Isbn: 9781032100593 - energy efficient and reliable embedded nanoscale sram design (16 resultados)

Energy Efficient and Reliable Embedded Nanoscale Sram Design
Reniwal, Bhupendra Singh; Singh, Pooran; Shah, Ambika Prasad; Vishvakarma, Santosh Kumar
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Librería: GreatBookPrices, Columbia, MD, Estados Unidos de AmericaGreatBookPrices
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Energy Efficient and Reliable Embedded Nanoscale Sram Design
Reniwal, Bhupendra Singh; Singh, Pooran; Shah, Ambika Prasad; Vishvakarma, Santosh Kumar
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Librería: GreatBookPrices, Columbia, MD, Estados Unidos de AmericaGreatBookPrices
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EUR 80,13
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Energy Efficient and Reliable Embedded Nanoscale SRAM Design
Reniwal, Bhupendra Singh; Singh, Pooran; Shah, Ambika Prasad; Vishvakarma, Santosh Kumar
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Librería: Majestic Books, Hounslow, Reino UnidoMajestic Books
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Energy Efficient and Reliable Embedded Nanoscale SRAM Design
Reniwal, Bhupendra Singh; Singh, Pooran; Shah, Ambika Prasad; Vishvakarma, Santosh Kumar
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Librería: California Books, Miami, FL, Estados Unidos de AmericaCalifornia Books
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PAP. Condición: New. New Book. Shipped from UK. Established seller since 2000.

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Librería: PBShop.store UK, Fairford, GLOS, Reino UnidoPBShop.store UK
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PAP. Condición: New. New Book. Shipped from UK. Established seller since 2000.

Energy Efficient and Reliable Embedded Nanoscale Sram Design
Reniwal, Bhupendra Singh; Singh, Pooran; Shah, Ambika Prasad; Vishvakarma, Santosh Kumar
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Librería: GreatBookPricesUK, Woodford Green, Reino UnidoGreatBookPricesUK
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EUR 72,83
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Energy Efficient and Reliable Embedded Nanoscale SRAM Design
Reniwal, Bhupendra Singh; Singh, Pooran; Shah, Ambika Prasad; Vishvakarma, Santosh Kumar
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Librería: Books Puddle, Woodside, NY, Estados Unidos de AmericaBooks Puddle
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EUR 89,57
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Condición: New. 1st edition NO-PA16APR2015-KAP.

Energy Efficient and Reliable Embedded Nanoscale Sram Design
Reniwal, Bhupendra Singh; Singh, Pooran; Shah, Ambika Prasad; Vishvakarma, Santosh Kumar
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Librería: GreatBookPricesUK, Woodford Green, Reino UnidoGreatBookPricesUK
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EUR 80,99
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Condición: New.

Energy Efficient and Reliable Embedded Nanoscale SRAM Design
Reniwal, Bhupendra Singh; Singh, Pooran; Shah, Ambika Prasad; Vishvakarma, Santosh Kumar
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Librería: Biblios, frankfurt am main, HESSE, AlemaniaBiblios
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EUR 86,42
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Condición: New.

Energy Efficient and Reliable Embedded Nanoscale SRAM Design
Bhupendra Singh Reniwal, Pooran Singh, Ambika Prasad Shah, Santosh Kumar Vishvakarma
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Librería: Rarewaves.com USA, London, LONDO, Reino UnidoRarewaves.com USA
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EUR 104,34
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Paperback. Condición: New. This reference text covers a wide spectrum for designing robust embedded memory and peripheral circuitry. It will serve as a useful text for senior undergraduate and graduate students and professionals in areas including electronics and communications engineering, electrical engineering, mechanical engineering, and aerospace engineering. Discusses low-power design methodologies for static random-access memory (SRAM) Covers radiation-hardened SRAM design for aerospace applications Focuses on various reliability issues that are faced by submicron technologies Exhibits more stable memory topologiesNanoscale technologies unveiled significant challenges to the design of energy- efficient and reliable SRAMs. This reference text investigates the impact of process variation, leakage, aging, soft errors and related reliability issues in embedded memory and periphery circuitry.The text adopts a unique way to explain the SRAM bitcell, array design, and analysis of its design parameters to meet the sub-nano-regime challenges for complementary metal-oxide semiconductor devices. It comprehensively covers low- power-design methodologies for SRAM, exhibits more stable memory topologies, and radiation-hardened SRAM design for aerospace applications. Every chapter includes a glossary, highlights, a question bank, and problems. The text will serve as a useful text for senior undergraduate students, graduate students, and professionals in areas including electronics and communications engineering, electrical engineering, mechanical engineering, and aerospace engineering. Discussing comprehensive studies of variability-induced failure mechanism in sense amplifiers and power, delay, and read yield trade-offs, this reference text will serve as a useful text for senior undergraduate, graduate students, and professionals in areas including electronics and communications engineering, electrical engineering, mechanical engineering, and aerospace engineering. It covers the development of robust SRAMs, well suited for low-power multi-core processors for wireless sensors node, battery-operated portable devices, personal health care assistants, and smart Internet of Things applications. …

Energy Efficient and Reliable Embedded Nanoscale SRAM Design
Reniwal, Bhupendra Singh; Singh, Pooran; Shah, Ambika Prasad; Vishvakarma, Santosh Kumar
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Librería: Ria Christie Collections, Uxbridge, Reino UnidoRia Christie Collections
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EUR 91,97
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Condición: New. In English.

