6 April 2022
Kent Displays | VersaNote: A Roll-to-Part, Flexible Electronic Device | June 2022
This is an auto-transcriped presentation without any human control So I'm here to talk about Versanote, which is a roll to part flexible electronic device. So thank you for allowing me to talk to you. Versa note is made by Boogie Board, which is a brand by Kent displays. We're experts in reflective by stable call history technology and our mission is really to redefine the writing experience through both technology and design. We've been around since 1993 and we have about 75 employees. We've been making boogie boards for about 12 years, and we've expanded our product into a variety of markets from if you're looking at the slide up or left hand corner as toys down through the middle as toys going back up through the center is educational products moving over to our job and dashboard lines, which are more general purpose to our versa note line and onto our Blackboard line, which is used for high end office applications for the versa note development. It's a little bit different than our regular boogie board. It's kind of a departure. So really our process that we use to, to, to develop it was based on the idea of let's make our writing surface flexible, and then we process through some feasibility steps, some prototype steps and finally scale up and then to manufacturing. So a little bit about the versa. Note Its functionality is very similar to the boogie board where the liquid crystal flows and response to pressure and reflects a bright line. But here the surface is flexible...
5 April 2022
The multilayer approach to solid-state battery electrolytes - Transforming traditional battery archi
Solid-state battery cells offer the ability to host high energy density lithium metal while affording safety above that of state-of-the-art lithium-ion cells due to the use of non-flammable electrolytes and dense layers that cannot be easily punctured by lithium dendrites. Ion Storage Systems (ION) employs a high-ionic conductivity garnet-based electrolyte capable of lithium metal plating without degradation at a wide range of operating temperatures. In many solid-state cell architectures pursued to date, lithium metal plating directly leads to cell internal volume changes. Ensuring consistent lithium plating over a planar surface necessitates external compression which can add to cell and pack overhead costs while decreasing the overall specific energy density of the system as a whole. ION’s solid-state electrolyte is incorporated into cells in a bilayer structure that allows lithium to plate within the confines of a porous ceramic layer which is sintered on a cathode-separating dense ceramic layer. This structure enables constant-volume cells which can host a multitude of cathodes and enable simplified application integration, high energy density and prolonged cycle life. Presenting Company: ION Storage Systems Speaker: Gregory Hitz Date presented: 9-10 February 2022...
1 April 2022
A bioelectronic tongue ‘tastes’ sweetness
Candy, cookies, juices. Just about everyone likes sweet treats, but what one person thinks tastes too sugary, another might think is just right. This variability makes it challenging to develop new foods and beverages, so companies have sought a more objective method. Now, researchers reporting in ACS Applied Materials & Interfaces have developed an ultrasensitive bioelectronic tongue that measures sweetness by mimicking human taste buds. Although human sensory panels are the most common way to analyze a substance’s taste, there can be a lot of differences in how people perceive flavors. To get more objective data, researchers have made bioelectronic tongues in the lab, but they either are complicated to manufacture or can’t fully replicate the way the human tongue works. Human tongues have sweet taste receptors with two large, complex structures that bind to compounds such as sugars. The outermost portion of one of these structures is called the Venus flytrap domain because its hinged, two-lobed molecular structure resembles the leaves of the insectivorous plant that close around its prey. This domain interacts with most of the sweet substances a person consumes. In a previous study, Tai Hyun Park, Seunghun Hong, and colleagues made an umami sensor with a human-like performance by using just the protein at the end of the umami taste receptor. So, these researchers wanted to apply the same concept to make a sweet-sensing bioelectronic tongue, using the Venus flytrap domain...
6 April 2022
CondAlign | Adhesive ACF for efficient room temperature bonding in FHE | June 2022
This is an auto-transcribed version without human control Fantastic. So thank you for the introduction. Lindbergh is my name Cornelis. It's a company based in Oslo making anisotropic conductive film. So what we provide is an electrical and mechanical interconnection by this adhesive anisotropic conductive film, which enables bonding at the room temperature and finger pressure. So no curing. You get the film from us in the form of a double sided tape, which you can bond your components with. With the the advantage with the film is that you retain the original polymer properties much better because we use much less conductive film fillers than in conventional conductive films. That is due to our on the line alignment process, which I'm not going to go into today. But also you have heard me before. I know about this this process. It's also enables a very flexible product design. In principle, it is material independent, as I said, which opens for development or tailor made application based products. So where are we today with the product pipeline? We are in the moment though qualifying and qualified qualify and verify the first time, which we call the line 100, which is the thickness of 100 micrometer. Also, the pitch between the conductive chains is also about 100 micrometer. Typical application areas which we work quite a lot with. The paper battery is coming up now smart labels connections with similar pad sizes, which is more than like in the area to hundred, about 200 micr...
