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3V 50Ah Na Battery Supplier Sodium-Ion Battery Cells For Storage Energy
Place of Origin | CHINA |
---|---|
Brand Name | EA ENERGY |
Certification | CE MSDS UN38.3 |
Model Number | Na Battery 50Ah |
Minimum Order Quantity | 1PCS |
Price | Negotiable |
Packaging Details | 148*102*40mm 1pcs / carton GW: 1.12kg |
Delivery Time | 1-5 Work days |
Payment Terms | T/T, Western Union, MoneyGram, T/T, D/P |
Supply Ability | 100000pcs Per Day |
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xModel | Na 3V 50Ah | Cell Type | Na Battery |
---|---|---|---|
Impedance | <0.5mΩ | Voltage | 1.5~3.9V |
Capacity | 50Ah | Standard Charge Current | Constant Current 0.5C |
Standard Discharge Current | Constant Current 1C | Cycle Life | >4000 Cycles |
Certifications | CE /UL/UN38.3/ MSDS | Diameter | 148mmL*102mmH*40mmW |
Highlight | 3V 50Ah Na Battery,Na Battery For Storage Energy,3V 50Ah Sodium-Ion Battery Cells |
3V 50Ah Na battery supplier Sodium-ion Battery Cells best for storage energy
3V 50Ah Na battery details:
1. Diameter*Height: 148*102*40mm
2. Nominal Voltage: 3V
3. Nominal Capacity: 150Wh
4. Cycle life: 4000 cycles
5. Standard charging ways: CC / CV
6. Li-ion / Lithium Ion rechargeable Na battery
7. CE , UL ,UN38.3 , MSDS compliant
3V 50Ah Sodium-ion Battery battery Specifications:
Product Name
|
3V 50Ah Sodium-ion Battery Cell
|
Nominal Voltage
|
3V
|
Nominal capacity
|
50AH
|
Min capacity
|
50AH
|
Nominal energy
|
150WH
|
Dimension(L*W*H, MM)
|
148*102*40mm
|
weight
|
1.2KG
|
Material
|
Na sodium-ion |
End Of Charge Voltage
|
3.9V
|
End Of Discharge Voltage
|
1.5V
|
Continuous charge current
|
50A
|
Continuous discharge current
|
50A
|
Max pulse discharge current
|
150A
|
Internal resistance
|
0.6mΩ
|
Operating temperature(charge)
|
-30°C ~ 55°C
|
Operating temperature(discharge)
|
-30°C ~ 55°C
|
Storage temperature
|
-40°C ~ 60°C
|
Cycle lfe(25°C@50%DOD,0.2C)
|
6000 times
|
Cycle lfe(25°C@80%DOD,0.2C)
|
4000 times
|
Cycle lfe(25°C@100%DOD,1C)
|
2000 times
|
Certifications
|
UL/CE/UN38.3/MSDS
|
3V 50Ah Sodium-ion Battery battery Description:
Sodium batteries, as an alternative to lithium batteries, possess several distinctive characteristics.
Firstly, sodium is more abundant and widely available than lithium, making it a cost-effective option for large-scale energy storage applications. Additionally, sodium batteries are considered safer due to their lower risk of thermal runaway and reduced susceptibility to dendrite formation.
Compared to lithium batteries, sodium batteries offer certain advantages. They have a higher energy density, enabling them to store more energy per unit volume or weight. Sodium batteries also exhibit better performance at high temperatures, making them suitable for applications in hot climates or demanding environments. Moreover, sodium batteries have a longer cycle life, meaning they can endure a greater number of charge-discharge cycles without significant capacity degradation.
In terms of application scope, sodium batteries are well-suited for grid-level energy storage systems, where their cost-effectiveness and scalability are highly advantageous. They can also be utilized in renewable energy integration, electric vehicles, and off-grid power systems, contributing to the transition towards clean and sustainable energy solutions.
Looking ahead, the future development of sodium batteries is promising. Ongoing research focuses on enhancing their energy density, further improving safety features, and optimizing manufacturing processes to reduce costs. With continued advancements, sodium batteries are expected to play a crucial role in supporting the growth of renewable energy, enabling efficient energy storage, and driving the electrification of transportation.
3V 50Ah Sodium-ion Battery battery Products Details :
3V 50Ah Sodium-ion Battery battery Applications:
Sodium batteries have a wide range of applications in the field of energy storage. Here is a detailed description of sodium battery applications in different energy storage scenarios:
Renewable energy integration: Sodium batteries can effectively integrate renewable energy sources such as solar and wind power. By converting solar or wind energy into electricity and storing it in sodium batteries, we can provide stable power supply when solar or wind energy is not available. This helps to solve the intermittency problem of renewable energy and promote the sustainable development of clean energy.
Electric vehicles: Sodium batteries are also seen as a potential technology in the field of electric vehicles. Compared to lithium batteries, sodium batteries have a higher energy density, which means that electric vehicles can travel longer distances on a single charge. In addition, sodium batteries have better thermal stability and can provide more reliable performance in high-temperature environments.
Remote areas and off-grid systems: Due to the cost advantages and reliability of sodium batteries, they are widely used in remote areas and off-grid systems. These systems can provide stable power supply for areas without reliable grid access, meeting people's basic electricity needs.
In the future, with the continuous development of sodium battery technology, its application in the field of energy storage is expected to further expand. Researchers are working hard to improve the energy density of sodium batteries, reduce costs, and improve safety performance. This will promote the widespread use of sodium batteries in the field of energy storage, and promote the transition to clean energy and sustainable development.