Monday, December 8, 2008

Intel puts big bet on small chips

Intel stock has sunk to about $13 in the stock market rout, its lowest levels since Bill Clinton's first term. So is it a bargain now?

Sure - if the chipmaker can figure out how to dominate cell phones the way it has PCs.

That won't be easy. Though Intel supplies about 80 percent of the world's computer chips, it so far has failed to repeat that success outside the PC business.

It shut down its consumer electronics business in the last downturn, and today doesn't offer the low-power chips at the heart of hit devices like Apple's (AAPL, Fortune 500) iPhone, Nintendo's DS, and Research in Motion's (RIMM) BlackBerry.

To turn that around, Intel is banking on its tiny Atom processor, which it hopes will soon be ready to power next-generation phones.

"Atom is the heartbeat of Intel; it is the growth strategy," said Pankaj Kedia, Intel's director of business development for mobile Internet devices.

Will it work? Investors should pray it does. Just look at Intel's financial warning from a couple of weeks ago: Sales this quarter will fall far short of Wall Street's expectations, to about $9 billion - from a growth perspective, it might be the company's worst holiday season on record.

Yes, Intel's core business selling PC and server chips remains wildly profitable thanks to its manufacturing prowess, patent portfolio and mammoth scale; the company generated $3 billion in cash last quarter alone, carries little debt, and has a $12 billion war chest.

But the issue is growth. While Intel may be one of tech's big fish, the PC pond these days is stagnant or shrinking. Research firm IDC projects that consumers and businesses will spend less on computers in 2009 than they did this year, the first sequential decline since 2001.

Some of the blame for Intel's plight lies with a global recession that has finally smacked the technology industry, but that's not the whole story. Intel is also scrambling to adapt to a tectonic shift in the digital world, where attention is moving away from powerful Intel-based PCs and toward more energy-efficient and mobile gadgets. The faster Intel proves it can navigate the changed landscape, the sooner its fortunes - and stock price - are likely to improve.

Focus on Atom

So during a recent visit to the company's Silicon Valley headquarters, the discussion centered on Atom, the tiny chip that arrived this spring that's the centerpiece of Intel's mobile growth strategy.

Atom isn't ready for phones yet - so far it's mostly turning up in low-cost laptops like the Dell (DELL, Fortune 500) Mini 9 and the HP Mini 1000. But unlike Intel's bread-and-butter computer chips, Atom is designed from the ground up for small, low-cost, energy-efficient devices (think phones), not performance-focused PCs.

It's a Corolla in a company that has specialized in Corvettes - and Intel is convinced that upcoming versions will be efficient enough to begin appearing in phones.

"By 2010, Atom will be competitive in every aspect of mobile computing," promised Pat Gelsinger, an Intel senior vice president and engineering veteran.

Why does Intel need phone chips? Because, as Willie Sutton put it when asked why he robbed banks, "that's where the money is."

From Manhattan to Mumbai, people around the world open their wallets to buy more than 1 billion cell phones every year, and today practically none of the spoils end up in Intel's pockets. Instead, handset makers like Nokia (NOK), Motorola (MOT, Fortune 500) and Samsung buy chips from companies like Qualcomm (QCOMM) and Texas Instruments (TI).

Common sense dictates that if Intel can cut itself into just a fraction of the cell phone market, voila - it will have the growth it craves.

"Where Atom's going, Intel has potential to gain market share where they have not been in the past," said Jim McGregor, director of semiconductors at the In-Stat research firm. "In cases where customers demand performance, it has potential."

Of course, cracking new chip markets isn't easy, and the cell phone business may prove an especially tough nut for Intel.

The king of the hill in cell phone chips, ARM Holdings (ARMH), plays a tough game. Rather than make its own chips as Intel does, ARM licenses its blueprints to companies like Qualcomm, TI and Samsung, and lets them customize and build the chips built on their own. The result: ARM gets a modest and comfortably profitable licensing business (operating profits so far in 2008 are about $126 million on sales of $397 million), and its customers get the security of knowing their phones aren't built on a cookie-cutter, industry-standard chip.

Some of the most powerful names in the tech industry seem to like that setup; IBM (IBM, Fortune 500) recently signed on to manufacture ARM-based processors, and Apple has engineers working on ARM-based chip designs for future versions of the iPod and iPhone.

