MEMS Express from MNX

MEMS News <[email protected]> Fri, 1 May 2020 17:51:38 -0400 (EDT)
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View Mailing Online [url: http://www.memsnet.org/news/mailings/1539/]


MEMS Express is brought to you by MNX [url: http://www.mems-exchange.org]:
your microsystem design and fabrication partner



MEMS technology

Sweat monitoring beneath garments using passive, wireless resonant sensors interfaced with laser-ablated microfluidics
Sweat loss can help determine hydration status of individuals working in harsh conditions, which is especially relevant to those who wear thick personal protective equipment (PPE) such as firefighters.Nature: 2020-04-30
[url: https://www.nature.com/articles/s41746-020-0270-2]

Nanoscale microscopic sensors see the light
Theologians once pondered how many angels could dance on the head of a pin. Not to be outdone, Cornell researchers who build nanoscale electronics have developed microsensors so tiny, they can fit 30,000 on one side of a penny. There’s more to these tiny ...Control Engineering: 2020-04-27
[url: https://www.controleng.com/articles/nanoscale-microscopic-sensors-see-the-light/]

Wide bandgap semiconductor devices based on silicon carbide may revolutionize electronics
Growth of high-quality substrates for microelectronic applications is one of the key elements helping drive society toward a more sustainable green economy. Today, silicon plays a central role within the semiconductor industry for microelectronic and nanoelectronic devices.Phys.org: 2020-04-28
[url: https://phys.org/news/2020-04-wide-bandgap-semiconductor-devices-based.html]

CRISPR-based diagnostic chips perform thousands of tests simultaneously to detect viruses
Researchers have developed a new technology that flexibly scales up CRISPR-based molecular diagnostics, using microfluidics chips that can run thousands of tests simultaneously. A single chip&#39;s capacity ranges from detecting a single type of virus in more than 1,Medical Xpress: 2020-04-30
[url: https://medicalxpress.com/news/2020-04-crispr-based-diagnostic-chips-thousands-simultaneously.html]

Kirigami/origami: unfolding the new regime of advanced 3D microfabrication/nanofabrication with “folding”
Chinese scientists have conducted a comprehensive review of a method that uses techniques borrowed from origami and kirigami to fabricate tiny three-dimensional (3D) devices. The fabrication of 3D microscale/nanoscale materials holds the key to developing devices with unique physical,Nature: 2020-04-30
[url: https://www.nature.com/articles/s41377-020-0309-9]




Nanotechnology

Graphene-based nanomedicine enables targeted cancer treatment at molecular level
&quot;Three&quot; kinds of regalia such as crown, orb, and sward are often necessary to be a high king for conquering the world. For fighting off cancerous diseases, what do we need? This &quot;triple&quot; chemical modified nanomaterial might be save the patient.News Medical: 2020-04-24
[url: https://www.news-medical.net/news/20200423/Graphene-based-nanomedicine-enables-targeted-cancer-treatment-at-molecular-level.aspx]

Nanotechnology Might Help Fight Deadly &#39;Cytokine Storm&#39; of COVID-19
For many COVID-19 patients battling for their lives in the ICU, a runaway immune system response -- known as a &quot;cytokine storm&quot; -- is their primary foe. Doctors have few tools to help tame this hyperinflammatory condition,U.S. News &amp; World Report: 2020-04-28
[url: https://www.usnews.com/news/health-news/articles/2020-04-28/nanotechnology-might-help-fight-deadly-cytokine-storm-of-covid-19]

Intricate magnetic configuration of 3-D nanoscale gyroid networks revealed
A multinational team of researchers from Tohoku University and institutions in the UK, Germany and Switzerland has revealed the magnetic states of nanoscale gyroids, 3-D chiral network-like nanostructures.Phys.org: 2020-04-30
[url: https://phys.org/news/2020-04-intricate-magnetic-configuration-d-nanoscale.html]

MOFs and nanochannels enable lithium extraction from brines
Now, development is progressing on a technology that uses metal-organic frameworks (MOFs) embedded inside nanoscale channels in a polymer membrane to selectively separate lithium ions from salt brines.The Magazine: 2020-05-01
[url: https://www.chemengonline.com/mofs-nanochannels-enable-lithium-extraction-brines/]

The rise of integrated quantum photonics
Integrated quantum photonic chips offer the promise of a convenient, scalable platform for performing tasks such as quantum communication and information processing.Nature: 2020-05-01
[url: https://www.nature.com/articles/s41566-020-0634-9]



Happy New Year from your friends at the MEMS and Nanotechnology
Exchange!

