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    • 7. 发明授权
    • Data storage module alignment system and method
    • 数据存储模块对齐系统及方法
    • US06317329B1
    • 2001-11-13
    • US09191301
    • 1998-11-13
    • James L. DowdyAlicia G. MercerHerbert J. TanzerDarrel W. PoulterDavid Dickey
    • James L. DowdyAlicia G. MercerHerbert J. TanzerDarrel W. PoulterDavid Dickey
    • H05K700
    • H05K7/1424H05K7/1418
    • A data storage module alignment system and method for use in a data storage module and enclosure system including a module enclosure having a plurality of bay slots and at least one data storage module. The data storage module alignment system comprises at least one alignment guide that is adapted to be mounted at the module enclosure entrance and at least one guide rail that is adapted to be mounted to the data storage module. The alignment guide includes a plurality of guide channels having rounded edges. The guide rail is sized and shaped for receipt within the guide channels. Typically, the alignment guide further includes a plurality of guide flanges that are arranged asymmetrically along the alignment guide. The inner side of each guide flange defines an edge of one of the guide channels and includes chamfers which facilitate initial alignment of the data storage module within one of the bay slots of the module enclosure.
    • 一种用于数据存储模块和机壳系统的数据存储模块对准系统和方法,包括具有多个托架槽和至少一个数据存储模块的模块外壳。 数据存储模块对准系统包括适于安装在模块外壳入口处的至少一个对准引导件和适于安装到数据存储模块的至少一个导轨。 对准引导件包括具有圆形边缘的多个引导通道。 导轨的尺寸和形状适于在导向通道内接收。 通常,对准引导件还包括沿对准引导件非对称布置的多个引导凸缘。 每个引导凸缘的内侧限定一个导向通道的边缘,并且包括倒角,其有助于数据存储模块在模块外壳的一个托架间隙内的初始对准。
    • 8. 发明授权
    • Liquid cooled metallic inductive probe for high power charging
    • 用于高功率充电的液体冷却金属感应探头
    • US5594315A
    • 1997-01-14
    • US237493
    • 1994-04-29
    • Sergio RamosJohn T. HallHerbert J. TanzerWilliam Quon
    • Sergio RamosJohn T. HallHerbert J. TanzerWilliam Quon
    • B60L11/18H01F38/14H02J7/02H02J7/00
    • B60L11/182H01F38/14H02J7/025B60L2230/14B60L2240/36Y02T10/7005Y02T10/7088Y02T90/122Y02T90/14Y10S336/02
    • An inductive charging coupler for use in inductive charging apparatus for charging a battery. The charging coupler is insertable into a charge port that is coupled to the battery. The charge port comprises a housing, an opening into which the charging coupler is inserted, and a secondary core surrounded by secondary windings. The charging coupler comprises a housing, a primary core, a primary winding having an even number of primary turns disposed around the core, and a hollow coolant conducting heat exchanger symmetrically disposed between the primary turns of the primary winding. The heat exchanger is typically them tally bonded to the primary turns of the primary winding by means of heat conducting adhesive or epoxy. The coolant flow passages of the heat exchanger may be configured in several ways. One approach is to construct thin, flat, self-contained flexible bladders made of metal, such as copper. Adjacent turns of the primary winding are bonded directly to the heat exchanger in order to provide good thermal contact, a large heat transfer area, and a very thin profile. Inlet and outlet coolant passages transition from a very thin rectangular cross sectional shape under the turns to a round tube shape, for attachment to a coolant lines within a flexible hose. The metallic heat exchanger is located at the center of a magnetic field created by the windings, which produces no extra loss in the heat exchanger due to induced eddy currents. The present invention is specifically designed for rapid, high rate charging of electric vehicle batteries.
    • 一种感应充电耦合器,用于对电池充电的感应充电装置。 充电耦合器可插入耦合到电池的充电端口。 充电端口包括壳体,插入充电耦合器的开口和由次级绕组包围的次级芯。 充电耦合器包括壳体,初级芯,具有设置在芯周围的偶数个初级绕组的初级绕组,以及对称地设置在初级绕组的初级绕组之间的空心冷却剂导热热交换器。 热交换器通常通过导热粘合剂或环氧树脂与初级绕组的初级匝结合。 热交换器的冷却剂流动通道可以以多种方式配置。 一种方法是构造由金属制成的薄的,平坦的,独立的柔性气囊,例如铜。 初级绕组的相邻匝直接接合到热交换器,以提供良好的热接触,大的传热面积和非常薄的轮廓。 入口和出口冷却剂通道在匝间从非常薄的矩形横截面形状转变为圆管形状,用于附接到柔性软管内的冷却剂管线。 金属热交换器位于由绕组产生的磁场的中心,由于感应的涡流,热交换器不会产生额外的损耗。 本发明专为快速,高速率地充电电动汽车电池设计。
    • 10. 发明授权
    • Sectional ferrite core construction for mechanical stress relief in
inductive charging systems
    • 感应充电系统中机械应力消除的截面铁氧体磁芯结构
    • US5640135A
    • 1997-06-17
    • US238069
    • 1994-04-29
    • John T. HallHerbert J. TanzerGeorge Woody
    • John T. HallHerbert J. TanzerGeorge Woody
    • H01F38/14H01F27/24H01F27/30
    • H01F38/14Y10S336/02
    • An inductive charging coupler for use in an inductive charging system that minimizes damage thereto caused by shock. The charging coupler comprises a housing, and a magnetic core disposed in the housing that is comprised of a plurality of sections. A primary winding is disposed around the magnetic core, A current conductor is coupled to the primary winding for coupling current thereto. By employing smaller sections of ferrite material to form the magnetic core, there is less potential for encountering broad differences in the crystal structure of the ferrite material. These structural differences can cause the ferrite material to be more prone to crack or shatter under stress conditions, such as if the coupler is dropped during use. Also smaller ferrite pieces are lighter than a single piece of ferrite material, which causes lower distributed loads due to a shock. In addition, smaller ferrite pieces allow more surface area contact with housing components or adhesives used to secure the core in the coupler and help dampen shock loads.
    • 用于感应充电系统的感应充电耦合器,其最小化由休克引起的损坏。 充电耦合器包括壳体和设置在壳体中的由多个部分组成的磁芯。 初级绕组设置在磁芯周围。电流导体耦合到初级绕组以将电流耦合到其上。 通过采用铁氧体材料的较小部分来形成磁芯,在铁氧体材料的晶体结构中遇到较大差异的可能性较小。 这些结构差异可能导致铁素体材料在应力条件下更容易发生裂纹或破碎,例如在使用时耦合器掉落。 较小的铁氧体片比单块铁氧体材料更轻,由于冲击而导致较低的分布负载。 此外,较小的铁氧体片允许更多的表面积接触壳体部件或粘合剂,以将芯固定在耦合器中,并有助于减轻冲击负载。