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    • 62. 发明授权
    • Printing method and transport member
    • 印刷方式和运输成员
    • US08888268B2
    • 2014-11-18
    • US13588714
    • 2012-08-17
    • Satoshi AokiYoshifumi Watanabe
    • Satoshi AokiYoshifumi Watanabe
    • B41J2/015B41M5/00B41J2/21C09D11/36B41J11/00
    • B41M5/00B41J2/2107B41J11/007C09D11/36
    • A printing method is provided, wherein the printing method including: printing an ink, having a total surface free energy γ calculated from the Kaelble-Uy theoretical formula of 25 to 30 mN/m, and a dispersive component ratio γdr represented by a formula (1) shown below of 0.55 to 0.75, onto a recording medium, and transporting the recording medium using a transport member that opposes at least a printed surface of the printed recording medium, wherein the transport member has a total surface free energy γ calculated from the Kaelble-Uy theoretical formula of 20 mN/m or less, and a dispersive component ratio γdr represented by the formula (1) shown below of 0.75 to 1.00: γdr=γd/γ (1), wherein γdr represents the dispersive component ratio, γd represents a surface free energy of as dispersive component, and γ represents the total surface free energy.
    • 提供了一种打印方法,其中打印方法包括:印刷具有由Kaelble-Uy理论公式计算的总表面自由能γ为25至30mN / m的油墨和由式( 1)表示为0.55〜0.75的记录介质,并使用与打印记录介质的至少印刷面相对的传送部件输送记录介质,其中,传送部件具有从 Kaelble-Uy理论公式为20mN / m以下,下述式(1)表示的色散分量比γdr为0.75〜1.00:γdr=γd/γ(1),其中,γdr表示色散成分比, γd表示作为分散组分的表面自由能,γ表示总表面自由能。
    • 66. 发明申请
    • Information processing apparatus, linked scenario preparation method for information processing apparatus, program, and storage medium
    • 信息处理装置,信息处理装置,程序和存储介质的链接情景准备方法
    • US20120030329A1
    • 2012-02-02
    • US13067906
    • 2011-07-06
    • Satoshi AokiHiroki Ohzaki
    • Satoshi AokiHiroki Ohzaki
    • G06F15/173
    • H04N1/00347H04N1/00949H04N1/0097H04N1/32502H04N1/32523H04N1/344H04N2201/001H04N2201/0039H04N2201/0094
    • An information processing apparatus connectable to other information processing apparatuses useable as link partner apparatuses via a network can prepare a linked scenario. The linked scenario is preparable by linking a plurality of discrete services providable by the information processing apparatus and the link partner apparatuses. The information processing apparatus includes a processor to conduct the steps of: storing link information arranging each of the discrete services providable by the information processing apparatus and the link partner apparatuses from high to low linking closeness trend; preparing a plurality of path patterns for the linked scenario by linking a plurality of discrete services based on the link information, in which the path patterns are prepared to satisfy an inputting format and an outputting format designated for the linked scenario; displaying the plurality of path patterns prepared for the linked scenario; and registering a primary linked scenario by selecting one path.
    • 可以通过网络连接到可用作链路对方装置的其他信息处理装置的信息处理装置可以准备链接的情况。 链接的场景可以通过链接由信息处理设备和链接伙伴设备提供的多个离散服务来实现。 信息处理装置包括处理器,用于执行以下步骤:存储布置由信息处理设备和链接伙伴设备提供的每个离散服务的链接信息从高到低的链接接近趋势; 通过基于所述链接信息链接多个离散服务来准备所述链接情景的多个路径模式,其中所述路径模式准备满足输入格式和为所链接的场景指定的输出格式; 显示为所链接的情景准备的多个路径模式; 并通过选择一个路径来注册主要链接的场景。
    • 67. 发明申请
    • COMPOUND THIN-FILM SOLAR CELL AND PROCESS FOR PRODUCING THE SAME
    • 化合物薄膜太阳能电池及其制造方法
    • US20110203646A1
    • 2011-08-25
    • US13103659
    • 2011-05-09
    • Satoshi Aoki
    • Satoshi Aoki
    • H01L31/0264
    • H01L31/032H01L31/0749H01L31/18Y02E10/541Y02P70/521
    • A method of fabricating a thin-film compound solar cell having an n-type buffer layer formed therein for providing a heterojunction with a p-type compound semiconductor light absorbing layer formed on a back electrode by applying a chemical bath deposition (CBD) process using an aqueous solution for dipping the light absorbing layer to deposit particles on the surface thereof. In this process, the temperature of the solution is controlled from low to high to increase sizes of the particles to be deposited on the light absorbing layer so as to form the buffer layer which possesses a high optical transmittance, tight adherence to the light absorbing layer and conformity with the transparent electrode formed thereon even if it would be made of InS material generally possessing a small bandgap and hard to pass light of short wavelengths.
    • 一种制造其中形成有n型缓冲层的薄膜化合物太阳能电池的方法,用于通过使用化学浴沉积(CBD)方法使用形成在背面电极上的p型化合物半导体光吸收层来提供异质结,该方法使用 用于浸渍光吸收层以在其表面上沉积颗粒的水溶液。 在该过程中,溶液的温度从低到高控制以增加沉积在光吸收层上的颗粒的尺寸,从而形成具有高透光率的缓冲层,对光吸收层的紧密附着 并且与其上形成的透明电极一致,即使其由通常具有小带隙并且难以通过短波长的光的InS材料制成。
    • 70. 发明授权
    • Data processing device designing method, data processing device designing apparatus, program and computer readable information recording medium
    • 数据处理装置设计方法,数据处理装置设计装置,程序和计算机可读信息记录介质
    • US07447617B2
    • 2008-11-04
    • US11018964
    • 2004-12-22
    • Masaoki SatohTakeshi ToyoyamaSatoshi Aoki
    • Masaoki SatohTakeshi ToyoyamaSatoshi Aoki
    • G06F17/50
    • G06F17/5045G06F17/5022
    • A method includes steps of calculating, for each predetermined operation included in a program, an execution time required when the operation is executed by a predetermined processor, or calculating, for each predetermined operation included in the program, a circuit size required when the operation is realized in a form of hardware according to a predetermined technology; and calculating, for the entirety of the predetermined program or operations corresponding to a part the entirety of the predetermined program, a total execution time required when the entirety of the predetermined program is executed by the predetermined processor, as a result of applying in sequence the required execution time, or calculating, for the entirety of the predetermined program or operations corresponding to a part the entirety of the predetermined program, a total circuit size required when the entirety of the predetermined program or programs corresponding to a part of the entirety of the predetermined program, as a result of applying in sequence the required circuit size.
    • 一种方法包括以下步骤:对于包括在程序中的每个预定操作,计算当由预定处理器执行操作所需的执行时间,或者对于包括在程序中的每个预定操作,计算操作所需的电路大小 根据预定技术以硬件形式实现; 并且对于与预定程序的整体的一部分相对应的预定程序或操作的整体,计算由预定处理器执行预定程序的整体所需的总执行时间,作为依次应用的结果 所需的执行时间或计算对应于预定程序的整体的一部分的预定程序或操作的整体,当整个预定程序或程序的整体的一部分相对应时,所需的总电路大小 作为依次应用所需电路尺寸的结果的预定程序。