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May 10, 2016

2016 Sensors Expo & Conference to Feature Industry Pioneers as Keynote Speakers

Posted by in categories: electronics, futurism

For all the sensor enthusiists and hobbists out there; here is a conference just for you.


/ EINPresswire.com / — NEWTON, MA — (Marketwired) — 05/10/16 — The nation’s leading event focusing exclusively on sensors and sensor-integrated systems, Sensors Expo & Conference (#Sensors16) today unveiled the two industry heavyweights who will keynote the 2016 event. Dr. Ken Gabriel, widely regarded as the founder of the Microelectromechanical Systems (MEMS) industry, will kick off the event on Wednesday, June 22nd; Ray Zinn, author of “Tough Things First” and Silicon Valley’s longest serving CEO, will give his keynote address on Thursday, June 23rd. As the industry’s premier event, the 2016 Sensors Expo & Conference will bring together the foremost thought leaders and innovators to discuss the latest developments in sensing technologies and outline opportunities for the future. To learn more or to register, please visit sensorsexpo.com.

Keynote speaker: Dr. Ken Gabriel A veteran technologist with a distinguished track record of success across the public and private sectors, Dr. Ken Gabriel is credited with creating the MEMS industry through his role as co-founder of Akustica, a fabless semiconductor company that commercialized MEMS audio devices and sensors. In addition, Gabriel currently serves as Deputy Director of the Advanced Technology and Projects (ATAP) Group at Google and is the CEO of Draper Laboratory. He has also held the role of Deputy Director, and then Acting Director, of the Defense Advanced Research Projects Agency (DARPA) in the Department of Defense where he led an agency with an annual budget of $3 billion that is charged with managing the Department’s portfolio of its most cutting edge projects to both create and avoid technology surprise.

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May 10, 2016

Researchers Find Unexpected Magnetic Effect

Posted by in categories: computing, electronics, particle physics, quantum physics

I reported on this finding which the National Labs in Oak Ridge TN published yesterday. This is MIT’s own report on the research and discovery of new material called bismuth selenide (Bi2Se3) with an ultrathin layer of a magnetic material, europium sulfide (EuS). I know that is a mouth full. However, the end result will be that it could lead to a new generation of electronics, spintronics, or quantum computing devices. Definitely a big move forward in bridging QC into all things that use daily.


A new and unexpected magnetic effect has taken researchers by surprise, and could open up a new pathway to advanced electronic devices and even robust quantum computer architecture.

The finding is based on a family of materials called topological insulators (TIs) that has drawn much interest in recent years. The novel electronic properties of TIs might ultimately lead to new generations of electronic, spintronic, or quantum computing devices. The materials behave like ordinary insulators throughout their interiors, blocking electrons from flowing, but their outermost surfaces are nearly perfect conductors, allowing electrons to move freely. The confinement of electrons to this vanishingly thin surface makes then behave in unique ways.

But harnessing the materials’ promise still faces numerous obstacles, one of which is to find a way of combining a TI with a material that has controllable magnetic properties. Now, researchers at MIT and elsewhere say they have found a way to overcome that hurdle.

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May 10, 2016

US investigates security of mobile devices

Posted by in categories: electronics, mobile phones, security

Not saying that the whole Apple situation cause this; it just odd timing.


The Federal Communications Commission and Federal Trade Commission have asked mobile phone carriers and manufacturers to explain how they release security updates amid mounting concerns over security vulnerabilities, the U.S. agencies said on Monday.

The agencies have written to Apple, AT&T and Alphabet, among others, in order “to better understand, and ultimately to improve, the security of mobile devices,” the FCC said.

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May 9, 2016

Samsung’s Quantum Dot TV Tech to Find Medical Applications

Posted by in categories: bioengineering, chemistry, electronics, food, nanotechnology, quantum physics

Samsung get into the cancer treatment space with their own Q-Dot technology? Another reason for the FDA to show up in tech’s backyard; lookout for all those future federal and state regs & compliance training that will be coming that eats up 20 hours each month of your scientists and engineering talent’s time.


For a lot of users, Samsung might be known best for their smartphones and other mobile devices, but the company is so much more than that. Many of you reading this might have one of Samsung’s Super HD TV sets, a curved Samsung TV or some other model of theirs. Next to smartphones one of their more popular consumer electronics is of course of TVs, and with the advent of new technology such as Quantum Dot, Samsung is getting even better at producing a great image. One area that you might expect to find this Quantum Dot technology being used is for medical uses, but that’s just what researchers have been exploring recently.

Explaining a Quantum Dot can become quite tricky, but to cut a long story short, they are semiconductors that are so small they register at the nanoscale side of things. In terms of Quantum Dots used in television displays, it’s their ability to precisely tune to a specific and exact part of the color spectrum that makes them so attractive, not to mention their much lower power draw. Now, Kim Sung-jee, a professor of the Chemistry department at Pohang University of Science and Technology (POSTECH), has said that “when combining protein which clings to cancer cells and quantum dots, it can be used to seek out cancer cells in the body”. It’s reasoned that the potential for these Quantum Dots to be so precise in terms of color reproduction can help physicians track down certain cancer cells.