Energy Efficient and Reliable Embedded Nanoscale Sram Design
Reniwal, Bhupendra Singh/ Singh, Pooran/ Shah, Ambika Prasad/ Vishvakarma, Santosh Kumar
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Librería: Revaluation Books, Exeter, Reino UnidoRevaluation Books
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EUR 105,35
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Paperback. Condición: Brand New. 220 pages. 9.18x6.12x9.21 inches. In Stock.

Energy Efficient and Reliable Embedded Nanoscale SRAM Design
Bhupendra Singh Reniwal, Pooran Singh, Ambika Prasad Shah, Santosh Kumar Vishvakarma
- Tapa blanda
Librería: Rarewaves.com UK, London, Reino UnidoRarewaves.com UK
Contactar con el vendedorVendedor de 5 estrellasCondición: Nuevo
EUR 99,40
Envío por EUR 76,12Se envía de Reino Unido a Estados Unidos de AmericaCantidad disponible: Más de 20 disponibles
Paperback. Condición: New. This reference text covers a wide spectrum for designing robust embedded memory and peripheral circuitry. It will serve as a useful text for senior undergraduate and graduate students and professionals in areas including electronics and communications engineering, electrical engineering, mechanical engineering, and aerospace engineering. Discusses low-power design methodologies for static random-access memory (SRAM) Covers radiation-hardened SRAM design for aerospace applications Focuses on various reliability issues that are faced by submicron technologies Exhibits more stable memory topologiesNanoscale technologies unveiled significant challenges to the design of energy- efficient and reliable SRAMs. This reference text investigates the impact of process variation, leakage, aging, soft errors and related reliability issues in embedded memory and periphery circuitry.The text adopts a unique way to explain the SRAM bitcell, array design, and analysis of its design parameters to meet the sub-nano-regime challenges for complementary metal-oxide semiconductor devices. It comprehensively covers low- power-design methodologies for SRAM, exhibits more stable memory topologies, and radiation-hardened SRAM design for aerospace applications. Every chapter includes a glossary, highlights, a question bank, and problems. The text will serve as a useful text for senior undergraduate students, graduate students, and professionals in areas including electronics and communications engineering, electrical engineering, mechanical engineering, and aerospace engineering. Discussing comprehensive studies of variability-induced failure mechanism in sense amplifiers and power, delay, and read yield trade-offs, this reference text will serve as a useful text for senior undergraduate, graduate students, and professionals in areas including electronics and communications engineering, electrical engineering, mechanical engineering, and aerospace engineering. It covers the development of robust SRAMs, well suited for low-power multi-core processors for wireless sensors node, battery-operated portable devices, personal health care assistants, and smart Internet of Things applications. …

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Librería: CitiRetail, Stevenage, Reino UnidoCitiRetail
Contactar con el vendedorVendedor de 5 estrellasCondición: Nuevo
EUR 60,30
Envío por EUR 43,33Se envía de Reino Unido a Estados Unidos de AmericaCantidad disponible: 1 disponible
Paperback. Condición: new. Paperback. This reference text covers a wide spectrum for designing robust embedded memory and peripheral circuitry. It will serve as a useful text for senior undergraduate and graduate students and professionals in areas including electronics and communications engineering, electrical engineering, mechanical engineering, and aerospace engineering. Discusses low-power design methodologies for static random-access memory (SRAM) Covers radiation-hardened SRAM design for aerospace applications Focuses on various reliability issues that are faced by submicron technologies Exhibits more stable memory topologiesNanoscale technologies unveiled significant challenges to the design of energy- efficient and reliable SRAMs. This reference text investigates the impact of process variation, leakage, aging, soft errors and related reliability issues in embedded memory and periphery circuitry.The text adopts a unique way to explain the SRAM bitcell, array design, and analysis of its design parameters to meet the sub-nano-regime challenges for complementary metal-oxide semiconductor devices. It comprehensively covers low- power-design methodologies for SRAM, exhibits more stable memory topologies, and radiation-hardened SRAM design for aerospace applications. Every chapter includes a glossary, highlights, a question bank, and problems. The text will serve as a useful text for senior undergraduate students, graduate students, and professionals in areas including electronics and communications engineering, electrical engineering, mechanical engineering, and aerospace engineering. Discussing comprehensive studies of variability-induced failure mechanism in sense amplifiers and power, delay, and read yield trade-offs, this reference text will serve as a useful text for senior undergraduate, graduate students, and professionals in areas including electronics and communications engineering, electrical engineering, mechanical engineering, and aerospace engineering. It covers the development of robust SRAMs, well suited for low-power multi-core processors for wireless sensors node, battery-operated portable devices, personal health care assistants, and smart Internet of Things applications. This reference text covers a wide spectrum for designing robust embedded memory and peripheral circuitry. It will serve as a useful text for senior undergraduate, graduate students and professionals in areas including electronics and communications engineering, electrical engineering, mechanical engineering, and aerospace engineering. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.…

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Librería: moluna, Greven, Alemaniamoluna
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EUR 69,86
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Condición: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Bhupendra Singh Reniwal received B. Tech & M. Tech from SGSITS-Indore and Ph.D. from IIT, Indore, India in 2006, 2011 and 2016 respectively. He is currently working as Assistant Professor in the Department of Electrical Engineering, Indian Institute .…