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    • 1. 发明授权
    • Method of manufacturing image-forming apparatus
    • 图像形成装置的制造方法
    • US06781667B2
    • 2004-08-24
    • US10078456
    • 2002-02-21
    • Takahiro HoriguchiHironobu MizunoTakashi IwakiMasaaki ShibataKazuya Miyazaki
    • Takahiro HoriguchiHironobu MizunoTakashi IwakiMasaaki ShibataKazuya Miyazaki
    • G02F113
    • H01J9/027H01J9/241H01J31/127
    • This invention provides an image-forming apparatus manufacturing method capable of simplifying the electron-emitting device forming process and manufacturing a low-cost image-forming apparatus exhibiting high display quality for a long term. A plurality of electrode pairs each formed from electrodes are formed on a first substrate. Polymer films for connecting the electrodes are arranged. Then, the polymer films are irradiated with a laser beam or particle beam to reduce the resistances at least partially and change the polymer films into conductive films containing carbon as a main component. A current is flowed between the electrodes to form gaps in parts of the conductive films. The first substrate, and the second substrate on which an image-forming member is arranged are joined via bonding in a reduced-pressure atmosphere, constituting an image-forming apparatus.
    • 本发明提供了能够简化电子发射器件形成工艺并制造长期显示出高显示质量的低成本成像设备的图像形成装置制造方法。 在第一基板上形成由电极形成的多个电极对。 布置用于连接电极的聚合物膜。 然后,用激光束或粒子束照射聚合物膜,以至少部分地降低电阻,并将聚合物膜改变为含有碳作为主要成分的导电膜。 电流在电极之间流动,以在导电膜的一部分中形成间隙。 第一基板和其上配置有图像形成部件的第二基板通过在构成图像形成装置的减压气氛中的接合而接合。
    • 6. 发明授权
    • Wind turbine generator
    • 风力发电机组
    • US08082748B2
    • 2011-12-27
    • US12450327
    • 2009-07-08
    • Takeshi MatsuoShinji ArinagaSadamu TakahashiTakatoshi MatsushitaMasaaki Shibata
    • Takeshi MatsuoShinji ArinagaSadamu TakahashiTakatoshi MatsushitaMasaaki Shibata
    • F25B27/00
    • F03D80/80F03D9/25F03D9/28F03D80/60F03D80/88Y02E10/726
    • A wind turbine generator capable of preventing a salt damage and reducing noise as well as easily starting in a cold region is provided. The wind turbine generator includes a nacelle (3) for accommodating a generator set, an internal heat exchanging unit (13, 15, 16) accommodated in the nacelle (3) to exchange heat between the generator set and a refrigerant, an external heat exchanging unit (17) disposed outside the nacelle (3) to exchange heat between an outside air and the refrigerant, a compressor (18) disposed in the nacelle (3) to compress the refrigerant and circulate the refrigerant between the internal heat exchanging unit (13, 15, 16) and the external heat exchanging unit (17), and an expansion unit (19) to expand the refrigerant compressed by the compressor (18).
    • 提供一种能够防止盐损害和降低噪音以及容易地在寒冷地区起动的风力涡轮发电机。 风力涡轮发电机包括容纳发电机组的机舱(3),容纳在机舱(3)中的用于在发电机组和制冷剂之间交换热量的内部热交换单元(13,15,16),外部热交换 设置在所述机舱(3)外部以在外部空气和所述制冷剂之间进行热交换的单元(17),设置在所述机舱(3)中的压缩机(18),以压缩所述制冷剂并使所述制冷剂在所述内部热交换单元 ,15,16)和外部热交换单元(17),以及膨胀单元(19),用于使由压缩机(18)压缩的制冷剂膨胀。
    • 7. 发明授权
    • Fuel cell apparatus having fuel cell stack and controller, and method of manufacturing same
    • 具有燃料电池堆和控制器的燃料电池装置及其制造方法
    • US07816046B2
    • 2010-10-19
    • US11300349
    • 2005-12-15
    • Satoshi MogiMasaaki Shibata
    • Satoshi MogiMasaaki Shibata
    • H01M8/04H01M2/38
    • H01M8/04H01M8/0258H01M8/1011H01M8/2415H01M8/242H01M8/2475H01M2250/30Y02B90/18Y02E60/523Y02P70/56
    • A fuel cell apparatus includes a fuel cell stack of a plurality of fuel cells electrically connected in series with each other and a controller configured to control the fuel cell stack by using a part of electric power generated by the fuel cell stack. The controller is electrically connected in parallel with at least one of the fuel cells constituting the fuel cell stack, and short-circuit current of the at least one of the fuel cells is larger than that of at least one of the fuel cells constituting the fuel cell stack and not being electrically connected in parallel with the control means. With such a structure, a large electromotive force can be obtained by connecting the fuel cells in series and, simultaneously, the power generation characteristics of each fuel cell can be sufficiently utilized. Thus, the fuel cell apparatus having high power generation density can be provided.
    • 燃料电池装置包括彼此串联地电连接的多个燃料电池的燃料电池堆,以及控制器,其被配置为通过使用由燃料电池堆产生的一部分电力来控制燃料电池堆。 控制器与构成燃料电池堆的至少一个燃料电池并联电连接,并且至少一个燃料电池的短路电流大于构成燃料的至少一个燃料电池的短路电流 电池组并且不与控制装置并联电连接。 通过这样的结构,能够通过串联连接燃料电池来获得大的电动势,能够充分利用各燃料电池的发电特性。 因此,能够提供发电密度高的燃料电池装置。
    • 9. 发明授权
    • Blade-pitch-angle control device and wind power generator
    • 叶片桨距角控制装置和风力发电机
    • US07452185B2
    • 2008-11-18
    • US10567971
    • 2004-09-09
    • Kazunari IdeYoshiyuki HayashiMasaaki Shibata
    • Kazunari IdeYoshiyuki HayashiMasaaki Shibata
    • F03D7/04
    • F03D7/043F03D7/0224F03D7/024F05B2270/32F05B2270/326F05B2270/331F05B2270/335Y02E10/723
    • A blade-pitch-angle control device includes a memory unit in which predetermined parameters that affect the load fluctuation of blades, azimuth angles, and pitch-angle command values are stored in association with each other; an azimuth-angle detecting unit that detects the azimuth angle of each of the blades; a parameter-detecting unit that detects the predetermined parameters; a command-value receiving unit that receives pitch-angle command values for each of the blades from the memory unit, the pitch-angle command values being selected on the basis of the azimuth angle of each blade detected by the azimuth-angle detecting unit and the predetermined parameters detected by the parameter-detecting unit; and a pitch-angle-control command-value generating unit that generates pitch-angle-control command values for individually controlling the pitch-angle of each blade on the basis of the pitch-angle command values and a common-pitch-angle command value.
    • 叶片桨距角控制装置包括存储单元,其中影响叶片的负载波动的预定参数,方位角和俯仰角指令值彼此相关联地存储; 方位角检测单元,其检测各叶片的方位角; 检测预定参数的参数检测单元; 命令值接收单元,从存储单元接收每个叶片的俯仰角指令值,基于由方位角检测单元检测的每个叶片的方位角选择俯仰角指令值,以及 由参数检测单元检测的预定参数; 以及俯仰角控制指令值生成单元,其基于俯仰角指令值和公共俯仰角指令值,生成用于单独控制各叶片的俯仰角的俯仰角控制指令值 。