For full functionality of this site it is necessary to enable JavaScript.
EMIN.VN
0

DC Resistance Tester Working Principle

2026년 09월 07일 10시 26분 04초

A DC resistance tester applies a controlled DC current and measures the resulting voltage to determine resistance. Proper wiring, discharge handling, and current selection support a stable measurement process.

A DC resistance tester measures resistance by applying a controlled direct current to the item under test and observing the voltage that develops across it. This approach is particularly relevant when evaluating winding resistance, including work involving a no-load voltage regulating transformer. Understanding the measurement path and the operating precautions helps users interpret the instrument’s indications and avoid interrupting a test incorrectly.

DC resistance tester SONEL MMR-630

DC resistance tester working principle

The core of a winding resistance tester is a constant-current source. During a resistance measurement, this source delivers DC current to the tested product through the I+ and I- terminals. Because the current is controlled, the instrument can use the voltage response of the tested product to determine its resistance.

As the applied current passes through the resistance being tested, a corresponding voltage is generated. The tester retrieves this voltage through the separate V+ and V- terminals. In simple terms, the current terminals supply the test current, while the voltage terminals sense the voltage produced by that current.

This separation of current and voltage connections is central to the measurement arrangement described for a DC resistance tester. The instrument uses the applied current and the sensed voltage as the basis for the displayed resistance result. For dependable operation, the wiring must remain intact throughout the measurement.

Understanding the terminal roles

I+ and I- terminals: applying test current

The I+ and I- terminals form the current path. They connect the constant-current source to the tested product, allowing the selected DC current to flow through the resistance under evaluation. The magnitude of that current is related to the measurement range selected on the tester.

V+ and V- terminals: sensing voltage

The V+ and V- terminals retrieve the voltage value generated on the tested product. These terminals are used for voltage sensing rather than for feeding the test current. Keeping the current and voltage paths clearly connected as intended supports the tester’s measurement process.

Key precautions during winding resistance measurement

Testing procedures should account for the state of the circuit and the instrument indication. The following points are especially important when performing a DC resistance tester

Complete discharge before changing a tap

When measuring a no-load voltage regulating transformer, discharge must be completed before the tap switch is changed. The tap switch should only be operated after the discharge indication has ended. This sequence prevents a tap change while the tester still indicates that discharge is in progress.

Do not disconnect wiring during a test

Wiring must not be disconnected during measurement. Since the tester applies current through I+ and I- and retrieves voltage through V+ and V-, interrupting a connection breaks the intended measurement arrangement. Connections should therefore remain in place until the measurement process has been exited and the relevant indication allows the next step.

Responding to a stalled charging indication

A charging progress bar and current display that remain unchanged for a long time can indicate that the measured winding resistance exceeds the current measurement range. In this condition, the current may not reach the preset value.

The stated response is to press the Exit key to return, select a current, and try the measurement again. This gives the operator a way to adjust the current selection rather than waiting indefinitely for a value that may not be reached under the existing range.

A practical measurement sequence

  1. Connect the test current leads to the I+ and I- terminals and the voltage sensing leads to the V+ and V- terminals.
  2. Apply the selected DC current and allow the tester to obtain the voltage value from the tested product.
  3. Keep all wiring connected while measurement is underway.
  4. If the charging progress and current reading remain stagnant, exit the operation, select a different current, and repeat the test.
  5. For a no-load voltage regulating transformer, wait for the discharge indication to end before switching the tap.

Why procedure matters

By treating current application, voltage sensing, discharge, and range selection as connected steps, users can follow a clearer and more consistent DC resistance measurement process. For transformer winding resistance work, observing the discharge indication before changing a tap is also an essential part of the operating sequence.

The low resistance tester working principle depends on a controlled current path and a valid voltage reading. A correct terminal arrangement, uninterrupted wiring, and appropriate current selection help the instrument complete this process.

관련 뉴스

Engine Running Jerkily, VFD Reporting Encoder Fault, How to Check for Encoder Pulse Loss
2026년 09월 08일 10시 09분 36초

Encoder là bộ phận nhỏ gắn trên trục động cơ, làm nhiệm vụ đếm chính xác động cơ đang quay bao nhiêu vòng, đang ở vị trí nào, rồi gửi tín hiệu xung liên tục về biến tần hoặc bộ điều khiển. Hệ thống dựa hoàn toàn vào chuỗi xung này để biết động cơ đang chạy đúng tốc độ, đúng vị trí hay chưa. Mất xung tín hiệu encoder tương đương hệ thống đột ngột mất khả năng nhìn thấy động cơ đang làm gì, kết quả thường thấy nhất là động cơ chạy sai lệch, giật cục, hoặc biến tần dừng khẩn cấp kèm mã lỗi như Encoder Fault, PG Fault.

[Tech News Roundup – September 2026] Chips, Solar Panels, and Storage Batteries Accelerate
2026년 09월 07일 16시 42분 26초

The daily barrage of technology news can easily lead readers to conflate various figures as belonging to the same timeframe. This article categorizes information into three distinct layers newly emerging events, summary data based on reporting periods, and long-term cumulative trends thereby helping readers identify exactly what type of information they are consuming.

Diffuse Reflective Fiber Optic Sensor Head
2026년 09월 07일 15시 17분 17초

Diffuse-reflective fiber-optic sensor probes solve automation challenges where machine space is too confined to install opposed-mode transmitter-receiver pairs. Both the emitter and receiver components are housed within a single probe, allowing it to scan one side of an object without requiring equipment to be placed on the opposite side

Reading Solar Irradiance and Inverter Power Output Charts
2026년 09월 07일 14시 16분 25초

A rooftop solar system might develop a problem as early as the morning, yet a technician might not discover it until the afternoon during an on-site roof inspection; meanwhile, monitoring software could have detected signs of an anomaly much earlier

혜택 소식 받아보기

대량 할인, 도매 가격 업데이트 및 신제품 소식을 이메일로 받아보세요.

구독하면 당사의 서비스 이용약관개인정보 처리방침에 동의하는 것으로 간주됩니다.

빠른 지원

인증된 전문가에게 직접 연결