MEMS Express from MNX
MEMS News <[email protected]> Thu, 2 Aug 2018 19:58:52 -0400 (EDT)
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View Mailing Online [url: http://www.memsnet.org/news/mailings/1477/]
MEMS Express is brought to you by MNX [url: http://www.mems-exchange.org]:
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MEMS technology
Microscale superlubricity could pave way for future improved electromechanical devices
Lubricity measures the reduction in mechanical friction and wear by a lubricant. These are the main causes of component failure and energy loss in mechanical and electromechanical systems. For example, one-third of the fuel-based energy in vehicles is ...Phys.org: 2018-08-01
[url: https://www.bing.com/cr?IG=38A34C7985974DDF9F74BEA5B12E8659&CID=3AE54F5D2ED76556161843622FBB643B&rd=1&h=7XmqVNEcgJ3YXk0QRUrnJfTXQ9arTvk76UKhoiYKJyQ&v=1&r=https://phys.org/news/2018-08-microscale-superlubricity-pave-future-electromechanical.html&p=DevEx.LB.1,5030.1]
Integrated sensor could monitor brain aneurysm treatment
Nanostructured Flow-Diverter System for Quantification of Intra-aneurysmal Hemodynamics") and was supported by multiple grants from Georgia Tech’s Institute for Electronics and Nanotechnology, the University of Pittsburgh and the Korea Institute of ...Nanowerk: 2018-08-02
[url: https://www.bing.com/cr?IG=3B237E63FC62404FBEAFB80CBDB88AF1&CID=23068702227D6B850DC78B3D23116A6C&rd=1&h=BPPPW2v7lZmYzqfK1WKWBAFbM-QSR0_ChqtiyLvi2hw&v=1&r=https://www.nanowerk.com/nanotechnology-news2/newsid=50821.php&p=DevEx.LB.1,5034.1]
MEMS business
DARPA has an ambitious $1.5 billion plan to reinvent electronics
The US military agency is worried the country could lose its edge in semiconductor chips with the end of Moore’s Law. Last year, the Defense Advanced Research Projects Agency (DARPA), which funds a range of blue-sky research efforts relevant to the US ...MIT Technology Review: 2018-07-30
[url: https://www.bing.com/cr?IG=D4ECD92A60144293AD04FE2BF0E890C1&CID=1FD2B6F91CF266ED3CF3BAC61D9E6713&rd=1&h=6h49G9bQ6HnvxpnJldi5SwlSdVHIgP7kFabzGvSPi_s&v=1&r=https://www.technologyreview.com/s/611725/darpa-has-an-ambitious-15-billion-plan-to-reinvent-electronics/&p=DevEx.LB.1,5042.1]
New emulsion stabilizer for droplet microfluidics prevents small molecule leakage
Dolomite Microfluidics, part of the Blacktrace Group, is delighted to launch its new Pickering emulsion stabilizer Fluoro-Phase, a fluorinated continuous phase that has been specially formulated to stabilize aqueous droplets in microfluidic systems.Manufacturing: 2018-08-01
[url: https://www.bing.com/cr?IG=AFBDF504B8D642E8B14A456EFF09558C&CID=2908FB63A68C68941BC0F75CA7E069E4&rd=1&h=eBiYMThegA4yMwAlWJx6Y8LpPnA-_qanUMHRGtcZcZQ&v=1&r=https://www.manufacturingtomorrow.com/news/2018/08/01/new-emulsion-stabilizer-for-droplet-microfluidics-prevents-small-molecule-leakage/11920/&p=DevEx.LB.1,5044.1]
Nanotechnology
Advanced microscopy technique reveals new aspects of water at the nanoscale level
A new microscopy technique allows researchers to visualize liquids at the nanoscale level -- about 10 times more resolution than with traditional transmission electron microscopy -- for the first time. By trapping minute amounts of liquid between two two ...Science Daily: 2018-08-01
