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CORDIS - Resultados de investigaciones de la UE
CORDIS

FABRICATION OF SENSOR PACKAGES ENABLED BY ADDITIVE MANUFACTURING

CORDIS proporciona enlaces a los documentos públicos y las publicaciones de los proyectos de los programas marco HORIZONTE.

Los enlaces a los documentos y las publicaciones de los proyectos del Séptimo Programa Marco, así como los enlaces a algunos tipos de resultados específicos, como conjuntos de datos y «software», se obtienen dinámicamente de OpenAIRE .

Resultado final

Pilot line with inkjet system installed at BOS (se abrirá en una nueva ventana)

Inkjet hardware and software based on definitions of D2.5 and concept from D5.2, including updates on existing equipment at PRO, printer pilot by NOT and Laser tools by FOR.

Prototype of Placement equipment (se abrirá en una nueva ventana)

Placement hardware and software based on definitions of D23 and D26 including pick and place gripper setup AI software to improve accuracy 3D inspection systems by SEN and BESI laser ellipsometry by SEN and interface to TINKER platform interoperability

Demonstrator of RADAR sensor package fabricated using TINKER platform (se abrirá en una nueva ventana)

Small series fabrication of RADAR sensor package demonstrator fabrication via TINKER pilot platform,

Prototype of TINKER platform including closed loop error compensation (se abrirá en una nueva ventana)

Functional prototype of TINKER pilot, deriving from prototypes for placement (D3.1, 4.1 and 5.1 and 5.4). Closed loop error compensation between devices. Interoperability established between the single TINKER pilot parts.

Prototype of NIL resist with high refractive index (se abrirá en una nueva ventana)

High refractive index material prototype for OPA application based on the definitions in D22 and D25

Prototypes of TINKER inkjet materials (se abrirá en una nueva ventana)

Prototypes of Electrically conductive copper ink by PVN Dielectric inks based on BMI material by PVN and based on acrylic material by TIG and thermal conductive ink by TIG Based on the definitions in D21 and D25

Prototype NIL equipment and tools (se abrirá en una nueva ventana)

NIL hardware and process setup based on D25 to serve the manufacturing of OPA devices

Prototype LIDAR sensor assembly (se abrirá en una nueva ventana)

PIC – EIC assembly prototypes via TINKER fabrication approaches

Prototype of inspection equipment (se abrirá en una nueva ventana)

Related to task 41 first set of inspection system equipment hard and software and inspection tools based on thermography spectroscopy and microscopy approaches allowing first collection of raw data of TINKER processes

Prototype RADAR sensor assembly (se abrirá en una nueva ventana)

Fabricated RADAR prototypes via TINKER fabrication approaches

Demonstrator of LIDAR sensor package fabricated using TINKER platform (se abrirá en una nueva ventana)

Small series fabrication of LIDAR sensor package demonstrator fabrication via TINKER pilot platform.Conception and realization of a driving electronic board and electric testsFPGA and computer software development

Data set in repository (se abrirá en una nueva ventana)

Subset of data and meta data collected for publication in a public repository in accordance to data management plan (DMP)

Publicaciones

Autonomes Fahren: Profactor prescht vor

Autores: Leo Schranzhofer
Publicado en: Volksblatt, 2021
Editor: Oberösterreichische Media Data Vertriebs- und Verlags GmbH

Marelli, CEA-LETI in Tinker Project: See it at DVN Lidar Conference

Autores: Thierry Mourier
Publicado en: DVN Lidar Conference Newsletter 2022, 2022
Editor: Driving Vision News

Sensor packages for autonomous cars enabled by additive manufacturing

Autores: Martina Chopart, MSc. – Amires s.r.o.; Dr Leo Schranzhofer – Profactor GmbH; Bernhard Polzinger – Robert Bosch GmbH; Emmanuel I. Stratakis PhD. – FORTH (Foundation for Research and Technolo gy - Hellas); Dr Maria Pervolaraki – FORTH (Foundation for Research and Technology - Hellas); Dr David Volk – Notion Systems
Publicado en: OPE Journal, Edición 38, 2022
Editor: Deutscher Fachverlag GmbH

