Method for fabricating a multi-layer capacitor and a multi-layer capacitor
    141.
    发明授权
    Method for fabricating a multi-layer capacitor and a multi-layer capacitor 有权
    制造多层电容器和多层电容器的方法

    公开(公告)号:US08861184B2

    公开(公告)日:2014-10-14

    申请号:US13397287

    申请日:2012-02-15

    Abstract: The method comprises fabricating a layer stack on a substrate, the layer stack comprising at least two electrically conducting layers and at least one electrically insulating layer arranged between the two electrically conducting layers, and displacing a first portion of the layer stack away from its original position, the first portion comprising an edge portion of the layer stack, and bending the first portion back towards a second portion of the layer stack. The bending may comprise a rolling-up of the first portion of the layer stack.

    Abstract translation: 该方法包括在衬底上制造层堆叠,该层叠层包括至少两个导电层和布置在两个导电层之间的至少一个电绝缘层,并且使叠层的第一部分远离其原始位置 ,所述第一部分包括所述层堆叠的边缘部分,并且将所述第一部分向所述层堆叠的第二部分弯曲。 弯曲可以包括层叠体的第一部分的卷起。

    Device with protective layer
    144.
    发明授权
    Device with protective layer 有权
    带保护层的设备

    公开(公告)号:US08389084B2

    公开(公告)日:2013-03-05

    申请号:US12395510

    申请日:2009-02-27

    CPC classification number: B81B2201/038 B81B2207/115

    Abstract: A fluid impermeable protective layer is described for a structure that has a 3-dimensional profile. The 3-dimensional profile can include actuators. The protective layer is applied so that there are no breaches in the protective layer and so that the protective layer is not too thick to prevent the actuators from being able to properly function.

    Abstract translation: 对于具有3维轮廓的结构,描述了不透液体的保护层。 三维轮廓可以包括致动器。 施加保护层使得保护层中不存在破裂并且保护层不太厚以防止致动器能够正常地起作用。

    Method for fabricating a multi-layer capacitor
    145.
    发明授权
    Method for fabricating a multi-layer capacitor 有权
    制造多层电容器的方法

    公开(公告)号:US08136213B2

    公开(公告)日:2012-03-20

    申请号:US12187316

    申请日:2008-08-06

    Abstract: The method comprises fabricating a layer stack on a substrate, the layer stack comprising at least two electrically conducting layers and at least one electrically insulating layer arranged between the two electrically conducting layers, and displacing a first portion of the layer stack away from its original position, the first portion comprising an edge portion of the layer stack, and bending the first portion back towards a second portion of the layer stack. The bending may comprise a rolling-up of the first portion of the layer stack.

    Abstract translation: 该方法包括在衬底上制造层堆叠,该层叠层包括至少两个导电层和布置在两个导电层之间的至少一个电绝缘层,并且使叠层的第一部分远离其原始位置 ,所述第一部分包括所述层堆叠的边缘部分,并且将所述第一部分向所述层堆叠的第二部分弯曲。 弯曲可以包括层叠体的第一部分的卷起。

    POLYMER ACTUATOR DEVICE
    146.
    发明申请
    POLYMER ACTUATOR DEVICE 有权
    聚合物致动器装置

    公开(公告)号:US20120032564A1

    公开(公告)日:2012-02-09

    申请号:US13274261

    申请日:2011-10-14

    Applicant: Isao TAKAHASHI

    Inventor: Isao TAKAHASHI

    Abstract: A polymer actuator device includes an electrolyte layer, a pair of electrode layers that are provided on both surfaces of the electrolyte layer in a thickness direction of the electrolyte layer, a polymer actuator that is bent when a voltage is applied between the pair of electrode layers, and terminal parts that apply a voltage to the polymer actuator. The polymer actuator includes a deformable portion and a supported portion. A conductive porous member is interposed between a first electrode layer, which is positioned on the side of the supported portion of the polymer actuator corresponding to a negative electrode, and the terminal part.

