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    • 1. 发明授权
    • Heat transferring device having adiabatic unit
    • 具有绝热单元的传热装置
    • US06698503B2
    • 2004-03-02
    • US10259877
    • 2002-09-30
    • Sang-young SonMun-cheol ChoiYoung-ki HongHye-jung ChoByeoung Ju Ha
    • Sang-young SonMun-cheol ChoiYoung-ki HongHye-jung ChoByeoung Ju Ha
    • F28D1500
    • H01L23/427F28D15/043F28D15/046H01L2924/0002H01L2924/00
    • A heat transferring device having an adiabatic unit is provided. The heat transferring device includes a lower plate including an evaporator which contacts a heating element and allows a liquid refrigerant to absorb heat transferred from the heating element to thus evaporate, a condenser in which gas flowing from the evaporator is condensed, a gas passage through which the gas flowing from the evaporator into condenser, a liquid refrigerant passage through which the liquid refrigerant flows from the condenser into the evaporator and which includes a portion used as a channel region bordering the evaporator, and an adiabatic unit provided between the liquid refrigerant passage and the gas passage so that elements hindering the flow of the liquid refrigerant can be prevented from being introduced from the gas passage into the liquid refrigerant passage; and an upper plate which contacts some members of the lower plate including the adiabatic unit.
    • 提供具有绝热单元的传热装置。 传热装置包括:下部板,包括与加热元件接触的蒸发器,并允许液体制冷剂吸收从加热元件传递的热量从而蒸发;蒸发器中流动的气体被冷凝的冷凝器,气体通道, 从蒸发器流入冷凝器的气体,液体制冷剂通道,液体制冷剂从冷凝器流过蒸发器,并且包括用作与蒸发器相邻的通道区域的部分;以及设置在液体制冷剂通道和 能够防止阻碍液体制冷剂的流入的元件从气体通路导入液体制冷剂通路, 以及接触包括绝热单元的下板的一些构件的上板。
    • 2. 发明授权
    • Capillary pumped loop system
    • 毛细管泵回路系统
    • US06880625B2
    • 2005-04-19
    • US10108549
    • 2002-03-29
    • Mun-cheol ChoiByeoung Ju HaYoung-ki HongJong-beom Kim
    • Mun-cheol ChoiByeoung Ju HaYoung-ki HongJong-beom Kim
    • F28D15/02F28D15/04F28D15/00
    • F28D15/043
    • A capillary pumped loop system includes an evaporator for vaporizing a refrigerant by absorbing heat from the periphery, a condenser for turning the vaporized refrigerant into a liquid by radiating heat from the vaporized refrigerant, a tube for forming a circulatory path connecting the evaporator to the condenser, and a capillary unit installed to form a plurality of gaps within the tube so that the refrigerant can move along the circulatory path due to capillary action caused by the gaps. Accordingly, when the refrigerant passes through the capillary unit due to the capillary action, bubbles in the tube can be reduced. In addition, a multi-path is formed for the movement of the liquid refrigerant, so discontinuation of the refrigerant can be prevented, thereby preventing the refrigerant in the evaporator from drying out.
    • 毛细管泵回路系统包括:蒸发器,用于通过从外围吸收热量来蒸发制冷剂;冷凝器,用于通过从蒸发的制冷剂中散发热量将蒸发的制冷剂转化为液体;管,用于形成将蒸发器连接到冷凝器的循环路径 以及毛细管单元,其被安装成在管内形成多个间隙,使得制冷剂可以由于由间隙引起的毛细管作用沿着循环路径移动。 因此,当制冷剂由于毛细管作用而通过毛细管单元时,可以减小管中的气泡。 此外,为了液体制冷剂的移动形成多路径,因此可以防止制冷剂的停止,从而防止蒸发器中的制冷剂变干。
    • 7. 发明授权
    • Inkjet printing apparatus and method of driving inkjet printing apparatus
    • 喷墨打印设备和驱动喷墨打印设备的方法
    • US08186811B2
    • 2012-05-29
    • US12662732
    • 2010-04-30
    • Joonghyuk KimJae-woo ChungYoung-ki Hong
    • Joonghyuk KimJae-woo ChungYoung-ki Hong
    • B41J2/045
    • B41J2/14233B41J2/04576B41J2/04581B41J2/04588B41J2/06
    • An inkjet printing apparatus according to example embodiments may include a flow channel plate including an ink inlet for introducing ink, a pressure chamber containing the introduced ink, and a nozzle connected to the pressure chamber and configured to eject ink. A piezoelectric voltage applier may apply a piezoelectric driving voltage to the piezoelectric actuator in such a way that the volume of the pressure chamber is reduced so as to eject an ink droplet. An electrohydrodynamic voltage applier may apply a first electrohydrodynamic driving voltage and a second electrohydrodynamic driving voltage to the electrohydrodynamic actuator. The first electrohydrodynamic driving voltage may generate a jet from the ink droplet such that the jet is ejected towards a printing medium, and the second electrohydrodynamic driving voltage (which has an opposite polarity to that of the first electrohydrodynamic driving voltage) may restore the ink droplet to the nozzle.
