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公开(公告)号:US20090061283A1
公开(公告)日:2009-03-05
申请号:US12236151
申请日:2008-09-23
Applicant: Kensuke YOSHIDA , Hiroaki YOSHIDA , Fumio TAKEI , Akio YANO , Yoichi TAKASU
Inventor: Kensuke YOSHIDA , Hiroaki YOSHIDA , Fumio TAKEI , Akio YANO , Yoichi TAKASU
IPC: H01M2/14
CPC classification number: H01M8/04208 , H01M8/1009
Abstract: A cartridge for fuel cell for supplying a fuel to a fuel cell, the cartridge for fuel cell including: a cartridge case 32 having a plurality of holes 34 formed at least in one side 32a; a fuel vaporization stabilization layer 38 formed on the side with said plurality of holes 34 formed in inside the cartridge case 32; and a fuel impregnation material 36 sealed inside the cartridge case 32.
Abstract translation: 一种用于向燃料电池供应燃料的燃料电池盒,所述燃料电池盒包括:具有形成在至少一个侧面32a中的多个孔34的盒壳体32; 形成在形成在盒壳体32内部的所述多个孔34的一侧的燃料蒸发稳定层38; 以及密封在盒壳体32内的燃料浸渍材料36。
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公开(公告)号:US20050226550A1
公开(公告)日:2005-10-13
申请号:US11144607
申请日:2005-06-06
Applicant: Hideyuki Miyata , Hiroshi Onaka , Tadao Nakazawa , Yutaka Kai , Hiroshi Miyata , Yoichi Takasu , Naoki Hashimuto
Inventor: Hideyuki Miyata , Hiroshi Onaka , Tadao Nakazawa , Yutaka Kai , Hiroshi Miyata , Yoichi Takasu , Naoki Hashimuto
IPC: G02B6/30 , G02B5/30 , G02B6/12 , G02B6/122 , G02F1/01 , G02F1/11 , G02F1/125 , G02F1/31 , H04J14/02 , G02B6/26
CPC classification number: H04J14/0221 , G02F1/0121 , G02F2203/585 , H04B10/0795 , H04B10/07953 , H04B10/0797
Abstract: The present invention aims at providing a control method and a control apparatus for controlling the operation setting of an optical device with high accuracy, so as to reliably obtain characteristics according to a desired relationship to be set corresponding to a signal light, immediately after the control start. To this end, the control apparatus of the present invention comprises an optical coupler that branches a part of a main signal light input to the optical device, a monitoring optical device that operates in accordance with a control parameter same as for the optical device, and processes the monitor light branched by the optical coupler, a light receiver that receives the monitor light processed by the monitoring optical device, a detecting circuit that detects a relationship between the monitor light received by the light receiver, and the wavelength or optical power of the signal light, and a controlling circuit that adjust the control parameter for the optical device to control the operation setting, based on the relationship detected by the detecting circuit, so that characteristics of the optical device become capable of realizing the relationship to be set corresponding to the signal light.
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公开(公告)号:US07362925B2
公开(公告)日:2008-04-22
申请号:US11144607
申请日:2005-06-06
Applicant: Hideyuki Miyata , Hiroshi Onaka , Tadao Nakazawa , Yutaka Kai , Hiroshi Miyata , Yoichi Takasu , Naoki Hashimoto
Inventor: Hideyuki Miyata , Hiroshi Onaka , Tadao Nakazawa , Yutaka Kai , Hiroshi Miyata , Yoichi Takasu , Naoki Hashimoto
IPC: G02F1/1335
CPC classification number: H04J14/0221 , G02F1/0121 , G02F2203/585 , H04B10/0795 , H04B10/07953 , H04B10/0797
Abstract: The present invention aims at providing a control method and a control apparatus for controlling the operation setting of an optical device with high accuracy, so as to reliably obtain characteristics according to a desired relationship to be set corresponding to a signal light, immediately after the control start. To this end, the control apparatus of the present invention comprises an optical coupler that branches a part of a main signal light input to the optical device, a monitoring optical device that operates in accordance with a control parameter same as for the optical device, and processes the monitor light branched by the optical coupler, a light receiver that receives the monitor light processed by the monitoring optical device, a detecting circuit that detects a relationship between the monitor light received by the light receiver, and the wavelength or optical power of the signal light, and a controlling circuit that adjust the control parameter for the optical device to control the operation setting, based on the relationship detected by the detecting circuit, so that characteristics of the optical device become capable of realizing the relationship to be set corresponding to the signal light.
