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Display Innovations Day

2pm - 8pm

Berlin Time

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Leading speakers include:
Inuru
Smooth & Sharp
Sony
Fabric8Labs
Sinovia Technologies
L'École de technologie supérieure (ÉTS)
Arieca Inc
Sony
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HeMemics Biotechnologies Inc
GE Aerospace
Stanford University
Sakuu
Northwestern University
MicroScreen LLC

This event has been cancelled.


This curated one-day online event highlights key innovations in display technology with a specific focus on AI in displays, micro-displays, AR/VR displays and Micro-Optics.


Our team will curate the program, handpicking innovative approaches and developments from industry and research, from major companies to new start-ups, thereby representing the entire innovation frontier.


This event is organized as a series of short technology introductions followed by Q&A in a highly interactive online environment.


The event is part of MicroLED Connect, AV/VR Connect and TechBlick series.

The event is highly recommended for anyone interested in microLED, AR/VR display, and micro-optics technologies.


If you are interested in being considered for an online presentation at this event, please fill out this form.

Full Agenda

Agenda is work in progress

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Arieca Inc

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Navid Kazem

Co-founder, CEO

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Fabric8Labs

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David Pain

Founder, CTO

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GE Aerospace

FHE Enabled Soft Robotics - Opportunities and Challenges

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FHE Enabled Soft Robotics - Opportunities and Challenges

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HeMemics Biotechnologies Inc

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Inuru

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L'École de technologie supérieure (ÉTS)

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MicroScreen LLC

Effect of Hydrophobic/Oleophobic Nano Surface Treatment on the Release of Resistive PTC carbon paste from Emulsion Screens for Screen-Printed Heater Applications

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Art Dobie

Resistive PTC carbon paste formulated for screen printed heater applications can exhibit difficult screen release behavior at the moment of screen-peel during print stroke. Hydrophobic/oleophobic nano surface treatments already have proven successful in improve the release of tacky Sn-Pb and Sn-Ag-Cu solder pastes from the surface of 304 stainless steel foil printing stencils used in electronics assembly. This study will investigate what effect these surface treatments will have on the release behavior of resistive PTC carbon paste, when applied to the photo-formed print cavities in an PVA-PVOH emulsion screen. Empirical print testing with quantification and analysis of the deposited paste results will provide the basis of the data and conclusions to be presented.

Authors:
Art Dobie - Technical Manager, MicroScreen LLC - South Bend, Indiana
Mike Wagner – Chief Innovation Officer, Butler Technologies, Inc. - Butler, Pennsylvania

Art Dobie bio:
Art Dobie is Technical Manager for MicroScreen LLC based in South Bend, IN. Art has 44 years of experience in the industrial, technical, electronic screen printing industry since receiving his BS degree in Graphic Communications with a specialization in Screen Printing Technology in 1980 from California University of Pennsylvania. He is a Life Member and Fellow of the Society of the International Microelectronics and Packaging Society (IMAPS), and was the 2006 recipient of the IMAPS John A. Wagnon Technical Achievement Award for outstanding technical contributions to screen printing technology as related to microelectronics. Art was inducted into the Printing United’s Academy of Screen Printing Technology (ASPT) in 1998, and was the 2010 and 2018 recipient of the Printing United’s David Swormstedt, Sr. Memorial Award, recognizing the best published technical article or paper written for any aspect of the screen printing industry.

Effect of Hydrophobic/Oleophobic Nano Surface Treatment on the Release of Resistive PTC carbon paste from Emulsion Screens for Screen-Printed Heater Applications

Resistive PTC carbon paste formulated for screen printed heater applications can exhibit difficult screen release behavior at the moment of screen-peel during print stroke. Hydrophobic/oleophobic nano surface treatments already have proven successful in improve the release of tacky Sn-Pb and Sn-Ag-Cu solder pastes from the surface of 304 stainless steel foil printing stencils used in electronics assembly. This study will investigate what effect these surface treatments will have on the release behavior of resistive PTC carbon paste, when applied to the photo-formed print cavities in an PVA-PVOH emulsion screen. Empirical print testing with quantification and analysis of the deposited paste results will provide the basis of the data and conclusions to be presented.

Authors:
Art Dobie - Technical Manager, MicroScreen LLC - South Bend, Indiana
Mike Wagner – Chief Innovation Officer, Butler Technologies, Inc. - Butler, Pennsylvania

Art Dobie bio:
Art Dobie is Technical Manager for MicroScreen LLC based in South Bend, IN. Art has 44 years of experience in the industrial, technical, electronic screen printing industry since receiving his BS degree in Graphic Communications with a specialization in Screen Printing Technology in 1980 from California University of Pennsylvania. He is a Life Member and Fellow of the Society of the International Microelectronics and Packaging Society (IMAPS), and was the 2006 recipient of the IMAPS John A. Wagnon Technical Achievement Award for outstanding technical contributions to screen printing technology as related to microelectronics. Art was inducted into the Printing United’s Academy of Screen Printing Technology (ASPT) in 1998, and was the 2010 and 2018 recipient of the Printing United’s David Swormstedt, Sr. Memorial Award, recognizing the best published technical article or paper written for any aspect of the screen printing industry.

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Northwestern University

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Sakuu

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Sinovia Technologies

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Smooth & Sharp

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Sony

Challenges in democratizing AR glasses

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Challenges in democratizing AR glasses

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Sony

Challenges in democratizing AR glasses

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Challenges in democratizing AR glasses

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Stanford University

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24 Sept 2024

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Tuesday

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CONTACT US

KGH Concepts GmbH

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+49 17661704139

venessa@techblick.com

TechBlick is owned and operated by KGH Concepts GmbH

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VAT number: DE 337022439

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