The Celeron E1400 from Intel is a great introduction to the world of 64-bit computing. Built with the Intel 64 architecture, it can handle all of today’s 32-bit applications aas well as tomorrow’s 64-bit tasks. The 800MHz FSB works with Intel’s Smart Memory Access technology to maximize data availability to the processor by pre-fetching data from system memory.
In today’s digital world multimedia is king. Intel’s Advanced Digital Media boost improves media performance in video, audio and editing applications. Performance is improved by pushing executions to 1 per clock cycle; the number of operations is doubled, since the CPU doesn’t skip cycle, and with today’s faster processors there are more clock cycles in a given time frame.
Intel Dual-Core Celeron Processor The Intel Dual-Core Celeron processor delivers a balanced level of proven technology and exceptional value for desktop PCs. Based on a new energy-efficient microarchitecture, this Dual-Core Celeron processor enables smaller, quieter, and more capable desktop PCs.
Intel Advanced Smart Cache Intel Advanced Smart Cache Technology dynamically allocates the shared L2 cache to each processor core based on workload. This efficient, multi-core-optimized implementation increases the probability that each core can access data from the fast L2 cache, resulting in significantly reduced latency for frequently used data and improved performance.
Intel Extended Memory 64 Technology (Intel EM64T) Intel EM64T enhances next-generation IA-32 platforms with 64-bit addressability and related instructions, allowing flexibility for both 64-bit and 32-bit applications and operating systems.
Enhanced Intel SpeedStep Technology (EIST) EIST allows the system to dynamically adjust processor voltage and core frequency to decrease the average power consumption and heat production. Combined with existing power saving features, EIST provides an excellent balance between supplying power when you need it and conserving power when you don’t.
Execute Disable Bit (EDB) Intel's Execute Disable Bit function can prevent certain classes of malicious "buffer overflow" attacks when combined with a supporting operating system. Execute Disable Bit allows the processor to classify areas of the memory where application code can execute and where it cannot. When a malicious worm attempts to insert code into the buffer, the processor disables code execution, preventing damage or worm propagation.
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