IEEE Journal of Solid-State Circuits · 1996 · 19 citations · 7 references
Low-power ElectronicsPower ConsumptionElectrical EngineeringEngineeringHigh-frequency DeviceElectronic EngineeringMixed-signal Integrated CircuitApplied PhysicsComputer EngineeringPcfl BenefitsDigital Circuit DesignPower ElectronicsMicroelectronicsPseudo-complementary Fet LogicElectronic Circuit
This paper describes an efficient low-power static logic family in GaAs, called PCFL for pseudo-complementary FET logic. Its behavior mimics that of CMOS by compensating the lack of complementary transistors with the use of complementary logic signals. Like any nonratioed logic, PCFL allows the realization of complex gates. It is fully compatible with DCFL and two-phase dynamic FET Logic (TDFL). Using enhancement-mode FET's only, PCFL benefits from good process variations immunity and good noise margins. Measurement results on a ring oscillator, an inverter chain, and a frequency divider are reported. PCFL is shown to operate at 500 MHz with a 0.6 /spl mu/m MESFET process. The power consumption of an inverter is about 10 /spl mu/W at 100 MHz.
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GaAs FET device and circuit simulation in SPICE
H. Statz, P. G. Newman, I. W. Smith et al. · IEEE Transactions on Electron Devices · 1987 · 516 citations
Device Modeling, Electrical Engineering, Semiconductor Device +8
The design and analysis of VLSI circuits
G.W.A.D. · Microelectronics Reliability · 1986 · 219 citations
A manufacturable complementary GaAs process
J. Abrokwah, Jane-Hwa Huang, W. J. Ooms et al. · 2002 · 40 citations