Intel® Core™ i7 Mobile processors
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Based on 32nm process technology , Intel® Core™ i7 processors reature intelligent performance , power efficiency , intergrated graphics and error correcting code (ECC) memory on industry-tandard x86 architecture. When paired with the mobile Intel® QM57 express chipset or mobile Intel® HM55 express chipset , this intergrated two-chip platform provides excellent graphics , memory and I/O bandwith as well as remote managment capabilities and reliability to meet the requirements of a broad rang of embedded applications-including ratail and transaction solutions , gaming platforms and industrial automation equipement.
The processors feature Dual-Core processing with industry-leading performance capabilities , including Intel® Turbo Boost Technology and Intel® Hyper Threading technology. Advanced Encryption Standard Instructions (AES-NI) help accelerate data encryption and decryption , and improved performance. While incoporating advance technology , these processor remain software-compatible with previous IA-32 architecture.
The graphics engine is intergrated into the processor , providing a two-chip solution with enhanced graphics performance compared with previous Intel® platforms. The memory controller hub is also intergrated into the processor , providing faster performance as well as board real state savings. Additionaly , developers can create one board design and scale their product line with a variety of performance-per-watt processors using the same socket. Thermal Design Power (TDP) options range from 18W to 35W.
Get exceptional power, performance and reliability for all your computing needs with an Intel®!!!
Friday, August 20, 2010
Intel® Core™ i7 Desktop processors
Intel® Core™ i7 Desktop processors
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With faster , intelligent , multi-core technology that applies processing power where it is needed most , the new Intel® Core™ i7 processor delivers an incredible breakthrough in CPU perfomance that meets the needs of the most demanding embedded applications.
Base on Intel® 45nm process technology , the Intel Core i7 processor features Quad-Core processing and intelligent perfomance capabilities , such as Intel® Turbo Boost Technology and Intel® Hyper-Treading Technology (Intel® HT Technology) making it at the ideal choice for embedded market segments , such as retail , digital signage , gaming , medical , communications and industrial automation and control.
The Intel Core i7 processor is validated with an Intel® Q57 express chipset. The new 2-chip solution helps reduce memory latency as well as overall platform footprint.
Click here for specifications ......
With faster , intelligent , multi-core technology that applies processing power where it is needed most , the new Intel® Core™ i7 processor delivers an incredible breakthrough in CPU perfomance that meets the needs of the most demanding embedded applications.
Base on Intel® 45nm process technology , the Intel Core i7 processor features Quad-Core processing and intelligent perfomance capabilities , such as Intel® Turbo Boost Technology and Intel® Hyper-Treading Technology (Intel® HT Technology) making it at the ideal choice for embedded market segments , such as retail , digital signage , gaming , medical , communications and industrial automation and control.
The Intel Core i7 processor is validated with an Intel® Q57 express chipset. The new 2-chip solution helps reduce memory latency as well as overall platform footprint.
Thursday, August 19, 2010
Intel® Core™ i5 Mobile processors
Intel® Core™ i5 Mobile processors
Click here for specifications ......
Based on 32nm process technology , Intel® Core™ i5 processors feature intelligent performance , power efficiency , intergrated graphics and error correcting code (ECC) memory on industry-standard x86 architecture. When Paired with the mobile Intel® QM57 express chipset or mobile Intel® HM55 express chipset , this intergrated two-chip platform provides excellent graphics , memory and I/O bandwith , as well as remote managment capabilities and reliability to meet the requiremente of a broad range of embedded applications-including retail and transaction solutions , gaming platforms and industrial automation equipment.
The processors feature dual-core processing with industry-leading performance capabilities , including Intel® Turbo Boost Technology and Intel® Hyper-threading Technology (Intel® HT Technology). Advance Encryption Standard Instructions (AES-NI) help accelerate data encryption , and improve performance. While incorporating advanced technology , these processors remain software-compatible with previous
IA-32 processors.
The graphics engine is intergrated into the processor , providing a two-chip solution with enhanced graphics performance compared with previous Intel® platforms. The memory controller hub is also intergrated into the processor , providing faster performance as well as board real estate savings. Additionally , developers can create one board design and scale their product line with a variety of performance-per-watt processors using the same socket.
