Product Aliases
Digital megohmmeter, pointer megohmmeter, insulation tester, digital high-voltage megohmmeter, high-voltage insulation resistance tester, insulation resistance measuring instrument, insulation characteristic tester, electric megger, electronic insulation resistance tester, high-power high-voltage megohmmeter
Features of Megohmmeter
1. High output power, strong load capacity, and strong anti-interference capability.
2. The housing of this meter is made of high-strength aluminum alloy. Inside, it is equipped with an equipotential protection ring and a fourth-order active low-pass filter, which can effectively shield against external power frequency and strong electromagnetic fields. For capacitive test samples, due to the output short-circuit current greater than 1.6mA, it is easy to quickly raise the test voltage to the rated value of the output voltage. For low resistance measurements, because the proportional method is adopted, voltage drop does not affect the measurement accuracy.
3. No manual labor is required; it is powered by batteries, and the range can be automatically switched. The clear panel operation and LCD display make measurement very convenient and fast.
4. The output short-circuit current of this meter can be directly measured without needing to estimate through load testing.
Synthetic Resistance
The method of synthesizing resistance is excluded due to design cost and size constraints. Instead, a discrete high-voltage resistor matrix method is adopted, forming an array that can provide more than 500,000 resistance values. In this calibrator, there are 8 resistance ranges covering from 10 kΩ to 10 GΩ, each providing a stable output of 4.5 digits.
Collecting suitable high-voltage resistors and integrating them into an instrument poses another challenge. This is a safety standard challenge related to the Low Voltage Directive, a mandatory requirement for EU CE certification. The standard relevant to instrument manufacturers is EN 61010 - Safety Requirements for Electrical Equipment for Measurement, Control and Laboratory Use [2].
The Low Voltage Directive requires limiting the calibrator voltage to 1,000 Vrms. So how can megohmmeters with test voltages up to 5 kV be calibrated? Such instruments have a wider dynamic range, can measure resistances up to 10 TΩ, and provide guard terminals as described above, enabling accurate measurement of very high resistance values. Fortunately, this guard configuration can itself form a resistance multiplier, effectively multiplying a known resistance by 1000 times, as shown in the example in Figure 2 [3]. Equally important, since the multiplier is a discrete, isolated, independent device that can meet the high voltage required by the multiplier, it is no longer within the scope of the Low Voltage Directive.



