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5KW 51.2V 100Ah Stacked Home Lithium Storage Battery All In One Systems

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xVoltage | 51.2V | Capacity | 100Ah |
---|---|---|---|
Power | 5.12Wh | Customized Service | Support For Labeling |
Overcurrent Protection | Yes | Short Circuit Protection | Yes |
High Light | Stacked Home Lithium Storage Battery,5.12KWH Home Lithium Storage Battery,Lithium Energy Storage System |
Effortless 5KW 5.12KWH 51.2V 100Ah Solar Integration with Stacked All-in-One Systems
Quick Details of Stacked all in one energy storage system:
1. Fault Detection and Reporting
2. Quick and Easy Maintenance
3. User-Friendly Interface
4. Modular Design
5. High Energy Density
6. Fast Charging Capability
Specification:
Model |
5KW Stacked Energy Storage System |
BATTERY |
|
Battery Type |
LiFePO4 |
Battery Energy |
5120Wh |
Battery Capacity |
100Ah |
5KWH Energy Storage System Net Weight |
83kg |
5KWH Energy Storage System Net Dimension |
650*460*440mm |
Battery Rated Voltage |
51.2V (16S) |
Overcharge protection voltage |
58.4V |
Overdischarge protection voltage |
40V |
Maximum Charging Current |
80A |
Maximum Discharging Current |
100A |
Packing Part I Weight: Inverter + Base |
37kg |
Packing Part Il Weight: Battery |
53kg |
Packing Part I Dimension: Inverter + Base |
735*550*590mm |
Packing Part Il Dimension: Battery |
745*550*320mm |
DOD |
80% |
Designed Life-span |
3000 |
Four charging modes are optional |
Solar only, Mains priority, Solar priority, Hybrid charging |
Three output modes |
1.Mains priority mode: |
PV CHARGE |
|
Maximum PV Open-circuit Voltage |
500Vdc |
PV Working Voltage Range |
120-500Vdc |
MPPT Voltage Range |
120-450Vdc (Suggest:300-400Vdc) |
Maximum PV Input current |
18A |
Maximum PV Input Power |
5200W (Suggest:1500-2000W) |
Maximum PV Charing Current |
80A |
MAINS CHARGING |
|
Rated Input Voltage |
220/230Vac (v) 110/120Vac ( ) |
Input Voltage Range |
UPS Mains Mode: (170Vac~280Vac) ± 2% |
Mains Maximum charging Current |
60A |
Mains Charging Efficiency |
>95% |
INVERTER |
|
Output waveform |
Pure sine wave |
Rated output voltage |
230Vac (200 / 208 / 220 / 240Vac) (v) |
120Vac (100 / 105 / 110Vac) ( ) |
|
Rated Output Power |
5000W |
Maximum Peak Power |
10000VA |
Frequency |
60Hz |
Over temperature protection |
60°C - 70°C |
Number of parallel / split phases |
1 - 6 pieces |
On-load Motor Capacity |
4HP |
Maximum efficiency |
>90% |
No load loss |
Non Energy-saving Mode:<50W |
GENERAL DATA |
|
Storage time / temperature |
6 months @25°C; 3 months @35°C;1 month @45°C; |
Charging temperature range |
-10 ~ 55°C |
Discharging temperature range |
-10 ~ 55°C |
Operation Humidity |
5% ~ 95°C |
Noise |
60dB (A) |
Recommended Operation Environment |
Indoor |
Installation Method |
Horizontal |
Function of Stacked all in one energy storage system:
1. Renewable Energy Integration
2. Power Backup
3. Energy Storage
4. Energy Demand Management
5. Solar Self-Sufficiency
6. Grid Stability Enhancement
Application of Stacked all in one energy storage system:
- Residential energy backup during power outages
- Off-grid cabins or vacation homes
- Powering off-grid mobile medical clinics and facilities
- Backup power for museums and cultural institutions
- Powering remote wildlife habitat monitoring systems
- Powering outdoor sports stadiums and arenas
Product advantages:
The Stacked All-in-One Power Storage Method for solar power systems delivers a multitude of benefits, generating it a very effective and versatile solution for each residential and commercial applications.
Among the list of essential benefits is its complete functionality. The Stacked All-in-One Energy Storage Program integrates different components into a single unit, including battery modules, inverters, charge controllers, and monitoring systems. This all-in-one design and style streamlines installation, simplifies upkeep, and guarantees seamless compatibility between distinctive technique elements.
A further significant benefit is its higher power storage capacity. With many stacked battery modules, the technique can retailer a substantial quantity of power generated by solar panels. This ample storage capacity enables extended periods of power provide throughout instances of high demand or in the absence of sunlight, guaranteeing uninterrupted energy availability for critical loads.
The technique also boasts sophisticated power management capabilities. With integrated inverters and charge controllers, it optimizes energy conversion and utilization, maximizing the efficiency of energy transfer amongst the solar panels, batteries, and connected devices. The built-in monitoring technique delivers real-time data on power production, consumption, and storage, allowing customers to monitor and manage their power usage effectively.
Furthermore, the Stacked All-in-One Energy Storage Technique presents enhanced flexibility and scalability. Its modular design and style permits for uncomplicated expansion by adding extra battery modules as energy demands enhance. This scalability feature supplies flexibility for future upgrades and adjustments, enabling customers to adapt their power storage systems based on evolving demands.
The program prioritizes security with extensive protection mechanisms. It contains options for instance overcharge and over-discharge protection, short-circuit prevention, and thermal management systems. These security measures make certain the reputable and secure operation from the program, defending each the gear plus the customers.
Furthermore, the Stacked All-in-One Energy Storage Technique promotes sustainability by utilizing clean, renewable power. By efficiently storing and using solar energy, it reduces reliance on fossil fuels, mitigating carbon emissions and contributing to a greener and more sustainable energy future.
In summary, the Stacked All-in-One Power Storage Method combines comprehensive functionality, high energy storage capacity, sophisticated power management, flexibility, scalability, safety options, and sustainability. With its numerous positive aspects, it is actually an exceptional choice for people, businesses, and communities seeking a reliable, efficient, and environmentally-friendly power storage answer.
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