Fully Automatic Insulation Boots Withstand Voltage Test Device

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Fully Automatic Insulation Boots Withstand Voltage Test Device
Details
The METX-W6D2 Fully Automatic Insulation Boots Withstand Voltage Test Device is a specialty testing instrument intended for insulated protective gear like gloves and boots. Its main goal is to provide effective isolation of electric shock risks during high-voltage operations by evaluating the insulation integrity and withstand voltage performance of insulating equipment by applying a specified AC/DC high voltage. Its application focuses on "compliance testing and safety assurance for insulating protective equipment," benefiting all high-voltage operations-related sectors, such as construction, mining, power generation, and more.
Category
Electric Safety Tools Test Equipment
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Description

Fully Automatic Insulation Boots Withstand Voltage Test Device

 

Product Introduction

 

METX-W6D2 Fully Automatic Insulation Boots Withstand Voltage Test Device The fully automated electrical safety tools testing system was created in compliance with the State Grid Corporation of China's Electrical Safety Work Procedures (Substation Section) and the State Electric Power Company's Notice on Issuing the "Preventive Testing Procedures for Electrical Safety Tools" (Trial) (State Electric Power [2002] No. 777). This product's specs all meet national requirements. In compliance with the "Preventive Testing Procedures for Electrical Safety Tools," it conducts intelligent insulation resist voltage testing on safety equipment like gloves and insulated boots. Breakdown is not allowed throughout the six-month testing cycle for insulated boots and gloves. Furthermore, insulated gloves and boots must not have leakage currents that are higher than certain thresholds.

 

Product Parameter (specification)

 

(1) Power Supply Input Voltage

220V±10% 50Hz

(2) Control Box Output Voltage

0-250V

(3) Control Box Output Current

25A

(4) Rated Output Voltage

100KV

(5) Rated Output Capacity

5KVA

(6) Maximum Range

25mA

(7) Leakage Current Range with Trip System

≥12mA

(8) Voltage Measurement Error

±1% +3 digits

(9) Leakage Current Measurement Error

±1% +3 digits

(10) Leakage Current Resolution

0.01mA

(11) Digital Timer

99 minutes freely adjustable

(12) Ambient Temperature

-10°C to 40°C

(13) Humidity

≤90% RH, no condensation, no instrument flickering

(14) Control Box Dimensions

420mm × 340mm × 520mm

(15) Tester Dimensions

260mm × 980mm × 480mm

(16) Control Box Weight (kg)

22

(17) Tester Weight (kg)

8

 

Product feature and application

 

3.1 The device can measure the leakage current for each specimen while testing eight pairs of insulated boots or gloves at once.
3.2 Insulated shoe testing utilizes a dry approach employing small steel balls put inside, replacing the previous procedure of filling shoes with water for testing-which proved difficult to dry afterward.
3.3 High and low voltages are isolated. Leakage current is relayed back to the control box using interference-resistant wireless technology, considerably boosting personal safety.
3.3 Each test channel provides a disconnect function. Should any channel encounter breakdown or surpass the predefined leakage current threshold, that channel immediately withdraws from testing without harming other specimens.

3.4 Each test channel provides a disconnect function. Should any channel encounter breakdown or surpass the predefined leakage current threshold, that channel immediately withdraws from testing without harming other specimens.
3.5 The device has a large information capacity thanks to its 7-inch TFT touchscreen LCD with Chinese character display. A single screen concurrently indicates test voltage, 8-channel high-voltage leakage currents, perpetual calendar, elapsed time, and Chinese prompts.

3.6 Utilizes a DC motor-controlled voltage regulator for the voltage-rising process, enabling fully automated withstand voltage testing. Upon test initiation, the instrument automatically closes the circuit and increases voltage at the rate specified by national standards. Once the predetermined voltage is attained, timing starts. The instrument maintains the test voltage, automatically drops voltage upon timing completion, and automatically turns off when reaching zero, signaling test completion. It concurrently shows leakage currents for each specimen and instantly stores test findings.
3.7 Insulation boot testing uses a specific metal grounding tray, whereas insulation glove testing utilizes a customized container for operating ease.
3.8 The test transformer's turns ratio is flexibly customizable, providing

 

Prodection details

 

Specifically, this includes the following core scenarios:

I. Power Industry (Core Application Areas)

1. Power supply companies / Power operation and maintenance units

2. Power generation enterprises (thermal, hydro, nuclear, wind power, etc.)

 

II. Industrial Mines and Manufacturing

1. High-voltage equipment manufacturing / maintenance enterprises

2. High-risk industrial and mining enterprises

 

III. Construction and Municipal Engineering

IV. Special Operations and Emergency Rescue

V. Testing Institutions and Metrology Institutes

VI. Education and Training Organizations

 

Company Qualifications

 

 

FAQ

1)What core standards must this device comply with, and how is compliance verified?

DLT 976-2017 Preventive Testing Procedures for Live-Working Tools, Devices, and Equipment DLT 1476-2023 Preventive Testing Procedures for Electrical Safety Tools GB/T 17622-2008 Insulating Gloves for Live-Working GB 21148-2020 Foot Protection-Safety Shoes

2)What should I do if the instrument's current reading is inaccurate?

Before being shipped, the instruments from our manufacturer are calibrated. If current readings reveal inconsistencies, connect to a standard current source for calibration. Voltage should be calibrated directly using a high-voltage divider.

3)How Are Insulating Gloves Tested?

Test for low-voltage insulating gloves:
Low-voltage insulating gloves are tested preventively at a voltage of 2.5 kV for a duration of one minute. Qualified gloves have a leakage current of no more than 2.5 mA. The default value of this 2.5 mA threshold is set in stone. After installing the test specimen, immediately begin the test using the operational interface on the testing equipment.
Test for High-Voltage Insulating Gloves
The test technique is identical to the above, varying only in voltage and leakage current parameters: For the preventative test of high-voltage insulating gloves, a voltage of 8 kV is maintained for one minute. Qualified gloves have a leakage current of no more than 9 mA.

 

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