Books on the topic 'Manufacturabilité'

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1

Balasinski, Artur. Design for Manufacturability. New York, NY: Springer New York, 2014. http://dx.doi.org/10.1007/978-1-4614-1761-3.

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2

Anderson, David M. Design for Manufacturability. Second edition. | Boca Raton : Taylor & Francis, 2020.: Productivity Press, 2020. http://dx.doi.org/10.4324/9780429285981.

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3

Clark, Raymond H. Printed circuit engineering: Optimizing for manufacturability. New York: Van Nostrand Reinhold, 1989.

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4

Balasinki, Artur. Semiconductors: Integrated circuit design for manufacturability. Boca Raton, FL: CRC Press, 2012.

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5

Yu, Bei, and David Z. Pan. Design for Manufacturability with Advanced Lithography. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-20385-0.

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6

Kaul, Anupama B. Microelectronics to nanoelectronics: Materials, devices & manufacturability. Boca Raton, FL: Taylor & Francis, 2012.

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7

Lampaert, Koen. Analog Layout Generation for Performance and Manufacturability. Boston, MA: Springer US, 1999.

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8

Lampaert, Koen. Analog layout generation for performance and manufacturability. Boston: Kluwer Academic, 1999.

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9

Lampaert, Koen, Georges Gielen, and Willy Sansen. Analog Layout Generation for Performance and Manufacturability. Boston, MA: Springer US, 1999. http://dx.doi.org/10.1007/978-1-4757-4501-6.

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10

Kundu, Sandip. Nanoscale CMOS VLSI circuits: Design for manufacturability. New York: McGraw-Hill, 2010.

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11

M, Anderson David. Design for manufacturability: Optimizing cost, quality, and time to market. Lafayette, Calif: CIM Press, 1990.

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12

Gayretli, Ahmet. An expert system for supporting design consistency based on design for manufacturability. Leicester: De Montfort University, 1999.

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13

Singh, Vivek K. Design for manufacturability through design-process integration II: 28-29 February 2008, San Jose, California, USA. Edited by Society of Photo-optical Instrumentation Engineers and International SEMATECH. Bellingham, Wash: SPIE, 2008.

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14

Shalimov, Mihail, Andrey Fiveyskiy, and Ekaterina Votinova. The basics of technological preparation of production. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1027837.

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Abstract:
The tutorial provides basic information about the purpose, content, basic principles and organization of technological preparation of welding production. The types of technical documents, their purpose and content; fundamentals of design of technological process of manufacture of welded structures. Special attention is paid to the optimisation of the design for manufacturability. A careful study of the textbook material will prepare the student for designing welded structures with the required accuracy and reliability at a given performance and economic efficiency, as well as development of technological processes of welding, providing the weld joints with the desired properties of reliability and safe operation of welded products. Designed for students training areas 15.03.01 mechanical engineering, 12.03.05 "Laser engineering and laser technologies" may be useful to students of lyceums, colleges, vocational schools and technical schools.
15

Manufacturing International '90 (1990 Atlanta, Ga.). Design, reliability, and education of manufacturability: Presented at Manufacturing International '90, Atlanta, Georgia, March 25-28, 1990. New York, N.Y: American Society of Mechanical Engineers, 1990.

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16

Rieger, Michael L., and Joerg Thiele. Design for manufacturability through design-process integration IV: 24-25 February 2010, San Jose, California, United States. Edited by SPIE (Society) and SEMATECH (Organization). Bellingham, Wash: SPIE, 2010.

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17

M, Anderson David. Design for manufacturability: How to use concurrent engineering to rapidly develop low-cost, high-quality products for lean production. Boca Raton, Florida: CRC Press/Taylor & Francis Group, 2014.

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18

International IEEE Conference on the Asian Green Electronics (2005 Shanghai, China). Proceeding of 2005 International Conference on Asian Green Electronics: Design for manufacturability and reliability (2005AGEC) : March 15-18, 2005, Shanghai, China. Piscataway, N.J: IEEE, 2005.

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19

José, Pineda de Gyvez, Pradhan Dhiraj K, and IEEE Circuits and Systems Society., eds. Integrated circuit manufacturability. Piscataway, NJ: IEEE Press, 1998.

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20

Balasinski, Artur. Design for Manufacturability. SPRINGER, 2020.

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21

de Gyvez, Jos¿ Pineda, and Dhiraj Pradhan. Integrated Circuit Manufacturability. IEEE, 1998. http://dx.doi.org/10.1109/9780470544921.

