Pair your load with the right power.

What will a BLUETTI Elite 100 V2 run, and for how long? (EU 230 V)

A “1,800 W” power station is two numbers wearing one label. Watts are the ceiling on what you can switch on at once; watt-hours are how much energy is in the battery. The BLUETTI Elite 100 V2 holds 1,800 W and stores 1,024 Wh on the nameplate — and those two facts answer two different questions.

This page answers both. The runtimes below divide a usable-capacity figure derived from BLUETTI's own published depth of discharge and inverter efficiency, with the machine's idle draw in the denominator — not the nameplate.

The three numbers that decide everything else

Continuous output 1,800 W
Official spec · verified 2026-08-01 · high confidence
Surge ceiling 1,800 W
Derived by WattPair · low confidence

The brand publishes no surge rating. This is a conservative floor taken from the continuous output — an inverter cannot surge below what it sustains — and is not a manufacturer specification.

Usable capacity 829.4 Wh
Derived from official coefficients · verified 2026-08-01 · medium confidence

The arithmetic: 1,024 Wh nameplate × 90% depth of discharge × 90% inverter efficiency = 829.4 Wh

officialverified 2026-08-01EU 230 V unit

What BLUETTI Elite 100 V2 runs

Every row is a live calculation against this machine's continuous output, surge ceiling and inverter waveform — running watts, start-up inrush and duty cycle on the appliance side. Of 30 appliance profiles, 11 run, 8 are a tight fit and 11 are out of reach. The percentage is the load as a share of continuous output; anything past 82% drops out of the green.

One caveat that applies to every row: BLUETTI publishes no surge rating for this model, so each start-up check runs against the continuous output as a conservative floor. Real inverters usually manage 1.5–2× that, so a row held back by the surge check may well be fine in practice — we will not say so until the manufacturer does.

12V portable fridge/freezer Refrigeration 125 W running · 180 W at start-up runs about 8.3 h on a full charge 6.9% Air fryer Cooking 1,700 W running · 1,700 W at start-up runs about 0.5 h on a full charge limited by continuous output 94% Box fan Cooling 80 W running runs about 9.2 h on a full charge limited by surge ceiling No start-up surge figure is published for this appliance, so the verdict is capped below green — the running watts alone are comfortable. 4.4% Chest freezer Refrigeration 30 W running · 156 W at start-up runs about 23 h on a full charge 1.7% Coffee maker Cooking 1,400 W running · 1,400 W at start-up runs about 0.6 h on a full charge 78% CPAP machine Medical 22 W running · 22 W at start-up runs about 26 h on a full charge limited by inverter waveform This load needs a pure sine wave and the brand does not publish the waveform, so no green light is given. 1.2% Desktop PC Computing 13 W running · 13 W at start-up runs about 36 h on a full charge limited by inverter waveform This load needs a pure sine wave and the brand does not publish the waveform, so no green light is given. 0.7% Diesel air heater Heating 34 W running · 34 W at start-up runs about 19 h on a full charge 1.9% Electric blanket Heating 60 W running · 60 W at start-up runs about 12 h on a full charge 3.3% Electric kettle Cooking 3,000 W running · 3,000 W at start-up runs about 0.3 h on a full charge limited by continuous output 167% Electric space heater (1500 W) Heating 1,500 W running · 1,500 W at start-up runs about 0.5 h on a full charge limited by continuous output 83% Full-size refrigerator Refrigeration 55 W running · 286 W at start-up runs about 15 h on a full charge 3.1% Gas furnace blower Heating 548 W running limited by surge ceiling No start-up surge figure is published for this appliance, so the verdict is capped below green — the running watts alone are comfortable. 30% Laptop computer Computing 5.2 W running · 5.2 W at start-up runs about 54 h on a full charge The measured inrush here is a millisecond-scale capacitive spike, which is not the same quantity as a surge rating and is not held against the verdict. 0.3% LED light bulb Lighting 8.5 W running · 8.5 W at start-up runs about 45 h on a full charge 0.5% LED TV TV & entertainment 108 W running · 108 W at start-up runs about 7.1 h on a full charge 6.0% Microwave oven Cooking 1,480 W running runs about 0.6 h on a full charge limited by continuous output No start-up surge figure is published for this appliance, so the verdict is capped below green — the running watts alone are comfortable. 82% Mini fridge Refrigeration 161 W running · 2,530 W at start-up limited by surge ceiling 8.9% Mini-split heat pump Cooling 1,740 W running · 1,740 W at start-up runs about 1.5 h on a full charge limited by VA ceiling 97% Pancake air compressor Power tools 1,800 W running · 10,800 W at start-up limited by surge ceiling 100% Portable air conditioner Cooling 1,300 W running · 7,800 W at start-up runs about 3.4 h on a full charge limited by surge ceiling 72% Portable induction cooktop Cooking 1,800 W running · 1,800 W at start-up runs about 0.5 h on a full charge limited by continuous output 100% Router + modem Internet 9.1 W running · 9.1 W at start-up runs about 43 h on a full charge 0.5% RV rooftop air conditioner RV & marine 1,690 W running · 8,619 W at start-up limited by surge ceiling 94% Starlink Mini Internet 30 W running · 60 W at start-up runs about 21 h on a full charge 1.7% Sump pump Pumps 920 W running · 2,650 W at start-up limited by surge ceiling 51% Washing machine Laundry 2,300 W running · 2,300 W at start-up runs about 0.7 h on a full charge limited by continuous output 128% Welder (stick / MIG) Power tools 2,700 W running · 2,700 W at start-up runs about 1.0 h on a full charge limited by continuous output 150% Well pump Pumps 660 W running · 6,762 W at start-up limited by surge ceiling 37% Window air conditioner Cooling 923 W running · 6,900 W at start-up limited by surge ceiling 51%

