Multimeter PCE-LCT 3 measures leak currents - PCE Instruments
Multimeter to determine leak current / Temperature measurement with thermo element / Different measurement functions / Inductive current measurement up to 150 A AC / Clamp opening: 30 mm
The multimeter is the ideal device for measuring leak currents. This is possible thanks to the vast range measurement of this multimeter. It also allows you to measure currents up to 150 A AC, and to verify them, in cables or phases with a diameter of up to 30 mm
In addition to current measurement, this multimeter can measure voltages up to 600 V range voltage measurement of this multimeter gives, for example, the voltages in networks three-phases, as well as the temperature using a thermoelement. This special feature of the multimeter makes it possible to determine, for example, the temperature of a running machine. Thanks to its multiple measurement functions, you can use the multimeter in different areas.
Measuring function
- AC current measurement
- DC voltage
- AC voltage
- Resistance
- Continuity test
- Temperature
- Ability
- Test the diodes
DELIVERY CONTENT
1 x Multimeter
1 x Carrying bag
1 x Thermoelement type K
1 x Measuring cables
2 x 1.5 V AAA type batteries
1 x User Manual
SPECIFICATIONS
AC current measurement
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Range measuring
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Resolution
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Precision
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Precision
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4 mA
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0.001 mA
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± (2 % + 10 digits)
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± (3% 5 digits)
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40 mA
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0,01 mA
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± (2 % + 10 digits)
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± (3% 5 digits)
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400mA
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0.1mA
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± (2% + 5 digits)
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± (3 % + 3 digits)
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4A
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0,001 A
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± (2% + 5 digits)
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± (3 % + 3 digits)
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40 A
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0.01A
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± (2 % + 10 digits)
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± (3% 5 digits)
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150 A
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0.1A
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± (2 % + 10 digits)
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± (3% 5 digits)
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Range frequency: 40 Hz ... 1 kHz (sinusoidal wave) Maximum input current: 150 A AC
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DC voltage |
Range measuring
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Resolution
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Precision |
4V
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0.001V
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± (0.5% + 4 digits) |
40V
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0.01V
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± (0.5% + 4 digits) |
400V
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0.1V
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± (0.5% + 4 digits) |
600V
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1V
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± (0.5% + 4 digits) |
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Input Impedance: 10MΩ Maximum input voltage: 600 V AC/DC RMS
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AC voltage |
Range measuring
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Resolution
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Precision |
4V
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0.001V
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± (1% + 3 digits) |
40V
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0.01V
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± (1% + 3 digits) |
400V
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0.1V
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± (1% + 3 digits) |
600V
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1V
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± (1% + 3 digits) |
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Input Impedance: 10MΩ Maximum input voltage: 600 V AC/DC RMS Range frequency: 40 Hz ... 1 kHz (sinusoidal wave)
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Resistance |
Range measuring
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Resolution
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Precision |
400Ω
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0.1Ω
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± (0.8% + 3 digits) |
4kΩ
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0.001 kΩ
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± (0.8% + 3 digits) |
40kΩ
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0.01kΩ
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± (0.8% + 3 digits) |
400kΩ
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0.1kΩ
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± (0.8% + 3 digits) |
4 MΩ
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0.001 MΩ
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± (0.8% + 3 digits) |
40 MΩ
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0.01 MΩ
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± (1% + 3 digits) |
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Voltage during open circuit measurement: approx. 0.4 V Surge protection: 600 V AC/DC RMS
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Continuity test |
Range measuring
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Resolution
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Precision |
Audible signal if
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0.1Ω
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-
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Surge protection: 600 V AC/DC RMS
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Temperature |
Range measuring
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Resolution
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Precision |
-20 ... 0 °C
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1°C
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± (3% 5 digits)
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-0 ... 400 °C
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1°C
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± (1.5% 5 digits)
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400 ... 1000 °C
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1°C
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± (3% 5 digits)
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Surge protection: 600 V AC/DC RMS Temperature accuracy does not take into account the accuracy of the temperature sensor.
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Ability |
Range measuring
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Resolution
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Precision |
40.00nF
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0.01nF
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± (3% + 8 digits) |
400.0nF
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0.1nF
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± (3% + 8 digits) |
4,000 µF
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0.001µF
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± (3% + 8 digits) |
40.00µF
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0.01µF
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± (3% + 8 digits) |
400.0µF
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0.1µF
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± (3% + 8 digits) |
4,000 mF
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0.001µF
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± (3% + 8 digits) |
40.00 mF
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0.01µF
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± (3% + 8 digits) |
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Surge protection: 600 V AC/DC RMS
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|
Diode testing |
Range measuring
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Resolution
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Precision |
3.2V
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0.001V
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-
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Surge protection: 600 V AC/DC RMS Test voltage: 3.2V Forward current: 1 mA The stated accuracies refer to ambient conditions of 23 ± 5 °C and
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Generic specifications
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Maximum clamp opening
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30mm
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Automatic shutdown
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After 30 minutes can be deactivated
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Food
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2 x 1.5 V AAA type batteries
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Measurement share
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3 measurements per second
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Measures outside the range
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“OL”
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Range maximum indication
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4000
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Screen
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LCD
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Maximum operating altitude
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2000 m above sea level
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Temperature coefficient
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0.1 x precision x °C *
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Working conditions
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18 ... 28 °C
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Storage conditions
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-10 ... 50 °C
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Dimensions
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213 x 62 x 38mm
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Weight
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Approximately 238 g, batteries included
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*The temperature is the result of the difference between the temperature of the operating conditions and the current ambient temperature.
Example: When the current ambient temperature is higher than the operating temperature (50ºC [température ambiante actuelle] - 40ºC [température de fonctionnement]) = 10ºC
When the current ambient temperature is lower than the operating temperature (0ºC [température ambiante actuelle] - 5ºC [température de fonctionnement]) = 5ºC
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