Rethinking Processor Architectures


The semiconductor industry's obsession with clock speeds, cores and how many transistors fit on a piece of silicon may be nearing an end for real this time. The [getentity id="22048" comment="IEEE"] said it will develop the International Roadmap for Devices and Systems (IRDS), effectively setting the industry agenda for future silicon benchmarking and adding metrics that are relevant to specifi... » read more

7nm Fab Challenges


Leading-edge foundry vendors have made the challenging transition from traditional planar processes into the finFET transistor era. The first [getkc id="185" kc_name="finFETs"] were based on the 22nm node, and now the industry is ramping up 16nm/14nm technologies. Going forward, the question is how far the finFET can be scaled. In fact, 10nm finFETs from Samsung are expected to ramp by ye... » read more

Manufacturing Bits: Dec. 23


World’s smallest inkjet image ETH Zurich and Scrona have set the official world’s record for the smallest inkjet-printed color image. The feat, which has been recognized by the Guinness World Records, is based on Scrona’s so-called NanoDrip printing technology and quantum dots. ETH and Scrona printed an image of clown fishes and sea anemones. The printed image measures 0.0092mm² in a... » read more

Power/Performance Bits: Oct. 13


Cooling down FPGAs Georgia Institute of Technology researchers found a way to put liquid cooling a few hundred microns away from where the transistors are operating by cutting microfluidic passages directly into the backsides of production FPGAs. The research, backed by DARPA, is believed to be the first example of liquid cooling directly on an operating high-performance CMOS chip. To ... » read more

Energy Harvesting Update


Manos Tentzeris, professor of electrical and computer engineering at the Georgia Institute of Technology, sat down with Semiconductor Engineering to discuss energy harvesting. What follows are excerpts of that conversation. SE: What is the state of energy harvesting and are we making progress. Tentzeris: The latest results are systems with efficiency up to 40% to 45% utilizing ambient UH... » read more

Disruptive R&D


Leading university researchers presented their most promising technologies — describing developments ranging from sustainable metal cluster technology (that’s already spawned three notable startups) to resonance-based detection for more accurate MEMS devices — at the new Breakthrough Research Technologies session and the Silicon Innovation Forum at SEMICON West 2014. OSU metal cluster... » read more

What Comes Next?


The latest manufacturing, materials and production developments for emerging and adjacent markets will be featured at SEMICON West 2014 (www.semiconwest.org), to be held on July 8-10 at the Moscone Center in San Francisco, Calif. The co-location of emerging and adjacent market focused exhibitors and technical presentations within the framework of SEMICON West maximizes the synergies between sem... » read more

Power/Performance Bits: Feb. 25


SiGe chip sets speed record Researchers from IHP-Innovations for High Performance Microelectronics in Germany and the Georgia Institute of Technology have demonstrated what they say is the world's fastest silicon-based device to date. A silicon-germanium (SiGe) chip has been operated transistor at 798 gigahertz (GHz) fMAX, exceeding the previous speed record for silicon-germanium chips by abou... » read more

Non-Visual Defect Inspection: The Tech of Tomorrow?


Remember when it first became obvious that the semiconductor manufacturing industry was going to expect lithography to resolve features smaller than the wavelength of light used in the litho tools themselves? Thanks to techniques such as the use of phase shift photomasks, sub-wavelength lithography is standard in chip fabs today. It might even be viewed as “old hat,” although still an ex... » read more

System Bits Nov 26


Scaling The Quantum Slopes Like any task, there are easy and hard ways to control atoms and molecules as quantum systems, which are driven by tailored radiation fields. More efficient methods for manipulating quantum systems could help scientists realize the next generation of technology by harnessing atoms and molecules to create small but incredibly powerful devices, such as molecular electr... » read more

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