FUTURE TECH LIMITED

FUTURE SOLAR,BRIGHT ALL FUTURE

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140W 12V Waterproof Portable Solar Panel Module Monocrystalline Silicon Cell

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Country/Region:china
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140W 12V Waterproof Portable Solar Panel Module Monocrystalline Silicon Cell

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Brand Name :Future Tech
Model Number :FTPET140
Place of Origin :China
MOQ :100pcs
Payment Terms :T/T, Western Union
Material :Monocrystalline silicon cell
Working voltage :18V
Open circuit voltage :21.4V
Maximum working current :5.74A
Working temperature :-20 ℃ ~ + 60 ℃
Weight :3.35kg
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140W 12V Portable Foldable Solar Panel

Voltage 18V
Features Off-Grid
Solar Technology Monocrystalline
Current Type DC
Current Output 10 A or Less
Current Rating 5.51-6 A
Item Width 16.92 in (43 cm)
Item Length Expanded 67.71 in (172 cm) / Folded 14.96 in (38 cm)

Solar Panel
1. Material: Monocrystalline silicon cell;
2. Working voltage: 18V
open circuit voltage: 21.4V
3. Power: 140W;
4. Maximum working current: 5.74A
short circuit current: 6.08A
5. Working temperature: -20 ℃ ~ + 60 ℃;
6. size:
fold: 430X380X70mm
unfold: 1720X430X10mm;
7. Weight : 3.35KG
8. Connector: Standard MC4 Connector
9.Waterproof Level: IP65

Feature:
a.High-efficiency:Select high-efficiency monocrystalline silicon solar cells, the power generation efficiency is 1.2 times higher than that of conventional polycrystalline.
b. Advanced technology: Using the second-generation component packaging process, it is thinner, lighter, softer and has a longer life.
c. Waterproof: The surface is made of PET material, which is treated with special technology to make it more wear-resistant and improve the absorption efficiency of sunlight.
d. Safety: It has high light transmittance, is safe and reliable, and has no danger of burning or explosion.
e. Easy carrying: Portable folding bag design, with controller and battery, suitable for outdoor scenes such as RV, household, camping, yacht, etc.

140W 12V Waterproof Portable Solar Panel Module Monocrystalline Silicon Cell

140W 12V Waterproof Portable Solar Panel Module Monocrystalline Silicon Cell

140W 12V Waterproof Portable Solar Panel Module Monocrystalline Silicon Cell

140W 12V Waterproof Portable Solar Panel Module Monocrystalline Silicon Cell

140W 12V Waterproof Portable Solar Panel Module Monocrystalline Silicon Cell

140W 12V Waterproof Portable Solar Panel Module Monocrystalline Silicon Cell

140W 12V Waterproof Portable Solar Panel Module Monocrystalline Silicon Cell

How portable solar panels work?

Unlike solar panels you might place on your roof, which are set in a fixed rigid frame and sealed under glass, typical portable solar panels are usually wrapped in a protective sleeve made of mesh fabric or plastic. Small, cheap (under $50) panels will produce 5 to 50 watts of power, while larger ones can produce 300 watts or more—the same as regular rooftop solar panels. Smaller panels are typically monolithic silicon solar cells, while larger panels may have two or three panels in a foldable version.

These panels feature a simple jack or set of jacks that output power to a variety of devices. You may find a DC output jack and a USB port, allowing users to charge their phone or laptop directly. Most often, portable solar panels are paired with portable lithium-ion batteries so their energy can be used in any conditions. (You cannot charge the battery while in use, however.) Batteries can have a wider range of output devices, from a standard household 120-volt AC outlet to a DC output jack.

While the output of some larger panels can be equivalent to that of regular rooftop solar panels, portable panels are not meant to replace rooftop solar panels. By design, they lack the structural integrity and voltage regulation of a properly installed rooftop solar system.

Installing portable solar panels, on the other hand, only takes minutes, requires no permits or inspections, and doesn’t have to worry about damaging your roof. All solar photovoltaic (PV) panels are made from crystalline silicon wafers that absorb sunlight. Light (photons) from the sun releases electrons from the silicon material, creating an electric current along the electrical conductors in the cell (hence the name "photovoltaic"). Electrical current flows from the battery in one direction (direct current or direct current), directly into a device that accepts DC power (such as a battery), or indirectly through an inverter to produce alternating current (AC) for most home uses.

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