BYD Blade Battery LFP 138Ah

SKU: BYD-Blade-138Ah

Original price was: $35.89.Current price is: $19.99.

44% Off

  • Comprehensive Door-to-Door Shipping Solutions.
  • International Seafreight to Destination Port. (Port of Discharge)
  • Air Freight, DDP(Delivered Duty Paid): 14~21 days, door-to-door.
  • Ocean Freight, FCA/FOB/CIF: Vary from 20 to 50 days depends on port of destination, port-to-port.
  • 12~36 Months Limited Warranty. (Excluding accident, misuse, abuse, neglect, unauthorized repairs or alterations, or normal wear and tear.)
1. Are lithium batteries considered hazmat for shipping?

Yes. Lithium batteries are classified as Class 9 Miscellaneous Dangerous Goods under international and national transportation regulations (such as the IATA DGR for air transport).
They are considered hazardous material (“hazmat”) for shipping because they pose a risk of:

  • Short Circuit: Which can lead to overheating.
  • Fire: If damaged, defective, or improperly packaged, they can catch fire.
  • Explosion: A fire can lead to a rapid release of energy.

Consequently, their shipment is strictly governed by specific packaging, labeling, documentation, and quantity restrictions based on the mode of transport (air, sea, ground).

2. Why is the shipping cost for lithium batteries higher?

Shipping costs for lithium batteries are high due to the significant risks and specialized handling they require.

The primary reasons are:

  • Hazardous Material (Dangerous Goods) Surcharges: Carriers add substantial fees to manage the inherent fire risk of lithium batteries.
  • Specialized Packaging: Mandatory use of non-conductive, fire-retardant, and damage-resistant packaging to prevent short circuits and thermal events.
  • Regulatory Compliance: Costs associated with required dangerous goods training, certified documentation, and specific labeling for each package.
  • Limited Carrier Options & Segregation: Fewer carriers accept lithium batteries, and they often must be stored separately, adding logistical complexity.

In short, the high cost directly reflects the safety measures needed to mitigate the risk of fire during transit.

In stock

BYD Blade Battery Specs
Technical Specs.
Nominal Capacity138Ah
Nominal Voltage3.2V
Battery ChemistryLFP (LiFePO4)
ManufacturerBYD
Charge Cut-off Voltage3.8V/Cell
Discharge Cut-off Voltage2.0V/Cell
Discharge ModeCC
Standard Discharge Current0.2C
Max. Continuous Discharge Current1.5C @23℃
Charge ModeCC
Standard Charge Current0.2C
Max. Continuous Charge Current1.5C @23℃
DCIR3.0±0.2mΩ @50%SOC, 1.5C, 30s
Cycle Life5000~5500 Cycles
Temp. Specs.
Charge Operating Temperature-10~50℃
Discharge Operating Temperature-20~55℃
Storage Temperature-20~35℃ @20%~60%SOC, <3 Months
-10~30℃ @30%~60%SOC, <12 Months
Storage Humidity5%~95%
Mechnical Specs.
Cell Weight2.64 g
Cell Dimension90*13.5*960 mm
Other Specs.
CertificatesUN38.3/MSDS/CE
ApplicationElectric Vehicles, Energy Storage, etc
What is BYD Blade Battery?

The BYD Blade Battery is a type of lithium-iron-phosphate (LFP) battery developed by BYD, a Chinese automobile manufacturer. The "Blade" in its name refers to its unique design, which resembles a blade. This design allows for increased battery space utilization and provides an ultra-strong structure for durability.

The BYD Battery Blade is known for its excellent thermal stability, substantial cobalt-free nature, and durability. It has undergone rigorous safety testing, including the Nail Penetration Test, which simulates the consequences of a serious traffic accident. In these tests, the BYD Battery Blade exhibited no smoke or fire, and the surface temperature only reached 30 to 60 degrees Celsius.

In terms of performance, the BYD Battery Blade offers greater power density for optimal performance and efficiency, including faster charging. And BYD's CTP (Cell to Pack) technology increases space utilization by 50%, improving energy density and allowing more batteries in a compact space.

cell to pack vs cell to chassis

Overall, the BYD Battery Blade offers new levels of safety, durability, and performance, making it a significant advancement in the EV industry.

BYD Blade Battery Energy Density

The energy density of the BYD Blade Batteries can reach up to 180 Wh/kg. This is a significant improvement over the previous generation, which had an energy density of 150 Wh/kg. The increase in energy density is due to the unique design of the Blade Battery, which allows for more cells to fit into the battery pack, thus providing higher energy density. This makes the Blade Battery more efficient and allows for a longer driving range for electric vehicles. These figures are subject to change as BYD continues to innovate and improve BYD blade battery technology.

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