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    • 4. 发明授权
    • System and method for sealing battery separator
    • 密封电池分离器的系统和方法
    • US08551642B2
    • 2013-10-08
    • US13037972
    • 2011-03-01
    • Adam J. MorganIgnacio ChiBrian L. SchmidtBenjamin J. HaaslJon Schell
    • Adam J. MorganIgnacio ChiBrian L. SchmidtBenjamin J. HaaslJon Schell
    • H01M2/00
    • H01M2/1653H01M2/06H01M2/08H01M2/1673H01M2/361H01M2/365H01M4/405H01M4/505H01M10/058
    • One embodiment of the present subject matter includes a battery having a stack of substantially planar battery electrodes, the stack including a first electrode including a first tab, and a second electrode including a second tab, with the first tab electrically connected to the second tab. The embodiment includes a first separator layer and a second separator layer sandwiching the first electrode, with the edges of the first separator layer and the second separator connected with a weld, the first separator layer and the second separator layer defining an interior space in which the first electrode is disposed, with the first tab extending outside the interior space. The embodiment includes a battery housing having electrolyte disposed therein, the housing including at least a first aperture and a feedthrough aperture; a lid conformed and sealed to the first aperture; and a feedthrough conformed and sealed to the feedthrough aperture.
    • 本主题的一个实施例包括具有基本上平面的电池电极的堆叠的电池,该堆叠包括包括第一突出部的第一电极和包括第二突出部的第二电极,其中第一突出部电连接到第二突出部。 该实施例包括夹着第一电极的第一隔离层和第二隔离层,第一隔板层和第二隔板的边缘与焊缝相连,第一隔离层和第二隔离层限定内部空间, 第一电极被布置,第一突出部延伸到内部空间的外部。 该实施例包括其中设置有电解质的电池壳体,该壳体至少包括第一孔和馈通孔; 盖子适合并密封到第一孔; 并且馈通符合并密封到馈通孔。
    • 5. 发明申请
    • SYSTEM AND METHOD FOR SEALING BATTERY SEPARATOR
    • 密封电池分离器的系统和方法
    • US20110151332A1
    • 2011-06-23
    • US13037972
    • 2011-03-01
    • Adam MorganIgnacio ChiBrian L. SchmidtBenjamin J. HaaslJon Schell
    • Adam MorganIgnacio ChiBrian L. SchmidtBenjamin J. HaaslJon Schell
    • H01M2/14H01M10/04
    • H01M2/1653H01M2/06H01M2/08H01M2/1673H01M2/361H01M2/365H01M4/405H01M4/505H01M10/058
    • One embodiment of the present subject matter includes a battery having a stack of substantially planar battery electrodes, the stack including a first electrode including a first tab, and a second electrode including a second tab, with the first tab electrically connected to the second tab. The embodiment includes a first separator layer and a second separator layer sandwiching the first electrode, with the edges of the first separator layer and the second separator connected with a weld, the first separator layer and the second separator layer defining an interior space in which the first electrode is disposed, with the first tab extending outside the interior space. The embodiment includes a battery housing having electrolyte disposed therein, the housing including at least a first aperture and a feedthrough aperture; a lid conformed and sealed to the first aperture; and a feedthrough conformed and sealed to the feedthrough aperture.
    • 本主题的一个实施例包括具有基本上平面的电池电极的堆叠的电池,该堆叠包括包括第一突出部的第一电极和包括第二突出部的第二电极,其中第一突出部电连接到第二突出部。 该实施例包括夹着第一电极的第一隔离层和第二隔离层,第一隔板层和第二隔板的边缘与焊缝相连,第一隔离层和第二隔离层限定内部空间, 第一电极被布置,第一突出部延伸到内部空间的外部。 该实施例包括其中设置有电解质的电池壳体,该壳体至少包括第一孔和馈通孔; 盖子适合并密封到第一孔; 并且馈通符合并密封到馈通孔。
    • 6. 发明授权
    • System and method for sealing battery separator
    • 密封电池分离器的系统和方法
    • US07901808B2
    • 2011-03-08
    • US11264966
    • 2005-11-02
    • Adam MorganIgnacio ChiBrian L. SchmidtBenjamin J. HaaslJon Schell
    • Adam MorganIgnacio ChiBrian L. SchmidtBenjamin J. HaaslJon Schell
    • H01M2/16
    • H01M2/1653H01M2/06H01M2/08H01M2/1673H01M2/361H01M2/365H01M4/405H01M4/505H01M10/058
    • One embodiment of the present subject matter includes a battery having a stack of substantially planar battery electrodes, the stack including a first electrode including a first tab, and a second electrode including a second tab, with the first tab electrically connected to the second tab. The embodiment includes a first separator layer and a second separator layer sandwiching the first electrode, with the edges of the first separator layer and the second separator connected with a weld, the first separator layer and the second separator layer defining an interior space in which the first electrode is disposed, with the first tab extending outside the interior space. The embodiment includes an battery housing having electrolyte disposed therein, the housing including at least a first aperture and a feedthrough aperture; a lid conformed and sealed to the first aperture; and a feedthrough conformed and sealed to the feedthrough aperture.
