HV100 Series High Performance Current Vector Inverter
60
00.05
Selection of auxiliary frequency source B
0 ~ 11 (same as main frequency channel selection)
3
0: digital setting 1 (press keyboard key
, 00.10
)
1: digital setting 2(UP/DOWN terminal adjustment)
2: digital setting 3 (communication setting)
3: AI1 analog setting (0 ~ 10V/20mA)
4: AI2 analog setting (0 ~ 10V)
5: Pulse setting (0 ~ 50 kHz)
6
:
Simple PLC
7
:
Multi-speed settings
8: PID control
9: Keyboard potentiometer setting(compatible encoder)
10
:
MPPT given
(
solar water pump
)
11: Keyboard potentiometer
All meanings of auxiliary frequency given channel are the same as those of main frequency given channel, please
refer to 00.04 for detailed description.
00.06
Frequency source given way
0
~
9
0
0: main frequency source A
1
:A
+K*
B
The main frequency, given channel a frequency, and the auxiliary frequency, given channel b frequency, are multiplied
by the weight coefficient k, and then the two frequencies are added as the final given frequency of the inverter.
2
:A
-K*
B
The main frequency, given channel A frequency, and the auxiliary frequency, given channel B frequency, are
multiplied by the weight coefficient k, and then the two frequencies are subtracted as the final given frequency of the
inverter.
3
:︱A
-K*
B︱
The main frequency, given channel A frequency, and the auxiliary frequency, given channel B frequency, are
multiplied by the coefficient k, and then the two frequencies are subtracted as the final given frequency of the inverter.
4
:
MAX
(A,
K*
B)
After multiplying the given channel A frequency of the main frequency and the given channel B frequency of the
auxiliary frequency by the weight coefficient K, compare the two frequencies and take the larger one as the final given
frequency of the inverter.
5
:
MIN
(A,
K*
B)
After multiplying the given channel A frequency of the main frequency and the given channel B frequency of the
auxiliary frequency by the weight coefficient K, compare the two frequencies, and take the smaller one as the final given
frequency of the inverter.
6
:
switch
A
to K*
B
This function is used in conjunction with the 29th function item of DI1
~
HDI function in F7 group parameters. When
00.06 =6 and the function of X terminal is selected as 29, the X terminal is valid and the given frequency source is switched
from A to K * B; X terminal is invalid, the frequency source returns to a ..
7: Switch between A and
(A+
K*
B)
This function is used in conjunction with function item No.30 of terminal DI1 ~ X8 function in F7 group parameters.
When 00.06=7 and X terminal function is selected as 30, the X terminal is valid and the frequency given source is switched
from A to (A+K * B); When the X terminal is invalid, the frequency source returns to A.
8: Switch between A and
(
A-K * B)
This function is used in conjunction with function item No.31 of terminal DI1 ~ x8 function in F7 group parameters.
When 00.06=8 and X terminal function is selected as 31, the X terminal is valid and the frequency given source is switched
from A to (A-K * B); When the X terminal is invalid, the frequency source returns to A.
Notes:
The given frequency is still limited by the starting frequency, upper and lower frequencies, etc. The positive and
negative frequency determines the running direction of the inverter.
Where K is the weight coefficient of auxiliary frequency source b, please refer to the detailed description of 00.11
function code for specific settings.
00.07
Digital setting 1
0000
~
1111
0000
LED single digit: power down store
0: store