To win despite those odds, Intel will have to woo high-profile ARM customers over to Atom - and that may be harder than it sounds. Case in point: the chip giant ended up with egg on its face in October, after Intel executives slammed the Internet performance of Apple's iPhone, suggesting it would work better with an Atom chip. The next day a more senior executive apologized effusively. Intel didn't comment on whether Apple CEO Steve Jobs personally called to demand the backpedaling, but it's safe to assume he didn't send flowers.

Still, analysts agree that there's no company better positioned to take on ARM than Intel. "Everybody's heard of Intel inside," said Will Strauss, president of the Forward Concepts research firm. "Nobody's ever heard of ARM inside."

Consider that alongside the fact that Intel was already running a tight ship before tough times hit, and it's easy to feel good about Intel's chances of figuring out phones, and rescuing its stock.

But this much is also true: It'll feel a lot better to see an Atom chip shipping in an iPhone or a BlackBerry. And for now, it's anyone's guess when that will happen.

Kontron and LynuxWorks Release Intel COTS Safety Critical Platform

Kontron and LynuxWorks today released an Intel based COTS platform for safety critical, deterministic real-time embedded applications, using the Kontron PENTXM2 single board computer running the LynxOS-178B RTOS.
"By porting the world's only RTOS certified as a Reusable Software Component (RSC) by the Federal Aviation Administration onto a server class single board computer, LynuxWorks and Kontron have created the perfect solution for the new wave of dedicated safety critical applications built in the Intel environment," commented Richard Pugnier, marketing communications director at Kontron. "A growing number of such systems are seeking to exploit the immense base of development expertise and code available in the x86 domain. This solution allows avionics, vehicle electronics and other safety critical applications to adopt this path whilst reducing development time, cost and risk."
"Leveraging the development effort targeting a large European global positioning system program, our LynxOS-178 is now ready for deployments in harsh environmental conditions on the Kontron PENTXM2 rugged conduction cooled SBC. With that, our customers benefit from an instant boost in their schedule and not only can go to market aggressively with an outstanding head start, but can also create a complete range of new opportunities," added Joe Wlad, director of certification, marketing and services at LynuxWorks.
The Kontron PENTXM2 uses the 1.67 GHz dual-core Xeon, Intel's advanced low-power x86 technology, combined with the Intel E7520 server class memory controller hub (MCH). The PENTXM2 is available with up to 4GB of DDR2-400 SDRAM. When paired with the support of VITA 31.1 backplane networking, the PENTXM2's VITA 38 intelligent platform management interface (IPMI) feature provides for easy scaling into a multiprocessing system. The PENTXM2 provides a dual SATA-150, a triple USB 2.0 port and an EIDE interface for an on-board disk or compact-flash support. LynuxWorks LynxOS-178B is the only hard real-time RTCA/DO-178B level A operating system to offer the interoperability benefits of POSIX(R) with support for the ARINC 653 APplication EXecutive (APEX) on a x86 platform. It has LynxOS, a mature UNIX(R)-style operating system (born in 1988) that was designed from the ground up for hard real-time determinism at its core.

Intel All Set To Develop Self-Powered Sensors

With the aim to invent something extraordinary and unique, Intel is creating self-powered microchips. The unique thing about these microchips would be that it could be implanted in the human body, a mobile phone, a building, or anyplace else where people wish to gather information.

During a meeting on Friday with reporters in San Francisco, Intel CTO Justin Rattner described it as "wireless identification and sensing platform," or WISP and it was among several other technologies described by Rattner during the meeting.

Rattner described, "All of the inventions are designed to be energy-efficient. The WISP sensors would use Intel technology for drawing power from the environment. These are install-and-forget kind of systems."

He added, "The power would come from wireless transmissions, such as a Wi-Fi hotspot, a cellular tower, or a TV broadcast, making it possible for the sensors to continuously gather information in almost any environment."

Sensors implanted in street sweepers were used to monitor air quality throughout the city, in an experiment conducted by Intel in San Francisco.

"We could, in fact, litter the planet with these things. Rather than depend on satellite information, we could literally get instantaneous, near-global indication of the state of the planet," Rattner reported.

Moreover, these self-powered sensors could one day even land into human body and thus help a lot to observe health-related activities, such as heart beating. Researchers could even be capable of detecting viruses in the environment one day in order to determine the potential health risks, if they could shrink detectors to the molecular level.

Rattner said, "Within the data center, sensors could be used to map the heat levels of the different systems in order to create a thermally aware load management system."