Click here for specifications ......
Based on 32nm process technology , Intel® Core™ i5 processors feature intelligent performance , power efficiency , intergrated graphics and error correcting code (ECC) memory on industry-standard x86 architecture. When Paired with the mobile Intel® QM57 express chipset or mobile Intel® HM55 express chipset , this intergrated two-chip platform provides excellent graphics , memory and I/O bandwith , as well as remote managment capabilities and reliability to meet the requiremente of a broad range of embedded applications-including retail and transaction solutions , gaming platforms and industrial automation equipment.
The processors feature dual-core processing with industry-leading performance capabilities , including Intel® Turbo Boost Technology and Intel® Hyper-threading Technology (Intel® HT Technology). Advance Encryption Standard Instructions (AES-NI) help accelerate data encryption , and improve performance. While incorporating advanced technology , these processors remain software-compatible with previous
IA-32 processors.
The graphics engine is intergrated into the processor , providing a two-chip solution with enhanced graphics performance compared with previous Intel® platforms. The memory controller hub is also intergrated into the processor , providing faster performance as well as board real estate savings. Additionally , developers can create one board design and scale their product line with a variety of performance-per-watt processors using the same socket.
Intel® Core™ i5 Desktop processors
Intel® Core™ i5 Desktop processors
Click here for specifications ......
Intel® Core™ i5 Desktop processors features the new Intel® Turbo Boost Technology that can automatically allocate processing power where it is needed. They are designed to meet the needs of performance-intensive embedded applications that require graphics , video and manageability , such as
poit-of-service terminals , ATMs , digital signage , gaming machines , and medical appliances.
These processors include embedded life cycle support , which protects system investments by enabling extented product availability for embedded customers.
Intel® Core™ i5-750 processor is validated with Intel® Q57 express chipset , while the Intel® Core™ i5-660 processor is validated with both the Intel Q57 express chipset and the Intel® 3450 chipset. The new 2-chip solution helps reduce memory latency as well as overall platform footprint.
Click here for specifications ......
Intel® Core™ i5 Desktop processors features the new Intel® Turbo Boost Technology that can automatically allocate processing power where it is needed. They are designed to meet the needs of performance-intensive embedded applications that require graphics , video and manageability , such as
poit-of-service terminals , ATMs , digital signage , gaming machines , and medical appliances.
These processors include embedded life cycle support , which protects system investments by enabling extented product availability for embedded customers.
Intel® Core™ i5-750 processor is validated with Intel® Q57 express chipset , while the Intel® Core™ i5-660 processor is validated with both the Intel Q57 express chipset and the Intel® 3450 chipset. The new 2-chip solution helps reduce memory latency as well as overall platform footprint.
Intel® Core™ i3 Desktop processors
Intel® Core™ i3 Desktop processors
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Based on Intel® 32nm process technology , the Intel® Core™ i3-540 processor features dual-core processing and Intel® Hyper-Threading Technology (Intel® HT)' which enables simultaneous multi-treading to help boost performance for parallel , multi-threaded applications.
Intel Core i3-540 processor can be paired with the Intel® Q57 express chipset or the Intel® 3450 chipset. Providing embedded developers with a choice of controller hub capabilities when designing applications in market segments such as retails , digital signage , gaming , medical , communications and industrial automation and control.
The new 2-chip solution provides enhanced graphics performance compared to previous Intel® platforms as the graphics engine is intergrated with the CPU. The memory controller hub has also has been intergrated into the CPU which contributes to faster performance and smaller overall platform footprints. Developers can create one board design and scale their product line with two different processors using the same socket. While incorporating advanced Processor technology , these processors remain software-compatible with previous IA-32 architecture.
Click here for specifications ......
Based on Intel® 32nm process technology , the Intel® Core™ i3-540 processor features dual-core processing and Intel® Hyper-Threading Technology (Intel® HT)' which enables simultaneous multi-treading to help boost performance for parallel , multi-threaded applications.
Intel Core i3-540 processor can be paired with the Intel® Q57 express chipset or the Intel® 3450 chipset. Providing embedded developers with a choice of controller hub capabilities when designing applications in market segments such as retails , digital signage , gaming , medical , communications and industrial automation and control.
