A 0.8V CMOS TSPC adiabatic DCVS logic circuit with the bootstrap technique for low-power VLSI
H.P. Chen, James B. Kuo
Abstract
H.P. Chen, James B. Kuo
Abstract
The paper reports a novel 0.8 V CMOS true-single-phase-clocking (TSPC) adiabatic differential cascode voltage switch (DCVS) logic circuit with the bootstrap technique for low-power VLSI. Via the pass transistors and compensating transistors, the TSPC scheme has been obtained for easy clocking. Using the capacitance coupling from the bootstrap transistors, this 0.8 V TSPC adiabatic DCVS logic circuit with the bootstrap technique consumes 31% less energy as compared to the one using the clocked adiabatic latch (CAL) approach.
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The paper reports a novel 0.8 V CMOS true-single-phase-clocking (TSPC) adiabatic differential cascode voltage switch (DCVS) logic circuit with the bootstrap technique for low-power VLSI. Via the pass transistors and compensating transistors, the TSPC scheme has been obtained for easy clocking. Using the capacitance coupling from the bootstrap transistors, this 0.8 V TSPC adiabatic DCVS logic circuit with the bootstrap technique consumes 31% less energy as compared to the one using the clocked adiabatic latch (CAL) approach.
Key concepts: Adiabatic circuit, CMOS, Very-large-scale integration, Pass transistor logic, PMOS logic, Logic family, Transistor, Logic gate