Method for producing nonaqueous electrolyte secondary battery
    31.
    发明授权
    Method for producing nonaqueous electrolyte secondary battery 有权
    非水电解质二次电池的制造方法

    公开(公告)号:US09559350B2

    公开(公告)日:2017-01-31

    申请号:US14360342

    申请日:2011-11-24

    摘要: The present invention provides a method for producing a nonaqueous electrolyte secondary battery in which the drop in capacity retention rate is controlled by forming a coating in a more favorable state on the surface of the negative electrode active material. This production method comprises a step S10 of preparing a battery assembly in which an electrode assembly is housed within a battery case, the electrode assembly including a positive electrode produced by forming a positive electrode active material layer containing at least a positive electrode active material, and a negative electrode produced by forming a negative electrode active material layer containing at least a negative electrode active material; a first injection step S20 of injecting a nonaqueous electrolyte containing a specified additive into the battery case; a precharging step S30 of forming the additive-derived coating on the surface of the negative electrode active material; a second injection step S40 of injecting a nonaqueous electrolyte not containing an additive into the battery case; and a charge and discharge step S50 of charging and discharging the battery assembly to a predetermined charging and discharge voltage.

    摘要翻译: 本发明提供一种非水电解质二次电池的制造方法,其中通过在负极活性物质的表面上形成更好的状态的涂层来控制容量保持率的下降。 该制造方法包括制备电池组件的步骤S10,其中电极组件容纳在电池壳体内,该电极组件包括通过形成至少含有正极活性材料的正极活性物质层而形成的正极,以及 通过形成至少含有负极活性物质的负极活性物质层而形成的负极; 将含有特定添加剂的非水电解质注入电池壳体的第一注入步骤S20; 在负极活性物质的表面上形成添加剂衍生的涂层的预充电步骤S30; 将不含添加剂的非水电解质注入电池壳体的第二注入步骤S40; 以及将电池组件充放电至预定的充放电电压的充放电步骤S50。

    Control device of vehicle
    32.
    发明授权
    Control device of vehicle 有权
    车辆控制装置

    公开(公告)号:US08636621B2

    公开(公告)日:2014-01-28

    申请号:US13381714

    申请日:2009-07-08

    IPC分类号: H02P17/00

    摘要: A control device of a vehicle includes: power dividing mechanism that has a plurality of rotating elements rotated by torque output and transmitted from an engine and a first motor/generator and switches a transmission mode according to the engaging states of the respective rotating elements; and a clutch that has a first engaging member and a second engaging member having a backlash between them in a rotating direction thereof, and that sets a transmission mode to a fixed transmission ratio mode by engaging the first engaging member connected to one of the rotating elements with the second engaging member, and sets the transmission mode to a continuously variable transmission ratio mode by releasing the engagement. In the control device of a vehicle, the magnitude of the reversed rotating torque is reduced when the direction of rotating torque acting between the first and seconds engaging members.

    摘要翻译: 车辆的控制装置包括:动力分配机构,其具有由发动机和第一电动机/发电机传递的转矩输出而旋转的多个旋转元件,并且根据各旋转元件的接合状态切换变速器模式; 以及离合器,其具有第一接合构件和第二接合构件,所述第一接合构件和第二接合构件在它们之间沿其旋转方向具有间隙,并且通过接合连接到所述旋转元件中的一个的第一接合构件而将传动模式设定为固定传动比模式 并且通过释放接合将传动模式设定为无级变速传动比模式。 在车辆的控制装置中,当在第一和第二接合构件之间作用的旋转转矩的方向时,反转的转矩的大小减小。

    LITHIUM SECONDARY BATTERY
    34.
    发明申请
    LITHIUM SECONDARY BATTERY 有权
    锂二次电池

    公开(公告)号:US20120258343A1

    公开(公告)日:2012-10-11

    申请号:US13516259

    申请日:2009-12-17

    IPC分类号: H01M10/36 H01M10/04 H01M4/04

    摘要: A lithium secondary battery obtained by the present invention has a negative electrode sheet 20 in which the theoretical capacities of the negative active material per unit area are equalized in a negative active material layer 24b on the outer circumference side and a negative active material layer 24a on the inner circumference side of a negative electrode collector 22, and at least one of the following conditions is met with respect to at least part of a bent section 85, which is bent toward the inside of a wound electrode body 80: (1) the percentage content of binder of the outer negative active material layer 24b is smaller than the percentage content of binder of the inner negative active material layer 24a; and (2) the density of the outer negative active material layer 24b is smaller than the density of the inner negative active material layer 24a.

    摘要翻译: 通过本发明获得的锂二次电池具有负极片20,其中负极活性物质每单位面积的理论容量在外周侧的负极活性物质层24b和 负电极集电体22的内周侧,以及至少部分朝向卷绕电极体80的内侧弯曲的弯曲部85的至少一部分满足以下条件中的至少一个:(1) 外负极活性物质层24b的粘合剂的含量百分比小于内负极活性物质层24a的粘合剂的含量百分比; 和(2)外部负极活性物质层24b的密度小于内侧负极活性物质层24a的密度。

    Socket
    35.
    发明申请
    Socket 有权
    插座

    公开(公告)号:US20120129379A1

    公开(公告)日:2012-05-24

    申请号:US13251348

    申请日:2011-10-03

    IPC分类号: H01R13/62

    CPC分类号: G01R1/0441

    摘要: A socket (100) of the present invention includes a base member (20), a cover member (30), a plurality of contacts (40), a latch member (60A) that is rotatably supported by the base member (20) and rotates in response to movement of the cover member (30), an adaptor (50) providing a mounting surface for an IC package and attached with the base member (20) so as to move in an up and down direction in response to the movement of the cover member (30), and a latch plate (200) rotatably attached with the adaptor (50A) and urged by an elastic member. The adaptor (50A) is formed with a latch guide (58) that moves the latch plate (200) in the vertical direction when the latch plate (200) presses the IC package.

