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    • 1. 发明申请
    • JAWBONE DISTRACTION SYSTEM AND A CONTROL METHOD THEREOF CAPABLE CONTROLLING OPERATION USING A REMOTE CONTROL
    • 吉他分配系统及其控制方法使用远程控制可控制操作
    • US20150025587A1
    • 2015-01-22
    • US14112174
    • 2012-04-27
    • Hee Jin KimJong Tae ParkKyung Seok HuHyung Jun KimJung Yul ChaJae Gi LeeGyu Hag Kim
    • Hee Jin KimJong Tae ParkKyung Seok HuHyung Jun KimJung Yul ChaJae Gi LeeGyu Hag Kim
    • A61B17/80A61B17/86A61B19/00
    • A61B17/8071A61B17/663A61B17/8004A61B17/8057A61B2017/00221A61B2017/00402
    • The present invention relates to a jawbone distraction system and control method thereof, including a jawbone extension apparatus, a remote controller and a monitor, the jawbone distractor being configured to allow a horizontal shift of alveolar bone as well as performing vertical jawbone distraction, being precisely controlled in a wireless mode and configured to control a drive of the jawbone distractor through the remote controller while ascertaining a driving state by the monitor.A jawbone distraction system, including a micro-actuator and an actuator controller controlling the micro-actuator, being formed to include a jawbone distractor installed to an upper bone and a lower bone connected to the upper bone and configured to adjust an interval between the upper and lower bones, and a monitor generating and wirelessly transmitting an actuator control signal to the jawbone distractor, is further comprised of: a remote controller including a forward shift key and a reverse shift key that set the micro-actuator to shift each in a forward direction and a reverse direction, in which the monitor is configured to include an arithmetic processor generating an actuator control signal in response to a forward shift key signal and a reverse shift key signal that are received from the remote controller. The actuator controller includes an actuator state detector detecting a voltage of a device serially coupled to the micro-actuator or a current signal of an input node of the micro-actuator as a state detection signal.
    • 本发明涉及一种颚骨牵引系统及其控制方法,包括颚骨延伸装置,遥控器和监视器,颚骨牵引器构造成允许牙槽骨的水平移位以及执行垂直颚骨牵引,精确地 以无线模式进行控制,并配置成通过遥控器控制颚骨牵引器的驱动器,同时通过监视器确定驾驶状态。 包括微致动器和控制微致动器的致动器控制器的颚骨牵引系统被形成为包括颚骨牵引器,所述颚骨牵引器安装到上骨和连接到上骨的下骨上,并被构造成调节上骨 并且下骨骼,以及产生并将致动器控制信号无线地传送到颚骨牵引器的监视器还包括:遥控器,包括向前移动键和反向换档键,其设置微致动器以向前移动 方向和反向,其中监视器被配置为包括响应于从遥控器接收的前向移位键信号和反向移位键信号而产生致动器控制信号的运算处理器。 致动器控制器包括致动器状态检测器,其检测与微致动器串联耦合的设备的电压或微执行器的输入节点的电流信号作为状态检测信号。
    • 9. 发明授权
    • Spin transistor using N-type and P-type double carrier supply layer structure
    • 旋转晶体管采用N型和P型双载体供电层结构
    • US08183611B2
    • 2012-05-22
    • US12858702
    • 2010-08-18
    • Hyung Jun KimJin Dong SongHyun Cheol KooKyung Ho KimSuk Hee Han
    • Hyung Jun KimJin Dong SongHyun Cheol KooKyung Ho KimSuk Hee Han
    • H01L29/76
    • H01L29/66984G11C11/161G11C11/1675G11C11/18Y10S257/902
    • A spin transistor that includes: a semiconductor substrate including an upper cladding layer and a lower cladding layer, and a channel layer interposed between the upper and lower cladding layers; a ferromagnetic source and a ferromagnetic drain formed on the semiconductor substrate and spaced from each other in a length direction of the channel layer; and a gate electrode formed on the semiconductor substrate between the source and the drain and having applied a gate voltage thereto to control a spin precession of an electron passing through the channel layer, wherein the semiconductor substrate includes a first carrier supply layer of a first conductivity type disposed below the lower cladding layer and supplying carriers to the channel layer, and a second carrier supply layer of a second conductivity type opposite to the first conductivity type formed on the upper cladding layer and supplying the carriers to the channel layer.
    • 一种自旋晶体管,包括:包括上包层和下包层的半导体衬底,以及介于上包层和下包层之间的沟道层; 形成在所述半导体基板上并且在所述沟道层的长度方向上彼此间隔开的铁磁源和铁磁性漏极; 以及形成在所述源极和漏极之间的所述半导体衬底上并且施加了栅极电压以用于控制通过所述沟道层的电子的自旋进动的栅电极,其中所述半导体衬底包括具有第一导电性的第一载流子供应层 类型,其设置在所述下包层下方并且将沟道层供给到所述沟道层;以及第二导电类型的第二载流子供应层,其形成在所述上包层上并且将所述载流子提供给所述沟道层。