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.

MEMS Event Calendar:

18th International Meeting on Chemical Sensors (IMCS 2020)
[url: https://imcs2020.gatech.edu/]
2020-05-10 - 2020-05-14
Montreal, Canada
 IMCS 2020, to be held in Montreal during May 2020

MEMS &amp; Imaging Sensors Summit
[url: https://www.semi.org/eu/connect/events/mems-imaging-sensors-summit?utm_campaign=Europe_MEMS_%26_Sensors_Summit&amp;utm_source=hs_email&amp;utm_medium=email&amp;utm_content=80272412&amp;_hsenc=p2ANqtz-8l0MQqO6iBBtJmqRdLPsQDW8vXHGB-BBtKy2J-OAAYtPZvri0Gqwl2oIeRiOgx7g2Rc8CvjmE6S3xxwN_bcwzTgBT68g&amp;_hsmi=80272412]
2020-06-22 - 2020-06-24
Grenoble, France
The SEMI MEMS &amp; Imaging Sensors Summit moved to June from September 2020!


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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"><span style="margin:1px; float:right"><a href="https://www.nature.com/articles/s41746-020-0270-2" target="_new"><img src="https://www.bing.com/th?id=ON.F06E989B1A3EC2814F603267029D113C&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.nature.com/articles/s41746-020-0270-2" target="_new" title="https://www.nature.com/articles/s41746-020-0270-2">Sweat monitoring beneath garments using passive, wireless resonant sensors interfaced with laser-ablated microfluidics</a>
</dt>
<dd style="margin-bottom:0.5ex">Sweat loss can help determine hydration status of individuals working in harsh conditions, which is especially relevant to those who wear thick personal protective equipment (PPE) such as firefighters.<br /><div style="font-style:italic; font-size:smaller">Nature: 2020-04-30 - MEMS technology</div>
</dd>
<div style="clear:right"></div>

<dt style="font-weight:bold; margin-top: 0.5ex"><a href="https://www.controleng.com/articles/nanoscale-microscopic-sensors-see-the-light/" target="_new" title="https://www.controleng.com/articles/nanoscale-microscopic-sensors-see-the-light/">Nanoscale microscopic sensors see the light</a>
</dt>
<dd style="margin-bottom:0.5ex">Theologians once pondered how many angels could dance on the head of a pin. Not to be outdone, Cornell researchers who build nanoscale electronics have developed microsensors so tiny, they can fit 30,000 on one side of a penny. There’s more to these tiny ...<br /><div style="font-style:italic; font-size:smaller">Control Engineering: 2020-04-27 - MEMS technology</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://phys.org/news/2020-04-wide-bandgap-semiconductor-devices-based.html" target="_new"><img src="https://www.bing.com/th?id=ON.477B5228A0E85EE76000FA1D3FB74617&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://phys.org/news/2020-04-wide-bandgap-semiconductor-devices-based.html" target="_new" title="https://phys.org/news/2020-04-wide-bandgap-semiconductor-devices-based.html">Wide bandgap semiconductor devices based on silicon carbide may revolutionize electronics</a>
</dt>
<dd style="margin-bottom:0.5ex">Growth of high-quality substrates for microelectronic applications is one of the key elements helping drive society toward a more sustainable green economy. Today, silicon plays a central role within the semiconductor industry for microelectronic and nanoelectronic devices.<br /><div style="font-style:italic; font-size:smaller">Phys.org: 2020-04-28 - MEMS technology</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://medicalxpress.com/news/2020-04-crispr-based-diagnostic-chips-thousands-simultaneously.html" target="_new"><img src="https://www.bing.com/th?id=ON.3FEC4CDAE4EF1DEB2E032A04BC5F864B&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://medicalxpress.com/news/2020-04-crispr-based-diagnostic-chips-thousands-simultaneously.html" target="_new" title="https://medicalxpress.com/news/2020-04-crispr-based-diagnostic-chips-thousands-simultaneously.html">CRISPR-based diagnostic chips perform thousands of tests simultaneously to detect viruses</a>
</dt>
<dd style="margin-bottom:0.5ex">Researchers have developed a new technology that flexibly scales up CRISPR-based molecular diagnostics, using microfluidics chips that can run thousands of tests simultaneously. A single chip's capacity ranges from detecting a single type of virus in more than 1,<br /><div style="font-style:italic; font-size:smaller">Medical Xpress: 2020-04-30 - MEMS technology</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.nature.com/articles/s41377-020-0309-9" target="_new"><img src="https://www.bing.com/th?id=ON.AEFE14974E9205EBBE49E3B5836C8185&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.nature.com/articles/s41377-020-0309-9" target="_new" title="https://www.nature.com/articles/s41377-020-0309-9">Kirigami/origami: unfolding the new regime of advanced 3D microfabrication/nanofabrication with “folding”</a>
</dt>
<dd style="margin-bottom:0.5ex">Chinese scientists have conducted a comprehensive review of a method that uses techniques borrowed from origami and kirigami to fabricate tiny three-dimensional (3D) devices. The fabrication of 3D microscale/nanoscale materials holds the key to developing devices with unique physical,<br /><div style="font-style:italic; font-size:smaller">Nature: 2020-04-30 - 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">Nanotechnology</h1>

