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    • 72. 发明授权
    • Plating apparatus for substrate
    • 基板电镀装置
    • US07311809B2
    • 2007-12-25
    • US10930823
    • 2004-09-01
    • Keiichi KurashinaMizuki NagaiSatoru YamamotoHiroyuki KandaKoji MishimaBrett BakerHariklia DeligianniPhillipe Vereecken
    • Keiichi KurashinaMizuki NagaiSatoru YamamotoHiroyuki KandaKoji MishimaBrett BakerHariklia DeligianniPhillipe Vereecken
    • C25D17/00
    • C25D7/123C25D17/001C25D17/004C25D17/008H01L21/2885
    • The present invention provides a plating apparatus for a substrate which can plate a substrate under uniform pressure without increasing a load to be applied while holding the entire surface of a porous member in contact with the surface, to be plated, of the substrate. The plating apparatus for a substrate, includes: a substrate holder for holding a substrate; a cathode unit having a seal member for abutting against and sealing, in a water-tight manner, a peripheral portion of a surface, to be plated, of the substrate held by the substrate holder, and a cathode electrode which is brought into contact with the substrate to supply current to the substrate. An anode which is vertically moveable is disposed in confronting relation to the surface, to be plated, of the substrate; a plating solution impregnated material is disposed between the anode and the surface, to be plated, of the substrate, the plating solution impregnated material being made of a water-retentive material; and a porous member is disposed between the plating solution impregnated material and the surface, to be plated, of the substrate. The plating solution impregnated material is constructed of a plurality of separate members.
    • 本发明提供了一种用于基板的电镀装置,其能够在保持多孔构件的整个表面与基板的被镀表面接触的同时,在均匀的压力下对基板进行平板化,而不增加要施加的载荷。 用于基板的电镀装置包括:用于保持基板的基板保持器; 阴极单元,具有密封构件,该密封构件以水密方式邻接并密封被基板保持件保持的基板的待镀表面的周边部分,以及与基板保持件接触的阴极电极 该基板向基板提供电流。 可垂直移动的阳极以与基板的待镀表面相对的方式设置; 电镀溶液浸渍材料设置在阳极和待镀覆的表面之间,电镀液浸渍材料由保水材料制成; 并且多孔构件设置在电镀溶液浸渍材料和要被电镀的表面之间。 电镀溶液浸渍材料由多个分开的构件构成。
    • 73. 发明申请
    • Refrigerator
    • 冰箱
    • US20070125119A1
    • 2007-06-07
    • US10569645
    • 2004-08-25
    • Yoshiro NaemuraShigeru NikiKunio NiiYasushi TakagiRyousuke YamamotoKosaku AdachiKoji Mishima
    • Yoshiro NaemuraShigeru NikiKunio NiiYasushi TakagiRyousuke YamamotoKosaku AdachiKoji Mishima
    • F25D11/00F25B39/04
    • F25D23/006F25D21/14F25D23/003F25D29/005F25D2400/04F25D2500/02
    • A refrigerator stated is characterized in that it includes a machine room (14) formed on a lower part of a rear of a main body of the refrigerator; a refrigerant compressor (12) installed offset to one side in the machine room (14) in a width direction; and a cooler (9) for receiving a refrigerant from the refrigerant compressor (12) and cooling an inside of a storage chamber; wherein the cooler (9) is arranged inside the refrigerator via a heat insulating wall (3a) of the main body above the refrigerant compressor (12) arranged on one side of the machine room (14) and at a position on an opposite side of the refrigerant compressor (12) in a width direction; and control and power source boards (21) of the refrigerator are arranged in another wide space of the refrigerant compressor (12) in the machine room (14) in a width direction. As described above, a refrigerator is provided which, by changing the position relationship and structure of the cooler (9), the refrigerant compressor (12), and the control and power source boards (21), can reduce the thermal loss of the cooler (9), improve the heat insulation efficiency, and increase the heat radiation efficiency of the machine room (14) and a condenser (13), and thereby can obtain a power conservation effect.
    • 一种冰箱,其特征在于,它包括形成在冰箱主体后部的下部的机房(14) 制冷剂压缩机(12),其在宽度方向上偏置到机房(14)的一侧; 以及用于从制冷剂压缩机(12)接收制冷剂并冷却储藏室内部的冷却器(9) 其中,所述冷却器(9)经由设置在所述机器室(14)的一侧的所述制冷剂压缩机(12)的上方的所述主体的隔热壁(3a)配置在所述冰箱内部,并且位于相对侧的位置 的制冷剂压缩机(12)的宽度方向; 冰箱的控制电源板(21)在宽度方向上配置在机房(14)的制冷剂压缩机12的另一宽的空间中。 如上所述,通过改变冷却器(9)的位置关系和结构,制冷剂压缩机(12)以及控制和电源板(21),可以降低冷却器的热损失, (9),提高隔热效率,提高机房(14)和冷凝器(13)的散热效率,从而可以获得节能效果。