Distribution facilities provider ProLogis Renewable Energy has announced an 11.1 MW rooftop solar project in the region of Southern California.
In 2009, students in a mechanical engineering class of James Durand at the University of Virginia converted a Honda Accord to run on electrical energy.
Creighton University, in an effort to harness the wind and sunlight of Nebraska, is assembling a large-scale solar panels array and wind turbines throughout its campus locations.
High-efficiency Copper Indium Gallium diSelenide (CIGS) solar material manufacturer Global Solar Energy has announced that one of its technologies is powering a large CIGS rooftop installation. This system currently generating solar energy of 820 kW for a manufacturer of plastics in Orgiano, Italy was facilitated by applied solutions and solar modules producer Yohkon Energía SL as well as by photovoltaic (PV) specialist CDM Italy.
Clean energy development and installation company Sound Solar Systems, LLC partners with clean energy projects investor Altus Power Management, LLC to finish installing a solar array on a commercial building rooftop of Royal Flush in Bridgeport, Connecticut. The Connecticut Clean Energy Fund (CCEF) provided funds for the project that is likely to reduce the electrical energy of the client by around 35%.
On April 28, Dr. Stephanie A. Burns, Dow Corning chairman, president and CEO, delivered keynote remarks during a Brookings Institution briefing titled, “Scaling up Solar: how far can we go?” in Washington, D.C. Burns was invited in recognition of the leadership role Dow Corning has played in the solar energy sector.
Dow Corning executive vice president and general manager of Core Products, Bob Hansen, was recently in Washington, D.C. during the unveiling of Senator Kerry and Lieberman’s American Power Act, representing the company’s support for the elements of the proposal which encourage further development of domestic renewable energy manufacturing and implementation.
A group of researchers of the University of Cádiz has designed a new mapping system for the study of photovoltaic surfaces. The system can detect, at the micrometric level, all the defects existing in a solar panel.
C3Nano Inc., a team from Stanford University, was named the top winner of the MIT Clean Energy Prize for their revolutionary design that will increase the efficiency of solar photovoltaic panels. The national competition was founded by MIT, the U.S. Department of Energy and NSTAR to accelerate the pace of clean energy entrepreneurship.
The AURORA PVI-6000-OUTD-US inverter manufactured by Power-One has the input parameters such as a nominal DC power of 6.18 kW, a max recommended DC power of 6.4 kW, an operating MPPT input voltage range of 90 to 580 V, a max input voltage of 600 V, and a nominal activation voltage of 200 V.
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