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    • 12. 发明授权
    • Liquid crystal display of line-on-glass type
    • 玻璃线型液晶显示器
    • US07705820B2
    • 2010-04-27
    • US10304704
    • 2002-11-27
    • Jung Sik Park
    • Jung Sik Park
    • G09G3/36G09G5/00G06F3/038H03F1/04H03F1/34H03F3/217
    • G02F1/13452G09G3/3677
    • A line-on-glass type liquid crystal display device capable of preventing voltage differences between separate gate driver integrated circuits due to line resistances of LOG-signal line patterns includes a picture display area having a plurality of liquid crystal cells, gate driver integrated circuits for driving gate lines, line-on-glass type signal lines provided at an area outside the picture display area for applying driving signals to the gate driver integrated circuits, wherein each of the gate drive integrated circuits includes a gate input line resistor having a predetermined resistance value connected to each gate line. A resistance value of the gate input line resistors incrementally increases by a predetermined amount until a line resistance value of the line-on-glass type signal line connected between the gate driver integrated circuits is reached.
    • 能够防止LOG信号线图案的线电阻引起的分离的栅极驱动集成电路之间的电压差的玻璃线型液晶显示装置包括具有多个液晶单元的图像显示区域,栅极驱动集成电路 驱动栅极线,设置在图像显示区域外的区域上的玻璃线型信号线,用于向栅极驱动器集成电路施加驱动信号,其中每个栅极驱动集成电路包括具有预定电阻的栅极输入线电阻器 值连接到每个栅极线。 栅极输入线电阻器的电阻值逐渐增加预定量,直到达到连接在栅极驱动器集成电路之间的玻璃线型信号线的线电阻值。
    • 13. 发明申请
    • INSOLE WITH SHOCK-ABSORBING FUNCTION AND MANUFACTURING METHOD THEREOF
    • 具有减震功能的制动器及其制造方法
    • US20100024246A1
    • 2010-02-04
    • US12515927
    • 2007-04-18
    • Jung Sik Park
    • Jung Sik Park
    • A43B13/38A43B7/14
    • A43B13/182A43B17/02A43B21/26
    • The present invention relates to a shock-absorbing insole for a footwear and a method of manufacturing the same wherein the shock-absorbing insole is disposed on the bottom surface in a footwear for absorbing and reducing the shocks applied from the ground to a wearer's sole during running, jogging, walking, etc. The shock-absorbing insole includes: a bottom plate made of a synthetic resin and having fabric attached on the top surface thereof; and a shock-absorbing member made of an elastic synthetic resin for absorbing shocks applied to the footwear in such a manner as to be contracted and restored from/to its original state in accordance with the load applied during walking, the shock-absorbing member being formed integrally with a bottom surface of a heel portion of the bottom plate.
    • 本发明涉及一种用于鞋类的减震鞋垫及其制造方法,其中减震鞋垫设置在鞋类的底表面上,用于吸收和减少从地面施加到穿着者的鞋底的冲击 运动,慢跑,步行等。减震鞋垫包括:由合成树脂制成的底板,并在其顶表面上附着织物; 以及由弹性合成树脂制成的减震构件,用于吸收施加到鞋上的冲击,以便根据步行期间的负荷将其收缩并恢复到原始状态,减震构件为 与底板的跟部的底面一体形成。
    • 15. 发明授权
    • Steering tilt column assembly for vehicle
    • 车辆转向倾斜柱组件
    • US06851712B2
    • 2005-02-08
    • US10405991
    • 2003-04-02
    • Jung-Sik ParkByung-Hwan Lee
    • Jung-Sik ParkByung-Hwan Lee
    • B62D1/184B62D1/189B62D1/19B62D1/18
    • B62D1/184B62D1/195
    • A steering tilt column assembly for a vehicle. The steering tilt column assembly is capable of implementing a stable engaged state of an engaged fixing gear and driving gear for continuing a tilting state, removing some parts by directly operating an upward roation operation of a driving gear using a tilt lever, preventing a noise and loosening by preventing a bolt used for a lever hinge of a tilt lever from affecting to a rotation friction during a rotation of a tilt lever, increasing an impact absorbing effect and unit cost by improving a material and structure of an initial impact absorbing capsule used for a mounting bracket, and implementing an impact absorbing and fixed engagement without using a dual column by making an engaging structure of a lower portion of a column and a lower bracket have a cross sectional portion with a decreased diameter.
