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Comparison BLUETTI Elite 300 vs Oukitel P5000 Pro

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BLUETTI Elite 300
Oukitel P5000 Pro
BLUETTI Elite 300Oukitel P5000 Pro
Expecting restockCompare prices 1
TOP sellers
Pass-through charging.
In boxcharging stationcharging station
Rated power2400 W4000 W
Peak power4800 W8000 W
Output waveformsinusoid (PSW)sinusoid (PSW)
UPS function
Switchover time to battery10 ms10 ms
Outputs
Sockets (230 V)25
USB-A
2 pcs
5В/3A
15 W
2 pcs
5В/2.4А
12 W
USB-A (quick charge)
 
2x QC3.0
18 W
USB-C
2 pcs
5 A
140 W
2 pcs
5 A
100 W
Car cigarette lighter
Add. portsXT60 (12 H / 30 A)RV (24 H / 10 A)
Inputs (station charging)
From solar panels
Input port XT60
Battery and charging time
Battery typeLiFePO4LiFePO4
Battery capacity3014.4 Wh5120 Wh
Charging cycles60005000
Charging time (socket) 78 min90 min
Charging time (socket + solar panel) 70 min
Charging time (solar panel) 246 min
Charging power (socket)2300 W3200 W
Charging power (solar panel)1200 W1000 W
Charging power (socket + solar panel)4200 W
General
Smartphone synchronizationBluetooth and WiFiBluetooth and WiFi
PSUbuilt into the bodybuilt into the body
Display
Wheels for transportation
Carrying handle
Operating temperature0 °C ~ +40 °C-10 °C ~ +40 °C
Dimensions (LxWxH)366x298x305 mm550x299x487 mm
Weight26.3 kg53 kg
Warranty3 years
Added to E-Catalogmarch 2026september 2024
Compare BLUETTI Elite 300 and Oukitel P5000 Pro
BLUETTI Elite 300 often compared
Oukitel P5000 Pro often compared
Glossary

Rated power

Power that a device can consistently produce for an indefinitely long time without any unpleasant consequences. For normal operation of the charging station, the rated power must be at least 15 - 20% higher than the total power of all devices simultaneously connected to it.

Peak power

Some electrical appliances (in particular, units with electric motors - refrigerators, air conditioners, etc.) consume significantly more energy at startup than after reaching the operating mode. For such a load, the peak power of the charging station must be taken into account - its indicator must be higher than the starting power of the load.

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”.

USB-A

Full-size USB-A connectors are popular in computer technology, commonly used in charging adapters for 230 V household networks and 12 V car sockets. These outputs have become widespread in charging stations for charging gadgets.

— The total number of such ports can be quite varied (1 USB, 2 connectors, 3 ports, and even 4), as they allow for charging and, in some cases, powering various low-power devices — smartphones, tablets, power banks, lamps, and more.

— Current Strength. The maximum current delivered through the USB-A connector to the charging device. Note that different ports of the charging station may output different currents (for example, 1.5 A and 2.1 A). In such cases, the highest current strength is usually specified.

— Power. The maximum output power in watts (W) that the charging station is capable of delivering through the USB-A connector to a single charging gadget.

USB-A (quick charge)

Full-sized USB-A ports with fast charging support. This feature allows you to charge your smartphone, tablet, or other connected devices much more quickly. The charging process occurs at increased power, with current and voltage regulated at each stage to stay within optimal values. However, keep in mind that there are many fast-charging technologies today, and not all of them are compatible with each other.

— Current strength. The current parameters delivered through USB-A fast charging ports. Note that different ports of the charging station may output different voltage and current parameters. This section specifies the current strength values at a certain voltage (for example, 5V / 3A, 9V / 2A, 12V / 1.5A).

— Power. The maximum power in watts (W) that the charging station can deliver through the USB-A fast charging port to a single charging gadget. High output power allows for faster charging. However, the charging device must support the corresponding power; otherwise, the speed will be limited by the gadget's characteristics.

USB-C

USB type C ports are smaller compared to classic USB ports and have a convenient reversible design that allows connecting the plug either way. USB type C was initially created to implement various advanced features: increased power, fast charging technologies, etc.

Since the port is relatively new and quite powerful (you can find USB type C with 60W, even 100W and 140W), the total number of such connectors is often limited to one port, or sometimes two).

— Current. The maximum current delivered through the USB type C port to the device being charged. Note that different ports of a charging station may deliver different currents (for example, 1.5A and 2.1A). In such cases, the highest current is usually specified.

— Power. The maximum power in watts (W) that the charging station can deliver to one charging gadget. The high output power of the USB type C port allows for faster charging. However, the device being charged must support the corresponding power; otherwise, the speed of the process will be limited by the gadget's specifications.

Add. ports

Additional output connectors provided in the design of the charging station in addition to those described above.

Battery capacity

Nominal battery capacity, in fact - the amount of energy that is supposed to be stored. The larger it is, the longer the battery life of the charging station will be, all other things being equal. On the other hand, this parameter also affects the dimensions, weight and price of the battery, despite the fact that an energy-intensive battery is not always required. By the indicator of capacity in watt-hours, you can compare batteries with each other.

Charging cycles

The number of charge-discharge cycles that the battery can withstand without significant loss of performance.

In the process of operation, the batteries wear out, which causes their performance to suffer (in the first place, the capacity decreases). Battery life is usually measured in charge-discharge cycles. However, models with the same declared resource are not always equally durable in practice. Different manufacturers may interpret “significant loss of performance” in different ways: for example, one brand indicates the resource up to a 20% decrease in capacity (DOD > 80%), another - up to a 60% decrease (DOD > 40%) Behind the abbreviation DOD worth decoding Depth of Discharge, i.e. discharge depth. Therefore, when choosing, it makes sense to focus not only on pure numbers, but also on other sources - test results, reviews, etc. Also note that battery life can be noticeably reduced if the operating conditions are violated (for example, in case of overheating or hypothermia).