This inventor holds 1 USPTO granted patent. Top assignee: Maschinenfabrik Carl Zangs Aktiengesellschaft. Active years: 1983.
Company Filing History:
Years Active: 1983
Title: The Innovative Contributions of Karl Steinki
Introduction
Karl Steinki is a notable inventor based in Meerbusch, Germany. He has made significant contributions to the field of sewing and embroidery technology. His innovative approach has led to the development of a unique method that enhances the efficiency of sewing machines.
Latest Patents
Steinki holds a patent for a method of controlling the speed of rotation of the drive motor for the movement of needle bars in embroidery, stitching, or sewing machines. This method allows for the relative movement between the material being worked and the needle bars to be produced by motors that are separate from the needle bar drive. The invention aims to achieve the highest possible output without excessive accelerations and abrupt changes in acceleration. By reading the lengths of the next several stitches from a data carrier, the speed of rotation of the needle-bar drive motor is adapted to the highest value measured. This innovative approach minimizes the number of sequentially stored stitches, aligning with the inertia of the needle bar drive.
Career Highlights
Karl Steinki is associated with Maschinenfabrik Carl Zangs Aktiengesellschaft, where he has applied his expertise in engineering and technology. His work has significantly impacted the efficiency and performance of sewing machines, making them more reliable and effective for various applications.
Collaborations
Steinki has collaborated with Hans-Gerd Ripkens, contributing to advancements in their field. Their partnership has fostered innovation and improved the functionality of sewing and embroidery machines.
Conclusion
Karl Steinki's contributions to the field of sewing technology through his innovative patent demonstrate his commitment to enhancing machine efficiency. His work continues to influence the industry, paving the way for future advancements in sewing and embroidery technology.