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Computing / Multi-level cell / Flash memory / Soft error / Dynamic random-access memory / Phase-change memory / Data corruption / Error detection and correction / Fragmentation / Computer memory / Computer hardware / Non-volatile memory


Approximate Storage in Solid-State Memories Adrian Sampson Jacob Nelson University of Washington
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Document Date: 2014-02-23 20:52:01


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Company

Microsoft / /

Country

United States / /

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Solid-State Memories Adrian Sampson Jacob Nelson University of Washington University of Washington / /

IndustryTerm

memory technologies / feed-forward neural network / database management systems / approximate applications / non-volatile solid-state storage technologies / approximate computing / real software / image processing / certain tolerant applications / fixed energy / main-memory technology / overall energy efficiency / software indicating / main-memory applications / energy efficiency / error-tolerant applications / computing / software interfaces / resistive storage technologies / non-volatile memory technologies / video search database / media processing / software interface / scientific computing / software control / energy / /

Organization

University of Washington University / /

Person

Luis Ceze / Karin Strauss / /

Position

author / guard / Approximate MLCs decrease guard / feed-forward / General / /

ProgrammingLanguage

Java / /

Technology

semiconductor / memory technologies / storage technologies / ADC / bar code / Flash memory / neural network / Java / resistive storage technologies / upcoming memory technologies / non-volatile memory technologies / mobile phones / main-memory technology / machine learning / simulation / SRAM / operating system / mobile device / image processing / Operating Systems / Flash / mobile devices / /

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