Portable Power Stations, Power Banks and Solar Panels

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Portable Power Stations, Power Banks and Solar Panels

In today's dynamic world, energy independence has become priority number one. Whether you are facing unexpected power grid outages at home, going on a long off-grid car camping trip, or working remotely from nature, you need reliable and safe energy. Cheap generators or power banks from unknown manufacturers often use outdated lithium-ion chemistry, which not only degrades quickly (lasting only a few hundred charge cycles) but also poses fire risks and cannot provide stable voltage for your smart devices. VIDEX portable power stations, high-power power banks, and portable solar panels embody premium class engineering.


TCO (Total Cost of Ownership) and engineering benefits of our systems:

  • LiFePO4 Battery revolution: The Lithium Iron Phosphate chemistry used in our large stations guarantees 3000 to 4000 full charge cycles. This means more than 10 years of daily use without significant capacity loss.
  • Pure Sine Wave: Your sensitive electronics - from gas heating pumps to expensive servers and laptops - are safe. Our stations generate absolutely clean and stable 220V AC power.
  • 100% Autonomy: By combining our power stations with monocrystalline, foldable solar panels, you get an endless, quiet, and environmentally friendly energy source anywhere.

Discover our assortment and choose a solution that will protect your equipment and provide peace of mind - order in our e-shop!



Q: What technical parameters engineeringly distinguish a portable charging station from a standard power bank?

A: Charging stations are equipped with an integrated inverter and 230V alternating current (AC) sockets, allowing direct operation of household and office appliances. Standard power banks generate only 5V to 20V direct current (DC) through USB ports, intended for charging smart devices, but cannot provide voltage for high-power equipment.


Q: How effectively can portable solar panels charge stations in Baltic climate conditions?

A: The conversion efficiency of monocrystalline panels reaches 22-23%, allowing the generation of base current even on partly cloudy days. By using an integrated MPPT (Maximum Power Point Tracking) controller, the station dynamically adapts to voltage fluctuations, maximizing charging power in low sun angle conditions.


Q: How does the built-in BMS system in VIDEX portable charging devices protect the battery cells?

A: The BMS (Battery Management System) integrated into units continuously monitors the voltage, current, and thermal state of each cell. This strictly prevents lithium element overcharging, deep discharge, and short circuit risks, extending the device's operational cycle and ensuring safe operation in extreme temperatures.


Q: What is the physical rationale for the ratio between output power (W) and battery capacity (Wh)?

A: Capacity (Wh) determines the energy reserve or operating time, while power (W) limits the maximum consumption of simultaneously connected devices. For example, a compact 500Wh station with a 1000W inverter can run an 800W coffee maker, but its energy reserve under such a load will physically be exhausted in about 35 minutes.


Q: How does Pass-Through charging technology ensure an uninterrupted power supply (UPS function)?

A: In Pass-Through mode, the device simultaneously charges its battery from the 230V grid and channels current to connected consumers. The moment input voltage is lost, the integrated commutator switches consumers to battery power in less than 20 milliseconds, strictly preventing computer equipment from shutting down.