- Lithium Golf Cart Battery
- Forklift Lithium Battery
-
48V
- 48V 210Ah
- 48V 300Ah
- 48V 420Ah (949 x 349 x 569 mm)
- 48V 420Ah (950 x 421 x 450 mm)
- 48V 456Ah
- 48V 460Ah (830 x 630 x 590 mm)
- 48V 460Ah (950 x 421 x 450 mm)
- 48V 460Ah (800 x 630 x 600 mm)
- 48V 460Ah (820 x 660 x 470 mm)
- 48V 500Ah
- 48V 560Ah (810 x 630 x 600 mm)
- 48V 560Ah (950 x 592 x 450 mm)
- 48V 600Ah
- 48V 630Ah
-
48V
- 12V Lithium Battery
12V 150Ah Lithium RV Battery
Bluetooth App | BCI Group 31
LiFePO4 Lithium
Discharge Temperature -20°C ~ 65°C
Fast Charger 14.6V 50A
Solar MPPT Charging - 24V Lithium Battery
- 36V Lithium Battery
- 48V Lithium Battery
-
48V LiFePO4 Battery
- 48V 50Ah
- 48V 50Ah (for Golf Carts)
- 48V 60Ah (8D)
- 48V 100Ah (8D)
- 48V 100Ah
- 48V 100Ah (Discharge 100A for Golf Carts)
- 48V 100Ah (Discharge 150A for Golf Carts)
- 48V 100Ah (Discharge 200A for Golf Carts)
- 48V 150Ah (for Golf Carts)
- 48V 160Ah (Discharge 100A for Golf Carts)
- 48V 160Ah (Discharge 160A for Golf Carts)
-
48V LiFePO4 Battery
- 60V Lithium Battery
-
60V LiFePO4 Battery
- 60V 20Ah
- 60V 30Ah
- 60V 50Ah
- 60V 50Ah (Small Size / Side Terminal)
- 60V 100Ah (for Electric Motocycle, Electric Scooter, LSV, AGV)
- 60V 100Ah (for Forklift, AGV, Electric Scooter, Sweeper)
- 60V 150Ah (E-Motocycle / E-Scooter / E-Tricycle / Tour LSV)
- 60V 200Ah (for Forklift, AGV, Electric Scooter, Sweeper)
-
60V LiFePO4 Battery
- 72V~96V Lithium Battery
- Rack-mounted Lithium Battery
- E-Bike Battery
- All-in-One Home-ESS
- Wall-mount Battery ESS
-
Home-ESS Lithium Battery PowerWall
- 24V 100Ah 2.4kWh PW24100-S PowerWall
- 48V 50Ah 2.4kWh PW4850-S PowerWall
- 48V 50Ah 2.56kWh PW5150-S PowerWall
- 48V 100Ah 5.12kWh PW51100-F PowerWall (IP65)
- 48V 100Ah 5.12kWh PW51100-S PowerWall
- 48V 100Ah 5.12kWh PW51100-H PowerWall
- 48V 200Ah 10kWh PW51200-H PowerWall
- 48V 300Ah 15kWh PW51300-H PowerWall
PowerWall 51.2V 100Ah LiFePO4 Lithium Battery
Highly popular in Asia and Eastern Europe.
CE Certification | Home-ESS -
Home-ESS Lithium Battery PowerWall
- Portable Power Stations
How Rack Mount LiFePO4 Batteries Provide Advantages for Efficient Energy Storage
Rack mount LiFePO4 batteries offer numerous advantages for energy storage solutions, making them ideal for applications in data centers, telecommunications, and renewable energy systems. Their compact design, high energy density, and enhanced safety features provide efficient power management while maximizing space utilization.
What are the advantages of rack mounting LiFePO4 batteries?
Rack mounting LiFePO4 (Lithium Iron Phosphate) batteries provides several key benefits:
- Space Efficiency: By utilizing vertical space, these systems reduce the physical footprint required for power storage.
- Scalability: Modular designs allow for easy expansion as energy needs grow.
- Enhanced Performance: High energy density leads to longer runtimes and more efficient power usage.
These advantages make rack-mounted LiFePO4 batteries a preferred choice for modern energy solutions.
