Project supported by the Iran National Science Foundation(No.4005782)。
Quantum-dot cellular automata(QCA)is a new nanotechnology for the implementation of nano-sized digital circuits.This nanotechnology is remarkable in terms of speed,area,and power consumption compared to complementary ...
Phospholipids (PLs) in the form of nanostructures are widely employed as a lubricant and antimicrobial agent. The cartilage (AC) surface was characterized using wettability test fresh and depleted AC samples. Cartilag...
Biden’s ambitious carbon reduction plan is easier said than done ‘What makes climate change difficult is that it is not an instantaneous catastrophic event," former U.S. President Barack Obama said during an intervi...
supported by the National Natural Science Foundation of China(No.61434007);the National Natural Science Foundation of China(No.61704192)
As technology scales down, clock distribution networks(CDNs) in integrated circuits(ICs) are becoming increasingly sensitive to single-event transients(SETs).The SET occurring in the CDN can even lead to failure of th...
This research deals with the oscillation mechanism of a flip-flop jet nozzle with a connecting tube, based on the measurements of pressures and velocities in the connecting tube and inside the nozzle. The measurements...
Project supported by the National Natural Science Foundation of China(Nos.61071062 and 61471314);the Zhejiang Provincial Natura l Science Foundation of China(No.LY13F010001)
A novel dual-edge implicit pulse-triggered flip-flop with an embedded clock-gating scheme(DIFF-CGS) is proposed, which employs a transmission-gate-logic(TGL) based clock-gating scheme in the pulse generation stage. Th...
A new design for an all optical flip flop is introduced. It is based on a nonlinear Distributed Bragg Reflector (DBR) semiconductor laser structure. The device does not require a holding beam. An optical gain medium c...
supported by National Natural Science Foundation of China (Grant No. 61306040);National Basic Research Program of China (973) (Grant No. 2015CB057201);Beijing Natural Science Foundation (Grant No. 4152020);R&D project of Shenzhen Government, China (Grant Nos. JCYJ20140417144423194, JCYJ20140417144423198)
In this paper, we first reconstruct a novel planar static contention-free single-phase-clocked flipflop(S2CFF) based on high-performance fin-type field-effect transistors(FinF ETs) to achieve high speed and ultral...