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Intel Pentium 4 2.8 GHz processor
The Intel Pentium 4 processor, Intel's most advanced, most powerful processor for desktop PCs and entry-level workstations, is based on Intel NetBurst microarchitecture. The Pentium 4 processor is designed to deliver performance across applications and usages where end-users can truly appreciate and experience the performance. These applications include Internet audio and streaming video, image processing, video content creation, speech, 3D, CAD, games, multimedia, and multi-tasking user environments. The Pentium 4 processor delivers this world-class performance for consumer enthusiasts and business professional desktop users as well as for entry-level workstation users.

Intel and Taiwan Semiconductor Manufacturing Company (TSMC), one of the world’s largest chip foundries, just announced a marketing collaboration involving Intel’s Atom processor. Atom is Intel’s effort to downsize its processor chips to fit into the realm of emerging smart devices below the Personal Computer space. TSMC will work closely with Intel to port some of the Atom processors to its own process and design flows. TSMC will also have the ability to do engineering on the chip to build customized versions for the large number of existing TSMC customers. However, Intel will have ownership of the final device and the customer, as Intel will be selling the custom designed chips that TSMC designs and builds in its foundry.

As PC sales wane, and their chip revenues along with them, Intel looks to additional sources for revenues. Consumer products represent a massive potential market, though at clearly lower margins and price points. But, Intel’s cost of operations makes it a supplier at too high a price to go after the cut-throat and highly price sensitive consumer market. And Intel is not set up for customized, System On Chip (SOC) solutions the market demands. Enter a partner that can bring all of this capability to Intel – TSMC.

This is a direct attack by Intel on competing processors, especially the ARM processor, which is trying to move upstream from the smart phone and embedded gadgets market it currently dominates, while Intel is trying to move downstream with Atom into this overlapping space. The battleground in the middle will be aggressive and likely bloody, with huge potential returns. And while Intel’s attack is primarily on ARM, it also has profound effect on other players – AMD, Qualcomm (Snapdragon), Nvidia, TI, and even Marvel to whom Intel sold off its own ARM-based processor (XScale).

Intel announced a technology partnership with Nokia that could potentially give the chip maker the breakthrough it has been looking for into the mobile market.

The companies said last night they would work together on a new class of mobile computing devices, but would not say when they would come to market or give details on the kind of wireless products they hoped to develop together.

Analysts saw the pact as strategically important for Intel in the long term because it gains the world's top cellphone maker as a potential client.

But given the lack of details, analysts said it could take one or two years for products to come to market, and it remained to be seen if they would find favour with consumers.

"Intel at least has its foot in the door. It's an important and strategic customer," said Gartner analyst Jon Erensen, who sees the partnership as a way for Intel to get into the market for advanced phones known as smartphones.

However, he added, "You're probably talking about something like 2011 before you get down to the power consumption and integration (levels) you'd need for that kind of device."

Analysts said the deal gives Intel a chance to take on leading cellphone chip makers Qualcomm Inc and Texas Instruments, a big Nokia supplier.

It could also mean stiffer competition for ARM Holdings , which supplies core cellphone processors to both Texas Instruments and Qualcomm, and whose customers rely in part on software from Wind River Systems.

Intel said earlier this month that it would buy Wind River, whose software speeds up and connects devices made by Samsung Electronics, Apple, Hewlett-Packard Co and Motorola.

Intel, whose microprocessors are found in eight out of 10 personal computers, already works with LG Electronics on mobile devices. The agreement with Finland's Nokia, the world's largest cellphone maker, is a bigger step.

Intel Chief Executive Paul Otellini has said that the handheld, embedded and netbook markets would be as important for the company as the PC market in the near future.

Under the agreement, Intel will buy intellectual property from Nokia related to high-speed wireless technology. They also plan to collaborate on open-source mobile Linux software projects, which some analysts say will compete with Google's Android software in the netbook and mobile Internet device (MID) market.

Intel and Nokia said they aimed to define "a new mobile platform beyond today's smartphones, notebooks and netbooks" for hardware, software and mobile Internet services. They stressed the pact was about their technology collaboration and not about specific products.


