A planar sensor unit detects object shadows cast by a single light source to measure physical quantities.
A nonlinear radar system detects a golf ball using a passive snowflake transponder tag that reflects harmonic signals at a distinct frequency.
A pressure sensing home plate detects ball impact to determine strike zone position, resolving complexity and cost barriers in casual game settings.
Cable pulls displace restraining pads as a pivotable rest moves, allowing independent back stretching without therapist assistance.
A wearable health monitoring device transmits physiological data to an IPTV set-top box for remote evaluation.
A sensor unit measures respiratory gas composition to estimate maximum performance variables without requiring maximal workload.
Image analysis determines golf ball placement to eliminate manual setup errors and false triggers during launch monitor operation.
A wearable system fuses accelerometer, gyroscope, and magnetometer data to compute real-time athletic performance metrics.
Segmented body with alignment notches resolves complexity trade-offs while measuring snapping positions.
A neural network system processes camera streams to generate real-time exercise scores and form feedback for users.
Integrated ball sensors automate shot tracking to eliminate labor-intensive volunteer monitoring during recreational play.
A motion sensor system calculates real-time profiles and compares them to templates for immediate user feedback.
An interactive boxing apparatus uses impact sensors to detect strikes and deliver real-time training feedback via a display.
A portable wireless mobile device captures and analyzes motion data using visual markers and sensors to enable real-time athletic feedback.
A climbing interface apparatus moves holds on a board while force sensors detect user grip forces for virtual simulation.
Wireless golf GPS device replaces cumbersome IC card updates with digital transfers to enable flexible distance measurement from any course feature.
A sensor processing system identifies foot strike event triplets to calculate contact time and athletic pace.
A toe-mounted motion sensor uses personalized calibration to measure vertical jump height with improved repeatability.
Smart ball-machine adjusts speed, spin, and trajectory using AI-driven robotic arms for dynamic player training.
A resistive matrix sensor detects impact location, force, and timing by measuring resistance changes across intersecting conductive tracks.
Conical agitation orients pucks for automated launching, resolving portability and capacity trade-offs in training equipment.
A portable respiratory acoustic device generates low frequency shockwaves via Helmholtz resonance to fluidize airway mucus.
Master controller aggregates member sensor data to resolve outdoor exercise information collection inefficiencies.
A mouth opening training device uses a slidable connection between upper and lower members to guide mandibular movement.
Smartphone app replaces intensive rehabilitation with automated biofeedback to improve treatment accessibility while maintaining therapeutic effectiveness.
Musical instrument therapy device uses sensors and indicators to strengthen throat muscles, reducing airway blockages during sleep.
Piezoresistive polymeric sensors maintain reliability at joints while enabling universal data accessibility.
A training menu generating system creates personalized finger exercise programs based on user measurement data.
Motion sensors detect projectile paths to dynamically adjust target selection, resolving low engagement in repetitive training.
A seated motion sensor detects knee oscillation to track exercise metrics, enabling impact-free workouts for users with limited mobility.
Integrating conductive ink marks into golf ball layers eliminates sticker alignment issues and improves launch data accuracy.
Replacing flappers and photo-eyes with ultrasonic transmitters eliminates physical wear and lighting interference to improve detection reliability.
Segmenting the image into sub-areas allows processing only the ball trajectory, reducing storage needs and avoiding false triggers from non-target objects.
Lateral infrared detection identifies ball launch moments without forward placement, preventing apparatus damage while maintaining measurement precision.
An internal track system guides a movable weight member within the club head body to reposition mass and correct shot trajectories like slicing or hooking.
An adjustable planar putting surface uses electric actuators and inclinometers to simulate precise slope conditions for golf training.
Segmented finger motion rails with lateral pivoting levers accommodate varying anatomies without mechanical constraint.
A bicycle exercise measurement device uses a crankshaft-driven generator to compute pedaling force and power metrics.
A throwing target system segments the strike zone into distinct areas to train pitchers in pitch placement and movement accuracy.
A sports fitting bay captures user interactions with equipment using cameras and machine learning to generate performance metrics.
Segmented openings in the blade accommodate a wheel shank, reducing player fatigue while maintaining structural strength.
Motor-driven supports tilt armrests and skirt to enable passive exercise in horizontal positions, resolving mobility limitations.
A mobile app generates real-time fitness parameters by combining sensor data with user-defined mathematical operators.
Plotting ball flight data onto virtual golf holes enables indoor club fitting without outdoor ranges or expert assistance.
Segmented gripping elements with oblique angles treat specific vertebrae, resolving the trade-off between multi-vertebra efficiency and anatomical precision.