From Micro to Nanosystems: An Exploratory Study of Influences on Innovation Teams
Commenced in January 2007
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From Micro to Nanosystems: An Exploratory Study of Influences on Innovation Teams

Authors: Norbert Burger, Thorsten Staake

Abstract:

What influences microsystems (MEMS) and nanosystems (NEMS) innovation teams apart from technology complexity? Based on in-depth interviews with innovators, this research explores the key influences on innovation teams in the early phases of MEMS/NEMS. Projects are rare and may last from 5 to 10 years or more from idea to concept. As fundamental technology development in MEMS/NEMS is highly complex and interdisciplinary by involving expertise from different basic and engineering disciplines, R&D is rather a 'testing of ideas' with many uncertainties than a clearly structured process. The purpose of this study is to explore the innovation teams- environment and give specific insights for future management practices. The findings are grouped into three major areas: people, know-how and experience, and market. The results highlight the importance and differences of innovation teams- composition, transdisciplinary knowledge, project evaluation and management compared to the counterparts from new product development teams.

Keywords: Innovation teams, early phases, Microsystems, Nanosystems, technology developments.

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1331037

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[1] C. Hierold, "From micro- to nanosystems: mechanical sensors go nano," Journal of Micromechanics and Microengineering, vol. 14, pp. S1-S11, Sep 2004.
[2] A. B. Frazier, R. O. Warrington, and C. Friedrich, "The miniaturization technologies: past, present, and future," IEEE Transactions on Industrial Electronics, vol. 42, pp. 423-430, 1995.
[3] E. Maine, "Radical innovation through internal corporate venturing: Degussa's commercialization of nanomaterials," R&D Management, vol. 38, pp. 359-371, 2008.
[4] R. Maeda, M. Takahashi, S. Sasaki, and Ieee, "Commercialization of MEMS and nano manufacturing," in 6th International Conference on Polymers and Adhesives in Microelectronics and Photonics, Tokyo, Japan, 2007, pp. 20-23.
[5] A. Griffin and J. R. Hauser, "Integrating R&D and Marketing: A Review and Analysis of the Literature," Journal of Product Innovation Management, vol. 13, pp. 191-215, 1996.
[6] A. Griffin, "PDMA Research on New Product Development Practices: Updating Trends and Benchmarking Best Practices," Journal of Product Innovation Management, vol. 14, pp. 429-458, Nov 1997.
[7] W. C. Crone, "A Brief Introduction to MEMS and NEMS," in Springer handbook of experimental solid mechanics, W. N. Sharpe, Ed., ed New York: Springer, 2008, pp. 203-228.
[8] K. L. Ekinci and M. L. Roukes, "Nanoelectromechanical systems," Review of Scientific Instruments, vol. 76, Jun 2005.
[9] P. Merz, B. Wagner, R. Dudde, and W. Benecke, "MEMS Foundry - Erfordernisse und Herausforderungen," in MikroSystemTechnik KONGRESS 2009, Berlin, 2009.
[10] W. J. Abernathy and K. B. Clark, "Innovation: Mapping the winds of creative destruction," Research Policy, vol. 14, pp. 3-22, 1985.
[11] C. M. Christensen, "Managing Disruptive Technological Change: A Case Study," in The innovator's dilemma when new technologies cause great firms to fail, ed Boston, Massachusetts: Harvard Business School Press, 1997, pp. 187-205.
[12] J. M. Utterback, "Invation of a Stable Business by Radical Innovation," in Mastering the dynamics of innovation: how companies can seize opportunities in the face of technological change, ed Boston, Massachusetts: Harvard Business School Press, 1994, pp. 162-165.
[13] R. G. Cooper, "Managing technology development projects," Research- Technology Management, vol. 49, pp. 23-31, Nov-Dec 2006.
[14] G. A. Stevens and J. Burley, "Piloting the Rocket of Radical Innovation," Research-Technology Management, vol. 46, pp. 16-25, Mar-Apr 2003.
[15] J. E. McGrath, "Time, Interaction, and Performance (TIP) - A Theory of Groups," Small Group Research, vol. 22, pp. 147-174, 1991.
