Next Generation Spin Torque Memories

Nonfiction, Science & Nature, Technology, Nanotechnology, Electronics
Cover of the book Next Generation Spin Torque Memories by Brajesh Kumar  Kaushik, Shivam Verma, Anant Aravind Kulkarni, Sanjay Prajapati, Springer Singapore
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Author: Brajesh Kumar Kaushik, Shivam Verma, Anant Aravind Kulkarni, Sanjay Prajapati ISBN: 9789811027208
Publisher: Springer Singapore Publication: April 7, 2017
Imprint: Springer Language: English
Author: Brajesh Kumar Kaushik, Shivam Verma, Anant Aravind Kulkarni, Sanjay Prajapati
ISBN: 9789811027208
Publisher: Springer Singapore
Publication: April 7, 2017
Imprint: Springer
Language: English

This book offers detailed insights into spin transfer torque (STT) based devices, circuits and memories. Starting with the basic concepts and device physics, it then addresses advanced STT applications and discusses the outlook for this cutting-edge technology. It also describes the architectures, performance parameters, fabrication, and the prospects of STT based devices. Further, moving from the device to the system perspective it presents a non-volatile computing architecture composed of STT based magneto-resistive and all-spin logic devices and demonstrates that efficient STT based magneto-resistive and all-spin logic devices can turn the dream of instant on/off non-volatile computing into reality.

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This book offers detailed insights into spin transfer torque (STT) based devices, circuits and memories. Starting with the basic concepts and device physics, it then addresses advanced STT applications and discusses the outlook for this cutting-edge technology. It also describes the architectures, performance parameters, fabrication, and the prospects of STT based devices. Further, moving from the device to the system perspective it presents a non-volatile computing architecture composed of STT based magneto-resistive and all-spin logic devices and demonstrates that efficient STT based magneto-resistive and all-spin logic devices can turn the dream of instant on/off non-volatile computing into reality.

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