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    • 1. 发明授权
    • Photovoltaic module
    • 光伏组件
    • US08063301B2
    • 2011-11-22
    • US11392865
    • 2006-03-30
    • Masaru HikosakaHiroyuki OdaShingo Okamoto
    • Masaru HikosakaHiroyuki OdaShingo Okamoto
    • H02N6/00
    • H02S40/34H02S20/00H02S30/10Y02E10/50
    • A photovoltaic module which prevents enlargement of the dimensions of a photovoltaic submodule by reducing ineffective parts which do not contribute to power generation. The photovoltaic module includes a photovoltaic submodule including a plurality of solar cells interposed between two light-transmitting substrates through the intermediary of an encapsulant, and a connecting lead extending from an edge between the two light-transmitting substrates for outputting generated electric current, a terminal box 30 attached near to the edge of the photovoltaic submodule housing a connecting part between the connecting lead and a cable for outputting generated electric current to the outside, and an outer frame set around the outer circumference of the photovoltaic submodule. An opening 28 through which the connecting lead and the terminal box are inserted is provided to the outer frame at a position which receives at least the terminal box.
    • 一种光伏模块,其通过减少无助于发电的无效部件来防止光伏子模块的尺寸的扩大。 光伏模块包括光电子模块,其包括通过密封剂介于两个透光衬底之间的多个太阳能电池,以及从两个透光衬底之间的边缘延伸的连接引线,用于输出产生的电流,端子 附接在光伏子模块边缘附近的盒30容纳连接引线和用于向外部输出产生的电流的电缆之间的连接部分,以及围绕光伏子模块的外周设置的外框架。 连接引线和接线盒插入的开口28在接收至少接线盒的位置处设置到外框架。
    • 3. 发明申请
    • Photovoltaic module
    • 光伏组件
    • US20070056625A1
    • 2007-03-15
    • US11519233
    • 2006-09-12
    • Minoru HiguchiMasaru HikosakaAtsushi NakauchiHiroyuki OdaShingo Okamoto
    • Minoru HiguchiMasaru HikosakaAtsushi NakauchiHiroyuki OdaShingo Okamoto
    • H02N6/00
    • B32B17/10036B32B17/10091B32B17/10788B32B17/10871F24S25/20H01L31/02013H01L31/048H02S30/10H02S40/34Y02E10/47Y02E10/50
    • This invention provides a photovoltaic module for preventing insulation failure between an outer frame and connection leads. The photovoltaic module comprises: a photovoltaic submodule including a plurality of solar cells interposed between two light-transmitting substrates through the intermediary of an encapsulant and the connection leads extending from an edge between light-transmitting substrates and outputting generated electric currents; a terminal box attached near an edge of the photovoltaic submodule and housing connected parts between the connection leads and cables for outputting the electric currents to the outside; and an outer frame fitting over peripheral edges of the photovoltaic submodule. A side, of the light-receiving side light-transmitting substrate, from which the connection leads are pulled out, is made large so as to extend outward further than the other light-transmitting substrate. The connection leads are led out from the edge between the two light-transmitting substrates to be guided into the terminal box.
    • 本发明提供一种用于防止外框与连接引线之间的绝缘故障的光伏组件。 光伏模块包括:光电子模块,其包括通过密封剂介于两个透光衬底之间的多个太阳能电池,以及从透光衬底之间的边缘延伸并输出产生的电流的连接引线; 附接在光伏子模块的边缘附近的接线盒,并且在连接引线和电缆之间容纳连接部分,用于将电流输出到外部; 以及外框架,其装配在光伏子模块的外围边缘上。 连接引线被拉出的光接收侧透光基板的一侧被制成较大,以比另一个透光基板更向外延伸。 连接引线从两个透光基板之间的边缘引出,以被引导到接线盒中。
    • 4. 发明申请
    • PHOTOVOLTAIC MODULE
    • 光伏模块
    • US20110192449A1
    • 2011-08-11
    • US13090719
    • 2011-04-20
    • Minoru HiguchiMasaru HikosakaAtsushi NakauchiHiroyuki OdaShingo Okamoto
    • Minoru HiguchiMasaru HikosakaAtsushi NakauchiHiroyuki OdaShingo Okamoto
    • H01L31/048
    • B32B17/10036B32B17/10091B32B17/10788B32B17/10871F24S25/20H01L31/02013H01L31/048H02S30/10H02S40/34Y02E10/47Y02E10/50
    • This invention provides a photovoltaic module for preventing insulation failure between an outer frame and connection leads. The photovoltaic module comprises: a photovoltaic submodule including a plurality of solar cells interposed between two light-transmitting substrates through the intermediary of an encapsulant and the connection leads extending from an edge between light-transmitting substrates and outputting generated electric currents; a terminal box attached near an edge of the photovoltaic submodule and housing connected parts between the connection leads and cables for outputting the electric currents to the outside; and an outer frame fitting over peripheral edges of the photovoltaic submodule. A side, of the light-receiving side light-transmitting substrate, from which the connection leads are pulled out, is made large so as to extend outward further than the other light-transmitting substrate. The connection leads are led out from the edge between the two light-transmitting substrates to be guided into the terminal box.
