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    • 3. 发明授权
    • Power controller
    • 电源控制器
    • US09343926B2
    • 2016-05-17
    • US13995582
    • 2011-12-28
    • Akira BabaKiyotaka TakeharaTakeshi Ogawa
    • Akira BabaKiyotaka TakeharaTakeshi Ogawa
    • H02J1/00H02J9/06H02J7/34H02J3/38
    • H02J9/062H02J3/383H02J7/34Y02E10/563Y10T307/62
    • Residential system includes photovoltaic power system including solar battery, and electrical storage device including battery. Electric load of residential system is selectively supplied with energy from power supply system, power generator and electrical storage device. Power generator allows energy to flow back to power supply system. Energy surplus judgment part calculates difference between generating energy of power generator and demand power for electric load (excess generating energy). Overall operation controller applies stored energy in electrical storage device to demand energy for electric load when excess generating energy is produced, and charges electrical storage device without applying generating energy of power generator to demand energy when excess generating energy is not produced.
    • 住宅系统包括太阳能电池和包括电池的蓄电装置的光伏发电系统。 住宅系统的电力负荷从供电系统,发电机和蓄电装置中选择供电。 发电机允许能量回流到电源系统。 能量剩余判断部分计算发电机发电量与电力负荷(过剩发电能量)的需求功率之差。 总体运行控制器将存储的能量应用到蓄电装置中,以产生过量的发电能量时需要用于电力负载的能量,并且在不产生过量的发电能量的情况下,不施加发电机的发电能量来对蓄电装置充电以要求能量。
    • 6. 发明申请
    • POWER CONTROLLER
    • 电源控制器
    • US20130270911A1
    • 2013-10-17
    • US13995582
    • 2011-12-28
    • Akira BabaKiyotaka TakeharaTakeshi Ogawa
    • Akira BabaKiyotaka TakeharaTakeshi Ogawa
    • H02J9/06
    • H02J9/062H02J3/383H02J7/34Y02E10/563Y10T307/62
    • Residential system includes photovoltaic power system including solar battery, and electrical storage device including battery. Electric load of residential system is selectively supplied with energy from power supply system, power generator and electrical storage device. Power generator allows energy to flow back to power supply system. Energy surplus judgment part calculates difference between generating energy of power generator and demand power for electric load (excess generating energy). Overall operation controller applies stored energy in electrical storage device to demand energy for electric load when excess generating energy is produced, and charges electrical storage device without applying generating energy of power generator to demand energy when excess generating energy is not produced.
    • 住宅系统包括太阳能电池和包括电池的蓄电装置的光伏发电系统。 住宅系统的电力负荷从供电系统,发电机和蓄电装置中选择供电。 发电机允许能量回流到电源系统。 能量剩余判断部分计算发电机发电量与电力负荷(过剩发电能量)的需求功率之差。 总体运行控制器将存储的能量应用到蓄电装置中,以产生过量的发电能量时需要用于电力负载的能量,并且在不产生过量的发电能量的情况下,不施加发电机的发电能量来对蓄电装置充电以要求能量。
    • 7. 发明授权
    • SPR sensor
    • SPR传感器
    • US08564781B2
    • 2013-10-22
    • US13061620
    • 2009-08-21
    • Nobuo MiyaderaKenta MizusawaKazunari ShinboYasuo OhdairaAkira BabaKeizo KatoFutao KanekoTakahiro Kawakami
    • Nobuo MiyaderaKenta MizusawaKazunari ShinboYasuo OhdairaAkira BabaKeizo KatoFutao KanekoTakahiro Kawakami
    • G01N21/55
    • G01N21/553
    • Provided is an SPR sensor which can achieve compaction and multichannel detection by simple configuration at a low cost. The SPR sensor comprises an optical path, and detection areas on the side surface thereof formed by laminating metal layers formed to cause surface plasmon resonance phenomenon. The SPR sensor is characterized in that two or more detection areas are formed for one optical path, a dielectric constant regulation layer is further laminated in at least one of the two or more detection areas, dielectric constant is regulated to have a different surface plasmon resonance in each detection area, and a dielectric constant regulation layer laminated in the at least one of the two or more detection areas functions as a layer exhibiting sensitivity to an object to be detected.
    • 提供了一种SPR传感器,可以通过简单的配置以低成本实现压缩和多通道检测。 SPR传感器包括光路,并且通过层叠形成的引起表面等离子体共振现象的金属层形成的侧表面上的检测区域。 SPR传感器的特征在于,对于一​​个光路形成两个或更多个检测区域,在两个或更多个检测区域中的至少一个中进一步层压介电常数调节层,介电常数被调节为具有不同的表面等离子体共振 在每个检测区域中,并且层压在两个或更多个检测区域中的至少一个检测区域中的介电常数调节层用作对被检测物体具有敏感性的层。
    • 10. 发明申请
    • Machine for and method of securing a lining bag at precise locations on the inner surface of a container blank
    • 在容器坯料的内表面上的精确位置固定衬里袋的机器和方法
    • US20050043157A1
    • 2005-02-24
    • US10895506
    • 2004-07-21
    • Matthew CookAkira Baba
    • Matthew CookAkira Baba
    • B31B7/00B65D77/06B31B1/84
    • B65D77/065B31B2105/00B31B2120/408
    • An automated machine for and the method of fabricating containers made from a cardboard paperboard or corrugated paperboard blank having an inner liquid holding bag secured to the inner surface of the paperboard box. The liquid holding bag includes a spout that extends through a spout opening formed in the paperboard blank. During the fabrication process the spout is utilized to precisionally locate the liquid holding bag so that when the panel of the blank with the spout opening is folded down over the spout, the spout will be properly aligned with the spout opening thus facilitating the automatic assembly of the container. In this automatic assembly process the liquid holding bag is secured to the inner surface of the container at multiple locations such that when the container is opened into its three dimensional use configuration a passage is opened for filling the bag through the spout.
    • 一种用于制造由纸板纸板或瓦楞纸板坯料制成的容器的自动化机器和方法,其具有固定到纸板箱的内表面的内部液体保持袋。 液体保持袋包括延伸穿过形成在纸板坯中的喷口的喷口。 在制造过程中,喷嘴用于精确地定位液体保持袋,使得当具有喷口开口的坯料的面板向下折叠在喷口上时,喷口将适当地与喷口开口对准,从而便于自动组装 容器 在这种自动组装过程中,液体保持袋在多个位置处固定到容器的内表面,使得当容器被打开成三维使用构造时,打开通道以通过喷口填充袋。