Application Scenarios:
>>Solar Self-Consumption Optimization
Stores excess solar power for use at night or during cloudy days, reducing grid reliance
>>Backup Power During Outages
Critical in areas with unreliable grids or extreme weather
>>Time-of-Use (TOU) Bill Management
Charges batteries during low-cost off-peak hours and discharges during expensive peak times.
>>Grid Services & Virtual Power Plants (VPPs)
Aggregated home batteries provide grid stability services.
>>Off-Grid & Energy Independence
Used in remote areas or by homeowners seeking full energy autonomy (often paired with solar/wind).
Frequently Asked Questions (FAQ):
Q: Which battery cells are your ESS adopted?
A:Our battery cells primarily use LFP (Lithium Iron Phosphate) chemistry, known for its safety, long cycle life, and cost-effectiveness, making it ideal for home energy storage applications. However, specific product lines may vary based on regional requirements or customer needs.
Q: What are the advantages of LFP batteries?
A:LFP (Lithium Iron Phosphate) batteries offer several key advantages, making them a top choice for our solutions:
>>Safety
Exceptional thermal/chemical stability; resistant to overheating or thermal runaway (critical for residential use).
>>Long Cycle Life
Typically 6,000+ charge/discharge cycles (vs. 1,000–2,000 for NCM), ensuring 10+ years of service.
>>Cost-Effectiveness
Lower raw material costs (no cobalt/nickel) and longer lifespan reduce long-term expenses.
>>Eco-Friendly
Non-toxic materials and easier recyclability compared to other batteries.
>>Performance
Stable power output even at low charge levels, ideal for daily solar self-consumption.
Q: What is the lead time for a standard battery ESS order?
A: The lead time typically ranges from 2 to 4 weeks, depending on the order quantity and placement date.
Q: What is the lead time for a custom battery ESS order?
A: The lead time typically ranges from 4 to 8 weeks, depending on the complexity and size of the requirement.
Q: How long can the EES keep devices running?
A: A practical example:
A 1,000 Watt microwave oven running for one hour at maximum power will consume 1.0 kWh. The same is true for a 10 Watt LED bulb when lit for 100 hours. So a fully charged ESS+ energy storage system of 1.0 kWh will be able to run the above mentioned microwave oven for 9.5 hours and the LED bulb will be able to burn for 95 hours given 5% SOC left.
Contact Us:
Ready to transform your life with our ESS solutions? Contact us today for a free consultation and quote. Our team of experts is here to assist you every step of the way.
Phone: +86 536 2112566
Empower your life with our state-of-the-art lithium energy storage system – where innovation meets cutting edge technology.