MEMS Express from MNX
MEMS News <[email protected]> Wed, 11 Nov 2020 19:18:47 -0500 (EST)
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View Mailing Online [url: http://www.memsnet.org/news/mailings/1555/]
MEMS Express is brought to you by MNX [url: http://www.mems-exchange.org]:
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MEMS technology
3D-Micromac Unveils High-Throughput Selective Laser Annealing System for Magnetic Sensor Manufacturing
Micromac AG, the industry leader in laser micromachining and roll-to-roll laser systems for the semiconductor, photovoltaic, medicalPR Newswire: 2020-11-10
[url: https://www.prnewswire.com/news-releases/3d-micromac-unveils-high-throughput-selective-laser-annealing-system-for-magnetic-sensor-manufacturing-301169761.html]
Smart actuating materials can transform biomedical technologies
Bio-compatible electrostrictive materials will play a leading role in the future generation of medical micro-electro-mechanical systems (MEMS). In the science fiction film Back to the Future Part ...News Medical: 2020-11-05
[url: https://www.news-medical.net/news/20201105/Smart-actuating-materials-can-transform-biomedical-technologies.aspx]
MEMS business
Dynamics Announces Major Breakthrough In The Fight Against COVID-19; "Nanowave" Technology First to Inactivate Virus Continuously in Fast Moving Air
PRNewswire/ -- Dynamics Inc., a global leader in edge-to-edge flexible electronics and high-intensity UV technology, today announced a major breakthrough in the fight against SARS-CoV-2, theWFMZ-TV: 2020-11-10
[url: https://www.wfmz.com/news/state/dynamics-announces-major-breakthrough-in-the-fight-against-covid-19-nanowave-technology-first-to-inactivate/article_7378c02c-e532-5b99-a4ea-857697a59817.html]
Nanotechnology
Bacterial Protein Cages Used as Nanoscale Bioreactors to Produce Hydrogen
Image Credit: Professor Luning Liu. Published in the Nature Communications journal, the study demonstrates a method through which hydrogen can be produced by reprogramming bacterial protein “cages” as nanoscale bioreactors. The unique bacterial ...AZoNano: 2020-11-04
[url: https://www.azonano.com/news.aspx?newsID=37606]
Germanium telluride's hidden properties at the nanoscale revealed
Now a team from HZB and the Lomonosov Moscow State University, which has established a Helmholtz-RSF Joint Research Group, has provided comprehensive insights into this material at the nanoscale (ACS Nano, "Atomic and Electronic Structure of a Multidomain ...Nanowerk: 2020-11-07
[url: https://www.nanowerk.com/nanotechnology-news2/newsid=56568.php]
Making 3D nanosuperconductors with DNA
A platform for making 3D superconducting nano-architectures with a prescribed organization could find application in quantum computing and sensing.EurekAlert!: 2020-11-10
[url: https://www.eurekalert.org/pub_releases/2020-11/dnl-m3n110620.php]
Featured Periodical
(image)[1]
Springer Nature Publishing Releases New Book on MEMS Manufacturing
Authored by Dr. Michael Huff[2], Founder and Director of the MEMS and
Nanotechnology Exchange (MNX[3]) at Corporation for National Research
Initiatives[4].
The volume is entitled: Process Variations in Microsystems Manufacturing
and covers how to estimate and manage the dimensional and material
property variations resulting from the use of micro- and
nano-fabrication techniques when designing and developing a microsystems
device for production. This book is a valuable resource for
practitioners, researchers and engineers working in the field as well as
students at either the undergraduate or graduate level.
This book thoroughly examines and explains the basic processing steps
used in MEMS fabrication (both integrated circuit and specialized micro
machining processing steps. The book places an emphasis on the process
variations in the device dimensions resulting from these commonly used
processing steps. This will be followed by coverage of commonly used
metrology methods, process integration and variations in material
properties, device parameter variations, quality assurance and control
methods, and design methods for handling process variations. A detailed
analysis of future methods for improved microsystems manufacturing is
also included. This book is a valuable resource for practitioners,
researchers and engineers working in the field as well as students at
either the undergraduate or graduate level.
