Adafruit

Adafruit

Adafruit Industries is a renowned open-source hardware company that provides innovative electronics and educational resources to empower makers, inventors, and engineers. Founded in 2005 by Limor Fried, Adafruit has become a prominent figure in the maker community, offering a wide range of products including development boards, sensors, components, and tools. Emphasizing open-source values, Adafruit promotes collaboration and knowledge-sharing through its extensive collection of tutorials, guides, and project ideas. The company's commitment to education is evident through its Circuit Playground platform, which aims to teach electronics in a fun and accessible manner. Adafruit's dedication to diversity and inclusion is reflected in its efforts to support and promote women in STEM fields. With a focus on quality, creativity, and community, Adafruit continues to inspire and enable individuals to explore and create within the realms of electronics and technology.

Solar Cells

Results:
10
Series
Power (Watts) - Max
Current @ Pmpp
Voltage - Open Circuit
Size / Dimension
Voltage @ Pmpp
Package / Case
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Type
Current - Short Circuit (Isc)
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Adafruit
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ImageProduct DetailPriceAvailabilityECAD ModelSeriesTypeSize / DimensionOperating TemperaturePower (Watts) - MaxCurrent @ PmppVoltage @ PmppPackage / CaseVoltage - Open CircuitCurrent - Short Circuit (Isc)
1485
SOLAR CELL FLEX PANEL 6VDC 1W
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
0°C ~ 70°C
1 W
160 mA
6 V
Cell (4)
-
-
5368
5V 1.2W SOLAR PANEL - ETFE - VOL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Monocrystalline
4.449" L x 2.598" W x 0.114" H (113.00mm x 66.00mm x 2.90mm)
-
1.22 W
200 mA
6.07 V
Cells
7.09 V
-
5367
5V 5W SOLAR PANEL - ETFE - VOLTA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Monocrystalline
8.780" L x 5.827" W x 0.138" H (223.00mm x 148.00mm x 3.50mm)
-
5.75 W
940 mA
6.12 V
Cells
7.13 V
-
3809
MONOCRYSTLN SOLAR CELL 1.2W 7.7V
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Monocrystalline
4.449" L x 3.504" W x 0.197" H (113.00mm x 89.00mm x 5.00mm)
-
1.2 W
180 mA
6.5 V
Cells
7.7 V
-
5366
6V 2W SOLAR PANEL - ETFE - VOLTA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Monocrystalline
5.354" L x 4.409" W x 0.118" H (136.00mm x 112.00mm x 3.00mm)
-
2.37 W
330 mA
7.28 V
Cells
8.51 V
-
500
MONOCRYSTALIN SOLAR CELL 3.6W 7V
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Monocrystalline
-
-
3.6 W
615 mA
6 V
Cells
7 V
-
1525
MONOCRYSTALIN SOLAR CELL 5.6W 7V
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Monocrystalline
-
-
5.6 W
930 mA
6 V
Cell (12)
7 V
1 A
200
MONOCRYSTALN SOLAR CELL 2.27W 7V
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Monocrystalline
4.400" L x 5.340" W x 0.380" H (111.86mm x 135.83mm x 9.82mm)
-
2.27 W
330 mA
6 V
-
7 V
-
5369
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Quantity
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PCB Symbol, Footprint & 3D Model
1525
MONOCRYSTALIN SOLAR CELL 5.6W 7V
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Monocrystalline
-
-
5.6 W
930 mA
6 V
Cell (12)
7 V
1 A

About  Solar Cells

Solar cells are specifically engineered to harness solar energy and convert it into electrical energy through the process of photovoltaic conversion. These cells come in various types, including amorphous, monocrystalline, and photovoltaic cells, each with distinct characteristics. Additionally, they exhibit a range of power outputs and sizes/dimensions. Types of Solar Cells: Amorphous cells: These solar cells are made from non-crystalline silicon or other thin-film materials. They offer flexibility and can be integrated into curved surfaces or irregular shapes. Monocrystalline cells: These cells are composed of single-crystal silicon, resulting in high efficiency and uniform appearance. They are widely used in residential and commercial applications. Photovoltaic cells: This term generally refers to solar cells in general, as all solar cells work on the principle of photovoltaic conversion. Power Max: The power output of solar cells is measured in watts (W). The maximum power output varies depending on the specific cell type and technology used. It can range from as low as 7.95µW (microwatts) to as high as 50W (watts). The power output determines the amount of electrical energy the solar cell can produce under optimal conditions. Size/Dimension: Solar cells come in a range of sizes and dimensions, which can impact their physical footprint and suitability for different applications. The size of solar cells is typically described using length (L), width (W), and height (H) measurements. The dimensions can vary significantly, from small cells measuring 0.193" L x 0.154" W x 0.061" H (4.90mm x 3.90mm x 1.55mm) to larger panels measuring 29.300" L x 27.800" W x 1.417" H (744.00mm x 706.00mm x 36.00mm). In summary, solar cells are designed to convert solar energy into electrical energy through photovoltaic conversion. They come in different types, including amorphous, monocrystalline, and photovoltaic cells. The power output of solar cells can range from 7.95µW to 50W, and their sizes/dimensions vary from small compact cells to larger panels suitable for various applications. These diverse options allow for flexibility and adaptability when integrating solar cells into different solar power systems.