The advent of deep submicron technologies brings new challenges to digital circuit design. A reduced threshold voltage (VT) and power supply (VDD) in addition to process variabilities have a direct impact on circuit design. In a semiconductor environment it is conventionally thought that parametric yield is high and stable and that the main yield losses are functional. Although functional yield remains the main focus of attention, modern and future circuits may not have the presumed high parametric yield. We present a study that compares the tolerance to process variability of various design families for metrics including timing and power consumption under V,Vdd scalability using a NAND gate as a test vehicle. Basically, the fundamental lim...
As we move further into deep submicron era, a new set of design issues challenge circuit designers i...
our lives. The CMOS technology has been playing a huge role and serving industries with many solutio...
Power consumption has become as important as performance in todays deep submicron designs. As a res...
The advent of deep submicron technologies brings new challenges to digital circuit design. A reduced...
The demand of extremely long battery life for electronic devices is the driving force for modern sem...
Technology scaling improves the energy, performance, and area of the digital circuits. With further ...
Abstract—Aggressive device size scaling combined with Vdd and Vth scaling lead to increasing circuit...
The driving force for the semiconductor industry growth has been the elegant scaling nature of CMOS ...
In this project the three logical gates inverter, 2-input NAND and 2-input NOR was created. Each gat...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Abstract—The limited switch dynamic logic (LSDL) family is a hybrid of dynamic and static logic whic...
The most critical concern in circuit is to achieve high level of performance with very tight power c...
Efficient power management is becoming increasingly important with the rapid growth of portable, wir...
Abstract—Near-Threshold Computing (NTC) shows poten-tial to provide significant energy efficiency im...
Successful CMOS process scaling has been the key driving force behind the powerful role played by th...
As we move further into deep submicron era, a new set of design issues challenge circuit designers i...
our lives. The CMOS technology has been playing a huge role and serving industries with many solutio...
Power consumption has become as important as performance in todays deep submicron designs. As a res...
The advent of deep submicron technologies brings new challenges to digital circuit design. A reduced...
The demand of extremely long battery life for electronic devices is the driving force for modern sem...
Technology scaling improves the energy, performance, and area of the digital circuits. With further ...
Abstract—Aggressive device size scaling combined with Vdd and Vth scaling lead to increasing circuit...
The driving force for the semiconductor industry growth has been the elegant scaling nature of CMOS ...
In this project the three logical gates inverter, 2-input NAND and 2-input NOR was created. Each gat...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Abstract—The limited switch dynamic logic (LSDL) family is a hybrid of dynamic and static logic whic...
The most critical concern in circuit is to achieve high level of performance with very tight power c...
Efficient power management is becoming increasingly important with the rapid growth of portable, wir...
Abstract—Near-Threshold Computing (NTC) shows poten-tial to provide significant energy efficiency im...
Successful CMOS process scaling has been the key driving force behind the powerful role played by th...
As we move further into deep submicron era, a new set of design issues challenge circuit designers i...
our lives. The CMOS technology has been playing a huge role and serving industries with many solutio...
Power consumption has become as important as performance in todays deep submicron designs. As a res...