Location History:
- Lingen, DE (2022)
- Emsbüren, DE (2023)
Company Filing History:
Years Active: 2022-2023
Title: Martin Brücher: Innovator in Ultrasonic Measurement Technology
Introduction
Martin Brücher is a notable inventor based in Lingen, Germany. He has made significant contributions to the field of ultrasonic measurement technology, holding two patents that showcase his innovative approach to solving complex engineering challenges.
Latest Patents
Brücher's latest patents include an ultrasonic gas flow measuring device and a method for evaluating useful signals of a transducer in a conductive pipe. The first patent describes a method for noninvasive determination of the flow or flow rate in an electrically conductive object, through which a gaseous medium flows. This method utilizes an acoustic flow meter, where an emitting transducer generates an ultrasonic wave that partially couples as a longitudinal wave into the medium. The receiving transducer detects the useful signal resulting from this wave, allowing for accurate flow rate determination. The second patent presents a sensor device designed for fitting to an object, particularly a pipeline, which includes a flexible electrically conductive converter element. This innovative design allows for effective measurement and monitoring of the medium flowing through the object.
Career Highlights
Brücher is currently employed at Rosen Swiss AG, where he continues to develop and refine his inventions. His work has significantly advanced the capabilities of ultrasonic measurement technologies, making them more efficient and reliable for various applications.
Collaborations
Some of his notable coworkers include Natalia Rodriguez and Rüdiger Bauernschmitt, who contribute to the collaborative environment that fosters innovation at Rosen Swiss AG.
Conclusion
Martin Brücher's contributions to ultrasonic measurement technology exemplify the spirit of innovation. His patents reflect a deep understanding of engineering principles and a commitment to advancing technology in practical applications.