Case
ETCR9400 Live Line Zinc Oxide Arrester Tester Application Case Study

Release Date:2020-04-12 08:44:45

Popularity:85

Significance of Leakage Current Testing

The Leakage Current Of Zinc Oxide Arresters Serves As A Critical Indicator Of Their Performance. According To Clause 9.1 Of The Power Industry Standard Dl/474.5-2018 Field Insulation Test Implementation Guide - Arrester Tests, Periodic Measurement Of Power-Frequency Continuous Current During Operation Is Recommended To Detect Internal Moisture Ingress Or Metal Oxide Resistor Degradation. Under Normal Conditions, The Continuous Current Through An Arrester Remains Minimal. However, If Internal Moisture Is Present, This Current Can Surge To Several Milliamps Or Even Tens Of Milliamps. Due To Voltage Fluctuations In Operational Environments, Absolute Thresholds For Severe Moisture Ingress Are Challenging To Establish. Instead, Comparative Analysis Of Historical Data And Leakage Currents Across Three-Phase Arresters Is Advised. Significant Discrepancies In Leakage Currents Indicate The Need For Immediate Maintenance.


Challenges in 10kV Transmission Line Testing

10kv Transmission Lines Widely Employ Zinc Oxide Arresters, Yet Reliable Live-Line Testing Solutions For Assessing Their Performance Have Been Lacking. The Etcr9400 Clamp-On Zinc Oxide Arrester Live Line Tester Eliminates The Need For Power Outages Or Disassembly, Enabling Rapid Leakage Current Measurements Under Energized Conditions.


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ETCR EM9400 System Overview

The ETCR EM9400 Clamp-On Zinc Oxide Arrester Live Line Tester Comprises Three Components:

Host Unit: Features Wireless Communication With The Detector, Remote Control Of Clamp Head Operation, Real-Time Current Value Display, And Clamp Status Monitoring.

Detector: Equipped With A Micro-Motor-Driven Clamp Head And Compatible With Insulating Rods For High-Altitude Overhead Line Testing.

Insulating Rod: Ensures Safe, Ground-Level Operation For Elevated Measurements.

Field Application Advantages

No Power Interruption Or Climbing Required: Simply Attach The Detector To The Insulating Rod, Clamp Onto The Arrester'S Grounding Wire, And Obtain Leakage Current Readings.

Data-Driven Maintenance Decisions: Technicians Can Determine Maintenance Needs Based On Real-Time Measurements, Avoiding Unnecessary Disassembly And Labor Costs.


Key Features Of ETCR EM9400

Live-Line Operation: Eliminates Downtime And Dismantling Requirements For Enhanced Safety And Efficiency.

High-Precision Measurement: Advanced Anti-Interference Technology Ensures Accurate Microamp-Level Detection (As Low As 1μA).

Technical Specifications:

Current Range: 0.000ma–300ma

Clamp Jaw: φ40mm

Wireless Control: Remote Clamp Operation And Status Monitoring

Data Storage: 200 Datasets

Connectivity: Usb Interface

Power: Rechargeable Lithium Battery


Operational Procedure

Pre-Check:

Verify Host/Detector Battery Level (>50% Required).

Confirm Emergency Release Loop Installation On Detector.

Setup:

Mount Detector On Insulating Rod, Adjusting Jaw Orientation For Optimal Cable Access.

Measurement:

Press "OPEN" To Deploy Clamp Jaws.

Position Clamp Around Arrester Grounding Wire Via Insulating Rod.

Engage "CLOSE" To Initiate Automated Testing.

Record Leakage Current Values From Host Display.

Post-Test:

Retract Clamp Jaws Using "OPEN", Safely Withdraw Equipment.

Disassemble Components And Store Appropriately.

Case Study: Three-Phase Arrester Analysis

Field Tests On A 10kv Line Revealed:

Phase A: 0.085ma

Phase B: 0.110ma

Phase C: 0.773ma

Diagnosis: Phase C Arrester Exhibited Significant Degradation, Necessitating Immediate Replacement.

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About Guangdong ETCR Technology Co., Ltd.

As A Pioneer In Power Testing Instrumentation And Power Quality Solutions, Guangdong ETCR Technology Has Dedicated Nearly Two Decades To Innovative R&D And Precision Engineering. We Specialize In Oem/Odm Customization 

To Maximize Client Value Through Tailored Solutions.

Product Inquiry

Official Website: www.etcrmeter.com

Service Hotline: +86 13802922567


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