Title :
Threshold logic circuit design of parallel adders using resonant tunneling devices
Author :
Pacha, Christian ; Auer, Uwe ; Burwick, Christian ; Glösekötter, Peter ; Brennemann, Andreas ; Prost, Werner ; Tegude, Franz-J ; Goser, Karl F.
Author_Institution :
Dortmund Univ., Germany
Abstract :
Resonant tunneling devices and circuit architectures based on monostable-bistable transition logic elements (MOBILEs) are promising candidates for future nanoscale integration. In this paper, the design of clocked MOBILE-type threshold logic gates and their application to arithmetic circuit components is investigated. The gates are composed of monolithically integrated resonant tunneling diodes and heterostructure field-effect transistors. Experimental results are presented for a programmable NAND/NOR gate. Design related aspects such as the impact of lateral device scaling on the circuit performance and a bit-level pipelined operation using a four phase clocking scheme are discussed. The increased computational functionality of threshold logic gates is exploited in two full adder designs having a minimal logic depth of two circuit stages. Due to the self-latching behavior the adder designs are ideally suited for an application in a bit-level pipelined ripple carry adder. To improve the speed a novel pipelined carry lookahead addition scheme for this logic family is proposed.
Keywords :
adders; carry logic; field effect logic circuits; logic gates; pipeline arithmetic; resonant tunnelling diodes; threshold logic; arithmetic circuit component; bit-level pipelined operation; bit-level pipelined ripple carry adder; clocked MOBILE-type threshold logic gates; computational functionality; four phase clocking scheme; full adder designs; heterostructure field-effect transistors; lateral device scaling; logic circuit design; minimal logic depth; monostable-bistable transition logic elements; nanoscale integration; parallel adders; pipelined carry lookahead addition; programmable NAND/NOR gate; resonant tunneling diodes; Adders; Clocks; Logic circuits; Logic design; Logic devices; Logic gates; Nanoscale devices; RLC circuits; Resonance; Resonant tunneling devices;
Journal_Title :
Very Large Scale Integration (VLSI) Systems, IEEE Transactions on