Signal calibration Dual frequency eddy current flaw detector

Eddy current testing
December 15, 2022
Category Connection: Eddy Current Testing Equipment
Brief: Discover the HUATEC HEF-600 series Dual Frequency Eddy Current Test Equipment, designed for precise electromagnetic induction signal calibration. This advanced flaw detector integrates multiple functions like conventional eddy current, magnetic memory, thickness gauge, and more, making it a versatile tool for metal defect detection. With dual-core processors and a high-resolution LCD, it ensures accurate readings in various industrial applications.
Related Product Features:
  • Integrated multi-functionality including eddy current, magnetic memory, thickness gauge, and conductivity measurement.
  • Equipped with dual-core processors and an embedded Linux operating system for high performance.
  • Large 10.4-inch color LCD display for clear visibility under any lighting conditions.
  • Dual frequency range from 10 Hz to 10 MHz with adjustable gain and phase settings.
  • Portable design with ergonomic packaging, weighing only 3kg including battery.
  • Built-in rechargeable lithium battery provides over 12 hours of continuous operation.
  • Supports multiple probe types and includes a 30GB data storage for values and graphics.
  • Ideal for aviation, aerospace, power, and petrochemical industries for in-service testing.
Faqs:
  • What industries is the HUATEC HEF-600 series suitable for?
    The HUATEC HEF-600 series is ideal for aviation, aerospace, power, and petrochemical industries, especially for in-service testing of materials like copper, titanium, aluminum, and zirconium.
  • How long does the battery last on a single charge?
    The built-in rechargeable lithium battery provides over 12 hours of continuous operation, making it perfect for field engineers.
  • What additional functions does the HEF-600 series offer?
    The HEF-600 series offers optional functions like conductivity measurement, non-metallic coating thickness, and rotary scanner support, depending on the model.