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  • UHV-2000A デュアルチャンネルトランス部分放電アナライザー PD 検出テスター

    UHV-2000A部分放電アナライザは、主にケーブル、絶縁体、ブッシング、変圧器などの電気製品の部分放電レベルを検出および分析するために使用されます。部分放電図を2D、3Dで表示します。 部分放電画像、データを自由に保存、印刷、テストレポートを自動生成

    UHV-2000A デュアルチャンネルトランス部分放電アナライザー PD 検出テスターの製品詳細


    UHV-2000A 部分放電検出器

    HTY_4119Product Introduction

    The UHV-2000A Partial Discharge Detector manufactures is suitable for partial discharge measurement in various high-voltage electrical equipment, representing the advanced level of domestic digital partial discharge detection technology.







    200 JFD-2000A 局部放电检测系统 无LOGO

    技術的特徴

    チャンネル数: 独立2チャンネルC

    サンプルレート: 最大10M

    サンプリング精度: 12ビット

    レンジ切り替え:-40dB、-20dB、0dB、20dB、40dB、60dBの計6段階

    測定周波数帯域:3dB帯域幅10kHz~1MHz

    デジタルフィルタリング:10kHz~1MHz(オプション)

    セグメント化されたプログラマブルフィルタ:低周波数:10kHz、20kHz、40kHz、80kHz

    低域周波数:10kHz、20kHz、40kHz、80kHz

    この範囲の非線形誤差: 10%

    測定範囲:0.1pC~100,000pC

    感度: 0.1pC

    試験対象製品の静電容量範囲:6pF~250µF

    試験電源周波数範囲:50~500Hz

    ディスプレイ: 12インチTFTトゥルーカラータッチLCDディスプレイ画面

    解像度: 1024 × 768


    インターフェース

    USB: 3 チャネル、外付けマウスとキーボード、および外付けモバイル ストレージ デバイスに対応

    Power Mode: AC 220V; frequency 50Hz;Power 300W

    電気信号インターフェース:信号入力用の2チャンネルBNCインターフェース

    光信号インターフェース:2チャネル、信号入力に使用

    ネットワークインターフェース: 1チャネル

    Grounding button External grounding


    一般的な指示

    CPU: 主周波数 1.60GHz

    メモリ: 2.0GB

    ハードディスク: 128GB ソリッドステートドライブ

    システム: Windows XP

    Work environment: ambient temperature:-10-45℃

    相対湿度:≤95%

    サイズ:長さ×幅×高さ:474mm×288mm×370mm

    正味重量:15.8kg


    Product Characteristics

    1. The partial discharge detection system supplier is a 2-channel, desktop, TFT LCD display, which is reliable and has a low failure rate.

    2. Truly achieved the integration of partial discharge measurement, positioning, and online monitoring functions.

    3. The Partial discharge test system factory adopts modern electronic and computer integrated technology to achieve signal amplification, filtering, data acquisition, data processing, graphic display, and automatic generation of test reports, thereby completing partial discharge measurement and fault diagnosis.


    Product functions

    1. Detection: Capture PD signals sensitively and reliably.

    2. Interference suppression: Hardware filtering, digital signal processing algorithms (such as wavelet transform, digital filtering), and other methods are used to suppress background noise and interference.

    3. Feature extraction: Calculate basic parameters such as the amplitude, phase, and repetition rate of the discharge.

    4. Pattern recognition: Based on the phase distribution map of discharge, pulse waveform, statistical features, etc., use expert systems, neural networks, support vector machines and other methods to identify discharge types (such as internal discharge, surface discharge, corona discharge, floating potential discharge).

    5. Severity assessment: Based on the discharge capacity, discharge energy, development trend, etc., evaluate the degree of harm of discharge to equipment insulation.

    6. Localization: Using time differences (such as UHF, ultrasound), signal strength (such as TEV scanning), or multiple methods of fusion, determine the specific location of the PD source inside the device.

    7. Alarm and Diagnosis: Based on preset thresholds or intelligent analysis results, trigger alarms and provide diagnostic reports.

    8. Data management and trend analysis: Store historical data, draw discharge parameter trend charts, and evaluate insulation state changes.


    Application scenarios

    1. Factory test and acceptance test: Ensure the insulation quality of new equipment.

    2. Handover test: Inspection before equipment installation and operation.

    3. Preventive testing: Regular offline testing.

    4. Online monitoring: Continuous or periodic real-time monitoring of important equipment such as large transformers, GIS, and high-voltage cables.

    5. Fault diagnosis: Find the cause when the equipment is abnormal.

    6. Verification after maintenance: Confirm whether the defects have been eliminated after maintenance.


    FAQ

    1. What is the primary purpose of the partial discharge detector?

    partial discharge detector manufactures is a specialized instrument designed to measure and analyze partial discharge activity in high-voltage electrical equipment. Its primary purpose is to assess insulation condition and diagnose potential faults by detecting, measuring, and recording the very small electrical signals produced by PD events. This helps in predicting and preventing insulation failures in critical power apparatus.

    2. What types of equipment can be tested with this detector?
    The instrument is suitable for partial discharge measurement and analysis on a wide range of high-voltage electrical equipment. This includes, but is not limited to, power transformers, GIS, power cables, motors, generators, and instrume
    nt transformers. It is a versatile tool for factory testing, field commissioning, and routine maintenance.

    3. How does the instrument handle data and reporting?
    partial discharge detector factory integrates modern digital technology to manage the entire measurement process. It can perform automatic calibration, automatic synchronization, and automatic voltage recording. Measurements can be automatically saved and played back for detailed analysis. The integrated software can generate automatic test reports, and the instrument is equipped with multiple USB ports for easy data export using external storage devices.

    4. Is this instrument suitable for online monitoring?
    Yes, in addition to standard partial discharge measurement, the partial discharge detector supplier can be used for online continuous monitoring of partial discharge in high-voltage equipment such as large power transformers (this is an optional function). This truly achieves the integration of measurement and online monitoring capabilities, providing flexibility for both routine testing and long-term condition assessment.

    5. How does the device ensure reliable performance?
    The system is built with a reliable hardware architecture, featuring an industrial-grade computer platform with a low failure rate. It uses a high-performance CPU, sufficient memory, and a solid-state drive for robust data handling. The digital signal processing and filtering techniques, combined with its compliance with international standards, ensure accurate and reliable measurement results. The instrument also provides 2 channels for both electrical (BNC) and optical signal inputs, offering flexibility for different sensor types.








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