We support every stage of the project: from basic and detailed engineering to advanced electrical system simulation and on-site technical assistance.
Design and optimization of electrical and power systems for production plants.
Comprehensive electrical, automation and instrumentation solutions for chemical and O&G processes.
Design and detailed engineering for medium and high voltage power systems.
Solutions for distribution, switching, power control and reliable power supply.
Engineering applied to power generation plants and facilities.
Development of complete electrical models of facilities and electrical networks.
Comprehensive development of calculation reports, equipment sizing and construction drawings for the execution of low-voltage electrical distribution projects.
Preparation of technical documentation and engineering specifications for tender processes, equipment procurement, and execution of works and installations.
Design of systems for classified (hazardous) areas (explosion-proof / IECEx-ATEX systems), normal and emergency lighting engineering, and solutions for driving and controlling motor loads via direct-on-line starters (DOL), soft starters, and variable frequency drives (VFD).
Preparation of single-line diagrams, multi-wire diagrams, functional schematics, wiring diagrams and control logic diagrams.
Calculation and selection of conductors, busbars, power and metering transformers, power factor correction equipment, medium-voltage switchgear cells, high-voltage circuit breakers, battery chargers, battery bank sizing, etc.
Specification of sensors, actuators and final control elements for precise process variable measurement. Structuring of control loops, piping and instrumentation diagrams (P&ID) and signal mapping to optimize production lines.
By developing complete electrical models and creating digital twins of the network, we accurately analyze the behavior of facilities under various operating scenarios and contingency assessments.
Analysis of active and reactive power distribution to verify the system's operating requirements. It allows different load scenarios to be evaluated and the impact of future network expansions to be validated.
Determination of fault currents at different voltage levels to validate equipment interrupting capacity, define design criteria, and verify operational safety conditions. The results provide a reliable basis for equipment selection and protection system settings.
Analysis and sequencing of protective devices to ensure selective response to electrical faults, minimizing the impact on the facility's operational continuity. Includes validation of trip curves, relay settings and selectivity analysis between protective devices.
Evaluation of risks associated with electrical arcing through simulations that determine incident energy levels, protection boundaries and safety requirements for operating personnel. These studies are carried out under NFPA 70E and IEEE 1584 criteria, helping improve electrical safety and reduce risks during operation and maintenance tasks.
Simulation of network behavior under severe disturbances and transient events. Analysis of the electrical system's dynamic behavior during the start-up of large motors and generators, switching operations, and transient disturbances, evaluating their impact on facility stability.
Complete modeling of industrial electrical infrastructure in ETAP for power flow, selectivity and arc flash level assessments, applied for clients such as Cabot Argentina, Carboclor, agrochemical plants and corporate infrastructure in CABA.