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RONS Peak Overvoltage Analyzer - Real-Time Monitoring & Recording for Lightning Interference | China Suppliers & Factory

Discover the RONS Peak Overvoltage Nanosecond Level Recording Analyzer, a cutting-edge solution for monitoring transient overvoltage events. This advanced device serves as both a microscope and magnifying glass for accurately capturing intricate details of nanosecond peak overvoltage. With its three core functions—monitoring, recording, and analysis—RONS stands out among suppliers in China. Featuring a high sampling frequency of 20MHz, it enables real-time online monitoring of system voltage and current. Additionally, RONS allows for long-term recording of voltage and current fault waveforms, making it an essential tool for factories and industries needing precise transient overvoltage analysis. Trust RONS for unparalleled performance and reliability in your electrical systems

    Functional Features

    No. Feature Description
    1 Beidou/GPS timing can be connected to a separate external time synchronization device or shared with the original system clock
    2 transient overvoltages Continuous for several milliseconds or less, strong resistance oscillation or non oscillation overvoltage, exceeding the set threshold, recording(-1~+30s )
    3 slow-front overvoltage Most are unipolar, with peak values ranging from 20ms to 5ms, and half peak values less than 20ms. When the amplitude of the overvoltage exceeds the set threshold, the waveform is recorded(-1~+30s )
    4 switching overvoltage Most are unipolar, with peaks ranging from 250ms to 2.5ms. When the amplitude of the overvoltage exceeds the set threshold, the waveform is recorded(-1~+30s )
    5 fast-front overvoltage Most are unipolar, with a wavefront of 0.1ms~20ms and a half peak of less than 300ms. If the set threshold is exceeded, the waveform is recorded(-1~+30s )
    6 Lightning Most are unipolar, with a peak value between 20ms and 5ms. If the set threshold is exceeded, the waveform will be recorded(-1~+30s )
    7 Other overvoltage Various common transient overvoltage monitoring methods typically last for a long time and are recorded when the set threshold is exceeded(-1~+30s )
    8 Routine power quality monitoring Voltage fluctuation, load current, power analysis, THD monitoring, imbalance monitoring, etc. No need to install other power quality monitors
    9 Main spec Sampling frequency 100MHz; monitor 0-63 harmonics, inter harmonics, and higher harmonics; 4G memory, 64G solid-state drive; LCD high brightness TFT LCD touch screen; 10 inches; Resolution 800 × 600; one × RS-232/485, 1 × RS232, 4 × USB2.0, 1 × VGA, 1 × GigaLAN

    Products Advantage

    A high sampling frequency of 20MHz;
    Simultaneously equipped with power quality monitoring function;
    Fill the prevention and control blind spots, accurately capture nanosecond level details;
    Powerful data analysis and networking capabilities.
    RONS for Interference or Lightning Recording

    Frequently Asked Questions

    How does the device achieve time synchronization?
    The device utilizes Beidou/GPS timing. It can be connected directly to an independent external time synchronization device or integrated with the existing system clock.
    What types of overvoltages can this system monitor?
    The system monitors transient overvoltages, slow-front overvoltages, switching overvoltages, fast-front overvoltages, lightning, and other common transient overvoltages. It records waveforms (-1 to +30s) automatically whenever a set threshold is exceeded.
    Does it require a separate power quality monitor?
    No, there is no need to install other power quality monitors. The system features built-in routine power quality monitoring, including voltage fluctuation, load current, power analysis, THD monitoring, and imbalance monitoring.
    What are the key hardware specifications of the monitor?
    Key specs include a 100MHz sampling frequency, capability to monitor 0-63 harmonics, 4G memory, 64G SSD, a 10-inch high brightness TFT LCD touch screen (800x600 resolution), and multiple communication ports: RS-232/485, USB 2.0, VGA, and GigaLAN.
    How does the system help in filling prevention and control blind spots?
    With a high sampling frequency of 20MHz (and up to 100MHz peak sampling rate), the system can accurately capture nanosecond-level details, eliminating blind spots in traditional power monitoring setups.

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