Abstract translation: 本发明旨在提供一种用于高精度地控制光学装置的操作设置的控制方法和控制装置,以便在控制之后立即根据与信号光对应的期望关系可靠地获得特性 开始。 为此,本发明的控制装置包括将输入到光学装置的主信号光的一部分分支的光耦合器,根据与光学装置相同的控制参数进行操作的监视光学装置,以及 处理由光耦合器分支的监视光,接收由监视光学装置处理的监视光的光接收器,检测由光接收器接收的监视光之间的关系的检测电路以及光接收器的波长或光功率 信号灯,以及控制电路,其根据由检测电路检测到的关系调整光学装置的控制参数以控制操作设置,使得光学装置的特性变得能够实现与 信号灯。
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公开(公告)号:US20070099048A1
公开(公告)日:2007-05-03
申请号:US11344008
申请日:2006-02-01
Applicant: Yoichi Takasu , Fumio Takei , Masami Tsutsumi , Hiroaki Yoshida , Kensuke Yoshida , Seiji Hibino , Makoto Yoshino , Takeo Kasajima , Shinichi Ueki , Takeshi Miyazaki , Osamu Terabayashi
Inventor: Yoichi Takasu , Fumio Takei , Masami Tsutsumi , Hiroaki Yoshida , Kensuke Yoshida , Seiji Hibino , Makoto Yoshino , Takeo Kasajima , Shinichi Ueki , Takeshi Miyazaki , Osamu Terabayashi
CPC classification number: H01M8/1011 , H01M8/04186 , H01M8/04201 , H01M8/2455 , Y02E60/523
Abstract: A fuel cell includes an electric power generation part; the electric power generation part including an air electrode to which oxygen gas is supplied, a fuel electrode to which fuel gas is supplied, and a solid electrolyte layer having a proton conductivity and put between the air electrode and fuel electrode; a fuel storage part storing a liquid fuel; a liquid fuel vaporization film made of non-porous material and configured to vaporize the liquid fuel so as to supply fuel gas to the fuel electrode; and a gas fuel supply speed control plate provided between the liquid fuel vaporization film and the fuel electrode and configured to control a supply speed of the fuel gas to the fuel electrode. The gas fuel supply speed control plate includes a plurality of openings piercing between the liquid fuel vaporization film and the fuel electrode.
Abstract translation: 燃料电池包括发电部分; 所述发电部包括供给氧气的空气电极,供给燃料气体的燃料电极和具有质子传导性的固体电解质层,放置在所述空气极和燃料电极之间; 存储液体燃料的燃料储存部; 由无孔材料制成的液体燃料汽化膜,其构造为使液体燃料蒸发,以向燃料电极供应燃料气体; 以及气体燃料供给速度控制板,其设置在所述液体燃料蒸发膜和所述燃料电极之间,并且被构造成控制所述燃料电极的燃料气体的供给速度。 气体燃料供给速度控制板包括在液体燃料蒸发膜和燃料电极之间穿透的多个开口。
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公开(公告)号:US20060275639A1
公开(公告)日:2006-12-07
申请号:US11503986
申请日:2006-08-15
Applicant: Seiji Hibino , Masami Tsutsumi , Kensuke Yoshida , Hiroaki Yoshida , Yoichi Takasu , Nawalage Cooray , Fumio Takei
Inventor: Seiji Hibino , Masami Tsutsumi , Kensuke Yoshida , Hiroaki Yoshida , Yoichi Takasu , Nawalage Cooray , Fumio Takei
CPC classification number: H01B1/122 , H01M4/921 , H01M4/926 , H01M8/0208 , H01M8/0234 , H01M8/0289 , H01M8/1023 , H01M8/1025 , H01M8/1027 , H01M8/103 , H01M8/1032 , H01M8/1039 , H01M8/1067
Abstract: In the present invention, a material having a structure represented by formula (1) or (2) (wherein W equals N or C) is used as a solid electrolyte for a fuel cell. An electrolyte membrane having a small fuel crossover and a fuel cell having excellent ion conductivity and service capacity are obtained.