Versatile use of LiDAR modules into Smart Corner and grille

Autores: Frederic Chave
Publicado en: DVN Lidar Conference Newsletter, 2021
Editor: Driving Vision News

3D Lidar-on-chip

Autores: Martina Chopart, Pavel Kulha
Publicado en: PRO Flextronics, Edición 1, 2024, Página(s) 11
Editor: M2N Media GmbH

Shrinking RADAR and LiDAR sensor packages – an introduction to TINKER

Autores: Leo Schranzhofer
Publicado en: Chip Scale Review, Edición Vol. 26, Nr. 1., 2022, Página(s) 11-12
Editor: Chip Scale Review

TINKER inkjet pilot line celebrates completion

Autores: Martina Chopart, Pavel Kulha
Publicado en: OPE journal, Edición 45, 2023, Página(s) 18
Editor: Deutscher Fachverlag GmbH

AugenundOhren für selbstfahrende Autos aus Steyr

Autores: HANNES FEHRINGER
Publicado en: Steyrer Zeitung, 2021
Editor: OÖ. Online GmbH & Co.KG.

Autonomfahren: Oberösterreich steigtt gtaufs Gas

Autores: Ulrike Rubasch
Publicado en: OÖ Nachrichten, 2021
Editor: OÖ Nachrichten

UV Nanoimprint Lithography—Impact of Coating Techniques on Pattern Quality (se abrirá en una nueva ventana)

Autores: Johanna Rimböck, Patrick Schuster, Lisa Vsetecka, Christine Thanner
Publicado en: Nanomanufacturing, Edición 4, 2024, Página(s) 69-80, ISSN 2673-687X
Editor: MDPI
DOI: 10.3390/nanomanufacturing4010005

Deep learning for zero-defect inkjet-printing of electronics (se abrirá en una nueva ventana)

Autores: Flaig Minnette, Zambal Sebastian
Publicado en: 2021 IEEE International Workshop on Metrology for Industry 4.0 & IoT (MetroInd4.0&IoT), 2022, Página(s) 458-463
Editor: IEEE
DOI: 10.1109/metroind4.0iot51437.2021.9488493

Direct patterning of functional materials using nanoimprint lithography (se abrirá en una nueva ventana)

Autores: Michael J. Haslinger, Sonja Kopp, Voktorija Jonaityte, Amiya Moharana, Helene Außerhuber, Michael Mühlberger
Publicado en: 38th European Mask and Lithography Conference (EMLC 2023), 2023
Editor: SPIE
DOI: 10.1117/12.2674052

Error Compensation of Inkjet-printed Electronics using Incremental Learning and Knowledge Distillation (se abrirá en una nueva ventana)

Autores: Abdalla Shahin
Publicado en: 2024 International Conference on Artificial Intelligence, Computer, Data Sciences and Applications (ACDSA), 2024
Editor: IEEE
DOI: 10.1109/acdsa59508.2024.10467896

Feedback Error Compensation of Inkjet-Printed ElectronicsUsing Incremental Learning and Knowledge DistillationMethods

Autores: Abdalla Saber Ali Shahin
Publicado en: 2023
Editor: Alpen-Adria-Universität Klagenfurt

Derechos de propiedad intelectual

MEASURING DEVICE BASED ON A COMBINATION OF OPTICAL 2D AND 3D IMAGE CAPTURING METHODS

Número de solicitud/publicación: 20 23053349
Fecha: 2023-04-03
Solicitante(s): BESI AUSTRIA GMBH

Messvorrichtung basierend auf kombinierter optischer 2D- und 3D-Bilderfassungsverfahren, Fertigungssystem und Inspektionssystem

Número de solicitud/publicación: 10 2022107897
Fecha: 2022-04-01
Solicitante(s): BESI AUSTRIA GMBH

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