The Deye HV Hybrid inverter is a cutting-edge, 3-phase solution designed to meet the demands of high-power residential and commercial solar energy systems. With a power rating of 50K, this inverter is engineered to efficiently manage solar power generation, battery storage, and grid interaction, ensuring reliable and sustainable electricity supply.
With a robust 50K power rating, the Deye HV Hybrid inverter delivers ample power to meet the needs of large-scale residential and commercial applications.
Integrates seamlessly with both solar PV panels and battery storage systems, allowing for efficient utilisation of solar energy and stored power.
Built for three-phase electrical systems, providing balanced power distribution and optimised performance in commercial and industrial settings.
Designed to work with lithium-ion battery technology, ensuring high energy density, long lifespan, and efficient energy storage capabilities.
Utilises Maximum Power Point Tracking (MPPT) technology to maximise energy harvest from solar panels, even in varying weather conditions.
Allows for grid connection, enabling excess energy to be exported to the grid or imported from the grid as needed, ensuring stable and continuous power supply.
Features intelligent charging algorithms to optimise battery charging and discharging, extending battery life and maximising system efficiency.
Offers remote monitoring and control capabilities through integrated communication interfaces such as RS485/RS232/CAN and optional GPRS/WIFI/Bluetooth/4G/LAN, allowing users to monitor system performance and adjust settings remotely.
Robust Protection Mechanisms:
Equipped with comprehensive protection features including surge protection, overcurrent protection, overvoltage protection, short circuit protection, and thermal protection, ensuring safe and reliable operation.
Designed to operate in a wide range of environmental conditions, with an operating temperature range of -40°C to +60°C and an IP65 ingress protection rating, making it suitable for various installation environments.