laboratory

NEW VERSATILE AIM TTI POWERFLEX 750W DC LABORATORY POWER SUPPLY

NEW VERSATILE AIM-TTI POWERFLEX+ 750W DC LABORATORY POWER SUPPLY

The Aim-TTi QPX750SP is the first of a new Bench/System Single Output PowerFlex+ DC Power Supply platform. It provides up to 80V or 50A at a maximum of 750W in a benchtop or rackmount housing. Saelig Company,  Inc. announces the availability of the Aim-TTi QPX750SP 750W Single Output DC Power Supply that can provide voltages between 80V at […]

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5G NB IOT LOW POWER CELLULAR DEVELOPER STARTER KIT

5G NB-IOT LOW-POWER CELLULAR DEVELOPER STARTER KIT

Thales and Qoitech have combined their products into starter kits that offer easy setup for evaluation and prototyping of narrowband IoT (NB-IoT) connectivity and its energy consumption. Thales’ DEVKIT ENS22-E NB-IOT is an easy-to-configure starter kit with an NB-IoT module that supports major operators in Europe and APAC regions where NB-IoT technology has already been well-deployed. This powerful development board

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SCIENTISTS DEVELOP SAFER LEAD BASED PEROVSKITE SOLAR CELL STRUCTURE

SCIENTISTS DEVELOP SAFER LEAD-BASED PEROVSKITE SOLAR CELL STRUCTURE

Researchers at Northern Illinois University and the U.S. Department of Energy’s (DOE) National Renewable Energy Laboratory (NREL) in Golden, Colorado, reported in the journal Nature on a potential breakthrough in the development of hybrid perovskite solar cells. Considered rising stars in the field of solar energy, perovskite solar cells convert light into electricity. They’re potentially cheaper and simpler to produce than

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MIT ENGINEERS BUILD ADVANCED MICROPROCESSOR OUT OF CARBON NANOTUBES

MIT ENGINEERS BUILD ADVANCED MICROPROCESSOR OUT OF CARBON NANOTUBES

New approach harnesses the same fabrication processes used for silicon chips, offers key advance toward next-generation computers. by Rob Matheson | MIT News Office After years of tackling numerous design and manufacturing challenges, MIT researchers have built a modern microprocessor from carbon nanotube transistors, which are widely seen as a faster, greener alternative to their traditional silicon counterparts.

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Researchers Develop new Battery chemistry with 10X More Energy Density over Lithium

Researchers Develop new Battery chemistry with 10X More Energy Density over Lithium

New co-authored paper demonstrates potential ten-fold energy density increase over existing lithium-ion battery technologies. Scientists from Honda Research Institute have collaborated with researchers at California Institute of Technology (Caltech) and NASA’s Jet Propulsion Laboratory to develop a new battery chemistry that enables the use of materials with higher energy density and a more favorable environmental

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