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Carbon Fiber Electrical Interconnects

机译:碳纤维电气互连

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This paper describes research into carbon fiber, in forms of carbon fiber composites (CFCs) and carbon fiber tow, as a new material for electronic interconnects. Carbon fiber has been routinely used in structural applications in, for example air transportation, aerospace, and consumer applications. More recently they have found use in some limited electrical applications. In this study, we provide electrical properties data which suggests that carbon fiber-based interconnects can be applied across different packaging levels, such as package-to-board and board-to-board interconnections. Each interconnect member can consist of a large number of individual carbon fibers which can act cooperatively to provide a high degree of reliability and predictability to the interconnect function. These novel interconnects can join to conventional circuitry by pressure/physical contact, solder, or conductive adhesive. Multiple interconnect members can be integrated to provide multiple In/Output interconnections within a single assembly. To achieve enhanced conductivity and solder ability, individual carbon fibers can be coated with a thin layer of metal, such as nickel. Thermal expansion and thermal stability characteristics are also presented in this report and used to support the proposition that carbon fiber-based composites are a candidate material for the next generation of electronic interconnects.
机译:本文以碳纤维复合材料(CFC)和碳纤维丝束的形式描述了碳纤维的研究,以作为电子互连的新材料。碳纤维已常规用于结构应用中,例如航空运输,航空航天和消费应用。最近,它们已在某些有限的电气应用中使用。在这项研究中,我们提供了电性能数据,这些数据表明基于碳纤维的互连可以应用于不同的封装级别,例如封装到板和板到板的互连。每个互连构件可以由大量单独的碳纤维组成,这些碳纤维可以协同作用以为互连功能提供高度的可靠性和可预测性。这些新颖的互连可以通过压力/物理接触,焊料或导电粘合剂连接到常规电路。可以集成多个互连构件,以在单个组件中提供多个In / Output互连。为了获得增强的导电性和焊接能力,可以在单个碳纤维上覆盖一层金属薄层,例如镍。该报告还介绍了热膨胀和热稳定性特征,并用于支持以下观点:碳纤维基复合材料是下一代电子互连的候选材料。

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