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All chips of this type have a floating-point unit (FPU) that is better than the one in older ARMv7-A and NEON chips. Some of these chips have coprocessors also include cores from the older 32-bit architecture (ARMv7). Some of the chips are SoCs and can combine both ARM Cortex-A53 and ARM Cortex-A57, such as the Samsung Exynos 7 Octa.
ARM7, ARM Cortex-M, ARM Cortex-A (on Jailhouse hypervisor), Hitachi H8, Altera Nios2, Microchip dsPIC (including dsPIC30, dsPIC33, and PIC24), Microchip PIC32, ST Microelectronics ST10, Infineon C167, Infineon Tricore, Freescale PPC e200 (MPC 56xx) (including PPC e200 z0, z6, z7), Freescale S12XS, EnSilica eSi-RISC, AVR, Lattice Mico32, MSP430 ...
ARM (stylised in lowercase as arm, formerly an acronym for Advanced RISC Machines and originally Acorn RISC Machine) is a family of RISC instruction set architectures (ISAs) for computer processors. Arm Holdings develops the ISAs and licenses them to other companies, who build the physical devices that use the instruction set.
Big-endian architectures instead arrange bytes with the most significant byte at the lowest-numbered address. The x86 architecture as well as several 8-bit architectures are little-endian. Most RISC architectures (SPARC, Power, PowerPC, MIPS) were originally big-endian (ARM was little-endian), but many (including ARM) are now configurable as ...
ARM Cortex-A15 MPCore: 2010 15 Multi-core (up to 16), out-of-order, speculative issue, 3-way superscalar ARM Cortex-A53: 2012 Partial dual-issue, in-order ARM Cortex-A55: 2017 8 in-order, speculative execution ARM Cortex-A57: 2012 Deeply out-of-order, wide multi-issue, 3-way superscalar ARM Cortex-A72: 2015 ARM Cortex-A73: 2016 Out-of-order ...
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This is a list of central processing units based on the ARM family of instruction sets designed by ARM Ltd. and third parties, sorted by version of the ARM instruction set, release and name. In 2005, ARM provided a summary of the numerous vendors who implement ARM cores in their design. [ 1 ]
The ARM architecture is used in most other product categories, especially high-volume battery powered mobile devices such as smartphones and tablet computers. Some Xeon Phi processors support four-way hyper-threading, effectively quadrupling the number of threads. [1]