Showing posts with label ISSCC. Show all posts
Showing posts with label ISSCC. Show all posts

Monday, March 2, 2015

ISSCC 2015 -Latest Circuits Innovations

Below are some highlights from 2015 " International Solid-State CircuitsConference once again served up a smorgasbord of silicon innovations."

It is interesting that while Samsung is continuing to develop 3D devices and processing on a single chip -

"Samsung described a second generation of its 128 Gbit 3-D NAND flash, a 3-bit/cell version with 32 layers now in production on a 68.9mm2 die. The Korean giant is ahead of the pack in dense flash and also is expected to beat TSMC to market with 14/16nm FinFET logic later this year, a fact that help it retain archrival Apple as a foundry customer."

ITRS and Intel focus on developing chip stacks - 

"Paolo Gargini who leads the ITRS semiconductor road map effort said chip stacks are today what high-K metal gate design was in 2007, the next big requirement for progress.

Intel fellow Mark Bohr disagreed. “We need vertical interconnects one or two orders of magnitude more dense than today’s through-silicon vias,” he said"


Ron
Insightful, timely, and accurate semiconductor consulting.
Semiconductor information and news at - http://www.maltiel-consulting.com/





18 Views of ISSCC

Intel, Xilinx debate 3-D chip stacks
Rick Merritt  2/26/2015 10:42 AM EST 

Wednesday, February 20, 2013

ISSCC 2013: Memory, High-performance Digital, and Wireless trends


Solid State Technology published three articles summarizing ISSCC 2013  technology trends. They "see progressive scaling in embedded SRAM, DRAM, and floating-gate based Flash... However, due to the major scaling challenges...continued increase in the use of smart algorithms and error-correction techniques...we see logic processes adopting FinFET devices.

"The relentless march of process technology brings more integration and performance. IBM’s System z processor leads the charge at ISSCC 2013 clocking in at 5.7GHz and with 2.75B transistors."

"Data rates for modern wireless standards are increasing rapidly and this is evident from the trend of cellular standards.The data rate has increased 100X over the last decade and another 10X is projected in the next five years"


Ron
Insightful, timely, and accurate semiconductor consulting.
Semiconductor information and news at - http://www.maltiel-consulting.com/




Wednesday, April 4, 2012

Six Technologies that Save Smartphone Batteries

These six new technologies are interesting approaches for cutting down the power used during battery operation.
Some of the technologies, such as operating near the threshold voltage, would be difficult to manufacture consistently in the fab with reasonable yield.

Ron Maltiel



Six Paths to Six Technologies that Save Smartphone Batteries
http://spectrum.ieee.org/semiconductors/processors/six-paths-to-longer-battery-life#.T3Wwc8D6prE.twitter
By Rachel Courtland / April 2012

The boom in mobile devices and data centers has circuit designers
racing to find new ways to slash power consumption. At this year's
International Solid-State Circuits Conference, in San Francisco, six
power-saving technologies took center stage. Some will emerge in
products this year, while others are just beginning to catch the
interest of major chipmakers.rigueur for today's processors—all the
way down to 280 millivolts. The chip's sweet spot for energy
efficiency was 450 mV, just above the threshold voltage. At that
level, Intel's chip ran slowly, at less than 100 megahertz, but it
also consumed just about a fifth of the energy it did at 1.2 V.
Parallel processing could be used to pick up some of the slack in
performance.Mudd College, in Claremont, Calif., showed that the
approach works on an ARM Cortex-M3 processor, boosting energy
efficiency by 60 percent. The team says it's the first implementation
of a Razor-style scheme on a complete commercial processor. nm Ivy
Bridge chips can be run just as fast as the company's previous chips,
but with an operating voltage that's 200 mV lower. Intel has also
incorporated designs at the circuit and core level to improve the
chip's power management. A separate system-on-a-chip code-named
Silvermont, based on the same transistor-making process, will be
geared for mobile handsets. Samsung presented a new improvement on the
all-digital phase-locked loop, a 0.012-square-millimeter circuit that
consumes just 2.5 mW. Intel showed off a version of the circuit, built
with the company's 22-nm technology, that consumes as little as 0.7
mW.Chiao Tung University, in Hsinchu, Taiwan, found a way to save
power by working on signals in two separate stages—one for crude
processing and the other for fine-tuning—that can each be
optimized.Samsung and Hynix Semiconductor both unveiled details on the
next incarnation of synchronous DRAM, the memory that drives today's
processors. The new generation, which goes by the name DDR4, boasts
circuit tricks that let Samsung drop the supply voltage to its memory
modules from 1.5 V to 1.2 V. The modules also include better clocking
and faster algorithms for encoding data to be sent to and fetched from
memory. DDR4 may make its commercial debut as early as 2013.

Friday, March 16, 2012

When will Flash Memory Market be 2x of DRAMs

Flash memory has been increasing in popularity due to its shrinking size. There were papers presented at the recent ISSCC 2012 that discussed 128GB Flash NAND using 22-18 nm process technology while DRAM technology is at 4GB using 38 nm process technology (http://www.miracd.com/ISSCC2012/WebAP/PDF/AP_Full.pdf) .

This leads semiconductor companies to switch fabs from DRAM to flash. See "Hynix is switching production at a memory plant in China to churn out NAND flash instead of DRAM chips"


It will not be long before the size of the flash semiconductor chip market will be 2x the DRAM market size.