Simmtronics has announced Intel G-41 chipset based motherboards for desktops as well as notebooks. Simmtronics G41T-M motherboards feature Intel G41 and ICH7 chipsets with support for Socket LGA775 based 45nm process made processors that include Intel Core 2 Quad. A Micro-ATX form factor motherboard based on Intel G41 chipset from Simmtronics is available for Rs. 4,200 with three years of warranty.

INTEL (TICKER: INTC) and Nokia (NOK) announced a strategic alliance to develop Intel architecture-based mobile chips and open-source software. The goal appears to be creating open and standards-based technologies to explore new ideas and products in mobile computing and communications.

Collaborative efforts between the two companies will be centered around these three initiatives: definition of mobile chipset based on Intel architecture; development of open-source software infrastructure such as Nokia's Maemo and Intel's Moblin; and Intel licensing of Nokia's HSPA/3G modem internet protocol ...

INTEL LEADS the CPU market, full stop. More than ever, perhaps. So, why change its perfectly good branding then? After all, Core 2 - and Core 3, and so on - does sound better than Pentium, Hexium or Sexium, and definitely far better than Itanium, all names sounding like some evil Big Pharma drugs.

Aside from a lot of extra marketing and sales work, resulting in marketeers keeping their jobs in these tight times, there doesn't seem to be any real reason to rehash the branding just because of the Nehalem arrival.

The new chips, rather than being called say Core 3, got the brand new Core i7 moniker, in a way reminding us of the old P7 codename. Now, the dual-channel mainstream Nehalems will be called Core i5, and the low-end integrated-graphics parts might bear the burden of the Core i3 brand. And, just like the current i7 with the brand new three-digit product numbers instead of the old four-digit ones, you'll have an interesting time comparing chip models.

So, when you do your holiday system shopping later this year, you could, for instance, choose between the old Core i7 965, the new Core i7 960 or the brand new Core i5 XXX (I didn't say '860'). While all three are internally basically the same CPUs and run at a 3.2GHz clock, the differences will be there. The first one is the old 2008-launch part with unlocked multiplier but C0 stepping. The second one is to be the new part late this year, with locked multiplier but newer, more efficent D or even E stepping. And, finally, the last part will have two memory channels and the LGA1156 versus LGA1366 socket, but faster Turbo mode and of course cheaper P55-based mainboards. Love the confusion?

Many publications commented on the new branding approach, with mixed reactions. There is no clear connection to the old Core 2 branding, and even the product numbering was completely rehashed. Core 2 Quad Extreme QX9770 and Core i7 Extreme 965 cover the same market segment and run at the same default clock and, in fact, aren't that far apart in performance. But there's no correlation at all in the naming. The old Pentium, Pentium 2, Pentium 3 approach was, in this respect, more consistent.

Why not look at something like that, since Intel already went with this BMW-style numbering? The "7" series is the high end, the "5" series is the mainstream, and the "3" series is doing the basic work. An obligatory "X" could be added at the end of any Extreme part in the "7" and "5" series, to avoid having to use different basic numbers for otherwise same-clocked extreme and normal, that is, locked parts. A similar "L" could be added for the low power parts, and an "M" for the mobile parts. Plus, of course, a "G" for the graphics-enriched ones.

After all, at the Xeon front, that's the case already. The "W" parts are top bin workstation CPUs, the "X" parts are for high end servers, the "E" parts are the mainstream offerings, and the "L" parts are the low power workhorses for dense and green computing.

Then, there should be enough numbering in reserve to accommodate the 32nm 'Westmere' parts without changing the i7-i5-i3 sequence. Right now this scheme seems to be a bit tight for the i7 series as we'd only have the 980, 985, 990 and 995 numbers available before hitting the four digits, and that has to take care of the next 20 months at least. Aside from that, the possible i8-i6-i4 sequence could then be left for the Sandy Bridge and Haswell generations.

Talking about numbers, in Chinese, eight is a very lucky number, but four isn't. The last murdered Alpha CPU was codenamed EV8, but was supposed to be really called, umm, the 21464. So, maybe, let's skip any future 'i4' at the low end, eh?

