INTEGRATED MAGNETIC AND COMPOSITE SUBSTRATE WITH INCORPORATED COMPONENTS

    公开(公告)号:US20190058410A1

    公开(公告)日:2019-02-21

    申请号:US16168123

    申请日:2018-10-23

    Abstract: A magnetic device assembly is provided for maximizing the size of the magnetic components for a predetermined power converter module by co-locating and sharing input, output, and auxiliary terminals between the substrates for the power converter and the magnetic components. Wherein complete power module is the result of constructing the separate constituent parts which include an integrated magnetic substrate, magnetic elements mounted therein, a power converter substrate, associated incorporated components located top and bottom on the power converter substrate, a composite mechanical footprint as defined by the mechanical extents of the integrated magnetic substrate and power converter substrate, and a composite electrical pinout as defined by the input-output pins which are coincident to and co-located as those of the integrated magnetic and power converter substrates.

    CLAMP FOR A PIPE ASSEMBLY, AN ENGAGEMENT DEVICE FOR THE CLAMP, AND A PIPE ASSEMBLY HAVING THE CLAMP
    5.
    发明申请
    CLAMP FOR A PIPE ASSEMBLY, AN ENGAGEMENT DEVICE FOR THE CLAMP, AND A PIPE ASSEMBLY HAVING THE CLAMP 审中-公开
    用于夹具的夹具,夹具的接合装置以及具有夹子的管道组件

    公开(公告)号:US20130119656A1

    公开(公告)日:2013-05-16

    申请号:US13810136

    申请日:2010-07-15

    Applicant: James Lee

    Inventor: James Lee

    CPC classification number: F16L37/18 F16B7/1418

    Abstract: A clamp (106) for a pipe assembly (101) having an adjustable effective length is disclosed. The clamp (106) comprises: a clamp body (107) configured to be clamped to the pipe assembly (101) and includes an engagement device (233; 234) having a channel (301); and a handle (108) pivotably connected to the clamp body (107) and includes an engagement member (227; 229). The handle 108 is pivotable between a first position in which the engagement member (227; 229) engages with the channel (301) of the engagement device (233; 234) to maintain the position of the handle relative to the clamp body whilst allowing free adjustment of the effective length of the pipe assembly, and a second position in which the engagement member is disengaged from the channel to tighten the clamp body. An engagement device (233; 234) for use in the clamp (106), and a pipe assembly (101) having an adjustable effective length and including the clamp (106) are also disclosed.

    Abstract translation: 公开了一种用于具有可调整有效长度的管道组件(101)的夹具(106)。 夹具(106)包括:夹具(107),其被构造成夹紧到管组件(101)并且包括具有通道(301)的接合装置(233; 234); 以及可枢转地连接到所述夹具主体(107)并且包括接合构件(227; 229)的手柄(108)。 手柄108可在第一位置和第二位置之间枢转,其中接合构件(227; 229)与接合装置(233; 234)的通道(301)接合,以保持手柄相对于夹具本体的位置,同时允许自由 调整管组件的有效长度,以及第二位置,其中接合构件与通道分离以紧固夹具主体。 还公开了一种用于夹具(106)中的接合装置(233; 234)和具有可调节有效长度并包括夹具(106)的管道组件(101)。

    FABRIC CONNECTOR FOR SENSING OBJECT PROXIMITY
    10.
    发明申请
    FABRIC CONNECTOR FOR SENSING OBJECT PROXIMITY 审中-公开
    用于传感对象接近的织物连接器

    公开(公告)号:US20120069486A1

    公开(公告)日:2012-03-22

    申请号:US13321943

    申请日:2009-06-08

    Abstract: A fabric connector for sensing object proximity is provided. The fabric connector comprises a sensing layer (23), an insulating layer (22) and a yarn (26). The sensing layer has at least one connection region (233a, 233b, 233c, 233d) and a disconnection region. The at least one connection region (233a, 233b, 233c, 233d) has a capacitance value and is formed with conductive fabric. The insulation layer (22) which is formed with insulating fabric is disposed below the sensing layer (23). The yarn (26) is formed with conductive material and is configured to electrically connect to the at least one connection region (233a, 233b, 233c, 233d) of the sensing layer (23) and a sensor (25). The sensor (25) senses a variation in the capacitance value of the at least one connection region (233a, 233b, 233c, 233d) in accordance with object proximity.

    Abstract translation: 提供了用于感测物体接近度的织物连接器。 织物连接器包括感测层(23),绝缘层(22)和纱线(26)。 感测层具有至少一个连接区域(233a,233b,233c,233d)和断开区域。 所述至少一个连接区域(233a,233b,233c,233d)具有电容值并且由导电织物形成。 由绝缘织物形成的绝缘层(22)设置在感测层(23)的下方。 纱线(26)由导电材料形成,并且构造成电连接到感测层(23)的至少一个连接区域(233a,233b,233c,233d)和传感器(25)。 传感器(25)根据物体的接近度感测至少一个连接区域(233a,233b,233c,233d)的电容值的变化。

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