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    • 76. 发明申请
    • SEMI-SOLID UNBALANCED AUDIO CABLE
    • 半固体不平衡音频电缆
    • US20150179306A1
    • 2015-06-25
    • US14163824
    • 2014-01-24
    • Belden Inc.
    • Galen Gareis
    • H01B7/30
    • H01B7/30H01B7/1895H01B11/04H01B11/12H01B11/1847H01B11/1886
    • The present disclosure describes implementations of audio cables including a conductor spirally wrapped in a non-conductive thread to centrally position the conductor within a channel comprising mostly air, reducing propagation delay and self-inductance compared to cables utilizing non-air dielectric materials that completely surround the conductor. A coaxial cable includes a first conductor having a first diameter, and a non-conductive thread spirally wrapped around the center conductor, the non-conductive thread having a second diameter. A first jacket surrounds the center conductor and thread, having an inner diameter approximately equal to the first diameter plus twice the second diameter. A second conductor surrounds the first jacket and/or the center conductor and thread. In many implementations, the first diameter is less than the second diameter.
    • 本公开描述了音频电缆的实施方式,其包括螺旋地缠绕在非导电螺纹中的导体,以将导体在主要包括空气的通道内居中定位,从而减少传播延迟和自感,与使用完全环绕的非空气介电材料的电缆相比 导体。 同轴电缆包括具有第一直径的第一导体和螺旋地卷绕在中心导体周围的非导电线,非导电线具有第二直径。 第一护套围绕中心导体和螺纹,其内径大致等于第一直径加上第二直径的两倍。 第二导体围绕第一护套和/或中心导体和线。 在许多实施方式中,第一直径小于第二直径。
    • 80. 发明申请
    • Nanoporous Metal Multiple Electrode Array and Method of Making Same
    • 纳米多孔金属多电极阵列及其制作方法
    • US20130245416A1
    • 2013-09-19
    • US13822747
    • 2011-09-13
    • Martin L. YarmushErkin SekerYevgeny Berdichevsky
    • Martin L. YarmushErkin SekerYevgeny Berdichevsky
    • H01B7/30
    • H01B7/30A61B5/04001A61B5/0492G01N33/4836
    • A method is disclosed for fabricating a low-impedance nanoporous metal multiple electrode array for measuring electrophysiology activity. A patterned photoresist is applied to a substrate, in which the patterned photoresist corresponds to a pattern of the nanoporous metal multiple electrode array. A metal alloy including a sacrificial alloying element is deposited in the pattern of the nanoporous metal electrode array. The patterned photoresist is removed to expose the metal alloy as deposited. At least part of the sacrificial alloying element is removed from the metal alloy to create nanoporous metal electrode tips thereby forming the nanoporous metal multiple electrode array. The resultant nanoporous metal multiple electrode array has improved impedance characteristics in comparison to conventional multiple electrode arrays.
    • 公开了一种用于制造用于测量电生理活性的低阻抗纳米多孔金属多电极阵列的方法。 将图案化的光致抗蚀剂施加到基底,其中图案化的光致抗蚀剂对应于纳米多孔金属多电极阵列的图案。 包括牺牲合金元素的金属合金以纳米多孔金属电极阵列的图案沉积。 去除图案化的光致抗蚀剂以露出沉积的金属合金。 牺牲合金元素的至少一部分从金属合金去除以产生纳米多孔金属电极末端,从而形成纳米多孔金属多电极阵列。 与常规多电极阵列相比,所得纳米多孔金属多电极阵列具有改进的阻抗特性。