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    • 3. 发明申请
    • Organism information measuring device and organism information measuring method
    • 生物信息测量装置和生物信息测量方法
    • US20050253047A1
    • 2005-11-17
    • US11121320
    • 2005-05-03
    • Kazuya MaegawaTakashi NakamuraKoichi MoriyaShinichiro Miyahara
    • Kazuya MaegawaTakashi NakamuraKoichi MoriyaShinichiro Miyahara
    • A61B5/0245A61B5/00A61B5/024A61B5/145H01J40/14
    • A61B5/02438A61B5/681A61B5/7257
    • To improve an S/N ratio and increase a measurement accuracy of an organism information. There is provided an organism information measuring device possessing a main body disposed under a state that its lower face has contacted with an organism surface, a light irradiating part which is disposed in the lower face of the main body and irradiates a light toward an organism, a 1st light receiving part which is disposed in the lower face of the main body and near the light irradiating part, receives a backward scattered light from the organism and generates an organism information signal complying with a received light quantity, a 2nd light receiving part which is disposed in the lower face of the main body and in a position spaced from the light irradiating part more than a distance between the 1st light receiving part and the light irradiating part, receives a backward scattered light from the organism and generates an organism information signal complying with a received light quantity, and an organism information operating part which calculates an organism information on the basis of the organism information signals having been generated by the 1st light receiving part and the 2nd light receiving part.
    • 提高S / N比,提高生物体信息的测量精度。 本发明提供了一种生物体信息测量装置,其具有在其下表面与生物体表面接触的状态下设置的主体,设置在主体的下表面并向生物体照射光的光照射部, 第一光接收部分,其设置在主体的下表面中并靠近光照射部分,接收来自生物体的向后散射的光,并产生符合接收光量的生物体信息信号;第二光接收部分, 设置在主体的下表面上,并且与第一光接收部分和光照射部分之间的距离大于与光照射部分隔开的位置,接收来自生物体的向后散射的光,并产生生物体信息信号 符合接收的光量,以及计算t上的生物体信息的生物体信息操作部分 是由第一光接收部分和第二光接收部分产生的有机体信息信号的基础。
    • 4. 发明申请
    • BATTERY PACK, AND BATTERY SYSTEM
    • 电池组和电池系统
    • US20100237828A1
    • 2010-09-23
    • US12682851
    • 2008-08-29
    • Kazuya Maegawa
    • Kazuya Maegawa
    • H02J7/00
    • H01M10/441H01M10/0413H01M10/0445H01M10/46H02J7/0016H02J7/0018H02J7/0054Y02T10/7055
    • An object of the present invention is to provide a battery pack and a battery system capable of reducing unnecessary power loss upon reducing the variation in the state of charge that has occurred between a plurality of secondary batteries in an assembled battery in which the secondary batteries are connected in series-parallel. The battery pack and the battery system include a switching element Q11 for opening/closing the charging path of a battery pack B1, a switching element Q12 for opening/closing the discharging path of the battery pack B1, a switching element Q21 for opening/closing the charging path of a battery pack B2, and a switching element Q22 for opening/closing the discharging path of the battery pack B2. When the battery pack B1 is charged, the switching elements Q12, Q21 are turned OFF and the switching element Q11 is turned ON until the secondary batteries B11, B12 are fully charged. When the battery pack B2 is charged, the switching elements Q22, Q11 are turned OFF and the switching element Q21 is turned ON until the secondary batteries B21, B22 are fully charged.
