Providing high-efficiency energy solutions engineered to power Hungary's strategic automotive manufacturing and smart grid infrastructure projects.
Selected high-demand modules designed to meet Hungary's EV manufacturing plants and warehousing automation requirements.
Engineered for automated warehousing hubs in Central Europe. Provides high-current reliability for heavy electric forklifts and automated guided vehicles (AGVs) operating in continuous shifts.
Designed for EV infrastructure integration, utilizing high-voltage output matching the requirements of major battery energy storage systems (BESS) and public EV charging grids in Budapest.
Ultra-slim 1U profile optimized for density-critical server racks and battery test benches. Extremely stable output under fluctuating grid conditions in Eastern Hungary.
Boasting a 95% efficiency rate, this conversion module mitigates thermal challenges in heavy industrial setups, lowering active cooling costs in manufacturing environments.
Analyzing the intersection of Central European manufacturing and advanced energy management.
Hungary has positioned itself as the undisputed battery manufacturing and EV production epicentre of Europe. From massive investments in Debrecen (the CATL gigafactory) to BYD's expansion in Szeged and Audi's sprawling engine operations in Győr, the country is witnessing an unprecedented surge in demand for robust, industrial-grade power electronics.
These massive factories operate thousands of automated storage systems, laser cutters, robotic assembly arms, and quality inspection test chambers. Each of these critical nodes relies on precise, continuous direct current (DC) power. Supply interruptions or minor fluctuations can lead to production line downtime, costing thousands of Euros per minute. This requires heavy duty power supply units (PSUs) with active Power Factor Correction (PFC), ultra-low ripple noise, and high temperature tolerance.
Furthermore, Hungary's national energy grid is evolving rapidly to incorporate more localized solar power. Industrial operations are implementing localized Battery Energy Storage Systems (BESS) to buffer power demand and optimize energy costs under time-of-use pricing models. EVS Powers provides the critical link here: high-voltage AC-DC rectifiers and bidirectional DC-DC converters designed to interface directly between public distribution grids and storage cell matrices.
In compliance with European Standards EN 50160 for voltage characteristics in public distribution grids, all EVS power systems are engineered to withstand supply variations from 180V to 264V AC for single-phase networks, and up to 480V AC for three-phase systems, maintaining absolute stability.
A transparent look inside the Guangzhou EVS Powers factory showing how your industrial power modules are systematically produced and calibrated.
Our manufacturing philosophy balances automated speed with hands-on precision. Every batch of power supplies ordered by our European and Hungarian partners undergoes a rigorous, documentation-tracked sequence. We employ high-capacity winding machines to fabricate transformers with optimal winding coupling, reducing leakage inductance.
Component placement is executed using high-speed SMT lines, followed by selective wave soldering to guarantee solid joints that withstand mechanical vibrations in heavy industrial environments. We use high-purity conformal coatings and potting compounds to insulate circuits from conductive dust, moisture, and chemical vapor typical of heavy industrial zones like Miskolc and Székesfehérvár.
EVS Powers operates a state-of-the-art laboratory to verify transient response, insulation safety, and environmental adaptability before shipment.
Every single power supply unit marked for shipment to European ports must clear our multi-stage testing procedure. We test for electrical insulation dielectric strength (AC high-potential testing) to prevent hazardous leakage currents. Constant temperature and humidity environmental chambers simulate the worst-case winter environment in Hungary (-20°C) and hot summer factory conditions (+55°C) to track component thermal fatigue.
By investing in localized testing infrastructure, EVS guarantees MTBF (Mean Time Between Failures) metrics exceeding 100,000 operational hours under continuous full-load environments.
Explore the full selection of high-efficiency rectifiers, switching power systems, and power converters available for custom integration.
Designed for modern telecommunication hubs and power transmission stations in Hungary, achieving high power density with 95% conversion efficiency.
Equipped to handle variable inputs, this module provides 3000W of reliable power for manufacturing machinery and plating applications.
Designed for relay control panels and automation setups, adapting 230V AC grid standard into reliable 110V DC.
Engineered for localized micro-hydro setups and run-of-the-river clean energy projects operating across rural Hungarian water networks.
Features customizable charging curves optimized for LiFePO4 battery chemistries deployed in electric material handling vehicles.
Space-saving design that integrates into telecom cabinets, distributed power frameworks, and control chassis.
Flexible rack-mount converter system offering configurable amp settings, minimizing hardware variation in large operations.
A heavy-duty converter designed for high-current industrial machinery, providing steady voltage conversion in production environments.
Optimized for stepping up voltage to run auxiliary lines, machinery starters, and high-voltage DC components.
Standard din-rail/panel mount SMPS providing clean, low-noise control voltage for industrial PLCs and process instruments.
Translates fluctuating industrial DC bus voltage down to clean, regulated 150VDC output for motor drives and heavy instrumentation.
Protects control loops and PLCs in smart grid setups, providing seamless transition from AC to backup battery banks during anomalies.
Streamlining the supply chain from our Guangzhou factory directly to Hungarian assembly lines.
At EVS Powers, we understand that product quality is only half the battle. European procurement managers require seamless logistics, clear certification pathways, and responsive after-sales assistance. All EVS products conform to safety, EMC, and environmental standards required by the EU, including CE, RoHS, and EN 62368-1.
Our strategic location in Guangzhou allows us to dispatch consolidated shipments via cost-effective freight routes: rail transit via the Belt & Road initiative directly arriving at Central European terminals, or rapid air cargo to Budapest Liszt Ferenc International Airport. We provide complete customs documentation, HS coding, and declaration forms to prevent import delays.
EVS Powers is actively developing next-generation converters to align with Europe's net-zero mandates and green energy roadmaps.
The next decade of power electronics belongs to wide-bandgap (WBG) semiconductors: Silicon Carbide (SiC) and Gallium Nitride (GaN). Compared to traditional silicon MOSFETs, SiC allows power modules to switch at higher frequencies, drastically reducing the physical size of magnetic components (inductors and transformers) while boosting conversion efficiency to 98% and higher.
For our partners in Hungary, this means the footprint of battery test rigs, factory switching stations, and DC fast chargers will shrink by up to 40%, generating significantly less waste heat. EVS is investing in active bidirectional topologies. Instead of merely converting power down for batteries, our upcoming systems will allow vehicle-to-grid (V2G) and battery-to-grid (B2G) energy feedback, enabling industrial facilities to feed power back to the grid during peak pricing windows.
Get quick answers to common technical, logistics, and compliance inquiries from procurement managers in Central Europe.