Representative number
1800-9449
Headquarters (Cheonan Factory) : 178 Seokmun-gil, Seonggeo-eup, Seobuk-gu, Cheonan-si
Busan Factory : 67 Gaya-daero 133beon-gil, Sasang-gu, Busan (Gamjeon-dong)
Seoul Branch : 2nd Floor, 20 Hakdong-ro 4-gil, Gangnam-gu, Seoul, Republic of Korea
Copyright © 2024 SHOEALLS Co., Ltd. ALL RIGHTS RESERVED
Healthcare Shoes with Medical - Magnetic Generator

Technology

This product has won gold medals at multiple international invention exhibitions and has proven its effectiveness through biomechanical performance evaluations. It is an innovative functional shoe designed with ergonomic principles and patented technology to aid proper walking in daily life.

Biomechanical Performance Evaluation 

The process includes analyzing the walking patterns of users wearing the shoes and measuring the impact on different body parts, allowing for objective analysis and evaluation of the tester's measurement data.

Ergonomic Design

Designed considering proper walking patterns and the shape and function of the foot, it effectively distributes pressure on the soles and helps maintain balance. This allows users to remain comfortable even after long periods of wear.

Patented Technology

By applying Shoealls patented technology, our product supports the arch of the foot, providing continuous stimulation to the arch area, which results in acupressure effects and helps to alleviate fatigue felt during walking through posture correction 

Medical Device Certification 

The medical magnetic chip helps relieve muscle pain in painful areas using the physical properties of the magnetic field. Through the development of medical device technology, we aim to improve users' health and quality of life by promoting basic research, prototype production, clinical trials, product development for licensing, and R&D project execution.

Biomechanical Performance Evaluation of Functional Footwear Developed by ShoeAlls Co., Ltd. 
(K-Footwear Industry Promotion Center)

1. Plantar Pressure Analysis for Evaluating Foot Pressure Distribution and Shock Absorption:

- Analyzing the pressure distribution and shock absorption functionality of the foot during walking while wearing the shoes.

2. Knee Joint Load Analysis through 3D Motion Analysis and Ground Reaction Force Analysis:

- Assessing the knee joint load due to shock absorption during walking while wearing the shoes.
- Evaluating the vertical impact on the shoes and the body during walking to analyze the external vertical impact of the shoes.

3. Muscle Fatigue Evaluation through Muscle Fatigue Analysis of the Lower Limbs:

- Measuring changes in muscle fatigue of the lower limbs due to prolonged wear of the shoes.

4. Slip Analysis and Maximum Traction Force Analysis on Slopes:

- Analyzing slip functionality by measuring slip on inclined surfaces after wearing the shoes.

5. Slip Analysis and Maximum Traction Force Analysis on Slopes:

- Assessing the slip functionality of outsole patterns and properties by measuring maximum traction force after wearing the shoes.

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