The Next Big Things


Progress in electronics has always been about combining more functions into devices and making access to information more convenient. This is what drove the PC revolution in the 1980s, when centralized data was made available on desktops, and it's what drove the notebook PC revolution in the 1990s as computers became untethered from the desktop, as long as you could find an Ethernet connecti... » read more

Which Process, Material, IP?


For years chipmakers have been demanding more choices. They've finally gotten what they wished for—so many possibilities, in fact, that engineering teams of all types are having trouble wading through them. And to make matters worse, some choices now come with unexpected and often unwanted caveats. At the most advanced nodes it's a given that being able to shrink features and double patter... » read more

Consolidation Creates Confusion


Consolidation in any industry is a sign of maturation. Diverse business models converge to the ones that really work. Supply and demand find equilibrium with a right-sized supply base. And generally, the fittest survive. The semiconductor industry is somewhere around a half-century old, so consolidation in this industry is to be expected, and we have certainly seen some consolidation of late. ... » read more

Fab Issues At 7nm And 5nm


The race toward the 7nm logic node officially kicked off in July, when IBM Research, GlobalFoundries and Samsung jointly rolled out what the companies claim are the industry’s first 7nm test chips with functional transistors. They're not alone, of course. Intel and TSMC also are racing separately to develop 7nm technology. And in the R&D labs, chipmakers also are working on technologies f... » read more

Challenges At Advanced Nodes


Semiconductor Engineering sat down to discuss finFETs, 22nm FD-SOI and how the how the market will segment over the next few years with Marie Semeria, CEO of [getentity id="22192" e_name="Leti"]; Patrick Soheili, vice president of product management and corporate development at [getentity id="22242" e_name="eSilicon"]; Paul Boudre, CEO of Soitec; and Subramani Kengeri, vice president of global ... » read more

What Will 7nm And 5nm Look Like?


Citing an assortment of undisclosed manufacturing issues, Intel in July pushed out the introduction of its 10nm chip and process technology to the second half of 2017. This is roughly six or more months later than expected. With the delay at 10nm, [getentity id="22846" e_name="Intel"] also pushed out its process cadence from 2 to 2.5 years. Other foundries, meanwhile, are struggling to keep ... » read more

The Future Of Moore’s Law


Semiconductor Engineering sat down to discuss the future of Moore's Law with Jan Rabaey, Donald O. Pederson distinguished professor at [getentity id="22165" comment="UC Berkeley"]; Lucio Lanza, managing director of Lanza techVentures; Subramani Kengeri, vice president of advanced technology architecture at GlobalFoundries; Charlie Cheng, CEO of [getentity id="22135" e_name="Kilopass Technology"... » read more

The Week In Review: Manufacturing


Semicon West is always a busy week. Typically, there are a plethora of events going on during the week. It’s also a good week to get a pulse on the industry. The good news: Innovation is alive and well. Bad news: Intel cut its CapEx. And tool makers are in the midst of a lull right now, with a cloudy outlook projected for 2016. Some even see a dreaded downturn next year. Pacific Crest Secu... » read more

Tech Talk: 22nm FD-SOI


Subramani Kengeri, vice president of global design solutions at GlobalFoundries, discusses the evolution of 22nm FD-SOI and its advantages, including single patterning in the middle end of line, 0.4 volt operating voltage, and how it compares to finFETs in terms of performance. [youtube vid=5fa1AcIGcUw] » read more

The Week In Review: Manufacturing


An alliance led by IBM Research has produced the semiconductor industry’s first 7nm test chips with functioning transistors. The breakthrough, accomplished in partnership with GlobalFoundries and Samsung at SUNY Polytechnic Institute’s Colleges of Nanoscale Science and Engineering, could result in the ability to place more than 20 billion tiny switches, or transistors, on a chip. There i... » read more

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