2

year

Follow us :

Sodium Ion Battery|Battery For Electric Vehicles

Sodium Ion Battery|Battery For Electric Vehicles
Sodium Ion Battery|Battery For Electric VehiclesSodium Ion Battery|Battery For Electric VehiclesSodium Ion Battery|Battery For Electric VehiclesSodium Ion Battery|Battery For Electric VehiclesSodium Ion Battery|Battery For Electric Vehicles
group name
Sodium Battery for Electric Vehicle
Min Order
10 piece
brand name
E-lary Custom Battery & Solar Energy Storage Maker
model
LY23091205 Sodium Ion Battery
Nearest port for product export
Ningbo
Delivery clauses under the trade mode
FOB, CFR, CIF, EXW
Acceptable payment methods
T/T
update time
Thu, 21 Nov 2024 18:08:00 GMT

Paramtents

  • Capacity 48Ah

  • Voltage 24V

  • Operating Temperature -40℃~60℃

  • Cycle Life ≥ 3000 Cycles

  • Usage Logistic Vehicle

  • Color Black/or customized

Packging & Delivery

  • 55cm x35cm x30cm
  • Min Order10 piece

Briefing

Sodium Batteries|Types Batteries Used In Electric Vehicles|A New Energy Battery

Detailed

  • Features
  • Tech Specs
  • Faq
  • About Factory
E-lary 24V 48Ah sodium batteries for electric vehicles

E-lary 24V 48Ah Sodium Batteries For Electric Vehicles

Logistics vehicles sodium ion batteries are rechargeable battery packs designed for use in logistics and transportation applications. These batteries are used to power electric or hybrid logistics vehicles, replacing or supplementing traditional internal combustion engines.

Why We choose E-lary 24V 48Ah Sodium Batteries For Electric Vehicles

Delivery logistics vehicles using sodium-ion batteries have the potential to reduce operating costs and dependence on fossil fuels while helping to reduce environmental impact

Why We choose E-lary 24V 48Ah Sodium Batteries For Electric Vehicles

Advantages of E-lary 24V 48Ah Sodium Batteries For Electric Vehicles

How Does E-lary 24V 48Ah Sodium Batteries For Electric Vehicles Work

E-lary 24V 48Ah Logistics Vehicles Sodium Ion Battery Application Scenario

E-lary 24V 48Ah Sodium Batteries For Electric Vehicles  Application Scenario 1
Larger capacity: composed of high energy density sodium ion battery cells

Sodium-ion batteries generally have a large energy storage capacity, which means they can provide a longer driving range on a single charge, which is very useful for logistics vehicles that need to travel frequently and make multiple deliveries.

Battery Life Cycle: Sodium-ion batteries typically have a long battery life cycle
The battery life cycle of sodium-ion batteries can be over thousands of charge and discharge cycles, which is typically higher than some other types of batteries, such as lead-acid batteries. This makes them suitable for applications requiring long-term, sustained energy storage, such as logistics vehicles. They can withstand more charge and discharge cycles and are suitable for use in highly used logistics vehicles.
E-lary 24V 48Ah Sodium Batteries For Electric Vehicles  Application Scenario 2
E-lary 24V 48Ah Sodium Batteries For Electric Vehicles Application Scenario 3
Temperature control: Sodium-ion batteries have excellent low-temperature resistance.
The performance and life of lead-acid and lithium batteries can be compromised under extreme temperature conditions. However, sodium batteries have better low-temperature resistance and can be charged and discharged at -20 degrees Celsius to -40 degrees Celsius, which can better ensure that logistics vehicles can drive longer in extremely cold areas and cold weather.
Resource sustainability: sodium resources are more abundant
Sodium is one of the most abundant elements on Earth and is easier to obtain than rare resources such as lithium. This allows the manufacture of sodium batteries to be independent of limited lithium resources, thereby reducing competition for limited resources and the environmental impact of mining activities.
E-lary 24V 48Ah Sodium Batteries For Electric Vehicles Application Scenario 4

E-lary 24V 48Ah Sodium Batteries For Electric Vehicles  Parameter

Parameter
Product Size
465×228×86mm
Solar/DC input
24V
Car charger port/DC output port
48Ah
Max continuous charging current
100Ah
Max continuous Discharging current
100Ah
IP
IPX7
Battery
Lithium iron phosphate
Cycle Life
≥ 3000 Cycles
Operating temperature
-40°C~60°C
Charging temperature
0~45°C
E-lary Company Profile Of Sodium Batteries For Electric Vehicles
E-lary Company Profile Of Sodium Batteries For Electric Vehicles
E-lary Company Profile Of Sodium Batteries For Electric Vehicles
Why choose to use sodium batteries in logistics vehicles?
Sodium batteries can provide long driving range and are suitable for logistics applications that require frequent driving and multiple deliveries. They also have relatively long battery life, helping to reduce maintenance and battery replacement costs. In addition, the resource sustainability and lower environmental impact of sodium batteries also make them a viable option.
What factors need to be considered when using sodium batteries in logistics vehicles?
When considering sodium batteries, you need to consider charging infrastructure, vehicle performance, temperature control, maintenance requirements and whether the weight and volume of the battery are appropriate for the vehicle design.
How to choose the appropriate sodium battery model and capacity?
Choosing the appropriate sodium battery model and capacity depends on the range needs, load requirements and performance needs of your logistics vehicle. It is best to consult the battery manufacturer or a professional engineer for custom recommendations.
How does the price of sodium batteries compare to other battery technologies?
Sodium batteries are generally relatively low-priced, making them an attractive option, especially in large-scale applications. However, the specific price depends on battery model, capacity and supply market factors
What factors need to be considered when using sodium batteries in logistics vehicles?
When considering sodium batteries, you need to consider charging infrastructure, vehicle performance, temperature control, maintenance requirements and whether the weight and volume of the battery are appropriate for the vehicle design.