G01N33/008

Shoe wear-out sensor, body-bar sensing system, unitless activity assessment and associated methods
10376015 · 2019-08-13 · ·

A system assesses activity and displays a unitless activity value. A detector senses activity of a user. A processor reads sensed activity data from the detector. A display displays the unitless activity value. An enclosure houses the detector and the processor. The processor periodically reads the sensed activity data from the detector and processes the data to generate an activity number, the number being used to generate the unitless activity value based upon a maximum number and a display range.

Helmet impact simulator and method

A head impact test apparatus is configured to enable viewing a head model including a brain component that may be at least partially surrounded by a fluid component and within a skull component. A head model may be a cross-sectional model of a person's head and have a translucent cover extending over the cross-sectional plane to enable viewing and image capture of the components of the head model. A camera may be configured to take a plurality of images during an impact test. These images may be analyzed to determine the acceleration and deformation of the brain component. An impact element is configured to impact the head model and the head model may have any type of helmet thereon. A helmet component may comprise a helmet cover. The test may be used to determine the effectiveness of helmets and helmet covers in reducing brain trauma.

UNITLESS ACTIVITY ASSESSMENT AND ASSOCIATED METHODS
20240172835 · 2024-05-30 ·

A system assesses activity and displays a unitless activity value. A detector senses activity of a user. A processor reads sensed activity data from the detector. A display displays the unitless activity value. An enclosure houses the detector and the processor. The processor periodically reads the sensed activity data from the detector and processes the data to generate an activity number, the number being used to generate the unitless activity value based upon a maximum number and a display range.

SHOE WEAR-OUT SENSOR, BODY-BAR SENSING SYSTEM, UNITLESS ACTIVITY ASSESSMENT AND ASSOCIATED METHODS
20180249783 · 2018-09-06 ·

A system assesses activity and displays a unitless activity value. A detector senses activity of a user. A processor reads sensed activity data from the detector. A display displays the unitless activity value. An enclosure houses the detector and the processor. The processor periodically reads the sensed activity data from the detector and processes the data to generate an activity number, the number being used to generate the unitless activity value based upon a maximum number and a display range.

Shoe wear-out sensor, body-bar sensing system, unitless activity assessment and associated methods
09968158 · 2018-05-15 · ·

A system assesses activity and displays a unitless activity value. A detector senses activity of a user. A processor reads sensed activity data from the detector. A display displays the unitless activity value. An enclosure houses the detector and the processor. The processor periodically reads the sensed activity data from the detector and processes the data to generate an activity number, the number being used to generate the unitless activity value based upon a maximum number and a display range.

SHOE WEAR-OUT SENSOR, BODY-BAR SENSING SYSTEM, UNITLESS ACTIVITY ASSESSMENT AND ASSOCIATED METHODS
20170164684 · 2017-06-15 ·

A system assesses activity and displays a unitless activity value. A detector senses activity of a user. A processor reads sensed activity data from the detector. A display displays the unitless activity value. An enclosure houses the detector and the processor. The processor periodically reads the sensed activity data from the detector and processes the data to generate an activity number, the number being used to generate the unitless activity value based upon a maximum number and a display range.

Shoe wear-out sensor, body-bar sensing system, unitless activity assessment and associated methods
09578927 · 2017-02-28 · ·

A system assesses activity and displays a unitless activity value. A detector senses activity of a user. A processor reads sensed activity data from the detector. A display displays the unitless activity value. An enclosure houses the detector and the processor. The processor periodically reads the sensed activity data from the detector and processes the data to generate an activity number, the number being used to generate the unitless activity value based upon a maximum number and a display range.

SYSTEM AND METHOD FOR TERAHERTZ TOMOGRAPHY ANALYSIS OF GOLF BALLS
20250198918 · 2025-06-19 · ·

A method, system, and techniques are disclosed herein that provides non-destructive analysis of a golf ball or golf equipment. More specifically, the present disclosure is related to using terahertz tomography to identify imperfections, missing layers, or other undesirable features of a golf ball construction, as well as identifying the composition of various golf ball components or layers. The present disclosure also provides for a relatively quick examination technique that can be implemented in-line with existing manufacturing lines due to its ability to rapidly scan the golf balls.

Unitless activity assessment and associated methods
12419380 · 2025-09-23 · ·

A system assesses activity and displays a unitless activity value. A detector senses activity of a user. A processor reads sensed activity data from the detector. A display displays the unitless activity value. An enclosure houses the detector and the processor. The processor periodically reads the sensed activity data from the detector and processes the data to generate an activity number, the number being used to generate the unitless activity value based upon a maximum number and a display range.

Automated turf testing apparatus and system for using same

A mobile apparatus that is automated to measure controlled and applied forces and moments to sport surfaces allowing for performance and safety assessment of athletic apparel and athletic surfaces, such as natural or artificial turf. The apparatus is capable of using not only shear and compressive forces, but also rotational moments, and all prescribed forces and moments in combination at the same or different times. The apparatus and related system can link these forces and moments together and combine them to more closely mimic behaviors of a human foot during an athletic movement, thereby applying and measuring interactions between all forces and moments at the same or different times.