The new 2-chip solution provides enhanced graphics performance compared to previous Intel® platforms as the graphics engine is intergrated with the CPU. The memory controller hub has also has been intergrated into the CPU which contributes to faster performance and smaller overall platform footprints. Developers can create one board design and scale their product line with two different processors using the same socket. While incorporating advanced Processor technology , these processors remain software-compatible with previous IA-32 architecture.
Intel® Core™ Duo processors
Intel® Core™ Duo processors
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The Intel® Core™ Duo processors are member of Intel's growing product line multi-core processors. These dual-core processors combine the benefits of two high-performance execution cores with intelligent power managment features to deliver significantly greater performance-per-watt over previous Intel® processors. Intel's 65nm process technology makes it possible to intergrate two cores , along with many advenced features , in one physical package.
Intel Core Duo processors meet the needs of a wide range of low power embedded applications such as interactive clients and industrial automation equipment. While incorporating advance processor technology , they remain software-compatible with previous 32-bit intel® architecture processors.
Click here for specifications ......
The Intel® Core™ Duo processors are member of Intel's growing product line multi-core processors. These dual-core processors combine the benefits of two high-performance execution cores with intelligent power managment features to deliver significantly greater performance-per-watt over previous Intel® processors. Intel's 65nm process technology makes it possible to intergrate two cores , along with many advenced features , in one physical package.
Intel Core Duo processors meet the needs of a wide range of low power embedded applications such as interactive clients and industrial automation equipment. While incorporating advance processor technology , they remain software-compatible with previous 32-bit intel® architecture processors.
Intel® Celeron® Desktop processors
Intel® Celeron® Desktop processors
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Intel® Celeron® Desktop processors balance proven technology with exceptional value for a wide range of embedded computing designs in market segments such as retail , industrial , automation , gaming and print imaging. Ideally suited to embedded applications that require mid-range performance , the Intel Celeron processors are validated with a variety of Intel® chipsets. These processors include embedded lifecycle support , which protects system investment by enabling extended product availability for embedded customers.
Disign support
Find specifications and technical documents in the Intel® embedded design center for this platform.
Click here for specifications ......
Intel® Celeron® Desktop processors balance proven technology with exceptional value for a wide range of embedded computing designs in market segments such as retail , industrial , automation , gaming and print imaging. Ideally suited to embedded applications that require mid-range performance , the Intel Celeron processors are validated with a variety of Intel® chipsets. These processors include embedded lifecycle support , which protects system investment by enabling extended product availability for embedded customers.
Disign support
Find specifications and technical documents in the Intel® embedded design center for this platform.
Intel® Celeron® Mobile processors
Intel® Celeron® Mobile processors
Click here for specifications ......
Based on 32nm process technology , Intel® Celeron® Mobile processors feature intelligent performance , power efficiency , intergrated graphics and Error Correcting Code (ECC) memory on industry- standard x86 archtecture. When paired with the mobile Intel® QM57 express chipset or mobile Intel® HM55 express chipset , this intergrated two-chip platform provides exceptional performance and value combined with low power for thermally sensitive embedded and communications applications. These processors offer ideal solutions for small-to-medium business and enterprise communications , storage appliances , and value-oriented embedded devices like point of sale , KIOSKs and ATMs.
The graphics engine is intergrated into the processor , providing a two-chip solution with enhanced graphics perfomance compared with previous Intel® platforms. The memory controller hub is also intergrated into the processor , providing faster performance as well as board real estate savings. Additionally , developers can create one board design and scale their product line with a variety of performance-per-watt processors using the same socket.
Click here for specifications ......
Based on 32nm process technology , Intel® Celeron® Mobile processors feature intelligent performance , power efficiency , intergrated graphics and Error Correcting Code (ECC) memory on industry- standard x86 archtecture. When paired with the mobile Intel® QM57 express chipset or mobile Intel® HM55 express chipset , this intergrated two-chip platform provides exceptional performance and value combined with low power for thermally sensitive embedded and communications applications. These processors offer ideal solutions for small-to-medium business and enterprise communications , storage appliances , and value-oriented embedded devices like point of sale , KIOSKs and ATMs.