    • 本主题的一个实施例包括具有基本上平面的电池电极的堆叠的电池,该堆叠包括包括第一突出部的第一电极和包括第二突出部的第二电极,其中第一突出部电连接到第二突出部。 该实施例包括夹着第一电极的第一隔离层和第二隔离层,第一隔板层和第二隔板的边缘与焊缝相连,第一隔离层和第二隔离层限定内部空间, 第一电极被布置,第一突出部延伸到内部空间的外部。 该实施例包括其中设置有电解质的电池壳体,该壳体至少包括第一孔和馈通孔; 盖子适合并密封到第一孔; 并且馈通符合并密封到馈通孔。
    • 9. 发明授权
    • Method and apparatus for applying a commutation advance automatically in a brushless DC motor
    • 在无刷直流电动机中自动应用换向提前的方法和装置
    • US08680799B2
    • 2014-03-25
    • US13108725
    • 2011-05-16
    • John K. RoteSeil OhBrian L. Schmidt
    • John K. RoteSeil OhBrian L. Schmidt
    • H02P6/18
    • H02P6/182H02P6/157
    • To achieve peak acoustic and power performance, the coil or applied current should be in phase or substantially aligned with the back electromotive force (back-EMF) voltage. However, there are generally phase differences between the applied current and back-EMF voltage that are induced by the impedance of the brushless DC motor (which can vary based on conditions, such as temperature and motor speed). Traditionally, compensation for these phase differences was provided manually and on an as-needed basis. Here, however, a system and method are provided that automatically perform a commutation advance by incrementally adjusting a drive signal over successive commutation cycles when the applied current and back-EMF voltage are misaligned.
    • 为了实现峰值声功率性能,线圈或施加电流应与反电动势(反电动势)电压同相或基本对齐。 然而,由无刷直流电动机的阻抗引起的施加的电流和反电动势电压之间通常存在相位差(其可以基于诸如温度和电动机速度的条件而变化)。 传统上,这些阶段差异的补偿手工提供,并根据需要提供。 然而,这里提供了一种系统和方法,当所施加的电流和反电动势电压不对准时,通过在连续换向循环上逐渐调节驱动信号来自动执行换向提前。
    • 10. 发明授权
    • Method and apparatus for openings in a capacitor case
    • 用于电容器壳体中的开口的方法和装置
    • US07375949B2
    • 2008-05-20
    • US11567940
    • 2006-12-07
    • A. Gordon BarrJames A. TallerBrian L. Schmidt
    • A. Gordon BarrJames A. TallerBrian L. Schmidt
    • H01G4/228H01G9/10
    • H01G9/008H01G9/10H01G9/14Y10T29/417
    • One embodiment of the present subject matter includes an apparatus which includes a capacitor stack, including at least one substantially planar capacitor electrode, a case having a first opening and a second opening, the first opening sized for passage of the capacitor stack, the second opening defined by walls having a first thickness, a cover substantially conforming to the first opening and sealingly connected to the first opening and a plate substantially conforming to the second opening, the plate sealingly connected to the second opening, the plate having a second thickness which is approximately greater than the first thickness of the walls defining the second opening, wherein the capacitor stack is disposed in the case.
    • 本主题的一个实施例包括一种装置,其包括电容器堆叠,其包括至少一个基本上平面的电容器电极,具有第一开口和第二开口的壳体,第一开口的尺寸设置成用于电容器堆叠的通过,第二开口 由具有第一厚度的壁限定,基本上符合第一开口并密封地连接到第一开口的盖和基本上符合第二开口的板,密封地连接到第二开口的板,该板具有第二厚度, 大致大于限定第二开口的壁的第一厚度,其中电容器叠层设置在壳体中。