Pathfinding Beyond FinFETs


Though the industry will likely continue to find ways to extend CMOS finFET technology further than we thought possible, at some point in the not-so-distant future, making faster, lower power ICs will require more disruptive changes. For something that could be only five to seven years out, there’s a daunting range of contending technologies. Improvements through the process will help, from E... » read more

The Week In Review: Manufacturing


MEMS manufacturing A*STAR’s Institute of Microelectronics (IME) in Singapore has launched its third consortium to develop MEMS technologies. This would allow MEMS sensor devices to achieve better performance, higher power efficiency and a smaller form factor. The MEMS Consortium III consists of the following companies: Applied Materials, Coventor, Delta Electronics, GlobalFoundries, InvenS... » read more

Manufacturing Bits: June 7


Intel’s spintronic spectrometer Intel and Stanford University have presented the first results for a technology called a ferromagnetic resonance (FMR) spectrometer. Initially invented and developed by the National Institute of Standards and Technology (NIST), FMR examines the properties of materials for spintronic-based memories. Today’s DRAMs store binary data in tiny capacitors. I... » read more

Overcoming RC In Memory Scaling


In a memory device, Ohmic contacts (semiconductor-to-metal interfaces) connect the active region and the metal wiring. To achieve rapid and maximal charge transmission across the Ohmic contact, a low-resistivity material is used. Low-resistivity Co silicide has been adopted as the industry standard for this purpose; its effectiveness relies on the deposition of a sufficiently thick layer to for... » read more

The Week In Review: Manufacturing


Chipmakers Through a joint venture with the government of Chongqing, GlobalFoundries will take over an existing 200mm fab in China. Then, GlobalFoundries plans to retrofit the facility and turn it into a 300mm fab. The foundry vendor is transferring its 180nm and 130nm processes to the China fab. Meanwhile, TSMC, UMC and others are also building fabs in China. Samsung Electronics has begu... » read more

Manufacturing Bits: May 31


Superconducting magnets The National High Magnetic Field Laboratory (MagLab) has broken another world’s magnet record. This time, MagLab broke a record for a high-temperature superconducting (HTS) coil operating inside a high-field resistive magnet. With the technology, the agency achieved a magnetic field of 40.2 teslas. The previous record was 35.4 teslas. Tesla, or T, is the measuremen... » read more

The Week In Review: Manufacturing


Fab tools Thermo Fisher Scientific and FEI have announced that their boards of directors have unanimously approved Thermo Fisher’s acquisition of FEI for $107.50 per share in cash. The transaction represents a purchase price of approximately $4.2 billion. In a video, Aki Fujimura, chief executive of D2S, recaps the emerging mask and lithography trends presented at the recent Photomask Ja... » read more

The Trouble With MEMS


The advent of the Internet of Things will open up a slew of new opportunities for MEMS-based sensors, but chipmakers are proceeding cautiously. There are a number of reasons for that restraint. Microelectromechanical systems are difficult to design, manufacture and test, which initially fueled optimism in the MEMS ecosystem that this market would command the same kinds of premiums that analo... » read more

RC Delay: Bottleneck To Scaling


R = resistance — the difficulty an electrical current has in passing through a conducting material. C = capacitance — the degree to which an insulating material holds a charge. RC delay = the delay in signal speed through the circuit wiring as a result of these two effects. RC delay is important because it can become a significant obstacle to continued downward scaling of logic and... » read more

Manufacturing Bits: May 24


Microbunching EUV Researchers at the SLAC National Accelerator Laboratory have provided a status report on its ongoing efforts to develop a steady-state microbunching (SSMB) technology. SSMB is a technology used within a storage ring, which is a large-scale, circular particle accelerator. An SSMB mechanism produces a high-power radiation source within the ring. This, in turn, could enable a... » read more

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