Simplifying and Efficiently Managing Complex Power Systems with Standardized Controls
Maximize reliability and safeguard your assets with proven quality and advanced redundancy features
designed to eliminate single points of failure, even in extreme environmental conditions.
The innovative control architecture streamlines the management of complex systems,
including utility feeds, tie breakers, and load-sharing networks.
Leveraging globally standardized controls ensures greater flexibility,
accelerates planning and commissioning, and optimizes manufacturing and inventory management processes.
Simplifying Complexity
› Streamlined commissioning with a powerful
configuration and simulation + emulation tools.
› Combines multiple functions (synchronization,
protection, AVR, configurable PIDs for process control,
genset automation, load and power factor control) into
one controller, enabling streamlined design.
› Simplifies the integration of small-scale microgrids and
optimizes large-scale systems through collaboration with
Woodward's easYi product. (Photovoltaic, Batteries,Gensets, …)
› Use the device's flexibility to simplify and standardize
switchboard layouts across diverse applications.
Saving Time and Resources
› On-site configurability, real-time configuration during
operation, and efficient power system trouble-shooting
reduce delays from custom software requirements.
› Drop-in replacement for legacy systems minimizes
upgrade time and effort.
› Remote monitoring and control via secure cloud interfacing
speeds up remote troubleshooting.
(utilizing 3rd party devices)
Expanding Application Possibilities
› Open System Design for a seamless interaction with
most standard PLCs.
› customize the operation sequences and adapt them to specific needs
› Functions with all speed governors and voltageregulators
› Precise measurements with Class I accuracy for true RMSpowersensing Reducing Costs
› Lifecycle savings with proven, globally supported control standards.
› Eliminates need for external PLC modules with
integrated logic and analog management.
› Long-term reliability, combined with the prolonged
availability of controllers and spare parts through an
extended Product Life Cycle, reduces replacement and repair costs.
› Standardized controls for all engines and energy sources lower upfront investment.
› Globally standardized control (e.g. with 14 standard
languages and customizable language options).
Ensuring Reliability and Durability
› Advanced asset protection for engines, generators, and utility grids.
› Robust design with conformal coating and galvanic isolation for harsh environments.
› Multi-mastering, redundant communication, and
redundancy functionality ensure seamless transfer of
primary control to the standby controller in the event of
a failure, enabling uninterrupted operation. This
enhances control system uptime, prevents engine spin
down, and eliminates single points of failure.
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