13
IRT807
OFF
ZERO
kHz
Temp
SMOOTH
mV
mA
INSULA
TION
V
V
50V
1000V
INSULATION TESTER
Apo
MIN/MAX
LOCK
Hz
Test Voltage
F C
SELECT
TEST
RANGE
PI/DAR
A-HOLD
0
0.1 M
1 M
10 M
100 M
1 G
2 G
V
DC
M
IRT807
Apo
V
• Default =
• Press x1 =
• Press x2 =
• Press x3 =
SELECT
Features:
SELECT
LOCK
A-HOLD
MIN/MAX
RANGE
RESOLUTION
ACCURACY
OVERLOAD PROTECTION
3V
0.001V
±(2% +1 dgts)
600V
CAUTION
Discharge all high-voltage capacitors before testing diodes. Large value capacitors should be discharged through an
appropriate resistance load.
Diode Test
IRT807
OFF
ZERO
kHz
Temp
SMOOTH
mV
mA
INSULA
TION
V
V
50V
1000V
INSULATION TESTER
Apo
MIN/MAX
LOCK
Hz
Test Voltage
F C
SELECT
TEST
RANGE
PI/DAR
A-HOLD
0
0.1 M
1 M
10 M
100 M
1 G
2 G
V
DC
M
IRT807
Apo
F
Features:
SELECT
LOCK
A-HOLD
MIN/MAX
Test Voltage
F C
RANGE
CAPACITANCE
RANGE
RESOLUTION
ACCURACY
OVERLOAD PROTECTION
10.00nF
0.01nF
±(2.5% +5 dgts)
600V
100.0nF
0.1nF
1.000µF
0.001µF
10.00µF
0.01µF
100.00µF
0.1µF
1000µF
1µF
±(3% +5 dgts)
10000µF
1µF
WARNING
Capacitors should be completely
discharged prior to testing. Some
electronic devices use capacitors in
circuits that are designed to increase
voltage. By design, a capacitor stores
energy. If a capacitor has been charged
at greater than 600 volts, attempting to
measure it may damage your meter. Larger
capacitors may store enough energy to
cause injury if they are discharged through
the body. Use a conductive device to
dissipate the charge on capacitors. Large
capacitors should be “bled” by using a
resistive load between terminals to slowly
eliminate the charge. Smaller capacitors
may be directly shorted using a metallic
object.
Capacitance
• Default =
• Press x1 =
• Press x2 =
• Press x3 =
SELECT
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