Intel Chairman Craig Barrett will step down from his post in May, ending a 35-year stint at the world's No. 1 chipmaker, the company announced Friday.

Barrett, who joined Intel in 1974, also served as the chief executive of the company from 1998 through 2005.

"Intel became the world's largest and most successful semiconductor company in 1992 and has maintained that position ever since," said Barrett. "I'm extremely proud to have helped achieve that accomplishment."

Barrett said he was confident that Intel has the right management in place to continue its leadership in the chip making industry.

Jane Shaw, a board member since 1993, will replace Barrett as non-executive chairman in May.

Earlier this week, Intel CEO Paul Otellini announced that last quarter's profit tumbled 90% to $234 million, and reportedly told employees that he couldn't rule out the possibility that Intel might actually lose money in the current quarter. It would be the first time that's happened in more than 20 years.

The company also announced Wednesday that it will be cutting production at two U.S. silicon wafer facilities and closing three facilities in Asia, affecting between 5,000 and 6,000 workers.

Shares of Intel (INTC, Fortune 500) rose 3% in mid-afternoon trading, but the company's stock has lost more than 40% since August.

Intel Corp., the world's largest chipmaker, will sell processors to Nokia Oyj for mobile devices, marking the biggest breakthrough in Intel's expansion into the phone market.

The two will develop a new mobile device and chips, Intel and Nokia said today in a statement. Intel will also get mobile- phone radio technology from Nokia and the companies will develop versions of the Linux operating system for mobile devices.


Intel, whose microprocessors run more than 80 percent of the world's personal computers, has struggled for about a decade to get a foothold in the market for mobile-phone chips. The company has a unit that sells a scaled-down version of its personal-computer processor. The chip, called Atom, is designed for mobile devices that access the Web and handle basic computing functions.

"Even if they get just a piece of Nokia's business, it's a big deal," said Will Strauss, a Cave Creek, Arizona-based analyst for research firm Forward Concepts. "Nokia is still the biggest cell-phone maker in the world."

In 2006, Intel Chief Executive Officer Paul Otellini scrapped his predecessor's $5 billion investment in chips for mobile devices, after the company was late to the market and failed to win enough customers.

Restarted Effort

Now Otellini is again pushing to get Intel's chips into phones, a bid to lessen the company's reliance on computers, which account for more than 90 percent of sales. A total of 1.21 billion mobile phones were sold globally last year, according to ABI Research in Oyster Bay, New York.

Intel rose 3 cents to $15.71 at 11:18 a.m. New York time in Nasdaq Stock Market trading. The stock had gained 7 percent this year before today. Nokia, based in Espoo, Finland, fell 10 cents to 10.19 euros in Helsinki trading.

Intel Chief Financial Officer Stacy Smith said in February that the company needed to land one of the top five mobile-phone makers if it wanted to build a significant business.

Intel is challenging Texas Instruments Inc., the largest maker of chips used to run programs in mobile phones. San Diego- based Qualcomm Inc., meanwhile, supplies the majority of communications chips for phones. Both companies have said that Intel would struggle to break their dominance because its products use too much power.

Intel announced in February it had landed LG Electronics Inc., the world's third-largest phone maker, as a customer. LG will use an Intel processor to make a mobile Internet device, a cross between a mobile phone and a computer.

Intel's attempts to create a mobile business have foundered in the past, even when they've had announcements of interest from customers, said Jim McGregor, an analyst at Scottsdale, Arizona-based research firm In-Stat.

"They've been dreaming of getting a significant win at Nokia," he said. "It's a big announcement, they're a key guy. The only question now is whether they will actually come out with a product."

What’s in a name? If you’re Intel, there’s plenty of brand equity in names like Atom, Centrino, Core and Pentium. But there’s also a fair share of confusion, too, among consumers and IT buyers.