<dl style="width:600px">
<dt style="font-weight:bold; margin-top: 0.5ex"><span style="margin:1px; float:right"><a href="https://www.news-medical.net/news/20200423/Graphene-based-nanomedicine-enables-targeted-cancer-treatment-at-molecular-level.aspx" target="_new"><img src="https://www.bing.com/th?id=ON.0453938D2F729666CF64E16C2F459043&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.news-medical.net/news/20200423/Graphene-based-nanomedicine-enables-targeted-cancer-treatment-at-molecular-level.aspx" target="_new" title="https://www.news-medical.net/news/20200423/Graphene-based-nanomedicine-enables-targeted-cancer-treatment-at-molecular-level.aspx">Graphene-based nanomedicine enables targeted cancer treatment at molecular level</a>
</dt>
<dd style="margin-bottom:0.5ex">"Three" kinds of regalia such as crown, orb, and sward are often necessary to be a high king for conquering the world. For fighting off cancerous diseases, what do we need? This "triple" chemical modified nanomaterial might be save the patient.<br /><div style="font-style:italic; font-size:smaller">News Medical: 2020-04-24 - 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.usnews.com/news/health-news/articles/2020-04-28/nanotechnology-might-help-fight-deadly-cytokine-storm-of-covid-19" target="_new"><img src="https://www.bing.com/th?id=ON.727F7EC34C020DFC7C7B82185646E31D&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.usnews.com/news/health-news/articles/2020-04-28/nanotechnology-might-help-fight-deadly-cytokine-storm-of-covid-19" target="_new" title="https://www.usnews.com/news/health-news/articles/2020-04-28/nanotechnology-might-help-fight-deadly-cytokine-storm-of-covid-19">Nanotechnology Might Help Fight Deadly 'Cytokine Storm' of COVID-19</a>
</dt>
<dd style="margin-bottom:0.5ex">For many COVID-19 patients battling for their lives in the ICU, a runaway immune system response -- known as a "cytokine storm" -- is their primary foe. Doctors have few tools to help tame this hyperinflammatory condition,<br /><div style="font-style:italic; font-size:smaller">U.S. News &amp; World Report: 2020-04-28 - 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://phys.org/news/2020-04-intricate-magnetic-configuration-d-nanoscale.html" target="_new"><img src="https://www.bing.com/th?id=ON.6E305853507DF3181E8121C2C09CC753&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://phys.org/news/2020-04-intricate-magnetic-configuration-d-nanoscale.html" target="_new" title="https://phys.org/news/2020-04-intricate-magnetic-configuration-d-nanoscale.html">Intricate magnetic configuration of 3-D nanoscale gyroid networks revealed</a>
</dt>
<dd style="margin-bottom:0.5ex">A multinational team of researchers from Tohoku University and institutions in the UK, Germany and Switzerland has revealed the magnetic states of nanoscale gyroids, 3-D chiral network-like nanostructures.<br /><div style="font-style:italic; font-size:smaller">Phys.org: 2020-04-30 - 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.chemengonline.com/mofs-nanochannels-enable-lithium-extraction-brines/" target="_new"><img src="https://www.bing.com/th?id=ON.41281B45A8E291FEF484991E3ACA55D9&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.chemengonline.com/mofs-nanochannels-enable-lithium-extraction-brines/" target="_new" title="https://www.chemengonline.com/mofs-nanochannels-enable-lithium-extraction-brines/">MOFs and nanochannels enable lithium extraction from brines</a>
</dt>
<dd style="margin-bottom:0.5ex">Now, development is progressing on a technology that uses metal-organic frameworks (MOFs) embedded inside nanoscale channels in a polymer membrane to selectively separate lithium ions from salt brines.<br /><div style="font-style:italic; font-size:smaller">The Magazine: 2020-05-01 - 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.nature.com/articles/s41566-020-0634-9" target="_new"><img src="https://www.bing.com/th?id=ON.756BCCF8732FAB43B8454506FF3C0EF8&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.nature.com/articles/s41566-020-0634-9" target="_new" title="https://www.nature.com/articles/s41566-020-0634-9">The rise of integrated quantum photonics</a>
</dt>
<dd style="margin-bottom:0.5ex">Integrated quantum photonic chips offer the promise of a convenient, scalable platform for performing tasks such as quantum communication and information processing.<br /><div style="font-style:italic; font-size:smaller">Nature: 2020-05-01 - Nanotechnology</div>
</dd>
<div style="clear:right"></div>

