This inventor holds 2 USPTO granted patents. Top assignees: Carl-Zeiss-Stiftung, Werth Messtechnik Gmbh. Active years: 1997-2003.
Company Filing History:
Years Active: 1997-2003
Title: Eugen Trapet: Innovator in Coordinate Measurement Technology
Introduction
Eugen Trapet is a notable inventor based in Bortfeld, Germany. He has made significant contributions to the field of coordinate measurement technology, holding 2 patents that showcase his innovative approach to solving complex measurement challenges.
Latest Patents
Trapet's latest patents include a "Coordinate measuring instrument with feeler element and optic sensor for measuring the position of the feeler." This invention discloses a method for measuring structures of an object using a feeler element associated with a coordinate measuring instrument. The feeler element is brought into contact with an object, and its position is determined by comparing the readings from the coordinate measuring instrument with those from the optical sensor. Another significant patent is the "Method for coordinate measurement on workpieces adjusted for bending." This method determines the elastic bending behavior of coordinate measuring machines due to measuring force and the position of measuring slides. It establishes correction values to compensate for measuring errors caused by machine bending, enhancing the accuracy of measurements.
Career Highlights
Throughout his career, Eugen Trapet has worked with prominent companies in the measurement technology sector. Notable among these are Werth Messtechnik GmbH and Carl Zeiss Stiftung. His work has significantly influenced the development of precise measurement instruments.
Collaborations
Trapet has collaborated with esteemed professionals in his field, including Gunter Grupp and Uwe Wiegand. These collaborations have further enriched his contributions to the industry.
Conclusion
Eugen Trapet's innovative patents and career achievements highlight his important role in advancing coordinate measurement technology. His work continues to impact the field, ensuring greater accuracy and efficiency in measurements.
