「PHY Positive Electrode Material」series
Mainly including: C3 High-efficiency Lithium Iron Phosphate、C7 3rd Generation High-Compaction Lithium Iron Phosphate、C10 4th Generation High-Compaction power Lithium Iron Phosphate、C16 4.5th Generation High-Compaction Lithium Iron Phosphate、C10L 4th Generation High-Compaction LFP for Energy Storage、C18 Fifth-Generation High-Compaction Lithium Iron Phosphate
Lithium Battery
Cathode Material
Cathode materials account for 30-35% of the cost of battery cells
30-35%
It is the component with the largest proportion in the battery cell
Process Characteristics
Medium compaction
Electrical Performance Characteristics
High Energy Efficiency, energy efficiency up to 95%
Target Markets
High-end Energy Storage, Energy Storage Base Stations

Process Characteristics
High Compaction
Performance Characteristics
Powder compacted density 2.55 g/cm³
Target Markets
High-end energy storage, new energy vehicles

Process Characteristics
High Compaction & High Power
Electrical Performance Characteristics
Optimized for both capacity and power
1C144mAh/g, 3.2Vplatform 92%
Target markets
Power vehicles

Process Characteristics
High Compaction & High Energy Density
Electrical Performance Characteristics:
High capacity, 1C capacity of 142 mAh/g
Target markets
High-end energy storage, power vehicles

Process Characteristics
High Compaction & High Capacity
Electrical Performance Characteristics
Powder compacted density: 2.58 g/cm³
1P discharge specific capacity: 138 mAh/g
Target markets
High-end energy storage

Process Characteristics
High Compaction > 2.68 g/cm³
Electrical Performance Characteristics
High capacity, 1C discharge: 142.3 mAh/g
Plateau capacity ratio (1C, 3.2 V): 94.4%
Target markets
High-end power, high-end energy storage