[url: https://www.bing.com/cr?IG=6C71DD2D961B415BB8CC4D2ECC00AACE&CID=1DF4FBEAC2856B011B5DF7D5C3E96A10&rd=1&h=CINYjGw0scmUVTZ2fgOdp7J_PMaq6lTMjO6uAfPOpXU&v=1&r=https://www.sciencedaily.com/releases/2018/08/180801160027.htm&p=DevEx.LB.1,5034.1]
Computing should be based on light, not electricity, scientists say
“There hasn't been a controlled method for selectively sending light down along nanoscale wires,” says James Cahoon, a professor in the College of Arts and Sciences. “Optical technology has either used much larger structures or wasted a lot of light ...Network World: 2018-08-02
[url: https://www.bing.com/cr?IG=6C71DD2D961B415BB8CC4D2ECC00AACE&CID=1DF4FBEAC2856B011B5DF7D5C3E96A10&rd=1&h=IRZHzruoCAfWJbPIjB33uubJVaq9jsMNutvK89x7cvo&v=1&r=https://www.networkworld.com/article/3293925/data-center/computing-should-be-based-on-light-not-electricity-scientists-say.html&p=DevEx.LB.1,5040.1]
Nanotube 'rebar' makes graphene twice as tough
Rebar graphene is the nanoscale analog of rebar (reinforcement bars) in concrete, in which embedded steel bars enhance the material's strength and durability. Rebar graphene, developed by the Rice lab of chemist James Tour in 2014, uses carbon nanotubes ...Phys.org: 2018-08-02
[url: https://www.bing.com/cr?IG=6C71DD2D961B415BB8CC4D2ECC00AACE&CID=1DF4FBEAC2856B011B5DF7D5C3E96A10&rd=1&h=GBnMX0k18jLve-0H_Edn8rtcXrDSG1WXmjGrkXG7ETo&v=1&r=https://phys.org/news/2018-08-nanotube-rebar-graphene-tough.html&p=DevEx.LB.1,5036.1]
Titanium dioxide as a nanoscale sensor of mechanical stress
Scientists from EPFL, Germany and France have revealed a new property of the cheap and abundant material anatase titanium dioxide, which promises applications as a medium for room-temperature nanosensors of mechanical stress with an optical read-out.Phys.org: 2018-07-31
[url: https://www.bing.com/cr?IG=6C71DD2D961B415BB8CC4D2ECC00AACE&CID=1DF4FBEAC2856B011B5DF7D5C3E96A10&rd=1&h=jJoe3xaYbEA2Pf1AalRFNK3chRvvpRuGTwW-CjE3a5Q&v=1&r=https://phys.org/news/2018-07-titanium-dioxide-nanoscale-sensor-mechanical.html&p=DevEx.LB.1,5050.1]
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2018-11-07 - 2018-11-08
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[url: http://powermems2018.org/]
2018-12-04 - 2018-12-07
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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>
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<dt style="font-weight:bold; margin-top: 0.5ex"><span style="margin:1px; float:right"><a href="https://www.bing.com/cr?IG=38A34C7985974DDF9F74BEA5B12E8659&CID=3AE54F5D2ED76556161843622FBB643B&rd=1&h=7XmqVNEcgJ3YXk0QRUrnJfTXQ9arTvk76UKhoiYKJyQ&v=1&r=https://phys.org/news/2018-08-microscale-superlubricity-pave-future-electromechanical.html&p=DevEx.LB.1,5030.1" target="_new"><img src="https://www.bing.com/th?id=ON.8B9ED6A59132A877F0B89CEF1BDEB181&pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.bing.com/cr?IG=38A34C7985974DDF9F74BEA5B12E8659&CID=3AE54F5D2ED76556161843622FBB643B&rd=1&h=7XmqVNEcgJ3YXk0QRUrnJfTXQ9arTvk76UKhoiYKJyQ&v=1&r=https://phys.org/news/2018-08-microscale-superlubricity-pave-future-electromechanic
