首页> 外文会议>Workshop on Signal Propagation on Interconnects >Comparison of the benefits, from S{sub}iO{sub}2 to ultralow-K dielectric and air spacing introduction, in term of interconnects performances, for the future high speed Ic's in a multicoupled lines system
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Comparison of the benefits, from S{sub}iO{sub}2 to ultralow-K dielectric and air spacing introduction, in term of interconnects performances, for the future high speed Ic's in a multicoupled lines system

机译:从S {Sub} IO {Sub} 2到UltraLow-K电介质和空气间距引入的效益比较,在互连性能中,对于未来的高速IC在多缀线系统中

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Introduction of different low-K to ultra low-K dielectric material in the spacing between neighbour copper interconnects localised on the same level of metallization is analyzed. It is done to evaluate signal integrity such as crosstalk, propagation delay and rise time on a set of several unintentionally coupled Cu lines of micron and nanometer sizes. A full wave analysis based on tangential vector finite element method is implemented in MATLAB environment in order to extract, via a transmission multicoupled line model, the electrically R, L, C, G, L{sub}m, C{sub}m coupled elementary cell. This model with all the mutual impedance and admittance is necessary and more convenient for transient analysis by using commercial software such as Spice or other transient tool. We show that the improvement due to the introduction of low dielectric material can reach more than 200% for the crosstalk and 25% on propagation delay for 1 mm interconnect length. This work also highlights that it is not always realistic to study only a set of two or three lines because some signals appears at the far end of the second or the third interconnect located at the both sides of an attacker.
机译:分析了在相邻铜互连之间的间距中引入不同的低k到超低k电介质材料,分析了在相同水平的金属化水平上的间距。完成以评估信号完整性,例如串扰,传播延迟和上升时间的一组无意耦合的微米和纳米尺寸。基于切向矢量有限元方法的全波分析在MATLAB环境中实现,以通过传输多缀线模型,电r,l,c,g,l {sub} m,c {sub} m耦合基本细胞。这种模型具有所有相互阻抗和导纳的必要条件,并且通过使用Spice或其他瞬态工具等商业软件来说是必要的并且更方便的瞬态分析。我们表明,由于引入低介电材料导致的改进可以达到200%以上的串扰和25%的传播延迟1mm互连长度。这项工作还突出显示,仅研究一组两条或三条线并不总是现实的,因为某些信号在第二个信号的远端或位于攻击者的两侧的第三互连处。

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