Examines and explains the basic processing steps used in MEMS
fabrication; Illustrates best practices and lessons learned in
manufacturing of microsystems for commercial products with detailed case
studies; Reviews future methods that may provide for improved process
variations.
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<h1 style="font-size:20px; font-weight:normal; color:#003366; width:590px; display:block; background-color:#C4CBDA; padding:5px">MEMS technology</h1>
<dl style="width:600px">
<dt style="font-weight:bold; margin-top: 0.5ex"><a href="https://www.prnewswire.com/news-releases/3d-micromac-unveils-high-throughput-selective-laser-annealing-system-for-magnetic-sensor-manufacturing-301169761.html" target="_new" title="https://www.prnewswire.com/news-releases/3d-micromac-unveils-high-throughput-selective-laser-annealing-system-for-magnetic-sensor-manufacturing-301169761.html">3D-Micromac Unveils High-Throughput Selective Laser Annealing System for Magnetic Sensor Manufacturing</a>
</dt>
<dd style="margin-bottom:0.5ex">Micromac AG, the industry leader in laser micromachining and roll-to-roll laser systems for the semiconductor, photovoltaic, medical<br /><div style="font-style:italic; font-size:smaller">PR Newswire: 2020-11-10 - MEMS technology</div>
</dd>
<div style="clear:right"></div>
<dt style="font-weight:bold; margin-top: 0.5ex"><a href="https://www.news-medical.net/news/20201105/Smart-actuating-materials-can-transform-biomedical-technologies.aspx" target="_new" title="https://www.news-medical.net/news/20201105/Smart-actuating-materials-can-transform-biomedical-technologies.aspx">Smart actuating materials can transform biomedical technologies</a>
</dt>
<dd style="margin-bottom:0.5ex">Bio-compatible electrostrictive materials will play a leading role in the future generation of medical micro-electro-mechanical systems (MEMS). In the science fiction film Back to the Future Part ...<br /><div style="font-style:italic; font-size:smaller">News Medical: 2020-11-05 - MEMS technology</div>
</dd>
<div style="clear:right"></div>
</dl>
<h1 style="font-size:20px; font-weight:normal; color:#003366; width:590px; display:block; background-color:#C4CBDA; padding:5px">MEMS business</h1>
<dl style="width:600px">
<dt style="font-weight:bold; margin-top: 0.5ex"><span style="margin:1px; float:right"><a href="https://www.wfmz.com/news/state/dynamics-announces-major-breakthrough-in-the-fight-against-covid-19-nanowave-technology-first-to-inactivate/article_7378c02c-e532-5b99-a4ea-857697a59817.html" target="_new"><img src="https://www.bing.com/th?id=OVFT.mtgFK5MZYVopLyWwU-Rfry&pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.wfmz.com/news/state/dynamics-announces-major-breakthrough-in-the-fight-against-covid-19-nanowave-technology-first-to-inactivate/article_7378c02c-e532-5b99-a4ea-857697a59817.html" target="_new" title="https://www.wfmz.com/news/state/dynamics-announces-major-breakthrough-in-the-fight-against-covid-19-nanowave-technology-first-to-inactivate/article_7378
c02c-e532-5b99-a4ea-857697a59817.html">Dynamics Announces Major Breakthrough In The Fight Against COVID-19; "Nanowave" Technology First to Inactivate Virus Continuously in Fast Moving Air</a
>
</dt>
<dd style="margin-bottom:0.5ex">PRNewswire/ -- Dynamics Inc., a global leader in edge-to-edge flexible electronics and high-intensity UV technology, today announced a major breakthrough in the fight against SARS-CoV-2, the<br /><div style="font-style:italic; font-size:smaller">WFMZ-TV: 2020-11-10 - MEMS business</div>
</dd>
<div style="clear:right"></div>
</dl>
<h1 style="font-size:20px; font-weight:normal; color:#003366; width:590px; display:block; background-color:#C4CBDA; padding:5px">Nanotechnology</h1>
<dl style="width:600px">
<dt style="font-weight:bold; margin-top: 0.5ex"><a href="https://www.azonano.com/news.aspx?newsID=37606" target="_new" title="https://www.azonano.com/news.aspx?newsID=37606">Bacterial Protein Cages Used as Nanoscale Bioreactors to Produce Hydrogen</a>
</dt>
<dd style="margin-bottom:0.5ex">Image Credit: Professor Luning Liu. Published in the Nature Communications journal, the study demonstrates a method through which hydrogen can be produced by reprogramming bacterial protein “cages” as nanoscale bioreactors. The unique bacterial ...<br /><div style="font-style:italic; font-size:smaller">AZoNano: 2020-11-04 - Nanotechnology</div>