</dl>Happy New Year from your friends at the MEMS and Nanotechnology Exchange!
<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>

<div style="clear:both"></div></div>
<h1 style="font-size:20px; font-weight:normal; color:#003366; width:590px;            display:block; background-color:#C4CBDA; padding:5px">Event Calendar</h1>
<div><table style="border:none; width:600px">
<tr><td><dl style="width:460px">
<dt><b><a href="https://imcs2020.gatech.edu/">18th International Meeting on Chemical Sensors (IMCS 2020)</a></b></dt>
<dd>2020-05-10 - 2020-05-14<br />Montreal, Canada<br /> IMCS 2020, to be held in Montreal during May 2020<br />
</dd></dl>
</td><td><a href="https://imcs2020.gatech.edu/" target="_new" title="18th International Meeting on Chemical Sensors (IMCS 2020)"><img src="http://www.memsnet.org/events/1616/file/0d7f1fb877ce/IMCS-2020-125x60.png" width="125" height="65" alt="18th International Meeting on Chemical Sensors (IMCS 2020)" class="sponsor" style="padding-left:1ex; border:none"/></a>
</td></tr>
<tr><td><dl style="width:460px">
<dt><b><a href="https://www.semi.org/eu/connect/events/mems-imaging-sensors-summit?utm_campaign=Europe_MEMS_%26_Sensors_Summit&amp;utm_source=hs_email&amp;utm_medium=email&amp;utm_content=80272412&amp;_hsenc=p2ANqtz-8l0MQqO6iBBtJmqRdLPsQDW8vXHGB-BBtKy2J-OAAYtPZvri0Gqwl2oIeRiOgx7g2Rc8CvjmE6S3xxwN_bcwzTgBT68g&amp;_hsmi=80272412">MEMS &amp; Imaging Sensors Summit</a></b></dt>
<dd>2020-06-22 - 2020-06-24<br />Grenoble, France<br />The SEMI MEMS &amp; Imaging Sensors Summit moved to June from September 2020!<br />
</dd></dl>
</td><td><a href="https://www.semi.org/eu/connect/events/mems-imaging-sensors-summit?utm_campaign=Europe_MEMS_%26_Sensors_Summit&amp;utm_source=hs_email&amp;utm_medium=email&amp;utm_content=80272412&amp;_hsenc=p2ANqtz-8l0MQqO6iBBtJmqRdLPsQDW8vXHGB-BBtKy2J-OAAYtPZvri0Gqwl2oIeRiOgx7g2Rc8CvjmE6S3xxwN_bcwzTgBT68g&amp;_hsmi=80272412" target="_new" title="MEMS &amp; Imaging Sensors Summit"><img src="http://www.memsnet.org/events/1617/file/c4ba53fd4193/MEMS%20Imaging%20and%20Sensors%20125x60a.png" width="125" height="65" alt="MEMS &amp; Imaging Sensors Summit" class="sponsor" style="padding-left:1ex; border:none"/></a>
</td></tr>
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