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Comparison Oukitel P2001 Plus vs Aferiy P210

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Oukitel P2001 Plus
Aferiy P210
Oukitel P2001 PlusAferiy P210
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In boxcharging stationcharging station
Rated power2400 W2400 W
Peak power4800 W4800 W
Output waveformsinusoid (PSW)sinusoid (PSW)
UPS function
Switchover time to battery10 ms
Outputs
Sockets (230 V)43
USB-A
2 pcs
18 W
2 pcs
18 W
USB-C
4 pcs
100 W
4 pcs
100 W
Car cigarette lighter
Inputs (station charging)
From solar panels
Input port XT60
Battery and charging time
Battery typeLiFePO4LiFePO4
Battery capacity2048 Wh2048 Wh
Charging cycles35003500
Charging time (socket) 60 min120 min
Charging time (socket + solar panel) 102 min
Charging time (solar panel) 165 min270 min
Charging time (cigarette lighter) 1050 min
Charging power (socket)1800 W1100 W
Charging power (solar panel)500 W500 W
Charging power (cigarette lighter)120 W
General
Smartphone synchronizationBluetooth and WiFi
PSUbuilt into the bodybuilt into the body
Display
Built-in light
Carrying handle
WaterproofIP54
Operating temperature0 °C ~ +40 °C-10 °C ~ +40 °C
Dimensions (LxWxH)399x286x320 mm398x280x315 mm
Weight22 kg22 kg
Warranty3 years7 years
Added to E-Catalogseptember 2024july 2024
Compare Oukitel P2001 Plus and Aferiy P210
Charging stations Oukitel P2001 Plus and Aferiy P210 have similar characteristics, but differ in some key aspects. Both models have a nominal power of 2400 W and a peak output of 4800 W with a sinusoidal output signal. Oukitel P2001 Plus offers 4 outlets at 230 V and 4 at 100-120 V, while Aferiy P210 has 3 outlets at 230 V and 6 at 100-120 V, which may be more convenient for connecting different devices. The Oukitel charges to 80% in about 60 minutes from the grid, whereas Aferiy requires about 120 minutes. However, the Aferiy P210 has a longer warranty period—7 years compared to Oukitel's 3 years. Both devices use LiFePO4 batteries with 3500 charge cycles, but Aferiy has a larger battery capacity (40 Ah) compared to Oukitel's 2048 Wh. Users have noted that both stations are convenient to use and have good portability, but Aferiy may be preferable for those seeking a longer warranty and greater capacity.
Oukitel P2001 Plus often compared
Aferiy P210 often compared
Glossary

Switchover time to battery

The delay (usually in milliseconds) between the power going out from the outlet and the moment when the station starts feeding connected devices from its battery, maintaining "pass-through" power. The shorter this time, the higher the chance that devices won't notice the drop at all: for routers, cameras, NAS, and PCs, this is critical because a long pause can cause a reboot, loss of connection, or even filesystem errors. Essentially, this is the same parameter as in a classic UPS, but for charging stations, it greatly depends on implementation: models with a more "UPS-like" switching scheme switch considerably faster, while some stations formally have a UPS mode but actually create a noticeable break or activate the output only after "realizing" the network's loss. In practice, this point helps distinguish a charging station that is truly suitable as a UPS for sensitive electronics from an option "for lights and charging": for example, for home internet and video surveillance, minimal switching time is important, while for lamps, charging phones, or a heater, a brief pause is typically not critical.

Sockets (230 V)

Total number of outlets with output voltage. This is, in fact, the number of devices that can be simultaneously connected to the charging station without the use of splitters, extension cords and carriers. Accordingly, weaker charging stations have one or two sockets in their submission. Powerful charging stations already have three or more sockets “on board”.

Charging time (socket) ≈

Time to charge the portable power station from a fully discharged state to 100% charge when using the power adapter from a household outlet. This refers to the original battery and standard charger.

Charging time (socket + solar panel) ≈

The parameter allows you to estimate the approximate battery charging time in the mode of combined connection of a portable power station - from a power outlet and a solar panel overnight. This method of replenishing energy reserves allows you to speed up the charging process.

Charging time (solar panel) ≈

Time spent on a full charge when using the original panel in bright sunlight. In cloudy weather, the charging time of the device from the solar panel can be strikingly different downwards.

Charging time (cigarette lighter) ≈

The time required to fully (from zero to 100%) charge the battery, provided that power is supplied to the charging station from the car's cigarette lighter socket (12 V).

Charging power (socket)

The power at which, in normal mode, the portable power station is charged from a household outlet when using the original power supply.

Charging power (cigarette lighter)

The power normally received by the charging station when connected from the car's cigarette lighter socket (12 V).

Smartphone synchronization

Synchronization with a smartphone allows you to control the operation of the charging station remotely. Pairing the device with mobile gadgets is carried out via a Wi-Fi network or a Bluetooth connection. Some charging stations provide both of the above wireless modules. Additionally , synchronization with a smartphone allows you to monitor battery charge, energy consumption, voltage and current parameters remotely in real time. This will require a permanent connection to the Internet and specialized software that must be installed on your smartphone.