Abstract:
Disclosed is an insole including a device for measuring an index of physical activity. More particularly, disclosed is a device for measuring the index of physical activity including a step counter, and an insole including the device. The insole can be used in various types of footwear such as dress shoes, sneakers, hiking boots, and functional shoes. The device for measuring the index of physical activity is manufactured in the form of a thin plate and includes a display unit such as a flexible LCD, a flexible LED, or e-paper, which is flexible yet unbreakable under a certain pressure, in order to display a measured value.
Abstract:
The present invention provides a sporting apparatus including: a supporter which has a plurality of joint holes and joint grooves formed in the upper surface thereof and stoppers formed on the lower surface thereof; a finger-pressure pad which has joint protrusions formed on the lower surface thereof to be coupled with the joint grooves of the supporter and has a finger-pressure portion formed in the upper surface thereof; pedestals which are provided on the stopper sides of the supporter and has joint holes formed in several faces thereof to adjust the height of the supporter; and knobs coupled with the joint holes of the supporter and the joint holes of the pedestals.
Abstract:
Disclosed is a heat treatment system for semiconductor devices. The heat treatment system is used in a heat treatment process for semiconductor devices, such as a crystallization process for an amorphous silicon thin film or a dopant activation process for a poly-crystalline silicon thin film formed on a surface of a glass substrate of a flat display panel including a liquid crystal display (LCD) or an organic light emitting device (OLED). The heat treatment system transfers a semiconductor device after uniformly preheating the semiconductor device in order to prevent deformation of the semiconductor device during the heat treatment process, rapidly performs the heat treatment process under the high temperature condition by heating the semiconductor device using a lamp heater and induction heat derived from induced electromotive force, and unloads the semiconductor device after uniformly cooling the semiconductor devices such that the semiconductor device is prevented from being deformed when the heat treatment process has been finished. The heat treatment system rapidly performs the heat treatment process while preventing deformation of the semiconductor device by gradually heating or cooling the semiconductor device.
Abstract:
Disclosed are a method for manufacturing a composite bushing and a partial discharge diagnosis system for a composite bushing, wherein the composite bushing is provided with a thin film-type UHF sensor to measure the partial discharge of the composite bushing. The present invention involves measuring the partial discharge occurring in the composite bushing, and prevents negligent accidents caused by the partial discharge of the composite bushing.
Abstract:
The present invention relates to a health shoe having an arc type stretching body to be formed apart from a front end and a rear end of a shoe sole with a predetermined distance apart, which is capable of doing stretching exercises at the stable status because 5 the arc type stretching body is supported by the front end or the rear end in contact with the ground when doing exercises in forward flexion or backward extension postures.
Abstract:
The present invention relates to an apparatus and method for executing provisioning in which integrally supervises and executes call information from a plurality of providers for providing particular services being connected to a server. This invention is comprised of a provisioning database, a client interface, a provisioning database interface, and a provider interface.
Abstract:
A method (480, 580) of depositing layers of a thin-film transistor on a substrate using a sputter deposition source comprising at least one first pair of electrodes and at least one second pair of electrodes, the method comprising moving (482, 582) the substrate to a first vacuum chamber; depositing (484, 584) a first layer of the layers on the substrate by supplying the at least one first pair of electrodes with bipolar pulsed DC voltage, wherein a first material of the first layer comprises a first metal oxide; moving (486, 586) the substrate from the first vacuum chamber to a second vacuum chamber without a vacuum break; and depositing (488, 588) a second layer of the layers on the first layer by supplying the at least one second pair of electrodes with bipolar pulsed DC voltage, wherein a second material of the second layer comprises a second metal oxide, the second material being different from the first material.
Abstract:
The present invention relates to a light-emitting device having an organic light-emitting unit, and to a light-emitting device, the luminance of which may be controlled so as to minimize a difference in luminance among local portions of the organic light-emitting unit. To accomplish the above-mentioned objective of the present invention, the light-emitting device of the present invention comprises: a substrate; a first electrode unit arranged on the substrate; a light-emitting unit arranged in the first electrode unit and made of organic light-emitting elements; and a second electrode unit arranged in the light-emitting unit. The first electrode unit and/or the second electrode unit has a plurality of areas separated from each other such that the areas can be electrically isolated from each other. Power having different polarities may be supplied to the plurality of areas so as to suppress a difference in luminance in the light-emitting unit.