DocumentCode
1295669
Title
Magnetoelectronic memories last and last
Author
Johnson, Mark
Author_Institution
Naval Res. Lab., Washington, DC, USA
Volume
37
Issue
2
fYear
2000
fDate
2/1/2000 12:00:00 AM
Firstpage
33
Lastpage
40
Abstract
Nonvolatile RAMs built with thin films of ferromagnetic material are poised to challenge dynamic and nonvolatile memories based on conventional semiconductors. At the root of the excitement are electronic devices with a ferromagnetic component that lets them not only switch between two stable states in one clock cycle but also retain the state they are in when power is removed. The compact design and simple operation of magnetoelectronic devices make them ideal storage cells for fast random-access memory (RAM). Prototypes improve by several orders of magnitude on the speed, power, and reliability of semiconducting floating-gate nonvolatile memory and have achieved cell sizes and operating speeds that are competitive with dynamic (volatile) RAM. Further off in the future is the intriguing prospect of instantaneously reprogrammable logic. Magnetoelectronic devices may be grouped according to the physics of their operation into three main categories: hybrid ferromagnet semiconductor structures, magnetic tunnel junctions, and all-metal spin transistors and spin valves
Keywords
ferromagnetic materials; magnetic film stores; random-access storage; all-metal spin transistors; all-metal spin valves; electronic devices; fast random-access memory; ferromagnetic thin films; hybrid ferromagnet semiconductor structures; magnetic tunnel junctions; magnetoelectronic devices; magnetoelectronic memories; nonvolatile RAM; stable states switching; storage cells; Clocks; Magnetic materials; Magnetic semiconductors; Magnetoelectronics; Nonvolatile memory; Power semiconductor switches; Prototypes; Random access memory; Read-write memory; Semiconductor thin films;
fLanguage
English
Journal_Title
Spectrum, IEEE
Publisher
ieee
ISSN
0018-9235
Type
jour
DOI
10.1109/6.819927
Filename
819927
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