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SEQUENCE SIGNED

Cryogenic 3D Nanoelectronics

Total Cost €

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EC-Contrib. €

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Partnership

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Project "SEQUENCE" data sheet

The following table provides information about the project.

Coordinator
LUNDS UNIVERSITET 

Organization address
address: Paradisgatan 5c
city: LUND
postcode: 22100
website: n.a.

contact info
title: n.a.
name: n.a.
surname: n.a.
function: n.a.
email: n.a.
telephone: n.a.
fax: n.a.

 Coordinator Country Sweden [SE]
 Total cost 4˙466˙278 €
 EC max contribution 4˙466˙277 € (100%)
 Programme 1. H2020-EU.2.1.1. (INDUSTRIAL LEADERSHIP - Leadership in enabling and industrial technologies - Information and Communication Technologies (ICT))
 Code Call H2020-ICT-2019-2
 Funding Scheme RIA
 Starting year 2020
 Duration (year-month-day) from 2020-01-01   to  2022-12-31

 Partnership

Take a look of project's partnership.

# participants  country  role  EC contrib. [€] 
1    LUNDS UNIVERSITET SE (LUND) coordinator 930˙001.00
2    IBM RESEARCH GMBH CH (RUESCHLIKON) participant 1˙080˙408.00
3    FRAUNHOFER GESELLSCHAFT ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E.V. DE (MUNCHEN) participant 680˙000.00
4    COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES FR (PARIS 15) participant 446˙857.00
5    INSTITUT POLYTECHNIQUE DE GRENOBLE FR (GRENOBLE CEDEX 1) participant 350˙000.00
6    UNIVERSITY COLLEGE CORK - NATIONAL UNIVERSITY OF IRELAND, CORK IE (Cork) participant 330˙866.00
7    UNIVERSITY OF GLASGOW UK (GLASGOW) participant 239˙570.00
8    ECOLE POLYTECHNIQUE FEDERALE DE LAUSANNE CH (LAUSANNE) participant 208˙750.00
9    C2AMPS AB SE (LIMHAMN) participant 199˙825.00

Map

 Project objective

SEQUENCE will make use of unconventional approaches to develop cryogenic electronics with demonstration in applications spanning from quantum computing to satellite communication systems.

Approach: SEQUENCE has aggregated a strong consortium consisting of 9 partners with well-documented experience in III-V and Si technology, including IC design skills. 3D integration of interfacing electronics with quantum computing technologies such as Si spin qubit layers, will be developed to reduce form factors, latency, and power consumption, enabling qubit multiplexing strategies to significantly reduce physical components count inside and outside the cryostat. We will develop RF functions such as LNAs, mixers, oscillators, DACs, multiplexers and RF switches, initiating a new generation of low-power cryogenic electronics, combining III-V and Si CMOS technologies, for scalable quantum computers. The development will be based on cryogenic transistor and circuits validated models, reducing IC design margins operated at extremely low power levels. Novel nanoelectronic devices will be developed, explored, and benchmarked providing performance added values, at cryogenic temperatures.

Impact with our main outcomes: A) Cryogenic 3D integration technology and strategies with optimal balance between III-V, Si CMOS, and emerging device technologies – power/form factor constraints trade-off, B) new set of critical cryogenic building blocks, C) A matured set of emerging nanoelectronics, up to TRL 4, with technology benchmark that bring added value and will support future transistor technology nodes, D) An exploitation strategy of the technology developed targeting Quantum applications, space communication and sensing, and future wideband room temperature communication.

The SEQUENCE project, will develop and strengthen synergies between the identified fields.

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The information about "SEQUENCE" are provided by the European Opendata Portal: CORDIS opendata.

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