    • 一种用于车辆的转向倾斜柱组件。 转向倾斜柱组件能够实现接合的固定齿轮和驱动齿轮的稳定接合状态,用于继续倾斜状态,通过使用倾斜杆直接操作驱动齿轮的向上旋转操作来去除一些部件,防止噪声和 通过防止用于倾斜杆的杠杆铰链的螺栓在倾斜杆的旋转期间影响旋转摩擦而松动,通过改进用于初始冲击吸收胶囊的材料和结构来增加冲击吸收效果和单位成本 安装支架,并且通过使柱的下部和下支架的接合结构具有直径减小的横截面部分,并且不使用双柱来实现冲击吸收和固定接合。
    • 16. 发明授权
    • Motor structure for reciprocating compressor
    • 往复式压缩机的电机结构
    • US06838788B2
    • 2005-01-04
    • US10077876
    • 2002-02-20
    • Jung Sik ParkJin Dong Kim
    • Jung Sik ParkJin Dong Kim
    • F04B39/00F04B35/04H02K7/14H02K33/16H02K41/00
    • H02K33/16H02K7/14
    • A motor structure for a reciprocating compressor, by which an power lowering of the motor can be prevented by installing a magnet to be eccentric toward a direction compressing a fluid to compensate a backward moved amount of the magnet by compression pressure during operating the compressor and a motor saturation can be prevented, comprises: an outer core of cylindrical shape fixed inside a sealed chamber and including a winding coil wound therein; an inner core disposed on an inner circumferential surface of the outer core with a predetermined gap for forming a flux with the outer core when an electric source is applied to the winding coil; and a magnet disposed between the outer core and the inner core so as to move linearly for making a piston to perform a linear reciprocating movement, wherein an initial mid position of the magnet is located to be eccentric as a predetermined distance from a mid position of the outer core and of the inner core toward a moving direction of the piston when a fluid is compressed.
    • 一种用于往复式压缩机的电动机结构,通过在压缩流体的方向上安装偏心的磁体,以便在压缩机运转期间通过压缩压力来补偿磁铁的向后移动量,从而可以防止电动机的功率降低 可以防止电机饱和,包括:固定在密封室内的包括缠绕在其中的绕组线圈的圆筒形外芯; 内芯,在向所述绕线线圈施加电源时,以规定的间隙配置在所述外芯的内周面上,用于与所述外芯形成磁通; 以及设置在所述外芯和所述内芯之间以直线移动以使活塞进行线性往复运动的磁体,其中,所述磁体的初始中间位置偏离所述磁体的中间位置 当流体被压缩时,外芯和内芯朝向活塞的移动方向。
    • 17. 发明授权
    • Discharge apparatus for reciprocating compressor
    • 往复式压缩机排放装置
    • US06824365B2
    • 2004-11-30
    • US10297753
    • 2002-12-09
    • Jung-Sik ParkHyuk LeeSeong-Yeol Hyeon
    • Jung-Sik ParkHyuk LeeSeong-Yeol Hyeon
    • F04B3900
    • F04B39/0061Y10S181/403
    • A discharge apparatus for a reciprocating compressor. The compressor includes a shell connected to a gas suction conduit for sucking gas, a cylinder in the shell, a compression unit including a piston performing reciprocal movement in the cylinder, a reciprocating motor having an inner stator, an outer stator, and a armature performing reciprocal movement between them, and a frame unit for supporting the compression unit and the reciprocating motor by connecting them. The discharge apparatus includes a first cover member in which a valve body controlling the discharge of compressed gas by switching the cylinder in contained and at least a gas passage is formed, and a second cover member arranged continuously with the first cover member and connected to the gas discharge hole. In this way, the gas compressed by linear reciprocal movement of the piston in the cylinder is discharged smoothly so the reliability of the compressor operation is improved.
