
Piezo Composite Transducers (PCT) Ltd
Piezo Composite Transducers (PCT) Ltd
5 Projects, page 1 of 1
assignment_turned_in Project2009 - 2013Partners:University of Dundee, Defence Science and Technology Laboratory, Weidlinger Associates, Gentronix Ltd, Piezo Composite Transducers (PCT) Ltd +7 partnersUniversity of Dundee,Defence Science and Technology Laboratory,Weidlinger Associates,Gentronix Ltd,Piezo Composite Transducers (PCT) Ltd,Weidlinger Associates (United States),Piezo Composite Transducers (PCT) Ltd,Danaher (United Kingdom),Defence Science & Tech Lab DSTL,Loadpoint (United Kingdom),Defence Science & Tech Lab DSTL,Loadpoint LtdFunder: UK Research and Innovation Project Code: EP/G01213X/1Funder Contribution: 1,319,940 GBPAbstracts are not currently available in GtR for all funded research. This is normally because the abstract was not required at the time of proposal submission, but may be because it included sensitive information such as personal details.
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For further information contact us at helpdesk@openaire.euassignment_turned_in Project2009 - 2013Partners:Gentronix Ltd, Loadpoint (United Kingdom), Defence Science & Tech Lab DSTL, Weidlinger Associates (United States), Piezo Composite Transducers (PCT) Ltd +8 partnersGentronix Ltd,Loadpoint (United Kingdom),Defence Science & Tech Lab DSTL,Weidlinger Associates (United States),Piezo Composite Transducers (PCT) Ltd,Piezo Composite Transducers (PCT) Ltd,University of Glasgow,University of Glasgow,Danaher (United Kingdom),Defence Science & Tech Lab DSTL,Loadpoint Ltd,Defence Science and Technology Laboratory,Weidlinger AssociatesFunder: UK Research and Innovation Project Code: EP/G011494/1Funder Contribution: 806,721 GBPAbstracts are not currently available in GtR for all funded research. This is normally because the abstract was not required at the time of proposal submission, but may be because it included sensitive information such as personal details.
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For further information contact us at helpdesk@openaire.euassignment_turned_in Project2009 - 2013Partners:Gentronix Ltd, Weidlinger Associates (United States), Danaher (United Kingdom), Defence Science & Tech Lab DSTL, Piezo Composite Transducers (PCT) Ltd +8 partnersGentronix Ltd,Weidlinger Associates (United States),Danaher (United Kingdom),Defence Science & Tech Lab DSTL,Piezo Composite Transducers (PCT) Ltd,Defence Science and Technology Laboratory,Weidlinger Associates,University of Bristol,Loadpoint Ltd,Piezo Composite Transducers (PCT) Ltd,Loadpoint (United Kingdom),Defence Science & Tech Lab DSTL,University of BristolFunder: UK Research and Innovation Project Code: EP/G012067/1Funder Contribution: 897,225 GBPWe have carefully planned this research programme to pioneer a wholly new capability in ultrasonic particle manipulation to allow electronic sonotweezers to take their place alongside optical tweezers, dielectrophoresis and other techniques in the present and future particle manipulation toolkit.Following end-user demand, particle manipulation is a rapidly growing field, notably applied to the life sciences, with emerging applications in analysis and sorting, measurement of cell forces and tissue engineering. Existing devices have valuable capabilities but also limits in terms of forces that can be produced and measured, particle sizes that can be handled, their range of compatible buffer characteristics and sensitivity to heating, and suitability for integration with sensors in low cost devices. Key to our programme is the concept of dynamic potential energy landscapes and the established ability of ultrasound to create such landscapes, potentially to generate forces under electronic / computer control. Our principal technical aim is to exploit this in integrated sonotweezers to apply and measure larger forces over longer length scales, extend micromanipulation to larger particles, and demonstrate this in pathfinder applications in life sciences.To achieve our aims, we have already carried out successful feasibility studies and brought together an outstanding multidisciplinary team of investigators including internationally established members, some of the UK's most exciting young scientists and engineers, and appropriate overseas collaborators. Such a team is a prerequisite for what we recognise as a challenging, highly complex, densely interlinked programme. Over its four years, with strong management and built-in research flexibility, we will explore key areas of science, technology and applications to create and demonstrate electronic sonotweezers. Throughout the work, there will be parallel activity in understanding of physical principles, modelling and design, state-of-the-art fabrication, sensor integration, and applications testing.
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For further information contact us at helpdesk@openaire.euassignment_turned_in Project2009 - 2013Partners:Piezo Composite Transducers (PCT) Ltd, University of Southampton, Defence Science and Technology Laboratory, Weidlinger Associates, Weidlinger Associates (United States) +9 partnersPiezo Composite Transducers (PCT) Ltd,University of Southampton,Defence Science and Technology Laboratory,Weidlinger Associates,Weidlinger Associates (United States),Loadpoint Ltd,Piezo Composite Transducers (PCT) Ltd,University of Southampton,Loadpoint (United Kingdom),Defence Science & Tech Lab DSTL,Gentronix Ltd,[no title available],Danaher (United Kingdom),Defence Science & Tech Lab DSTLFunder: UK Research and Innovation Project Code: EP/G012075/1Funder Contribution: 606,529 GBPAbstracts are not currently available in GtR for all funded research. This is normally because the abstract was not required at the time of proposal submission, but may be because it included sensitive information such as personal details.