[16] S. G. Cohen and D. E. Bailey, "What makes teams work: Group effectiveness research from the shop floor to the executive suite," Journal of Management, vol. 23, pp. 239-290, 1997.
[17] R. G. Cooper, "Fixing the fuzzy front end of the new product process," CMA Magazine, vol. 71, p. 21, 1997.
[18] R. G. Cooper and E. J. Kleinschmidt, "Screening new products for potential winners," Long Range Planning, vol. 26, pp. 74-81, 1993.
[19] A. Khurana and S. R. Rosenthal, "Integrating the Fuzzy Front End of New Product Development," Sloan Management Review, vol. 38, pp. 103-120, 1997.
[20] R. G. Cooper and E. J. Kleinschmidt, "Success factors in product innovation," Industrial Marketing Management, vol. 16, pp. 215-223, 1987.
[21] H. Sun and W. C. Wing, "Critical success factors for new product development in the Hong Kong toy industry," Technovation, vol. 25, pp. 293-303, 2005.
[22] M. E. Porter, "What is strategy?," Harvard Business Review, vol. 74, pp. 61-78, Nov-Dec 1996.
[23] G. Barczak and D. Wilemon, "Team member experiences in new product development: views from the trenches," R&D Management, vol. 33, pp. 463-479, Nov 2003.
[24] E. B. Roberts, Fusfield, A. R., "Staffing the Innovative Technology- Based Organization," Sloan Management Review, vol. 22, pp. 19-34, 1981.
[25] R. T. Keller, "Transformational leadership, initiating structure, and substitutes for leadership: A longitudinal study of research and development project team performance," Journal of Applied Psychology, vol. 91, pp. 202-210, Jan 2006.
[26] R. C. Harris and J. T. Lambert, "Building Effective R&D Teams: The Senior Manager's Role," Research-Technology Management, vol. 41, pp. 28-35, Sep-Oct 1998.
[27] G. Gemmill and D. Wilemon, "The Hidden Side of Leadership in Technical Team Management," Research-Technology Management, vol. 37, pp. 25-32, Nov-Dec 1994.
[28] F. Norrgren, Schaller, J., "Leadership Style: Its Impact on Cross- Functional Product Development," Journal of Product Innovation Management, vol. 16, pp. 377-384, 1999.
[29] R. G. Cooper and E. J. Kleinschmidt, "New products: What separates winners from losers?," Journal of Product Innovation Management, vol. 4, pp. 169-184, 1987.
[30] E. F. McDonough, "Investigation of factors contributing to the success of cross-functional teams," Journal of Product Innovation Management, vol. 17, pp. 221-235, 2000.
[31] G. Barczak and D. Wilemon, "Successful Team New Team Leaders," Industrial Marketing Management, vol. 21, pp. 61-68, Feb 1992.
[32] S. L. Brown and K. M. Eisenhardt, "Product Development: Past Research, Present Findings, and Future Directions," The Academy of Management Review, vol. 20, pp. 343-378, 1995.
[33] H. Ernst, "Success Factors of New Product Development: A Review of the Empirical Literature," International Journal of Management Reviews, vol. 4, pp. 1-40, 2002.
[34] R. W. Veryzer Jr, "Discontinuous Innovation and the New Product Development Process," Journal of Product Innovation Management, vol. 15, pp. 304-321, 1998.
[35] R. Rothwell, et al., "SAPPHO updated - project SAPPHO phase II," Research Policy, vol. 3, pp. 258-291, 1974.
[36] J. M. Howell and C. M. Shea, "Effects of champion behavior, team potency, and external communication activities on predicting team performance," Group & Organization Management, vol. 31, pp. 180- 211, Apr 2006.
[37] J. M. Howell and C. A. Higgins, "Champions of Technological Innovation," Administrative Science Quarterly, vol. 35, pp. 317-341, Jun 1990.
[38] A. K. Chakrabarti, "Role of Champion in Product Innovation," California Management Review, vol. 17, pp. 58-62, 1974.
[39] B. A. Vojak, A. Griffin, R. L. Price, and K. Perlov, "Characteristics of technical visionaries as perceived by American and British industrial physicists," R&D Management, vol. 36, pp. 17-26, Jan 2006.
