The objective of the project is to compare the power consumption, speed, and area utilization of a True Single-Phase Clock (TSPC) based flip-flop with that of a conventional CMOS Master-Slave D flip-flop.
In this paper, we present the details of a high-speed, double-edge-triggered D-flip-flop with low power consumption and True Single Phase Clocking. With the TSP.
In this paper, an audit on Dynamic Flip Flop and GNRFET is introduced. The power is improved in the proposed circuit for the D flip flop TSPC. As indicated by the past inquires about, some common D flip-flops with incredible execution have been introduced
They are based upon the TSPC logic which allows to represent the design of D flip flop with smaller area and lower power consumption as compared to master-slave configuration based D flip flop. Index Terms: AVL technique, D flip flop, MTCMOS technique, TS
In this paper we proposed a modified positive edge triggered TSPC D flip-flop (MTSPC DFF) which is some extended version of positive edge triggered TSPC D flip-flop.