Portable Power Stations

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Portable Power Stations provide a reliable 220V AC output for powering work tools and fulfilling camping needs.


Creating local energy reserves on job sites or in remote locations requires an industrial approach using safe and portable technologies. These charging stations, such as the VIDEX OASIS series (up to 3000W), are equipped with the most advanced Lithium Iron Phosphate (LiFePO4) batteries, capable of providing up to 4000 charging cycles while retaining 80% of their original capacity. Unlike heavy stationary infrastructure, the physics of these devices are scaled for mobility – they offer a direct 220V (AC) output and support high surge currents, which are critical for construction equipment or compressors. The integrated UPS (Uninterruptible Power Supply) function protects locally connected devices in the event of a voltage loss, switching to battery power in milliseconds. Thanks to fast charging technology, the system can be replenished from the grid in less than two hours. Additional autonomy is provided by compatibility with high-power solar panels (up to 800W) and the ability to add expansion battery blocks, thereby creating a scalable, portable energy base for prolonged tasks.


Inženiertehniskie parametri un sistēmas priekšrocības:

  • Mobile 220V outlet: A stable AC inverter guarantees continuous power for heavy tools and camping equipment.
  • LiFePO4 architecture: Outstanding thermal stability of battery cells and extended life cycle for safe field operation.
  • UPS integration: Automatic maintenance of the local system in case of grid disturbances, protecting electronics.
  • Rapid charging: An engineered power supply circuit allows for full energy restoration in approximately 1.7 hours.
  • Solar off-grid: The ability to draw energy from solar panels, extending the station's operating time in base camps.

Portable alternating current provides complete freedom of action for performing local tasks under any conditions. For supporting a stationary and massive infrastructure, pay attention to solutions like EcoFlow DELTA Pro 3.



Q: How do LiFePO4 (lithium iron phosphate) batteries in charging stations engineeringly surpass standard lithium-ion elements?

A: The crystalline structure of LiFePO4 cells provides extreme thermal stability and ignition safety under heavy load conditions. They withstand 3000 to 3500 full charge-discharge cycles without reducing capacity below 80%, which is approximately six times more than standard Li-ion (NMC) elements.


Q: Why is a charging station with a Pure Sine Wave inverter MANDATORY for powering sensitive electronics?

A: A cheaper modified sine wave generates a stepped voltage curve, causing overheating and humming in compressors, medical equipment, and audio gear. A pure sine wave inverter precisely replicates the 230V (50Hz) utility grid frequency, guaranteeing stable and safe operation for any AC equipment.


Q: How is inverter thermal cooling ensured under maximum load in VIDEX portable charging stations?

A: An Active Thermal Management module with asymmetrical fans is integrated into the architecture of stations. It dynamically adjusts rotation speeds depending on the heat of the inverter and LiFePO4 cells, physically preventing overheating in 1000W continuous load mode.


Q: How to physically interpret the rated and surge power parameters of a station during electric motor startup?

A: Rated power is the maximum continuous load (W) that the inverter can stably maintain over the long term. Surge power is a short-term 1-2 second capacity critically needed for launching refrigerator compressors or power tools, whose power consumption at startup can triple.


Q: How does the device switch to battery power in EPS (Emergency Power Supply) mode during a voltage drop?

A: When the station is connected between a 230V socket and a consumer, the integrated commutator continuously bypasses grid current. Upon loss of grid voltage, the relay physically switches power to the internal LiFePO4 battery in under 20 milliseconds, strictly preventing connected equipment from shutting down.