FinFETs are known to be an evolution of metal-oxide-semiconductor field effect transistors (MOSFETs) featuring a semiconducting channel vertically wrapped by conformal gate electrodes. It was first ...
FinFET transistors are now in production at the major foundries, having gone from drawing board to products on the shelf in record time. FinFET adoption has been growing steadily because they deliver ...
Since the inception of the integrated-circuit (IC) industry, design metrics such as performance, power, area, cost, and time-to-market have remained the same. In fact, Moore’s law is all about ...
FinFETs are not simple to work with. They’re difficult to manufacture, tricky to design, and they run the risk of greatly increased dynamic power density—particularly at 14/16nm, where extra margin is ...
Synopsys has launched Custom Compiler, a design solution intended to close what the company calls a FinFET productivity gap. Dave Reed, director of marketing for Synopsys’ mixed signal and analogue ...
MOUNTAIN VIEW, Calif., Mar. 30, 2016 – Synopsys, Inc. (Nasdaq: SNPS) today unveiled Custom Compiler™, a new custom design solution that closes the FinFET productivity gap by shortening custom design ...
SAN JOSE, Calif. -- 26 Sep 2014 -- Cadence Design Systems, Inc. (NASDAQ: CDNS), a leader in global electronic design innovation, today announced that its digital and custom/analog tools have achieved ...
The industry is gradually migrating toward chips based on finFET transistors at 16nm/14nm and beyond, but manufacturing those finFETs is proving to be a daunting challenge in the fab. Patterning is ...
We typically cover Intel's efforts in developing its next-generation nodes, such as Intel 4 (formerly 7nm), which is just now rolling off the production line. But today, Intel is announcing new ...
The next frontier in the electronics industry is the FinFET, a new type of multi-gate 3D transistor that offers tremendous power and performance advantages compared to traditional, planar transistors.
(Nanowerk Spotlight) The emergence of the Internet of Everything demands additional improvements in today's – mostly rigid – electronics: They have to be flexible, stretchable, reconfigurable. Whereas ...
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