Newark, CA, United States of America

Kristen Holtz


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 2019-2021

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2 patents (USPTO):Explore Patents

Title: Kristen Holtz: Innovator in Robotic Cleaning Technology

Introduction

Kristen Holtz is an accomplished inventor based in Newark, CA, known for her contributions to the field of robotic cleaning technology. With a total of two patents to her name, she has made significant strides in enhancing the functionality and user experience of autonomous cleaning devices.

Latest Patents

One of Kristen's latest patents is for a "Robot with Automatic Styles." This invention provides a variety of personalized, user-selectable cleaning styles, each determined by a combination of dimensions. The cleaning styles include gentle, fast, thorough, and balanced, with each style prioritizing different cleaning dimensions such as cleaning time, coverage, and obstacle avoidance. For instance, the gentle style is designed to protect expensive furniture by prioritizing obstacle avoidance, while the fast style focuses on quick cleaning. The thorough style emphasizes coverage, and the balanced style aims to prioritize all three dimensions equally. The user can select a style directly or automatically based on various mechanisms, including user history.

Career Highlights

Kristen Holtz is currently employed at Neato Robotics, Inc., where she continues to innovate in the field of robotics. Her work has contributed to the advancement of autonomous cleaning technologies, making them more efficient and user-friendly.

Collaborations

Kristen collaborates with Lilia Moshkina-Martinson, a fellow innovator in the field. Together, they work on enhancing robotic technologies and improving user experiences.

Conclusion

Kristen Holtz is a notable inventor whose work in robotic cleaning technology is paving the way for smarter and more efficient home cleaning solutions. Her innovative patents reflect her commitment to improving the functionality of autonomous devices.

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