The graphics engine is intergrated into the processor , providing a two-chip solution with enhanced graphics perfomance compared with previous Intel® platforms. The memory controller hub is also intergrated into the processor , providing faster performance as well as board real estate savings. Additionally , developers can create one board design and scale their product line with a variety of performance-per-watt processors using the same socket.
Intel® Celeron® M processor
Intel® Celeron® M processor
Click here for specifications ......
The Intel® Celeron® M processor family is the next generation of mobil value processors , providing exceptional performance and value combined with low power for thermally sensitive embedded and communications. These processors offer ideal solutions for small-to-medium business and enterprice communications , storage appliances , and value-oriented embedded devices like point of sale , KIOKs and ATMs.
Click here for specifications ......
The Intel® Celeron® M processor family is the next generation of mobil value processors , providing exceptional performance and value combined with low power for thermally sensitive embedded and communications. These processors offer ideal solutions for small-to-medium business and enterprice communications , storage appliances , and value-oriented embedded devices like point of sale , KIOKs and ATMs.
Wednesday, August 18, 2010
Intel® Celeron® D processor
Intel® Celeron® processor D processors provide exciting technologies at a great value and are ideal for communications and embedded computing designs , including interactive clients , and industrial automation applications. These processors include embedded lifecycle support , which protects system investment by enabling extended product availability for embedded customers.
These processors are software compatible with previous IA-32 architecture and are validated with a variety of chipsets , which provide the flexibility for a wide range of embedded implementations. The Intel® Celeron® processor D processors 341? and 352? offer support for 64-bit computing with Intel® 64 architecture , and support excute disable bit , which can prevent certain classes of malicious "buffer overflow" attacks when combined with a supporting operating system.
Intel® Atom™ processor
Anabling you to access email , instant massages (IM) , and the internet , Intel Atom processors also provide long battery life so you can stay conected on the go longer , and the processor can anable more enargy efficient designs as they are based on 45nm HI-K next genaration Intel® Core™ microarchitecture. Plus , Intel Atom processors include intergrated graphics , video , and memory controllers built right into the die.
Processor Slots
Processor Slots
After introducing the Pentium Pro with its integrated L2 cache, Intel discovered that the physical package it chose was very costly to produce. Intel was looking for a way to easily integrate cache and possibly other components into a processor package, and it came up with a cartridge or board design as the best way to do this. In order to accept its new cartridges, Intel designed two different types of slots that could be used on motherboards.
Slot 1 is a 242-pin slot that is designed to accept Pentium II, Pentium III, and most Celeron processors. Slot 2 is a more sophisticated 330-pin slot that is designed for the Pentium II and III Xeon processors, which are primarily for workstations and servers. Besides the extra pins, the biggest difference between Slot 1 and Slot 2 is the fact that Slot 2 was designed to host up to four-way or more processing in a single board. Slot 1 only allows single or dual processing functionality.
Note that Slot 2 is also called SC330, which stands for Slot Connector with 330 pins.
Slot 1 is a 242-pin slot that is designed to accept Pentium II, Pentium III, and most Celeron processors. Slot 2 is a more sophisticated 330-pin slot that is designed for the Pentium II and III Xeon processors, which are primarily for workstations and servers. Besides the extra pins, the biggest difference between Slot 1 and Slot 2 is the fact that Slot 2 was designed to host up to four-way or more processing in a single board. Slot 1 only allows single or dual processing functionality.
Note that Slot 2 is also called SC330, which stands for Slot Connector with 330 pins.
Slot 1 (SC242)
Slot 1, also called SC242 (Slot Connector 242 pins), is used by the SEC (Single Edge Cartridge) design used with the cartridge-type Pentium II/III and Celeron processors. Inside the cartridge is a substrate card that includes the processor and L2 cache. Unlike the Pentium Pro, the L2 cache was mounted on the circuit board and not within the same chip package as the processor. This allowed Intel to use aftermarket SRAM chips instead of making them internally and also allowed it to make processors with different amounts of cache easily. For example, the original Celeron was created by taking a Pentium II and simply leaving out the external cache chips.
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