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For further information contact us at helpdesk@openaire.euassignment_turned_in Project2008 - 2013Partners:NTU, OptoSci (United Kingdom), J C Bamford Excavators (United Kingdom), SLI Limited, Qinetiq (United Kingdom) +121 partnersNTU,OptoSci (United Kingdom),J C Bamford Excavators (United Kingdom),SLI Limited,Qinetiq (United Kingdom),Roper Technologies (United Kingdom),PowerPhotonic Ltd,PowerPhotonic (United Kingdom),Virtual Interconnect Limited,Rolls-Royce (United Kingdom),3D Systems Inc,University of Strathclyde,Selex-Galileo,Mactaggart Scott & Co Ltd,IMEC - REALITY,Micro Circuit Engineering,IceRobotics Ltd,Virtual Interconnect Limited,Italian Institute of Technology,Omnova Solutions,AWE Aldermaston,Ituna Solutions Limited,Agilent Technologies (United Kingdom),Advanced Optical Technology,Sira Ltd,First Syngenta UIC,D-Cubed Ltd,J C Bamford Excavators (United Kingdom),Optocap Ltd,Pathtrace Engineering Systems Ltd,Merlin Circuit Technology (United Kingdom),IKEA Properties Investments Ltd,IMEC - REALITY,ROLLS-ROYCE PLC,Scotweave Ltd,Heriot-Watt University,Exception PCB Ltd,Scotweave Ltd,Sun Microsystems,Siemens (United Kingdom),University of Strathclyde,Renishaw (United Kingdom),Transylvania University of Bra?ov,Loadpoint (United Kingdom),Advanced Optical Technology,Weidlinger Associates,Ituna Solutions Limited,Lightworks Design Ltd,AIRBUS OPERATIONS LIMITED,Exception PCB Ltd,University of Transylvania,RENISHAW,FMC Energy Systems,RSL,Reachin software,BAE Systems Advanced Technology Centre,C A Models Ltd,Kestrel 3D,AWE,Heidenhain (United Kingdom),BCF Designs Ltd,Airbus,BAE Systems (United Kingdom),University of Nottingham,Selex Sensors and Aiborne Systems Ltd,Airbus (United Kingdom),Ice Robotics Limited,Silicon Graphics,Kodak Ltd,Raytheon (United Kingdom),MBDA UK Ltd,BAE Sytems Electronics Ltd,Silicon Graphics,The Mathworks Ltd,Omnova Solutions,Reachin software,Weidlinger Associates (United States),Design LED,BAE Systems Avionics Management Ltd,BAE Systems Avionics,3D Systems (United Kingdom),Merlin Circuits,BAE Systems Advanced Technology Centre,IKEA Properties Investments Ltd,Syngenta Ltd,BAE Systems Naval Ships,BAE Systems (Sweden),QinetiQ (Malvern),Piezo Composite Transducers (PCT) Ltd,TechnipFMC (United Kingdom),Rofin-Sinar UK Ltd,BCF Designs Ltd,Rofin (United Kingdom),Cv FMC Technologies Ltd,University of Bath,Piezo Composite Transducers (PCT) Ltd,Heriot-Watt University,Kestrel 3D,SLI Limited,Microstencil Ltd,Kodak (United Kingdom),Rolls-Royce (United Kingdom),FMC Energy Systems,Design LED,BAE Systems Avionics Management Ltd,Cv FMC Technologies Ltd,Lightworks Design Ltd,LSTECH LTD,Qioptiq Ltd,D-Cubed Ltd,University of Bath,Airbus (Germany),NCR Financial Solutions Ltd,Italian Institute of Technology,Renishaw Plc,Loadpoint Ltd,MBDA (United Kingdom),Sira Ltd,Pathtrace Engineering Systems Ltd,Agilent Technologies (United Kingdom),NCR Financial Solutions Ltd,Micro Circuit Engineering,Mactaggart Scott & Co Ltd,Sun Microsystems,Microstencil Ltd,ModCellFunder: UK Research and Innovation Project Code: EP/F02553X/1Funder Contribution: 7,146,840 GBPThe Scottish Manufacturing Institute aims to research technology for manufacture, addressing the requirements of European, UK and regional industries. It taps into the broad expanse of research at Heriot-Watt University to deliver innovative manufacturing technology solutions. The SMI delivers high quality research and education in innovative manufacturing technology for high value, lower volume, highly customised, and high IP content products that enable European and UK Manufacturers to compete in an environment of increased global competition, environmental concern, sustainability and regulation, where access to knowledge, skills and IP determine where manufacturing is located. Our mission is to deliver high impact research in innovative manufacturing technologies based on the multidisciplinary technology resource across Heriot-Watt University, the Edinburgh Research Partnership, the Scottish Universities Physics Alliance and beyond. The Institute is organised into three themes:- Digital Tools;- Photonics; and - MicrosystemsThe vision of the Digital Tools Theme is to provide tomorrow's engineers with tools that will help them to easily capture, locate, exploit and manipulate 3D information for mechanical products of all kinds using distributed, networked resources. Photonics has strong resonance with the needs of developed economies to compete in the 21st Century global market for manufacturing, providing: routes to low cost automated manufacture; and the key processes underpinning high added value products. We have a shared conviction that photonics technologies are an essential component of any credible strategy for knowledge-based industrial production. The Photonics Theme vision is for the SMI to be internationally recognised as the leading UK focus for industrially-relevant photonics R&D, delivering a mix of academic and commercial outputs in hardware, process technology and production applications.The principal strategy of the Microsystems Theme is to research into new integration and packaging solutions of MEMS that are low cost, mass manufacturable and easily adoptable by the industry. The vision is to become a European Centre of Excellence in MEMS integration and packaging over the next 5 years. We thus aspire to service UK manufacturing industry with innovative technology for high value, lower volume, highly customised, and high IP content products; and to help UK industry expand globally in an internationally competitive market.
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