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    • 1. 发明申请
    • DISTANCE AND LOCATION-AWARE REMINDERS AND SCHEDULING ASSISTANCE IN A CALENDAR SYSTEM
    • 在日历系统中的距离和位置 - 注意提示和调度帮助
    • WO2011160044A2
    • 2011-12-22
    • PCT/US2011/040922
    • 2011-06-17
    • GOOGLE INC.NORTON, Kenneth, S.SLESINSKY, Brian, V.
    • NORTON, Kenneth, S.SLESINSKY, Brian, V.
    • G06Q10/00
    • G06Q10/109
    • A method and a system for determining a time to provide an event reminder based on a plurality of factors, including the location of a user, or the distance between the location of the user and an event location is described. A computer-implemented method includes determining the event reminder time, in response to a predefined triggering event. The method includes retrieving event information for the respective event, including an event location and an event start time. An origin of the respective user is obtained, and a travel time is determined for the respective user to travel from the origin to the event location. In accordance with the event start time and travel time, an event reminder time is determined for the respective event. Also methods and systems for providing scheduling assistance based on the travel time are described.
    • 描述了一种用于基于包括用户位置在内的多个因素或用户的位置与事件位置之间的距离来确定提供事件提醒的时间的方法和系统。 计算机实现的方法包括响应于预定义的触发事件来确定事件提醒时间。 该方法包括检索相应事件的事件信息,包括事件位置和事件开始时间。 获得相应用户的来源,并确定各个用户从原点到事件位置的旅行时间。 根据事件开始时间和旅行时间,确定相应事件的事件提醒时间。 还描述了基于旅行时间提供调度辅助的方法和系统。
    • 6. 发明申请
    • DISTANCE AND LOCATION-AWARE REMINDERS AND SCHEDULING ASSISTANCE IN A CALENDAR SYSTEM
    • 在日历系统中的距离和位置注意提示和调度帮助
    • WO2011160044A3
    • 2012-02-09
    • PCT/US2011040922
    • 2011-06-17
    • GOOGLE INCNORTON KENNETH SSLESINSKY BRIAN V
    • NORTON KENNETH SSLESINSKY BRIAN V
    • G04F1/00G06Q10/10
    • G06Q10/109
    • A method and a system for determining a time to provide an event reminder based on a plurality of factors, including the location of a user, or the distance between the location of the user and an event location is described. A computer-implemented method includes determining the event reminder time, in response to a predefined triggering event. The method includes retrieving event information for the respective event, including an event location and an event start time. An origin of the respective user is obtained, and a travel time is determined for the respective user to travel from the origin to the event location. In accordance with the event start time and travel time, an event reminder time is determined for the respective event. Also methods and systems for providing scheduling assistance based on the travel time are described.
    • 描述了一种用于基于包括用户位置在内的多个因素或用户的位置与事件位置之间的距离来确定提供事件提醒的时间的方法和系统。 计算机实现的方法包括响应于预定义的触发事件来确定事件提醒时间。 该方法包括检索相应事件的事件信息,包括事件位置和事件开始时间。 获得相应用户的来源,并且确定各个用户从原点到事件位置的旅行时间。 根据事件开始时间和旅行时间,确定相应事件的事件提醒时间。 还描述了基于旅行时间提供调度辅助的方法和系统。
    • 8. 发明申请
    • BATTERY MANAGEMENT SYSTEM AND METHOD
    • 电池管理系统和方法
    • WO2012068734A1
    • 2012-05-31
    • PCT/CN2010/079125
    • 2010-11-25
    • NORTON, Kenneth Hamilton
    • NORTON, Kenneth Hamilton
    • H01M10/44H01M10/42H02J7/00
    • H02J7/007H01M10/441H02J7/0014H02J7/0016Y02T10/7055
    • A battery management system comprises a plurality of battery management units (U1-Un) connected in series and a host controller (101). Each battery management unit (U1-Un) comprises a battery cell (A1-An), an isolation element (B1-Bn) and at least one bypass element (P11-P1n, P21-P2n). The isolation element (B1-Bn) is connected with the battery cell (A1-An) in series and the battery cell (A1-An) is isolated by turning off the isolation element (B1-Bn). The bypass elements (P11-P1n, P21-P2n) are in parallel connection with the battery cell (A1-An) and the isolation element (B1-Bn) and the battery cell (A1-An) is bypassed by turning on the bypass element (P11-P1n, P21-P2n). A battery management method comprises: activating the battery cell (A1-An) of the battery management unit (U1-Un) by turning on the isolation element (B1-Bn) and turning off the bypass elements (P11-P1n, P21-P2n) of the battery management unit (U1-Un); and deactivating the battery cell (A1-An) of the battery management unit (U1-Un) by turning off the isolation element (B1-Bn) and turning on the bypass elements (P11-P1n, P21-P2n) of the battery management unit (U1-Un).