al.html&p=DevEx.LB.1,5030.1" target="_new" title="https://www.bing.com/cr?IG=38A34C7985974DDF9F74BEA5B12E8659&CID=3AE54F5D2ED76556161843622FBB643B&rd=1&h=7XmqVNEcgJ3YXk0QRUrn
JfTXQ9arTvk76UKhoiYKJyQ&v=1&r=https://phys.org/news/2018-08-microscale-superlubricity-pave-future-electromechanical.html&p=DevEx.LB.1,5030.1">Microscale superlubricity could pave way for future improved electromechanical devices</a>
</dt>
<dd style="margin-bottom:0.5ex">Lubricity measures the reduction in mechanical friction and wear by a lubricant. These are the main causes of component failure and energy loss in mechanical and electromechanical systems. For example, one-third of the fuel-based energy in vehicles is ...<br /><div style="font-style:italic; font-size:smaller">Phys.org: 2018-08-01 - 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.bing.com/cr?IG=3B237E63FC62404FBEAFB80CBDB88AF1&CID=23068702227D6B850DC78B3D23116A6C&rd=1&h=BPPPW2v7lZmYzqfK1WKWBAFbM-QSR0_ChqtiyLvi2hw&v=1&r=https://www.nanowerk.com/nanotechnology-news2/newsid=50821.php&p=DevEx.LB.1,5034.1" target="_new"><img src="https://www.bing.com/th?id=ON.26B58AF2B07D429B72BE2B66DCA47C5E&pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.bing.com/cr?IG=3B237E63FC62404FBEAFB80CBDB88AF1&CID=23068702227D6B850DC78B3D23116A6C&rd=1&h=BPPPW2v7lZmYzqfK1WKWBAFbM-QSR0_ChqtiyLvi2hw&v=1&r=https://www.nanowerk.com/nanotechnology-news2/newsid=50821.php&p=DevEx.LB.1,5034.1" target="_new" title="ht
tps://www.bing.com/cr?IG=3B237E63FC62404FBEAFB80CBDB88AF1&CID=23068702227D6B850DC78B3D23116A6C&rd=1&h=BPPPW2v7lZmYzqfK1WKWBAFbM-QSR0_ChqtiyLvi2hw&v=1&r=https://www.nanowe
rk.com/nanotechnology-news2/newsid=50821.php&p=DevEx.LB.1,5034.1">Integrated sensor could monitor brain aneurysm treatment</a>
</dt>
<dd style="margin-bottom:0.5ex">Nanostructured Flow-Diverter System for Quantification of Intra-aneurysmal Hemodynamics") and was supported by multiple grants from Georgia Tech’s Institute for Electronics and Nanotechnology, the University of Pittsburgh and the Korea Institute of ...<br /><div style="font-style:italic; font-size:smaller">Nanowerk: 2018-08-02 - MEMS technology</div>
</dd>
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</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.bing.com/cr?IG=D4ECD92A60144293AD04FE2BF0E890C1&CID=1FD2B6F91CF266ED3CF3BAC61D9E6713&rd=1&h=6h49G9bQ6HnvxpnJldi5SwlSdVHIgP7kFabzGvSPi_s&v=1&r=https://www.technologyreview.com/s/611725/darpa-has-an-ambitious-15-billion-plan-to-reinvent-electronics/&p=DevEx.LB.1,5042.1" target="_new" title="https://www.bing.com/cr?IG=D4ECD92A60144293AD04FE2BF0E890C1&CID=1FD2B6F91CF266ED3CF3BAC61D9E6713&rd=1&h=6h49G9bQ6HnvxpnJldi5SwlSdVHIgP7kFabzGvSPi_s&v=1&r=https://www.technologyreview.com/s/611725/darpa-has-an-ambitious-15-billion-plan-to-reinvent-electronics/&p=DevEx.LB.1,5042.1">DARPA has an ambitious $1.5 billion plan to reinvent electronics</a>
</dt>
