Features Of Three-Phase Hybrid Inverters

Jun 24, 2026 Leave a message

Functional integration and flexible energy management
Multi source energy management: integrates interfaces between photovoltaics, energy storage batteries, the power grid, and loads to achieve bidirectional energy flow (photovoltaics prioritize load supply, surplus electricity is charged into the battery, and when the battery is insufficient, it is recharged by the power grid or battery).
Multi mode operation: Supports grid connected mode (surplus power grid connection, self use, peak shaving and valley filling) and off grid mode (microgrid, emergency backup power), and supports seamless switching in milliseconds to ensure critical loads are not powered off (UPS function).
Intelligent scheduling: Equipped with an EMS (Energy Management System), it can automatically optimize charging and discharging strategies based on electricity pricing strategies, usage habits, and grid status, achieving maximum revenue.
Strong adaptability between power quality and power grid
High output power quality: low harmonic distortion of output current (<3%), adjustable power factor, supports three-phase independent control, can adapt to three-phase unbalanced loads, and is friendly to the power grid.
Good compatibility with the power grid: It has high/low voltage crossing, islanding protection, black start and other power grid adaptation functions, supports diesel generator access, and can be used as the core of a solar energy storage microgrid to adapt to areas without or with weak power grids.
High system compatibility and scalability
Wide voltage/wide power adaptation: Supports a wide range of MPPT voltages (suitable for low light, component obstruction) and wide range battery voltages, compatible with mainstream photovoltaic modules and lithium/lead-acid batteries.
Flexible expansion: Supports parallel connection of multiple machines (both AC and DC sides can be connected in parallel), with flexible power selection to meet the expansion needs of different scales (household, small and medium-sized industrial and commercial).
Efficient and highly reliable
High conversion efficiency: The overall conversion efficiency of the machine can reach over 97.8%, with low standby power consumption and long-term operation that saves energy and reduces consumption.
High protection and high overload: with high protection levels such as IP65/IP66, suitable for harsh environments such as outdoor, high salt spray, and high altitude; Capable of high overload capacity (such as 150% instantaneous overload), suitable for load shock conditions.
Hardware optimization: Adopting three-level topology (such as TNPC) or wide bandgap semiconductor (such as SiC) to reduce switching losses, improve power density and system reliability.
Intelligence and ease of maintenance
Intelligent monitoring: supports local LCD/LED display and remote cloud monitoring (WiFi/4G), real-time viewing of operating data, supports remote firmware upgrade (OTA) and fault warning.
Easy to maintain design: modular design, supports pre maintenance, convenient wiring, reduces operation and maintenance costs.