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May 8, 2016

General atomics railgun has successful tests which will lead to army truck based railgun system

Posted by in categories: electronics, transportation

https://youtube.com/watch?v=M3C6lrTkBXU

General Atomics Electromagnetic Systems (GA-EMS) officials demonstrated its Blitzer electromagnetic railgun system at the U.S. Army’s Fires Center of Excellence annual Maneuver and Fires Integration Experiment (MFIX)last month at Ft. Sill in Lawton, Oklahoma.

There were eleven firings of the Blitzer railgun during the MFIX event, all at a target with a range that was greater than previous Blitzer firings. At the end of MFIX, GA-EMS’ Blitzer railgun system will be transported back to Dugway Proving Ground in Utah for more testing later this year.

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May 7, 2016

3D printing industry to triple in four years to $21B

Posted by in categories: 3D printing, electronics

Impressive; and this is only what we know about the commercial market. Think about what this means to the black market and dark web’s trading sites.

Another question; how good are the forgeries? One that will be even more tricky with 3D. How do you know for sure you’re carrying a Hermes or wearing Chanel glasses or not. Not to mention art, etc.


The 3D printing industry is expected to triple its revenue mainly through the consumer electronics and automotive industries, each of which will contribute 20% of total revenue.

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May 7, 2016

Google is quietly making progress on one of its most jaw-dropping tech projects

Posted by in categories: computing, electronics

Google’s Project Soli was one of the highlights of the company’s developer conference last year, but there’s been little news about it since then.

The technology uses special radar-sensors packed in a tiny chip to detect a person’s physical movements (such as rubbing two fingers together), letting a person do things like turn the volume up on a radio without actual touching anything.

The recent news that Regina Dugan, the head of the Advanced Technology and Projects lab at Google that oversaw Soli, jumped ship to go work at rival Facebook, did not seem like a good sign for the future of Soli. And with Microsoft’s recent unveiling of similar technology, Google’s impressive product demo last year seemed like it might not make it out of the lab.

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May 5, 2016

Lele flagella motor research develops novel insights in cellular mechanics

Posted by in categories: biotech/medical, electronics, engineering, nanotechnology

Using bacteria to aid in the design of superior biomedical implants capable of resisting colonization by infectious bugs.


Dr. Pushkar Lele, assistant professor in the Artie McFerrin Department of Chemical Engineering at Texas A&M University, is developing novel insights in cellular mechanics with bacteria to aid in the design of superior biomedical implants capable of resisting colonization by infectious bugs. Lele’s group also focuses on unraveling the fundamental principles underlying interactions in biological soft-matter to build bio-nanotechnology-based molecular machines. Lele’s lab currently focuses on a unique electric rotary device found in bacteria — the flagellar motor.

According to Lele, it is well established how motile bacteria employ flagellar motors to swim and respond to chemical stimulation. This allows bacteria to search for nutrients and evade harmful chemicals. However, in his recent work, Lele has now demonstrated that the motor is also sensitive to mechanical stimulation and identified the protein components responsible for the response. Sensing initiates a sensitive control of the assemblies of numerous proteins that combine to form the motor. Control over motor assemblies facilitates fine-tuning of cellular behavior and promotes chances of survival in a variety of environments.

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May 4, 2016

Molecular Scanner

Posted by in categories: electronics, food

This Star Trek-like ‘tricorder’ can help you understand what things are made of.

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May 2, 2016

Quantum sensors for high-precision magnetometry of superconductors

Posted by in categories: electronics, nanotechnology, quantum physics

Quantum Sensors enables precise imaging of magnetic fields of superconductors.


Scientists at the Swiss Nanoscience Institute and the Department of Physics at the University of Basel have developed a new method that has enabled them to image magnetic fields on the nanometer scale at temperatures close to absolute zero for the first time. They used spins in special diamonds as quantum sensors in a new kind of microscope to generate images of magnetic fields in superconductors with unrivaled precision. In this way the researchers were able to perform measurements that permit new insights in solid state physics, as they report in Nature Nanotechnology.

Researchers in the group led by the Georg-H. Endress Professor Patrick Maletinsky have been conducting research into so-called nitrogen-vacancy centers (NV centers) in diamonds for several years in order to use them as high-precision sensors. The NV centers are natural defects in the diamond crystal lattice. The electrons contained in the NVs can be excited and manipulated with light, and react sensitively to electrical and magnetic fields they are exposed to. It is the spin of these electrons that changes depending on the environment and that can be recorded using various measurement methods.

Maletinsky and his team have managed to place single NV spins at the tips of atomic force microscopes to perform nanoscale magnetic field imaging. So far, such analyses have always been conducted at room temperature. However, numerous fields of application require operation at temperatures close to absolute zero. Superconducting materials, for example, only develop their special properties at very low temperatures around −200°C. They then conduct electric currents without loss and can develop exotic magnetic properties with the formation of so-called vortices.

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