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Intelligent 50 kVA 150 kV AC Withstand Testing System with Adaptive Noise Filtering for Transformer Capacitor and Substation Equipment Insulation Tests in Complex Electromagnetic Environments

Intelligent 50 kVA 150 kV AC Withstand Testing System with Adaptive Noise Filtering for Transformer Capacitor and Substation Equipment Insulation Tests in Complex Electromagnetic Environments

Product Details:
Place of Origin: China
Brand Name: Sansion Power
Certification: CE/SGS/EMS/ISO 9001
Model Number: YDW
Detail Information
Place of Origin:
China
Brand Name:
Sansion Power
Certification:
CE/SGS/EMS/ISO 9001
Model Number:
YDW
System Power:
50 KVA
Test Voltage:
150 KV
Test Mode:
Power Frequency AC Withstand
PD Detection:
Integrated
Detection Characteristic:
High Sensitivity
Filtering Method:
Adaptive Filtering Algorithm
Highlight:

High Light

Highlight:

50 kVA dielectric withstand tester

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150 kV AC insulation test system

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adaptive noise filtering withstand tester

Trading Information
Minimum Order Quantity:
1
Packaging Details:
Plywood Case
Delivery Time:
30 Working Days
Payment Terms:
L/C,T/T
Product Description

Product Description

Power Frequency PD-Free AC Withstand Test System

Obtaining a useful discharge signal can become challenging when high-voltage testing takes place around strong electromagnetic interference. To address this requirement, the 50kVA/150kV Power Frequency PD-Free AC Withstand Test System incorporates intelligent signal-processing technology to improve the stability of partial discharge detection during high-voltage insulation tests.

An adaptive filtering algorithm helps suppress background noise and unwanted interference, allowing weak discharge signals to be captured more effectively. The system is suitable for transformers, instrument transformers, generators, surge arresters, bushings, GIS, capacitors and switchgear, making it applicable to a wide range of power equipment inspection and insulation assessment tasks.

Product Parameters

Parameter Specification
System Power 50 kVA
Test Voltage 150 kV
Test Mode Power Frequency AC Withstand
PD Detection Integrated
Detection Characteristic High Sensitivity
Filtering Method Adaptive Filtering Algorithm
Key Performance Anti-Interference Detection
Applicable Equipment High-Voltage Power Apparatus

Product Advantages

  • Adaptive Noise Filtering: Automatically helps suppress background noise during PD signal acquisition.
  • Strong Interference Resistance: Designed to maintain dependable detection performance in complicated electromagnetic surroundings.
  • Weak Signal Capture: High sensitivity improves the ability to identify subtle discharge activity.
  • Reliable Test Information: Cleaner signal processing assists engineers in making more consistent insulation assessments.
  • Wide Application Range: Suitable for multiple types of power transmission and distribution equipment.

Application Scenarios

  • Substation electrical equipment testing
  • Transformer condition assessment
  • Capacitor insulation inspection
  • GIS and switchgear testing
  • High-voltage maintenance facilities
  • Electrical equipment commissioning
  • Professional insulation testing laboratories

FAQ

Q1: How does the system handle electromagnetic interference?
A: Its adaptive filtering algorithm helps suppress background noise and improve the stability of PD signal detection.

Q2: Why is high sensitivity important in PD testing?
A: It improves the ability to capture weak discharge signals that could otherwise be difficult to identify.

Q3: Where can this testing system be used?
A: Typical environments include substations, testing laboratories, maintenance facilities, commissioning sites and electrical equipment inspection centers.

Q4: What equipment can be examined with the system?
A: Applicable equipment includes transformers, instrument transformers, generators, GIS, switchgear, capacitors, bushings and surge arresters.

Intelligent 50 kVA 150 kV AC Withstand Testing System with Adaptive Noise Filtering for Transformer Capacitor and Substation Equipment Insulation Tests in Complex Electromagnetic Environments