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NE4F Nano Electronics for Flanders - Departement …...market studies forecast a big market...
Transcript of NE4F Nano Electronics for Flanders - Departement …...market studies forecast a big market...
NE4F Nano Electronics for Flanders
A technology roadmap for Flanders
VIN voor VINJuni 2014
16-4-2015 Slide 1
Objective
● The 5 to 10 most relevant base technologies within the field of micro- and nano electronics will be selected.
● For this list of cross-cutting technologies aroadmap will be determined.
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Technology 1Technology 2
Technology 3Technology 4
Technology N
1y 2y 3y 4y 5y 6y 7y 8y 9y 10y
2014 2019 2024
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Value Chain of MNE
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Research
A-V communication3D gesture recognition
3D simulation tools
Satellite communication
Smart
Conn
ectiv
ity Smart
visio
n
Smart
Soun
d
Smart
LocalisationEnabling
embedded technologies design
vision
Nano‐electronics platform
Value Chain building in DSP Valley
Smart
Health Systems
...
Application markets
Smart
Home
Smart
Vehicles
Smart Power
Smart Semicon
Employment in the Value Chain in Flanders
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0
500
1000
1500
2000
2500
3000
3500
4000
DesignTools
Design ChipProducts
Systems Applications Waffab Equipment Materials
ResearchIndustry
Applications
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• Security• Smart grid• Fire alarms• (Smart) Entertainment• Energy control• Positioning technology
• Increased safety• Low energy consumption• Electrical cars• Car2Infrastructure• Communication systems for (public) transportation• Management and control systems for transport• Positioning helping to prevent collision
• Cognitive networks• Meshed networks• High bandwidth, secure, plug and play network solutions• Personal devices for communication, entertainment, ...• Remote collaboration with immersive network connected solutions• Sattelite communication
COMMUNICATION
MOBILITY
HEALTH
HOME/BUILDINGS
ENERGY1
2
3
4
5
• Smart grid• Control room infrastructure• Power conversion technologies• Efficient electronics• (Ultra) low power technologies
• Medical devices for personal health• Medical remote monitoring• Medical imaging• Displays for medical analysis• Implantable electronics
Smart Systems
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OutputSensing
Network
Connectivity
Energy conversion
Output devices:• Actuators• Displays• ...
Connectivity:• Secure data connection• Low power wireless• Autonomous connectivity• Fiber• .....
Sensors:• Bio compatible• Mechanical• Chemical• Electrical• Imagers• Positioning• ...
Processing:• (ultra) Low power consumption• High processing power• Run time adaptive
Energy conversion:• High efficiency• .....
Base technologies
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OutputSensing
Network
Connectivity
Energy conversion
CONNECTIVITY
ENERGY
EMBEDDED SW
HETEROGENOUS INTEGRATION
FLEXIBLE ARCHITECTURE, IP BLOCKS
SILICON AND WIDE-BAND-GAP SEMICONDUCTORS
Transition plan
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What is happening next?
● Building a dedicated value chain in the selected and promising base technology domain of GalliumNitride (GaN on Si)
● Building a cross-KET application domain for Health:micro/nano-electronics + biotechDSP Valley + FlandersBio
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Power: identified as a focus area
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2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025Technology ObjectiveWide Band Gap Power Semiconductors
Defect-free Substrate Diameter 100 mm200 mm300 mm
Figure of Merrit : RON.QSW mΩ.nC 10000
@ 1kV 1000100
Active Element Power Density 1,6 kW/mm2
2,2 kW/mm2
3,0 kW/mm2
High Temperature Stability 10.000 hr @ 175 °C40.000 hr @ 200 °C100.000 hr @ 250 °C
TRL 2-4TRL 4-6
TRL 6-8
Wide Bandgap Semiconductors
2 Base technologies related to power: Energy & Wide bandgap
GaN: Scope
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Value chain building for power
electronics basedon GaN technology
GaN advantages:• Higher switching
frequency possible• Higher junction
temperature
• Smaller and lighter power modules
• Power conversion at higher efficiency
Power Electronics Application Fields
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Voltage (V)
GaN Cluster: why?
1. Value chain creation in Flanders for key enabling technologies is strongly supported by the Flemish government.
2. A strong cluster can provide the right arguments for inward investment decisions.
3. Power Electronics is one of the key focus areas for the Flemish MNE industry. (according to the Flemish MNE roadmap)
4. GaN is a promising technology for power electronics. All market studies forecast a big market potential, of which the growth should start soon.
5. Flanders has several players that could be part of a GaN cluster.
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Potential Stakeholders GaN Cluster (1)
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Chip Design
GaNResearch
GaNFoundry
GaNWafers
Capital
Modules,Packaging
System Design
Potential Stakeholders GaN Cluster (2)
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• Tessenderlo• DC current sensors for power invertors• Integrated DC motor controllers
• Sint Truiden• EV drive train
• Gent• Electronics design• Lighting electronics• Power convertors
• Heverlee• Programmable power modules
• Added value analysis in value chain• VUB research on EV’s and Hybrids• http://mobi.vub.ac.be/
• KUL research on power electronics
• Research for sustainable energy and intelligent energy systems
• Drivers for LED video walls
• Satellite receivers
Value Chain Pilot?
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Electric taxiing
In wheel motor for cars
Next Steps
1. Individual discussion with potential stakeholders
2. Meeting / workshop where we invite all potential stakeholdersa. Presentation on own activities related to power electronics. Potential relation to
GaNb. Explain position in value chain.c. Brainstorm on ideas for pilot projects
3. Defining pilot projects, lighthouse projectsa. Collecting ideas in workshopb. Organise brokerage event
4. Actions, activities to strengthen the GaN clustera. Create promotion materialb. Promotion of GaN cluster on events abroad (e.g. Semicon, power electronics
related, ..;)
5. Consortia forming (see windmill examples)
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Nano4Health: further detailed roadmapping
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EasicsOnSemiXenics
CMOSISCochleareSaturnusMedtronic
...
AblynxTigenix
GalapagosGenzyme
ReGenesysreMynd
ThromboGenics...
• advanced microscopy• medical imaging• biochips (for advanced diagnostics: genetic material, proteins / antibodies)• active implants (including pumps, drug delivery systems, neurostimulators,...)
BiocartisJ&J
ICsenseAnSem
NXP Peira
TrineanPepricOvizioAgfa
BarcoIcometrix
...