Kannou
Hiroyuki Kannou, Kishiwada JP
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20090078301 | SOLAR CELL MODULE - According to a solar cell module | 03-26-2009 |
Hiroyuki Kannou, Kishiwada City JP
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20080230115 | METHOD FOR FRACTURING SEMICONDUCTOR SUBSTRATE, METHOD FOR FRACTURING SOLAR CELL, AND THE SOLAR CELL - In accordance with the present invention, the dividing grooves | 09-25-2008 |
20080230116 | METHOD FOR MANUFACTURING SOLAR CELL, AND THE SOLAR CELL - In accordance with the present invention, the method for manufacturing the solar cell includes: forming a dividing groove | 09-25-2008 |
20130084671 | METHOD FOR FRACTURING SEMICONDUCTOR SUBSTRATE, METHOD FOR FRACTURING SOLAR CELL, AND THE SOLAR CELL - In accordance with the present invention, the dividing grooves | 04-04-2013 |
Hiroyuki Kannou, Izumisano-City JP
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20080213979 | METHOD AND APPARATUS FOR BREAKING SEMICONDUCTOR SUBSTRATE, METHOD FOR BREAKING SOLAR CELL AND METHOD FOR FABRICATION OF SOLAR CELL MODULE - A method and apparatus for breaking a semiconductor substrate along a predetermined area over which a split groove is formed. The breaking apparatus includes a table for placing a portion of the semiconductor substrate inside the predetermined area and a breaking blade being operable to move downward from a position above the semiconductor substrate placed on the table to thereby compress a portion of the semiconductor substrate outside the predetermined area so that the semiconductor substrate is broken along the split groove. The predetermined area of the semiconductor substrate has at least a neighboring pair of sides intersecting at an angle of less than 180 degrees, and the breaking blade has a projection which, when the semiconductor substrate is broken, compresses a portion of the semiconductor substrate outside the one side so that the one side is compressed ahead of the other side. | 09-04-2008 |
Hiroyuki Kannou, Kishiwada-Shi JP
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20120125396 | SOLAR CELL MODULE - In the solar cell module including a plurality of solar cells interconnected with wiring members, each of the solar cells includes a plurality of front-side finger electrodes that are disposed on a light-receiving surface of the solar cell and connected with tabs and a plurality of rear-side finger electrodes that are disposed on a rear surface of the solar cell and connected with tabs. Rear-side auxiliary electrode sections are arranged in regions, which is wider than the front-side finger electrodes, on the rear surface opposite to regions where the front-side finger electrodes are present. | 05-24-2012 |
Hiroyuki Kannou, Amagasaki City JP
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20120305047 | SOLAR CELL, SOLAR CELL MODULE AND SOLAR CELL SYSTEM - A first electrode disposed on a first surface of the solar cell. A second electrode disposed on a second surface of the solar cell. A connection member electrically couples the first electrode with an electrode of a solar cell connectable to the solar cell. The first electrode includes multiple fine line-shaped electrodes and a first connection electrode configured to connect electrically with the multiple fine line-shaped electrodes. A width of the first connection electrode is smaller than that of the connection member, and the second electrode comprises an electricity collecting electrode and a second connection electrode configured to connect electrically with the electricity collecting electrode. A width of the second connection electrode is the same as or larger than a region width of the first connection electrode. | 12-06-2012 |
Hiroyuki Kannou, Izumisano-Shi, Osaka JP
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20130306128 | SOLAR CELL AND SOLAR CELL MODULE - A solar cell module is provided with improved bonding strength for the wiring material. The solar cell ( | 11-21-2013 |
Hiroyuki Kannou, Osaka JP
Patent application number | Description | Published |
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20130306129 | SOLAR CELL AND SOLAR CELL MODULE - The solar cell ( | 11-21-2013 |
20140305485 | SOLAR CELL MODULE FOR IN-VEHICLE USE - A solar cell module for in-vehicle use includes a first terminal, a second terminal, solar cell units, and a diode. Solar cell units are electrically connected in parallel between the first terminal and the second terminal and each includes solar cells electrically connected in series. A diode is electrically connected between the first terminal and the second terminal in parallel with the solar cell units, and configured to allow a current to substantially flow therethrough when a reverse bias voltage of the solar cell units exceeds a predetermined voltage value. | 10-16-2014 |