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posted by Fnord666 on Thursday December 21 2017, @12:13AM   Printer-friendly
from the renewable-sources-FTW dept.

Submitted via IRC for AndyTheAbsurd

Recently, Solartech Universal made headlines as part of solar machine maker Meyer Burger's heterojunction (HJT) solar cell and SmartWire (SWT) hardware announcements. Meyer Burger announced their new hardware manufacturing lines using a Solartech Universal solar panel. The 'champion module' hit 334.9W – a 20.5% solar panel efficiency. The cells used in the panel hit as high as 24.02% – higher than JinkoSolar's 23.45% (albeit with a different cell type).

Solartech Universal says this panel should be available in 2018 as the company works through the challenges of integrating the new manufacturing hardware into the current line (see Solartech Universal panel assembly video at end of article). The specification page for the panel family is available on the website – it peaks at 330W models, and notes being available soon.

[...] Meyer Burger calls heterojunction 'the Solar Cell of the Future (pdf).' An actual heterojunction solar cell just hit 26.6% efficiency in November. Again, well beyond, Jinko's 23.45%. This greater efficiency is partially because of additional layers of solar material – amorphous silicon – that grabs a different wavelength of light to make electricity.

Source: https://electrek.co/2017/12/19/florida-company-solar-cell-of-the-future-500w-heterojunction/


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  • (Score: 4, Insightful) by frojack on Thursday December 21 2017, @12:42AM (5 children)

    by frojack (1554) on Thursday December 21 2017, @12:42AM (#612644) Journal

    I would bet most solar efficiency is quoted at mid-day sun with a perfectly aligned panel.

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  • (Score: 2) by NewNic on Thursday December 21 2017, @12:52AM

    by NewNic (6420) on Thursday December 21 2017, @12:52AM (#612649) Journal

    No, a perfectly-aligned panel receives more sunlight, hence its output is higher.

    If the panel is not optimally aligned, or the time of day means less sunlight, then the input energy is reduced, as is the output electricity. Efficiency doesn't change (much).

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  • (Score: 2) by RS3 on Thursday December 21 2017, @03:03AM (2 children)

    by RS3 (6367) on Thursday December 21 2017, @03:03AM (#612690)

    I've done some PV installs but I forget the details- easy enough to look up. Peak power output spec. is with sun overhead, cool, clear day.

    Yes, you get a bit more output with tracking systems, but there's one huge factor: when the sun is not directly overhead, there is more atmosphere between the sun and the panel. It may not seem significant, but it is because UV has more energy and you get much more energy from the UV component. The more atmosphere the light travels through, the less UV getting to the panel.

    • (Score: 0) by Anonymous Coward on Thursday December 21 2017, @04:23AM (1 child)

      by Anonymous Coward on Thursday December 21 2017, @04:23AM (#612695)

      Not all panels just use UV. But your point remains the same.

      • (Score: 2) by RS3 on Saturday December 23 2017, @04:18AM

        by RS3 (6367) on Saturday December 23 2017, @04:18AM (#613543)

        Not all panels just use UV. But your point remains the same.

        Uh, thank you, I guess. But I never said that any panels "just use UV". Of all the photons coming from the sun, UV photons contain the most energy. In other words, photon-for-photon, a UV photon carries more energy than a visible, or infrared photon. The PV converts the photon energy into electrical energy. The more photon energy, the more electrical energy you get. When the sun is lower in the sky, the light has to travel through more atmosphere and UV is attenuated more than infrared. Infrared carries energy, but also heats the panels, which reduces their efficiency.

  • (Score: 3, Informative) by Phoenix666 on Thursday December 21 2017, @07:10PM

    by Phoenix666 (552) on Thursday December 21 2017, @07:10PM (#612901) Journal

    Yes, but that's OK because the way to figure out how many panels you need is to multiply the rating of the panel by the insolation for your area. Insolation is the average hours/day of optimal sun. In New York City it's 4 hours. So a 300W panel would generate 1.2kwh/day.

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