And so, Intel is planning on revamping its portfolio of brand names, an effort that revolves around a good-better-best format. In a statement, the company said:

…we are focusing our strategy around a primary ‘hero’ client brand which is Intel Core. Today the Intel Core brand has a mind boggling array of derivatives (such as Core 2 Duo and Core 2 Quad, etc). Over time those will go away in its place will be a simplified family of Core processors spanning multiple levels: Intel Core i3 processor, Intel Core i5 processor, and Intel Core i7 processors. Core i3 and Core i5 are new modifiers and join the previously announced Intel Core i7 to round out the family structure. It is important to note that these are not brands but modifiers to the Intel Core brand that signal different features and benefits. For example, upcoming processors such as Lynnfield (desktop) will carry the Intel Core brand, but will be available as either Intel Core i5 or Intel Core i7 depending upon the feature set and capability. Clarksfield (mobile) will have the Intel Core i7 name.

So glad Intel has taken the complexity out of it. Actually, the company acknowledges that there will be multiple brands in the market next year, including the old names, as the company makes the transition.

Under the Core brand, the i3 represents the entry-level of the Core family, with Core i5 and Core i7 representing the mid-level and high-level products. Celeron will stick around for entry-level computing, Pentium for basic computing and Atom for devices such as netbooks and smartphones. For PCs, think of Celeron being good, Pentium being better and Core being best.

Even Centrino, which came to be synonymous with wireless computing, won’t completely go away. The company plans to transition the name to WiFi and WiMax products next year.

Intel Corp., the world's largest chipmaker, will sell processors to Nokia Oyj for mobile devices, marking the biggest breakthrough in Intel's expansion into the phone market.

The two will develop a new mobile device and chips, Intel and Nokia said today in a statement. Intel will also get mobile- phone radio technology from Nokia and the companies will develop versions of the Linux operating system for mobile devices.


Intel, whose microprocessors run more than 80 percent of the world's personal computers, has struggled for about a decade to get a foothold in the market for mobile-phone chips. The company has a unit that sells a scaled-down version of its personal-computer processor. The chip, called Atom, is designed for mobile devices that access the Web and handle basic computing functions.

"Even if they get just a piece of Nokia's business, it's a big deal," said Will Strauss, a Cave Creek, Arizona-based analyst for research firm Forward Concepts. "Nokia is still the biggest cell-phone maker in the world."

In 2006, Intel Chief Executive Officer Paul Otellini scrapped his predecessor's $5 billion investment in chips for mobile devices, after the company was late to the market and failed to win enough customers.

Restarted Effort

Now Otellini is again pushing to get Intel's chips into phones, a bid to lessen the company's reliance on computers, which account for more than 90 percent of sales. A total of 1.21 billion mobile phones were sold globally last year, according to ABI Research in Oyster Bay, New York.

Intel rose 3 cents to $15.71 at 11:18 a.m. New York time in Nasdaq Stock Market trading. The stock had gained 7 percent this year before today. Nokia, based in Espoo, Finland, fell 10 cents to 10.19 euros in Helsinki trading.

Intel Chief Financial Officer Stacy Smith said in February that the company needed to land one of the top five mobile-phone makers if it wanted to build a significant business.

Intel is challenging Texas Instruments Inc., the largest maker of chips used to run programs in mobile phones. San Diego- based Qualcomm Inc., meanwhile, supplies the majority of communications chips for phones. Both companies have said that Intel would struggle to break their dominance because its products use too much power.

Intel announced in February it had landed LG Electronics Inc., the world's third-largest phone maker, as a customer. LG will use an Intel processor to make a mobile Internet device, a cross between a mobile phone and a computer.

Intel's attempts to create a mobile business have foundered in the past, even when they've had announcements of interest from customers, said Jim McGregor, an analyst at Scottsdale, Arizona-based research firm In-Stat.

"They've been dreaming of getting a significant win at Nokia," he said. "It's a big announcement, they're a key guy. The only question now is whether they will actually come out with a product."

