SEMI FlexTech Launches Three New Projects to Advance Flexible Hybrid Electronics
July 2, 2020 | SEMIEstimated reading time: 2 minutes
SEMI FlexTech announced the launch of three projects to accelerate sensor and sensor system innovations for new applications in industries including healthcare, automotive, industrial and defense.
In collaboration with the U.S. Army Research Laboratory (ARL), FlexTech, a SEMI Technology Community, will fund half of the total $2.6 million for the projects aimed at maturing the flexible hybrid electronics (FHE) technology ecosystem. Organizations leading the projects include the University of Colorado (CU), University of Washington (UW) and University of California, Los Angeles (UCLA).
Project Snapshots
The University of Colorado project is focused on integrating soft actuators and flexible electronic control circuits to demonstrate a complete soft robotic system. The project includes a demonstration of synthetic muscular hydrostat integrating electronics and soft actuator modules capable of manipulating objects. The system will mimic muscular structures such as an octopus arm or elephant trunk and will use a human-machine interface for robotic manipulation. CU will be partnering with PARC, A Xerox company on this 18-month project.
Researchers at the University of Washington will focus on an 18-month project to improve and optimize sensor design with ultra-high-resolution printed structures using the novel piezoelectric material of a TMCM MnCl3 (trimethylchloromethyl ammonium trichloromanganese). Deliverables include demonstration of large area roll-to-roll printed electronics fabrication and integration, with compact signal conditioning and wireless data transmission. This project aims to bring the high performance of high-temperature, inflexible inorganic sensors to low-temperature flexible electronics through a low-cost, fully-printed process using low-toxicity materials. The project aims to develop a novel approach to creating flexible health monitoring sensors.
UCLA will develop and demonstrate a foldable, high-resolution microdisplay on PDMS substrates by developing an ultra-high yield, scalable and low-cost mass transfer process for assembly of high-quality GaN µLEDs at 100um size for a resolution of >200 pixels per inch (PPI). The prototype will be made using heterogeneous integration of mass-transferred GaN µLED with Si CMOS driver circuitry on a common flexible organic substrate using Fan-Out-Wafer-Level Packaging. In parallel, the project will explore testing strategies for electrical characterization of µLED and process scalability and limitation. UCLA will partner with Veeco on this 18-month project.
“These groundbreaking research projects target technology advancements that are too risky for corporate R&D funding but offer the potential for high payoff,” said Melissa Grupen-Shemansky, CTO of SEMI and Executive Director of SEMI-FlexTech. “ARL relies on the SEMI FlexTech Governing Council and Technical Advisory Council to select projects that drive leapfrog advances in flexible and printed electronics. Calling upon their deep technical knowledge and experience in the field, SEMI-FlexTech members of these councils vet projects based on technology gaps in the industry.”
SEMI FlexTech is currently soliciting new project proposals via a white paper pre-proposal due July 10, 2020.
Suggested Items
PCB Design Software Market Expected to Hit $9.2B by 2031
11/21/2024 | openPRThis report provides an overview of the PCB design software market, detailing key market drivers, challenges, technological advancements, regional dynamics, and future trends. With a projected compound annual growth rate (CAGR) of 13.4% from 2024 to 2031, the market is expected to grow from USD 3.9 billion in 2024 to USD 9.2 billion by 2031.
IPC Issues Clarion Call for EU to Reclaim Leadership in Electronics Manufacturing
11/21/2024 | IPCIPC released a synopsis of its recent white paper, Securing the European Union’s Electronics Ecosystem. This condensed document presents a comprehensive overview of the current challenges in Europe’s electronics manufacturing industry and shares actionable steps to help the EU achieve a stronger, more autonomous ecosystem.
IPC Celebrates National Apprenticeship Week with a Focus on Electronics Manufacturing Excellence
11/19/2024 | IPCIPC, a leading global electronics industry association and source for industry standards, training and advocacy, is proud to announce its participation in National Apprenticeship Week, scheduled for November 17-23, 2024.
IPC Introduces First Standard for In-Mold Electronics
11/18/2024 | IPCIPC announces the release of IPC-8401, Guidelines for In-Mold Electronics. IPC-8401 addresses in-mold electronics (IME) technology, providing industry consensus on guidelines for manufacturing processes, part structures, material selection, and production test methods to integrate printed electronics and components into 3D smart structures.
Disruptive Innovation and Generative AI Inventor, Kevin Surace, to Keynote IPC APEX EXPO 2025
11/15/2024 | IPCEach year, IPC APEX EXPO features industry’s most dynamic, innovative minds to deliver keynote presentations that are both educational and entertaining. IPC APEX EXPO 2025 will feature Kevin Surace, an internationally renowned futurist and generative artificial intelligence (AI) innovator.