[40] C. Edmondson and I. M. Nembhard, "Product Development and Learning in Project Teams: The Challenges Are the Benefits," Journal of Product Innovation Management, vol. 26, pp. 123-138, Mar 2009.
[41] R. Rivas and D. H. Gobeli, "Accelerating innovation at Hewlett- Packard," Research-Technology Management, vol. 48, pp. 32-39, Jan- Feb 2005.
[42] R. G. Cooper and E. J. Kleinschmidt, "Determinants of Timeliness in Product Development," Journal of Product Innovation Management, vol. 11, pp. 381-396, 1994.
[43] G. L. Ragatz, R. B. Handfield, and T. V. Scannell, "Success factors for integrating suppliers into new product development," Journal of Product Innovation Management, vol. 14, pp. 190-202, May 1997.
[44] F. Beneke, "Produktentwicklung. Arbeiten in und mit verschiedenen Disziplinen - wozu?," in Transdisziplinarit├ñt, Bestandsaufnahme und Perspektiven Beitr├ñge zur THESIS-Arbeitstagung im Oktober 2003 in Göttingen, F. Brand, et al., Eds., ed Göttingen: Universit├ñtsverlag, 2004, pp. 79-92.
[45] J. Schummer, "Multidisciplinarity, interdisciplinarity, and patterns of research collaboration in nanoscience and nanotechnology," Scientometrics, vol. 59, pp. 425-465, 2004.
[46] D. Dudley, W. Duncan, and J. Slaughter, "Emerging digital micromirroir device (DMD) applications," in Conference on MOEMS Display and Imaging Systems, San Jose, Ca, 2003, pp. 14-25.
[47] M. R. Douglass, "DMD reliability: a MEMS success story," in Reliability,Testing, and Characterization of Mems/Moems Ii. vol. 4980, R. Ramesham and D. M. Tanner, Eds., ed, 2003, pp. 1-11.
[48] K. Cormican and D. O'Sullivan, "Auditing best practice for effective product innovation management," Technovation, vol. 24, pp. 819-829, 2004.
[49] P. K. Ahmed, "Culture and climate for innovation," European Journal of Innovation Management, vol. 1, pp. 30-43, 1998.
[50] W. Q. Judge, G. E. Fryxell, and R. S. Dooley, "The New Task of R&D Management: Creating Goal-directed Communities for Innovation," California Management Review, vol. 39, pp. 72-85, 1997.
[51] R. L. Ewing, H. S. Abdel-Aty-Zohdy, and G. B. Lamont, "Multidisciplinary collaboration methodology for smart perception system-on-a-chip (SoC)," Analog Integrated Circuits and Signal Processing, vol. 28, pp. 181-192, 2001.
[52] D. E. Nicolau and D. V. Nicolau, "Nanotechnology: the hard or the soft way?," in Conference on Education in Microelectronics and MEMS, Queensland, Australia, 1999, pp. 90-97.
[53] S. D. Senturia, "Perspectives on MEMS, past and future: the tortuous pathway from bright ideas to real products," in 12th Int. Conf. on Solid State Sensors, Actuators and Microsystems, Transducers-03, Bosten, MA, 2003, pp. 10-15.
[54] S. A. Tadigadapa and N. Najafi, "Developments in Microelectromechanical Systems (MEMS): A Manufacturing Perspective," Journal of Manufacturing Science and Engineering, vol. 125, pp. 816-823, 2003.
[55] E. S. Gornev, "Sensors are getting smaller, more functional and smart," Journal of Nano and Microsystem Technique, pp. 18-28, 2009.
[56] B. J. Zirger and M. A. Maidique, "A Model of New Product Development: An Empirical Test," Management Science, vol. 36, pp. 867-883, 1990.
[57] B. Kogut and U. Zander, "Knowledge of the Firm, Combinative Capabilities, and the Replication of Technology," Organization Science, vol. 3, pp. 383-397, 1992.
[58] D. R. Denison, S. L. Hart, and J. A. Kahn, "From chimneys to crossfunctional teams: developing and validating a diagnostic model," Academy of Management Journal, vol. 39, pp. 1005-1023, Aug 1996.
[59] X. M. Song and M. E. Parry, "A cross-national comparative study of new product development processes: Japan and the United," Journal of Marketing, vol. 61, pp. 1-18, 1997.
