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Generalized traveling-wave-based waveform approximation technique for the efficient signal integrity verification of multicoupled transmission line system

机译:基于广义行波的波形逼近技术,用于多耦合传输线系统的有效信号完整性验证

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As very large scale integration (VLSI) circuit speed rapidly increases, the inductive effects of interconnect lines strongly impact the signal integrity of a circuit. Since these inductive effects make the signal integrity problems much more serious as well as intricate, they become one of the critical issues in today's high-speed/high-density VLSI circuit design. In this paper, a generalized traveling-wave-based waveform approximation (TWA) technique is presented which can be accurately as well as efficiently employed for the signal integrity verification of the inductively dominated (moderate Q) multicoupled RLC transmission line system. The technique is composed of three steps. First, the signals in the multicoupled (n-coupled) transmission line system are decoupled into n-isolated eigen-modes (i.e., basis vectors). Next, the slow-transient low-frequency characteristics of the system response are determined, approximately, in the frequency-domain by using the dominant poles of the basis vectors. Finally, the fast-transient high-frequency characteristics of the system response are calculated in the time domain by using the traveling wave characteristics of the basis vectors. It is shown that the time-domain responses of the multicoupled RLC transmission line system can be accurately as well as efficiently modeled with the generalized TWA technique. Then, in inductance-dominant multicoupled interconnect networks, switching-dependent signal integrity, i.e., signal delay, crosstalk, ringing, and glitches are investigated extensively with the proposed technique.
机译:随着超大规模集成电路(VLSI)的速度迅速提高,互连线的感性效应强烈影响电路的信号完整性。由于这些电感效应使信号完整性问题变得更加严重和复杂,因此它们成为当今高速/高密度VLSI电路设计中的关键问题之一。在本文中,提出了一种通用的基于行波的波形逼近(TWA)技术,该技术可以准确有效地用于电感控制(中等Q)多耦合RLC传输线系统的信号完整性验证。该技术包括三个步骤。首先,在多耦合(n耦合)传输线系统中的信号被解耦合为n个隔离本征模式(即,基矢量)。接下来,通过使用基本矢量的优势极点,大致在频域中确定系统响应的慢瞬态低频特性。最后,利用基向量的行波特性在时域中计算系统响应的快速瞬态高频特性。结果表明,利用广义TWA技术可以准确,有效地对多耦合RLC传输线系统的时域响应进行建模。然后,在以电感为主导的多耦合互连网络中,利用所提出的技术对与开关相关的信号完整性,即信号延迟,串扰,振铃和毛刺进行了广泛研究。

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