Abstract translation: 在本发明中,作为燃料电池的固体电解质,使用具有式(1)或(2)所示结构(其中W为N或C)的材料。 获得具有小的燃料分流器的电解质膜和具有优异的离子传导性和使用能力的燃料电池。
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公开(公告)号:US06934433B2
公开(公告)日:2005-08-23
申请号:US10106315
申请日:2002-03-27
Applicant: Hideyuki Miyata , Hiroshi Onaka , Tadao Nakazawa , Yutaka Kai , Hiroshi Miyata , Yoichi Takasu , Naoki Hashimoto
Inventor: Hideyuki Miyata , Hiroshi Onaka , Tadao Nakazawa , Yutaka Kai , Hiroshi Miyata , Yoichi Takasu , Naoki Hashimoto
IPC: G02B6/30 , G02B5/30 , G02B6/12 , G02B6/122 , G02F1/01 , G02F1/11 , G02F1/125 , G02F1/31 , H04J14/02 , G02B6/26
CPC classification number: H04J14/0221 , G02F1/0121 , G02F2203/585 , H04B10/0795 , H04B10/07953 , H04B10/0797
Abstract: The present invention aims at providing a control method and a control apparatus for controlling the operation setting of an optical device with high accuracy, so as to reliably obtain characteristics according to a desired relationship to be set corresponding to a signal light, immediately after the control start. To this end, the control apparatus of the present invention comprises an optical coupler that branches a part of a main signal light input to the optical device, a monitoring optical device that operates in accordance with a control parameter same as for the optical device, and processes the monitor light branched by the optical coupler, a light receiver that receives the monitor light processed by the monitoring optical device, a detecting circuit that detects a relationship between the monitor light received by the light receiver, and the wavelength or optical power of the signal light, and a controlling circuit that adjust the control parameter for the optical device to control the operation setting, based on the relationship detected by the detecting circuit, so that characteristics of the optical device become capable of realizing the relationship to be set corresponding to the signal light.
Abstract translation: 本发明旨在提供一种用于高精度地控制光学装置的操作设置的控制方法和控制装置,以便在控制之后立即根据与信号光对应的期望关系可靠地获得特性 开始。 为此,本发明的控制装置包括将输入到光学装置的主信号光的一部分分支的光耦合器,根据与光学装置相同的控制参数进行操作的监视光学装置,以及 处理由光耦合器分支的监视光,接收由监视光学装置处理的监视光的光接收器,检测由光接收器接收的监视光之间的关系的检测电路以及光接收器的波长或光功率 信号灯,以及控制电路,其根据由检测电路检测到的关系调整光学装置的控制参数以控制操作设置,使得光学装置的特性变得能够实现与 信号灯。
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公开(公告)号:US07927756B2
公开(公告)日:2011-04-19
申请号:US11503986
申请日:2006-08-15
Applicant: Seiji Hibino , Masami Tsutsumi , Kensuke Yoshida , Hiroaki Yoshida , Yoichi Takasu , Nawalage Florence Cooray , Fumio Takei
Inventor: Seiji Hibino , Masami Tsutsumi , Kensuke Yoshida , Hiroaki Yoshida , Yoichi Takasu , Nawalage Florence Cooray , Fumio Takei
IPC: H01M8/10
CPC classification number: H01B1/122 , H01M4/921 , H01M4/926 , H01M8/0208 , H01M8/0234 , H01M8/0289 , H01M8/1023 , H01M8/1025 , H01M8/1027 , H01M8/103 , H01M8/1032 , H01M8/1039 , H01M8/1067
Abstract: In the present invention, a material having a structure represented by formula (1) or (2) (wherein W equals N or C) is used as a solid electrolyte for a fuel cell. An electrolyte membrane having a small fuel crossover and a fuel cell having excellent ion conductivity and service capacity are obtained.
Abstract translation: 在本发明中,作为燃料电池的固体电解质,使用具有式(1)或(2)所示结构(其中W为N或C)的材料。 获得具有小的燃料分流器的电解质膜和具有优异的离子传导性和使用能力的燃料电池。
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