</dd>
<div style="clear:right"></div>
<dt style="font-weight:bold; margin-top: 0.5ex"><a href="https://www.nanowerk.com/nanotechnology-news2/newsid=56568.php" target="_new" title="https://www.nanowerk.com/nanotechnology-news2/newsid=56568.php">Germanium telluride's hidden properties at the nanoscale revealed</a>
</dt>
<dd style="margin-bottom:0.5ex">Now a team from HZB and the Lomonosov Moscow State University, which has established a Helmholtz-RSF Joint Research Group, has provided comprehensive insights into this material at the nanoscale (ACS Nano, "Atomic and Electronic Structure of a Multidomain ...<br /><div style="font-style:italic; font-size:smaller">Nanowerk: 2020-11-07 - Nanotechnology</div>
</dd>
<div style="clear:right"></div>
<dt style="font-weight:bold; margin-top: 0.5ex"><span style="margin:1px; float:right"><a href="https://www.eurekalert.org/pub_releases/2020-11/dnl-m3n110620.php" target="_new"><img src="https://www.bing.com/th?id=OVFT.XK-3ESUgOSBTw74GdBFQVC&pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.eurekalert.org/pub_releases/2020-11/dnl-m3n110620.php" target="_new" title="https://www.eurekalert.org/pub_releases/2020-11/dnl-m3n110620.php">Making 3D nanosuperconductors with DNA</a>
</dt>
<dd style="margin-bottom:0.5ex">A platform for making 3D superconducting nano-architectures with a prescribed organization could find application in quantum computing and sensing.<br /><div style="font-style:italic; font-size:smaller">EurekAlert!: 2020-11-10 - Nanotechnology</div>
</dd>
<div style="clear:right"></div>
</dl>
<h1 style="font-size:20px; font-weight:normal; color:#003366; width:590px; display:block; background-color:#C4CBDA; padding:5px">Featured Periodical</h1>
<div style="width:600px"><div style="width:600px; font-size:x-small">
<a style="float:right; margin-left:25px" href="https://link.springer.com/book/10.1007/978-3-030-40560-1"><img style="border:none" src="http://www.memsnet.org/links/490/file/dde99f36f36a/ProcessVariationsInMicrosystemsManufacturing.jpeg"></a>
<p>
Springer Nature Publishing Releases New Book on MEMS Manufacturing Authored by <a href="https://www.springer.com/gp/book/9783030405588#aboutAuthors">Dr. Michael Huff</a>, Founder and Director of the MEMS and Nanotechnology Exchange (<a href="https://www.mems-exchange.org">MNX</a>) at <a href="https://www.cnri.reston.va.us">Corporation for National Research Initiatives</a>.
</p>
<p>
The volume is entitled: <i>Process Variations in Microsystems Manufacturing</i> and covers how to estimate and manage the dimensional and material property variations resulting from the use of micro- and nano-fabrication techniques when designing and developing a microsystems device for production. This book is a valuable resource for practitioners, researchers and engineers working in the field as well as students at either the undergraduate or graduate level.
</p>
<p>
This book thoroughly examines and explains the basic processing steps used in MEMS fabrication (both integrated circuit and specialized micro machining processing steps. The book places an emphasis on the process variations in the device dimensions resulting from these commonly used processing steps. This will be followed by coverage of commonly used metrology methods, process integration and variations in material properties, device parameter variations, quality assurance and control methods, and design methods for handling process variations. A detailed analysis of future methods for improved microsystems manufacturing is also included. This book is a valuable resource for practitioners, researchers and engineers working in the field as well as students at either the undergraduate or gra
duate level.
</p>
<p>
Examines and explains the basic processing steps used in MEMS fabrication;
Illustrates best practices and lessons learned in manufacturing of microsystems for commercial products with detailed case studies;
Reviews future methods that may provide for improved process variations.
</p>
</div>
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