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    • 1. 发明授权
    • Solenoid valve control device
    • 电磁阀控制装置
    • US08887758B2
    • 2014-11-18
    • US13515972
    • 2010-10-20
    • Kazuya KamadaKazuya HirotaKenji Nakai
    • Kazuya KamadaKazuya HirotaKenji Nakai
    • F16K31/02F16K37/00
    • F16K31/0675F16K37/0075Y10T137/8242
    • A solenoid valve control device is provided with: a first relay connected in series to a drive coil of a solenoid valve between output terminals of a rectifier circuit; a photocoupler configured to output a voltage of a GND level when a current equal to or greater than a predetermined level is flowing in a contact in the first relay and output a voltage of a V5 level when the current equal to or greater than a predetermined level does not flow in the contact in the first relay; and an integration circuit configured to smooth an output voltage Va1 from the photocoupler. When an output voltage from the integration circuit is not greater than a first threshold value, a microcomputer detects that the first relay is in an on state.
    • 电磁阀控制装置具有:与整流电路的输出端子之间的电磁阀的驱动线圈串联连接的第一继电器; 当电流等于或大于预定电平时,当等于或大于预定电平的电流在第一继电器中的接触中流动时,光耦合器被配置为输出GND电平的电压,并且当电流等于或大于预定电平时,输出V5电平的电压 不会流入第一继电器中的触点; 以及集成电路,被配置为平滑来自光电耦合器的输出电压Va1。 当来自积分电路的输出电压不大于第一阈值时,微型计算机检测到第一继电器处于接通状态。
    • 2. 发明申请
    • SOLENOID VALVE CONTROL DEVICE
    • 电磁阀控制装置
    • US20120292543A1
    • 2012-11-22
    • US13515972
    • 2010-10-20
    • Kazuya KamadaKazuya HirotaKenji Nakai
    • Kazuya KamadaKazuya HirotaKenji Nakai
    • F16K31/02
    • F16K31/0675F16K37/0075Y10T137/8242
    • Disclosed is a solenoid valve control device provided with: a first relay (20) connected in series to a drive coil of a solenoid valve (30) between output terminals (11a, 11b) of a rectifier circuit (11); a photocoupler (31) configured to output a voltage of a GND level when a current equal to or greater than a predetermined level is flowing in a contact (20a) in the first relay (20) and output a voltage of a V5 level when the current equal to or greater than a predetermined level does not flow in the contact (20a) in the first relay (20); and an integration circuit (40) configured to smooth an output voltage Va1 from the photocoupler (31). When an output voltage (Vb1) from the integration circuit (40) is not greater than a first threshold value (Vt1), a microcomputer (1a) detects that the first relay (20) is on state.
    • 本发明公开了一种电磁阀控制装置,其具有与整流电路(11)的输出端子(11a,11b)之间的电磁阀(30)的驱动线圈串联连接的第一继电器(20)。 当电流等于或大于预定值的电流在第一继电器(20)中的触点(20a)中流动时,光电耦合器(31)被配置为输出GND电平的电压,并且当第 等于或大于预定水平的电流不会流入第一继电器(20)中的触点(20a)中; 以及被配置为平滑来自光电耦合器(31)的输出电压Va1的积分电路(40)。 当来自积分电路(40)的输出电压(Vb1)不大于第一阈值(Vt1)时,微型计算机(1a)检测到第一继电器(20)处于接通状态。
    • 3. 发明申请
    • LITHIUM ION SECONDARY BATTERY
    • 锂离子二次电池
    • US20090136835A1
    • 2009-05-28
    • US12269081
    • 2008-11-12
    • Kenji NakaiAkinori TadaMasatsugu AraiKinya Aota
    • Kenji NakaiAkinori TadaMasatsugu AraiKinya Aota
    • H01M2/18B23K26/20
    • H01M10/0525H01M2/263H01M10/0431H01M10/0587Y02T10/7011Y10T29/49108
    • A lithium ion secondary battery comprises a case; a positive electrode foil having a current collector foil on which a positive electrode material is coated; an negative electrode film having a current collector film on which an negative electrode material is coated; a separator sandwiched between the positive electrode film and the negative electrode film, the films and the separator being arranged in multiple layers to form a group of electrodes enclosed in the case, a positive collector disc plate connected to the positive electrode side of the group of the electrodes, and an negative collector disc plate connected to the negative electrode side of the group of the electrodes. Each of the current collector foils has a non-coated portion extended along one side of the foils, a part or the entire of the non-coated portion being exposed from a side of the separator. At least one of the collector disc plate is welded to the side of the exposed non-coated portion of the group of the electrodes. The periphery of the collector disc plate has an annular portion, which is bent towards the group of electrodes.
    • 锂离子二次电池包括壳体; 具有集电箔的正极箔,其上涂覆有正极材料; 具有集电体膜的负极膜,其上涂覆有负极材料; 夹在正极膜和负极膜之间的隔膜,膜和隔膜被布置成多层以形成封闭在壳体中的一组电极,正极集电板盘连接到正极集电体的正极侧 所述电极和与所述电极组的负极侧连接的负极集电板。 每个集电箔具有沿箔的一侧延伸的未涂覆部分,未涂覆部分的一部分或全部从分离器的侧面露出。 集电盘片中的至少一个焊接到该组电极的暴露未涂覆部分的一侧。 集电盘片的周边具有朝向该组电极弯曲的环形部分。
    • 6. 发明授权
    • Cylindrical lithium-ion battery
    • 圆柱形锂离子电池
    • US06509114B1
    • 2003-01-21
    • US09525263
    • 2000-03-14
    • Kenji NakaiTakeshi NakanoKensuke Hironaka
    • Kenji NakaiTakeshi NakanoKensuke Hironaka
    • H01M400
    • H01M10/0431H01M4/505H01M4/587H01M10/0525H01M10/0587Y02T10/7011
    • A cylindrical lithium-ion battery with excellent safety where abnormal heat generation and remarkable deformation of a battery container do not occur even at an abnormal time is provided. When an average diameter of a winding group 6 is A mm, an inner diameter of the battery container 5 is B mm, a longitudinal length of the winding group 6 except for lead pieces extending from the winding group 6 is H mm, and the number of windings where a layer of one unit comprising a negative electrode member/separator/negative electrode member/separator is wound around a shaft core 11 is W, a calculation value K obtained by a formula; K=(B−A)×(10000/(W×H) is set to 0.89 or more. When the calculation value K is 0.89 or more, a gap (B−A) between an outer periphery of the winding group 6 and an inner periphery of the battery container 5 that enables the winding group 6 to expand in its diameter direction at an abnormal time is properly secured.
    • 提供了即使在异常时也不会发生具有优异安全性的圆柱形锂离子电池,其中异常发热和电池容器的显着变形。 当卷绕组6的平均直径为Amm时,电池容器5的内径为Bmm,除了从卷绕组6延伸的引线片以外的卷绕组6的纵向长度为Hmm, 其中包括负极构件/隔板/负极构件/隔板的一个单元的层缠绕在轴芯11上的绕组是W,通过公式获得的计算值K; K =(BA)×(10000 /(W×H))为0.89以上,当计算值K为0.89以上时,卷绕组6的外周与电池内周之间的间隙(BA) 适当地确保使绕组6在异常时沿其直径方向膨胀的容器5。