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Sensor System For Alternating Field Flux Leakage
Sensor System For Alternating Field Flux Leakage

Sensor System For Alternating Field Flux Leakage

MOQ : 1 Unit

Sensor System For Alternating Field Flux Leakage Specification

  • Color
  • Yellow and White
  • Voltage
  • 220-440 Volt (v)
  • Temperature
  • 10-50 Celsius (oC)
  • Material
  • Metal
  • Machine Weight
  • 100 Kilograms (kg)
 

Sensor System For Alternating Field Flux Leakage Trade Information

  • Minimum Order Quantity
  • 1 Unit
  • Supply Ability
  • 15 Units Per Month
  • Delivery Time
  • 4-8 Week
  • Main Domestic Market
  • All India
 

About Sensor System For Alternating Field Flux Leakage

The Sensor System For Alternating Field Flux Leakage is sensitive to defects and can easily detect even the tiniest of flaws on ferromagnetic bars having a hot-rolled surface. The equipped test levers protects the test heads from any sort of damage and can also function without any glitch on non-straight materials. The test diameter is adjusted in an efficient way after conducting a thorough inspection to lower the risk of any malfunction. The Sensor System For Alternating Field Flux Leakage is acclaimed in the market for its fast operational response and reliable results. It is also preferred in the industrial sector for its hassle free operational capabilities.

Salient features:-

  • The diameter of mounted testing materials varies from 10 to 180 mm.
  • The system is equipped with best quality sensors and an advanced mechanism.
  • The dimensions of testing materials diameter can be adjusted automatically.
  • It is suitable to be operated under harsh working condition including high temperature.


Precision Flux Leakage Detection

This sensor system excels at identifying alternating field flux leakage in metal surfaces, ensuring early detection of faults. Its advanced technology enables accurate monitoring, reducing downtime and maintenance costs for industries requiring rigorous safety standards.


Reliable Performance in Challenging Conditions

Built to withstand voltage fluctuations between 220-440 volts and operate safely in temperatures ranging from 10C to 50C, the system integrates seamlessly into diverse industrial setups. Its robust metal construction guarantees longevity and reliable outcomes even in demanding environments.


Versatile Applications and Easy Integration

Manufactured in India and available for global export, this sensor system serves manufacturers, suppliers, and traders. Its adaptable design allows straightforward installation across various types of inspection machinery, optimizing productivity and workflow.

FAQs of Sensor System For Alternating Field Flux Leakage:


Q: How does the Sensor System for Alternating Field Flux Leakage work?

A: The system detects irregularities in metal structures by monitoring the flux leakage generated under an alternating magnetic field, helping to pinpoint defects before they compromise safety or integrity.

Q: What materials and environments is this sensor system suitable for?

A: Constructed from durable metal, the sensor system is ideal for industrial environments with temperatures between 10-50C and voltage requirements of 220-440 volts, making it versatile for harsh conditions.

Q: When is the best time to use this sensor system in operations?

A: It should be used during regular inspections, maintenance cycles, or whenever structural health assessments are required for machinery utilizing metal components.

Q: Where can this sensor system be installed?

A: Designed for flexibility, it can be installed on various metal structures and machinery in manufacturing plants, power stations, fabrication workshops, and other industrial sites.

Q: What is the process for integrating the sensor system into existing machinery?

A: Integration involves mounting the sensor onto the desired metal surface, connecting it to the appropriate power supply (220-440V), and configuring settings according to operating conditions.

Q: How is this sensor system beneficial for industrial users?

A: It enables early detection of faults, reducing unexpected downtime and repair costs, while supporting compliance with safety standards and prolonging equipment lifespan.

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