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SEMI Members:  $49

Use your corporate email address during log in to be recognized as a SEMI Member.

Non-Members:  $99

Students:  Free

Contact Gity Samadi ([email protected]) with a picture of your student ID to receive your discount code. 

Belgium China France Germany Ireland Italy Japan Malaysia Singapore South Korea Taiwan United States Watch the Master Class Now Battery Business Technical Featured Speakers

The course coverage includes:

  • Flexible power

    • Flexible batteries

    • Printed batteries

    • Thin batteries

  • Flexible batteries and sustainability

  • Flexible battery chemistry

    • Non-toxic flexible batteries

    • Materials for flexible batteries

    • Solid electrolytes for flexible batteries

  • Batteries for on-body electronics

  • Flexible battery testing

  • Flexible battery safety

  • Flexible battery specifications

  • Flexible battery power density

  • Flexible battery energy density

About the Instructor

J. Devin MacKenzie is the Washington Research Foundation Professor of Clean Energy and an Associate Professor of Materials Science and Engineering and Mechanical Engineering at UW.  Dr. MacKenzie is also the director of the Washington Clean Energy Testbeds, an open access laboratory with world-class printed electronics, flexible electronics and energy device fabrication and testing capabilities.  Dr. MacKenzie has 20 years of experience co-founding or leading startups in novel fabrication including as a co-founder and CEO of Imprint Energy commercializing printed  flexible batteries, as CTO of Add-Vision, a printed flexible OLED display company that was acquired in 2011, and as a VP at Kovio, an MIT spin out, leading printed Si RF device integration.  Devin also co-founded the world’s first printed electronics company, Plastic Logic Ltd. in the United Kingdom.  Previously Dr. MacKenzie was a researcher at AT&T Bell Laboratories. Prior to entering the start-up world, Devin was a postdoc in Physics at the University of Cambridge and earned PhD, MS, and BS degrees from the University of Florida and MIT. Dr. MacKenzie has over 220 patents and publications and has been cited over 10,000 times.

United States

J. Devin MacKenzie
J. Devin MacKenzie
Professor
University of Washington
- FlexTech

The Master Class covers the basics of battery terminology, chemistry and structures relevant to flexible electronics. The unique challenges related to the practical use and manufacturing of flexible batteries is discussed, as well as a summary of the current state of the art and emerging flexible battery technologies.  The presentation is 90 minutes with 30 minutes of Q&A and discussion from the participants who attended the live recording on April 20, 2021.

Flexible Hybrid Master Classes are offered on many topics!  Visit this page for entire list and links to more detailed information on each one.

10:00 am - 12:00 pm Off Add to Calendar Disabled America/Los_Angeles
Event format

Intermolecular, Inc. (“Intermolecular”), the trusted partner for materials innovation and a wholly-owned subsidiary of Merck KGaA, Darmstadt, Germany, today announced the relocation of the Silicon Valley Innovation Hub from Menlo Park to Intermolecular’s San Jose facilities, combining Merck KGaA, Darmstadt, Germany’s innovation efforts in the Bay area with Intermolecular’s services for materials and electronics, creating a unique space that empowers collaboration with startups.

The Silicon Valley Innovation Hub was established in 2017 in Menlo Park, CA. As part of the global Innovation Ecosystem of Merck KGaA, Darmstadt, Germany, it strives to identify and develop viable new businesses and technologies between the company’s existing business sectors or break new ground beyond them.

“The mission of the Silicon Valley Innovation Hub is to identify and explore untapped innovation- and business opportunities for Merck KGaA, Darmstadt, Germany. In this context, the intersection of life science and material science is becoming increasingly important and opens new areas of innovation. Having the Silicon Valley Innovation Hub and Intermolecular under one roof now will allow us and our cooperation partners to develop and test new materials for biological applications. We are very excited about these new opportunities,” states Thomas Herget, head of the Silicon Valley Innovation Hub.

Intermolecular has a unique toolset and expertise to quickly test and prove new advanced technologies and materials for semiconductor devices and electronic applications.

Having the Innovation Hub in the same building will further strengthen collaboration of the company’s businesses with startups and innovative companies in and around the Bay Area to rapidly grow their business from concept to high-volume manufacturing. The building boasts 30,000 square feet of cleanroom, chemical labs, offices, a collaboration area and event spaces.

