Minneapolis, MN, United States of America

Robert Michael Theodore Pettys-baker

USPTO Granted Patents = 1 

Average Co-Inventor Count = 1.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Innovations in Active Fabrics by Robert Michael Theodore Pettys-Baker

Introduction

Robert Michael Theodore Pettys-Baker is an innovative inventor based in Minneapolis, MN. He has made significant contributions to the field of textiles, particularly in the development of active fabrics and garments. His work focuses on combining active and passive materials to create unique textile solutions.

Latest Patents

Pettys-Baker holds a patent for "Active fabrics, garments, and materials." This patent describes a method for creating active fabrics by integrating materials with shape memory and other actuation characteristics. These fabrics can generate compression or dynamic fit, which can be adjusted based on various parameters such as knit index, wire diameter, and garment ease. The technology allows for maximum compression to be controlled through physical properties of the knit structure and built-in circuit-breaking technologies. Additionally, the patent explores the use of additive manufacturing in conjunction with traditional textile equipment, enabling the creation of textiles with emergent properties from heterogeneous filament components.

Career Highlights

Pettys-Baker is affiliated with the University of Minnesota, where he continues to advance research in textile innovation. His work has garnered attention for its potential applications in various industries, including fashion, sports, and healthcare.

Collaborations

Due to space constraints, the collaborations section will be omitted.

Conclusion

Robert Michael Theodore Pettys-Baker's contributions to the field of active fabrics represent a significant advancement in textile technology. His innovative approach to combining materials and manufacturing techniques has the potential to revolutionize the way garments are designed and function.

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