MEMS Express from MNX

MEMS News <[email protected]> Wed, 16 Sep 2020 19:17:28 -0400 (EDT)
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View Mailing Online [url: http://www.memsnet.org/news/mailings/1549/]


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



MEMS technology

Touchpad technology offers precise droplet control for microfluidics
A touchpad that allows users to move and manipulate individual droplets in a microfluidic device has been developed by researchers in China. The technology works much like a phone touchscreen and adds a heightened level of control and interactivity to the emerging field of digital microfluidics.Chemistry World: 2020-09-09
[url: https://www.chemistryworld.com/news/touchpad-technology-offers-precise-droplet-control-for-microfluidics/4012404.article]


MEMS business

Micromachining center achieves precision, repeatability required to produce medtech molds
A new micromachining center from Japanese machine builder Yasda is designed for the manufacture of molds and components with challenging micro-sized geometries that are typical in the medical and semiconductor sectors, for example. The new Yasda YMC 430 Ver.Plastics Today: 2020-09-09
[url: https://www.plasticstoday.com/micromachining-center-achieves-precision-repeatability-required-produce-medtech-molds]


Nanotechnology

A new way of controlling conductivity of materials at the nanoscale
Researchers have found a completely new method to check the electronic properties of oxide materials. This opens the door to even tinier components and perhaps more sustainable electronics.Nanowerk: 2020-09-16
[url: https://www.nanowerk.com/nanotechnology-news2/newsid=56169.php]

Flexible Glass Has Benefits for Nanoscale Medical-Testing Devices
Glass isn’t typically thought of as a material that’s particularly flexible, but researchers at Brigham Young University are changing that with a new type of glass that can be used to bring rapid medical-testing devices to the nanoscale. A team led by ...Design News: 2020-09-09
[url: https://www.designnews.com/materials-assembly/flexible-glass-has-benefits-nanoscale-medical-testing-devices]

First fiber-optic nanotip electron gun enables easier nanoscale research
Scientists at the Department of Energy&#39;s Oak Ridge National Laboratory and the University of Nebraska have developed an easier way to generate electrons for nanoscale imaging and sensing, providing a useful new tool for material science,Phys.org: 2020-09-14
[url: https://phys.org/news/2020-09-fiber-optic-nanotip-electron-gun-enables.html]

Nanoscale Warming Is Faster Than Cooling
Contrary to conventional wisdom, a sufficiently small, cold object warms to the temperature of its surroundings faster than a warm object cools, according to a new theory.American Physical Society: 2020-09-11
[url: https://physics.aps.org/articles/v13/144]


Nanotech business

National Science Foundation awards University of Dayton research team $63K to apply machine learning to 3-D printing on nanoscale
The National Science Foundation awarded a $63,215 supplemental grant to University of Dayton physics, computer science and electro-optics researchers to apply data science technology to an advanced manufacturing process for building three-dimensional structures at nanoscale,University of Dayton: 2020-09-15
[url: https://udayton.edu/blogs/engineering/2020/20-09-15-zhan-qiwen-nsf.php]



Featured Event

Medical Wearables 2020[1]

MEMS Event Calendar:

Medical Wearables 2020
[url: http://www.medwearablesconference.com/]
2020-11-03 - 2020-11-05
Online
5th Annual Conference and Exhibition