Intermolecular’s customizable services are tailored to meet a startup’s unique needs, whether it is achieving a proof-of-principle, a first prototype, or a small series production. Intermolecular assigns experts in emerging technologies and offers its manufacturing facilities, which can run experiments 24/7to test and validate materials critical to product development. Intermolecular’s flexible methodologies and quality data help accelerate product design innovation, at any phase of a startup’s product development cycle.

“Intermolecular offers a seamless process flow that is specific and confidential to each startup, which is key to speeding time to innovation,” said Casper van Oosten, business field head and managing director for Intermolecular, Inc. “By providing startups the tools and expertise to validate their ideas, we can help them accelerate their path to new investment and speed their product introductions by giving them concrete data needed to move quickly from a research phase to full production. Having the experts from the Silicon Valley Innovation Hub now under one roof, we are looking forward to branch out into new areas and exploring collaboration opportunities that bring benefits to our customers/startups.”

“Semiconductor companies, particularly companies working on current generation and emerging memories, need to do a lot of experimentation to get the best combination of processes and materials,” said Tom Coughlin, president of Coughlin Associates. “Companies such as Intermolecular can provide efficient ways to gather and analyze the required data to make the next generations of memory possible.”

About the Silicon Valley Innovation Hub

Merck KGaA, Darmstadt, Germany’s Silicon Valley Innovation Hub supports scouting for the company’s existing businesses, with the additional objective to look between and beyond their scopes. This means evaluating new technological opportunities, building and maintaining local relationships and partnerships, and driving new business in fields such as cell-based meat.

About Intermolecular

Intermolecular is a trusted partner for materials innovation and the Silicon Valley science hub of Merck KGaA, Darmstadt, Germany and its Performance Materials business. Intermolecular explores, tests and develops advanced materials that are revolutionizing the next generation of electronics that make lives easier, entertaining and more productive. For more than 15 years, the team, methodologies and quality data have driven impactful outcomes, market opportunities and innovative product designs for customers.

About Merck KGaA, Darmstadt, Germany

Merck KGaA, Darmstadt, Germany, a leading science and technology company, operates across healthcare, life science and electronics. Around 58,000 employees work to make a positive difference to millions of people’s lives every day by creating more joyful and sustainable ways to live. From advancing gene editing technologies and discovering unique ways to treat the most challenging diseases to enabling the intelligence of devices – the company is everywhere. In 2020, Merck KGaA, Darmstadt, Germany, generated sales of € 17.5 billion in 66 countries.

The company holds the global rights to the name and trademark “Merck” internationally. The only exceptions are the United States and Canada, where the business sectors of Merck KGaA, Darmstadt, Germany operate as EMD Serono in healthcare, MilliporeSigma in life science, and EMD Electronics. Since its founding 1668, scientific exploration and responsible entrepreneurship have been key to the company’s technological and scientific advances. To this day, the founding family remains the majority owner of the publicly listed company.

Armstadt, Germany, March 4, 2021 – Merck KGaA, Darmstadt, Germany, a leading science and technology company, is changing the name of its Performance Materials business sector to Electronics. The new name is the visible result of the strategic realignment conducted over the past several years and a further milestone of the “Bright Future” transformation program, which began in 2018.

“The renaming of our business sector to Electronics is a logical step for us. After all, the new name underscores our strategic focus on the electronics industry. At the same time, it clearly illustrates our contribution to a world characterized by tremendous technological advances and exponential data growth,” said Kai Beckmann, Member of the Executive Board of Merck KGaA, Darmstadt, Germany, and CEO Electronics. “Under the ‘Bright Future’ umbrella, we’ve developed into a leading player within the electronics industry over the last few years. And with the new name Electronics, we’re now also making it clear, at a glance, what our business sector represents.”

As the company behind the companies advancing digital living, the Electronics business sector is involved in all major technology trends – be it 5G, Big Data, autonomous driving, artificial intelligence, or the Internet of Things. Thanks to these and other megatrends, the demand for ever smaller, faster and more energy-efficient electronics is continuously growing. For example, more and more of the components in modern chips are now approaching atomic dimensions.

“Bright Future” – A successful transformation program

The acquisitions of Intermolecular and Versum Materials in 2019 represented two very important moves within the scope of the ongoing transformation program. Thanks to the integration of Intermolecular, which offers unique processes and R&D capacities, Merck KGaA, Darmstadt, Germany, is now capable of making the latest material innovations available to its customers in the electronics industry even more rapidly. Through the acquisition of Versum Materials, the company has expanded its portfolio to include innovation-driven, ultra-high-purity process chemicals, gases and equipment for semiconductor manufacturing. The name Versum Materials, which has been in use separately until now, will be superseded by the new name of the business sector.