Chart: Key Advantages Overview
Advantage | Description |
---|---|
Space Efficiency | Maximizes vertical space usage |
Scalability | Easily expandable to meet growing energy demands |
Enhanced Performance | Higher energy density results in longer runtimes |
How does rack mounting improve space efficiency?
Rack mounting significantly improves space efficiency by allowing multiple batteries to be stacked vertically within a standard server rack. This design minimizes the ground area required for battery storage, making it particularly beneficial in environments with limited floor space, such as data centers and telecommunications facilities.
See also What is a UPS Rack Mount? A Comprehensive Guide to Understanding and Installing UPS Systems
Chart: Space Utilization Comparison
Configuration | Traditional Battery Setup | Rack-Mounted Setup |
---|---|---|
Footprint Required | Large | Small |
Vertical Space Usage | Minimal | Maximized |
Why is high energy density significant in LiFePO4 batteries?
High energy density is a critical feature of LiFePO4 batteries, allowing them to store more energy in a smaller volume compared to traditional lead-acid batteries. This characteristic enables longer runtimes and reduces the need for frequent recharging, which is essential for applications requiring continuous power supply.
Chart: Energy Density Comparison
Battery Type | Energy Density (Wh/L) |
---|---|
LiFePO4 | 120-150 |
Lead-Acid | 30-50 |
How does longevity and durability impact battery systems?
Longevity and durability are vital factors in battery performance. Rack mount LiFePO4 batteries typically have a lifespan exceeding 6000 cycles, significantly outlasting traditional lead-acid options. This extended lifespan translates into lower replacement costs and reduced maintenance efforts over time, making them a cost-effective solution.
Chart: Lifespan Comparison
Battery Type | Average Lifespan (Cycles) |
---|---|
Rack Mount LiFePO4 | ≥6000 |
Lead-Acid | 300-500 |
How do rack-mounted batteries enhance cooling and ventilation?
Rack-mounted designs facilitate better airflow around each battery unit, promoting effective heat dissipation. Proper cooling is crucial for maintaining optimal operating temperatures, which enhances performance and prolongs battery life. This feature eliminates the need for additional cooling equipment, reducing overall operational costs.
Chart: Cooling Efficiency
Design Type | Cooling Efficiency |
---|---|
Rack-Mounted | High |
Traditional | Moderate |
What are the installation and maintenance benefits of rack-mounted systems?
Rack-mounted systems simplify both installation and maintenance processes:
- Ease of Installation: Batteries are designed to fit seamlessly into standard racks, allowing for quick setup.
- Accessibility: Rack-mounted units are easily accessible for routine checks and maintenance tasks.
- Reduced Downtime: Simplified maintenance procedures minimize operational interruptions.
These benefits contribute to overall system efficiency and reliability.
Industrial News
The demand for efficient energy storage solutions continues to rise as industries increasingly adopt renewable technologies. Recent advancements in lithium battery technology have led to improved performance metrics, including faster charging capabilities and enhanced safety features. Companies like LEMAX are at the forefront of this trend, providing innovative solutions that integrate seamlessly with existing infrastructures while promoting sustainability.
Redway Power Expert Views
“Rack mount LiFePO4 batteries represent a significant advancement in energy storage technology,” states a Redway Power expert. “Their combination of high efficiency, safety features, and scalability makes them an ideal choice for businesses looking to enhance their operational resilience while embracing sustainable practices.”
FAQ Section
Q1: What is a rack mount LiFePO4 battery?
A1: A rack mount LiFePO4 battery is a lithium iron phosphate battery designed to be installed in standard server racks, optimizing space utilization while providing efficient power storage.Q2: How long do these batteries last?
A2: Rack mount LiFePO4 batteries typically last over 6000 cycles, significantly longer than traditional lead-acid batteries.Q3: Are there safety features included?
A3: Yes, these batteries come equipped with advanced Battery Management Systems (BMS) that monitor temperature, voltage, and current to ensure safe operation.Q4: Can I expand my system with additional batteries?
A4: Yes, the modular design allows users to easily add more units as their energy needs grow.Q5: In what applications can these batteries be used?
A5: They are suitable for data centers, telecommunications, renewable energy systems, industrial applications, and more.