DynoGrip measures grip pressure during both static holds and dynamic swings using integrated sensing techniques. It delivers accurate, transferable data on grip forces, enabling objective analysis of performance. By revealing gaps between perceived and actual grip pressure, it helps golfers and instructors improve technique. Its portable design integrates easily into clubs without affecting natural motion.
The Invention
DynoGrip is an advanced diagnostic tool designed to accurately measure both static and dynamic grip pressure exerted by golfers during swings. Utilizing multiple engineering methods, the invention captures reliable and transferable data regarding hand pressure on golf grips. Its design emphasizes ease of installation, portability, and real-time feedback to assist golfers in understanding and refining their grip pressure throughout their golf strokes
Market Opportunity
The DynoGrip technology addresses a significant gap in the golf equipment market by providing precise measurement of grip pressure during stroke and swing activities. This technology holds strong commercial prospects within golf training facilities, coaching academies, and among professional and amateur golfers seeking performance optimization. Additionally, the device's portability and ease of use position it well for integration into sports technology product lines and golf simulation systems. There is potential for partnerships with golf equipment manufacturers to embed the technology directly into clubs and grips.
Applications
●Golf training and coaching to improve grip techniques for putters and full-swing clubs.
●Integration with golf simulation systems for enhanced performance analysis.
●Use by equipment manufacturers to develop smart grips with embedded sensing capabilities.
Key Benefits
●Provides quantifiable and reliable grip pressure data, eliminating subjective reliance on a golfer’s perception.
●Enhances learning and teaching methodologies by delivering measurable insights into grip performance.
●Portable and easy to install, enabling use in diverse training environments and situations.
Lead Inventor: Junghoon Lee
Development and Intellectual Property Status
US Application 63/868,806 filed 08/22/2025