    • 本发明的目的是提供一种电池组和电池系统,其能够减少在二次电池组合的电池组中的多个二次电池之间发生的充电状态的变化的情况下的不必要的电力损失 串联并联。 电池组和电池系统包括用于打开/关闭电池组B1的充电路径的开关元件Q11,用于打开/关闭电池组B1的放电路径的开关元件Q12,用于打开/关闭的开关元件Q21 电池组B2的充电路径和用于打开/关闭电池组B2的放电路径的开关元件Q22。 当电池组B1充电时,开关元件Q12,Q21断开,开关元件Q11导通,直到二次电池B11,B12充满电为止。 当电池组B2充电时,开关元件Q22,Q11断开,开关元件Q21导通,直到二次电池B21,B22充满电为止。
    • 5. 发明申请
    • Organism information detecting apparatus
    • 生物信息检测装置
    • US20070225586A1
    • 2007-09-27
    • US10590128
    • 2005-12-16
    • Takashi NakamuraKazuya MaegawaKoichi MoriyaShinichiro MiyaharaKaori Takano
    • Takashi NakamuraKazuya MaegawaKoichi MoriyaShinichiro MiyaharaKaori Takano
    • A61B5/05
    • A61B5/02416A61B5/0006A61B5/7207
    • The invention relates to an organism information detecting apparatus capable of determining a motion state of a subject when organism information is detected. The organism information detecting apparatus of the invention includes organism information detecting means for detecting organism information of the subject by being brought into contact with the subject by a previously determined sampling time period and outputting an organism signal, organism information data calculating means for calculating an organism information data by processing the organism signal, supplementary data calculating means for calculating an average value of a variation amount per time of a data constituted by digitizing the organism signal as a supplementary data of the organism information data, and data storing means for relating the organism information data and the supplementary data to be stored.
    • 本发明涉及一种生物体信息检测装置,其能够在检测到有机体信息时确定对象的运动状态。 本发明的有机体信息检测装置包括生物体信息检测装置,用于通过与先前确定的采样时间段接触的对象来检测受试者的生物体信息,并输出有机体信号;生物体信息数据计算装置, 通过处理生物体信息的信息数据,补充数据计算装置,用于计算通过将生物体信号数字化构成的数据的每个时间的变化量的平均值作为生物体信息数据的补充数据;以及数据存储装置, 信息数据和要存储的补充数据。
    • 6. 发明授权
    • Battery pack, and battery system
    • 电池组和电池系统
    • US08203309B2
    • 2012-06-19
    • US12682851
    • 2008-08-29
    • Kazuya Maegawa
    • Kazuya Maegawa
    • H01M10/46
    • H01M10/441H01M10/0413H01M10/0445H01M10/46H02J7/0016H02J7/0018H02J7/0054Y02T10/7055
    • An object of the present invention is to provide a battery pack and a battery system capable of reducing unnecessary power loss upon reducing the variation in the state of charge that has occurred between a plurality of secondary batteries in an assembled battery in which the secondary batteries are connected in series-parallel. The battery pack and the battery system include a switching element Q11 for opening/closing the charging path of a battery pack B1, a switching element Q12 for opening/closing the discharging path of the battery pack B1, a switching element Q21 for opening/closing the charging path of a battery pack B2, and a switching element Q22 for opening/closing the discharging path of the battery pack B2. When the battery pack B1 is charged, the switching elements Q12, Q21 are turned OFF and the switching element Q11 is turned ON until the secondary batteries B11, B12 are fully charged. When the battery pack B2 is charged, the switching elements Q22, Q11 are turned OFF and the switching element Q21 is turned ON until the secondary batteries B21, B22 are fully charged.
    • 本发明的目的是提供一种电池组和电池系统,其能够减少在二次电池组合的电池组中的多个二次电池之间发生的充电状态的变化的情况下的不必要的电力损失 串联并联。 电池组和电池系统包括用于打开/关闭电池组B1的充电路径的开关元件Q11,用于打开/关闭电池组B1的放电路径的开关元件Q12,用于打开/关闭的开关元件Q21 电池组B2的充电路径和用于打开/关闭电池组B2的放电路径的开关元件Q22。 当电池组B1充电时,开关元件Q12,Q21断开,开关元件Q11导通,直到二次电池B11,B12充满电为止。 当电池组B2充电时,开关元件Q22,Q11断开,开关元件Q21导通,直到二次电池B21,B22充满电为止。
    • 7. 发明授权
    • Power supply apparatus
    • 电源设备
    • US08179650B2
    • 2012-05-15
    • US12119237
    • 2008-05-12
    • Kozo WatanabeHajime NishinoKazuya Maegawa
    • Kozo WatanabeHajime NishinoKazuya Maegawa
    • H02H9/02
    • H01M10/482H01M10/0525Y10T307/735
    • A power supply apparatus includes: a plurality of batteries; a changeover portion switching the connection between the plurality of batteries; a short-circuit battery detection portion, if an internal short-circuit is produced in any of the plurality of batteries, detecting this internal short-circuit battery; and a changeover control portion, if the short-circuit battery detection portion detects the internal short-circuit battery, allowing the changeover portion to switch the connection between the plurality of batteries in such a way that this internal short-circuit battery and at least one of the other batteries are connected in series to thereby form a closed circuit.
