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Comparison BLUETTI PowerOak EB150 vs BLUETTI PowerOak EB70

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BLUETTI PowerOak EB150
BLUETTI PowerOak EB70
BLUETTI PowerOak EB150BLUETTI PowerOak EB70
from $1,710.26 up to $1,973.42
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from $369.00 
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4 USB A ports, 1 USB C port. Surges up to 1200 W are allowed.
2 USB A ports, 2 USB C ports. Car cigarette lighter port DC5521. Jumps up to 1400 W are allowed. LiFePo4 battery. Wireless charging power 15 W. Flashlight
In boxcharging stationcharging station
Rated power1000 W1000 W
Peak power1200 W1400 W
Output waveformsinusoid (PSW)sinusoid (PSW)
Outputs
Sockets (230 V)22
USB A
4
5В/3A
2
5В/3A
15 W
USB C
1
3 A
45 W
2
3 A, 5 A
100 W
Wireless charger1 zone 15 W
Car cigarette lighter
Inputs (station charging)
From solar panels
Battery and charging time
Battery typeLi-ionLiFePO4
Battery capacity1500 W*h716 W*h
Charging cycles25002500
Charging time (socket) 600 min240 min
Charging time (solar panel) 360 min
Charging time (cigarette lighter) 480 min
Charging power (socket)200 W
Charging power (solar panel)200 W
Charging power (cigarette lighter)100 W
General
PSUexternalexternal
Display
Backlight
Carrying handle
Operating temperature0 °C ~ +40 °C0 °C ~ +40 °C
Dimensions365x165x372 mm221x320x216 mm
Weight17.2 kg9.7 kg
Warranty2 years2 years
Added to E-Catalognovember 2022september 2022
Brief conclusions of the comparison portable power stations

BLUETTI PowerOak EB150 and BLUETTI PowerOak EB70 are powerful charging stations, but they have several differences. The EB150 has a larger battery capacity of 1500 Wh and can deliver a peak power of up to 1200 W, making it more suitable for prolonged use and connecting more powerful devices. At the same time, the EB70 is lighter (9.7 kg compared to 17.2 kg) and more compact, making it convenient for carrying. It also offers wireless charging at 15 W and has a faster charging time from the grid (240 minutes compared to 600 minutes for the EB150). Both devices have similar features, such as the ability to charge from solar panels and various outputs, but the EB150 is better suited for more serious tasks, whereas the EB70 is ideal for lighter and more mobile solutions.

Glossary

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.

USB A

Full-size USB A connectors are popular in computer technology, they are standardly used in adapter chargers for 230 V household networks and 12 V auto sockets. In charging stations, such outlets are widely used for charging gadgets.

- The total number of such ports can be very diverse ( 1 USB, 2 connectors, 3 ports and even 4), since it allows you to connect for charging, and in some cases for power, various low-power devices - smartphones, tablets, power banks, lamps, etc. .

- The strength of the power. The maximum power output through the USB A connector to the device being charged. Note that different ports of the charging station can output different power (for example, 1.5 A and 2.1 A). In this case, the highest power strength is usually indicated.

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

USB C

USB type C ports are smaller than classic USBs, and they also have a convenient reversible design that allows you to connect the plug in either direction. USB type C was originally designed to be able to implement various advanced features: increased power supply, fast charging technologies, etc.

Since the port is relatively new and quite powerful (there are USB type C with a power of 60 W and even 100 W), the total number of such connectors is often limited to 1 port, less often two).

- The strength of the power. The maximum power output through the USB type C connector to a charging device. Note that different ports of the charging station can output different power (for example, 1.5 A and 2.1 A). In this case, the highest power strength is usually indicated.

— Power. The maximum power in watts (W) that the charging station is capable of delivering to one rechargeable gadget. The high output power of the USB type C port allows you to speed up the charging process. However, the appropriate power must be supported by the device being charged - otherwise the speed of the process will be limited by the characteristics of the gadget.

Wireless charger

In wireless charging mode, energy is transferred to the gadget being charged through an inductive surface, which is usually built into the upper plane of the charging station case. There can be one slot for wireless charging or several of them are provided. The range of this technology does not exceed a few centimeters. However, this method of charging eliminates the fuss with wires and reduces wear on the connectors. One of the key disadvantages of this format is considered to be low power and, accordingly, slow charging speed.

Battery type

Li-Ion. The key advantage of lithium-ion batteries is their high capacity with small dimensions and weight. Also, Li-Ion batteries are not subject to memory effect and can charge quite quickly. Of course, this option is not without its drawbacks - first of all, it is sensitivity to low or elevated temperatures, and if overloaded, the lithium-ion battery can catch fire or even explode. However, thanks to the use of built-in controllers, the likelihood of such “accidents” is extremely low and, in general, the advantages of this technology significantly outweigh the disadvantages.

Li-Pol. An improved version of lithium-ion technology (see the corresponding paragraph): the liquid electrolyte in Li-Pol batteries is replaced with a solid polymer. At the same high capacity, the batteries have become more compact, there is practically no “memory effect” in them, and the likelihood of fires and explosions in the event of critical violations of operating conditions is minimized. The downside of these improvements was increased cost and increased sensitivity to frost. However, most often these shortcomings are not significant.

LiFePO4. Lithium iron phosphate batteries are a modification of lithium ion batteries (see corresponding paragraph) designed to eliminate some of the shortcomings of the original technology. LiFePO4 batteries are characterized by a...large number of charge/discharge cycles, chemical and thermal stability, low temperature tolerance, short charging time (including high currents) and safety in operation. The likelihood of an “explosion” of a LiFePO4 battery when overloaded is reduced to almost zero, and in general, such batteries cope with high peak loads without problems and maintain the operating voltage almost until discharge.

Li-Ion NMC. A type of lithium rechargeable battery using a complex alloy in the manufacture of the cathode. It contains nickel, manganese and cadmium. This “recipe” allows you to increase the power of a power source based on Li-Ion NMC elements. Batteries of this type have a high specific capacity and a stable discharge voltage, provide a long operating time of the charging station with high performance, are characterized by a complete absence of “memory effect”, maintain functionality over a wide temperature range and are fireproof.

— VRLA. Acid batteries with a regulating safety valve to release excess gas. The abbreviation VRLA stands for Valve Regulated Lead Acid. Batteries of this type have a sealed, non-separable design and come in two types: AGM VRLA (the battery plates are equipped with a layer of fiberglass absorbent) and GEL VRLA (with a gel electrolyte in a jelly-like state). Batteries with a control valve are resistant to deep discharges, do not require topping up with distillate throughout their entire service life, and do not emit hydrogen or oxygen.

- Semi-solid State. An advanced type of lithium-ion battery (see above), which combines some of the characteristics of liquid and solid batteries. It uses an electrolyte that is in a semi-soft or gel-like state, making the batteries more resistant to leakage than traditional wet batteries. Semi-solid state technology allows for a significant increase in the energy density of cells. As a result, it is possible to make compact batteries with high energy intensity.

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 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 (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).
BLUETTI PowerOak EB150 often compared
BLUETTI PowerOak EB70 often compared