a) Photonic Components & Subsystems

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Transcript a) Photonic Components & Subsystems

Objective ICT-2009.3.7
Photonics
Dr. Gustav Kalbe
Head of Sector – Photonics
European Commission
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Key Messages
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Call-2 Evaluation
* 12/11/2007
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Survival kit
• Questions on scope:
•Ask us / refer to us any time
•Pre-proposal check service !!!
[email protected]
[email protected]
• Background document (coming soon)
• Information Events
•Taking part in forthcoming EU and TSB collaborative competitions
University College London, 12 May
•4th Photonics Concertation Meeting, NTUA Athens, 10/11 September
http://cordis.europa.eu/fp7/ict/photonics/concertmeet_en.html
•European R&D for Components, Systems, Engineering within ICT Call
5, 25 June, Basel http://www.ideal-ist.net/events/challenge-3-face2face-in-basel
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WP Content
a)
Communications
Light Sources
extension
Bio-Photonics
Imaging
High-Power Lasers
NEW
b)
III-V Foundry
manufacturing
NEW
NEW
Applications
d)
c)
ERA-NET Plus
Call-4
12/5/2009
extension
NEW
Coordination &
Support
SME & researchers
International Coop.
Education
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Watch out for
• a)1) integration, intelligence, higher
functionality, distance agnostic, ≠ 1.1
• a)2) no luminaires
• a)4) system integration is innovation
• a)5) cutting, welding, ...
• b) Call-2 = Si, now III-V
• d) no travel agency
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Some figures
• Call-5 open/close: 31 July 2009 – 3 November 2009
• Funding Schemes (objective dependent):
• IP, STREP = 47 M€
• CA, SA = 3 M€
• ERA-NET Plus = 10 M€
Call-4
• Budget flexibility (funding schemes)
• min 23.5 M€ IP
• min 15.7 M€ STREP
• max 3 M€ CSA
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And the web...
• Call-5
http://cordis.europa.eu/fp7/ict/participating/calls_en.html
• FP7 – Photonics
http://cordis.europa.eu/fp7/ict/photonics/home_en.html
•
•
•
•
running projects
Call-5 / ICT-2009.3.7
background document
Evaluation of proposals
• Photonics21 Platform
http://www.photonics21.org
• EU R&D initiatives, projects, players, ...
http://www.opera2015.org/home.asp
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For completeness
the Photonics WP in detail
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General Issues
• addresses Photonics technologies, components and
(sub)systems (innovative devices)
• driven by key applications/social needs
• cost-effective (context dependent)
• from advanced research opening new opportunities to
application-driven research with a view to industrialisation
• priority given to novel or “breakthrough” approaches
rather than incremental developments
• system integration (where meaningful) including
electronics/photonics integration (photonics on silicon)
• reduction of power consumption per circuit / function
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a) Photonic Components & Subsystems
IP, STREP
1)Communications
• future-proof networks, any part of network
(incl. interconnects), integration, more
bits/photon, higher functionality, reduced
network complexity ...
Complementary to Objective ICT-2009-1.1 The
Network of the Future
c) Ultra high capacity optical transport/access
networks
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Objective 3.7
Photonic Components & Systems
- Communications
components & systems
(for a particular NGN concept)
Objective 1.1
The Network of the Future
– ultra-high capacity networks
network architecture & protocols
higher functionality
(throughput, intelligence,
integration, low power)
multi-service / multi-protocol
distance independent challenges
(long-haul → intra-chip)
core/access convergence
new components for NGN
(tracking network concepts)
off-the-shelf components
Proposals should be submitted either to Obj. 1.1 (C4) or to
Obj. 3.7 (C5), according to the “centre-of-gravity”
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a) Photonic Components & Subsystems
IP, STREP
2)Lighting and Light Sources
• high efficiency, color spectrum, LEDs, for
lighting / illumination
• solid-state laser sources for projectors,
displays, ...
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a) Photonic Components & Subsystems
STREP
3)Bio-photonics
• molecular/functional imaging
• minimally-invasive/point of care treatment &
monitoring
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a) Photonic Components & Subsystems
STREP
4)Cost-effective high-performance imaging for
safety & security
• CMOS, single-photon, video-rate, uncooled
• multi-feature, smart pixel arrays, multi-spectral, sub-
ps timing precision, on chip-pre-processing
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a) Photonic Components & Subsystems
STREP
5)Highly integrated components for high power
lasers
• fibres & fibre lasers with integrated functions
• diode lasers with new functions
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Expected Impact
• Reinforce European leadership
• Reinforce European industrial
competitiveness
• Create new opportunities for practical
applications
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b) III-V foundry processes
IP
• Cost-effective versatile foundry processes
• for photonic integrated components based on III-V
semiconductors (possibly combined with other materials)
• can include module integration & packaging (where
necessary)
• design/process interface based on widely agreed concepts
/ standards
• design supported by design-rule & library based
platforms
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Expected Impact
• Reduce non-recurring engineering costs
• provide cost-effective access for SME
• access for fab-less suppliers
• smooth path from design to prototype
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d) Coordination and support actions
CSA
•SME & researchers support
• access to photonics technology & design
expertise
• access to prototype components &
manufacturing facilities
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Expected Impact
• foster take-up of advanced photonic
technologies towards innovative
products
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d) Coordination and support actions
•International cooperation
CSA
• procedures to measure LED/OLED lighting
performances
• exchange of best practices from deployment of
mature LED/OLED
• development of LED/OLED lighting standards
• workshops on advanced photonics research
topics, research roadmaps
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Expected Impact
• cooperation between EU / 3rd country
for mutual benefits
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d) Coordination and support actions
CSA
•Education and training (excludes direct
support of conferences)
• secondary school level outreach activities to
encourage interest in photonics
• transnational third level education programmes
in photonics
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Expected Impact
• new generation with photonics skills &
expertise
• create entrepreneur skills
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Thank you for your attention !
[email protected]
[email protected]
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