Walkersville, MD, United States of America

David Wesley Lombardo


Average Co-Inventor Count = 10.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: David Wesley Lombardo: Innovator in Lift Assist Technology

Introduction

David Wesley Lombardo is an accomplished inventor based in Walkersville, MD (US). He is known for his innovative contributions to the field of assistive devices, particularly in enhancing the way heavy items are lifted and manipulated. His work focuses on improving user experience and safety in handling bulky objects.

Latest Patents

Lombardo holds a patent for the Enhanced Lift Assist Device. This device allows users to lift and manipulate large, heavy, or bulky items by applying force directly to the item, rather than relying on traditional control methods such as buttons. The force-based system makes the item feel significantly lighter, facilitating easier movement. Additionally, the Enhanced Lift Assist Device features an adjustable base that enables changes in orientation, including leveling or self-leveling functionality. This adaptability allows the device to operate effectively in non-traditional environments that require specific adjustments for proper functioning.

Career Highlights

David Wesley Lombardo is associated with Construction Robotics, LLC, where he continues to develop innovative solutions for the construction industry. His work emphasizes the importance of user-friendly designs that enhance productivity and safety in various applications.

Collaborations

Lombardo collaborates with talented individuals such as Andrew Walter Beckmann and Scott Lawrence Peters, contributing to a dynamic team focused on advancing technology in construction and assistive devices.

Conclusion

David Wesley Lombardo's contributions to the field of lift assist technology exemplify his commitment to innovation and user-centered design. His Enhanced Lift Assist Device represents a significant advancement in how heavy items are handled, showcasing the potential for improved efficiency and safety in various environments.

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