This thesis pertains to the design of low-power/ultra low-power high variation-space and wide operation-space digital electronics for portable/mobile applications. High variation-space and wide operation-space respectively refer to error-free operation despite high variations in the prevailing conditions (including Process, Voltage and Temperature (PVT) variations) and under a wide range of activity levels or workload. In view of said spaces, we adopt the somewhat esoteric asynchronous-logic (async) vis-à-vis the conventional synchronous-logic (sync); more specifically, the Matched Delay (MD) and the Quasi-Delay-Insensitive (QDI). For an MD pipeline operating under a wide operation-space (alternating between active and idle), we propose a...
International audienceWhile MOSFET technology scaling provides substantial advantages in terms of In...
International audienceWhile MOSFET technology scaling provides substantial advantages in terms of In...
Ultra-low voltage digital circuit design is an active research area, especially for portable applica...
This thesis pertains to the design of low-power/ultra low-power high variation-space and wide operat...
Self-Adaptive VDD Scaling (SAVS) technique achieves power/energy reduction by dynamically scaling VD...
Self-Adaptive VDD Scaling (SAVS) technique achieves power/energy reduction by dynamically scaling VD...
In the past decades of electronic circuit designs, the synchronous-logic (sync) is the main de-facto...
In the past decades of electronic circuit designs, the synchronous-logic (sync) is the main de-facto...
This thesis pertains to the investigation of low power, high robustness and yet speed-efficient digi...
Deep submicron technologies are beginning to scale poorly with respect to both power and performance...
Emerging biomedical applications would benefit from the availability of digital processors with subs...
Efficient power management is becoming increasingly important with the rapid growth of portable, wir...
At the nanoscale level, parameter variations in fabricated devices cause extreme variability in dela...
At the nanoscale level, parameter variations in fabricated devices cause extreme variability in dela...
International audienceWhile MOSFET technology scaling provides substantial advantages in terms of In...
International audienceWhile MOSFET technology scaling provides substantial advantages in terms of In...
International audienceWhile MOSFET technology scaling provides substantial advantages in terms of In...
Ultra-low voltage digital circuit design is an active research area, especially for portable applica...
This thesis pertains to the design of low-power/ultra low-power high variation-space and wide operat...
Self-Adaptive VDD Scaling (SAVS) technique achieves power/energy reduction by dynamically scaling VD...
Self-Adaptive VDD Scaling (SAVS) technique achieves power/energy reduction by dynamically scaling VD...
In the past decades of electronic circuit designs, the synchronous-logic (sync) is the main de-facto...
In the past decades of electronic circuit designs, the synchronous-logic (sync) is the main de-facto...
This thesis pertains to the investigation of low power, high robustness and yet speed-efficient digi...
Deep submicron technologies are beginning to scale poorly with respect to both power and performance...
Emerging biomedical applications would benefit from the availability of digital processors with subs...
Efficient power management is becoming increasingly important with the rapid growth of portable, wir...
At the nanoscale level, parameter variations in fabricated devices cause extreme variability in dela...
At the nanoscale level, parameter variations in fabricated devices cause extreme variability in dela...
International audienceWhile MOSFET technology scaling provides substantial advantages in terms of In...
International audienceWhile MOSFET technology scaling provides substantial advantages in terms of In...
International audienceWhile MOSFET technology scaling provides substantial advantages in terms of In...
Ultra-low voltage digital circuit design is an active research area, especially for portable applica...