Foundries Eye 300mm Analog Fabs


By Mark LaPedus In 2009, Texas Instruments changed the semiconductor landscape when it opened the industry’s first 300mm fab for analog chips. Until then, analog chip production was conducted in fabs at 200mm wafer sizes and below. With a 300mm fab, TI potentially could gain a die-size and cost advantage over its analog rivals. On paper, a 300mm wafer provides 2.5 times more chips than a... » read more

Mixed Signals


By Mark LaPedus Based on the various forecasts for semiconductor equipment, the mood is mixed at this week’s Semicon West trade show in San Francisco. In its mid-year forecast, for example, SEMI predicts that the semiconductor equipment market will reach $36.3 billion in 2013, down 1.7% over 2012. But the business is expected to rebound and reach $43.98 billion in 2014, a 21.2 percent inc... » read more

Foundry Talk


GlobalFoundries CEO Ajit Manocha sounds off on Foundry 2.0, 450mm wafers, lithography challenges, stacked die, the Internet of Things and the rush to the next process node. [youtube vid=WfjtlZkCi0w] » read more

Experts At The Table: Issues In Metrology And Inspection


By Mark LaPedus Semiconductor Manufacturing & Design sat down to discuss future metrology and inspection challenges with John Allgair, senior member of the technical staff at GlobalFoundries; Kevin Heidrich, vice president of marketing and business development at Nanometrics; Robert Newcomb, executive vice president at Qcept Technologies; and Shrinivas Shetty, vice president of marketing f... » read more

Foundry Models In Transition


By Jeff Chappell There may have been a time when AMD founder Jerry Sanders famous quote: "real men (i.e., real companies) have their own fabs” rang true, but in today's business climate it seems quaint at best. Fabless or fab-lite business models are more popular than ever today, while some IDMs have turned back the clock, so to speak, looking to improve capacity utilization and revenues ... » read more

The Trouble With FinFETs


By Joanne Itow The industry’s quest to continue on the semiconductor roadmap defined by Moore’s Law has led to the adoption of a new transistor structure. Whether you call them finFETs, tri-gate or 3D transistors, building these new devices is difficult. But the technology is only half the challenge. In 2002, Chen Ming Hu* spoke at the Semico Summit. The title of his presentation was �... » read more

Preparing For Change


Throw out the most optimistic and the most pessimistic predictions about the future of the foundry model and you probably arrive at a reasonable approximation of how things will actually play out. It's clear that the number of customers at the front end of process technology will shrink after 20nm. It simply costs too much to design and manufacture a chip, and there aren’t enough markets c... » read more

Experts At The Table: Does 20nm Break System-Level Design?


By Ann Steffora Mutschler System-Level Design sat down to discuss design at 20nm with Drew Wingard, chief technology officer at Sonics; Kelvin Low, deputy director of product marketing at GlobalFoundries, Frank Schirrmeister, group director of product marketing for system development in the system and software realization group at Cadence; and Mike Gianfagna, vice president of marketing at At... » read more

Foundries Going Greener


The ongoing push towards green and energy-efficient systems is prompting the silicon foundries to jump on the bandwagon and devise their next-generation processes based on ultra-high voltage technology. For some time, several foundries have offered 1- and 0.5-micron, ultra-high voltage processes with ratings up to 800 volts. But seeking to get a jump for the next wave of designs, the special... » read more

The Future Of Manufacturing


Semiconductor Manufacturing & Design's Mark LaPedus talks with Randhir Thakur, general manager of Applied Materials' Silicon Systems Group, about what's changing in the foundries, in the equipment necessary to create ICs, and in the structures and materials used in those ICs. [youtube vid=y_b5G6J6UwU] » read more

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