Solar panels this machine can legally take

The binding constraint is voltage, not watts: open-circuit voltage RISES as it gets colder, and an array that is fine at noon can be over the MPPT ceiling at dawn. Each row is the engine's largest legal array for this station, with Voc corrected to -10 °C ambient . Only panels whose datasheet publishes a voltage temperature coefficient are evaluated — the others cannot be corrected, and an under-corrected array is what destroys an MPPT input.

Jackery SolarSaga 100 Air 4 × 100 W · 4 in parallel · 400 W array Voc at the design minimum: 32.3 V Panel connector: DC8020 Needs a dc8mm-to-mc4 adapter.
Renogy 100W 12V Monocrystalline Solar Panel (Compact Design) 6 × 100 W · 2S3P · 600 W array Voc at the design minimum: 53.4 V Panel connector: Solar Connectors
Renogy 200W 12V Monocrystalline Solar Panel 2 × 200 W · 2 in parallel · 400 W array Voc at the design minimum: 29.6 V Panel connector: MC4

Every field we hold on this machine

Each figure carries the tier it came from and the date it was checked. A blank is never left blank: a field the manufacturer does not publish says so, and a field two manufacturer sources disagree about says that instead of picking one.

AC output

What the inverter can hold, what it can start, and what shape the wave is.

Continuous output 1,800 W Official spec · verified 2026-08-01 · high confidence
Surge ceiling 1,800 W Derived by WattPair · low confidence

The brand publishes no surge rating. This is a conservative floor taken from the continuous output — an inverter cannot surge below what it sustains — and is not a manufacturer specification.

Surge duration Not published by the manufacturer no figure to date
Boost mode Yes Official spec · verified 2026-08-01 · high confidence

Sold as “Power Lifting”.

Boost output 2,700 W Official spec · verified 2026-08-01 · high confidence

The verdict engine never counts boost output as continuous output: it works by dropping voltage and can fail on motors and compressors.

Inverter waveform Not published by the manufacturer no figure to date
Inverter efficiency 90% Official spec · verified 2026-08-01 · medium confidence
AC voltage 230 V Official spec · verified 2026-08-01 · high confidence
AC frequency 50 Hz Official spec · verified 2026-08-01 · medium confidence
Outlet standard Schuko CEE 7/3 Official spec · verified 2026-08-01 · medium confidence
UPS switchover 10 ms Official spec · verified 2026-08-01 · high confidence
Idle draw 10 W Official spec · verified 2026-08-01 · medium confidence

What the machine consumes just being switched on. It sits in the runtime denominator, and a brand that does not publish it makes every runtime optimistic.

Battery and energy

The nameplate, what is actually retrievable from it, and how long the cells last.

Nominal capacity 1,024 Wh Official spec · verified 2026-08-01 · high confidence
Usable capacity 829.4 Wh Derived from official coefficients · verified 2026-08-01 · medium confidence

The arithmetic: 1,024 Wh nameplate × 90% depth of discharge × 90% inverter efficiency = 829.4 Wh

BLUETTI publishes the coefficients but not this figure, so it is computed rather than copied — which is why its confidence is capped below the specs around it.

