1. Problems existing in the existing test methods The loop resistance tester designed in accordance with the conventional design principle found during field testing that there is a common problem: When the tester voltage wiring circuit is in poor contact or opens, the tester will also display a Values, the following situations will occur:
(1) The voltage loop is open and there is no strong electric field interference on the test site. In this case, the differential mode voltage of the amplifier input is basically 0, so the test value displayed by the instrument is close to 0. If the tester has enough on-site test experience, It can be judged that the instrument voltage loop test line is abnormal. After the abnormality of the instrument voltage loop test line is eliminated, the final correct test result can be obtained; if the tester does not have enough on-site test experience, it may misjudge the tester to have a problem and interrupt Testing, replacing or repairing the instrument delays the power outage and brings unnecessary trouble to the test.
(2) Poor contact of the voltage circuit. In most cases, after the long-term operation of the terminal block of the circuit breaker, an oxide film or an oil film will be generated on the outer surface of the terminal block. When the voltage test clamp of the circuit resistance meter is clamped to such a terminal block, If the contact is poor, the voltage test wire clamp itself must also generate a certain contact resistance. When the contact resistance value reaches the internal resistance of the voltage sampling loop, it will have a serious impact on the test results.
(3) The voltage circuit is open or poorly contacted (visual contact resistance R1 is infinite when open). There is strong electromagnetic interference at the test site. If the bus is energized, the live bus passes the air-based capacitor and interferes with the tester. In the voltage test line, differential mode voltage appears across the voltage tester line of the loop tester due to interference.
If the interference is large, the loop resistance tester will show a much larger value than the resistance value of the test object. At this time, if the tester has enough on-site test experience, it may be able to determine the abnormality of the test result, attract attention and eventually Get the correct test result. However, if the tester does not have sufficient experience, it may misjudge the switch circuit resistance value to exceed the standard. It may use the method of power failure maintenance to deal with the defects and cause unnecessary losses to the power production.
If the intensity of the interference is not very high, the instrument display value is within the acceptable resistance range of the circuit breaker. This situation is the same as the result of “(2) Poor contact of the voltage circuitâ€, which also causes misjudgment.
2. Use the improved four-wire measurement method to solve the above problems.
Loop resistance tester based on the analysis of the above issues, proposed improved four-wire measurement method, the use of the latest power technology, continuous output of large current for a long time, to overcome the shortcomings of pulsed power supply transient current, can effectively break down the switch contacts Oxide film solves the problems existing in the traditional loop resistance tester.
Through the large current constant current source to test the test sample, collect the voltage and current values, and calculate the resistance value of the sample. The value measured at this time must be the true resistance value of the test sample, eliminating the occurrence of false data. Even if there is a strong electric field interference in the site, since the resistance in the voltage loop is very small, the voltage at the voltage test terminal is sensed as a common-mode voltage. This product will reduce this AC common-mode interference to a very low value through capacitive grounding, and will not test. Accuracy affects.
The above shows that the automatic judgment and prompting function greatly improves the test accuracy and improves the production efficiency. It is a reliable basis for field test personnel to quickly solve problems.
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