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  • UHV(V)-Blitzstoßspannungsgenerator-Testgerät

    Das UHV(V)-Blitzimpuls-Spannungsgeneratorsystem besteht hauptsächlich aus einem Blitzimpuls-Spannungsgenerator, einem Blitzimpuls-Messschaltschrank usw. Es wird für den Blitzimpuls-Vollwellen-, Schnittwellen- und Betriebswellen-Spannungstest für GIS, Isolatoren, Transformatoren usw. verwendet. Durchführung, HV-Schaltanlage, Leistungsschalter, Lastschalter, Ringnetzwerkschrank.

    Produktdetails des UHV(V)-Blitzstoßspannungsgenerator-Testgeräts


    Blitzimpulsspannungsgenerator

    Product Introduction

    The Impulse Voltage Test System is a specialized testing equipment designed to simulate high-amplitude transient voltage conditions. In real-world scenarios, pulsed high voltages are commonly encountered in phenomena such as natural lightning strikes, where extremely high pulse currents and voltages occur at the point of impact and induce significant transient voltages in the surrounding areas. Similarly, switching operations within power systems can generate transient overvoltages with amplitudes often reaching tens to hundreds of kilovolts, posing serious risks to equipment integrity and personnel safety. To assess and mitigate these risks, experimental research on impulse voltage is essential. Moreover, simulating natural lightning phenomena provides valuable insight into discharge mechanisms and contributes to advancing electrical insulation and protection technologies.


    Technical Advantages

    1. Low Inductance Circuit Design: Utilizes resistive filtering measures, enabling the generation of standard impulse waves even under large capacitive loads and high load capacity conditions.

    2. High Voltage Utilization Efficiency: Demonstrates exceptional performance with lightning impulse voltage utilization of no less than 85% and switching impulse voltage utilization exceeding 80%.

    3. User-Friendly Operation: Features simple waveform adjustment, intuitive controls, excellent synchronization performance, and reliable system operation.

    4. Advanced Charging Control: Employs constant-current charging with automated control technology, achieving a high degree of automation and strong anti-interference capability.


    Produktparameter

    LadespannungSetting range0~800kV
    Arbeitsumfang10.0~800.0kV
    Setting deviation≤±1%
    Instability degree≤±1%
    Setting resolution0,1 kV
    LadezeitSetting range30~180er
    Setting resolution1s
    Alarmverzögerung2s
    Number of pressureSetting range1~999
    Protection settingÜberstromschutzwertconfigurable
    Überspannungsschutzwertconfigurable
    Dynamic charge protectionCan be Selected


    Key application areas

    1. Type testing and factory testing of high-voltage electrical equipment: According to national standards, insulation impact withstand testing is mandatory for transformers, GIS and other products to verify their design safety margins and ensure product quality.

    2. Electric power research and testing institutions: As the core equipment of third-party testing laboratories, universities, and research institutes, it is used for the performance research of insulation materials, the verification of new equipment technologies, and the formulation of standards.

    3. Handover and Sampling Inspection of Power Equipment: Conduct on-site or laboratory impulse withstand voltage sampling of key equipment in important power transmission and transformation projects to evaluate their long-term operational reliability.

    4. Performance testing of overvoltage protection equipment such as lightning arresters: used to test the operating characteristics and protection level of protective devices such as metal oxide surge arresters (MOAs) under impulse voltage.


    Equipment Maintenance
    1. To ensure personal and equipment safety, it is necessary to regularly maintain the generator. To avoid dust accumulation, the generator should be wiped regularly, especially the surfaces of the insulation platform, insulation rod, etc. should be kept clean.
    2. During operation and idle, the generator should be protected from moisture. When the surrounding air humidity is too high for a long time, the cover plate of the body should be opened; When the condensation on the inner wall of the insulation cylinder affects its use, clean hot air should be blown into each ventilation hole on the bottom to dry it.
    3. After a period of use, lubricating oil should be added to each mechanical transmission part.
    4. The semiconductor paint on the surface of the upper ceramic bushing near the middle flange of the high-voltage rectifier transformer should be well protected; If there is strong corona due to wear or failure, semiconductor anti corona paint should be sprayed to make the corona basically disappear.
    5. If there is oil leakage or abnormal noise in the components of the generator, it should be stopped from use. It can only be put back into use after repair and passing the test.

    6. If the ignition pulse system is not working properly, check whether there are short circuits or open circuits in various parts of the ignition pulse system and solve them.


    Frequently Asked Questions

    Q1: How to deal with the unqualified test data of the lightning impulse voltage generator test device?

    A1: First, eliminate wiring errors and environmental interference factors, and measure again. If it is still not qualified, it should be reported to the equipment management department for further inspection.

    Q2: Can the lightning impulse voltage generator test device be used for the detection of GIS equipment?

    A2: It is necessary to confirm whether the interface and range of the lightning impulse voltage generator test device match the detection requirements of GIS equipment. Some GIS equipment requires dedicated adapters.

    Q3: Do I need to discharge after the experiment is completed?

    A3: It is mandatory. After the voltage withstand test is completed, the tested equipment must be fully discharged through a discharge rod before the wiring can be removed to ensure safety.

    Q4: Can the lightning impulse voltage generator test device be used near live equipment?

    A4: Not allowed. The lightning impulse voltage generator test device can only be connected for measurement after confirming that the tested equipment is completely powered off, tested, and grounded.

    Q5: How long does the battery life of the lightning impulse voltage generator test device last?

    A5: It can work continuously for about 4 to 6 hours when fully charged. It is recommended to prepare backup batteries on site or use an external power adapter.

    Q6: Is the measurement result of the lightning impulse voltage generator test device greatly affected by temperature?

    A6: It has an impact. When used within the ambient temperature range of 5 ℃ to 40 ℃, there may be deviations in measurement data at extreme temperatures.











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