Memory Design


Memory Design pdf

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Memory Design Techniques for Low Energy Embedded Systems


Memory Design Techniques for Low Energy Embedded Systems

Author: Alberto Macii

language: en

Publisher: Springer Science & Business Media

Release Date: 2013-03-14


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Memory Design Techniques for Low Energy Embedded Systems centers one of the most outstanding problems in chip design for embedded application. It guides the reader through different memory organizations and technologies and it reviews the most successful strategies for optimizing them in the power and performance plane.

Embedded Memory Design for Multi-Core and Systems on Chip


Embedded Memory Design for Multi-Core and Systems on Chip

Author: Baker Mohammad

language: en

Publisher: Springer Science & Business Media

Release Date: 2013-10-22


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This book describes the various tradeoffs systems designers face when designing embedded memory. Readers designing multi-core systems and systems on chip will benefit from the discussion of different topics from memory architecture, array organization, circuit design techniques and design for test. The presentation enables a multi-disciplinary approach to chip design, which bridges the gap between the architecture level and circuit level, in order to address yield, reliability and power-related issues for embedded memory.

Nonvolatile Memory Design


Nonvolatile Memory Design

Author: Hai Li

language: en

Publisher: CRC Press

Release Date: 2017-12-19


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The manufacture of flash memory, which is the dominant nonvolatile memory technology, is facing severe technical barriers. So much so, that some emerging technologies have been proposed as alternatives to flash memory in the nano-regime. Nonvolatile Memory Design: Magnetic, Resistive, and Phase Changing introduces three promising candidates: phase-change memory, magnetic random access memory, and resistive random access memory. The text illustrates the fundamental storage mechanism of these technologies and examines their differences from flash memory techniques. Based on the latest advances, the authors discuss key design methodologies as well as the various functions and capabilities of the three nonvolatile memory technologies.