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 FI H1P-(3-8)-220 Single Phase Low Voltage Hybrid Inverter

 FI H1P-(3-8)-220 Single Phase Low Voltage Hybrid Inverter

Residential small-scale PV inverter is a core power conversion device for household distributed photovoltaic systems, specifically designed for residential scenarios (typically with a power rating of 3-8kW). Its primary function is to efficiently convert direct current (DC) generated by solar panels into alternating current (AC) that is usable for household appliances and compatible with grid connection, while featuring voltage regulation, safety protection, and grid integration capabilities.

Residential small-scale PV inverter is a core power conversion device for household distributed photovoltaic systems, specifically designed for residential scenarios (typically with a power rating of 3-8kW). Its primary function is to efficiently convert direct current (DC) generated by solar panels into alternating current (AC) that is usable for household appliances and compatible with grid connection, while featuring voltage regulation, safety protection, and grid integration capabilities.

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Application

Residential small-scale PV inverter mainly covers scenarios such as residential rooftop power generation, surplus electricity grid-connection for revenue, supplementary power supply during grid instability, off-grid residential power supply, and auxiliary electricity use for small-scale commercial/agricultural operations. Tailored to Southeast Asia's climatic and power grid characteristics, it meets the needs of households and small-scale businesses for self-sufficiency in electricity and revenue generation.


Features

  • Generator-compatible to extend backup duration during grid power outage

  • Multiple inverters can operate together to form a microgrid

  • Supports dual backup ports for intelligent control of critical and non-critical loads

  • 10 seconds of 200% overload capability

  • Automatic switchover time is < 4ms, providing seamless transitions from grid to backup

  • Ensures excellent power supply stability, keeping the load unaffected by a weak grid or generator supply fluctuations

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