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    • 3. 发明申请
    • MANIFOLD VENT CHANNEL FOR A BATTERY MODULE
    • 电池模块的通风通道
    • US20160036023A1
    • 2016-02-04
    • US14791000
    • 2015-07-02
    • Johnson Controls Technology Company
    • Richard M. DeKeusterRonald J. Dulle
    • H01M2/12H01M10/42
    • H01M2/12H01M2/1211H01M2/1217H01M10/425H01M2220/20
    • The present disclosure includes a battery module having a housing that includes a lid and a battery cell with a battery cell terminal and a battery cell vent on an end of the battery cell. The battery cell vent is configured to exhaust battery cell effluent. The battery module includes a printed circuit board positioned in an immediate vent direction of the battery cell, a vent shield channel positioned between the battery cell vent and the printed circuit board along the immediate vent direction of battery cell effluent, where the vent shield plate is immediately adjacent to the printed circuit board and configured to block the effluent from contacting the printed circuit board and to redirect the battery cell effluent along a desired vent path, and a module vent fluidly coupled to the desired vent path and configured to direct the battery cell effluent out of the battery module.
    • 本公开内容包括具有壳体的电池模块,该壳体包括盖和在电池单元的端部上具有电池单元端子和电池单元排气孔的电池单元。 电池单元排气口被配置为排出电池单元流出物。 电池模块包括沿着电池单元的立即排出方向定位的印刷电路板,沿着电池单元流出物的直接排出方向定位在电池单元排气孔和印刷电路板之间的通气屏蔽通道,其中通风屏蔽板是 紧邻印刷电路板并被配置为阻止流出物接触印刷电路板,并且沿着期望的通气路径重新定向电池单体流出物,以及模块通气,其流体耦合到期望的通气路径并且被配置为引导电池单元 流出的电池模块。
    • 9. 发明申请
    • BATTERY SYSTEMS AND METHODS FOR BI-DIRECTIONAL CURRENT CONTROL
    • 用于双向电流控制的电池系统和方法
    • US20170001535A1
    • 2017-01-05
    • US15189741
    • 2016-06-22
    • Johnson Controls Technology Company
    • Ronald J. Dulle
    • B60L11/18H02J7/00
    • B60L11/1861B60L15/007B60L2210/30B60L2210/40B60L2240/526B60L2240/529H02J7/0026H02J7/0031H02J7/0068Y02T10/7055
    • A battery system may include an energy storage component the couples to an electrical system. The battery system may also include a first semiconductor switching device and a second semiconductor switching device. The first semiconductor switching device and the second semiconductor switching device each selectively couple the energy storage component to the electrical system. Additionally, the battery system may include a first diode coupled in parallel with the first semiconductor switching device and a second diode coupled in parallel with the second semiconductor switching device. Further, the battery system may include a battery management system that controls operation of the first semiconductor switching device and the second semiconductor switching device to selectively couple the energy storage component to the electrical system. The battery management system may selectively couple the energy storage component to the electrical system based on an output current measurement of the energy storage component.
    • 电池系统可以包括耦合到电气系统的能量存储部件。 电池系统还可以包括第一半导体开关器件和第二半导体开关器件。 第一半导体开关器件和第二半导体开关器件各自选择性地将能量存储部件耦合到电气系统。 另外,电池系统可以包括与第一半导体开关器件并联耦合的第一二极管和与第二半导体开关器件并联耦合的第二二极管。 此外,电池系统可以包括电池管理系统,其控制第一半导体开关装置和第二半导体开关装置的操作以选择性地将能量存储部件耦合到电气系统。 电池管理系统可以基于能量存储部件的输出电流测量来选择性地将能量存储部件耦合到电气系统。