Aggressive technology scaling to 14 nm technology node increases variability in transistors performance and introduces serious reliability challenges to the design of microprocessors. This creates several challenges in building reliable systems from transistors with unpredictability of delay. Scaling increases the impact of intrinsic parameter fluctuation on the yield and functionality of SRAM cache. Since a large fraction of chip area is devoted to on-chip caches, it is important to protect these SRAM structures against failures. The intrinsic parameter fluctuation within a cache can lead to variability in the behavior of the different transistors and is the most noticeable type of variation that resulting in a violation of delay requirem...
As technology scales, more sophisticated fabrication processes cause variations in many different pa...
The traditional performance-cost benefits we have enjoyed for decades from technology scaling are ch...
Improving energy efficiency is critical to increasing computing capability, from mobile devices oper...
As the semiconductor process technology continues to scale deeper into the nanometer region, the int...
Process parameter variations are expected to be significantly high in a sub-50-nm technology regime,...
Continued increase in the process variability is perceived to be a major roadblock for future techno...
Robust SRAM design is one of the key challenges of process technology scaling. The steady pace of pr...
In this thesis, we have investigated the impact of parametric variations on the behaviour of one per...
Currently, the development of models at higher level of abstractions (system-level) to be able to in...
The SRAM has a very constrained cell area and is consequently sensitive to the intrinsic parameter f...
The CMOS scaling increases the impact of intrinsic parameter fluctuation on the yield and functional...
This book provides a comprehensive overview of contemporary issues in complementary metal-oxide semi...
As technology scales, more sophisticated fabrication processes cause variations in many different pa...
Transistors per area unit double in every new technology node. However, the electric field density a...
Variability is one of the most challenging obstacles for IC design in the nanometer regime. In nano...
As technology scales, more sophisticated fabrication processes cause variations in many different pa...
The traditional performance-cost benefits we have enjoyed for decades from technology scaling are ch...
Improving energy efficiency is critical to increasing computing capability, from mobile devices oper...
As the semiconductor process technology continues to scale deeper into the nanometer region, the int...
Process parameter variations are expected to be significantly high in a sub-50-nm technology regime,...
Continued increase in the process variability is perceived to be a major roadblock for future techno...
Robust SRAM design is one of the key challenges of process technology scaling. The steady pace of pr...
In this thesis, we have investigated the impact of parametric variations on the behaviour of one per...
Currently, the development of models at higher level of abstractions (system-level) to be able to in...
The SRAM has a very constrained cell area and is consequently sensitive to the intrinsic parameter f...
The CMOS scaling increases the impact of intrinsic parameter fluctuation on the yield and functional...
This book provides a comprehensive overview of contemporary issues in complementary metal-oxide semi...
As technology scales, more sophisticated fabrication processes cause variations in many different pa...
Transistors per area unit double in every new technology node. However, the electric field density a...
Variability is one of the most challenging obstacles for IC design in the nanometer regime. In nano...
As technology scales, more sophisticated fabrication processes cause variations in many different pa...
The traditional performance-cost benefits we have enjoyed for decades from technology scaling are ch...
Improving energy efficiency is critical to increasing computing capability, from mobile devices oper...