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Comparison EcoFlow DELTA 2 Max vs EcoFlow DELTA Max 2000

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EcoFlow DELTA 2 Max
EcoFlow DELTA Max 2000
EcoFlow DELTA 2 MaxEcoFlow DELTA Max 2000
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Can be used as a home energy independence kit.
DELTA 2 Max and E2000 have the same specifications. The main difference – the E2000 was released in 2024, the DELTA 2 Max in 2023. The name E2000 may be used as a regional designation. Supports up to 2 battery modules DELTA 2 Max Battery.
2 USB A ports, 2 USB A Fast Charge ports, 2 USB-C ports. NCM is a lithium-ion battery. Jumps up to 4600 watts are allowed. Car cigarette lighter port DC5521. X-Stream port for fast charging (1800W). Battery capacity 2016 Wh
In boxcharging stationcharging station
Rated power2400 W2400 W
Peak power4800 W4800 W
Output waveformsinusoid (PSW)sinusoid (PSW)
UPS function
Switchover time to battery30 ms
Outputs
Sockets (230 V)44
USB-A
2 pcs
5В/2.4А
12 W
2 pcs
5В/2.4А
12 W
USB-A (quick charge)
2
5В/2A, 9В/2A, 12В/1.5A
18 W
2
5В/2.4A, 9В/2A, 12В/1.5A
18 W
USB-C
2 pcs
5 A
100 W
2 pcs
5 A
100 W
Car cigarette lighter
Inputs (station charging)
From solar panels
Input port XT60
Battery and charging time
Connecting an additional battery
Battery typeLiFePO4Li-Ion NMC
Battery capacity2048 Wh2016 Wh
Charging cycles3000800
Charging time (socket) 53 min67 min
Charging time (socket + solar panel) 43 min
Charging time (solar panel) 138 min152 min
Charging power (socket)2400 W1800 W
Charging power (solar panel)1000 W800 W
General
Smartphone synchronizationBluetooth and WiFiWi-Fi
PSUbuilt into the body
Display
Carrying handle
Operating temperature0 – 45 °C0 °C ~ +45 °C
Dimensions (LxWxH)242x497x305 mm242x497x305 mm
Weight23 kg22 kg
Warranty5 years2 years
Added to E-Catalogseptember 2023december 2022
Compare EcoFlow DELTA 2 Max and DELTA Max 2000
When comparing the EcoFlow DELTA 2 Max and EcoFlow DELTA Max 2000 charging stations, it can be noted that both models have the same rated and peak power (2400 W and 4800 W respectively) and offer a similar number of outlets (4 sockets 230 V and 6 sockets 100-120 V). However, the DELTA 2 Max stands out with a higher battery capacity (2048 Wh) and a greater number of charging cycles (3000), making it more durable. Meanwhile, the DELTA Max 2000 has a lower capacity (40 Ah) and fewer cycles (800), but offers faster charging via the X-Stream port (1800 W). Users note that the DELTA 2 Max is better suited for long-term use and autonomy, whereas the DELTA Max 2000 may be preferable for quick recharging. Both models have the option to connect additional batteries and support solar panels, making them versatile for various usage scenarios.
EcoFlow DELTA 2 Max often compared
EcoFlow DELTA Max 2000 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.

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.

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 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).

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 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.