FUTURE TECH LIMITED

FUTURE SOLAR,BRIGHT ALL FUTURE

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100W Off Grid Foldable Solar Charger Portable Solar Panel Kit For Camping

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FUTURE TECH LIMITED
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City:shenzhen
Country/Region:china
Contact Person:MsJenny Xing
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100W Off Grid Foldable Solar Charger Portable Solar Panel Kit For Camping

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Brand Name :Future Tech
Model Number :FTPET100
Place of Origin :China
MOQ :100pcs
Price :Negotiable
Payment Terms :T/T, Western Union
Max. Power(PM) :100W
Open-Circuit Voltage(VOC) :22.85V
Short-Circuit Current(ISC) :5.82A
Max. Power Voltage(VMP) :18.36V
Max. Power Current(IMP) :5.45A
Max. System Voltage :1000V
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100W Off-Grid Foldable Solar Panel

Cell Type Shingled Module Grade A Monocrystalline Cell
Max. Power(PM) 100W
Open-Circuit Voltage(VOC) 22.85V
Short-Circuit Current(ISC) 5.82A
Max. Power Voltage(VMP) 18.36V
Max. Power Current(IMP) 5.45A
Waterproof rating IP65
Operating Temperature Range -20°C ~ 65°C

High conversion efficiency is a highlight of this 100W Protabel solar panel kit. Its conversion efficiency of up to 23.5% ensures that it can generate more energy under strong sunlight, and is 1/3 lighter than solar silicon panels of the same power. This makes it superior in activities such as outdoor living and camping, providing users with a high-performance solar charging solution. Not only that, it performs better under strong light conditions than traditional panels, providing users with a more reliable source of energy.

Specially made for solar generators, this 100W foldable solar panel takes into account the diverse needs of users. Comes with different size connectors including MC-4 to 5.5x2.5mm cable, MC-4 to Anderson cable, DC 8mm adapter, DC 3.5x1.35mm cable, DC 5.5x2.1mm cable, compatible with most portable power stations on the market (MC-4 to Anderson/MC-4 to DC) compatible. This flexibility makes it suitable for various solar power generation scenarios, ensuring that users can connect to various devices conveniently and quickly.

In addition, the durability and wide application of solar panels are also important factors that attract users. Made of durable waterproof oxford cloth and high-quality PET film, which not only enhances battery performance and extends service life, it is also dustproof and heat-resistant. This makes it very suitable for all kinds of outdoor activities, especially camping and other scenes that need to be used in complex environments.

The foldability and portability of the design are another important reason for users to choose this 100W solar panel. Designed for portability and convenience, it comes with a comfortable carry handle and stand design, and when unfolded, the two built-in stands make it easy to place on any flat surface. After folding, it is as compact as a briefcase, easy to carry and does not take up much space, allowing users to conveniently enjoy the convenience of solar charging in outdoor life.

100W Off Grid Foldable Solar Charger Portable Solar Panel Kit For Camping

100W Off Grid Foldable Solar Charger Portable Solar Panel Kit For Camping

100W Off Grid Foldable Solar Charger Portable Solar Panel Kit For Camping

100W Off Grid Foldable Solar Charger Portable Solar Panel Kit For Camping

100W Off Grid Foldable Solar Charger Portable Solar Panel Kit For Camping

Portable solar panels work based on the photovoltaic effect, a physical phenomenon that converts sunlight into electrical energy. Here are the basic steps of how solar panels work:

Absorbing Sunlight: The surface of a solar panel is covered with photovoltaic cells made of semiconductor materials. Typical photovoltaic cells use silicon as the semiconductor material. When sunlight strikes a solar panel, photons interact with silicon atoms, causing electrons to be released from the silicon atoms.

Release of electrons: The energy of solar photons is large enough to excite electrons in silicon, causing them to jump to a high energy level. Such high-energy electrons are free electrons.

Charge Separation: Photovoltaic cells typically contain two layers of semiconductors, one layer of positively charged "P-type" silicon and the other layer of negatively charged "N-type" silicon. When a photon hits a photovoltaic cell, it causes free electrons to move from the P-type silicon to the N-type silicon, creating an electric current.

Current Generation: The movement of electrons from P-type silicon to N-type silicon creates an electric current. This is the DC current produced by the solar panel.

Conductive Threads: The generated DC current is transmitted through conductive threads connected to the solar panels to devices that require power or to storage batteries.

The entire process uses the energy of solar photons to excite electrons in the semiconductor, generating an electric current that can be used to power the device. It is a clean, renewable method of energy conversion because it does not involve the burning of fossil fuels and produces no greenhouse gas emissions.

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