Zobrazeno 1 - 5
of 5
pro vyhledávání: '"David Fobare"'
Autor:
David Metacarpa, Jennifer Bell, Pradeep Haldar, David Fobare, Mary Ann Curran, Cyril Vallet, Shanika Amarakoon
Publikováno v:
The International Journal of Life Cycle Assessment. 23:851-866
Thin film copper indium gallium (di)selenide (CIGS) photovoltaic (PV) modules show promise for significant growth. The Photovoltaics Manufacturing Consortium (PVMC) is leading research and development of CIGS in New York State. This study presents th
Autor:
Cyril Vallet, Pradeep Haldar, David Metacarpal Jennifer Bell, David Fobare, Shanika Amarakoon
Publikováno v:
2016 IEEE 43rd Photovoltaic Specialists Conference (PVSC).
The US Photovoltaic Manufacturing Consortium (PVMC) maintains a comprehensive thin film roll-to-roll CIGS process and cost model for the manufacture of CIGS solar cells on stainless steel foil and the subsequent production of modules that incorporate
Autor:
Viswanathan Venkateswaran, David Metacarpa, John Wax, John Olenick, Kathy Olenick, David Fobare, Pradeep Haldar, Harry Efstathiadis
Publikováno v:
2014 IEEE 40th Photovoltaic Specialist Conference (PVSC).
Yttria Stabilized Zirconia [YSZ] has a number of qualities that make it attractive as a substrate for fabrication of thin film copper indium gallium diselenide [CIGS] solar cells: these include flexibility, a smooth surface, lack of impurities such a
Autor:
Ramya Chandrasekaran, Chad M. Conroy, Ken Pfeiffer, Doug Brown, David Fobare, John Patrin, Jian-gang Weng, Dave Metacarpa
Publikováno v:
2010 35th IEEE Photovoltaic Specialists Conference.
The highest efficiency copper, indium, gallium and selenium (CIGS) devices have been produced using thermal deposition methods on a variety of substrate materials including glass and stainless steel foils. There are several advantages of thermal depo
Autor:
Jennifer Novak, Jian-gang Wen, Doug Brown, John Patrin, David Fobare, Ken Pfeiffer, Jeffrey Robert Amadon, Dave Metacarpa, Chad M. Conroy
Publikováno v:
2010 35th IEEE Photovoltaic Specialists Conference.
One of the biggest challenges for high volume copper indium gallium (di)Selenide (CIGS) manufacturing is transitioning the R&D/pilot processes to a low cost high volume manufacturing process. The most important parameters in lowering the manufacturin