Company Filing History:
Years Active: 2012
Title: Innovations by Ji-Chul Ryu in Powered Mobility for Children
Introduction
Ji-Chul Ryu is an innovative inventor based in Newark, DE (US). He has made significant contributions to the field of powered mobility devices, particularly for infants and children with special needs. His work focuses on enhancing the cognitive, perceptual, and motor abilities of children who lack natural mobility.
Latest Patents
Ji-Chul Ryu holds a patent for an "Intelligent powered mobility for infants and special needs children." This invention is a powered mobility device designed to advance the cognitive, perceptual, and motor abilities of children who have limited mobility. The device features a seat specifically sized for the child, which is secured within the device. It includes a motorized drive assembly that is coupled to the seat, allowing for movement. A local operating instrument is also included, enabling the child to operate and steer the device. The processor within the device is designed to transmit signals to control both the motorized drive assembly and the steering instrument, facilitating the child's interaction with the mobility device.
Career Highlights
Throughout his career, Ji-Chul Ryu has focused on creating innovative solutions that address the needs of children with mobility challenges. His dedication to improving the lives of these children is evident in his patented invention, which aims to provide them with greater independence and opportunities for development.
Collaborations
Ji-Chul Ryu has collaborated with notable colleagues such as Sunil K Agrawal and James Cole Galloway. These partnerships have likely contributed to the advancement of his innovative projects and the successful development of his patented technology.
Conclusion
Ji-Chul Ryu's work in developing powered mobility devices for children with special needs represents a significant advancement in assistive technology. His innovative approach not only enhances mobility but also fosters cognitive and motor development in children.