    • 本发明提供一种用于防止外框与连接引线之间的绝缘故障的光伏组件。 光伏模块包括:光电子模块,其包括通过密封剂介于两个透光衬底之间的多个太阳能电池,以及从透光衬底之间的边缘延伸并输出产生的电流的连接引线; 附接在光伏子模块的边缘附近的接线盒,并且在连接引线和电缆之间容纳连接部分,用于将电流输出到外部; 以及外框架,其装配在光伏子模块的外围边缘上。 连接引线被拉出的光接收侧透光基板的一侧被制成较大,以比另一个透光基板更向外延伸。 连接引线从两个透光基板之间的边缘引出,以被引导到接线盒中。
    • 5. 发明申请
    • Photovoltaic module
    • 光伏组件
    • US20060219291A1
    • 2006-10-05
    • US11392865
    • 2006-03-30
    • Masaru HikosakaHiroyuki OdaShingo Okamoto
    • Masaru HikosakaHiroyuki OdaShingo Okamoto
    • H02N6/00
    • H02S40/34H02S20/00H02S30/10Y02E10/50
    • The present invention provides a photovoltaic module which prevents enlargement of the dimensions of a photovoltaic submodule by reducing ineffective parts which do not contribute to power generation. The photovoltaic module comprises a photovoltaic submodule including a plurality of solar cells interposed between two light-transmitting substrates through the intermediary of an encapsulant, and a connecting lead extending from an edge between the two light-transmitting substrates for outputting generated electric current, a terminal box 30 attached near to the edge of the photovoltaic submodule housing a connecting part between the connecting lead and a cable for outputting generated electric current to the outside, and an outer frame set around the outer circumference of the photovoltaic submodule. An opening 28 through which the connecting lead and the terminal box are inserted is provided to the outer frame at a position which receives at least the terminal box.
    • 本发明提供一种光伏模块,其通过减少对发电无贡献的无效部件来防止光伏子模块的尺寸的扩大。 光伏模块包括光电子模块,其包括通过密封剂介于两个透光衬底之间的多个太阳能电池,以及从两个透光衬底之间的边缘延伸的连接引线,用于输出产生的电流;端子 附接在光伏子模块边缘附近的盒30容纳连接引线和用于向外部输出产生的电流的电缆之间的连接部分,以及围绕光伏子模块的外周设置的外框架。 连接引线和接线盒插入的开口28在接收至少接线盒的位置处设置到外框架。
    • 6. 发明授权
    • Automated heat treatment system for engine valve
    • 发动机气门自动热处理系统
    • US09086239B2
    • 2015-07-21
    • US14356017
    • 2012-01-17
    • Yorikazu MurataYuji OkamuraYosuke MakinoHiroyuki Oda
    • Yorikazu MurataYuji OkamuraYosuke MakinoHiroyuki Oda
    • F27B9/14F27B9/00C21D9/00
    • F27B9/00B21K1/22B65G25/02C21D1/00C21D9/0018C21D9/0056C21D9/0068F27B9/20F27B9/30F27D3/0024
    • An inventive automated heat treatment system has a furnace for heat treating forged engine valves, a carry-in mechanism for transporting the forged valves into the furnace, and a carry-out mechanism for transporting heat treated valves out of the furnace. Each of the carry-in mechanism and the carry-out mechanism has a retention mechanism for retaining valves hung, and a transport mechanism for transporting valves to the furnace as they are hung. The furnace has heating means, groups of paired rails for supporting and moving the valves hung in the furnace, and a stopper for controlling the positions of the valves on the rails. The engine valves are maintained hung with their umbrella-shaped portions supported by the respective mechanisms throughout the automated heat treatment processes. Thus, the heat treatment of engine valves is done in a fewer steps than in a conventional system.
    • 本发明的自动热处理系统具有用于热处理锻造发动机阀的炉,用于将锻造阀输送到炉中的携带机构,以及用于将热处理的阀输送出炉的进出机构。 每个输入机构和执行机构具有用于保持阀悬挂的保持机构,以及用于在将阀悬挂时将阀输送到炉中的输送机构。 炉具有加热装置,用于支撑和移动悬挂在炉中的阀的成对轨道组,以及用于控制在轨道上的阀位置的止动器。 发动机阀门在整个自动化热处理过程中保持悬挂在其各自机构支撑的伞形部分上。 因此,发动机气门的热处理以比传统系统更少的步骤完成。
    • 10. 发明授权
    • Silicon manufacturing apparatus
    • 硅制造装置
    • US07993455B2
    • 2011-08-09
    • US10569149
    • 2004-08-17
    • Junichirou NakashimaHiroyuki Oda
    • Junichirou NakashimaHiroyuki Oda
    • C30B21/02
    • C01B33/027B01J19/02B01J2219/0218B01J2219/0227B01J2219/0272C01B33/029C01B33/03C30B11/003C30B29/06Y10T117/10Y10T117/1004
    • A polycrystalline silicon production apparatus is provided whereby when deposited silicon is caused to drip down into an underlying collection part by heating the reaction tube inner surface at a temperature equal to or above the melting point of silicon, the silicon melt can be prevented from solidifying at a lower end portion of the reaction tube due to temperature lowering at the lower end portion. When a reaction tube is heated with a high frequency heating coil, the temperature lowering at a lower end portion of the reaction tube is prevented through temperature lowering prevention means which may be an infrared device capable of heating the outer periphery of the lower end portion by means of infrared rays, or which may be a lower end coil that is constituted by a coil near the lower end of the high frequency heating coil and has an increased heating intensity relative to an upper coil.
    • 提供一种多晶硅制造装置,通过在硅的熔点以上的温度下加热反应管内表面,使沉积的硅滴入下面的收集部分时,可以防止硅熔体固化 由于下端部的温度降低,反应管的下端部。 当用高频加热线圈加热反应管时,通过防止降温装置防止反应管的下端部的温度降低,该装置可以是可以通过下述方式加热下端部的外周的红外线装置 红外线的手段,也可以是由高频加热线圈的下端附近的线圈构成的下端线圈,相对于上线圈具有增加的加热强度。