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EU funding (€8,606,849): (Ultra)Sound Interfaces and Low Energy iNtegrated SEnsors Hor1 May 2017 EU Research and Innovation programme "Horizon"

Overview

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(Ultra)Sound Interfaces and Low Energy iNtegrated SEnsors

The SILENSE project will focus on using smart acoustic technologies and ultrasound in particular for Human Machine- and Machine to Machine Interfaces. Acoustic technologies have the main advantage of a much simpler, smaller, cheaper and easier to integrate transducer. The ambition of this project is to develop and improve acoustic technologies beyond state-of-the-art and extend its application beyond the mobile domain to Smart Home & Buildings and Automotive domains. In this project, it will be proven that acoustics can be used as a touchless activation and control mechanism, by improvement or development of different smart acoustic technology blocks (hardware, software and system level) and integrate these blocks at system level. At technology level, the SILENSE project will: - Adapt and improve cost, performance, directivity and power consumption of (MEMS) acoustic transducers (incl. testing and qualification) - Heterogeneously integrate arrays of acoustic transducers with other electronics, using advanced (3D) packaging concepts - Develop smart algorithms for acoustical sensing, localization and communication - Combine voice and gesture control by means of the same transducer(s) At application level the SILENSE project will: - Apply acoustical sensing for touchless activation/control of mobile devices, wearables and, more in general, IoT nodes. The project links to Smart Systems Integration (B4), and refers also to application application-related topics, such as Smart Mobility and Smart Society. The application scope of the developed technologies is broader and comprises more societal domains, such as smart home/buildings, smart factories (i.e. Smart Production) and even Smart Health. Furthermore, a clear cross reference with Semiconductor Process, Equipment and Materials (B1) is established in view of the heterogeneous integration of technology blocks. Conventional silicon technologies will be combined with printed (flexible, large area electronics).


Funded Companies:

Company name Funding amount
Alteria Automation SL €66,755
BCB Informatica y Control SL €75,075
Commissariat a L Energie Atomique et aux Energies Alternatives €182,591
CONTINENTAL AUTOMOTIVE GmbH €0.00
Coventor Sàrl €342,984
Elliptic Laboratories ASA €243,750
Fundacion Idonial €229,688
GESTIGON GmbH €129,063
Grupo Antolin-Ingenieria SA €99,225
INFINEON TECHNOLOGIES AG €494,229
Infineon Technologies Austria AG €464,375
Institut Mikroelektronickych Aplikaci s.r.o. €108,750
Institut Mines-Telecom €359,161
Interuniversitair Micro-Electronica Centrum €976,841
Laboratorios Alpha San Ignacio Pharma SL - Alphasip €65,620
Linz Center OF Mechatronics GmbH €87,500
NEDERLANDSE ORGANISATIE VOOR TOEGEPAST NATUURWETENSCHAPPELIJK ONDERZOEK TNO €364,260
NXP Semiconductors Belgium N.V. €523,438
NXP Semiconductors France €424,725
NXP SEMICONDUCTORS NETHERLANDS B.V. €787,500
Silicon Austria Labs GmbH €238,804
Sintef AS €386,789
SOLMATES B.V. €211,463
Speedo International Ltd. €34,382
Stiftelsen Sintef €50,711
SYNOPSYS NETHERLANDS B.V. €458,313
TECHNISCHE UNIVERSITAET CHEMNITZ €100,008
TECHNISCHE UNIVERSITAT BERLIN €120,531
TECHNISCHE UNIVERSITEIT DELFT €127,059
TECHNISCHE UNIVERSITEIT EINDHOVEN €184,934
Universitat Linz €70,139
Ustav Teorie Informace A Automatizace AV CR Vvi €171,063
Verhaert NEW Products & Services N.V. €214,676
Vysoke Uceni Technicke V Brne €212,450

Source: https://cordis.europa.eu/project/id/737487

The filing refers to a past date, and does not necessarily reflect the current state.