Kitronik

Kitronik

Kitronik is a leading provider of electronic kits and accessories for education, hobbyists, and makers. With a focus on innovation and creativity, Kitronik offers a wide range of products including micro:bit accessories, robotics kits, sensors, and LEDs. Their products are designed to be easy to use, affordable, and customizable, making them suitable for learners of all ages and skill levels. Kitronik's educational resources include free tutorials, lesson plans, and project ideas that encourage hands-on learning and inspire creativity. With a commitment to quality and customer satisfaction, Kitronik ensures that their products undergo rigorous testing and adhere to industry standards. With a global reach and a strong community of users, Kitronik continues to empower learners and makers with the tools and resources they need to explore the world of electronics and unleash their creativity.

Solar Cells

Results:
3
Series
Current @ Pmpp
Voltage @ Pmpp
Operating Temperature
Size / Dimension
Type
Power (Watts) - Max
Ingress Protection
Voltage - Rated
Accuracy
Package / Case
Feedback Type
Motor Type
Features
Load Force (Dynamic)
Stroke Length
Speed
Construction
Termination Style
Approval Agency
Current - Short Circuit (Isc)
Voltage - Open Circuit
Load Force (Static)
Duty Cycle
Acceleration
Gear Reduction Ratio
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ImageProduct DetailPriceAvailabilityECAD ModelSeriesOperating TemperatureCurrent @ PmppVoltage @ PmppTypePackage / CaseSize / DimensionVoltage - Open CircuitCurrent - Short Circuit (Isc)Power (Watts) - Max
3604
PHOTOVOLTAIC SOLAR CELL 3V 100MA
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Quantity
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PCB Symbol, Footprint & 3D Model
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-
100 mA
3 V
Photovoltaic
Cells
2.362" L x 1.890" W x 0.118" H (60.00mm x 48.00mm x 3.00mm)
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-
3605
PHOTOVOLTAIC SOLAR CELL 1W 5V
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
200 mA
5 V
Photovoltaic
Cells
4.331" L x 4.331" W x 0.118" H (110.00mm x 110.00mm x 3.00mm)
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1 W
3603
PHOTOVOLTAIC SOLAR CELL 3V 50MA
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Quantity
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PCB Symbol, Footprint & 3D Model
Glideforce
-25°C ~ 65°C
Linear Actuator

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.