<dd style="margin-bottom:0.5ex">The US military agency is worried the country could lose its edge in semiconductor chips with the end of Moore’s Law. Last year, the Defense Advanced Research Projects Agency (DARPA), which funds a range of blue-sky research efforts relevant to the US ...<br /><div style="font-style:italic; font-size:smaller">MIT Technology Review: 2018-07-30 - MEMS business</div>
</dd>
<div style="clear:right"></div>
<dt style="font-weight:bold; margin-top: 0.5ex"><a href="https://www.bing.com/cr?IG=AFBDF504B8D642E8B14A456EFF09558C&CID=2908FB63A68C68941BC0F75CA7E069E4&rd=1&h=eBiYMThegA4yMwAlWJx6Y8LpPnA-_qanUMHRGtcZcZQ&v=1&r=https://www.manufacturingtomorrow.com/news/2018/08/01/new-emulsion-stabilizer-for-droplet-microfluidics-prevents-small-molecule-leakage/11920/&p=DevEx.LB.1,5044.1" target="_new" title="https://www.bing.com/cr?IG=AFBDF504B8D642E8B14A456EFF09558C&CID=2908FB63A68C68941BC0F75CA7E069E4&rd=1&h=eBiYMThegA4yMwAlWJx6Y8LpPnA-_qanUMHRGtcZcZQ&v=1&r=https://www.manufacturingtomorrow.com/news/2018/08/01/new-emulsion-stabilizer-for-droplet-microfluidics-prevents-small-molecule-leakage/11920/&p=DevEx.LB.1,5044.1">New emulsion stabilizer for droplet mi
crofluidics prevents small molecule leakage</a>
</dt>
<dd style="margin-bottom:0.5ex">Dolomite Microfluidics, part of the Blacktrace Group, is delighted to launch its new Pickering emulsion stabilizer Fluoro-Phase, a fluorinated continuous phase that has been specially formulated to stabilize aqueous droplets in microfluidic systems.<br /><div style="font-style:italic; font-size:smaller">Manufacturing: 2018-08-01 - 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.bing.com/cr?IG=6C71DD2D961B415BB8CC4D2ECC00AACE&CID=1DF4FBEAC2856B011B5DF7D5C3E96A10&rd=1&h=CINYjGw0scmUVTZ2fgOdp7J_PMaq6lTMjO6uAfPOpXU&v=1&r=https://www.sciencedaily.com/releases/2018/08/180801160027.htm&p=DevEx.LB.1,5034.1" target="_new"><img src="https://www.bing.com/th?id=ON.26507CDBD11FE3A69C9B672FF1E4E9FB&pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.bing.com/cr?IG=6C71DD2D961B415BB8CC4D2ECC00AACE&CID=1DF4FBEAC2856B011B5DF7D5C3E96A10&rd=1&h=CINYjGw0scmUVTZ2fgOdp7J_PMaq6lTMjO6uAfPOpXU&v=1&r=https://www.sciencedaily.com/releases/2018/08/180801160027.htm&p=DevEx.LB.1,5034.1" target="_new" title="ht
tps://www.bing.com/cr?IG=6C71DD2D961B415BB8CC4D2ECC00AACE&CID=1DF4FBEAC2856B011B5DF7D5C3E96A10&rd=1&h=CINYjGw0scmUVTZ2fgOdp7J_PMaq6lTMjO6uAfPOpXU&v=1&r=https://www.scienc
edaily.com/releases/2018/08/180801160027.htm&p=DevEx.LB.1,5034.1">Advanced microscopy technique reveals new aspects of water at the nanoscale level</a>
</dt>
<dd style="margin-bottom:0.5ex">A new microscopy technique allows researchers to visualize liquids at the nanoscale level -- about 10 times more resolution than with traditional transmission electron microscopy -- for the first time. By trapping minute amounts of liquid between two two ...<br /><div style="font-style:italic; font-size:smaller">Science Daily: 2018-08-01 - 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.bing.com/cr?IG=6C71DD2D961B415BB8CC4D2ECC00AACE&CID=1DF4FBEAC2856B011B5DF7D5C3E96A10&rd=1&h=IRZHzruoCAfWJbPIjB33uubJVaq9jsMNutvK89x7cvo&v=1&r=https://www.networkworld.com/article/3293925/data-center/computing-should-be-based-on-light-not-electricity-scientists-say.html&p=DevEx.LB.1,5040.1" target="_new"><img src="https://www.bing.com/th?id=ON.98F2DF06222F113F9F09CB30AB386451&pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.bing.com/cr?IG=6C71DD2D961B415BB8CC4D2ECC00AACE&CID=1DF4FBEAC2856B011B5DF7D5C3E96A10&rd=1&h=IRZHzruoCAfWJbPIjB33uubJVaq9jsMNutvK89x7cvo&v=1&r=https://www.networkworld.com/article/3293925/d
