Integrals Power
- Home
- Companies
- Integrals Power
- Products
- Li-Ion Battery Technology
Li-Ion Battery Technology
FromIntegrals Power
Li-ion battery technology uses lithium metal ions as a key component of its electrochemistry. Lithium metal ions have become a popular choice for batteries due to their high energy density, high capacity, higher power density and low weight. One notable example is lithium-ion batteries, which are used in a wide range of electric vehicles, aerospace, off grid energy storage and electronic devices. Lithium iron phosphate batteries, offer greater stability and a longer lifespan. This makes them well-suited for use in electric vehicles and large-scale energy storage systems.
Most popular related searches
lithium battery
lithium ion battery
large-scale energy storage system
battery system
lithium iron phosphate
lithium iron phosphate (LFP)
lithium-iron phosphate battery
large-scale energy storage
off-grid energy storage
off-grid energy
Cathode material: The material used for the positive electrode determines the voltage and capacity of the lithium-ion battery as well as being the source of the lithium ions
Anode material: When the lithium-ion battery pack is being charged, the anode material of the negative electrode is what the electric current flows through from an external circuit. It is also where Li-ions are stored.
Electrolyte: This is made up of additives, solvents, and salts. It is the conduit between the cathode and anode.
Separator: This is what separates the anode and cathode materials.
There are other battery technologies which are underdevelopment and can take a decade to challenge the current performance and advantages of Lithium ion.
Cathode decides the capacity, discharge rate, power density and energy density of Lithium ion battery cells and due to its vital role in battery performance, Integrals Power is developing improved cathode materials.
Lithium Iron Phosphate (LFP)
- Olivine structured cathode material with high specific capacity
- Ultra high discharge rate ( 30C – 40C range)
- High capacity retention within ambient and extreme environmental temperatures
- Excellent safety and long life span
- Large surface area
Lithium Iron Manganese Phosphate (LFMP)
- Olivine structured cathode material with high specific capacity
- High discharge rate
- High capacity retention within ambient and extreme environmental temperatures
- Excellent safety and long life span
- Significant increase in energy density and operating voltage
- Large surface area
