A motorized basketball hoop rotates multiple rim sizes into position, eliminating manual changes and enhancing training stability.
A wearable USB device integrates athletic performance monitoring with audio playback functionality.
Segmented electrode pairs with varying distances detect muscle signals across different tissue depths.
Automated sensor detection replaces manual measurement in games, reducing time consumption and disputes while improving position accuracy.
Integrated GPS and sensor system eliminates manual scoring errors by automatically tracking strokes and positions.
Segmented rigid body model calculates joint powers from motion capture data, resolving measurement precision versus device complexity.
A cloud intermediary routes workout data when direct device links fail, resolving compatibility constraints without specific software.
A retractable camera arm captures user images to analyze anatomical points and provide real-time exercise form feedback.
Variable-color object-impact structure changes color at contact area to determine precise ball location and reduce line call delays.
A fixture assembly with a ball joint and pivoting platform supports patient appendages for digital scanning.
A pressure-sensitive insole feeds a wearable light source that maps biomechanical data to colors, avoiding audio interference.
Merging camera, processor, and power cell into one housing enables wireless data transfer without requiring controlled environments.
System combines swing measurements with taste preferences to improve recommendation accuracy while managing processing load.
A wearable device measures ST-segment deviation to guide users through exercise protocols.
A biological information processing device estimates pulse wave data using body motion signals when the primary sensor is inactive.
Processor synchronizes signals from shoe and racket sensors to correlate footwork with stroke data.
Motion analyzers detect club orientation while signal strength estimates distance, resolving lost club detection reliability issues.
Segmented wearable sensors analyze body posture to calculate balance and flexibility scores, providing accurate feedback for correct yoga asana execution.
Microprocessor converts sensor data into movement values to actuate light emitters for real-time visual feedback.
RFID-tagged balls enable electronic tracking of game events, resolving complexity trade-offs while enhancing player engagement through wager-based rewards.
Computer vision tracks workpiece travel paths to deliver immediate feedback, resolving the trade-off between automated analysis and manual coaching complexity.
Wearable sensors monitor physiological movements to provide real-time kinesthetic feedback.