Low-power Pentium® processors with MMX™ technology

Product NumberCore Speed (MHz)External Bus Speed (MHz)Thermal Design Power (Max)VoltageTcasePackage
FV80503CSM66166166664.5W1.9V0-85C296 PPGA
FV80503CSM66266266667.6W1.9V0-85C296 PPGA
GC80503CSM66166166664.1W1.8V0-95C352 HL-PBGA
GC80503CSM66266266667.6W2.0V0-95C352 HL-PBGA
GC80503CS166EXT166664.1W1.8V-40-115C352 HL-PBGA

Pentium® processors with MMX™ technology

Product NumberCore Speed (MHz)External Bus Speed (MHz)Thermal Design Power (Max)VoltageTcasePackage
FV80503662002006615.7W2.8V0-70C296 PPGA
FV80503662332336617.0W2.8V0-70C296 PPGA

430TX PCIset Adds New Performance



The Intel 430TX PCIset supports synchronous DRAM [SDRAM] in embedded applications. The chipset's Ultra DMA capability allows faster downloading of larger data files in applications such as POS and industrial computers along with Concurrent PCI for smoother video and audio performance.

The 430TX PCIset is also available in extended temperatures at -40°C to +85°C degrees ambient. The extended temperature Pentium processor with MMX technology, along with the extended temperature 430TX PCIset, enables an optimized solution for embedded applications.

Advantages of Intel MMX Technology



MMX technology provides 57 new instruction sets to improve processor performance in traditional digital signal processor [DSP] applications, including the graphics, audio and voice processing capabilities now emerging as value-added features in high-performance embedded products. MMX technology can potentially eliminate the requirement for DSP chips in embedded applications such as video kiosks, telecommunications devices and POS terminals.

Pentium® Processors with MMX™ Technology

New Design Options



Together the Pentium processor with MMX technology and the 430TX PCIset provides developers with flexible new options to create value-added embedded designs and upgrade existing products to new levels of performance. Regardless of which design path a developer may select, the Pentium processor with MMX technology offers performance enhancements that can be especially valuable in today's most competitive embedded application segments--including "intelligent" POS terminals, telecommunications equipment, networking devices and high-performance industrial computers.

Pentium® Processors with MMX™ Technology

Product Highlights




166, 200, 233, 266 MHz
430TX PCIset
HL-PBGA, PPGA
Extended temp

Pentium® III processors - Low Power

Product NumberCore Speed (MHz)L2 CacheExternal Bus Speed (MHz)Thermal Design Power (Max)VoltageTjunctionPackage
KC80526GY850256***700***256K10016.12W1.35V0-100C495
BGA
KC80526LY500256500256K10012.2W1.35V0-100C495
BGA
KC80526LY400256400256K10010.1W1.35V0-100C495
BGA

*** Intel Pentium III processor at 850/700 MHz featuring Intel® SpeedStep™ technology (1.6V/1.35V respectively).

Low Voltage Pentium® III processors

Product NumberCore Speed (MHz)L2 CacheExternal Bus Speed (MHz)Thermal Design Power (Max)VoltageTjunctionPackage
RJ80530KZ933512**933**512K13312.2W1.15V0-100C479
µFCBGA
RJ80530KZ800512**800**512K13311.2W1.15V0-100C479
µFCBGA

** Supports dual processing when paired with third party chipsets.

Pentium® III processors

Product NumberCore Speed (MHz)L2 CacheExternal Bus Speed (MHz)Thermal Design Power (Max)VoltageTjunctionPackage
RK80530KZ0125121.26 GHz512K13329.5W1.45V69C*370
FC-PGA2
RB80526PZ0012561 GHz256K13329.0W1.75V75C370
FC-PGA
RB80526PY001256+1 GHz256K10029.0W1.75V75C370
FC-PGA
RB80526PZ866256866256K13326.1W1.75V80C370
FC-PGA
RB80526PY850256850256K10025.7W1.75V80C370
FC-PGA
RB80526PZ733256733256K13322.8W1.75V80C370
FC-PGA
RB80526PY700256700256K10021.9W1.75V80C370
FC-PGA
RB80526PY600256600256K10019.6W1.75V82C370
FC-PGA

Case, not junction
For existing embedded applications using the Intel® 440BX chipset only. Drop ship only.