SYSTEMS AND METHODS FOR PROVIDING SURFACE CONNECTIVITY OF ORIENTED CONDUCTIVE CHANNELS
    4.
    发明申请
    SYSTEMS AND METHODS FOR PROVIDING SURFACE CONNECTIVITY OF ORIENTED CONDUCTIVE CHANNELS 有权
    用于提供面向导通通道的表面连接的系统和方法

    公开(公告)号:US20140262446A1

    公开(公告)日:2014-09-18

    申请号:US14209213

    申请日:2014-03-13

    CPC classification number: H05K1/0296 C09J9/02 C25D13/00 H01B1/20 H01B1/22 H01B1/24

    Abstract: An electrically conductive composite is disclosed that includes a dielectric material having a first side and a second side, conductive particles within the dielectric material layer, and a discontinuous layer of a conductive material on a first side of the dielectric layer. The conductive particles are aligned to form a plurality of conductive paths from the first side to the second side of the dielectric material, and each of the conductive paths is formed of at least a plurality of conductive particles. The discontinuous layer includes a plurality of non-mutually connected portions that cover portions of, but not all of, the first side of the dielectric material such that exposed portions of the underlying first side of the dielectric material remain exposed through the discontinuous layer, yet the discontinuous layer facilitates the electronic coupling together of a plurality of the conductive paths from the first side to the second side of the dielectric material.

    Abstract translation: 公开了一种导电复合材料,其包括具有第一侧和第二侧的介电材料,介电材料层内的导电颗粒,以及介电层第一侧上的导电材料的不连续层。 导电颗粒被对准以形成从电介质材料的第一侧到第二侧的多个导电路径,并且每个导电路径由至少多个导电颗粒形成。 不连续层包括多个非相互连接的部分,其覆盖电介质材料的第一侧的部分但不全部,使得介电材料的下面的第一侧的暴露部分保持通过不连续的层露出,但是 不连续层有助于从电介质材料的第一侧到第二侧的多个导电路径的电子耦合。

    SYSTEMS AND METHODS FOR PROVIDING SURFACE CONNECTIVITY OF ORIENTED CONDUCTIVE CHANNELS
    7.
    发明申请
    SYSTEMS AND METHODS FOR PROVIDING SURFACE CONNECTIVITY OF ORIENTED CONDUCTIVE CHANNELS 审中-公开
    用于提供面向导通通道的表面连接的系统和方法

    公开(公告)号:US20150282312A1

    公开(公告)日:2015-10-01

    申请号:US13834948

    申请日:2013-03-15

    Abstract: An electrically conductive composite is disclosed that includes a dielectric material having a first side and a second side, conductive particles within the dielectric material layer, and a discontinuous layer of a conductive material on a first side of the dielectric layer. The conductive particles are aligned to form a plurality of conductive paths from the first side to the second side of the dielectric material, and each of the conductive paths is formed of at least a plurality of conductive particles. The discontinuous layer includes a plurality of non-mutually connected portions that cover portions of, but not all of, the first side of the dielectric material such that exposed portions of the underlying first side of the dielectric material remain exposed through the discontinuous layer, yet the discontinuous layer facilitates the electronic coupling together of a plurality of the conductive paths from the first side to the second side of the dielectric material.

    Abstract translation: 公开了一种导电复合材料,其包括具有第一侧和第二侧的介电材料,介电材料层内的导电颗粒,以及介电层第一侧上的导电材料的不连续层。 导电颗粒被对准以形成从电介质材料的第一侧到第二侧的多个导电路径,并且每个导电路径由至少多个导电颗粒形成。 不连续层包括多个非相互连接的部分,其覆盖电介质材料的第一侧的部分但不全部,使得介电材料的下面的第一侧的暴露部分保持通过不连续的层露出,但是 不连续层有助于从电介质材料的第一侧到第二侧的多个导电路径的电子耦合。

    SYSTEMS AND METHODS FOR PROVIDING OVERCHARGE PROTECTION IN CAPACITIVE COUPLED BIOMEDICAL ELECTRODES
    9.
    发明申请
    SYSTEMS AND METHODS FOR PROVIDING OVERCHARGE PROTECTION IN CAPACITIVE COUPLED BIOMEDICAL ELECTRODES 有权
    在电容耦合生物医学电极中提供超大规模保护的系统和方法

    公开(公告)号:US20140124711A1

    公开(公告)日:2014-05-08

    申请号:US14094993

    申请日:2013-12-03

    Abstract: An alternating electric field responsive biomedical composite is disclosed that provides capacitive coupling through the composite. The biomedical composite includes a binder material, a polar material that is substantially dispersed within the binder material, and electrically conductive particles within the binder material. The polar material is responsive to the presence of an alternating electric field, and the electrically conductive particles are not of sufficient concentration to form a conductive network through the composite unless and until the composite becomes overcharged.

    Abstract translation: 公开了一种交替电场响应生物医学复合材料,其通过复合材料提供电容耦合。 生物医学复合材料包括粘合剂材料,基本上分散在粘合剂材料内的极性材料和粘合剂材料内的导电颗粒。 极性材料响应于交变电场的存在,并且导电颗粒不具有足够的浓度以通过复合材料形成导电网络,除非并且直到复合材料变得过度充电。

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