    • 一种用于往复式压缩机的排放装置。 压缩机包括连接到用于吸入气体的气体吸入管道的壳体,壳体中的气缸,包括在气缸中执行往复运动的活塞的压缩单元,具有内部定子,外部定子和衔铁的往复式电动机 它们之间的往复运动,以及用于通过连接它们来支撑压缩单元和往复式电动机的框架单元。 排出装置包括:第一盖构件,其中形成通过在容纳和至少一个气体通道中切换气缸来控制压缩气体的排出的阀体;以及第二盖构件,与第一盖构件连续配置并连接到 排气孔。 以这种方式,通过活塞在气缸中的线性往复运动而被压缩的气体平滑地排出,从而提高了压缩机操作的可靠性。
    • 18. 发明授权
    • Suction gas valve apparatus of reciprocating compressor
    • 往复式压缩机吸气阀装置
    • US06695596B2
    • 2004-02-24
    • US09958742
    • 2001-10-16
    • Won-Sik OhJung-Sik Park
    • Won-Sik OhJung-Sik Park
    • F04B5312
    • F04B39/102F04B39/0016Y10T137/7932
    • In a suction valve apparatus of a reciprocating compressor including a piston having a gas passage at which gas flows inside its body portion, a valve seat formed at an end of a piston body to open the gas passage and a step face formed so as to have a thickness inward from the valve seat and have a plurality of gas through holes and a mounting through hole, and a valve cone having a detachable coupling portion formed extendely from a cone portion corresponded to the valve seat of the piston and inserted into the mounting through hole of the step face of the piston so as to be movable, a re-expansion loss can be reduced by minimizing a dead volume of a suction gas valve, an efficiency of a reciprocating compressor can improve by reducing a heat transmission loss by sucking refrigerant gas through the plurality of gas through holes of the step face from the gas passage. In addition, the number of parts can be reduced and its structure can be simplified, accordingly it is advantageous to a mass-production as well as heightening the assembly productivity.
    • 在具有活塞的往复式压缩机的吸入阀装置中,所述活塞具有气体在其主体部分内流动的气体通道,形成在活塞体端部以打开气体通道的阀座和形成为具有 从阀座向内的厚度并具有多个气体通孔和安装通孔,以及具有可拆卸联接部分的阀锥体,其从与活塞的阀座对应的圆锥部分形成并插入到安装件中 活塞的台阶面的孔可以移动,通过最小化吸气阀的死体积可以减少再膨胀损失,往复式压缩机的效率可以通过减少吸入制冷剂的传热损失来提高 气体通过来自气体通道的阶梯面的多个气体通过孔。 此外,可以减少部件数量并且其结构可以简化,因此有利于批量生产以及提高组装生产率。
    • 19. 发明授权
    • Cooling system for integrated circuit chip
    • 集成电路芯片冷却系统
    • US06687125B2
    • 2004-02-03
    • US10183375
    • 2002-06-28
    • Jung-Sik ParkEon-Pyo HongYong-Dol ParkDong-Koo ShinJin-Young JungHyeong-Kook Lee
    • Jung-Sik ParkEon-Pyo HongYong-Dol ParkDong-Koo ShinJin-Young JungHyeong-Kook Lee
    • H05K720
    • H01L23/427H01L2924/0002H01L2924/00
    • In a cooling system for an integrated circuit chip, by including an evaporator contacted-combined with an integrated circuit chip installed onto a board and absorbing heat generated at the integrated circuit chip; a compressor connected to the evaporator by a first connection pipe; a condenser connected to the compressor by a second connection pipe; an expansion means connected to the condenser by a third connection pipe and simultaneously connected to the evaporator by a fourth connection pipe; and a mounting board installed onto the board by a board combining means and mounted with the compressor, the condenser and the expansion means, it is possible to perform the operation of the integrated circuit chip smoothly, and accordingly a reliability of a product can be improved. In addition, although an integrated circuit chip is getting even more integrated, cooling of the integrated circuit chip can be efficiently performed.
    • 在用于集成电路芯片的冷却系统中,通过包括与安装在板上的集成电路芯片接触并吸收集成电路芯片产生的热量的蒸发器; 通过第一连接管连接到蒸发器的压缩机; 通过第二连接管连接到压缩机的冷凝器; 膨胀装置,通过第三连接管连接到冷凝器,并通过第四连接管同时连接到蒸发器; 以及通过板组合装置安装在板上的安装板,并与压缩机,冷凝器和膨胀装置一起安装,可以平滑地执行集成电路芯片的操作,从而可以提高产品的可靠性 。 此外,虽然集成电路芯片越来越集成,但是可以有效地执行集成电路芯片的冷却。