SIEPCYEUOQ2V01A Q2V Technical Manual
627
Figure 12.102 Circuit Diagram When Used as the Sourcing Output
•
Use the pulse train monitor as the sinking input
External Power Supply (V)
12 VDC
±
10%, 15 VDC
±
10%
Sinking current (mA)
16 mA or less
Figure 12.103 Circuit Diagram When Used as the Sinking Input
■
H6-07: PO Freq.Scaling
No.
(Hex.)
Name
Description
Default
(Range)
H6-07
(0432)
RUN
PO Freq.Scaling
Sets the frequency of the pulse train output signal used when the monitor set with
H6-06 [PO
Mon.Selection]
is 100%.
1440 Hz
(0 - 32000 Hz)
When
H6-06 = 102 [PO Mon.Selection = Output Frequency]
and
H6-07 = 0
, the pulse train output terminal PO
outputs the same frequency as the drive output frequency.
■
H6-08: PI Minimum Frequency
No.
(Hex.)
Name
Description
Default
(Range)
H6-08
(043F)
PI Minimum Frequency
Sets the minimum frequency of the pulse train signal that terminal PI can detect.
0.5 Hz
(0.1 - 1000.0 Hz)
•
When you input a pulse train frequency that is less than the value of
H6-08
, the pulse train input is 0.0 Hz.
•
Set
H6-01 [PI Pulse Train Function]
=
0 [Freq Ref]
,
1 [PIDFbk Value]
, or
2 [PID SP Value]
to enable this
parameter.
•
When
H6-01 = 3 [PG Feedback]
, the drive applies the setting of
F1-14 [Enc PGOpen Time for Detection]
to
the minimum frequency.
■
H6-09 PO Volt.PhaseSync Selection
No.
(Hex.)
Name
Description
Default
(Range)
H6-09
(156E)
PO Volt.PhaseSync
Selection
Set whether to output the pulse synchronized with drive output voltage phase from the pulse train
monitor output terminal PO. This parameter is only enabled when
H6-06 = 102 [PO Mon.
Selection = Output Frequency]
and
H6-07 = 0 [PO Freq.Scaling = 0 Hz]
.
0
(0, 1)
0 : Disabled
1 : Enabled
◆
H7: VIRTUAL INPUT OUTPUT
The virtual I/O function performs the following.
•
Inputs the result of the output from the MFDO terminal to the MFDI terminal without external wiring.
•
Inputs the result of the output from the MFAO terminal to the MFAI terminal without external wiring.
V/f
OLV
OLV/PM
OLV/PM AOLV/PM
EZOLV
V/f
OLV
OLV/PM
OLV/PM AOLV/PM
EZOLV
V/f
OLV
OLV/PM
OLV/PM AOLV/PM
EZOLV
Summary of Contents for Q2V Series
Page 2: ...This Page Intentionally Blank 2 SIEPCYEUOQ2V01A Q2V Technical Manual...
Page 12: ...12 SIEPCYEUOQ2V01A Q2V Technical Manual...
Page 18: ...i 2 Legal Information 18 SIEPCYEUOQ2V01A Q2V Technical Manual...
Page 26: ...1 2 Features and Advantages of Control Methods 26 SIEPCYEUOQ2V01A Q2V Technical Manual...
Page 38: ...2 8 Installation Methods 38 SIEPCYEUOQ2V01A Q2V Technical Manual...
Page 70: ...3 3 Main Circuit Wiring 70 SIEPCYEUOQ2V01A Q2V Technical Manual Models B006 B012...
Page 102: ...3 17 Motor Application Precautions 102 SIEPCYEUOQ2V01A Q2V Technical Manual...
Page 138: ...4 12 Test Run Checklist 138 SIEPCYEUOQ2V01A Q2V Technical Manual...
Page 144: ...5 2 European Standards 144 SIEPCYEUOQ2V01A Q2V Technical Manual...
Page 145: ...Standards Compliance 5 5 2 European Standards SIEPCYEUOQ2V01A Q2V Technical Manual 145...
Page 146: ...5 2 European Standards 146 SIEPCYEUOQ2V01A Q2V Technical Manual...
Page 266: ...7 10 Troubleshooting Without Fault Display 266 SIEPCYEUOQ2V01A Q2V Technical Manual...
Page 284: ...8 6 Storage Guidelines 284 SIEPCYEUOQ2V01A Q2V Technical Manual...
Page 312: ...10 10 Peripheral Devices and Options 312 SIEPCYEUOQ2V01A Q2V Technical Manual...
Page 430: ...11 21 Parameters Changed by PM Motor Code Selection 430 SIEPCYEUOQ2V01A Q2V Technical Manual...
Page 731: ...SIEPCYEUOQ2V01A Q2V Technical Manual 731 Z Z pulse Auto Tuning 125...