    Abstract translation: 聚合物致动器装置包括电解质层,在电解质层的厚度方向上设置在电解质层的两个表面上的一对电极层,当在一对电极层之间施加电压时弯曲的聚合物致动器 以及向聚合物致动器施加电压的端子部件。 聚合物致动器包括可变形部分和支撑部分。 导电性多孔体插入位于与负​​极对应的聚合物致动器的被支撑部分侧的第一电极层和端子部之间。

    Actuator driving system in which a drive voltage and number of electrodes parts driven changes in accordance with temperature
    147.
    发明授权
    Actuator driving system in which a drive voltage and number of electrodes parts driven changes in accordance with temperature 失效
    执行机构驱动系统,驱动电压和驱动电极数量根据温度而变化

    公开(公告)号:US08044552B2

    公开(公告)日:2011-10-25

    申请号:US12845921

    申请日:2010-07-29

    Applicant: Tamio Ikehashi

    Inventor: Tamio Ikehashi

    CPC classification number: B81B3/0021 B81B2201/038 H01H59/0009 H02N1/008

    Abstract: An actuator of the present invention includes a moving part, and a driving electrode which is comprised of electrode parts electrically isolated from each other and drives the moving part. A drive voltage is applied selectively to some of the electrode parts to control an electrostatic force which acts on the moving part.

    Abstract translation: 本发明的致动器包括移动部件和驱动电极,驱动电极由彼此电隔离的电极部分组成并驱动移动部件。 驱动电压被选择性地施加到一些电极部分,以控制作用在移动部件上的静电力。

    MICROSTRUCTURE AND METHOD OF MANUFACTURING THE SAME
    148.
    发明申请
    MICROSTRUCTURE AND METHOD OF MANUFACTURING THE SAME 有权
    微结构及其制造方法

    公开(公告)号:US20110228372A1

    公开(公告)日:2011-09-22

    申请号:US13047670

    申请日:2011-03-14

    Applicant: Takahisa Kato

    Inventor: Takahisa Kato

    Abstract: A microstructure includes a substrate, a fixed supporting portion fixed to the substrate, a first movable portion, a second movable portion enhancing the rigidity of the first movable portion, and an elastic supporting portion elastically interconnecting the first movable portion and the fixed supporting portion. The second movable portion is secured to the first movable portion with a gap interposed therebetween and in such a manner as to cover the elastic supporting portion and the fixed supporting portion. The first movable portion and the second movable portion are elastically supported by the elastic supporting portion in such a manner as to be displaceable together relative to the fixed supporting portion.

    Abstract translation: 微结构包括基板,固定在基板上的固定支撑部分,第一可移动部分,增强第一可动部分的刚性的第二可移动部分和弹性地互连第一可移动部分和固定支撑部分的弹性支撑部分。 第二可移动部分以间隙插入第一可移动部分,并且以覆盖弹性支撑部分和固定支撑部分的方式固定。 第一可动部和第二可动部由弹性支撑部弹性地支撑,以能够相对于固定支撑部一起移位。

    Nanocrystal powered nanomotor
    150.
    发明授权
    Nanocrystal powered nanomotor 有权
    纳米晶纳米电机

    公开(公告)号:US07863798B2

    公开(公告)日:2011-01-04

    申请号:US11229935

    申请日:2005-09-19

    Abstract: A nanoscale nanocrystal which may be used as a reciprocating motor is provided, comprising a substrate having an energy differential across it, e.g. an electrical connection to a voltage source at a proximal end; an atom reservoir on the substrate distal to the electrical connection; a nanoparticle ram on the substrate distal to the atom reservoir; a nanolever contacting the nanoparticle ram and having an electrical connection to a voltage source, whereby a voltage applied between the electrical connections on the substrate and the nanolever causes movement of atoms between the reservoir and the ram. Movement of the ram causes movement of the nanolever relative to the substrate. The substrate and nanolever preferably comprise multiwalled carbon nanotubes (MWNTs) and the atom reservoir and nanoparticle ram are preferably metal (e.g. indium) deposited as small particles on the MWNTs. The substrate may comprise a silicon chip that has been fabricated to provide the necessary electrodes and other electromechanical structures, and further supports an atomic track, which may comprise an MWNT.

    Abstract translation: 提供了可用作往复式电动机的纳米级纳米晶体,其包括具有跨过其的能量差异的衬底。 在近端处与电压源的电连接; 基板远离电连接的原子储存器; 位于原子储存器远端的衬底上的纳米颗粒柱塞; 纳米级接触纳米颗粒柱塞并且具有与电压源的电连接,由此施加在衬底上的电连接和纳米器之间的电压引起原子在储存器和柱塞之间的移动。 柱塞的移动导致纳米级器件相对于衬底的移动。 衬底和纳米棒优选地包括多壁碳纳米管(MWNT),并且原子储存器和纳米颗粒柱塞优选是作为小颗粒沉积在MWNT上的金属(例如铟)。 衬底可以包括硅芯片,其被制造成提供必要的电极和其它机电结构,并且还支持可以包括MWNT的原子轨道。

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