    • 根据示例性实施例的喷墨打印设备可以包括流路板,其包括用于引入墨的墨入口,包含引入的墨的压力室和连接到压力室并被配置为喷射墨的喷嘴。 压电电压施加器可以将压电驱动电压施加到压电致动器,使得压力室的容积减小以便喷射墨滴。 电氢动力电压施加器可以将第一电动力驱动电压和第二电动液压驱动电压施加到电动液压致动器。 第一电动力驱动电压可以从墨滴产生射流,使得射流朝向打印介质喷射,并且第二电流动力学驱动电压(其具有与第一电动液压驱动电压的极性相反的极性)可以恢复墨滴 到喷嘴。
    • 8. 发明申请
    • Inkjet printing apparatus and method of driving inkjet printing apparatus
    • 喷墨打印设备和驱动喷墨打印设备的方法
    • US20110134195A1
    • 2011-06-09
    • US12662732
    • 2010-04-30
    • Joonghyuk KimJae-woo ChungYoung-ki Hong
    • Joonghyuk KimJae-woo ChungYoung-ki Hong
    • B41J2/045
    • B41J2/14233B41J2/04576B41J2/04581B41J2/04588B41J2/06
    • An inkjet printing apparatus according to example embodiments may include a flow channel plate including an ink inlet for introducing ink, a pressure chamber containing the introduced ink, and a nozzle connected to the pressure chamber and configured to eject ink. A piezoelectric voltage applier may apply a piezoelectric driving voltage to the piezoelectric actuator in such a way that the volume of the pressure chamber is reduced so as to eject an ink droplet. An electrohydrodynamic voltage applier may apply a first electrohydrodynamic driving voltage and a second electrohydrodynamic driving voltage to the electrohydrodynamic actuator. The first electrohydrodynamic driving voltage may generate a jet from the ink droplet such that the jet is ejected towards a printing medium, and the second electrohydrodynamic driving voltage (which has an opposite polarity to that of the first electrohydrodynamic driving voltage) may restore the ink droplet to the nozzle.
    • 根据示例性实施例的喷墨打印设备可以包括流路板,其包括用于引入墨的墨入口,包含引入的墨的压力室和连接到压力室并被配置为喷射墨的喷嘴。 压电电压施加器可以将压电驱动电压施加到压电致动器,使得压力室的容积减小以便喷射墨滴。 电氢动力电压施加器可以将第一电动力驱动电压和第二电动液压驱动电压施加到电动液压致动器。 第一电动力驱动电压可以从墨滴产生射流,使得喷射朝向打印介质喷射,并且第二电流动力驱动电压(其具有与第一电动液压驱动电压的极性相反的极性)可以恢复墨滴 到喷嘴。
    • 10. 发明申请
    • PIEZOELECTRIC INKJET HEAD AND METHOD OF MANUFACTURING THE SAME
    • 压电喷嘴头及其制造方法
    • US20080165228A1
    • 2008-07-10
    • US11768293
    • 2007-06-26
    • Sung-gyu KANGYoung-ki HongJae-woo ChungSe-young Oh
    • Sung-gyu KANGYoung-ki HongJae-woo ChungSe-young Oh
    • B41J2/045H01L41/22
    • B41J2/14233B41J2/055B41J2/161B41J2/1628B41J2/1629B41J2/1631B41J2/1632B41J2/1642B41J2002/14403B41J2002/14419B41J2202/03B41J2202/11Y10T29/42
    • A piezoelectric inkjet head and a method of manufacturing the piezoelectric inkjet head. The piezoelectric inkjet head includes three single crystal silicon substrates bonded to each other. An upper substrate includes an ink inlet, a plurality of pressure chambers, and a plurality of piezoelectric actuators, a middle substrate includes a manifold, a plurality of restrictors, and a plurality of first dampers, and a lower substrate includes a plurality of nozzles. The middle substrate also includes a membrane that is formed under the manifold to mitigate a rapid pressure change in the manifold and if formed of a material different from the material used for forming the middle substrate. A cavity located under the membrane and at least one venting channel that connects the cavity to the outside are formed in the middle substrate or the lower substrate. Due to the above configuration, the membrane having flexibility mitigates a rapid pressure change in the manifold caused by backflow of ink, and thus, cross-talk between adjacent pressure chambers during ink ejection can be effectively prevented.
    • 压电喷墨头和压电喷墨头的制造方法。 压电喷墨头包括彼此结合的三个单晶硅衬底。 上基板包括墨入口,多个压力室和多个压电致动器,中间基板包括歧管,多个限流器和多个第一阻尼器,下基板包括多个喷嘴。 中间基板还包括形成在歧管下方的膜,以减轻歧管中的快速压力变化,并且如果由不同于用于形成中间基板的材料形成的材料形成。 在中间基板或下基板中形成位于膜下方的空腔和将空腔连接到外部的至少一个通气通道。 由于上述结构,具有柔性的膜减轻了由于油墨的回流引起的歧管中的快速压力变化,因此可以有效地防止在喷墨期间相邻压力室之间的串扰。