2007Unpublished venueRequires access

Transmission Line Characteristics of a CNT-based Vertical Interconnect Scheme

Chee Wee Tan, Jianmin Miao

Open publisher page 2 citations

Abstract

The transmission line behavior of a proposed CNT-based coaxial vertical interconnect scheme is studied while a nanotransmission line model for the CNT interconnect scheme is also proposed. Using copper as a benchmark, a transmission line performance evaluation is carried out, which considers the size and skin effects on its electrical resistivity. As a feature of 1D systems, the total inductance of the proposed CNT coaxial via is dominated by its kinetic inductance while the total capacitance is determined by its lower electrostatic capacitance value. For the frequency response, the CNT via scheme does not perform as well as its copper counterpart. However, the SWCNT via scheme can rival the copper one in the S21parameter. An exciting range of applications awaits CNTs if new technological advancements can be harvested to reduce their resistance and inductance.

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What this paper is about

The transmission line behavior of a proposed CNT-based coaxial vertical interconnect scheme is studied while a nanotransmission line model for the CNT interconnect scheme is also proposed. Using copper as a benchmark, a transmission line performance evaluation is carried out, which considers the size and skin effects on its electrical resistivity. As a feature of 1D systems, the total inductance of the proposed CNT coaxial via is dominated by its kinetic inductance while the total capacitance is determined by its lower electrostatic capacitance value. For the frequency response, the CNT via scheme does not perform as well as its copper counterpart. However, the SWCNT via scheme can rival the copper one in the S21parameter. An exciting range of applications awaits CNTs if new technological advancements can be harvested to reduce their resistance and inductance.

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Available abstract

The transmission line behavior of a proposed CNT-based coaxial vertical interconnect scheme is studied while a nanotransmission line model for the CNT interconnect scheme is also proposed. Using copper as a benchmark, a transmission line performance evaluation is carried out, which considers the size and skin effects on its electrical resistivity. As a feature of 1D systems, the total inductance of the proposed CNT coaxial via is dominated by its kinetic inductance while the total capacitance is determined by its lower electrostatic capacitance value. For the frequency response, the CNT via scheme does not perform as well as its copper counterpart. However, the SWCNT via scheme can rival the copper one in the S21parameter. An exciting range of applications awaits CNTs if new technological advancements can be harvested to reduce their resistance and inductance.

Key concepts: Inductance, Capacitance, Kinetic inductance, Interconnection, Transmission line, Electric power transmission, Coaxial, Line (geometry)

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