PRINTED CIRCUIT BOARD LAYERING CONFIGURATION FOR VERY HIGH BANDWIDTH INTERCONNECT
    1.
    发明申请
    PRINTED CIRCUIT BOARD LAYERING CONFIGURATION FOR VERY HIGH BANDWIDTH INTERCONNECT 审中-公开
    印刷电路板层叠配置非常高的带宽互连

    公开(公告)号:WO1998002935A1

    公开(公告)日:1998-01-22

    申请号:PCT/US1997011925

    申请日:1997-07-07

    Abstract: A ground plane interconnection is provided on first and second substrates (100, 112), the first and second substrates (100, 112) having respective first and second ground layers (110, 118) disposed on a first surface of each of the first and second substrates (100, 112). A ground conductor strip (120) is disposed on a second surface of the second substrate (112), wherein the ground conductor strip (120) includes a plurality of electrically conductive members (124) which pass through the second substrate (112) to electrically couple the ground conductor strip (120) and the second ground layer (118). The first substrate (100) is positioned with respect to the second substrate (112) such that when the first substrate (100) is placed proximate the second substrate (112), the ground conductor strip (120) electrically couples the first and second ground layers (110, 118) to form a continuous ground plane. A method of forming a reduced-inductance continuous ground plane is also provided.

    Abstract translation: 接地平面互连设置在第一和第二基板(100,112)上,第一和第二基板(100,112)具有相应的第一和第二接地层(110,118),其设置在第一和第二基板 第二基板(100,112)。 接地导体条(120)设置在第二基板(112)的第二表面上,其中接地导体条(120)包括多个导电部件(124),其通过第二基板(112)以电 耦合接地导体条(120)和第二接地层(118)。 第一衬底(100)相对于第二衬底(112)定位,使得当第一衬底(100)靠近第二衬底(112)放置时,接地导体条(120)电耦合第一和第二接地 层(110,118)以形成连续的接地平面。 还提供了形成减小电感的连续接地平面的方法。

    PRINTED CIRCUIT BOARD LAYERING CONFIGURATION FOR VERY HIGH BANDWIDTH INTERCONNECT
    2.
    发明公开
    PRINTED CIRCUIT BOARD LAYERING CONFIGURATION FOR VERY HIGH BANDWIDTH INTERCONNECT 失效
    对层构造与非常高的带宽连接电路板

    公开(公告)号:EP0914688A1

    公开(公告)日:1999-05-12

    申请号:EP97933340.0

    申请日:1997-07-07

    Inventor: HAMRE, John, D.

    Abstract: A ground plane interconnection is provided on first and second substrates (100, 112), the first and second substrates (100, 112) having respective first and second ground layers (110, 118) disposed on a first surface of each of the first and second substrates (100, 112). A ground conductor strip (120) is disposed on a second surface of the second substrate (112), wherein the ground conductor strip (120) includes a plurality of electrically conductive members (124) which pass through the second substrate (112) to electrically couple the ground conductor strip (120) and the second ground layer (118). The first substrate (100) is positioned with respect to the second substrate (112) such that when the first substrate (100) is placed proximate the second substrate (112), the ground conductor strip (120) electrically couples the first and second ground layers (110, 118) to form a continuous ground plane. A method of forming a reduced-inductance continuous ground plane is also provided.

    Abstract translation: 接地平面互连的第一和第二基板上,具有设置在每个第一和第二基板的第一表面respectivement第一和第二接地层的第一和第二衬底。 接地导体带设置在第二基板的第二表面,worin接地导体条包括导电构件穿过所述第二基板以电耦合接地导体条和所述第二接地层的复数。 所述第一基板相对于第二基板搜索定位的确当第一基片被置于靠近第二基板,接地导体条电耦合所述第一和第二接地层,以形成一个连续的接地平面。 因此提供了一种形成减小电感连续的接地平面的方法。

    METHOD AND SYSTEM FOR ARBITRATING PATH CONTENTION
    3.
    发明公开
    METHOD AND SYSTEM FOR ARBITRATING PATH CONTENTION 审中-公开
    方法和系统任意TRAJEKTREIBUNG

    公开(公告)号:EP1038230A1

    公开(公告)日:2000-09-27

    申请号:EP98962112.3

    申请日:1998-12-15

    CPC classification number: G06F13/36

    Abstract: A method and system (10) for transmitting data among a plurality of cards (12a, 12b) in a crossbar interconnect network (30) having a plurality of cards (12a, 12b) each having source paths (16) and destination paths (14) utilizes a plurality of sources arbitrators (22) each associated with the cards. The source arbitrators generate connection request commands from the source paths requesting access to a desired destination of the destination paths and broadcasts the request for receipt by all of the destination arbitrators (24). The destination arbitrators (24) associated with the desired destination path captures the connection request command and processes the command based on whether or not the desired destination path is busy. If the desired destination path is not busy, the destination arbitrator (24) generates a connection command requesting a connection be made between the source path and the desired destination path. If the desired destination path is busy, the destination arbitrator (24) stores the connection request command in one of the plurality of buffers (20) until the desired destination path is available.

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