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  • UHV-1200 Testeur de relais à 6 phases Test d'injection secondaire

    Le test d'injection secondaire du testeur de relais à 6 phases UHV-1200 est une combinaison flexible de tension et de courant de sortie jusqu'à une tension à 6 phases et un courant à 6 phases, peut être n'importe quelle combinaison pour obtenir une tension conventionnelle à 4 phases, un type de courant triphasé, un type de tension à 6 phases, 6 type de courant de phase et mode de sortie à 12 phases, non seulement compatible avec les diverses méthodes de test traditionnelles, mais également pratique pour le test différentiel de transformateur triphasé et la coupe rapide de la puissance de l'usine et le test d'auto-injection prêt

    Détails du produit du testeur d'injection secondaire du testeur de relais à 6 phases UHV-1200


    Présentation du produit

    The UHV-1200 Microcomputer Relay Protection Tester features a highly flexible combination of voltage and current outputs, supporting up to 6-phase voltage and 6-phase current channels. It allows users to configure various

    output modes, such as the conventional 4-phase voltage and 3-phase current setup, 6-phase voltage output, or combined 6-phase and 12-phase output modes. This design ensures compatibility with traditional testing

    methods and also facilitates advanced applications such as differential testing of three-phase transformers, fast bus transfer tests, and backup auto-reclosing verification.

    The high-performance main unit employs DSP control in its output section, providing fast processing speeds, strong real-time digital signal processing capabilities, wide transmission bandwidth, and high-resolution D/A

    conversion. This ensures high waveform precision, minimal distortion, and excellent linearity in output signals.

    Through the application of advanced technologies, precision components, and materials—along with a professional structural design—the device achieves a compact and lightweight form factor without compromising

    functionality. It is fully portable, easy to set up, and convenient for on-site or mobile testing applications.


    caractéristiques du produit

    1、Flexible Output Configuration

    Supports up to 6-phase voltage and 6-phase current outputs, configurable in various modes for compatibility with conventional testing, differential protection, and advanced grid simulations.

    2、High-Fidelity Power Amplifier

    Utilizes modular linear power amplifiers to ensure clean, stable waveforms without medium/high-frequency interference.

    3、High-Performance DSP Control

    DSP-based output with fast processing, high-resolution D/A conversion, and excellent waveform accuracy.

    4、Compact and Portable Design

    Lightweight, integrated structure with full functionality for easy transport and field testing.

    5、Comprehensive Software Suite

    Enables automated testing, fault simulation, data storage, vector display, and report generation.

    6、Independent DC Power Output

    Includes 110V/220V adjustable DC power supply for auxiliary testing.

    7、Extensive Connectivity

    Features USB and other communication interfaces for PC connection and external device integration.

    8、Built-in Protection Mechanisms

    Incorporates thermal management, soft-start, fault diagnostics, and output lockout for safe operation.

    9、Laptop-Compatible Operation

    Can be operated with an external laptop using the same intuitive software interface.


    6 Phase Relay Tester 1
    6 Phase Relay Tester 2


    Paramètres du produit

    Argument

    Numéro de chaîne actuelNorme 6 phases
    Numéro de canal de tensionNorme 6 phases
    Ac current output range30 A/phase ou 180 A (six en parallèle)
    Dc current output range10A DC/phase
    Ac voltage output range120V AC/phase
    Dc voltage output range160V DC/phase

    Sortie courant alternatif

    6 phase current output per phase(effective value)0~30A output precision 0.2
    3 phase current output per phase(effective value)0~60A
    6 phase parallel current output(RMS)0~180A
    Phase current long-term allowable working value(RMS)10A
    Puissance de sortie maximale du courant de phase450VA
    T6 phase parallel current maximum output power1000 VA
    6. Durée de fonctionnement admissible pour une puissance de sortie maximale du courant parallèle de phase10s
    Frequency range(fundamental)0~1000Hz
    Fréquence harmonique0 to 20 times

    Sortie courant continu

    Sortie courant0~±10A/phase output accuracy 0.5 level
    Tension de charge de sortie maximale20V

