This paper is a preliminary investigation in implementing asynchronous QDI logic in molecular nano-electronics, taking into account the restricted geometry, the lack of control on transistor strengths, the high timing variations. We show that the main building blocks of QDI logic can be successfully implemented; we illustrate the approach with the layout of an adder stage. The proposed techniques to improve the reliability of QDI apply to nano-CMOS as well
IEEE Catalog Number CFP09162-DVDAsynchronous circuits have demonstrated their efficiency in many app...
A fine-grained reconfigurable array based on complementary, dual-gate, fully depleted, silicon on in...
New electronics technologies are emerging which may carry us beyond the limits of lithographic proce...
This paper is a preliminary investigation in implementing asynchronous QDI logic in molecular nano-...
This paper is a preliminary investigation in implementing asynchronous QDI logic in molecular nano-...
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...
Molecular electronics is an area of research in which molecules are employed to yield the active and...
Molecular electronics is an area of research in which molecules are employed to yield the active and...
Molecular electronics is an area of research in which molecules are employed to yield the active and...
Abstract — Nanoelectronic design faces unprecedented relia-bility challenges and must achieve noise ...
Deep submicron technologies are beginning to scale poorly with respect to both power and performance...
Among the emerging alternatives to CMOS, molecular electronics based diode-resistor crossbar fabric ...
International audienceThis paper investigates a new method to synthesize asynchronous QDI FSM. QDI l...
Electronic devices containing molecules as either passive or active (switching) components present t...
IEEE Catalog Number CFP09162-DVDAsynchronous circuits have demonstrated their efficiency in many app...
A fine-grained reconfigurable array based on complementary, dual-gate, fully depleted, silicon on in...
New electronics technologies are emerging which may carry us beyond the limits of lithographic proce...
This paper is a preliminary investigation in implementing asynchronous QDI logic in molecular nano-...
This paper is a preliminary investigation in implementing asynchronous QDI logic in molecular nano-...
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...
Molecular electronics is an area of research in which molecules are employed to yield the active and...
Molecular electronics is an area of research in which molecules are employed to yield the active and...
Molecular electronics is an area of research in which molecules are employed to yield the active and...
Abstract — Nanoelectronic design faces unprecedented relia-bility challenges and must achieve noise ...
Deep submicron technologies are beginning to scale poorly with respect to both power and performance...
Among the emerging alternatives to CMOS, molecular electronics based diode-resistor crossbar fabric ...
International audienceThis paper investigates a new method to synthesize asynchronous QDI FSM. QDI l...
Electronic devices containing molecules as either passive or active (switching) components present t...
IEEE Catalog Number CFP09162-DVDAsynchronous circuits have demonstrated their efficiency in many app...
A fine-grained reconfigurable array based on complementary, dual-gate, fully depleted, silicon on in...
New electronics technologies are emerging which may carry us beyond the limits of lithographic proce...