Koblenz, Germany

Peter Oster

USPTO Granted Patents = 6 

 

Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 6(Granted Patents)


Location History:

  • Koblenz, DE (2019 - 2021)
  • Bremm, DE (2024)

Company Filing History:


Years Active: 2019-2024

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6 patents (USPTO):Explore Patents

Title: Innovations by Inventor Peter Oster in Koblenz, DE

Introduction: Peter Oster is a renowned inventor based in Koblenz, Germany, known for his significant contributions to the field of engineering. With a total of six patents to his name, Oster has been driving innovations that improve the functionality and efficiency of various devices, particularly in braking systems and spindle drives.

Latest Patents: Among his latest patents, Oster’s invention of a "Brake Device and Method for Controlling the Brake Device" stands out. This innovative brake device is designed for controlling the rotational movement of a shaft, focusing on enhancing energy efficiency and reducing wear during operation. By incorporating a setting device for opposing braking torques, it effectively addresses the challenges faced with traditional high-torque brake systems. Another notable patent is the "Pivotable Spindle Nut," which optimizes spindle drive functionality by allowing the spindle nut to pivot relative to the drive element, thus enhancing the system's design and performance.

Career Highlights: Peter Oster's career is marked by his position at Stabilus GmbH, a company recognized for its expertise in motion control systems. His work has not only advanced technological applications but also supported further developments in automated systems.

Collaborations: Oster collaborates with notable coworkers, including Andreas Ritter and Jörg Hillen, both of whom contribute to the innovative culture at Stabilus GmbH. Their teamwork fosters an environment where creative engineering solutions thrive.

Conclusion: As an inventor, Peter Oster exemplifies how targeted innovations in engineering can lead to remarkable advancements. His patents continue to influence the design of braking systems and spindle drives, underscoring his commitment to enhancing efficiency and performance in mechanical applications.

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