61
F0 – 30 Selection of Y range of auxiliary frequency
source during superposition
0
~
1 [0]
F0 – 31 Auxiliary frequency source Y range when is
superimposed
0
~
150% [0%]
These two parameters are used to determine the adjustment range of the auxiliary frequency source when the
frequency source is selected as “frequency superposition".
F0 - 30 is used to determine the object corresponding to the auxiliary frequency source range. It can be selected
to be relative to the maximum frequency, or it can be with respect to the main frequency source x, if selected with
respect to the main frequency source, the range of the auxiliary frequency source will vary with the change of the
main frequency X.
F0 - 32 frequency source superposition selection
0
~
34 [0]
The given channel of frequency is selected through this parameter. The frequency is given by the combination of
the main frequency source X and the auxiliary frequency source Y.
Bits: frequency selection. Select the mode of frequency superposition or switching.
0: only the primary frequency X and the secondary frequency Y do not overlap. F=X
。
1: the superposition mode of frequency is determined by ten bits.
2: the main frequency X and the auxiliary frequency Y are switched through the No. 18 function of the X terminal.
Function terminal No. 18 is closed for auxiliary y, and the terminal is broken on for the main frequency Y
3: main frequency X and main and auxiliary operation results switch. Terminal switching function is No. 18.
4: secondary frequency Y and primary and secondary operation results switch. Terminal switching function code
No. 18.
10 bits: frequency primary and secondary operation relation
0: X+Y
1: X-Y
2: min (X, Y), whichever is the maximum in the primary and secondary
3: max (X, Y), minimum value in main and auxiliary
F0 – 33 Offset frequency of auxiliary frequency source
when is superimposed
0 ~ maximum frequencies [0.00 Hz]
When the frequency source is selected as the main and auxiliary operation, the offset frequency can be set
through F0 - 33, and the offset frequency can be superimposed on the main and auxiliary operation results to flexibly
cope with various requirements.
F0 - 34 command source bundling frequency source
0
~
999 [000]
Bits: panel command binding frequency source selection
0: no binding
1: digital setting frequency source.
2: AI1
3: AI2
4: AI3
5: pulse quantity X5
6: multi-segment speed
7: simple PLC
8: PID
9: communication given
10 bits: terminal command binding frequency source selection (0 ~ 9, same bit)
100 bits: communication command binding frequency source selection (0 ~ 9, same bit)
Содержание HV480 Series
Страница 1: ...HV610 Series Frequency Inverter User Manual HNC Electric Limited ...
Страница 12: ...8 2 2 3 Frequency inverter control loop terminal description ...
Страница 13: ...9 ...
Страница 166: ...162 Appendix II Plastic shell dimensions and mounting dimensions Fig 1 R75G3 2R2G3 Fig 2 004G3 7R5G3 ...
Страница 167: ...163 Appendix III dimensions and mounting dimensions of sheet metal machines Fig 3 011G3 200G3 Fig 4 185G3 560G3 ...