[60] J. N. Cummings, "Work groups, structural diversity, and knowledge sharing in a global organization," Management Science, vol. 50, pp. 352-364, Mar 2004.
[61] R. Nobel and J. Birkinshaw, "Innovation in multinational corporations: Control and communication patterns in international R & D operations," Strategic Management Journal, vol. 19, pp. 479-496, May 1998.
[62] R. Calantone and R. G. Cooper, "New Product Scenarios: Prospects for Success," Journal of Marketing, vol. 45, pp. 48-60, Spring 1981.
[63] J. R. Hauser, "Metrics thermostat," Journal of Product Innovation Management, vol. 18, pp. 134-153, May 2001.
[64] H. H. Weetall, "Chemical sensors and biosensors, update, what, where, when and how," Biosensors & Bioelectronics, vol. 14, pp. 237-242, Feb 1999.
[65] J. Hauser, G. J. Tellis, and A. Griffin, "Research on Innovation: A Review and Agenda for Marketing Science," Marketing Science, vol. 25, pp. 687-717, November 1, 2006.
[66] J. W. Creswell, "A Framework for Design," in Research design qualitative, quantitative, and mixed methods approaches, 2nd ed Thousand Oaks, Calif.: Sage Publications, 2003, p. 15.
[67] M. Q. Patton, "Conceptual Issues in Qualitative Inquiry," in Qualitative research & evaluation methods, 3rd ed Thousand Oaks, Calif.: Sage Publications, 2002, pp. 104-107.
[68] K. M. Eisenhardt, "Building Theories from Case Study Research," Academy of Management Review, vol. 14, pp. 532-550, 1989.
[69] P. Mayring, "Qualitative Content Analysis," Forum Qualitative Sozialforschung / Forum: Qualitative Social Research, vol. 1, 2000.
[70] K. Krippendorff, "Analytical Techniques," in Content analysis an introduction to its methodology, F. G. Kline, Ed., ed Newbury Park, California (etc.): Sage Publications, 1980, pp. 109-115.
[71] P. Mayring, "Neuere Entwicklung in der qualitativen Forschung und der Qualitativen Inhaltsanalyse," in Die Praxis der Qualitativen Inhaltsanalyse. vol. 2, P. Mayring and M. Gläser-Zikuda, Eds., 2nd ed Weinheim: Beltz, 2008, pp. 7-19.
[72] J. W. Creswell, "Mixed Methods Procedures," in Research design qualitative, quantitative, and mixed methods approaches, 2nd ed Thousand Oaks, Calif.: Sage Publications, 2003, pp. 208-225.
[73] A. M. Huberman and M. B. Miles, "Early Steps in Analysis," in Qualitative data analysis an expanded sourcebook, Second ed Thousand Oaks, CA: SAGE Publ., 1994, pp. 50-89.
[74] B. G. Glaser and A. L. Strauss, The discovery of grounded theory strategies for qualitative research. New York: de Gruyter, 1967.
[75] R. K. Yin, "Designing case Studies," in Case Study Research. Design and Methods. vol. 5, 3rd ed Thousand Oaks: Sage Publications, 2003, pp. 28-33.
[76] NEXUS II, "Market analysis for microsystems 2000-2005, A NEXUS Task Force Report," Market Report February 2002.
[77] S. D. Senturia, "Introduction," in Microsystem design, ed Boston (Online), New York: Kluwer Academic Publishers, 2001, pp. 3-14.
[78] J. Classen, Frey, J., Kuhlmann B., Ernst P. , "MEMS Gyroscopes for Automotive Applications," in Advanced Microsystems for Automotive Applications 2007, ed Berlin, Heidelberg: Springer, 2007, pp. 291-306.
[79] T. Scheiter, et al., "Full integration of a pressure-sensor system into a standard BiCMOS process," in EUROSENSORS XI Meeting, Warsaw, Poland, 1997, pp. 211-214.
[80] P. Vettiger, et al., "The "Millipede" - Nanotechnology Entering Data Storage," IEEE Transactions on Nanotechnology, vol. 1, pp. 39-55, Mar 2002.
