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    • 3. 发明专利
    • Underfloor ventilation control device
    • 底部通风控制装置
    • JP2008241230A
    • 2008-10-09
    • JP2007114840
    • 2007-03-28
    • Akira Baba明 馬場
    • BABA AKIRA
    • F24F7/10F24F7/007
    • PROBLEM TO BE SOLVED: To solve a problem wherein there was a case of worsening the deterioration of underfloor humidity environment in high temperature and high humidity in summer or the like because of performing introduction of outside air unconditionally even when the humidity of outside air is high in a conventional underfloor facility or underfloor humidity control facility.
      SOLUTION: This underfloor ventilation control device is provided with sensors 1, 2 at an outside air intake part and in an underfloor space to suppress outside air introduction and inflow when outside air conditions are bad. Consequently, when worsening of humidity conditions in the underfloor space is estimated, introduction of outside air is suppressed to prevent the inflow of moisture to be a cause, and ventilation is selectively performed only when it is effective in dehumidifying the underfloor space, thus achieving the improvement of effective humidity environment in the underfloor space.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了解决在夏季等的高温高湿环境下,即使外部湿度无条件地引入外部空气的情况下,也会恶化劣化的问题 传统地板设施或地板下湿度控制设施的空气很高。 解决方案:这种地板下通风控制装置在外部空气进入部分和地板下空间设置有传感器1,2,以在室外空气条件差时抑制外部空气引入和流入。 因此,当估计在地板下空间中的湿度条件恶化时,抑制外部空气的引入,以防止水分的流入成为原因,并且只有在有效地对地板下部空间进行除湿时选择性地进行通风,从而实现 改善地板下空间的有效湿度环境。 版权所有(C)2009,JPO&INPIT
    • 5. 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。
    • 9. 发明授权
    • Electrical junction box to be mounted on motor vehicle
    • 电气接线盒安装在机动车辆上
    • US07642456B2
    • 2010-01-05
    • US12213162
    • 2008-06-16
    • Akira Baba
    • Akira Baba
    • H02G3/08
    • H05K7/026H01H85/2045H01H2085/208
    • An electrical junction box for a motor vehicle is configured to prevent loss of a fuse that falls down during maintenance. Fuse-containing sections are provided on a vertical surface of a casing of an electrical junction box. The fuse-containing sections are opposed to a trim cover provided with an opening for maintenance in the motor vehicle. Fuse-receiving plates project toward the trim cover integrally on or detachably from the casing surface at the position below the fuse-containing sections. The fuse-receiving plate has a length in which a distal end contacts the trim cover or the distal end is spaced away from the trim cover by a clearance through which a fuse cannot pass. The fuse-receiving plates can receive a fuse that falls down during a fuse attachment or detachment operation.
    • 用于机动车辆的电接线盒被配置为防止在维护期间丢失熔断器。 保险丝容纳部设置在电接线盒的外壳的垂直面上。 保险丝容纳部分与设置有用于在机动车辆中维护的开口的装饰罩相对。 熔断器接收板在保险丝容纳部分下方的位置处一体地朝向装配盖突出到壳体表面上或从壳体表面可拆卸地突出。 保险丝接收板具有远端接触装饰盖的长度,或者远端与装饰盖间隔开保险丝不能通过的间隙。 保险丝接收板可以接收在保险丝安装或拆卸操作期间落下的保险丝。
    • 10. 发明授权
    • Method of cutting off circuit under overcurrent, circuit cutting-off device under overcurrent, and method of protecting semiconductor relay system
    • 过流断路电路,过电流断路装置及半导体继电器保护方法
    • US06594129B1
    • 2003-07-15
    • US09667778
    • 2000-09-22
    • Akira BabaYoshikazu NagashimaKazuto SugiyamaYoshihiko Mine
    • Akira BabaYoshikazu NagashimaKazuto SugiyamaYoshihiko Mine
    • H02H318
    • H03K17/0822H03K2017/0806H03K2217/0081
    • In a semiconductor relay system for supply a power source to a lamp load under the on/off control by a microcomputer using a semiconductor relay, a method of cutting off a circuit under an overcurrent, a first prescribed value is which is a current value higher than a rated load current for the load and a maximum current value supplied to the lamp load, and a second prescribed value is set which is a current value between said first prescribed value and said rated current value; the current value flowing through the lamp load is sampled at predetermined time intervals and comparing the current value thus sampled with the second prescribed value; and when a higher current than said first prescribed value flows through the lamp load, the current supplied to the lamp load is controlled within a prescribed range between said first prescribed value and said second prescribed value, and when the sampled current value higher that said second prescribed value is counted by a prescribed number of times, the sampled current is decided as an overcurrent thereby cutting off the semiconductor relay to stop the current supply to said lamp load.
    • 在半导体继电器系统中,通过使用半导体继电器的微型计算机在开/关控制下向灯负载提供电源,在过电流下切断电路的方法,第一规定值为电流值更高 比负载的额定负载电流和提供给灯负载的最大电流值,并且设定作为所述第一规定值和所述额定电流值之间的电流值的第二规定值; 以预定的时间间隔对流过灯负载的电流值进行采样,并将由此采样的电流值与第二规定值进行比较; 并且当比所述第一规定值高的电流流经灯负载时,提供给灯负载的电流被控制在所述第一规定值和所述第二规定值之间的规定范围内,并且当所述第二规定值 将规定值计数规定次数,将采样电流判定为过电流,从而切断半导体继电器,停止对所述灯负载的电流供给。