Depth of discharge 90% Official spec · verified 2026-08-01 · high confidence
Chemistry LiFePO4 (LFP) Official spec · verified 2026-08-01 · high confidence
Cycle life 4,000 cycles Official spec · verified 2026-08-01 · high confidence
Capacity at end of cycle life Not published by the manufacturer no figure to date
Warranty 5 years Official spec · verified 2026-08-01 · high confidence
Discharge temperature (min) -20 °C Official spec · verified 2026-08-01 · high confidence
Discharge temperature (max) 40 °C Official spec · verified 2026-08-01 · high confidence
Charge temperature (min) 0 °C Official spec · verified 2026-08-01 · high confidence

Charging and expansion

How fast it refills from the wall, and whether more battery can be bolted on.

AC input (max) 1,200 W Official spec · verified 2026-08-01 · high confidence
Wall charge, 0–100% 70 min Official spec · verified 2026-08-01 · high confidence
Wall charge, 0–80% 45 min Official spec · verified 2026-08-01 · high confidence
Car input (max) Not published by the manufacturer no figure to date
Combined input (max) 1,200 W Official spec · verified 2026-08-01 · high confidence
Expandable Not published by the manufacturer no figure to date
Capacity with expansion Not applicable to this model no figure to date
Extra batteries supported Not applicable to this model no figure to date

Solar input

The window an array has to land inside. Voltage is the constraint that burns hardware.

Solar input (max) 1,000 W Official spec · verified 2026-08-01 · high confidence
MPPT window (min) 12 V Official spec · verified 2026-08-01 · high confidence
MPPT window (max) 60 V Official spec · verified 2026-08-01 · high confidence
Input current (max) 20 A Official spec · verified 2026-08-01 · high confidence
Solar connector MC4 Official spec · verified 2026-08-01 · medium confidence

Physical and travel

Weight, size, noise — and whether an airline will let it on board.

Weight 11.5 kg Official spec · verified 2026-08-01 · high confidence
Length 320 mm Official spec · verified 2026-08-01 · high confidence
Width 215 mm Official spec · verified 2026-08-01 · high confidence
Height 250 mm Official spec · verified 2026-08-01 · high confidence
Noise 50 dB Official spec · verified 2026-08-01 · high confidence
App control Yes Official spec · verified 2026-08-01 · high confidence
Connectivity Not published by the manufacturer no figure to date
Capacity for airline rules 1,024 Wh Official spec · verified 2026-08-01 · high confidence

IATA lets passengers carry lithium batteries up to 100 Wh freely and 100–160 Wh with airline approval. Above that, no passenger aircraft.

Where to buy

Where to buy the BLUETTI Elite 100 V2

Prices checked 2026-08-01

BLUETTI Official Store (EU) €699 View →

Compare with its neighbours

Each link goes to that machine's own record. Every record holds the same fields in the same order and states the same tier and date beside each one, so two of them read side by side compare cleanly.

Where to go next

Questions people ask about this machine

Will a BLUETTI Elite 100 V2 run a full-size refrigerator?
Yes. Against the EU 230 V record, the full-size refrigerator draws 55 W running · 286 W at start-up — 3.1% of this machine's continuous output, and the pair runs for about 15 h. That verdict is a calculation from running watts, start-up surge and inverter waveform, not a lookup, and the full working is one click away in the table above.
Why can't a BLUETTI Elite 100 V2 run a sump pump?
On the EU 230 V record the binding constraint is the surge ceiling. The sump pump needs 920 W running · 2,650 W at start-up, and at 51% of continuous output there is no headroom to give. No accessory fixes this one — it takes a machine with a bigger inverter.
How long does a BLUETTI Elite 100 V2 last?
It depends entirely on the load, and that is the part most pages skip. On our figures the BLUETTI Elite 100 V2 runs a 12V portable fridge/freezer for about 8.3 h, and an air fryer for about 0.5 h. Those hours come from a usable-capacity figure derived from BLUETTI's published depth of discharge and inverter efficiency, with the machine's own idle draw in the denominator — not from dividing the nameplate watt-hours by a label wattage.
How long does a BLUETTI Elite 100 V2 take to charge?
BLUETTI states 70 minutes from empty to full on mains power, and 45 minutes to 80%. That is a manufacturer figure measured under their conditions, verified on 2026-08-01; a cold battery, a weak circuit or a lower charge-rate setting all make it longer.
Can you take a BLUETTI Elite 100 V2 on a plane?
No. At 1,024 Wh it is far above the 160 Wh ceiling that airlines apply to lithium batteries in the cabin, and lithium batteries of this size are not accepted in checked baggage either. The 100 Wh / 160 Wh thresholds come from the IATA dangerous-goods rules that carriers implement; check your airline before travelling, because the approval step above 100 Wh is theirs to give.
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