ata-center/computing-should-be-based-on-light-not-electricity-scientists-say.html&p=DevEx.LB.1,5040.1" target="_new" title="https://www.bing.com/cr?IG=6C71DD2D961B415BB8CC4D2ECC00AACE&am
p;CID=1DF4FBEAC2856B011B5DF7D5C3E96A10&rd=1&h=IRZHzruoCAfWJbPIjB33uubJVaq9jsMNutvK89x7cvo&v=1&r=https://www.networkworld.com/article/3293925/data-center/computing-should-be-based-on-light-not-electricity-scientists-say.html&p=DevEx.LB.1,5040.1">Computing should be based on light, not electricity, scientists say</a>
</dt>
<dd style="margin-bottom:0.5ex">“There hasn't been a controlled method for selectively sending light down along nanoscale wires,” says James Cahoon, a professor in the College of Arts and Sciences. “Optical technology has either used much larger structures or wasted a lot of light ...<br /><div style="font-style:italic; font-size:smaller">Network World: 2018-08-02 - 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.bing.com/cr?IG=6C71DD2D961B415BB8CC4D2ECC00AACE&CID=1DF4FBEAC2856B011B5DF7D5C3E96A10&rd=1&h=GBnMX0k18jLve-0H_Edn8rtcXrDSG1WXmjGrkXG7ETo&v=1&r=https://phys.org/news/2018-08-nanotube-rebar-graphene-tough.html&p=DevEx.LB.1,5036.1" target="_new"><img src="https://www.bing.com/th?id=ON.4CA8CA0646F192F21F310FBDE86D0C5E&pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.bing.com/cr?IG=6C71DD2D961B415BB8CC4D2ECC00AACE&CID=1DF4FBEAC2856B011B5DF7D5C3E96A10&rd=1&h=GBnMX0k18jLve-0H_Edn8rtcXrDSG1WXmjGrkXG7ETo&v=1&r=https://phys.org/news/2018-08-nanotube-rebar-graphene-tough.html&p=DevEx.LB.1,5036.1" target="_new" title
="https://www.bing.com/cr?IG=6C71DD2D961B415BB8CC4D2ECC00AACE&CID=1DF4FBEAC2856B011B5DF7D5C3E96A10&rd=1&h=GBnMX0k18jLve-0H_Edn8rtcXrDSG1WXmjGrkXG7ETo&v=1&r=https://phys.o
rg/news/2018-08-nanotube-rebar-graphene-tough.html&p=DevEx.LB.1,5036.1">Nanotube 'rebar' makes graphene twice as tough</a>
</dt>
<dd style="margin-bottom:0.5ex">Rebar graphene is the nanoscale analog of rebar (reinforcement bars) in concrete, in which embedded steel bars enhance the material's strength and durability. Rebar graphene, developed by the Rice lab of chemist James Tour in 2014, uses carbon nanotubes ...<br /><div style="font-style:italic; font-size:smaller">Phys.org: 2018-08-02 - 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.bing.com/cr?IG=6C71DD2D961B415BB8CC4D2ECC00AACE&CID=1DF4FBEAC2856B011B5DF7D5C3E96A10&rd=1&h=jJoe3xaYbEA2Pf1AalRFNK3chRvvpRuGTwW-CjE3a5Q&v=1&r=https://phys.org/news/2018-07-titanium-dioxide-nanoscale-sensor-mechanical.html&p=DevEx.LB.1,5050.1" target="_new"><img src="https://www.bing.com/th?id=ON.1B19F2587C674CC16F1B4BC916626E43&pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.bing.com/cr?IG=6C71DD2D961B415BB8CC4D2ECC00AACE&CID=1DF4FBEAC2856B011B5DF7D5C3E96A10&rd=1&h=jJoe3xaYbEA2Pf1AalRFNK3chRvvpRuGTwW-CjE3a5Q&v=1&r=https://phys.org/news/2018-07-titanium-dioxide-nanoscale-sensor-mechanical.html&p=DevEx.LB
