Application Specific Integrated Circuits, ASICs, typically conjure up the notion of massively complex logic chips containing tens or hundreds of thousands (even millions) of transistors configured to solve a customer’s unique set of problems. Unlike multi-function standard product ICs such as a micro-controller that can find its way into a
Read MoreThis is the second part of my “Beyond RTL” series, where I examine alternatives to Register Transfer Level (RTL). The first part talks mostly about High-Level Synthesis, its genesis, and the state of the art of free and commercial tools that transform C/C++/SystemC to RTL. I highlighted the fundamental limitations that these
Read MoreLet’s say for a minute that you believe that it is finally time to drop RTL (maybe it was my previous post that convinced you). What can I say? I’m glad! You now have to pick among several competing technologies, each with its pros and cons, each of course claiming to be the best,
Read MoreWith an impressive 20% growth in MEMS revenue compared to 2013, and sales revenues of more than $1.2B, Robert Bosch GmbH is the clear #1. From Yole Développement’s yearly analysis of “TOP 100 MEMS Players”, analysts have released the “2014 TOP 20 MEMS Players Ranking”. This ranking shows the clear
Read MoreGetting funding for a semiconductor startup is not getting easier. According to CBIngishts, there have been fewer than 20 Angel/Seed and Series A deals in the USA in each year since 2009.
So where is all the funding channeled to? In 2013, close to a quarter of all VC
Bob Colwell, Director of the Microsystems Technology Office (MTO) at the Defense Advanced Research Projects Agency (DARPA), recently made a compelling statement about the end of Moore’s Law: “When Moore’s Law ends, it will be economics that stops it, not physics. Follow the money.”
If we move beyond Moore’s