.04), unit: second(s). Triangle wave drop time = Wobbulate
cycle(E0.03) × (1 - Triangle wave rise time coefficient(E0.04)), unit: second(s).
E0.05 Set length
0m~65535m
1000m
☆
E0.06 Actual length
0m~65535m
0m
☆
E0.07 Pulse per meter
0.1~6553.5
100.0
☆
The above function codes are used to fixed-length control.
The length information is sampled through the multi-function digital input terminal, the
pulse number sampled by terminal divides the pulse per meter(E0.07), so then the Actual
length(E0.06) can be computed out. When the Actual length is greater than the set length (E0.05),
the multi-functional digital DO will output "Length Arrival" ON signal.
During the fixed-length control, the multifunction DI terminal can be used to reset length
(DI function selects 28), please refer to F1.00 to F1.09 for details.
In some applications, the related input terminal function shall be set to "Length Count
Input"(function 27), when the pulse frequency is higher, DI5 port must be used .
E0.08 Set count value
1~65535
1000
☆
E0.09 Specified count value
1~65535
1000
☆
Set count value DO1
1
Count pulse DI5
Specified continue relay
2
3
4
5
6
7
8
9
Figure 5-30:Schematic diagram of the set count value reference and the specified value
The count value needs to be sampled through the multi-function digital input terminal. In
some applications, the related input terminal function shall be set to "Counter Input"(function
25), when the pulse frequency is higher, DI5 port must be used .
When the count value reaches the set count value(E0.08), the multifunction digital DO will
output "Set Count Value Arrival" ON signal, then the counter stops counting.
When the count value reaches the specified count value(E0.09), the multifunction digital
DO will output "Specified Count Value Arrival" ON signal, then the counter continues to count,
and then stop till the set count value.
The figure is the schematic diagram of E0.08 = 8 and E0.09 = 4.
E0.10
Reduction frequency
pulse number
0: Invalid; 1~65535
0
☆
E0.11
Reduction frequency
0.00Hz~F0.19
(max frequency)
5.00Hz
☆
Applications need to the corresponding input terminals function is set to "counter