shoe

A technology for shoes and shoe uppers, applied in footwear, clothing, applications, etc., can solve problems such as affecting the accuracy of doctors, poor patient recovery, and inability to obtain patients, and achieve the effect of improving sensitivity and reliability.

Inactive Publication Date: 2011-12-07
HONG FU JIN PRECISION IND (SHENZHEN) CO LTD +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

This technology uses different types of force-sensitive devices called pressure sensors (P) that are placed around each shoe for better detection of their pressures. These PGAs help train people who use them more effectively by providing feedback about how well they feel when doing certain movements such as walking or jogging. They also provide data from these measurements to evaluate physical fitness levels over time. By comparing these results against previous experiences at home, users may be able to develop strategies for improving athletic performance through training sessions.

Problems solved by technology

The technical problem addressed in this patented text relates how current shoes lack accurate measurement capabilities while still being able to help users perform different types of exercise related tasks like kneading trainings without losing their balance or getting tired quickly afterward.

Method used

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Embodiment Construction

[0054] The shoes of the technical solution will be further described in detail below in conjunction with the accompanying drawings and embodiments.

[0055] The micro-electro-mechanical system referred to in this technical solution refers to MEMS (Micro-Electro-Mechanical System), which is a micro-electro-mechanical system integrating micro sensors, actuators, signal processing and control circuits, interface circuits, communication and power supply. The micro-electromechanical pressure sensor in the embodiment of the technical solution uses MEMS for pressure measurement, which can be a piezoresistive micro-electromechanical pressure sensor or a capacitive micro-electromechanical pressure sensor or other types of micro-electromechanical pressure sensors.

[0056] see Figure 1-2 The shoe 100 provided by the first embodiment of the technical solution includes a shoe body 10 and a micro-electromechanical pressure sensing module 20 .

[0057] The shoe body 10 includes a sole 12 an...

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Abstract

A shoe includes a shoe body and a micro-electromechanical pressure sensing module. The shoe body includes a sole and a vamp, and the sole has a toe part, a sole part, an arch part and a heel part in turn. The microcomputer pressure sensing module includes a toe pressure sensing capsule, a toe microcomputer pressure sensor, a sole pressure sensing capsule, a sole microcomputer pressure sensor, a heel pressure sensing capsule, a heel microcomputer pressure sensor, a processing unit and a power supply for the processing unit unit. The toe pressure-sensing capsule, the sole pressure-sensing capsule, and the heel pressure-sensing capsule bear corresponding pressure when the toe, sole and heel are under pressure. The toe microcomputer pressure sensor, the sole microcomputer pressure sensor, and the heel microcomputer pressure sensor sense corresponding pressure respectively, and convert the pressure into a corresponding pressure sensing signal. The processing unit is used to acquire corresponding pressure sensing signals to calculate the pressures on the toes, soles and heels respectively.

Description

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Claims

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Application Information

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Owner HONG FU JIN PRECISION IND (SHENZHEN) CO LTD
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