Elastic encapsulated carbon nanotube based electrical contacts
    5.
    发明授权
    Elastic encapsulated carbon nanotube based electrical contacts 有权
    弹性封装碳纳米管基电触点

    公开(公告)号:US08872176B2

    公开(公告)日:2014-10-28

    申请号:US13253665

    申请日:2011-10-05

    摘要: Contacts of an electrical device can be made of carbon nanotube columns. Contact tips can be disposed at ends of the columns. The contact tips can be made of an electrically conductive paste applied to the ends of the columns and cured (e.g., hardened). The paste can be applied, cured, and/or otherwise treated to make the contact tips in desired shapes. The carbon nanotube columns can be encapsulated in an elastic material that can impart the dominant mechanical characteristics, such as spring characteristics, to the contacts. The contacts can be electrically conductive and can be utilized to make pressure-based electrical connections with electrical terminals or other contact structures of another device.

    摘要翻译: 电气装置的触点可以由碳纳米管柱制成。 接触尖端可以放在柱的末端。 接触尖端可以由施加到柱的端部并被固化(例如硬化)的导电浆料制成。 可以施加,固化和/或以其他方式处理糊状物以使接触尖端成为所需形状。 碳纳米管柱可以被包封在弹性材料中,该弹性材料可以赋予触点更大的机械特性,例如弹簧特性。 触点可以是导电的,并且可以用于与电端子或另一器件的其它接触结构进行基于压力的电连接。

    Carbon nanotube columns and methods of making and using carbon nanotube columns as probes
    6.
    发明授权
    Carbon nanotube columns and methods of making and using carbon nanotube columns as probes 有权
    碳纳米管柱及其制备和使用碳纳米管柱作为探针的方法

    公开(公告)号:US08354855B2

    公开(公告)日:2013-01-15

    申请号:US12632428

    申请日:2009-12-07

    IPC分类号: G01R31/00 G01R31/20 G01R1/067

    摘要: Carbon nanotube columns each comprising carbon nanotubes can be utilized as electrically conductive contact probes. The columns can be grown, and parameters of a process for growing the columns can be varied while the columns grow to vary mechanical characteristics of the columns along the growth length of the columns. Metal can then be deposited inside and/or on the outside of the columns, which can enhance the electrical conductivity of the columns. The metalized columns can be coupled to terminals of a wiring substrate. Contact tips can be formed at or attached to ends of the columns. The wiring substrate can be combined with other electronic components to form an electrical apparatus in which the carbon nanotube columns can function as contact probes.

    摘要翻译: 每个包含碳纳米管的碳纳米管柱可用作导电接触探针。 柱可以生长,并且用于生长柱的方法的参数可以变化,同时柱生长以改变柱沿着生长长度的机械特性。 然后可以将金属沉积在柱的内部和/或外部,这可以增强柱的导电性。 金属化柱可以连接到布线基板的端子。 接触尖端可以形成在柱或端附近。 布线基板可以与其他电子部件组合以形成其中碳纳米管柱可用作接触探针的电气设备。

    ELASTIC ENCAPSULATED CARBON NANOTUBE BASED ELECTRICAL CONTACTS
    7.
    发明申请
    ELASTIC ENCAPSULATED CARBON NANOTUBE BASED ELECTRICAL CONTACTS 有权
    基于碳纳米管的弹性粘合电气联系

    公开(公告)号:US20120086004A1

    公开(公告)日:2012-04-12

    申请号:US13253665

    申请日:2011-10-05

    IPC分类号: H01L23/544 B82Y99/00

    摘要: Contacts of an electrical device can be made of carbon nanotube columns. Contact tips can be disposed at ends of the columns. The contact tips can be made of an electrically conductive paste applied to the ends of the columns and cured (e.g., hardened). The paste can be applied, cured, and/or otherwise treated to make the contact tips in desired shapes. The carbon nanotube columns can be encapsulated in an elastic material that can impart the dominant mechanical characteristics, such as spring characteristics, to the contacts. The contacts can be electrically conductive and can be utilized to make pressure-based electrical connections with electrical terminals or other contact structures of another device.

    摘要翻译: 电气装置的触点可以由碳纳米管柱制成。 接触尖端可以放在柱的末端。 接触尖端可以由施加到柱的端部并被固化(例如硬化)的导电浆料制成。 可以施加,固化和/或以其他方式处理糊状物以使接触尖端成为所需形状。 碳纳米管柱可以被包封在弹性材料中,该弹性材料可以赋予触点更大的机械特性,例如弹簧特性。 触点可以是导电的,并且可以用于与电端子或另一器件的其它接触结构进行基于压力的电连接。

    CARBON NANOTUBE COLUMNS AND METHODS OF MAKING AND USING CARBON NANOTUBE COLUMNS AS PROBES
    8.
    发明申请
    CARBON NANOTUBE COLUMNS AND METHODS OF MAKING AND USING CARBON NANOTUBE COLUMNS AS PROBES 有权
    碳纳米管柱和制备和使用碳纳米管柱作为探针的方法

    公开(公告)号:US20100083489A1

    公开(公告)日:2010-04-08

    申请号:US12632428

    申请日:2009-12-07

    摘要: Carbon nanotube columns each comprising carbon nanotubes can be utilized as electrically conductive contact probes. The columns can be grown, and parameters of a process for growing the columns can be varied while the columns grow to vary mechanical characteristics of the columns along the growth length of the columns. Metal can then be deposited inside and/or on the outside of the columns, which can enhance the electrical conductivity of the columns. The metalized columns can be coupled to terminals of a wiring substrate. Contact tips can be formed at or attached to ends of the columns. The wiring substrate can be combined with other electronic components to form an electrical apparatus in which the carbon nanotube columns can function as contact probes.

    摘要翻译: 每个包含碳纳米管的碳纳米管柱可用作导电接触探针。 柱可以生长,并且用于生长柱的方法的参数可以变化,同时柱生长以改变柱沿着生长长度的机械特性。 然后可以将金属沉积在柱的内部和/或外部,这可以增强柱的导电性。 金属化柱可以连接到布线基板的端子。 接触尖端可以形成在柱或端附近。 布线基板可以与其他电子部件组合以形成其中碳纳米管柱可用作接触探针的电气设备。