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Floor standing LiFePO4 lithium battery 48V

48V Lithium Battery

Floor standing LiFePO4 lithium battery 48V

ENSMAR Coeus-series 48V edition ideal for new installation of household energy storage. With high energy density and multiple mounting ways, floor standing battery is space-saving for all kinds of installation. What’s more, they are moveable with wheels among various rooms, gardens, balconies, and courtyards, and supply power to devices nearby. 

  • ENSMAR Coeus 48100 LiFePO4 battery 5KWh 48V100Ah, floor stand
  • ENSMAR Coeus 48150 LiFePO4 battery 7.68KWh 48V150Ah, floor stand
  • ENSMAR Coeus 48200 LiFePO4 battery 10KWh 48V200Ah, floor stand
  • ENSMAR Coeus 48280 LiFePO4 battery 14.336KWh 48V280Ah, floor stand
  • ENSMAR Coeus 48300 LiFePO4 battery 15KWh 48V300Ah, floor stand

Product features

▶ Self-designed BMS, every battery module is equipped with a standalone one;

 Top brand Grade A LiFePO4 battery cells, prismatic, top class safety;

 Compatible with multi-brand storage inverters;

 Powerful parallel capacity, up to 16 parallels;

 Long cycle life energy storage battery (6000 times)

 Moveable among various rooms, gardens, balconies, and courtyards, and supply power to devices nearby

▶ Certification of IEC62619, UN38.3, CEC approved etc

Technical Description

MODEL

Coeus 48100

Coeus 48150

Coeus 48200

Coeus 48280

Coeus 48300

Battery Type

LiFePO4 (lithium iron phosphate battery)

Nominal Capacity

100Ah

150Ah

200Ah

280Ah

300Ah

Nominal Voltage

51.2V

Total Energy

5120

7680Wh

10240Wh

14336Wh

15360Wh

Charge Cut-off Voltage

57.6V

Disharge Cut-off Voltage

40V

Charge Current

100A max

150A max

200A max

150A max

150A max

Discharge Current

100A max

150A max

200A max

150A max

150A max

Communication Mode

RS485, CAN

Ingress Protection

IP20

Scalability

max 16pcs in parallel

Lifespan (80% DOD)

≥6000 cycles, 25°C

Compatible Inverters

Goodwe, Victron, SMA, Kosta, Fronius, Solis, Growatt, Sofar, Deye, Solar Ark, Outtback, Voltronic, Pylontech optional, more brands will be announced

Working Environment

-20°C-60°C, < 95% RH

Storage Environment

-20°C〜50°C, < 95% RH

Operating Altitude

<2000m

Design Life

15 years

Warranty Period

5 years, 10years optional

Tips About Lithium Battery

How to deploy energy storage system for our house?

Choosing the right battery for a house inverter involves considering several factors to ensure compatibility, efficiency, and reliability. Here’s a step-by-step guide to help you make an informed decision:

1. Determine Power Requirements
A. Calculate Load
● List Appliances: Identify all the appliances you plan to run on the inverter.
● Power Consumption: Note the power consumption (in watts) of each appliance.
● Total Load: Sum up the power consumption of all appliances to determine the total load.
B. Inverter Rating
● Check Inverter Capacity: Ensure your inverter can handle the total load. The inverter’s capacity should be slightly higher than the total load to account for any power surges.

2. Battery Capacity
A. Determine Backup Time
● Desired Backup Time: Decide how many hours of backup you need.
B. Calculate Battery Capacity
● Formula: Battery Capacity (Ah) = Total Load (W) X Backup Time (hours) / Inverter Efficiency X Battery Voltage (V)
● Example: For a total load of 500W, 5 hours of backup, 90% inverter efficiency, and a 12V battery:
Battery Capacity = (500*5) / (0.9*12)≈ 231 Ah

3. Battery Type
A. Lead-Acid Batteries
● Flooded Lead-Acid: Cost-effective, but require regular maintenance and ventilation.
● Sealed Lead-Acid (AGM/Gel): Maintenance-free, more expensive, suitable for indoor use.
B. Lithium-Ion Batteries
● Advantages: Longer lifespan, higher efficiency, maintenance-free, lighter weight.
● Disadvantages: Higher initial cost.
C. LiFePO4 (Lithium Iron Phosphate) Batteries
● Advantages: Excellent thermal stability, long cycle life, high safety, and consistent performance.
● Disadvantages: Higher cost compared to lead-acid batteries.

4. Compatibility
A. Inverter Compatibility
● Voltage: Ensure the battery voltage matches the inverter’s voltage requirements (e.g., 12V, 24V, 48V).
● Capacity: Ensure the inverter can handle the battery’s capacity.
B. Battery Management System (BMS)
● Lithium Batteries: Ensure the battery has a BMS to manage charging, discharging, and cell balancing.

5. Space and Installation
A. Space Availability
● Space Constraints: Ensure you have enough space to install the battery, considering ventilation requirements for lead-acid batteries.
B. Installation Requirements
● Professional Installation: For large or complex systems, consider professional installation to ensure safety and optimal performance.

6. Budget
A. Initial Cost vs. Lifetime Cost
● Initial Cost: Compare the upfront costs of different battery types.
● Lifetime Cost: Consider the total cost over the battery’s lifespan, including maintenance and replacement costs.

7. Brand and Warranty
A. Brand Reputation
● Reputable Brands: Choose batteries from well-known and reputable brands to ensure quality and reliability.
B. Warranty
● Warranty Period: Check the warranty period and what it covers.

8. Environmental Factors
A. Temperature Range
● Operating Temperature: Ensure the battery can operate efficiently within the temperature range of your location.
B. Ventilation
● Ventilation Needs: Lead-acid batteries need proper ventilation to release gases.

Choosing the right battery for your house inverter involves assessing your power requirements, desired backup time, budget, and space constraints. Lead-acid batteries are cost-effective and suitable for basic needs, while lithium-ion and LiFePO4 batteries offer higher efficiency, longer lifespan, and maintenance-free operation at a higher initial cost. Ensure compatibility with your inverter and consider reputable brands with good warranties for reliability and peace of mind.

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