Abstract:
Provided is to a wrist wearable apparatus with a transformable substrate. The apparatus has a transformable substrate having a flat state, a deformed state, a partially deformed state, and the like, and thus provides a function and a user interface that change according to the deformed state when a user wears the apparatus on his or her wrist and the flat extended state when the user detaches the apparatus from his or her wrist. When the method suggested in the present invention is used, the user can conveniently carry the apparatus on his or her wrist and use the apparatus on or off the wrist as necessary, thereby resolving inconveniences of carrying and using an existing mobile apparatus.
Abstract:
Disclosed are an electrode patch for measuring an electric signal of a body and a physiological signal measurement apparatus using the same. The electrode patch includes a support layer formed of a conductive elastic material and formed to measure an electrical signal from a body adhered thereto, a first adhesive part formed on one surface of the support layer and attached to or detached from the body, and a second adhesive part formed on the other surface of the support layer and attached to or detached from an electric circuit for transferring the electrical signal from the body. The first adhesive part and the second adhesive part are formed of the same conductive elastic material as the support layer.
Abstract:
A system for reproducing a sound in accordance with an embodiment of the present invention includes: a sound reproducing device configured to generate an audio signal corresponding to acoustic data and to allow the audio signal to be carried through a human body; and an earphone configured to output a sound by being vibrated by static electricity generated according to the audio signal carried through the human body.
Abstract:
Disclosed herein is a textile interface device and method for use with a human body-worn band. The textile interface device includes a detection unit provided in wearing means that is worn on a human body and configured to detect bio-signals from the human body, an interface unit disposed inside accommodation means provided on one side of the wearing means and configured to communicate with an electronic device accommodated in the accommodation means, and a plurality of textile buttons configured to generate control signals adapted to control the electronic device. The interface unit includes, on a textile, an optical reception unit configured to receive optical signals, an optical transmission unit configured to send the optical signals, and a light diffusion unit configured to diffuse light when the optical signals are sent. The interface unit communicates with the electronic device by means of light.