    Sortie de tension alternative

    Phase voltage output(RMS)0~120V output precision 0.2
    Line voltage output(RMS)0 ~ 240 V
    travail de sortie de tension de phase/tension de ligne80 VA/100 VA
    Gamme de fréquences (fondamentale)0~1000Hz
    Fréquence harmonique0 to 20 times

    Sortie de tension continue

    Amplitude de sortie de la tension de phase0~±160V output accuracy 0.5
    Amplitude de sortie de la tension de ligne0~±320V
    Puissance de sortie tension de phase/tension de ligne70 VA/140 VA

    Valeur de commutation

    8 switch inputsNull contact 1~20mA, 24V
    0 Potential contact access "0" : 0~+6V; 1: +11V to +250V
    4 paires de sorties de commutationDC:220V/0.2A; AC:220V/0.5A

    Plage de mesure du temps

    Plage de mesure du temps0.1ms~9999s
    Précision de mesure0<0.1mS

    6 Phase Relay Tester 3
    6 Phase Relay Tester 4


    Core functionality

    1. Multi channel analog output: capable of outputting AC, DC current, voltage, and phase signals, simulating various power system operating states and typical fault situations, such as overcurrent, undervoltage, differential, and distance protection.

    2. Action time measurement: Accurately record the time from receiving the signal to completing the action of the relay protection device, ensuring that it meets the standard requirements, thereby ensuring rapid fault removal.

    3. Action value verification: It can test whether the action current and voltage values set by the protection device are consistent with the actual action values, and verify the accuracy and sensitivity of the device.

    4. Logic function testing: supports simulation and verification of complex protection logic, such as multi-stage overcurrent protection, linkage tripping, and automatic reclosing logic, to ensure that the protection strategy is effective in actual operation.

    5. Data recording and analysis: Modern testers usually have data storage and intelligent analysis functions, which can generate test reports for historical data comparison, trend analysis, and operation and maintenance management.


    Application scenarios:

    1. Acceptance of newly put into operation device: After the installation of the protective device, comprehensively test its action values, time limits, and logical functions to ensure compliance with the requirements of the fixed value sheet.

    2. Regular inspection: Regularly verify the protection (such as differential, distance, overcurrent protection) during operation according to regulations to ensure its reliability.

    3. Post fault analysis: After a system malfunction, simulate the fault quantity to test the protective action behavior and determine whether there is refusal, misoperation, or characteristic drift.

    4. Protection system transmission test: Apply simulated fault current and voltage to verify the correctness of the entire circuit from relay sensing fault to circuit breaker tripping.


    Product Frequently Asked Questions

    1. What protection devices can the relay protection tester test? It covers almost all common types of protection, including line protection, transformer protection, busbar protection, generator protection, motor protection, differential protection, distance protection, overcurrent protection, and low cycle load shedding devices.

    2. Why doesn't the protective device work? In most cases, it is related to wiring errors, incorrect setting of settings, improper selection of test items, or abnormal wiring of input and output circuits.

    3. How to deal with the inability to output test voltage? Firstly, confirm the software parameter settings. Secondly, check the fuse, output switch, and voltage circuit wiring.

    4. Does the relay protection tester need to be grounded? The answer is that it must be grounded. Good grounding is not only related to the accuracy of test results, but also to the safety of test personnel.

    5. Why does the repetition of action time decrease? Common causes include fluctuations in auxiliary power supply, poor contact of contacts, internal faults in protective devices, and environmental electromagnetic interference.

    6. What are the most common problems during distance protection testing? Impedance calculation errors and polarity reversal are the two most common problems on site.

    7. How to choose between six phase equipment and three-phase equipment? For units with more tests on line protection, transformer protection, and differential protection, six phase equipment can significantly improve work efficiency.

    8. How to choose a reliable manufacturer of relay protection tester? Attention should be paid to product accuracy, software functionality, after-sales service, and manufacturer's technical strength. For example, Wuhan UHV Power Technology Co., Ltd.










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