Batteries and Chargers

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Batteries and chargers ensure stabilu darbību ar 5 gadu uzglabāšanas laiku industriālā vidē.


Certified electrochemical power elements with a 5-year shelf life and Anti-Leak protection are critically important for uninterrupted equipment operation. Unreliable power sources can permanently damage expensive electronics due to electrolyte leakage. Our power solution series offers the highest electrochemical stability, starting from zero percent Mercury & Cadmium alkaline cells. Utilizing primary alkaline cells with improved density and protective construction completely prevents contact corrosion and ensures long-term energy output in both high-load measuring instruments and micro-sensors. The extended 5-year storage time allows companies and individuals to build safe strategic energy reserves, significantly reducing operational costs and eliminating downtime risks in responsible work processes.


Engineering parameters:

  • 5-year storage: Retains electrochemical capacity for long-term reserves.
  • Anti-Leak hermeticity: Steel capsule blocks electrolyte leakage.
  • Stable current: Optimized chemistry guarantees uniform discharge.

A thoughtful choice of power supply elements ensures stable operation of all equipment and prevents unplanned technical interruptions in the industrial environment. In twilight hours and low light, when planned maintenance repairs are carried out, our Flashlights and Headlamps equipment will be useful for illuminating the work area. Properly selected components that meet technical specifications significantly extend the operating cycle of the hardware in extreme working conditions. Integrated materials engineering and rigorous quality control during the manufacturing process ensure maximum reliability and safety in all application scenarios. This approach is fundamental to today's demanding industrial and professional needs, where there is no room for error.



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Q: What is the technical difference between alkaline and regular zinc-carbon batteries?

A: Alkaline batteries provide up to 5 times greater energy density and a more stable discharge voltage under high load. Due to their low internal resistance, zinc-carbon batteries rapidly lose power in motorized devices or bright lighting, whereas Alkaline elements guarantee long and predictable operation, significantly reducing operational costs.


Q: Why are cheap batteries dangerous to electronic devices and how does the VIDEX housing engineering protect them?

A: Poor quality batteries often burst their housing at the end of their discharge under pressure, causing a leak of corrosive potassium hydroxide electrolyte. This alkaline substance instantly corrodes device contact springs and microchips. batteries use a multi-layer steel housing and reinforced nylon seals, guaranteeing 100% leak protection throughout their 5-year guaranteed storage cycle.


Q: In which cases is it economically more justified to choose rechargeable NiMH batteries instead of regular batteries?

A: In devices with high and continuous energy consumption (photo flashes, wireless microphones, mechanical toys), NiMH batteries pay for themselves after the first 5 charge cycles. Since these batteries can be charged up to 1000 times, they completely eliminate the expenses of buying new power elements, whereas for low-consumption devices (wall clocks), Alkaline batteries are a more rational choice.


Q: What does the 5-year shelf life of alkaline batteries actually mean?

A: The shelf life guarantees that after 5 years on the shelf, the battery retains at least 90% of its initial nominal capacity. This is achieved thanks to ultra-pure zinc powder and refined manganese dioxide, which reduces internal chemical self-discharge to less than 2% per year, which is crucial for backup power supply kits.


Q: How to properly dispose of used batteries and accumulators in accordance with EU directives?

A: It is strictly forbidden to throw used batteries into household waste because they contain heavy metals and recyclable resources. Used elements must be handed over at specialized collection points, where they are directed for 100% recycling in accordance with WEEE and the EU Battery Directive, preventing toxic substances from entering the soil.