About Fnirsi DMC 100 Clamp Meter
Fnirsi DMC 100 Clamp Meter
FNIRSI DMC-100 is a 10,000-count high-precision intelligent clamp meter, covering 750V voltage and 600A current ultra-wide range, whether it is engineering maintenance, laboratory research, or vehicle overhaul, home electrical diagnostics, can be easy to handle.
Features:
- High-Precision and Wide-Range Measurement: Offers 10,000-count True RMS with support for up to 750V voltage and 600A current, making it suitable for various applications.
- Advanced Display and Interface: Equipped with a 2.0-inch 240 320 full-color TFT screen featuring an intuitive UI, adjustable brightness, and data curve visualization for clear and convenient readings.
- Versatile Functionality: Supports three measurement modes (routine, waveform, and power), along with NCV non-contact voltage detection and zero/fire line identification for enhanced usability.
- Reliable Power and Efficiency: Powered by a long-lasting 3.7V 1500mAh battery with intelligent auto power-off to extend battery life.
- User-Friendly Features: Includes a flashlight, screen backlight, and data-saving options, making it a practical and reliable tool for various scenarios.
Accurate AC Current MeasurementEngineered for precise AC current evaluation, the Fnirsi DMC 100 Clamp Meter is optimized for readings from 0.01A to 100A. With a resolution of 0.01A and an accuracy of 2.5% + 5 digits, it is suitable for detailed diagnostics in domestic and professional environments alike.
Simple and Safe OperationThis clamp meter features overload protection on all ranges and complies with the CAT III 600V safety standard. The ergonomic design, combined with a backlit display and intuitive manual controls, ensures ease of use and effective operation during field measurements.
Enhanced Usability FeaturesThe DMC 100 includes practical functions such as Data Hold, Max Value Hold, and Auto Power Off, enhancing user convenience and maximizing battery life. The LCD backlight enables comfortable operation in low-light conditions, while the handheld design delivers portability for on-the-go professionals.
FAQ's of Fnirsi DMC 100 Clamp Meter:
Q: How do I use the Fnirsi DMC 100 Clamp Meter to measure AC current?
A: To measure AC current, open the clamp jaw and position it around a single conductor (up to 26mm in diameter). Ensure the meter is set to the appropriate AC current measurement range. View the current value on the LCD display, which updates at a sampling rate of three times per second.
Q: What safety features are integrated into the DMC 100 Clamp Meter?
A: The DMC 100 offers overload protection on all measurement ranges and is rated CAT III 600V, ensuring safety during electrical diagnostics. Additionally, it features a low battery indication and auto power-off to sustain safe and consistent operation.
Q: When is it beneficial to use the Data Hold and Max Value Hold functions?
A: Data Hold is useful when you need to retain a measured value on the display for reference or documentation. Max Value Hold captures and displays the highest current recorded during your measurement session, making it ideal for monitoring circuit fluctuations or peak loads.
Q: Where can the Fnirsi DMC 100 Clamp Meter be used effectively?
A: The DMC 100 is suitable for both indoor and outdoor electrical diagnostics, provided the operating temperature is between 0C and 40C and humidity doesn't exceed 80% RH (non-condensing). It is ideal for use in industrial, commercial, and residential electrical systems.
Q: What process does the clamp meter use to measure current without direct contact?
A: The clamp meter measures AC current by detecting the magnetic field generated by current flowing through a conductor when the jaw is clamped around it. This non-contact method enables safe measurement without the need to physically disconnect wires.
Q: What are the benefits of the True RMS feature in this clamp meter?
A: True RMS capability provides accurate readings of both sinusoidal and non-sinusoidal AC currents. This is crucial when working with electrical systems that may have distorted or complex waveforms, ensuring precise measurements in various scenarios.