Description
Product Description
A 6 kW SVOLT-compatible solar inverter is a high-power hybrid inverter designed for residential or small commercial solar energy systems. Paired with SVOLT lithium-iron phosphate (LiFePO₄) batteries, these inverters manage energy from PV panels, grid, and batteries to supply AC electricity to loads, store excess solar energy, and provide backup power during outages. Typical implementations include 48 V or 51.2 V low-voltage battery banks like SVOLT 5.09–5.43 kWh modules. The inverter features pure sine wave output, built-in MPPT solar charge controller, battery charging and discharging logic, and communication interfaces for smart monitoring and control.
Technical Specifications (Bullet Form)
Power & Output
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Rated AC output power: 6000 W (6 kW) continuous (depends on specific inverter model).
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Output waveform: Pure sine wave for clean power quality.
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Surge capacity: ~1.5× rated power (varies by model).
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Output voltage: 230VAC nominal (single phase typical).
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Frequency: 50/60 Hz auto-detect (model dependent).
Solar (PV) Input & MPPT
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Integrated MPPT solar charge controller (built in most hybrid models).
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Maximum PV input power: ~7.5–8 kW (varies by inverter design).
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MPPT operating voltage range: ~120 VDC – 450 VDC typical.
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Max MPPT current per tracker: ~16–27 A depending on model.
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Solar charger current: up to ~100A in many designs.
Battery Compatibility
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Designed for 48 V or 51.2 V LiFePO₄ battery banks such as SVOLT modules.
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Battery charging current (AC charger): ~80–100A typical.
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Communication: CAN, RS485 for BMS integration with compatible batteries.
Efficiency & Protections
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High conversion efficiency (often > 95 %).
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Built-in protections: overload, short-circuit, over/under voltage, over-temperature, anti-islanding.
Monitoring & Communication
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Remote monitoring (Wi-Fi/GPRS or optional dongle) supported on many hybrid inverter models.
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LCD or app interface for system status and performance.
Installation & Environment
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Mounting: wall or bracket installation.
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Cooling: intelligent fan or convection (varies by model).
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Operating environment: typically -10°C to 60°C or similar (model dependent).
Applications
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Residential solar energy systems with battery storage.
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Small business hybrid solar systems.
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Backup power during outages.
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Self-consumption optimisation of PV generation.








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