6 April 2022
Ynvisible | Established and new applications of printed e-paper displays | June 2022
This is an auto-transcribed version of the original presentation without human control Thank you very much. So ynvisible makes printed epaper displays and solutions finished products. We make ultra low power segmented displays and we can make them any shape, size, what have you. Without expensive the expensive, say an lcd or epdm electrolytic e-paper because ours is printed. So here's just a quick look at our stack up. We have a moisture barrier, graphical layer. We have an electrolyte and electrodes so we can make really any shape or size, but we do not do high resolution pixel size displays. Right. So we can put information where you need it. We don't make it look maybe super pretty, but we can get the information cheaply and also low power, flexible where you need it. So here's a quick comparison between the competitive technologies, right? So invisible makes the printed e-paper with ink, intellectual theoretic, and then memory and pixel is an LCD based technology. So you can see clearly that there is an area where the printed technology fits quite better if you need thin, if you need a flexible, customizable and price. So we have customers that have been used in electrical, forensic or ink and they're using Invisibles product because we meet one of these criteria is a requirement, whether it's price customisation. Right? So all of us, all the papers are ultra low power and reflective. They're not all white temperature. They don't all have high resolution. As you see in so...
4 April 2022
Printed RFID inlay in Mass Production Scale as basis for further FHE product
Speaker: Alan Wu | Company: Smooth & Sharp Corporation | Date: 11-12 May 2021 | Full Presentation FHE production becomes more and more important role in IOT and wearable devices manufacturing, the mature production solution is needed for the growing market development. S&S’s DOP, Direct On Paper Solution integrates antenna printing and chip assembling in R2R mass production scale for RFID inlay with paper, serve as basis for realizing further FHE product development with low temperature substrates like paper. Alan Wu President @ Smooth & Sharp Corporation Bio Alan Wu is founder and President of S&S, Smooth & Sharp Corporation, he dedicates himself in RFID since 2002. Based on decades of RFID inlay manufacturing technology, he starts Flexible Hybrid Electronics production in 2016 in Taiwan. Alan received his bachelor degree in technical orientated MBA at University Stuttgart, Germany in 1992. After his study in Germany, Alan creates numerous international business projects in RFID and Solar industry, he acts as leading management in local medium size companies before he founds S&S. Join TechBlick on an annual pass to join all live online conference or online version of onsite conference access library of on-demand talks (600 talks + PDFs) portfolio of expert led masterclass year-round platform https://www.techblick.com/ And do NOT miss our flagship event in Berlin on 17-18 OCT 2023 focused on Reshaping the Future of Electronics. This event attracts 550-600 participants from ...
31 March 2022
AGENDA: Graphene, CNTs & 2D Materials. Users, Applications, Major Producers & Start-Ups
26 - 27 April 2022 | 14:00 - 21:20 CET | Virtual Event Platform Add Event to your Calendar Google Calendar | Microsoft Outlook Calendar | Office 365 Calendar | Yahoo Calendar TechBlick’s event on 26-27 April 2022 covers the full spectrum of Graphene, CNT, and 2D material-technical innovations, industrial progress, and application development. TechBlick brings together a handpicked world-class agenda consisting of end-users, manufacturers, promising start-ups, as well as renowned market analyst groups. Agenda Topics Covered: Graphene | Carbon Nanotubes (SWCNT, MWCNTs) | Boron Nitride | 2D Materials | Boron Nitride | Graphene-Silicon Anode | Battery Additives | Supercapacitors | Biosensors | Concrete and Cement Additives | Filtration Membranes | Composites and Plastic Additives | Fibers and Advanced Textiles | Gas Sensors | Memory Devices | Shielding | Conductive Fibers | Scale-Up | Quantum Electronics | Reflective Displays | Speaker Membranes and Transducers | Anti-Corrosion Coatings and Additives | Novel Manufacturing Methods | Functionalization | R2R CVD Growth and Transfer | Venture Capital Investment | Wafer Based Electronics...