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22

Anderson, David M. Design for Manufacturability. Productivity Press, 2014. http://dx.doi.org/10.1201/b16501.

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23

G, Bralla James, ed. Design for manufacturability handbook. 2nd ed. New York: McGraw-Hill, 1999.

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24

Engquist, David Thomas. Computer-aided design for manufacturability. 1992.

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25

Clark, Raymond H. Printed Circuit Engineering: Optimizing for Manufacturability. Springer, 2012.

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26

Gillespie, LaRoux K. Design for Manufacturability: Technologies and Processes. McGraw-Hill Education, 2017.

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27

Yuan, Kun, David Z. Pan, and Minsik Cho. Manufacturability Aware Routing in Nanometer VLSI. Now Publishers, 2010.

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28

1933-, Ghosh Asish, Hiremath Basavaraj V, Halloran John W, American Ceramic Society Meeting, and Design for Manufacturability and Manufacture of Ceramic Components Symposium (1994 : Indianapolis, Ind.), eds. Design for manufacturability of ceramic components. Westerville, Ohio: American Ceramic Society, 1995.

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29

Balasinski, Artur. Semiconductors: Integrated Circuit Design for Manufacturability. Taylor & Francis Group, 2017.

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30

Clark, Raymond H. Printed Circuit Engineering: Optimizing for Manufacturability. Van Nostrand Reinhold, 1988.

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31

Design for Manufacturability and Statistical Design. Boston, MA: Springer US, 2008. http://dx.doi.org/10.1007/978-0-387-69011-7.

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32

Yu, Bei, and David Z. Pan. Design for Manufacturability with Advanced Lithography. Springer, 2015.

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33

Kaul, Anupama B. Microelectronics to Nanoelectronics: Materials, Devices and Manufacturability. Taylor & Francis Group, 2017.

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34

Kaul, Anupama B. Microelectronics to Nanoelectronics: Materials, Devices and Manufacturability. Taylor & Francis Group, 2017.

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35

Mason, Mark E. Design for Manufacturability Through Design-Process Integration VI. SPIE, 2012.

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36

Sturtevant, John L. Design-Process-Technology Co-Optimization for Manufacturability VIII. SPIE, 2014.

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37

Capodieci, Luigi. Design-Process-Technology Co-Optimization for Manufacturability X. SPIE, 2016.

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38

Mason, J. Design for Manufacturability 1994 (De Series : Volume 67). American Society of Mechanical Engineers, 1994.

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39

Mason, Mark, and John Sturtevant. Design for Manufacturability Through Design-Process Integration VII. SPIE, 2013.

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40

Capodieci, Luigi. Design-Process-Technology Co-Optimization for Manufacturability XI. SPIE, 2018.

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41

Sturtevant, John L. Design-Process-Technology Co-Optimization for Manufacturability IX. SPIE, 2015.

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42

Design for Manufacturability and Yield for Nano-Scale CMOS. Dordrecht: Springer Netherlands, 2007. http://dx.doi.org/10.1007/978-1-4020-5188-3.

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43

Design for Manufacturability, 1995 Current Engineering and Design Man. Amer Society of Mechanical, 1995.

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44

José, Pineda de Gyvez, Pradhan Dhiraj K, and IEEE Circuits and Systems Society., eds. Integrated circuit manufacturability: The art of process and design integration. Piscataway, NJ: IEEE Press, 1999.

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45

Integrated circuit manufacturability: The art of process and design integration. Piscataway, NJ: IEEE Press, 1998.

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46

Pradhan, Dhiraj. Integrated Circuit Manufacturability: The Art of Process and Design Integration. Wiley-IEEE Press, 1998.

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47

1943-, Helander Martin, Nagamachi Mitsuo 1936-, and International Ergonomics Association, eds. Design for manufacturability: A systems approach to concurrent engineering and ergonomics. London: Taylor & Francis, 1992.

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48

Barbara, Vasquez, Kawasaki Hisao, and Society of Photo-optical Instrumentation Engineers., eds. Microelectronics manufacturability, yield, and reliability: 20-21 October 1994, Austin, Texas. Bellingham, Wash., USA: SPIE, 1994.

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49

Anderson, David M. Design for Manufacturability : Optimizing Cost, Quality, and Time-to-Market; Second Edition. C I M Pr, 2001.

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50

Design for Manufacturability and Yield for NanoScale CMOS Integrated Circuits and Systems. Springer, 2010.

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