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New And Compact Testing Equipment With Rugged Features

Hardness and thickness testing devices that are suitable for multi-measurements of various coated materials

Digital CoatingThickness Gauge


Metrix+ Digital Coating Thickness Gauge Coat Scope Pro features a user-friendly menu operation with a clear backlit display for navigation. It has a separate, rugged probe with automatic substrate recognition for ferrous and non-ferrous bases. The measurement range is 0 ~ 2000um for both substrates. It features Bluetooth for data acquisition on mobile phones via Android app and in-built data storage and recall. It has six display modes for showing calculated statistics, trend graph, bar graph and histogram. Data storage can be done in ‘Car’ mode where each paint thickness at each part like the bonnet, bumper, fender, etc, can be stored separately for monitoring. The instrument features LEDs on top for troubleshooting and feedback on the proper measurement process. Zero calibration and single point or multi-point calibration can be done via guided instructions for getting the best accuracy. The display has auto-rotation and the measurement unit is changeable between um, mil and inch. The body is made out of ABS material for longevity in on-field operations. Coat Gauge Pro is similar to Coat Scope Pro with an in-built integrated probe.

Digital Leeb Hardness Tester


Metrix+LHT 1 is an ultra-portable leeb hardness tester with a pen-type design to measure metal hardness in different scales of HL, HV, HB, HRC, HRB, HRA, HS. It features a 128×32 OLED display for clear viewing in sunlight and in-built data storage and recall. Simple calibration resets the instrument in case of any reading drift. The measuring range is 170 ~ 960 HLD and it has a D-type impact device working on rebound principle for measuring leeb hardness. This can be used to measure the hardness of die cavity of moulds, inspection of bearings, installed machinery, heavy workpieces and other mass-produced parts in a production line, failure analysis of pressure vessel, steam generator and other equipment, material identification in the warehouse of metallic materials, rapid testing in large range and multi-measuring areas for the large-scale workpiece. It weighs only 250g and can be carried around in pockets for convenience.

Digital Ultrasonic Thickness Gauge


Metrix+UTM 90CT is a versatile ultrasonic thickness gauge with through coating measurement capability using Echo-Echo measuring mode. It has additional features of A-scan to show the amplitude of the reflected waveform for monitoring any defects, cracks, etc inside the material and B-scan for viewing the cross-sectional area of the sample. The high-quality probe is sturdy to withstand on field operating parameters. The instrument can measure both Pulse-Echo for depth measurement and Echo-Echo for through coating measurement of the sample. It has a clear backlit display with modes of depth measurement, A-scan, B-scan, difference/ reduction rate and max/min mode for monitoring uniformity of thickness. Resolution is selectable as 0.1/0.01 mm/ inch and the standard probe gives a measuring range of 1.2~200mmand 3~50mm in through coating mode. Measured data can be stored and recalled and it is widely used to measure the thickness of many materials, like steel, cast iron, aluminium, red copper, brass, zinc, quartz glass, polyethylene, PVC, grey cast iron, nodular cast iron and other ultrasonic wave well conductive materials.


Vinay Prabhakar Minj
Vinay Prabhakar Minj
Vinay Prabhakar Minj is a technology writer and science communication specialist with a Master’s degree in Communication of Science and Innovation (Science Communication). He is a prolific contributor to Electronics For You, where he has authored over 1,000 articles covering electronics, semiconductors, embedded systems, IoT, and emerging technologies. With a strong foundation in science communication, Vinay focuses on translating complex engineering concepts into clear, accessible, and application-oriented content. His work spans topics such as sensor technologies, chip design, wireless systems, and next-generation electronics, making advanced innovations easier to understand for engineers, students, and industry professionals. Through his extensive contributions, he has built a reputation for delivering reliable, well-researched, and practical insights that help readers stay updated with the rapidly evolving electronics ecosystem. His writing bridges the gap between technical depth and real-world usability, supporting both learning and decision-making in the field.

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