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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.chemistryworld.com/news/touchpad-technology-offers-precise-droplet-control-for-microfluidics/4012404.article" target="_new"><img src="https://www.bing.com/th?id=OVFT.P-1R445cMQLxc070ZKBSPi&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.chemistryworld.com/news/touchpad-technology-offers-precise-droplet-control-for-microfluidics/4012404.article" target="_new" title="https://www.chemistryworld.com/news/touchpad-technology-offers-precise-droplet-control-for-microfluidics/4012404.article">Touchpad technology offers precise droplet control for microfluidics</a>
</dt>
<dd style="margin-bottom:0.5ex">A touchpad that allows users to move and manipulate individual droplets in a microfluidic device has been developed by researchers in China. The technology works much like a phone touchscreen and adds a heightened level of control and interactivity to the emerging field of digital microfluidics.<br /><div style="font-style:italic; font-size:smaller">Chemistry World: 2020-09-09 - 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"><a href="https://www.plasticstoday.com/micromachining-center-achieves-precision-repeatability-required-produce-medtech-molds" target="_new" title="https://www.plasticstoday.com/micromachining-center-achieves-precision-repeatability-required-produce-medtech-molds">Micromachining center achieves precision, repeatability required to produce medtech molds</a>
</dt>
<dd style="margin-bottom:0.5ex">A new micromachining center from Japanese machine builder Yasda is designed for the manufacture of molds and components with challenging micro-sized geometries that are typical in the medical and semiconductor sectors, for example. The new Yasda YMC 430 Ver.<br /><div style="font-style:italic; font-size:smaller">Plastics Today: 2020-09-09 - 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"><span style="margin:1px; float:right"><a href="https://www.nanowerk.com/nanotechnology-news2/newsid=56169.php" target="_new"><img src="https://www.bing.com/th?id=OVFT.3Q75zwaOT_t5XN_p5mtMfC&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.nanowerk.com/nanotechnology-news2/newsid=56169.php" target="_new" title="https://www.nanowerk.com/nanotechnology-news2/newsid=56169.php">A new way of controlling conductivity of materials at the nanoscale</a>
</dt>
<dd style="margin-bottom:0.5ex">Researchers have found a completely new method to check the electronic properties of oxide materials. This opens the door to even tinier components and perhaps more sustainable electronics.<br /><div style="font-style:italic; font-size:smaller">Nanowerk: 2020-09-16 - 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.designnews.com/materials-assembly/flexible-glass-has-benefits-nanoscale-medical-testing-devices" target="_new"><img src="https://www.bing.com/th?id=OVFT.XPu4nbnIQDtVd86FbNTNVS&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.designnews.com/materials-assembly/flexible-glass-has-benefits-nanoscale-medical-testing-devices" target="_new" title="https://www.designnews.com/materials-assembly/flexible-glass-has-benefits-nanoscale-medical-testing-devices">Flexible Glass Has Benefits for Nanoscale Medical-Testing Devices</a>
</dt>
<dd style="margin-bottom:0.5ex">Glass isn’t typically thought of as a material that’s particularly flexible, but researchers at Brigham Young University are changing that with a new type of glass that can be used to bring rapid medical-testing devices to the nanoscale. A team led by ...<br /><div style="font-style:italic; font-size:smaller">Design News: 2020-09-09 - 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/2020-09-fiber-optic-nanotip-electron-gun-enables.html" target="_new"><img src="https://www.bing.com/th?id=OVFT.T--vhK6oGFBKHOtf6_pq9i&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://phys.org/news/2020-09-fiber-optic-nanotip-electron-gun-enables.html" target="_new" title="https://phys.org/news/2020-09-fiber-optic-nanotip-electron-gun-enables.html">First fiber-optic nanotip electron gun enables easier nanoscale research</a>
</dt>
<dd style="margin-bottom:0.5ex">Scientists at the Department of Energy's Oak Ridge National Laboratory and the University of Nebraska have developed an easier way to generate electrons for nanoscale imaging and sensing, providing a useful new tool for material science,<br /><div style="font-style:italic; font-size:smaller">Phys.org: 2020-09-14 - 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://physics.aps.org/articles/v13/144" target="_new"><img src="https://www.bing.com/th?id=OVFT.S8QU42St6h8gaXcMKMikkS&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://physics.aps.org/articles/v13/144" target="_new" title="https://physics.aps.org/articles/v13/144">Nanoscale Warming Is Faster Than Cooling</a>
</dt>
<dd style="margin-bottom:0.5ex">Contrary to conventional wisdom, a sufficiently small, cold object warms to the temperature of its surroundings faster than a warm object cools, according to a new theory.<br /><div style="font-style:italic; font-size:smaller">American Physical Society: 2020-09-11 - 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">Nanotech business</h1>

<dl style="width:600px">
<dt style="font-weight:bold; margin-top: 0.5ex"><span style="margin:1px; float:right"><a href="https://udayton.edu/blogs/engineering/2020/20-09-15-zhan-qiwen-nsf.php" target="_new"><img src="https://www.bing.com/th?id=OVFT.4MW5UURujQnSKM-jcNy5ei&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://udayton.edu/blogs/engineering/2020/20-09-15-zhan-qiwen-nsf.php" target="_new" title="https://udayton.edu/blogs/engineering/2020/20-09-15-zhan-qiwen-nsf.php">National Science Foundation awards University of Dayton research team $63K to apply machine learning to 3-D printing on nanoscale</a>
</dt>
<dd style="margin-bottom:0.5ex">The National Science Foundation awarded a $63,215 supplemental grant to University of Dayton physics, computer science and electro-optics researchers to apply data science technology to an advanced manufacturing process for building three-dimensional structures at nanoscale,<br /><div style="font-style:italic; font-size:smaller">University of Dayton: 2020-09-15 - Nanotech 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">Featured Event</h1>
<a href="http://www.medwearablesconference.com/" target="_new"><div style="width:600px"><img src="http://www.memsnet.org/events/1634/file/d00a84976fea/MW20_600x125.jpg" alt="Medical Wearables 2020" style="border:none" /></div></a><div style="width:600px"><div></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="http://www.medwearablesconference.com/">Medical Wearables 2020</a></b></dt>
<dd>2020-11-03 - 2020-11-05<br />Online<br />5th Annual Conference and Exhibition<br />
</dd></dl>
</td><td><a href="http://www.medwearablesconference.com/" target="_new" title="Medical Wearables 2020"><img src="http://www.memsnet.org/events/1634/file/379635a77728/MW20_125x65.jpg" width="125" height="65" alt="Medical Wearables 2020" class="sponsor" style="padding-left:1ex; border:none"/></a>
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