Title :
Voltage-pulse driven harmonic resonant rail drivers for low-power applications
Author :
Moon, Joong-Seok ; Athas, William C. ; Soli, Sigfrid D. ; Draper, Jeffrey T. ; Beerel, Peter A.
Author_Institution :
Inf. Sci. Inst., Univ. of Southern California, Marina del Rey, CA, USA
Abstract :
We describe a new design technique for efficient harmonic resonant rail drivers. The proposed circuit implementation is coupled to a standard pulse source and uses only discrete passive components and no external dc power supply. It can thus be externally tuned to minimize the consumed power in the target IC. A new design technique based on current-fed voltage pulse-forming network theory is proposed to find the value of each discrete component for a target frequency and a given load capacitance. The proposed circuit topology can be used to generate any desired periodic 50% duty-cycle waveform by superimposing multiple harmonics of the desired waveform, however, this paper focuses on the generation of trapezoidal-wave clock signals. We have tested the driver with a capacitive load between 38.3 and 97.8 pF with clock frequency ranging between 0.8 and 15 MHz. The overall power dissipation for our second-order harmonic rail driver is 19% of fC/sub L/V/sup 2/ at 15 MHz and 97.8 pF load.
Keywords :
CMOS analogue integrated circuits; driver circuits; integrated circuit design; low-power electronics; pulse circuits; waveform generators; 0.8 to 15 MHz; 38.3 to 97.8 pF; CMOS-VLSI systems; capacitive load; circuit implementation; circuit topology; clock frequency; consumed power minimization; current-fed voltage pulse-forming network theory; design technique; discrete passive components; energy-recovery circuit; external tuning; harmonic resonance; load capacitance; low-power applications; multiple harmonies; overall power dissipation; periodic 50% duty-cycle waveform; second-order harmonic rail driver; standard pulse source; trapezoidal-wave clock signal generation; voltage-pulse driven harmonic resonant rail drivers; Clocks; Coupling circuits; Driver circuits; Frequency; Pulse circuits; Pulsed power supplies; Rails; Resonance; Signal generators; Voltage;
Journal_Title :
Very Large Scale Integration (VLSI) Systems, IEEE Transactions on
DOI :
10.1109/TVLSI.2003.814323