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Intel's second generation of 32-bit x86 processors, introduced built-in floating point unit (FPU), 8 KB on-chip L1 cache, and pipelining. Faster per MHz than the 386. Small number of new instructions. P5 original Pentium microprocessors, first x86 processor with super-scalar architecture and branch prediction. P6
CPU architecture A processor microarchitecture, the successor to Nehalem. Renamed to Sandy Bridge after it was discovered that Gesher is also the name of a political party in Israel. [22] The Hebrew word for 'bridge'. 2011 Gilgal LAN controller Intel 82564EB Ethernet PHY. Single-port, 1 Gbit/s, 150 nm. Gilgal is a place mentioned in the Hebrew ...
The Intel Core microarchitecture (provisionally referred to as Next Generation Micro-architecture, [1] and developed as Merom) [2] is a multi-core processor microarchitecture launched by Intel in mid-2006. It is a major evolution over the Yonah, the previous iteration of the P6 microarchitecture series which started in 1995 with Pentium Pro.
The iAPX 432 (Intel Advanced Performance Architecture) is a discontinued computer architecture introduced in 1981. [1] NB 1 ] It was Intel 's first 32-bit processor design. The main processor of the architecture, the general data processor , is implemented as a set of two separate integrated circuits, due to technical limitations at the time.
Die of Intel i860 XP.. The first implementation of the i860 architecture is the i860 XR microprocessor (code-named N10), which ran at 25, 33, or 40 MHz.The second-generation i860 XP microprocessor (code named N11) added 4 Mbyte pages, larger on-chip caches, second level cache support, faster buses, and hardware support for bus snooping, for cache consistency in multiprocessor systems.
Alder Lake is Intel's codename for the 12th generation of Intel Core processors based on a hybrid architecture utilizing Golden Cove performance cores and Gracemont efficient cores. [3] [4] It is fabricated using Intel's Intel 7 process, previously referred to as Intel 10 nm Enhanced SuperFin (10ESF).
In March 2016, Intel announced in a Form 10-K report that it would always do this in future, deprecating the tick–tock cycle in favor of a three-step process–architecture–optimization model, under which three generations of processors are produced under a single manufacturing process, with the third generation out of three focusing on ...
As of 2020, the x86 architecture is used in most high end compute-intensive computers, including cloud computing, servers, workstations, and many less powerful computers, including personal computer desktops and laptops.