    摘要翻译: 本发明的插座(100)包括底座(20),盖构件(30),多个触头(40),由基座构件(20)可旋转地支撑的闩锁构件(60A)和 响应于所述盖构件(30)的移动而旋转,适配器(50)提供用于IC封装的安装表面并且与所述基座构件(20)相连接以响应于所述移动而在上下方向上移动 以及与所述适配器(50A)可旋转地安装并由弹性构件推动的闩锁板(200)。 适配器(50A)形成有当闩锁板(200)按压IC封装时沿垂直方向移动闩锁板(200)的闩锁引导件(58)。

    Control method, control system, RFID antenna and connection investigation method
    37.
    发明授权
    Control method, control system, RFID antenna and connection investigation method 失效
    控制方法,控制系统,RFID天线和连接调查方法

    公开(公告)号:US07898392B2

    公开(公告)日:2011-03-01

    申请号:US11443225

    申请日:2006-05-31

    IPC分类号: H04Q5/22

    摘要: A technique of preventing occurrence of interference even when a plurality of RFID antennas are used simultaneously. Each RFID antenna is attached with a calibration RFID tag. A combination of RFID antennas that causes a problem is acquired based on whether information held by the calibration RFID tag can be read from each of the RFID antennas that have performed reading simultaneously. Then, an RFID antenna use procedure is generated such that the RFID antennas in the acquired combination are not used simultaneously. Each RFID antenna is operated according to the generated use procedure.

    摘要翻译: 即使同时使用多个RFID天线,也可以防止干扰发生的技术。 每个RFID天线都附有一个校准RFID标签。 基于是否可以从同时执行读取的每个RFID天线中读取由校准RFID标签所保持的信息来获取导致问题的RFID天线的组合。 然后,生成RFID天线使用程序,使得所采集的组合中的RFID天线不被同时使用。 每个RFID天线根据生成的使用程序进行操作。

    Method for supporting an antenna wiring, and a system
    38.
    发明授权
    Method for supporting an antenna wiring, and a system 失效
    用于支撑天线布线的方法和系统

    公开(公告)号:US07583193B2

    公开(公告)日:2009-09-01

    申请号:US11873025

    申请日:2007-10-16

    IPC分类号: G08B13/14 H01Q21/00

    摘要: It is desirable to make the antenna wiring more efficient in the building of an RFID system. The system includes antennas and readers connected in an arbitrary manner, in which calibration tags are installed on all the antennas. By reading the calibration tags, the system automatically generates the correspondences between the access paths and antenna logical names of the antennas, to serve as antenna configuration information. While the user generates combinations of the antenna logical names of the one or more antennas to be simultaneously driven, to serve as derive sequence information. The system compares the automatically generated antenna configuration information with the user-generated driving sequence information, and if there is an inconsistency in the setting of the both, generates an antenna rewiring procedure so as to resolve the inconsistency. The antenna rewiring procedure is generated as a combination of the substitution operation of the antenna wiring.

    摘要翻译: 希望在RFID系统的建造中使天线布线更有效率。 该系统包括以任意方式连接的天线和读取器,校准标签安装在所有天线上。 通过读取校准标签,系统自动生成接入路径和天线的天线逻辑名称之间的对应关系,用作天线配置信息。 当用户产生要同时驱动的一个或多个天线的天线逻辑名称的组合时,用作导出序列信息。 该系统将自动生成的天线配置信息与用户生成的驾驶序列信息进行比较,如果在两者的设置中存在不一致性,则生成天线重新布线过程以解决不一致。 天线重新布线过程作为天线布线的替换操作的组合产生。

    Control method, control system, RFID antenna and connection investigation method
    39.
    发明申请
    Control method, control system, RFID antenna and connection investigation method 失效
    控制方法,控制系统,RFID天线和连接调查方法

    公开(公告)号:US20070188328A1

    公开(公告)日:2007-08-16

    申请号:US11443225

    申请日:2006-05-31

    IPC分类号: G08B13/14 G01N37/00 G01R35/00

    摘要: A technique of preventing occurrence of interference even when a plurality of RFID antennas are used simultaneously. Each RFID antenna is attached with a calibration RFID tag. A combination of RFID antennas that causes a problem is acquired based on whether information held by the calibration RFID tag can be read from each of the RFID antennas that have performed reading simultaneously. Then, an RFID antenna use procedure is generated such that the RFID antennas in the acquired combination are not used simultaneously. Each RFID antenna is operated according to the generated use procedure.

    摘要翻译: 即使同时使用多个RFID天线,也可以防止干扰发生的技术。 每个RFID天线都附有一个校准RFID标签。 基于是否可以从同时执行读取的每个RFID天线中读取由校准RFID标签所保持的信息来获取导致问题的RFID天线的组合。 然后,生成RFID天线使用程序,使得所采集的组合中的RFID天线不被同时使用。 每个RFID天线根据生成的使用程序进行操作。