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    • 64. 发明申请
    • Device for printing biomolecules on substrate using electrohydrodynamic effect
    • 使用电动力学效应在基板上印刷生物分子的装置
    • US20060255267A1
    • 2006-11-16
    • US11418602
    • 2006-05-05
    • Jeong-gun LeeJeong-woo ChoiNam HuhHye-jung Cho
    • Jeong-gun LeeJeong-woo ChoiNam HuhHye-jung Cho
    • G21K7/00
    • B01L3/0244B01J2219/0036B01J2219/00378B01J2219/00659B01J2219/00722B01J2219/00725B01J2219/00729B01L3/0241B01L2300/0819
    • Provided is a device for printing a biomolecule solution onto a substrate using an electrohydrodynamic (EHD) effect. The device can deposit drops of the biomolecule solution with small size and volume and print more of the biomolecule solution onto a substrate, thereby enabling the manufacture of a high density biochip. The device includes a first electric field forming electrode that is shaped like a needle, is made of a conductive material, is disposed vertically, and includes an accommodating area in which the biomolecule solution is accommodated and an outlet formed on a bottom end of the accommodating area through which the biomolecule solution is discharged; a substrate disposed below the first electric field forming electrode, and including a target surface onto which the biomolecule solution discharged from the outlet of the first electric field forming electrode is deposited; a second electric field forming electrode made of a conductive material and disposed below the first electric field forming electrode; and a voltage applying device which is electrically connected to the first and second electric field forming electrodes to apply a voltage between the first and second electric field forming electrodes so that an electric field is generated around the biomolecule solution suspended in the outlet, wherein, due to the interaction between the electric field and a difference between dielectric constants of the biomolecule solution having a free surface and the surrounding atmosphere, the electric force acts inward on the biomolecule solution, thereby causing a predetermined amount of the biomolecule solution to drop onto the target surface of the substrate.
    • 提供了使用电动力学(EHD)效应将生物分子溶液印刷到基底上的装置。 该装置可以沉积小尺寸和体积的生物分子溶液,并将更多的生物分子溶液印刷到基底上,从而能够制造高密度生物芯片。 该装置包括成形为针状的第一电场形成电极,由导电材料制成,垂直设置,并且包括其中容纳有生物分子溶液的容纳区域和形成在容纳物的底端的出口 生物分子溶液排出的区域; 设置在所述第一电场形成电极下方的基板,并且包括从所述第一电场形成用电极的出口排出的生物分子溶液沉积在其上的目标表面; 由导电材料制成并设置在第一电场形成电极下方的第二电场形成电极; 以及电压施加装置,其电连接到第一和第二电场形成电极,以在第一和第二电场形成电极之间施加电压,使得在悬浮在出口中的生物分子溶液周围产生电场,其中,由于 对于电场与具有自由表面和周围大气的生物分子溶液的介电常数之间的差异的相互作用,电力向内作用于生物分子溶液,从而使预定量的生物分子溶液落到目标上 基板的表面。
    • 67. 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。