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Sharp’s thin film product pairs amorphous silicon with a layer of microcrystalline silicon to achieve high stability and performance. Produced with less than one percent of the silicon used in crystalline solar cells, thin film products offer high performance with less semiconductor material. With a low temperature coefficient for output power, thin film generates greater energy than its crystalline silicon counterpart in geographic regions where temperatures are high. In warm climates, this translates into more kilowatt-hours per kilowatt.
| Maximum Power | 121 W |
| Open Circuit Voltage | 238 |
| Short Circuit Current | 0.830 |
| Voltage at Maximum Power | 180 V |
| Current at Maximum Power | 0.673 A |
| Module Efficiency | 8.5 % |
STC: Irradiance of 1,000 W/m2 with an AM 1.5 spectrum at a cell temperature of 25ºC
| Open Circuit Voltage | -0.3 %/°C |
| Short Circuit Current | +0.07 %/°C |
| Power | -0.24 %/°C |
| Cell | Tandern architecture of amorphous and microcrystalline silicon |
| Cell Circuit | 45 cells in series by 6 in parallel per quadrant: 4 quadrants in series (1080 total cells) |
| Dimensions | 39.7" x 55.5" x 1.8" (1009mm x 1409mm x 46mm) |
| Weight | 42 lbs (19.05 Kg) |
| Connection Type | Cable with MC-4 connector |
| Bypass diodes | 4 (one per quadrant) |
| Fire Rating | Class C |
| Maximum System Voltage | 600 VDC |
| Maximum Mechanical Load | 1,600 Pa |
| Series Fuse Rating | 2 A |
| Operating Temperature | -40 to +90°C |
| Installation Orientation | Portrait |
Solar Panel Shipping Cost
| # Panels: | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 |
| Shipping Cost: | $175 | $185 | $195 | $195 | $200 | $200 | $200 | $210 | $220 |
| # Panels: | 11 | 12 | 13 | 14 | 15 | 16 | 17 | 18 | 19 | 20 |
| Shipping Cost: | $230 | $240 | $240 | $250 | $260 | $270 | $280 | $280 | $290 | $290 |