VTOMAN Jump 1800 Runtime Calculator

Use this source-linked record to estimate runtime from tracked capacity, output, charging, and weight fields. Unknown specs stay unknown until an official or manufacturer-grade source confirms them.

VTOMAN Jump 1800 portable power station
Capacity1548 Wh
AC output1,800 W
Surge3,600 W (continuous AC ceiling proxy)
ChemistryLiFePO4
ConfidenceVerified
Source regionglobal/general
Checked2026-08-21
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Key specifications for VTOMAN Jump 1800.
Battery capacity1548 Wh
Battery chemistryLiFePO4
AC output1,800 W
Surge output3,600 W (continuous AC ceiling proxy)
DC output120 W
USB-C output100 W
Solar input220 W
Weight17.5 kg
ConfidenceVerified
Lifecycle statusUnknown
Source regionglobal/general
Last verified2026-08-21
The 3,600W value is VTOMAN's V-BEYOND ceiling for compatible resistive loads above the 1,800W rated output, not a conventional instantaneous surge rating. DC output stores the published combined 120W DC-port ceiling.

Runtime Starting Points

These are formula estimates using the tracked capacity, a 10% reserve, and each scenario's default wattage and duty cycle. They are planning starters, not measured runtimes.

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Runtime starting-point estimates for VTOMAN Jump 1800.
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Calculator for this station

Adjust watts, duty cycle, reserve, output path, and startup surge with VTOMAN Jump 1800 prefilled from the source-linked specs above.

Loading calculatorPreparing calculator
Power station model
Battery capacity (Wh): 1548 WhContinuous output rating (W): 1800 WSurge output rating (W): 3600 W
VTOMAN Jump 1800
Estimated runtime19h 44m12h 21m – 1d 0hEstimated runtime: 19h 44m, 12h 21m – 1d 0h
Output path

Estimated runtime

19h 44mEstimated runtime: 19h 44m

This setup has comfortable headroom for overnight use, assuming the wattage estimate is realistic.

Conservative12h 21m
Estimated19h 44m
Optimistic1d 0h

Conservative assumes harder conditions; optimistic assumes favorable conditions.

  • This is an estimate. Real runtime changes with load, temperature, battery age, AC/DC output, and device behavior.

Show your work

Rated Wh is reduced by efficiency, reserve, battery health, and temperature before it is divided by average load.

Rated battery
1548 Wh
Usable energy
1184 Wh
1548 Wh x 85% x 90% x 100% x 100%
Running watts
60 W
Average load
60 W
Max surge
n/a
Fixed station overhead
Unknown (not included)
60 W / 85% = 70.6 W battery draw; fixed overhead is unknown and excluded
Estimated runtime
19h 44m
1184 Wh / 60 W = 19h 44m
Output path
AC inverter
Efficiency (%)
85
Reserve kept unused (%)
10
Battery health (%)
100
Cold weather loss (%)
0

This link contains the numeric values you entered, but not custom load names.

Source-Backed Next Steps

Good fit when

  • Capacity is in a mid-size planning class that can cover many overnight or essential-load scenarios when reserve and efficiency are included.
  • Tracked AC output is high enough for many household plug-in loads, but surge still needs a separate check.
  • USB-C output is tracked at laptop-class power, useful for direct DC charging when the device supports it.
  • Tracked solar input is 220 W before panel, weather, angle, and controller losses.

Watch out for

  • Surge output is tracked, but device startup behavior should still be checked against the actual load.

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Sources