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    • 22. 发明授权
    • Enclosure foot assembly and manufacture
    • 封闭脚组件和制造
    • US07697283B2
    • 2010-04-13
    • US12241016
    • 2008-09-29
    • Dinesh MathewBrett William DegnerThomas W. Wilson, Jr.John Brock
    • Dinesh MathewBrett William DegnerThomas W. Wilson, Jr.John Brock
    • G06F1/16
    • H05K5/0234A47B91/00G06F1/181Y10T29/49826
    • Wall portions, such as wall portions of electronic device housing components, are provided with one or more foot assemblies. A foot assembly can be formed by creating an internal cavity in an internal surface of the wall portion, an external cavity in an external surface of the wall portion, and a hollow passageway extending through the wall portion and between the cavities. The foot assembly can be completed by inserting a foot at least partially through the external cavity and hollow passageway and into the internal cavity, such that an external portion of the foot is at least partially contained within and contacting the surfaces of the external cavity, and such that an internal portion of the foot is at least partially contained within the internal cavity. A portion of the foot may be deformable to at least partially conform to the surfaces defining the internal cavity.
    • 诸如电子设备外壳部件的壁部分的壁部分设置有一个或多个脚组件。 脚组件可以通过在壁部的内表面中形成内腔,在壁部的外表面中形成外腔,以及延伸穿过壁部和空腔之间的中空通道。 足部组件可以通过将脚部至少部分地穿过外部空腔和中空通道插入内部空腔中而使脚部完全插入,使得脚部的外部部分至少部分地容纳在外部空腔的表面内并与外部空腔的表面接触, 使得脚的内部部分至少部分地包含在内部空腔内。 脚的一部分可以是可变形的,以至少部分地符合限定内腔的表面。
    • 24. 发明授权
    • Integrated frame battery cell
    • 集成框架电池
    • US08518569B2
    • 2013-08-27
    • US12714737
    • 2010-03-01
    • R. Sean MurphyThomas W. Wilson, Jr.
    • R. Sean MurphyThomas W. Wilson, Jr.
    • H01M2/12H01M2/36H01M6/12
    • H01M10/0525H01M2/0215H01M2/0277H01M2/0285H01M2/0287H01M2/1027H01M10/425
    • An electrolyte containment structure for an electrode jelly roll and electrolyte in a portable power source is described. The electrolyte containment structure comprises metal foil, such as metal foil sleeve, coupled to and partially surrounding a rigid frame. The rigid frame can protect the electrode jelly roll edges from crush events. To prevent shorts, the metal foil can be coated in plastic, which can insulate the metal foil from the electrode jelly roll. Further, the plastic can serve as a bonding and sealing agent. For instance, the metal foil can be coupled to the rigid frame using a thermal bonding method involving melting of the plastic. The rigid frame can provide a platform for connector pads and safety circuitry associated with the portable power source. The connector pads and safety circuitry can be assembled as modular components, which can simplify the assembly process The containment structure provides features associated with a pouch cell battery design, such as a light-weight metal foil pouch, but can be utilized in a portable computing device without being enclosed in a hard casing traditionally associated with pouch cell battery designs.
    • 描述了用于便携式电源中的电极果冻辊和电解质的电解质容纳结构。 电解质容纳结构包括金属箔,例如金属箔套筒,耦合到并部分地围绕刚性框架。 刚性框架可以保护电极果冻卷边不受挤压事件的影响。 为了防止短路,金属箔可以以塑料涂覆,这可以使金属箔与电极果冻辊绝缘。 此外,塑料可以用作粘结和密封剂。 例如,金属箔可以使用涉及熔化塑料的热粘合方法耦合到刚性框架。 刚性框架可以为与便携式电源相关联的连接器焊盘和安全电路提供平台。 连接器垫和安全电路可以组装为模块化部件,这可以简化组装过程。容纳结构提供与袋式电池电池设计相关的特征,例如轻质金属箔袋,但可用于便携式计算 装置,而不被封装在传统上与袋式电池电池设计相关联的硬壳中。