Designed for rigorous laboratory evaluation, industrial battery manufacturing, BMS validation, and energy storage system testing under extreme climatic conditions.
Industrial-grade battery cell & pack capacity testing platform delivering high-precision charge/discharge cycle analysis with automated logging.
Constant power programmable simulator designed for high-dynamic battery response emulation, featuring bidirectional capability and minimal ripple.
Compact electrochemical laboratory simulator providing stable micro-current and low-voltage curves for coin cell characterization and micro-sensor R&D.
Multi-channel DC power sourcing instrument for portable electronics, BMS board verification, and automated inline quality control stations.
Heavy-duty power processing platform engineered for electric vehicle drivetrain testing, utility-scale solar BESS emulation, and grid-tie compliance.
Ultra-low noise bipolar DC power supply with 100-240V AC universal input, optimized for fast recovery time and high-speed transient analysis.
Precision voltage source engineered for research institutes testing next-generation battery chemistries, solid-state cells, and cathode materials.
Isolated multi-cell simulator system designed for Battery Management System (BMS) validation, SOC estimation algorithm testing, and passive balancing analysis.
An technical overview of power supply selection, environmental adaptation, and regulatory compliance across Chile's key industrial sectors.
Chile presents a unique geographic operational profile. Mining facilities in regions such as Antofagasta, Tarapacá, and Atacama frequently operate at altitudes ranging from 2,500 meters to over 4,500 meters above sea level (ASL) (e.g., Chuquicamata, Collahuasi, and El Teniente). At these extreme elevations, air density drops significantly, directly diminishing the dielectric breakdown strength of air and impairing convection cooling efficiency.
Standard industrial DC power supplies engineered for sea-level operation experience premature thermal shutdown, insulation flashover, or fan failure when deployed in high-altitude Chilean sites. As an authoritative power source manufacturer, our high-power systems integrate custom insulation clearances in accordance with IEC 60664-1 altitude multiplier tables alongside modified thermal dissipation schemes. For megawatt-scale applications, water-cooled architectures (such as our liquid-cooled DC power platforms) bypass atmospheric derating completely, delivering 100% nominal power up to 5,000m ASL.
Under Chile’s National Energy Policy (Política Energética Nacional 2050), the country aims for 100% clean electricity generation by 2050, driven heavily by solar PV installations in the Atacama Desert and wind farms in the South. Consequently, the National Electrical System (Sistema Eléctrico Nacional - SEN) enforced under the regulatory framework of the Comisión Nacional de Energía (CNE) imposes stringent low-voltage ride-through (LVRT) and total harmonic distortion (THD) requirements on power electronics tied to the grid.
Our programmable DC power supplies and dynamic electronic loads utilize advanced current-fed power processing topologies. Unlike standard voltage-fed systems that utilize large capacitive energy banks, current-fed topologies store energy magnetically in input inductors. This inherently limits fault currents during sudden utility grid sags or rapid load fluctuations common in remote mining microgrids, guaranteeing continuous operational compliance without damaging connected capital equipment.
From lithium brine processing in Salar de Atacama to green hydrogen production in Magallanes, our equipment powers critical infrastructure.
Chile holds the world's largest economic lithium reserves. Under the Estrategia Nacional del Litio, domestic value-addition requires high-accuracy battery cell testers and BMS cell simulators. Our 24-channel isolated simulators allow Chilean research institutions (such as ANID and university laboratories in Santiago and Antofagasta) to emulate lithium-ion cell chemistry, balance strategies, and state-of-charge (SOC) algorithms with micro-volt precision.
The Atacama region benefits from the world’s highest solar irradiance (>3,000 kWh/m²). Testing grid-scale PV inverters and central Battery Energy Storage Systems (BESS) requires high-power programmable DC sources capable of simulating photovoltaic I-V curves. Utilizing integrated solar array simulation software, our equipment reproduces rapid cloud-cover transients and dynamic temperature variations to benchmark MPPT performance.
Chilean copper mining complexes are transitioning from diesel fleets to electric haul trucks and continuous electric belt systems. Testing high-voltage traction batteries, drive inverters, and fast-charging pantograph systems requires megawatt-class DC power supplies (150kW to 3MW+) with ultra-fast dynamic transient response (<1ms) to safely simulate heavy downhill regenerative braking dynamic loads.
With ambitious hydrogen export initiatives in Magallanes and Antofagasta, testing PEM and alkaline electrolyzers demands low-ripple, ultra-high current DC power systems. Our water-cooled ML platform provides scalable DC power up to 10MW, delivering pure DC energy to electrolyzer stacks without injecting damaging ripple frequencies that degrade membrane lifespans.
A commitment to vertically integrated manufacturing, robust design architecture, and uncompromised measurement fidelity.
Unlike traditional voltage-fed power supplies susceptible to capacitive discharge arcs, our current-fed switch-mode topology stores energy inductively. This grants inherent short-circuit survival, high immunity to inductive kickbacks from heavy industrial mining loads, and exceptional operational longevity.
Our electronic load series utilize a linear MOSFET control stage. Linear operation eliminates high-frequency switching noise injection into the device under test—crucial when conducting Electrochemical Impedance Spectroscopy (EIS) on battery packs, fuel cells, or solar arrays.
From precision sheet metal fabrication and custom magnetics winding to surface-mount PCB assembly and 100% full-power burn-in testing, our production process remains vertically integrated under one facility. This control enables reliable 4–6 week delivery times.
Answers regarding technical specifications, local voltage compatibility, customs, and high-altitude installation.