Motor Compatibility:Universal motor control for induction, servo & synchronous
Reliability:World-class reliability, backed by advanced design
Efficiency:Active front-end control for harmonic elimination & power regeneration
Flexibility:PLC elimination with scalable programmability via option modules
Connectivity:Standard field bus connectivity options for seamless integration
Safety:Certified worldwide including CE & UL standards
Experience unparalleled control and efficiency with the Emerson SP5402 Unidrive AC Motor Control Drive. Engineered for high-performance applications, this drive ensures smooth operation and minimal energy consumption, making it the ideal choice for industries requiring precision and reliability.
Built with world-class reliability at its core, the SP5402 is designed to withstand demanding environments, ensuring continuous operation and reduced downtime. Its advanced active front end control mode eliminates harmonics and optimizes power regeneration, enhancing overall system performance.
Featuring scalable programmability through option modules, the Emerson SP5402 is compatible with various PLC systems, allowing for seamless integration into existing control networks. This flexibility ensures compatibility with a wide range of automation solutions, supporting diverse industrial needs.
With onboard dynamic braking control and an optional dynamic braking resistor, the SP5402 ensures smooth transitions between operations, minimizing the risk of electrical shock and improving safety standards. Additionally, the built-in EMC filter safeguards against electromagnetic interference, maintaining signal integrity and system stability.
Certified with CE and UL standards, the Emerson SP5402 Unidrive AC Motor Control Drive complies with global safety regulations, providing peace of mind for users worldwide. Its compatibility with world-standard field bus connectivity options ensures easy integration with various communication protocols, enhancing operational flexibility and efficiency.
There are no reviews yet.