[81] N. S. Lee, et al., "The carbon-nanotube based field-emission displays for future large and full color displays," in International Microprocesses and Nanotechnology Conference, Tokyo, Japan, 2000, pp. 124-127.
[82] M. Li, H. X. Tang, and M. L. Roukes, "Ultra-sensitive NEMS-based cantilevers for sensing, scanned probe and very high-frequency applications," Nature Nanotechnology, vol. 2, pp. 114-120, Feb 2007.
[83] E. Peeters, "Challenges in commercializing MEMS," Computational Science and Engineering, IEEE (see also Computing in Science & Engineering), vol. 4, pp. 44-48, 1997.
[84] C. Hierold, A. Jungen, C. Stampfer, and T. Helbling, "Nano electromechanical sensors based on carbon nanotubes," Sensors and Actuators A: Physical, vol. 136, pp. 51-61, 2007.
[85] R. S. Muller, "MEMS: Quo vadis in century XXI?," Microelectronic Engineering, vol. 53, pp. 47-54, 2000.
[86] D. Kanama and A. Kondo, "The limitations of the technology roadmap and importance of new management tools in science-based innovation: The case of nanotechnology in Japan," in IEEE International Conference on Industrial Engineering and Engineering Management, Singapore, SINGAPORE, 2007, pp. 2115-2119.
[87] W. M. Arden, "The International Technology Roadmap for Semiconductors - Perspectives and challenges for the next 15 years," Current Opinion in Solid State and Materials Science, vol. 6, pp. 371- 377, 2002.
[88] E. Liikanen, "Commission recommendation concerning the definition of micro, small and medium-sized enterprises (2003/362/EC)," Official Journal of the European Union, vol. 46, p. 6, 6th May, 2003.
[89] A. Ertas, T. Maxwell, V. P. Rainey, and M. M. Tanik, "Transformation of higher education: the transdisciplinary approach in engineering," Education, IEEE Transactions on, vol. 46, pp. 289-295, 2003.
[90] F. Herzberg, "One more time: How do you motivate employees?," Harvard Business Review, vol. 81, pp. 87-96, Jan 2003.
[91] K. A. Zien and S. A. Buckler, "From experience - Dreams to market: Crafting a Culture of Innovation," Journal of Product Innovation Management, vol. 14, pp. 274-287, Jul 1997.
[92] G. S. Lynn, R. R. Reilly, and A. E. Akgun, "Knowledge management in new product teams: Practices and outcomes," IEEE Transactions on Engineering Management, vol. 47, pp. 221-231, May 2000.
[93] R. Rothwell, "Successful industrial innovation: critical factors for the 1990s," R&D Management, vol. 22, pp. 221-240, 1992.
[94] S. J. Harryson, "From experience - How Canon and Sony drive product innovation through networking and application-focused R&D," Journal of Product Innovation Management, vol. 14, pp. 288-295, Jul 1997.
[95] J. Paasi, P. Valkokari, P. Maijala, T. Luoma, and S. Toivonen, "Managing Uncertainty in the Front End of Radical Innovation Developmnet," in International Association for Management of Technology (IAMOT), Miami, Florida, USA, 2007.
[96] S. J. Harryson, "Entrepreneurship through relationships - navigating from creativity to commercialisation," R&D Management, vol. 38, pp. 290-310, 2008.
[97] H. J. Bullinger, H. P. Lentes, and O. H. Scholtz, "Challenges and chances for innovative companies in a global information society," International Journal of Production Research, vol. 38, pp. 1469-1500, May 2000.
[98] J. W. Creswell, "Variation in Theory Use in Qualitative Research," in Research design qualitative, quantitative, and mixed methods approaches, 3rd ed Los Angeles: SAGE, 2009, pp. 61-64.
[99] M. S. Farley and W. B. Rouse, "Technology Challenges & Opportunities in the Biotechnology, Pharmaceutical & Medical Device Industries," Information Knowledge Systems Management, vol. 2, p. 133, 2000.
[100] P. Cooper, "A study of innovators' experience of new product innovation in organisations," R&D Management, vol. 35, pp. 525-533, 2005.
[101] S. A. Buckler and K. A. Zien, "The Spirituality of Innovation: Learning from Stories," Journal of Product Innovation Management, vol. 13, pp. 391-405, 1996.