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    • 62. 发明授权
    • Brake booster
    • 制动助力器
    • US4377069A
    • 1983-03-22
    • US236102
    • 1981-02-19
    • Hideyuki Kobayashi
    • Hideyuki Kobayashi
    • B60T13/56B60T13/565B60T13/567B60T13/569B60T13/00
    • B60T13/569B60T13/565B60T13/5675
    • This invention relates to a brake booster for automotive vehicles including a housing, a brake master cylinder connected to the housing and a diaphragm power piston dividing the housing into first and second fluid chambers and having a retracted position defined by abutment with the housing and a control valve mechanism for the diaphragm power piston to control the pressure differential between the chambers in response to brake pedal movement axially relative to the power piston, wherein at least two bolts extend from the master cylinder outside of and past the housing toward a dash board of a vehicle for installation. A brake reactional force is transmitted by the bolts from the master cylinder directly to the dash board bypassing the housing, the thickness of the sheet metal forming the housing being thus calculated to be a lesser gauge for weight decreasing purposes than would otherwise be required.
    • 本发明涉及一种用于机动车辆的制动助力器,其包括壳体,连接到壳体的制动主缸,以及将壳体分为第一和第二流体室并具有通过与壳体邻接限定的缩回位置的隔膜动力活塞, 用于隔膜动力活塞的阀机构响应于制动踏板相对于动力活塞的轴向运动而控制室之间的压力差,其中至少两个螺栓从主缸外延伸并经过壳体朝向主动缸的仪表板 车辆安装。 制动反作用力通过螺栓从主缸直接传递到旁通壳体的仪表板上,因此,形成壳体的金属板的厚度被计算为比否则要求的重量减小目的的较小的规格。
    • 66. 发明授权
    • Organic EL device
    • 有机EL器件
    • US08227980B2
    • 2012-07-24
    • US12736454
    • 2009-03-31
    • Norifumi KawamuraKohichi MoriHideyuki KobayashiHiroshi Takehisa
    • Norifumi KawamuraKohichi MoriHideyuki KobayashiHiroshi Takehisa
    • H01J1/62
    • H01L51/5203
    • The organic EL device (1) comprises: a substrate (2); a light emitting unit formed on the substrate (2), and including an anode (11), a cathode (7) having anelectric resistance lower than that of the anode (11), an organic light emitting layer (6) formed between the anode (11) and the cathode (7); an anode terminal (12) formed on the substrate (2) and connected to the anode (11), and a cathode terminal (16) formed on the substrate (2) and connected to the cathode (7). A surface of the anode terminal (12) connected to the external is applied into an anode connecting surface (12a), and a surface of the cathode terminal (16) connected to the external is applied into a cathode connecting face (16a). The size (S1) of the anode connecting surface (12a) is larger than the size (S2) of the cathode connecting surface (16a).
    • 有机EL器件(1)包括:衬底(2); 形成在所述基板(2)上的发光单元,并且包括阳极(11),具有比所述阳极(11)低的电阻的阴极(7);形成在所述阳极之间的有机发光层, (11)和阴极(7); 形成在基板(2)上并连接到阳极(11)的阳极端子(12)和形成在基板(2)上并连接到阴极(7)的阴极端子(16)。 连接到外部的阳极端子(12)的表面被施加到阳极连接表面(12a)中,并且连接到外部的阴极端子(16)的表面被施加到阴极连接面(16a)。 阳极连接面(12a)的尺寸(S1)大于阴极连接面(16a)的尺寸(S2)。
    • 70. 发明申请
    • ORGANIC EL DEVICE
    • 有机EL设备
    • US20110025197A1
    • 2011-02-03
    • US12736454
    • 2009-03-31
    • Norifumi KawamuraKohichi MoriHideyuki KobayashiHiroshi Takehisa
    • Norifumi KawamuraKohichi MoriHideyuki KobayashiHiroshi Takehisa
    • H01L51/52
    • H01L51/5203
    • The organic EL device (1) comprises: a substrate (2); a light emitting unit formed on the substrate (2), and including an anode (11), a cathode (7) having anelectric resistance lower than that of the anode (11), an organic light emitting layer (6) formed between the anode (11) and the cathode (7); an anode terminal (12) formed on the substrate (2) and connected to the anode (11), and a cathode terminal (16) formed on the substrate (2) and connected to the cathode (7). A surface of the anode terminal (12) connected to the external is applied into an anode connecting surface (12a), and a surface of the cathode terminal (16) connected to the external is applied into a cathode connecting face (16a). The size (S1) of the anode connecting surface (12a) is larger than the size (S2) of the cathode connecting surface (16a).
    • 有机EL器件(1)包括:衬底(2); 形成在所述基板(2)上的发光单元,并且包括阳极(11),具有比所述阳极(11)低的电阻的阴极(7);形成在所述阳极之间的有机发光层, (11)和阴极(7); 形成在基板(2)上并连接到阳极(11)的阳极端子(12)和形成在基板(2)上并连接到阴极(7)的阴极端子(16)。 连接到外部的阳极端子(12)的表面被施加到阳极连接表面(12a)中,并且连接到外部的阴极端子(16)的表面被施加到阴极连接面(16a)。 阳极连接面(12a)的尺寸(S1)大于阴极连接面(16a)的尺寸(S2)。