Mitsubishi Electric FR-E720-600 Instruction Manual page 296

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Measurement of main circuit voltages, currents and powers
Measuring Points and Instruments
Item
R/L1-S/L2
Power supply voltage
S/L2-T/L3
V
1
T/L3-R/L1
Power supply side
R/L1, S/L2, T/L3 line
current
current
I
1
R/L1, S/L2, T/L3 and
Power supply side
R/L1-S/L2,
power
S/L2-T/L3,
P
1
T/L3-R/L1,
Calculate after measuring power supply voltage, power
supply side current and power supply side power.
Power supply side
power factor
Pf
1
Pf
Output side voltage
Across U-V, V-W and W-U
V
2
Output side current
U, V and W line currents
I
2
Output side power
U, V, W and
P
2
U-V, V-W
Calculate in similar manner to power supply side power factor.
Output side power
factor
Pf
Pf
2
Converter output
Across P/+-N/-
Frequency setting
Across 2(+)-5
signal
Across 4(+)-5
Frequency setting
Across 10(+)-5
power supply
Frequency meter
Across AM(+)-5
signal
Start signal
STF, STR
Select signal
Across RH, RM, RL(+)-SD
Reset
Across RES(+)-SD
Output stop
Across MRS(+)-SD
Across A-C
Fault signal
Across B-C
∗1
Use an FFT to measure the output voltage accurately. An FA tester or general measuring instrument cannot measure accurately.
∗2
When the carrier frequency exceeds 5kHz, do not use this instrument since using it may increase eddy-current losses produced in metal parts inside the
instrument, leading to burnout. In this case, use an approximate-effective value type.
∗3
When the setting of Pr. 192 A,B,C terminal function selection is positive logic
294
Measuring Point
Measuring Instrument
Moving-iron type AC
voltmeter
Moving-iron type AC
ammeter
Electrodynamic type single-
phase wattmeter
P
1
----------------------- -
×
%
=
100
1
×
3V
I
1
1
Rectifier type AC voltage
meter ∗1
(moving-iron type cannot
measure)
Moving-iron type AC
ammeter ∗2
Electrodynamic type single-
phase wattmeter
P
2
×
%
=
----------------------- -
100
2
×
3V
I
2
2
(tester and such may be
(internal resistance 50kΩ or
Commercial power supply
Within permissible AC voltage fluctuation (Refer to
page 300)
P
1
=W
Difference between the phases is within 1% of the
maximum output voltage.
Difference between the phases is 10% or lower of
the rated inverter current.
P
2 =
2-wattmeter method (or 3-wattmeter method)
Inverter LED display is lit. 1.35 × V1
Moving-coil type
380V maximum during regeneration for 200V class
(such as tester)
760V maximum during regeneration for 400V class
0 to 10VDC4 to 20mADC
Moving-coil type
5.2VDC
Approx. 10VDC at maximum
used)
frequency (without frequency meter)
more)
When open
20 to 30VDC
ON voltage: 1V or less
Continuity check ∗3
Moving-coil type
(such as tester)
Across A-C Discontinuity
Across B-C
Remarks (Reference Measured Value)
11
+W
12
+W
13
(3-wattmeter method)
W
W
21 +
22
<Normal>
<Fault>
Continuity
Continuity
Discontinuity
"5" is
common.
"SD" is
common.

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