HV100 Series High Performance Current Vector Inverter
23
00.04
Selection of main
frequency source
A
0: Digital setting 1(press keyboard key▲/▼, encoder
+00.10)
1: Digital setting 2(UP/DOWN ter00.10)
2: Digital setting 3(Communication setting)
3: AI1 analog setting
(
0
~
10V/20mA
)
4: AI2 analog setting
(
0
~
10V
)
5: Pulse setting
(
0
~
50KHZ
)
6: Simple PLC
7: Multi-speed setting
8: PID control
9: Keyboard potentiometer (Compatible encoder)
10:MPPT given (solar water pump)
11: Keyboard potentiometer
0
~
11
9
○
00.05
Selection of
auxiliary
frequency source
B
0: Digital setting 1(press keyboard key▲/▼, encoder
+00.10)
1: Digital setting 2(UP/DOWN ter00.10)
2: Digital setting 3(Communication setting)
3: AI1 analog setting
(
0
~
10V/20mA
)
4: AI2 analog setting
(
0
~
10V
)
5: Pulse setting
(
0
~
50KHZ
)
6: Simple PLC
7: Multi-speed setting
8: PID control
9: Keyboard potentiometer (Compatible encoder)
10:MPPT given (solar water pump)
11: Keyboard potentiometer
0
~
11
3
○
00.06
Frequency source
given way
0: Main frequency source A
1: A+K*B
2: A-K*B
3:
︱
A-K*B
︱
4: MAX
(
A
,
K*B
)
5: MIN
(
A
,
K*B
)
6: Switch from A to K*B(A takes precedence over
K*B)
7: Switch from A to (A+K*B)(A takes precedence over
A+K*B)
8: Switch from A to (A-K*B)(A takes precedence over
A-K*B)
Note 1: Frequency switching needs to be realized
through terminal cooperation
Note 2: Compared with the given mode of this
frequency source, frequency swing control has higher
priority.
0
~
8
0
○
00.07
Digital setting1
LED single digit: power down store
0: store
1: not store
LED 10-digit: stop keep
0: keep
1: stop not keep
LED 100-digit: ▲/▼key
、
UF/DOWN negative
frequency regulation
0: invalid
1: valid
LED 1000-digit: Reserved
000
~
111
000
○
00.08
Digital setting2
000
○
00.09
Frequency source
digital given 1
setting
This set value is the initial value of frequency digital
given 1
0.00Hz
~
【
00.13
】
50.00
○