Self-Service Comparisons Come To SoC Design


Under the guise of enabling self-service comparison of its compilable memories and providing self-service online quoting of TSMC technology, semiconductor design and manufacturing services provider eSilicon Corp. detailed the latest evolution of its business model—and one that could have interesting implications for the IP and memory markets. This move reflects the changing dynamics of cus... » read more

The Week In Review: Design


M&A Synopsys’ Coverity subsidiary bought Kalistick, a French company that makes cloud-based solutions to boost testing efficiency by allowing engineers to identify and prioritize tests. Terms of the deal were not disclosed. Tools Cadence rolled out verification IP for the new PCI Express 4.0 architecture. The new spec supports up to 16 billion transactions per second, which is double... » read more

Shootout At 28nm


By Ed Sperling & Mark LaPedus Samsung, Soitec and STMicroelectronics are joining forces on 28nm FD-SOI, creating a showdown with TSMC and others over the best single-patterned processes and materials and raising questions about how quickly companies need to move to the finFET technology generation. The multi-source manufacturing collaboration agreement for fully depleted silicon-on-insulato... » read more

Is 450mm Dead In The Water?


At one time, Intel, TSMC and Samsung were aggressively beating the 450mm drum. Chipmakers wanted, if not demanded, 450mm pilot line fabs by 2016, with high-volume manufacturing 450mm plants slated by 2018. At least for those companies, 450mm made some sense. Moving to 450mm wafers would supposedly give chipmakers a 2.25x boost in wafer area and a 30% cost reduction over 300mm substrates. But... » read more

The Bumpy Road To FinFETs


The shift from planar transistors to finFETs is a major inflection point in the IC industry. FinFETs are expected to enable higher performance chips at lower voltages. And the next-generation transistor technology also could allow the industry to extend CMOS to the 10nm node and perhaps beyond. But as it turns out, finFET technology is also harder to master than previously thought. For exam... » read more

A Node By Any Other Name


Have you ever wondered what gives a particular CMOS technology node its name? When we talk about 20nm, 16nm or 14nm, what exactly does that number in front of the “nm” mean anyway? Is it the first layer metal half-pitch or the gate length (and while we’re at it, is that the printed gate length, the physical gate length, or the effective gate length)? The half-pitch refers to half the m... » read more

FinFET Learning


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 hard to justify—which affects everything from electromigration to signal integrity. Moreover, while finFETs have been on the drawing board for more than a decade, it’s taken four years ... » read more

Blog Review: April 30


Applied Materials’ Jeremy Read points to a looming problem for the Internet of Things—legacy fabs that will require software upgrades and advanced process control. Also needed: Sensors attached to thousands of machines for predictive maintenance. Foundries are now ready for production finFETs. Cadence's Richard Goering captures the buzz at last week’s TSMC Tech Symposium, where the ro... » read more

The Week In Review: Manufacturing


Worldwide semiconductor capital equipment spending is projected to total $37.5 billion in 2014, an increase of 12.2% from 2013 spending of $33.5 billion, according to Gartner. Capital spending will increase 5.5% in 2014 as the industry begins to recover from the recent economic downturn. The 3D NAND market will take longer to develop. Samsung has shipped a 3D NAND device. Micron and SK Hynix... » read more

Follow The Investments


Where is design heading over the next few years. The best way to tell that is to find out where the development dollars are going, and foundries and tools always precede actual designs. The foundries are starting to spend money—lots of it—on finFETs and 28nm. And while they’re talking about 2.5D and 3D, the money isn’t going there just yet. In fact, there are two different processes ... » read more

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