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Hebei Hengyi Electronic Technology Co., Ltd

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    Floor 106, Building 5, Future Weishu, Lianchi District, Baoding City, Hebei Province

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EMA600 High Temperature Electromagnetic Ultrasonic Module HEEID Flaw Detector

ネゴシエーション可能更新05/16
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概要

EMA600 High Temperature Electromagnetic Ultrasonic Module HEEID Flaw Detector. The EMA600 electromagnetic ultrasonic module supports users to integrate their self-made electromagnetic ultrasonic sensors into your system, using EMAT technology for thickness measurement. The working gap between the sensor and the metal can reach up to 6 millimeters (depending on the sensor).

製品詳細

EMA600高温电磁超声模块HEEID探伤仪

1、 Product Overview

EMA600 High Temperature Electromagnetic Ultrasonic Module HEEID Flaw Detector

brand:HEEID

Product NameHigh temperature electromagnetic ultrasound module
model:EMA600
Place of Origin: China
EMA600 is a high-performance electromagnetic ultrasonic module developed for metal thickness measurement scenarios. Based on EMAT core technology, it achieves precise measurement without coupling agents and non-contact. The module adopts a waterproof sealed shell design, supporting users to independently integrate self-made electromagnetic ultrasonic sensors. It is compatible with conventional electromagnetic ultrasonic sensors, high-temperature electromagnetic ultrasonic sensors, and pulse electromagnetic electromagnetic sensors, and widely applicable to industrial testing, equipment operation and maintenance, metal processing quality control and other scenarios. Especially in harsh environments and high-temperature working conditions, it has stable and reliable measurement performance.

2、 Core functions and advantages

  1. Strong sensor compatibilitySupport users to integrate self-made electromagnetic ultrasonic sensors, fully compatible with various types of electromagnetic ultrasonic sensors (including pulse electromagnetic sensors), and flexibly adapt to diverse measurement needs and scenarios.

  1. Advantages of measuring large gapsThe working gap between the sensor and the metal object being measured can reach 6 millimeters (the specific value depends on the sensor model), effectively reducing the difficulty of on-site operation and improving measurement convenience.

  1. Comprehensive software supportEquipped with the EMA Viewer dedicated application, it can achieve real-time reception, dynamic processing, and tabular storage of measurement data. It also supports custom configuration of module parameters, with clear and efficient operation logic.

  1. Convenient system integrationProvide complete developer manuals and standardized exchange protocols to facilitate rapid integration into various external systems, significantly reducing project development and implementation cycles.

  1. Excellent environmental adaptabilityWaterproof shell design ensures stability under complex working conditions, with a working environment temperature range of -20 ℃ to+50 ℃; The surface working temperature of the tested object supports -20 ℃~+80 ℃, fully meeting the measurement requirements in high-temperature scenarios.

3、 Detailed technical parameters

EMA600 High Temperature Electromagnetic Ultrasonic Module HEEID Flaw Detector


category
specific parameters
Working environment temperature
-20℃ ~ +50℃
Power requirements
12V (DC)
Speed setting range
1000 ~ 9999 m/s, Increment 1 m/s
measurement frequency
16 times/second
Overall dimensions (excluding casing)
100 mm × 45 mm × 28 mm
Overall dimensions (including casing)
120 mm × 50 mm × 40 mm
Thickness measurement range for steel
2 mm~80 mm (allowable gap state); 2 mm~200 mm (seamless state)
Thickness measurement error
2 ~ 25 mm:0.08 + 0.001N·mm; 25 ~ 200 mm:0.1 + 0.005N·mm
The sensor allows for clearance
Depends on the sensor model
Support sensor types
Electromagnetic ultrasonic sensor, pulse electromagnetic probe
Sensor allows tilt angle
Relative to the normal of the test object surface ± 25 °
Surface requirements for the tested object
Minimum allowable curvature radius ≥ 10 mm
Equipment operating frequency
4 MHz
Surface temperature of the tested object
-20℃ ~ +80℃