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Chapter 5 Function parameter
132
F7.06
Jump frequency range
0.00Hz
to
F0.19(maximum
frequency)
0.00Hz
☆
When the set frequency is in the jump frequency range, the Actual operating frequency
will run at the jump frequency close from the set frequency . The inverter can avoid
mechanical resonance point of load by setting jump frequency.
PI9000 can set two jump frequency points, if the two jump frequencies are set to 0, the
jump frequency function will be canceled. For the principle schematic of jump frequency and
its range, please refer to the following figure.
F7.07
Jump frequency availability
during ac/deceleration
process
Invalid
0
0
☆
Valid
1
The function code is used to set whether the jump frequency is active or not in the
process of acceleration and deceleration.
If it is set to active, when the operating frequency is in the jump frequency range, the
Actual operating frequency will skip the set jump frequency boundary. The below figure
below shows the jump frequency status in the process of acceleration and deceleration.
F7.08
Acceleration time 2
0.0s to 6500.0s
-
☆
F7.09
Deceleration time 2
0.0s to 6500.0s
-
☆
F7.10
Acceleration time 3
0.0s to 6500.0s
-
☆
F7.11
Deceleration time 3
0.0s to 6500.0s
-
☆
跳跃频率
1
Jump
frequency 2
输出频率
Hz
跳跃频率幅度
跳跃频率幅度
跳跃频率幅度
跳跃频率幅度
时间
t
跳跃频率示意图
Jump
frequency 1
跳跃频率
2
输出频率
Hz
时间
t
加减速过程中跳跃频率有效示意图
跳跃频率幅度
跳跃频率幅度
Jump frequency range
Jump frequency range
Output
frequency
Jump
frequency 1
Jump frequency range
Jump
Frequency
range
Schematic diagram of jump frequency
Time
Output
Frequency
Jump frequency 2
Jump frequency range
Schematic diagram of jump frequency availability in the process of acceleration and deceleration.
Time