Louisville, CO, United States of America

Timothy Craig Ostwald



Average Co-Inventor Count = 1.7

ph-index = 19

Forward Citations = 1,263(Granted Patents)


Inventors with similar research interests:


Location History:

  • Lousiville, CO (US) (2000 - 2002)
  • Louisville, CO (US) (1989 - 2013)
  • Boulder, CO (US) (2011 - 2019)

Company Filing History:


Years Active: 1989-2019

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Areas of Expertise:
Robot Arm Control
Data Storage Library
Robotics Assembly Management
Gripper Mechanism
Tape Movement Control
Barcode Scanning
Automated Libraries
Power Distribution Systems
Self-Contained Robotics Module
Data Retrieval Systems
Capacity Scaling Techniques
Mass Load Methods
95 patents (USPTO):Explore Patents

Title: Inventor Spotlight: Timothy Craig Ostwald - Revolutionizing Robotic Assembly in Media Element Storage Libraries

Introduction:

In the world of innovations and patents, there are remarkable individuals who continuously contribute to shaping industries. In this spotlight, we turn our attention to Timothy Craig Ostwald, an influential inventor from Louisville, CO (US), known for his groundbreaking work in reducing robotic assembly contention in media element storage libraries. With an impressive portfolio of 94 patents to his name, Ostwald has made a significant impact on the field of robotics and automation.

Inventions and Patents:

Two of Ostwald's latest patents demonstrate his expertise in optimizing the functionality of robot arms within storage libraries. The patents focus on reducing interference and congestion during robotic assembly operations, allowing for smoother and improved workflows.

1. Simultaneous Pivoting and Translation of Robot Arm of Storage Library:

This patent introduces utility systems, apparatuses, and methods aimed at minimizing contention in media element storage libraries. By translating (displacing) a robot arm of a first robotic assembly, mounted over a storage array, away from a central reference plane while it pivots into a first position adjacent to the storage array, Ostwald's invention enables a second robot arm to smoothly move past the first robotic assembly. This innovation is particularly useful when the robot arms of the first and second assemblies are positioned at the same height within the storage library.

2. Movable Closed-Chain Linkage for Robot Arm of Media Element Storage Library:

Ostwald's second invention addresses robotic assembly contention in media element storage libraries by incorporating a movable closed-chain linkage system for the robot arm. By rotating (flipping, swinging, etc.) the robot arm of a first robotic assembly mounted over a storage array, the arm can be positioned between the storage array and a central reference plane. This positional flexibility facilitates the movement of a second robot arm past the first assembly, even when they are at the same height within the library. The innovation contributes to smoother operations and improved efficiency.

Career and Collaborations:

Throughout his career, Ostwald has made significant contributions to the field of robotics while working with prestigious companies. He has been associated with Storage Technology Corporation (now known as IBM) and Oracle America, Inc., where he has undoubtedly harnessed his talents and expertise.

Collaborating with fellow innovators, Ostwald has worked alongside Daniel James Plutt and Joseph Paul Manes, further amplifying the impact of their shared innovative visions. Their collaborations have likely resulted in groundbreaking inventions and valuable contributions to the industry as a whole.

Conclusion:

Timothy Craig Ostwald's ingenuity and expertise in optimizing robotic assembly within storage libraries have earned him recognition as a key figure in the field of automation. With 94 patents to his name and a track record of remarkable inventions, Ostwald's contributions continue to shape the industry, enabling smoother operations and enhancing the efficiency of media element storage libraries. His dedication to innovation underscores the importance of intellectual property and its impact on advancing our technological capabilities.

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