Books on the topic 'Memory device'

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1

Field, Lewis. Nonvolatile memory devices. Norwalk, CT: Business Communications Co., 1999.

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2

Nonvolatile memories: Materials, device and applications. Stevenson Ranch, California, USA: American Scientific Publishers, 2012.

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3

Jaglall, Susan. Categorical organization as a device for facilitating memory recall. Sudbury, Ont: Laurentian University, Department of Psychology, 1993.

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4

Dace, Andrea. The flash memory market. Saratoga, Calif: Electronic Trend Publications, 1993.

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5

Stansberry, Mark. Computer memory: Important trends and directions. Norwalk, CT: Business Communications Co., 2002.

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6

Weissman, Steven B. The impact of technology on the optical disk memory market. Boston, Mass: Communications Pub. Group, 1986.

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7

Commission, United States International Trade. In the matter of certain memory devices with increased capacitance and products containing same. Washington, DC: U.S. International Trade Commission, 1996.

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8

United States International Trade Commission. In the matter of certain dynamic random access memories, components thereof and products containing same: Investigation no. 337-TA-242. Washington, DC: U.S. International Trade Commission, 1987.

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9

United States International Trade Commission. 64K dynamic random access memory components from Japan: Determination of the Commission in investigation no. 731-TA-270 (preliminary) under the Tariff Act of 1930, together with the information obtained in the investigation. Washington, D.C: U.S. International Trade Commission, 1985.

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10

Ilene, Hersher, ed. 64K dynamic random access memory components from Japan: Determination of the Commission in investigation no. 731-TA-270 (final) under the Tariff Act of 1930, together with the information obtained in the investigation. Washington, DC: U.S. International Trade Commission, 1986.

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11

In the matter of certain dynamic random access memories, components thereof and products containing same: Investigation no. 337-TA-242. Washington, DC: U.S. International Trade Commission, 1987.

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12

Panasonic. MOS memory devices. Kyoto: Matsushita Electronic Corp, 1989.

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13

Denning, Peter J. Memory protection. [Moffett Field, Calif.?]: Research Institute for Advanced Computer Science, 1988.

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14

Maruyama, Naoya, Bronis R. de Supinski, and Mohamed Wahib, eds. OpenMP: Memory, Devices, and Tasks. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-45550-1.

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15

Chen, Wen-Chang, ed. Electrical Memory Materials and Devices. Cambridge: Royal Society of Chemistry, 2015. http://dx.doi.org/10.1039/9781782622505.

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16

Akaev, Askar Akaevich. Holographic memory. New York: Allerton Press, 1997.

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17

Akaev, Askar Akaevich. Holographic memory. New York: Allerton Press, 1998.

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18

Books, Time-Life, ed. Memory and storage. Alexandria, Va: Time-Life Books, 1987.

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19

1978-, Kishi Hirofumi, ed. Teikō henka memori no chiteki zairyō sekkei: Intelligent/directed materials design for resistance random access memory. Suita-shi: Ōsaka Daigaku Shuppankai, 2012.

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20

Herbert, John. Formal verification of basic memory devices. Cambridge: University of Cambridge, Computer Laboratory, 1988.

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21

Horn, C. Stable memory another look. Dublin: (Trinity College, Department of Computer Science), 1991.

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22

Jacob, Bruce. Memory systems: Cache, DRAM, disk. Burlington, MA: Morgan Kaufmann Publishers, 2008.

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23

Handy, Jim. The cache memory book. Boston: Academic Press, 1993.

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24

The cache memory book. 2nd ed. San Diego: Academic Press, 1998.

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25

Coghlan, B. Transparent stable memory. Dublin: Trinity College, Department of Computer Science, 1991.

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26

Inc, Toshiba America. MOS memory products data book. Tustin, Calif: Toshiba America, 1985.

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27

Isailović, Jordan. Videodisc and optical memory systems. Englewood Cliffs, N.J: Prentice-Hall, 1985.

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28

Flynn, M. J. Sparse distributed memory principles of operation. [Moffett Field, Calif.]: Research Institute for Advanced Computer Science, 1989.

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29

Denning, Peter J. A view of Kanerva's sparse distributed memory. [Moffett Field, Calif.?]: Research Institute for Advanced Computer Science, NASA Ames Research Center, 1986.

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30

Handōtai memori. Tōkyō: Koronasha, 2008.

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31

Nanomagnetic and spintronic devices for energy-efficient memory and computing. Chichester, UK: John Wiley & Sons, 2016.

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32

Videodisc and optical memory systems. Englewood Cliffs: Prentice-Hall, 1985.

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33

Memory systems and pipelined processors. Sudbury, Mass: Jones and Bartlett, 1996.

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34

Matas, Brian. Memory 1997: Complete coverage of DRAM, SRAM, EPROM, and flash memory ICs. Scottsdale, AZ: Integrated Circuit Engineering Corp., 1997.

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35

Joodaki, Mojtaba. Selected Advances in Nanoelectronic Devices: Logic, Memory and RF. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013.

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36

Waegemann, C. Peter. The handbook of optical memory systems: Feasibility, design, implementation. Newton, MA: Optical Disk Institute, 1989.

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37

Waegemann, C. Peter. The handbook of optical memory systems: Feasibility, design, implementation. 2nd ed. Newton, MA: Optical Disk Institute, 1990.

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38

Rogers, David. BIRD: A general interface for sparse distributed memory simulators. [Moffett Field, Calif.]: Research Institute for Advanced Computer Science, NASA Ames Research Center, 1990.

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39

Newnes PC memory pocket book. Oxford: Newnes, 1992.

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40

Adams, R. Dean. High performance memory testing: Design principles, fault modeling, and self-test. Boston: Kluwer Academic, 2003.

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41

Horiguchi, Masashi. Nanoscale memory repair. New York: Springer, 2011.

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42

Troubleshooting & repairing PC drives & memory systems. New York: Windcrest/McGraw-Hill, 1994.

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43

Accessories, Sega Dreamcast. Expanded Visual Memory Device. Interact Accessories, 2000.

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44

Accessories, Sega Dreamcast. Standard Visual Memory Device. Interact Accessories, 2020.

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45

Shape-Memory Polymer Device Design. Oxford, England: William Andrew, Applied Science Publishers, 2017.

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46

Redaelli, Andrea. Phase Change Memory: Device Physics, Reliability and Applications. Springer, 2018.

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47

Redaelli, Andrea. Phase Change Memory: Device Physics, Reliability and Applications. Springer, 2017.

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48

Shuichi, Miyazaki, Fu Yong Qing, and Huang Wei Min, eds. Thin film shape memory alloys: Fundamentals and device applications. Cambridge, UK: Cambridge University Press, 2009.

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49

Shuichi, Miyazaki, Fu Yong Qing, and Huang Wei Min, eds. Thin film shape memory alloys: Fundamentals and device applications. New York: Cambridge University Press, 2009.

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50

Shuichi, Miyazaki, Fu Yong Qing, and Huang Wei Min, eds. Thin film shape memory alloys: Fundamentals and device applications. Cambridge, UK: Cambridge University Press, 2009.

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