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    • 5. 发明授权
    • Fuel cell mount apparatus and electric power supply system
    • 燃料电池安装装置和电力供应系统
    • US08222840B2
    • 2012-07-17
    • US10537523
    • 2003-12-12
    • Koichi TanakaChiaki KanaiKazutoshi NomotoYasuhiro WatanabeYuichi Takai
    • Koichi TanakaChiaki KanaiKazutoshi NomotoYasuhiro WatanabeYuichi Takai
    • H02P5/00H02P1/54H02P5/46H02P1/00
    • H01M16/006G06F1/26H01M8/04007H01M8/04089H01M8/04119H01M8/04186
    • A fuel cell mount apparatus includes: a fuel cell system including a power generation unit for generating electric power by use of a fuel and air, a hydrogen occlusion cylinder for supplying the fuel to the power generation unit, an air supply means for supplying air to the power generation unit, and a control unit for controlling the power generating operation of the power generation unit; and a dog type robot mounted with the fuel cell system and operated by electric power outputted from the fuel cell, wherein a part of component elements of the fuel cell system and a part of component elements of the dog type robot are used in common with each other, i.e., one of the component elements functions also as the other of the component elements, whereby a component element can be made to function as both a part of an electronic apparatus and a part of the fuel cell, the wastefulness of component elements can be removed, and the fuel cell can be efficiently mounted on various electronic apparatuses.
    • 燃料电池安装装置包括:燃料电池系统,包括利用燃料和空气产生电力的发电单元,用于向发电单元供给燃料的吸氢气缸,供给空气的空气供给装置 发电单元和用于控制发电单元的发电运行的控制单元; 以及安装有燃料电池系统并通过从燃料电池输出的电力进行操作的狗型机器人,其中燃料电池系统的部件元件和狗型机器人的部件的一部分与每个部件共同使用 另一方面,即构成元件中的一个也可以作为其他构成要素而起作用,由此,可以使元件作为电子设备的一部分和燃料电池的一部分发挥作用,构成元件的浪费能够 可以将燃料电池高效地安装在各种电子设备上。
    • 6. 发明申请
    • Fuel cell mounted device, and electric power supply system
    • 燃料电池安装装置和电力供应系统
    • US20060003216A1
    • 2006-01-05
    • US10537523
    • 2003-12-12
    • Koichi TanakaChiaki KanaiKazutoshi NomotoYasuhiro WatanabeYuichi Takai
    • Koichi TanakaChiaki KanaiKazutoshi NomotoYasuhiro WatanabeYuichi Takai
    • H01M8/04H01M16/00
    • H01M16/006G06F1/26H01M8/04007H01M8/04089H01M8/04119H01M8/04186
    • A fuel cell mount apparatus includes: a fuel cell system including a power generation unit for generating electric power by use of a fuel and air, a hydrogen occlusion cylinder for supplying the fuel to the power generation unit, an air supply means for supplying air to the power generation unit, and a control unit for controlling the power generating operation of the power generation unit; and a dog type robot mounted with the fuel cell system and operated by electric power outputted from the fuel cell, wherein a part of component elements of the fuel cell system and a part of component elements of the dog type robot are used in common with each other, i.e., one of the component elements functions also as the other of the component elements, whereby a component element can be made to function as both a part of an electronic apparatus and a part of the fuel cell, the wastefulness of component elements can be removed, and the fuel cell can be efficiently mounted on various electronic apparatuses.
    • 燃料电池安装装置包括:燃料电池系统,包括利用燃料和空气产生电力的发电单元,用于向发电单元供给燃料的吸氢气缸,供给空气的空气供给装置 发电单元和用于控制发电单元的发电运行的控制单元; 以及安装有燃料电池系统并通过从燃料电池输出的电力进行操作的狗型机器人,其中燃料电池系统的部件元件和狗型机器人的部件的一部分与每个部件共同使用 另一方面,即构成元件中的一个也可以作为其他构成要素而起作用,由此,可以使元件作为电子设备的一部分和燃料电池的一部分发挥作用,构成元件的浪费能够 可以将燃料电池高效地安装在各种电子设备上。
    • 7. 发明授权
    • Method for reducing the thickness of an SOI layer
    • 降低SOI层厚度的方法
    • US09064929B2
    • 2015-06-23
    • US12153519
    • 2008-05-20
    • Shoji AkiyamaYoshihiro KubotaAtsuo ItoKoichi TanakaMakoto KawaiYuuji Tobisaka
    • Shoji AkiyamaYoshihiro KubotaAtsuo ItoKoichi TanakaMakoto KawaiYuuji Tobisaka
    • H01L21/762H01L21/3065H01L21/66
    • H01L21/76254H01L21/3065H01L22/12H01L22/20H01L2924/014
    • There is disclosed a method for manufacturing an SOI wafer comprising: a step of implanting at least one of a hydrogen ion and a rare gas ion into a donor wafer to form an ion implanted layer; a step of bonding an ion implanted surface of the donor wafer to a handle wafer; a step of delaminating the donor wafer at the ion implanted layer to reduce a film thickness of the donor wafer, thereby providing an SOI layer; and a step of etching the SOI layer to reduce a thickness of the SOI layer, wherein the etching step includes: a stage of performing rough etching as wet etching; a stage of measuring a film thickness distribution of the SOI layer after the rough etching; and a stage of performing precise etching as dry etching based on the measured film thickness distribution of the SOI layer. There can be provided A method for manufacturing an SOI wafer having high film thickness uniformity of an SOI layer with excellent productivity.
    • 公开了一种用于制造SOI晶片的方法,包括:将氢离子和稀有气体离子中的至少一种注入施主晶片以形成离子注入层的步骤; 将施主晶片的离子注入表面接合到处理晶片的步骤; 在离子注入层分层施主晶片以降低施主晶片的膜厚,从而提供SOI层的步骤; 以及蚀刻所述SOI层以减小所述SOI层的厚度的步骤,其中所述蚀刻步骤包括:执行粗蚀刻的阶段,如湿蚀刻; 在粗蚀刻之后测量SOI层的膜厚分布的阶段; 以及基于所测量的SOI层的膜厚分布,进行干蚀刻的精确蚀刻的阶段。 可以提供一种以优异的生产率制造具有SOI层的高膜厚均匀性的SOI晶片的方法。