10KW 48V Hybrid Solar Inverter from China Suppliers - Pure Sine Wave, Max 180A Charging, Built-in MPPT Controller
10KW 48V Hybrid Inverter, Built-in MPPT Solar Controllers, Max 180A Battery Charging, AC Input/Output 120V/240V (settable), Pure Sine Wave Inverter (Parallel/WiFi/BMS COMM).
📋 Technical Specifications
Rated Output Power |
10.3KW |
Rated Voltage |
51.2V |
Nominal Capacity |
560Ah |
Rated Energy |
28.67KWh |
Battery Type |
Lithium Iron Phosphate Battery |
AC Input |
165-280VAC 50/60Hz |
Inverter Mode Output |
220VAC±2% / 230VAC±2% / 240VAC±2%, 50/60Hz±0.5% |
Maximum Photovoltaic Input Power |
12KW |
Solar Input Voltage Range |
80V–450VDC |
Maximum Photovoltaic Input Current |
180A |
Maximum AC Input Current |
120A |
Maximum Total Input Current |
180A |
Operating Temperature |
−10°C to 50°C |
Storage Temperature |
−15°C to 60°C |
Humidity |
0%–95%, non-condensing |
Product Size |
470 × 528 × 1172 ± 5mm |
🌍 Applications

This product is suitable for home emergency, remote areas with insufficient power supply, rural areas and farms, disaster relief and emergency, small commercial and industrial facilities, off-grid tourist facilities, areas with high power costs, remote monitoring and control stations, etc.
⭐ Product Advantages
1 10KW Solar Inverter
This is a solar inverter with both single-phase and split-phase functions. It is a new type of solar energy storage inverter control inverter that integrates solar energy storage and mains charging and energy storage, with AC sine wave output. It adopts DSP control and has the characteristics of fast response speed, high reliability and industrial standards through advanced control algorithms.

2 Lithium Iron Phosphate Power Battery
Built-in multiple lithium batteries with a maximum storage capacity of 28.67kWh, suitable for small families. 560Ah lithium iron phosphate (LiFePO4) battery can be charged and discharged for 6000+ deep cycles, which is 3 times longer than lead-acid batteries. Built-in 180A BMS can prevent overcharging, over-discharging, charging overcurrent, discharging overcurrent, short circuit, battery voltage self-balancing, and high-temperature discharge cutoff. Compared with ordinary batteries, it has higher energy density and longer cycle life, is compatible with various electrical and digital devices, and provides long-lasting power supply.

3 BMS Intelligent Lithium Battery Management System
BMS can monitor the voltage, temperature and current of the battery in real time to prevent problems such as overcharging, over-discharging, overheating and short circuit that may cause safety hazards. It can automatically adjust the working state of the battery when an abnormality is detected to reduce the risk of fire or explosion. By balancing the voltage of each battery cell, BMS can prevent the battery cells from aging prematurely due to uneven voltage, thereby extending the service life of the entire battery pack. Reasonable charge and discharge management can also reduce the number of cycles and deep discharge of the battery, further extending the life. It is very suitable for off-grid standby and self-powered use. It is widely used in homes, cabins, campers, RVs, etc., and can be used as a backup power source when the power grid is out of power.

4 Charging / AC Output Mode
4 AC Output Modes: Public priority output, Solar and public hybrid output, Solar priority output, Inverter priority output.
4 Battery Charging Modes: Hybrid charging, Public priority charging, Solar priority charging, Solar charging only.
4 Battery Charging Modes: Hybrid charging, Public priority charging, Solar priority charging, Solar charging only.

5 Customize Various Photovoltaic Energy Storage Applications
Photovoltaic energy storage systems are widely used in residential, commercial, agricultural and smart city scenarios by providing self-sufficient electricity, reducing electricity costs and supporting remote areas and emergency needs.
❓ Frequently Asked Questions
Q What is the maximum solar input power this hybrid inverter can handle?
The inverter supports a maximum photovoltaic input power of 12KW, with a solar input voltage range of 80V–450VDC and a maximum photovoltaic input current of 180A, making it suitable for large residential and small commercial solar installations.
Q How long can the built-in lithium iron phosphate battery last?
The 560Ah LiFePO4 battery supports 6000+ deep charge/discharge cycles, which is approximately 3 times longer than traditional lead-acid batteries. With proper BMS management and reasonable charge/discharge practices, the battery pack is designed for many years of reliable service.
Q What AC output voltage options are available?
The inverter supports AC output of 220VAC, 230VAC, or 240VAC (each ±2%), with a frequency of 50/60Hz (±0.5%). The AC input is configurable between 120–280VAC or 165–280VAC depending on your grid requirements.
Q What are the available working modes for this inverter?
The system offers 4 AC output modes (public priority, solar & public hybrid, solar priority, inverter priority) and 4 battery charging modes (hybrid charging, public priority charging, solar priority charging, solar charging only), giving users full flexibility to optimize energy usage based on their needs.
Q What protection features does the BMS provide?
The built-in 180A Battery Management System (BMS) provides comprehensive protection including overcharge protection, over-discharge protection, charging/discharging overcurrent protection, short circuit protection, battery cell voltage self-balancing, and high-temperature discharge cutoff — ensuring safe and stable operation at all times.
Q What scenarios is this 10KW hybrid inverter best suited for?
This inverter is ideal for a wide range of applications including home emergency backup power, rural homes and farms, remote areas with limited grid access, disaster relief, small commercial and industrial facilities, off-grid tourist accommodations, areas with high electricity costs, and remote monitoring stations.


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