However, the name change will not have any effect on the existing organizational structure of the business sector, which comprises the three business units Semiconductor Solutions, Display Solutions and Surface Solutions. Electronics thus covers a particularly broad range of products and solutions, including high-tech materials and solutions for the semiconductor industry as well as liquid crystals and OLED materials for displays and effect pigments for coatings and cosmetics.

In September 2020, Merck KGaA, Darmstadt, Germany, raised its expectations for average annual organic sales growth of Electronics to 3% to 4% against the backdrop of its focus on the semiconductor industry, which is showing strong growth. The business sector currently generates around 90% of its sales in the two business units Semiconductor Solutions and Display Solutions.

SANTA ROSA, Calif., – February 17, 2021 – PNI Sensor, the world’s foremost expert in precision location, motion tracking, and fusion of sensor systems into real-world applications, today announced availability of the new TargetPoint TCM™ gyro-stabilized digital magnetic compass. TargetPoint TCM incorporates PNI’s high sensitivity Magneto-Inductive sensors with the latest high stability 3-axis MEMS accelerometer and 3-axis MEMS gyroscopes providing accurate orientation while in dynamic motion and in magnetically challenging environments. TargetPoint TCM excels in conditions that cause errors in traditional digital magnetic compasses.

TargetPoint TCM uses advanced magnetic distortion compensation and calibration scoring algorithms to counter the effects of hard and soft iron interference, providing highly accurate heading information in almost any environment and orientation.

TargetPoint TCM features and benefits include:
 Patented magnetic anomaly rejection algorithms eliminate errors due to magnetic distortion, even in magnetically harsh environments
 Gyro-stabilized compass for dynamic accuracy of sub-0.5 degrees of heading accuracy
 Multiple calibration methods, including 12-point hard- and soft-iron calibration methods, are available to ensure ease of calibration for all applications
 ITAR-free

“For military rangefinder and targeting systems developers who need accurate orientation in demanding conditions, TargetPoint TCM is a ruggedized digital magnetic compass built to handle weapons shock,” said Robin Stoecker, vice president of sales and marketing at PNI Sensor. “It’s an ideal choice for targeting applications that require reliability, consistency and accuracy.”

Pricing and Availability
For product specifications, download the TargetPoint TCM product sheet. For pricing and availability, please contact PNI Sales or your regional PNI representative.

About PNI Sensor
With over 30 years of experience, PNI is the world’s foremost expert in precision location, motion tracking, and fusion of sensor systems into real-world applications. PNI’s sensors and algorithms serve as the cornerstone of successful IoT projects and other mission-critical applications where pinpoint location, accuracy, and low power consumption are essential. Building on decades of patented sensor and algorithm development, PNI offers the industry’s highest-performance geomagnetic sensor in its class, location and motion coprocessors, high-performance modules, sensor fusion algorithms, and complete sensor systems. To learn more, please visit www.pnicorp.com.

Media Contact:
Robin Stoecker
PNI Sensor
Tel: +1 707-566-2260 |Email: [email protected]

Semiconductor equipment manufacturer ClassOne Technology has just released its proprietary new SoftSeal™ Plating Rotor, designed to enhance processing performance on the company’s Solstice® electroplating systems. The announcement was made by ClassOne’s CEO, Byron Exarcos and Senior Technology Director, John Ghekiere.

“Together with the plating reactor, the plating rotor design is key to maximizing on-wafer performance,” said Exarcos. “It’s responsible for distributing the electrical supply across the wafer, isolating electrolytes from the electrical contacts, and a great deal more. Which is why we’re constantly working to optimize rotor performance. The new SoftSeal is our latest and most advanced generation in Solstice rotors, and it’s already achieving unprecedented levels of electroplating uniformity along with reduced cost of ownership.”

“This highly-uniform performance comes from a combination of finely-tuned rotating-disk electrode physics and an optimized density of electrical contacts around the wafer,” said Ghekiere. "The ‘SoftSeal’ name comes from its high-performance FFKM elastomer seal which very effectively isolates plating chemistries from the wafer’s edge-exclusion zone. The new rotor also adapts automatically to substrate thickness, so it can accept thick or thin substrates without any adjustment. The design accommodates both flatted and multi-flat wafers, and it’s customizable to non-standard wafer sizes. Plus, the seal is more robust than on competitive rotors, meaning longer part life and no handling concerns.”

