The MUST PV18-6048ECO 6000W hybrid inverter is a professional solution for off-grid power supply. The MUST PV18-6048ECO hybrid inverter is a powerful, multifunctional device that combines an inverter, MPPT solar controller, and battery charger. This 6000W, 48V model provides uninterruptible power through intelligent management of three energy sources: solar panels, AC power, and batteries. A key advantage of this inverter is its ability to operate without a battery, allowing direct use of solar panel or grid power. Ideal for backup power for homes, commercial properties, workshops, and industrial facilities, it addresses key needs: ensuring uninterruptible power during grid outages, saving on electricity bills thanks to the use of solar panels, and protecting connected equipment from power surges. - Versatility: combines inverter, MPPT controller and charger- Ability to operate without battery- Pure sine wave output for stable operation of sensitive electronics- Dual outputs for intelligent load management- Advanced monitoring and configuration via LCD display- Protection against overload, short circuit and deep discharge- Cold start function for low temperature operation- Compatible with lithium and lead-acid batteries- Supports communication with lithium batteries via CAN port- Built-in dustproof kit Specifications:• Nominal Power: 6000VA/6000W• Peak Power: 11000W• Battery System Voltage: 48V• Battery Mode Voltage: 230V±5%• Mains Input Voltage: 230V• Mains Voltage Range: 170-280V (UPS Mode)• Frequency: 50/60Hz (Automatic Sensing)• Maximum PV Voltage: 450V• MPPT Range: 60-360V• Maximum PV Charging Current: 100A• Maximum PV Power: 6000W• Mains Charging Current: 100A• Float Charge Voltage: 54.8V• Overcharge protection: 60 V• Transfer time: <10 ms• Inverter efficiency: 90-93%• Operating temperature: -10°C to +50°C• Communication interfaces: USB / WiFi / RS-485 / CAN• Dimensions: 318 × 454 × 122.5 mm• Weight: 9 kg• Protection class: IP20• Certification: CE The MUST PV18-6048ECO hybrid inverter is a professional solution for creating an efficient power supply system that provides reliability, configuration flexibility and optimal use of solar energy in various operating conditions.