Quantum Dot Cellular Automata-based Simulation and Design of 2-Bit Up and Down Counters
N Samanvita, Shruti Gatade, N M Sudhakar, Sowmya Raman · 2024
A promising nanotechnology, quantum dot cellular automata (QCA) has the potential to replace the standard CMOS era owing to its high speed and low power consumption. A crucial component of virtual systems is an counter which is an integrated circuitry that can increase or decrease its count number largely in response to manipulating inputs. This provides a versatile solution for a range of applications, such as control systems, signal processing, and mathematical computations. This work presents a new method for creating an Up-Down counter using QCA, demonstrating the way QCA can be used to advance digital circuitry. The up counter and down counter circuits are designed separately, and each circuit is verified using QCA designer. The designed counter in QCA as compared to conventional CMOS-based counters, offers higher desirable dependability, and can operate at clock frequencies of up to 100 GHz, and consume less energy less than 1 pJ per operation. The use of QCA in the implementation of the suggested circuits demonstrates the nanotechnology's promising potential to completely transform the field of virtual circuits and further developments in quantum-stimulated computing architectures.