
Anker SOLIX F3800 + Smart Home Power Kit
Equipment Type and Primary Applications: Residential energy storage system integrating utility feedlines and photovoltaic arrays. Configured for uninterrupted home backup, peak-demand offsetting, and dedicated electric vehicle or recreational vehicle charging.
Performance Specifications: - Continuous AC delivery: 6000 watts at 120V/240V split-phase - Expandable capacity: Scales to 12 kW output and 53.8 kWh total storage - PV array interface: 2400 Wdc maximum input rating - Recovery window: Achieves zero to eighty percent capacity in approximately ninety minutes under optimal solar irradiance - Electrical parameters: Operates within standard residential phase tolerance bands
Safety Features and Certifications: - Lithium iron phosphate electrochemistry provides inherent thermal stability - Integrated solid-state protection handles overload, short-circuit, and ground-fault isolation - Compliant with UL residential energy storage frameworks and standard grid-interconnection safety protocols
Installation and Maintenance Requirements: - Hardwires directly to supplied Home Power Panel and auxiliary subpanel using designated bus terminals - Footprint accommodates standard electrical enclosures - Commissioning entails breaker sequencing, wireless network pairing, and load assignment calibration - Maintenance schedule includes periodic conductor inspection, ventilation clearance verification, and automated firmware updates
Warranty and Service Information: Covers five years of mechanical and electronic faults under domestic use. Authorized service pathways enable remote diagnostics and component replacement. Support prioritizes rapid resolution for critical backup scenarios.
Branding/References: Manufacturer: Anker Innovations. Product identifier: SOLIX F3800 (A1790). Supplemented by engineered Home Power Panel and distribution Subpanel. Technical documentation follows published microgrid integration guidelines.
Differentiators: Consolidates dual 240V split-phase outputs within a single enclosure, eliminating external phase-match combiners and enabling synchronous power delivery to multiwire branch circuits during isolated island operations.