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National Innovation Ecosystems (IT and Electronics) (Technical Insights)

  • December 2013
  • 110 pages
  • Frost & Sullivan
Report ID: 1939374

Summary

Table of Contents

Multi-dimensional Indicators fostering Innovation efforts at the National level

This study focusses on assessing the Innovation landscape across four different regions that are designated to be innovation belts for the sectors under evaluation. USA, Israel, Sweden, and Korea are the four regions that are being researched in this study. National Innovation Ecosystems comprising the support system, framework, strategy which is available for promoting, enhancing, and spearheading innovation initiatives are being focused in this research service. The study also attempts to devise a technology roadmap at a national level. The study focusses on three broad technology clusters–Information and Communication Technologies; Electronics; Manufacturing & Automation.

Research Snapshot

This study focusses on assessing the Innovation landscape across four different regions that are designated to be innovation belts for the sectors under evaluation. USA, Israel, Sweden and Korea are the four regions that are being researched in this study.

National Innovation Ecosystems comprising the support system, framework, strategy which is available for promoting, enhancing and spearheading innovation initiatives is the focus of the research service. The study also attempts to devise a technology roadmap at a National level. The study focusses on three broad technology clusters–Information and Communication Technologies; Electronics; Manufacturing & Automation. Specifically, within each identified innovation belt supporting National Innovation frameworks are discussed for the following technologies.

• Nano-manufacturing
• Additive Manufacturing & 3D Printing
• Laser Technologies
• Ubiquitous Wireless Sensors
• Nanoelectronics
• LED Lighting
• Sensors for mHealth
• Haptics & Touch
• Flexible Electronics
• Context-Aware Mobility
• Big Data Analytics
• Cloud Computing

Innovation indicators such as R&D clusters, collaboration & partnerships, R&D/commercialization policies, innovation promotion programs, tax incentives, supporting R&D infrastructure, innovation culture are discussed as part of this study. This report would benefit technology developers/ national agencies in identifying suitable locations for R&D while also offering a perspective of best practices by indicators. This can also help in designing the migration path and the National Roadmaps by technology clusters; designing R&D portfolio that is aligned with the nation and can help reap the benefits.

National Technology Roadmap - USA

Electronics
1 Sensors for mHealth
2 LED Lighting
3 Wide Bandgap Semiconductors
4 Sensors for Biometrics
5 Flexible Electronics
6 Nanoelectronics

Information & Communication Technologies
1 Cloud Computing services
2 Big Data Initiative
3 Integrated Cloud Computing Architectures
4 Context aware mobility Solutions for specific verticals (CAM)
5 Integration of End-to-End analytics solutions
6 Advancements in using Big Data for analyzing, visualizing And managing
7 Simplified integration of Mobile cloud and Big data End-to-end solutions

Manufacturing & Automation
1 Lightweight material technologies
2 Robotics/ tele-robotics and Assistive Technologies
3 Laser Technologies
4 Additive manufacturing and 3D printing for Industrial applications
5 High rate Nano-manufacturing (Molding and 3D process control)

National Technology Roadmap - Sweden

Electronics
1 Sensors for mHealth
2 LED Lighting
3 Wide Bandgap Semiconductors
4 Nanoelectronics

Information & Communication Technologies
1 Integrated cloud computing architecture
2 Mobile Big data systems
3 Next Generation Wireless Systems for mobility
4 Ubiquitous analytics systems

Manufacturing & Automation
1 Robotics/ tele-robotics & Assistive Technologies
2 Additive manufacturing and 3D printing for Industrial applications
3 Laser Technologies
4 High rate Nano-manufacturing (Molding and 3D process control)
5 Lightweight material technologies

National Technology Roadmap - Israel

Electronics
1 Haptics and Touch
2 Sensors for mHealth
3 Wide Bandgap Semiconductors
4 Sensors for Biometrics
5 Nanoelectronics

Information & Communication Technologies
1 Cloud Computing initiative
2 Unified Cloud computing platform
3 Agnostic Wireless mobile Connectivity platforms
4 Mobile platforms for Integrating homogenous technology
5 Analytics for unified technologies

Manufacturing & Automation
1 Laser Technologies
2 Additive manufacturing and 3D printing for Industrial applications
3 Robotics/ tele-robotics and Assistive Technologies
4 High rate Nano-manufacturing
5 Lightweight material technologies

National Technology Roadmap - Korea

Electronics
1 Haptics and Touch
2 Nanoelectronics
3 Sensors for Biometrics
4 Flexible Electronics

Information & Communication Technologies
1 Wireless components for Clouds and big data
2 Next Gen 4G solutions to Improve data transfer in Mobile devices
3 High interactive Big Data systems
4 Implementation of high end Agnostic Analytics platform

Manufacturing & Automation
1 Robotics/ tele-robotics & Assistive Technologies
2 Additive manufacturing and 3D printing for Industrial applications
3 High rate Nano-manufacturing (Molding and 3D process control)
4 Laser Technologies
5 Lightweight material technologies

Government Funding - Electronics

United States
The federal government funds % of all the basic research across United States. This has been proved to yield substantially positive returns, spurring private-sector R&D as well. The level of federal R&D funding will constitute % of overall US R&D funding in 2013. The major funding bodies are National Institutes of Health (NIH), the National Science Foundation, NASA, Department of Defense, Department of Energy, and the Department of Agriculture. The current policy focus is on increasing US government funding for three physical sciences agencies: NSF, DOE Office of Science, and the NIST laboratories. These agencies fund basic research in physics, computer sciences, materials, engineering, mathematics, chemistry, nanotechnology, and other related disciplines that could be useful to future US economic growth. They do not tar get specific technologies or markets.
The majority of federal basic and applied research funding is performed in US universities. Several laws encourage universities to commercialize research findings (Bayh-Dole Act). There is $billion+ in R&D funding specifically dedicated to R&D in small businesses (the SBIR program). There are small government programs to encourage companies to commercialize promising technologies (MEP, TIP). Federal R&D investments in many areas (energy, homeland security, biomedical research) are oriented to developing new private-sector technologies to meet national needs.

Sweden
Although SSF, VR and VINNOVA together represent the main Swedish public funding bodies for research in microelectronics, they have different central roles. VR is responsible for funding and conducting basic research, SSF finances basic research as well as applied research, and VINNOVA’s sphere of responsibility needs oriented research linked to the main industrial sectors.

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