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Comparison EcoFlow 160W Portable Solar Panel 160 W vs Leapton LP182x182-M-60-MH 460W 460 W

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EcoFlow 160W Portable Solar Panel 160 W
Leapton LP182x182-M-60-MH 460W 460 W
EcoFlow 160W Portable Solar Panel 160 WLeapton LP182x182-M-60-MH 460W 460 W
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Main
MC4 connector. The case can be used as a support stand. Moisture resistance class IP68. Operating temperature range -20° - 85°.
 
Featuresportablestationary
Typemonocrystallinemonocrystalline
Specs (STC)
Power (Pmax)160 W460 W
Nominal voltage (Vmp)18.2 В35.2 В
Nominal power (Imp)8.8 А13.08 А
Open-circuit voltage (Voc)21.4 В41.8 В
Short circuit current (Isc)9.6 А13.78 А
Efficiency22 %21.25 %
Specs (NOCT)
Power (Pmax)339 W
Rated voltage (Vmp)32.74 V
Rated current (Imp)10.35 А
Open circuit voltage (Voc)39.08 V
Short circuit current (Isc)10.88 А
Efficiency15.66 %
Features
MC4 connector
Folding design
Support foot
Suspension system
WaterproofIP68IP68
Operating temperature-20 °C ~ +85 °C-40 °C ~ +85 °C
General
Number of cells
120 (60х2) /11BB/
Dimensions1570x680x24 mm1134x1909x30 mm
Folded size680x420x24 mm
Weight5 kg23.5 kg
In boxcase
Added to E-Catalognovember 2022november 2022

Features

- Stationary. Panels designed to be permanently installed in a designated place (for example, on the roof of a house or on the outer wall of a balcony in an apartment housing stock). They are larger than portable ones and are not designed to be moved from place to place. As a rule, to ensure maximum efficiency, stationary structures are oriented to the south, with minor deviations in azimuth.

- Portable. Portable power supplies from the energy of the celestial body, which can be easily taken with you and deployed in the field. The portable panels fold or roll into a compact form factor for easy portability, and can be quickly deployed to a sunny spot when needed to help store energy for future use. The most compact solar panels will come in handy for charging mobile gadgets and flashlights on a camping trip, universal models of portable panels can charge more equipment, and the largest “portables” quietly provide electricity to an entire car camping.

Specs (STC)

Standard Test Conditions (STC) are standard test conditions that reflect the operation of a solar panel under ideal conditions. As part of the tests, the weather of a clear sunny day with an air temperature of +25 °C, no wind, solar intensity of 1000 W/m² and an emission spectrum relative to air mass of 1.5 is simulated. The surface of the solar cell must be placed strictly perpendicular to the rays from the celestial body. Note that in real operation of the solar panel, such conditions are extremely rare. However, in general, the characteristics of the STC allow us to evaluate the "passport" parameters of the energy storage device.

Power (Pmax)

The amount of electricity in watts that a solar panel produces in one hour in tests using the STC method. The panel must provide the declared number of watts during normal operation.

Nominal voltage (Vmp)

The voltage reading on the voltmeter during a solar panel test at the nominal power level according to the STC method. This parameter, Vmp, stands for Voltage at Maximum Power and is measured in volts. It helps determine which type of batteries the panel is designed for — either 12 V or 24V.

Nominal power (Imp)

Ammeter reading during solar panel testing under STC conditions. The value of the rated current Imp (Current at Maximum Power) is measured in amperes.

Open-circuit voltage (Voc)

The voltage generated by the solar battery in idle mode, that is, without connecting the load. Behind the abbreviation Voc stands for Voltage Open Circuit.

Short circuit current (Isc)

The current value under the condition of zero voltage (Short Circuit Current).

Efficiency

Percentage of the maximum solar panel power to the incident radiation power produced. The efficiency parameter allows you to determine how efficiently the panel PV module converts solar energy into direct electric current.

Specs (NOCT)

The characteristics of NOCT (Nominal Operating Cell Temperature) reflect more realistic operating conditions for solar panels. Testing according to this method is carried out at a lighting intensity of 800 W/m², an air temperature of +20 °C and a wind speed of 1 m/s. The solar battery is placed at an angle of 45° relative to the incident light rays with a south orientation. The temperature of the panel surface in this case reaches +40 - 45 °С.
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