“In addition, the SoftSeal rotor’s low profile enables bubble-free entry into the plating bath,” Ghekiere noted. “And a unique design feature directs excess chemistry back into the bath at the end of the plating process. This is particularly important for conserving expensive plating baths such as gold. And, after processing, a special wafer retrieval method eliminates wafer flexing and stress by eliminating the need for extraction force at the center of the wafer.”

ClassOne stated that the new SoftSeal rotor is designed to fit all models of the company's Solstice electroplating systems and it will be standard equipment on all of the new tools going forward.

ClassOne Solstice systems are designed to provide high-performance, cost-efficient, single-wafer electroplating specifically for ≤200mm processing. The series includes the Solstice S8 and Solstice S4 for fully automated 8-chamber and 4-chamber high-speed production. It also includes the semiautomated Solstice LT, with up to three chambers that can be used both for process development and production. In addition to electroplating, the unique Plating-Plus™ capabilities of the Solstice platform enable it to handle many other important surface preparation functions, such as wafer cleaning, high-pressure metal lift-off, resist strip, UBM etch, and more. Class-leading performance and flexibility consistently make Solstice the tool of choice for ≤200mm plating across a range of product categories.

Japan
Highlighted content

SEMIジャパン
市ヶ谷
1-17
千代田区 九段南, Tokyo
1020074
Japan

Standards

Traceability Japan TC Chapter

Japan Standards Spring 2021 Meetings
Wednesday, March 17, 2021
SEMI Japan, Tokyo, Japan
13:00 – 15:00

AGENDA

1 Welcome / Call to Order

          Introductions

          Meeting Reminders

2 Agenda Review

              Review and Approval of Previous Meeting Minutes

3 Liaison Report

              North America TC Chapter

             Staff Report

4 Ballot Review

5 Subcommittee & Task Force Reports

             5 Year Review Task Force

             Japan Single Device Traceability (SDT) liaison TF

             Japan Equipment and Materials Traceability (EMT) liaison TF

             Panel Level Packaging (PLP) Glass Carrier ID Marking Task Force

             Blockchain TF

6 Old Business

             5 Year Review Check

             SNARF Project Period Check

7 New Business

             Type III Liaison

8 Action Item Review

             Open Action Items

             New Action Items

9 Next Meeting and Adjournment

 

Standards Contact Information:

Hirofumi Kanno

Coordinator, SEMI Japan

Email: [email protected] 

Phone: 81.3.3222.5949

 

NOTE:

Standards meetings are open to all, but you must be a SEMI Standards Program Member to attend.

If you are not a Member, please register for the International SEMI Standards Program and start making a big contribution to the industry’s progress, complete an application form today!

Questions? Contact your local staff coordinator: Click here

1:00 pm - 3:00 pm Off Add to Calendar 2021-03-17 13:00:00 2021-03-17 15:00:00 Traceability Japan TC Chapter Meeting Traceability Japan TC Chapter Japan Standards Spring 2021 Meetings Wednesday, March 17, 2021 SEMI Japan, Tokyo, Japan 13:00 – 15:00 AGENDA 1 Welcome / Call to Order           Introductions           Meeting Reminders 2 Agenda Review               Review and Approval of Previous Meeting Minutes 3 Liaison Report               North America TC Chapter              Staff Report 4 Ballot Review 5 Subcommittee & Task Force Reports              5 Year Review Task Force              Japan Single Device Traceability (SDT) liaison TF              Japan Equipment and Materials Traceability (EMT) liaison TF              Panel Level Packaging (PLP) Glass Carrier ID Marking Task Force              Blockchain TF 6 Old Business              5 Year Review Check              SNARF Project Period Check 7 New Business              Type III Liaison 8 Action Item Review              Open Action Items              New Action Items 9 Next Meeting and Adjournment   Standards Contact Information: Hirofumi Kanno Coordinator, SEMI Japan Email: [email protected]  Phone: 81.3.3222.5949   NOTE: Standards meetings are open to all, but you must be a SEMI Standards Program Member to attend. If you are not a Member, please register for the International SEMI Standards Program and start making a big contribution to the industry’s progress, complete an application form today! Questions? Contact your local staff coordinator: Click here SEMIジャパン 市ヶ谷 1-17 千代田区 九段南, Tokyo 1020074 Japan SEMI.org [email protected] Asia/Tokyo public Asia/Tokyo

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