Grid Simulators

Grid Simulators

Validating grid-connected converters, inverters, and energy systems under programmable voltage, frequency, phase, and harmonic conditions

Validating grid-connected converters, inverters, and energy systems under programmable voltage, frequency, phase, and harmonic conditions

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Featured Grid Simulators

Featured Grid Simulators

Featured Grid Simulators

A wide range of high-voltage and programmable AC power supply features regenerative load technologies and available in form of benchtop unit, rack-mounted system and with the support of smart software to serve as grid simulators or to be integrated into ATE system.

A wide range of high-voltage and programmable AC power supply features regenerative load technologies and available in form of benchtop unit, rack-mounted system and with the support of smart software to serve as grid simulators or to be integrated into ATE system.

CORTEX AC Programmable Power Supply

CORTEX programmable AC Power Supply is a bidirectional and regenerative AC source-load designed in modular and rack-mount architecture, integrated with grid emulation and power hardware-in-the-loop (Power HIL) grid interaction functions for advanced disturbance and closed-loop validation.

TITAN Regenerative Grid Simulator

Ultimate high-power grid simulator with parallel master-slave connection capability for reaching 10 MVA power while uncompromising the performance and dynamics of the whole system. TITAN AC power grid simulator is among the most powerful, functional and flexible grid emulation systems on the market.

TITAN Regenerative AC Load Simulator

Utility-Scale testing platform with FPGA-based RLC modeling for grid impedance emulation and regenerative load capability for long-run high power sustainable source evaluation.

Why grid adaptability cannot be validated against live utility grids

Why grid adaptability cannot be validated against live utility grids

Why grid adaptability cannot be validated against live utility grids

Real-world power grids are complex, interconnected, and inherently non-linear, with operating conditions that are continuously influenced by fluctuating loads, distributed generation, and network-level disturbances. As a result, voltage, frequency, unbalance, and transient abnormalities are unavoidable in practical grid operation.


For manufacturers of grid-connected equipment, validating grid adaptability during the R&D phase cannot rely on direct access to live utility grids, which are often impractical, unsafe, and non-repeatable for systematic testing. Grid simulation therefore becomes essential, providing a controlled and repeatable environment to reproduce critical grid conditions and verify grid connectivity, robustness, and compliance before field deployment.

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