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    • 41. 发明申请
    • Electromagnetically driven valve
    • 电磁驱动阀
    • US20070028870A1
    • 2007-02-08
    • US11492755
    • 2006-07-26
    • Masahiko AsanoYutaka Sugie
    • Masahiko AsanoYutaka Sugie
    • F01L9/04
    • F01L9/04F01L2009/0409H01F7/14H01F7/1844H01F2007/1692
    • An electromagnetically driven valve that operates by a combination of electromagnetic force and elastic force includes a valve element that has a valve shaft and that reciprocates in directions of extension of the valve shaft, and first and second oscillating members that extend from driving ends to pivoting ends, and that pivot about central axes extending at the pivoting ends. The driving ends are operatively linked with the valve element. An electromagnet oscillates the first and second oscillating members. First and second measuring portions measure at least one of the oscillation angle, the amount of lift and the oscillating speed of the first and second oscillating members. A control portion computes energization control logics based on measurement values provided by the first and second measuring portions, and averages the energization control logics to control energization of the electromagnet.
    • 通过电磁力和弹力的组合操作的电磁驱动阀包括具有阀轴并在阀轴的延伸方向上往复运动的阀元件,以及从驱动端延伸到枢转端的第一和第二摆动构件 并且围绕在枢转端延伸的中心轴枢转。 驱动端与阀元件可操作地连接。 电磁体使第一和第二摆动部件摆动。 第一和第二测量部分测量第一和第二摆动部件的摆动角度,提升量和振荡速度中的至少一个。 控制部基于由第一测量部和第二测量部提供的测量值来计算通电控制逻辑,并平均通电控制逻辑以控制电磁体的通电。
    • 45. 发明授权
    • Cylinder head
    • 气缸盖
    • US08936012B2
    • 2015-01-20
    • US13147138
    • 2010-09-27
    • Masahiko AsanoToshiaki Hamaguri
    • Masahiko AsanoToshiaki Hamaguri
    • F02B47/08F02M25/07F16L19/07F16L25/14F02F1/36
    • F02M25/0735F02F1/36F02M26/12F02M26/30F02M26/32F02M26/41F16L19/07F16L25/14Y02T10/121
    • The first aspect of the present invention is a cylinder head containing a water jacket in which a passage for EGR gas is disposed, and the EGR gas passage has a hollow pipe that is disposed in the hollow pipe and through which the EGR gas passes and an end member that is formed with an insert hole into which the end of the hollow pipe is inserted and fixed. The end member has a bottom that is provided with the insert hole, a side wall that is formed continuously to the bottom, and a wedge portion that is projected outward from the outer peripheral of the side wall and includes a inclined surface facing the wall of the cylinder head and inclined to the flow direction of the EGR gas. The EGR gas passage is fixed to the cylinder head by holding the wedge portion of the end member between a fastening member for fastening the EGR gas passage to the cylinder head and the wall of the cylinder head.
    • 本发明的第一方面是一种包含水套的气缸盖,其中设置有用于EGR气体的通道,并且EGR气体通道具有设置在中空管中的中空管,并且EGR气体通过该中空管,并且 端部构件形成有插入孔,中空管的端部插入并固定到该插入孔中。 端部件具有设置有插入孔的底部,与底部连续形成的侧壁和从侧壁的外周向外突出的楔形部,并且包括朝向 气缸盖并且与EGR气体的流动方向倾斜。 通过将端部件的楔形部分固定在用于将EGR气体通道紧固到气缸盖和气缸盖的壁的紧固构件之间,将EGR气体通道固定到气缸盖。
    • 46. 发明授权
    • Control device
    • 控制装置
    • US08184438B2
    • 2012-05-22
    • US12389220
    • 2009-02-19
    • Yujiro KanekoMasahiko AsanoHideto Yoshinari
    • Yujiro KanekoMasahiko AsanoHideto Yoshinari
    • H05K7/00H05K7/20H05K1/00F28F7/00A47B81/00
    • H05K7/026H05K7/20854
    • A modular control device comprises a control board, a sub-module and a housing cover, with a microcomputer mounted on the control board. The sub-module has a sub-module case provided with a wiring layer that is mounted into a wall of the sub-module case. Electronic parts are mounted in the sub-module case to electrically connect to the control board through the wiring layer. A housing cover accommodates the control board and the sub-module. A housing base is joined with the housing cover. The accommodation portion has a shape corresponding to a shape of each of the electronic parts is arranged in the housing cover. The sub-module is mounted to the housing cover with a heat radiation adhesive between the accommodation portion and each of the electronic parts.
    • 模块化控制装置包括控制板,子模块和壳体盖,微控制器安装在控制板上。 子模块具有设置有安装在子模块壳体的壁中的布线层的子模块壳体。 电子部件安装在子模块外壳中,通过布线层电连接到控制板。 壳体盖可容纳控制板和子模块。 外壳底座与外壳盖连接。 容纳部具有与电子部件的形状对应的形状配置在壳体盖内。 子模块通过在收纳部分和每个电子部件之间的散热粘合剂安装到壳体盖。