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    • 2. 发明申请
    • PARTICLE FOCUSING SYSTEMS AND METHODS
    • 颗粒聚焦系统和方法
    • US20130233420A1
    • 2013-09-12
    • US13988282
    • 2011-11-14
    • Dino Di CarloWonhee Lee
    • Dino Di CarloWonhee Lee
    • F17D1/00
    • F17D1/00G01N15/1404G01N2015/1415Y10T137/85978
    • A particle focusing system includes an inlet; an inertial focusing microchannel disposed in a substrate and connected to the inlet; and a pressure/flow source configured to drive a particle-containing fluid through the inertial focusing microchannel, where the inertial focusing microchannel includes a side wall having an irregular surface. The side wall includes a first irregularity protruding from a baseline surface away from a longitudinal axis of the inertial focusing microchannel. Alternatively or additionally, the first irregularity and the baseline surface form an angle more than or equal to 135 degrees. The inertial focusing microchannel may have a substantially rectangular cross-section having a height and a width, and a ratio of height to width is approximately 5:4 to 4:1. The system may also include a downstream expanding region having a side wall, where the side wall has a stepped surface.
    • 粒子聚焦系统包括入口; 惯性聚焦微通道,设置在基板中并连接到入口; 以及压力/流动源,其构造成驱动含颗粒流体通过惯性聚焦微通道,其中惯性聚焦微通道包括具有不规则表面的侧壁。 侧壁包括从基准面突出的第一不规则部分,该第一不规则部分远离惯性聚焦微通道的纵向轴线。 或者或另外,第一不规则性和基线表面形成大于或等于135度的角度。 惯性聚焦微通道可以具有具有高度和宽度的基本上矩形的横截面,并且高度与宽度之比约为5:4至4:1。 该系统还可以包括具有侧壁的下游扩张区域,其中侧壁具有台阶表面。
    • 7. 发明申请
    • PORTABLE TERMINAL AND CHARACTER INPUT METHOD FOR SAME
    • 适用终端和字符输入方法
    • US20130044069A1
    • 2013-02-21
    • US13643307
    • 2011-04-05
    • Wonhee Lee
    • Wonhee Lee
    • G06F3/041
    • G06F3/018G06F3/0233G06F3/04883H04M1/72522H04M2250/22H04M2250/70
    • Disclosed are a portable terminal and a character input method thereof. Touch information corresponding to input selected by a user from a touch device is received, and a control unit calculates a region in which the touch information starts, a region in which the touch information ends, and a region in which the touch information turns. Then, the control unit determines a character corresponding to the region in which the touch information starts, the region in which the touch information ends, and the region in which the touch information turns with reference to the memory. Further, the control unit determines whether there is a motion of turning an apex of the region in a predetermined direction, and when the motion of turning the apex of the region in the predetermined direction is input, the control unit changes a character input mode. Thus, a character may be accurately and simply input by inputting a character in a predetermined region displayed on a screen larger than an existing screen by using a touch device.
    • 公开了一种便携式终端及其字符输入方法。 接收与用户从触摸设备选择的输入对应的触摸信息,控制单元计算触摸信息开始的区域,触摸信息结束的区域以及触摸信息转动的区域。 然后,控制单元参照存储器确定触摸信息开始的区域,触摸信息结束的区域和触摸信息转动的区域对应的字符。 此外,控制单元确定是否存在沿预定方向转动该区域的顶点的运动,并且当输入沿着预定方向转动区域的顶点的运动时,控制单元改变字符输入模式。 因此,通过使用触摸装置,通过在大于现有屏幕的屏幕上显示的预定区域中输入字符,可以准确且简单地输入字符。
    • 8. 发明授权
    • Plastic system and method of porous bioimplant having a unified connector
    • 多孔生物植物的塑料系统和方法具有统一的连接器
    • US07347967B2
    • 2008-03-25
    • US10468835
    • 2001-11-03
    • Kiju KimWonhee LeeJongkyun Jung
    • Kiju KimWonhee LeeJongkyun Jung
    • B22F3/11
    • A61F2/30767A61C8/0006A61C8/0012A61C2008/0046A61F2/30A61F2/30771A61F2/3094A61F2/36A61F2002/30968A61F2310/00011A61L31/146B22F3/087B22F3/11
    • The present invention relates to a system and a method of manufacturing a porous bio-implant having a connecting member integrally formed therewith, and more particularly, to a system and a method of manufacturing a porous bio-implant in which a connecting member is integrally formed by sintering a metal powder by a high voltage instant discharge in the state that the connecting member is inserted in a pyrex tube and then the metal powder is put in the pyrex tube. A system of manufacturing a porous bio-implant having a connecting member formed integrally therewith includes a power supply supplying a low voltage; a voltage booster for boosting the low voltage supplied from the power supply to a high voltage; a condenser charging the high voltage boosted by the voltage booster through a switch; a vacuum switch for instantaneously discharging the high voltage charged in the condenser; and a bio-implant manufacturing apparatus for manufacturing a bio-implant by the high voltage discharged instantaneously from the vacuum switch.
    • 本发明涉及一种制造具有与其一体形成的连接部件的多孔生物植入物的系统和方法,更具体地,涉及一种制造多孔生物植入物的系统和方法,其中连接构件一体形成 通过在将连接构件插入发热管中的状态下通过高电压即时放电烧结金属粉末,然后将金属粉末放入发泡管中。 制造具有与其一体形成的连接部件的多孔生物植入物的系统包括提供低电压的电源; 用于将从电源提供的低电压升压到高电压的升压器; 电容器通过开关对由升压器升压的高压进行充电; 一个真空开关,用于瞬时放电在电容器中充电的高电压; 以及用于通过从真空开关瞬时放电的高电压来制造生物植入物的生物植入物制造装置。