    • 电池管理系统包括串联连接的多个电池管理单元(U1-Un)和主机控制器(101)。 每个电池管理单元(U1-Un)包括电池单元(A1-An),隔离元件(B1-Bn)和至少一个旁路元件(P11-P1n,P21-P2n)。 隔离元件(B1-Bn)与电池单元(A1-An)串联连接,电池单元(A1-An)通过断开隔离元件(B1-Bn)被隔离。 旁路元件(P11-P1n,P21-P2n)与电池单元(A1-An)并联连接,隔离元件(B1-Bn)和电池单元(A1-An)通过旁路旁路 元素(P11-P1n,P21-P2n)。 电池管理方法包括:通过接通隔离元件(B1-Bn)来激活电池管理单元(U1-Un)的电池单元(A1-An)并关闭旁路元件(P11-P1n,P21-P2n )电池管理单元(U1-Un); 通过关闭隔离元件(B1-Bn)并接通电池管理的旁路元件(P11-P1n,P21-P2n)来使电池管理单元(U1-Un)的电池单元(A1-An) 单元(U1-Un)。
    • 9. 发明申请
    • A BATTERY PACK ASSEMBLY
    • 电池组件
    • WO2012068732A1
    • 2012-05-31
    • PCT/CN2010/079121
    • 2010-11-25
    • NORTON, Kenneth, Hamilton
    • NORTON, Kenneth, Hamilton
    • H01M2/10H01M10/50
    • H01M10/613H01M2/1077H01M2/206H01M10/425H01M10/617H01M10/6555H01M10/659
    • A battery pack assembly allowing automated single ended bonding directly between a battery cell and a Printed Circuit Board is disclosed. The battery pack assembly comprises a caddy (10), a soft and malleable pad (30), a plastic cell lattice (40), a Printed Circuit Board (PCB) (50) and a plurality of ultrasonic wire or ribbon bonds (70). The caddy (10) retains battery cells. The soft and malleable pad (30) includes a first group of apertures and is set on the top of the battery cells (20). The plastic cell lattice (40) includes a second group of apertures and is set on the top of the soft and malleable pad. The Printed Circuit Board (PCB) (50) includes a third group of apertures and is set on the top of the plastic cell lattice. The ultrasonic wire or ribbon bonds (70) directly connect positive contacts and negative contacts of the battery cells (20) with the Printed Circuit Board (PCB) (50). A battery pack assembly allowing equalizing the temperature potentials of every battery cell in the pack also is provided. The battery pack assembly comprises a phase change material, a soft and malleable pad (30) and a caddy (10). The phase change material keeps the battery pack within a safe operating temperature and equalizes the temperature homogenous across the battery pack. The soft and malleable pad (30) is set on the top of the battery cells (20) for compensating for a change in volume as the phase change material changes from solid to liquid phases and vice versa. The caddy (10) retains the battery cells (20), the phase change material and the soft and malleable pad (30).
    • 公开了一种电池组件,其允许在电池单元和印刷电路板之间直接自动单端接合。 电池组件包括一个圆盘(10),一个柔软的可延展垫(30),一个塑料单元格(40),一个印刷电路板(PCB)(50)和多个超声波线或带状键(70) 。 盒子(10)保持电池单元。 软和可延展的垫(30)包括第一组孔,并设置在电池单元(20)的顶部。 塑料电池格栅(40)包括第二组孔,并设置在柔软且有韧性的垫的顶部。 印刷电路板(PCB)(50)包括第三组孔,并设置在塑料单元格的顶部。 超声波导线或带状结合(70)直接将印刷电路板(PCB)(50)的电池单元(20)的正触点和负触点连接起来。 还提供了一种使包装中的每个电池单元的温度均衡化的电池组组件。 电池组组件包括相变材料,软和可延展的垫(30)和球罐(10)。 相变材料将电池组保持在安全的工作温度,并使整个电池组的温度均匀。 柔软且可延展的垫(30)设置在电池单元(20)的顶部上,用于补偿相变材料从固体相变为液相时的体积变化,反之亦然。 所述盒(10)保持所述电池单元(20),所述相变材料和所述柔软且可延展的垫(30)。