Title :
An integrated injection logic (I/sup 2/L) macromodel including lateral and current redistribution effects
Author :
Estreich, Donald B. ; Dutton, Robert W. ; Wong, Bosco W.
Abstract :
An integrated logic (I/SUP 2/L) macromodel for computer simulation of logical configurations of I/SUP 2/L gates is presented. The macromodel is synthesized from the familiar Ebers-Moll equivalent circuit which permits compatibility with numerous presently available circuit simulators. Measurement procedures are described for the complete and self-consistent set of electrical parameters required for macromodel definition. A five-stage ring oscillator is computer simulated to demonstrate the application of the macromodel. Lateral current transfer (LCT) between adjacent gates and injector current redistribution (ICR) effects are shown to reduce gate propagation delay times. When both effects are included, the macromodel produces an agreement between computer simulated and experimental results of better than 10 percent. A ring oscillator example illustrates the use of the macromodel to provide physical insight into the layout sensitivity of I/SUP 2/L.
Keywords :
Digital integrated circuits; Electronics applications of computers; Large scale integration; Logic circuits; Monolithic integrated circuits; digital integrated circuits; electronics applications of computers; large scale integration; logic circuits; monolithic integrated circuits; Application software; Circuit simulation; Computational modeling; Computer simulation; Electric variables measurement; Equivalent circuits; Integrated circuit measurements; Integrated circuit synthesis; Logic; Ring oscillators;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.1976.1050794