The SENSOR+TEST 2024 convention

Category: Company News

Time: 2025-06-06

Summary: At SENSOR+TEST 2024, HTW showcased advanced ultrasonic sensors with in-house piezo ceramics, miniaturized designs, and precision control—powering intelligent measurement across industrial, automotive, medical, and smart infrastructure applications.

Nuremberg, Germany – SENSOR+TEST 2024

 

At SENSOR+TEST 2024, the international hub for sensor, measuring, and testing technologies, HTW (Huitong West) drew strong industry attention with a focused showcase of its latest breakthroughs in ultrasonic sensor technology—designed not just to detect, but to define the future of intelligent measurement.

 

With global industries demanding smarter, faster, and more compact sensing solutions, HTW’s exhibit featured high-performance ultrasonic sensors built for challenging environments—from industrial automation and smart cities to robotics, automotive, and fluid-level control.

 

What made HTW stand out?
A unique combination of proprietary piezoelectric ceramic development, ultra-precise signal control, and miniaturized form factors. HTW doesn’t just use piezo materials—it engineers them in-house, giving the brand full control over performance tuning at every level.

Show Highlights Included:

Next-gen ultrasonic distance sensors with fast response times, stable output, and environmental adaptability

Miniature non-contact level sensors optimized for liquid, granular, or mixed media in industrial tanks

Integrated dual-transducer designs for enhanced range, accuracy, and object profiling

Customized sensing modules designed for OEMs in sectors including automotive, medical, and clean energy

 

HTW’s approach is end-to-end: from raw ceramic formulation to transducer assembly to system-level integration. With certified production and a growing global footprint, the company is quickly becoming a trusted name for ultrasonic sensing excellence.

 

At SENSOR+TEST 2024, HTW redefined what precision sounds like.

Keywords: The SENSOR+TEST 2024 convention