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Distributed and collaborative product engineering for MEMS

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Small and inexpensive acceleration sensors, cameras, microphones, micro-mirrors, touch-panels and other products of the MNT industry are the core components of almost every new and innovative electronic appliance. Customer-tailored functions and specifications require a deep involvement of the customer throughout the whole value chain. Often the varying stages of the product engineering flow are carried out by diverse companies (or at least different departments) in different locations. With "time to market" being essential, a fast and effective product engineering approach along with comprehensive software support is required. In this paper we introduce a comprehensive methodology and based on that a concept for a distributed environment for customer-oriented product engineering of MEMS products. The development is currently carried out in an international EU research project.
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Bibliografia
  • [1] Yole Developpement, MEMS : Global MEMS/Microsystems Markets and Opportunities 2008. Semi(r) and Yole Developpement, 2008.
  • [2] H. van Heeren, "Appearance of a moore's law in mems? trends affecting the mnt supply chain." vol. 6186. no. 1. SPIE, 2006.
  • [3] D. Ortloff. "A product engineering method for mems ip developments," in Proceedings of ICME: 5th CIRP International Seminar on Intelligent Computing in Manufacturing Engineering, Ischia, 2006, cIRP ICME'06.
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  • [5] Yole Developpement, MEMS Foundries 2009. Yole Developpement, 2009.
  • [6] Yoles Developpement, Status of the MEMS Industry. Yole Developpement, 2010.
  • [7] D. Ortloff, "Product Engineering for silicon based MEMS IP," PhD thesis. University Siegen, 2006.
  • [8] CORONA c/o IVAM, "Corona: Customer-oriented product engineering of micro and nano devices." http://www.corona-mnt.eu, 2009.
  • [9] R. G. Cooper, Product leadership - creasing and launching superior new products. Perseus Books, 1999.
  • [10] P. Alien. Service Orientation: Winning Strategies and Best Practices. Cambridge University Press, May 2006.
  • [11] D. Ortloff. J. Popp. T. Schmidt, and R. Brück, "Process development support environment; a tool suite to engineer manufacturing sequences," Int. J. Computer Mater. Sci. and Surf. Eng., vol. 2. no. 3/4, pp. 312-334, 2009.
  • [12] A. Wagener, J. Popp, T. Schmidt. K. Hahn, R. Brück, and D. Ortloff, "Environment for design and verification of mems fabrication processes," in Proceedings of the MST 2005, 2005, mST 2005.
  • [13] K. Hahn, A. Wagener, J. Popp. and R. Brück, "Process Management and Design for MEMS and Microelectronics Technologies," in Proceedings of SPIE: Microelectronics: Design, Technology, and Packaging, Perth, vol. 5274, 2003, sPIE Perth 2003.
  • [14] T. Schmidt. K. Hahn, and R. Brück, "A Knowledge based approach for mems fabrication process design automation," in 33rd IEEE/CPMT International Electronics Manufacturing Technology Symposium, Nov. 2008, iEMT 2008, Penang.
  • [15] V. Sinha. B. Sengupta, and S. Chandra, "Enabling collaboration in distributed requirements management," IEEE Soflw., vol. 23, no. 5, pp. 52-61,2006.
  • [16] L.-T. Cheng, C. R. de Souza. S. Hupfer. J. Patterson, and S. Ross, "Building collaboration into ides," Queue, vol. 1, no. 9, pp. 40-50, 2004.
  • [17] V. S. Sinha, B. Sengupta, and S. Ghosal, "An adaptive tool integration framework to enable coordination in distributed software development," in ICGSE '07: Proceedings of the Interntional Conference on Global Software Engineering. Washington, DC, USA: IEEE Computer Society, 2007, pp. 151-155.
  • [18] K. Hahn, T. Schmidt, M. Mielke, R. Bruck, and D. Ortloff, "Micro and nano product engineering using data management for silicon-based fabrication process development," in Nanotechnology, 2009. IEEE-NANO 2009. 9th IEEE Conference on, July 2009, pp. 337-340.
  • [19] B. de Alwis and J. Sillito, "Why are software projects moving from centralized to decentralized version control systems?" in CHASE '09: Proceedings of the 2009 ICSE Workshop on Cooperative and Human Aspects on Software Engineering. Washington, DC, USA: IEEE Computer Society, 2009, pp. 36-39.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-LOD6-0024-0026
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