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1366 Technologies's alternatives and competitors

See how 1366 Technologies compares to similar products. 1366 Technologies's top competitors include BT Imaging, SunPower, and NEI Corporation.

BTi aims to improve solar cell efficiency and manufacturing yields by applying luminescence imaging to the manufacturing of silicon wafers and solar cells.On March 3rd,…

1366 Technologies vs. BT Imaging

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  • SunPower Corp. (NASDAQ: SPWR) designs, manufactures, and markets solar electric technology worldwide. SunPower's high-efficiency solar cells and panels generate up to 5…

    1366 Technologies vs. SunPower

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  • NEI Corporation is a Somerset, NJ based company that has received a grant(s) from the Department of Energy's SBIR/STTR program. The abstract(s) for these grant award(s…

    1366 Technologies vs. NEI Corporation

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  • Suniva is and American manufacturer of high-efficiency crystalline silicon photovoltaic (PV) solar cells and high-power solar modules. The company is known for its high…

    1366 Technologies vs. Suniva

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  • Miasole is focused on a continuous high throughput, vacuum deposition process for the production of thin-film copper-indium-gallium-diselenide (CIGS) solar cells. Miaso…

    1366 Technologies vs. MiaSole

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  • Accustrata is a company that received a SBIR Phase IB grant for a project entitled: Real time optical control system for thin film solar cell manufacturing. Their resea…

    1366 Technologies vs. Accustrata

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  • M V Systems is a company that received a SBIR Phase II grant for a project entitled: Fabrication of Low-bandgap Nano-crystalline SiGeC Thin Films Using the Plasma Enhan…

    1366 Technologies vs. M V Systems

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  • Skyline Solar manufactures High Gain Solar (HGS) arrays incorporating industry-proven silicon cells, durable reflector materials and single-axis tracking into a complet…

    1366 Technologies vs. Skyline Solar

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  • Alenas Imaging is a company that received a STTR Phase I grant for a project entitled: Thermoreflectance for Defect Mapping and Process-Control of Solar Cells. Their pr…

    1366 Technologies vs. Alenas Imaging

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  • Ambp Technology Corporation is a company that received a SBIR Phase I grant for a project entitled: Photovoltaic Laser Annealing System. Their project proposes to achie…

    1366 Technologies vs. Ambp Technology Corporation

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  • AOS Solar was started in 2005 to combine the material cost and manufacturing process economics of thin film solar PV with the efficiency and reliability of crystalline …

    1366 Technologies vs. AOS Solar

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  • Telio Solar Technologies, Inc. is a company focusing on development & manufacturing of CIGS Thin Film Solar Cells. The company's goal is to produce the most cost effec…

    1366 Technologies vs. Telio Solar Technologies

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  • Suntech Power has been producing solar cells, modules, and systems since August 2002, and has been profitable since 2003. The company says its solar photovoltaic wafers…

    1366 Technologies vs. Suntech Power

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  • THINKFLEX SOLAR combines the most advantageous characteristic of the two current photovoltaic technologies. The company's modules provide the efficiency of silicon cell…

    1366 Technologies vs. Thinkflex Solar

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GreenStone Technologies is focused on developing next generation of thin film solar photovoltaics using CIGS (Copper indium gallium selenide) nanotechnology. GreenStone also performs custom contract substrate manufacturing.

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Suntech Power has been producing solar cells, modules, and systems since August 2002, and has been profitable since 2003. The company says its solar photovoltaic wafers are thinner, which leads to more efficient solar cells at lower production costs.

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Global Solar Energy, started in 1996, is a producer of thin-film photovoltaic Copper Indium Gallium DiSelenide (CIGS) solar cells.

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Accustrata

Accustrata is a company that received a SBIR Phase IB grant for a project entitled: Real time optical control system for thin film solar cell manufacturing. Their research project relates to a real-time optical control system in the manufacture of next generation thin film solar cells and panels. The proposed system improves thin film solar cell manufacturing by improving the quality of the individual solar cells and panels. It allows manufacturing of more consistent and uniform products resulting in higher solar conversion efficiency and manufacturing yield. The proposed system uses patented miniature fiber optic sensors, installed at many locations in the film deposition chambers. They monitor different spots on the substrate and obtain real time measurements of film properties. The system compares the measured with the targeted values and provides immediate correction, improving film uniformity and narrowing material property distribution. It returns most of the products to their targeted specification, which would otherwise be rejected. This proposal will reduce waste and improve the manufacturing yield and the conversion efficiency of thin film solar cells and panels. It has specific benefits for the large-size solar panels, which are manufactured at higher cost today due to insufficient manufacturing yield. The proposed technology will reduce the time it takes for solar panels to reach grid parity with traditional energy sources. The proposed technology will also facilitate the development of numerous other applications for next generation thin film based products such as photonic crystals, nanotechnology, meta-materials, multi-junction solar cells, printing and counterfeiting control. This award is funded under the American Recovery and Reinvestment Act of 2009 (Public Law 111-5).

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Quadra Power

Quadra Power, established in 2016, is a renewable energy company whose key focus area is solar project construction and development of PV plants, both “on” and “off-grid”. QPI brings an experienced construction management team, with over 200 MW of direct solar power construction projects, together with the business, finance, and engineering experience of its sister company Quadra Solar, which was established in 2007.

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Alenas Imaging

Alenas Imaging is a company that received a STTR Phase I grant for a project entitled: Thermoreflectance for Defect Mapping and Process-Control of Solar Cells. Their project will demonstrate a new method of thermographic imaging to improve the manufacturing yield and energy conversion efficiency of silicon photovoltaic solar cells. Although thermographic imaging is an ideal method for locating the defects and shunts in solar cells which compromise their efficiency, conventional infrared cameras do not have sufficient spatial resolution to be effective as a production tool for NDE (Non-Destructive Evaluation). The proposed technology will produce 100X higher spatial resolution with 1 mK thermal resolution at much lower system cost than infrared cameras. project will demonstrate a new method of thermographic imaging to improve the manufacturing yield and energy conversion efficiency of silicon photovoltaic solar cells. Although thermographic imaging is an ideal method for locating the defects and shunts in solar cells which compromise their efficiency, conventional infrared cameras do not have sufficient spatial resolution to be effective as a production tool for NDE (Non-Destructive Evaluation). The proposed technology will produce 100X higher spatial resolution with 1 mK thermal resolution at much lower system cost than infrared cameras.

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