.1,5050.1" target="_new" title="https://www.bing.com/cr?IG=6C71DD2D961B415BB8CC4D2ECC00AACE&CID=1DF4FBEAC2856B011B5DF7D5C3E96A10&rd=1&h=jJoe3xaYbEA2Pf1AalRFNK3chRvvpRuGTwW-CjE3a5
Q&v=1&r=https://phys.org/news/2018-07-titanium-dioxide-nanoscale-sensor-mechanical.html&p=DevEx.LB.1,5050.1">Titanium dioxide as a nanoscale sensor of mechanical stress</a>
</dt>
<dd style="margin-bottom:0.5ex">Scientists from EPFL, Germany and France have revealed a new property of the cheap and abundant material anatase titanium dioxide, which promises applications as a medium for room-temperature nanosensors of mechanical stress with an optical read-out.<br /><div style="font-style:italic; font-size:smaller">Phys.org: 2018-07-31 - Nanotechnology</div>
</dd>
<div style="clear:right"></div>
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<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.ieeenmdc.org/2018" target="_new"><div style="width:600px"><img src="http://www.memsnet.org/events/1583/file/9d5fcb998e58/NMDC_2018_600x125.png" alt="NMDC 2018" 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>
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<dt><b><a href="http://www.ieeenmdc.org/2018">NMDC 2018</a></b></dt>
<dd>2018-10-14 - 2018-10-17<br />Portland, Oregon<br />IEEE 13th Nanotechnology Materials and Devices Conference<br />
</dd></dl>
</td><td><a href="http://www.ieeenmdc.org/2018" target="_new" title="NMDC 2018"><img src="http://www.memsnet.org/events/1583/file/375615b5abc8/NMDB_2018_125x60.png" width="125" height="65" alt="NMDC 2018" class="sponsor" style="padding-left:1ex; border:none"/></a>
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<dt><b><a href="http://ieee-sensors2018.org/">IEEE-SENSORS 2018</a></b></dt>
<dd>2018-10-28 - 2018-10-31<br />New Delhi, India<br />
</dd></dl>
</td><td><a href="http://ieee-sensors2018.org/" target="_new" title="IEEE-SENSORS 2018"><img src="http://www.memsnet.org/events/1582/file/1a7b7068e5e5/ieeesensors2018.jpg" width="125" height="65" alt="IEEE-SENSORS 2018" class="sponsor" style="padding-left:1ex; border:none"/></a>
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<dt><b><a href="http://www.medicalmemsconference.com/index.html">Medical MEMS and Sensors 2018</a></b></dt>
<dd>2018-11-07 - 2018-11-08<br />Santa Clara, CA<br />
</dd></dl>
</td><td><a href="http://www.medicalmemsconference.com/index.html" target="_new" title="Medical MEMS and Sensors 2018"><img src="http://www.memsnet.org/events/1581/file/1a79310d6dd0/medicalmems2018.gif" width="125" height="65" alt="Medical MEMS and Sensors 2018" class="sponsor" style="padding-left:1ex; border:none"/></a>
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<dt><b><a href="http://powermems2018.org/">PowerMEMS 2018</a></b></dt>
<dd>2018-12-04 - 2018-12-07<br />Daytona Beach, FL<br />
</dd></dl>
</td><td><a href="http://powermems2018.org/" target="_new" title="PowerMEMS 2018"><img src="http://www.memsnet.org/events/1580/file/574a6876999a/powermems2018banner.gif" width="125" height="65" alt="PowerMEMS 2018" class="sponsor" style="padding-left:1ex; border:none"/></a>
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