    • 电源装置包括:多个电池; 切换部,切换所述多个电池之间的连接; 短路电池检测部,如果在所述多个电池中的任一个中产生内部短路,则检测该内部短路电池; 以及切换控制部,如果短路电池检测部检测到内部短路电池,则允许切换部以这样的方式切换多个电池之间的连接,使得该内部短路电池和至少一个 的其他电池串联连接,从而形成闭合电路。
    • 8. 发明授权
    • Organism information detecting apparatus
    • 生物信息检测装置
    • US08096953B2
    • 2012-01-17
    • US10590128
    • 2005-12-16
    • Takashi NakamuraKazuya MaegawaKoichi MoriyaShinichiro MiyaharaKaori Takano
    • Takashi NakamuraKazuya MaegawaKoichi MoriyaShinichiro MiyaharaKaori Takano
    • A61B5/02
    • A61B5/02416A61B5/0006A61B5/7207
    • An organism information detecting apparatus includes a detector that detects organism information of a subject for a predetermined sampling time period, determines a motion state of the subject when the organism information is detected, and outputs an organism signal. A first calculator processes the organism signal to calculate organism information data, the detector determining a reliability degree of the organism information data based on whether the determined motion state of the subject is a previously determined motion state. A second calculator calculates an average value of the amount of variation per time of data obtained by digitizing the organism signal, the average value being data supplementary to the organism information data. The detector determines the motion state of the subject based on whether the supplementary data exceeds a previously determined threshold. A storage device stores the organism information data and the supplementary data such that the organism information data and the supplementary data are associated with one another.
    • 有机体信息检测装置包括:检测对象的生物体信息预定取样时间的检测器,在检测到有机体信息时确定被检体的运动状态,并输出有机体信号。 第一计算器处理生物体信号以计算生物体信息数据,所述检测器基于所确定的对象的运动状态是否是先前确定的运动状态来确定生物信息数据的可靠度。 第二计算器计算通过数字化生物体信号获得的数据的每个时间变化量的平均值,平均值是补充生物体信息数据的数据。 检测器基于补充数据是否超过先前确定的阈值来确定对象的运动状态。 存储装置存储有机体信息数据和补充数据,使得生物体信息数据和补充数据彼此相关联。
    • 9. 发明申请
    • INDEPENDENT POWER SYSTEM
    • 独立动力系统
    • US20100201195A1
    • 2010-08-12
    • US12670977
    • 2008-06-03
    • Kazuya Maegawa
    • Kazuya Maegawa
    • H02J7/34
    • H02J7/35H01M10/425H01M10/44H01M10/465Y02E10/566Y10T307/625
    • An independent power system has a power source control unit for controlling discharge of a storage battery to a connection terminal, a first electricity supply unit for supplying electricity generated by a solar battery to the power source control unit as an operation power, a second electricity supply unit for supplying electricity stored in the storage battery to the power source control unit as the operation power, and a switching element for inhibiting the second electricity supply unit from supplying the operation power to the power source control unit when the terminal voltage of the storage battery is less than an operational voltage threshold. During a period in which the switching element is off and stops operating, when the electricity generated by the solar battery is supplied by the first electricity supply unit, the power source control unit is activated to turn on the switching element.
    • 独立电力系统具有用于控制蓄电池对连接端子的放电的电源控制单元,用于将由太阳能电池产生的电力供给到电源控制单元的电力作为操作电力的第一电力供应单元,第二电力供应单元 用于将存储在蓄电池中的电力供应到电源控制单元的单元作为操作电力;以及开关元件,用于在蓄电池的端子电压时禁止第二供电单元向电源控制单元提供操作电力 小于工作电压阈值。 在开关元件关闭并停止运转的期间,当由第一供电单元供给太阳能电池产生的电力时,启动电源控制单元来接通开关元件。