25C High-Rate Lithium Iron Phosphate (LiFePO4) Battery Solutions

Safety Structural Design Our cells are engineered with an integrated Pressure Relief Valve (Safety Valve). This critical safety mechanism ensures that internal pressure is managed effectively, maintaining the system within safe operational limits even under extreme environmental stress.

Stringent Quality Control & Certification We maintain a zero-compromise quality management system. Every stage—from cell fabrication to final pack assembly—undergoes rigorous inspection. Our products are certified against international safety standards to ensure every unit meets the highest global benchmarks:

  • Safety Standards: UL1642, UL2054, UL1973, IEC62133, CCC.

  • Transportation & Environment: UN38.3, RoHS, REACH.

分类:

High-Rate Lithium Iron Phosphate (LiFePO4) Battery Solutions

Application Fields BATFT high-rate LiFePO4 batteries are engineered for high-drain, mission-critical applications where safety and performance are paramount. They are widely utilized in:

  • Emergency & Starting Power: Automotive jump starters and sports equipment ignition systems.

  • Medical Devices: Precision electric bone drills and specialized surgical tools.

  • Industrial Mobility: Electric forklifts, automated guided vehicles (AGVs), and robotic platforms.

  • Specialized Transportation: Electric go-karts, motorized paragliders, and electric lift beds.

  • Performance Engineering: High-performance racing and engine-starting solutions. Our R&D team works in close partnership with clients to provide optimized, bespoke energy solutions for complex hardware.

Technical Specifications: 25C High-Rate LiFePO4 Series

Model Rate Nominal Voltage Capacity Max Cont. Current Dimensions (TWL) Weight (±g)
BATFT5464074 25C 3.2V 1700mAh 42.5A 5.2 * 63.5 * 73.5 mm 46.5g
BATFT6445090 25C 3.2V 1900mAh 47.5A 6.2 * 44.5 * 90.5 mm 49.5g
BATFT8734096 25C 3.2V 2100mAh 52.5A 8.4 * 33.5 * 96.5 mm 52.5g
BATFT5954090 25C 3.2V 2100mAh 52.5A 5.7 * 53.5 * 91.0 mm 55.0g
BATFT7146094 25C 3.2V 2300mAh 57.5A 6.8 * 45.0 * 94.5 mm 58.0g
BATFT8348085 25C 3.2V 2500mAh 62.5A 8.0 * 47.5 * 85.5 mm 63.0g
BATFT7360078 25C 3.2V 2500mAh 62.5A 7.1 * 59.5 * 79.0 mm 63.0g
BATFT5961095 25C 3.2V 2550mAh 63.75A 5.7 * 60.5 * 96.0 mm 66.5g
BATFT5970096 25C 3.2V 2800mAh 70A 5.6 * 69.5 * 96.5 mm 73.0g
BATFT8442126 25C 3.2V 3500mAh 87.5A 8.1 * 41.5 * 127.0 mm 89.0g
BATFT6460119 25C 3.2V 3500mAh 87.5A 6.3 * 59.5 * 119.0 mm 90.0g
BATFT8061115 25C 3.2V 4350mAh 108.75A 7.7 * 60.5 * 115.0 mm 109.0g
BATFT8561115 25C 3.2V 4600mAh 115A 8.2 * 60.5 * 115.5 mm 118.0g
BATFT9161115 25C 3.2V 5000mAh 125A 8.8 * 60.5 * 115.0 mm 128.0g
BATFT8798112 25C 3.2V 7200mAh 180A 8.4 * 98.0 * 113.0 mm 185.0g
BATFT8678156 25C 3.2V 8000mAh 80A 8.2 * 77.5 * 153.5 mm 199.0g
BATFT8578185 25C 3.2V 9600mAh 160A 8.2 * 77.5 * 184.5 mm 243.0g

Key Features of High-Rate LiFePO4 Batteries

  • Precision Stacking Technology: By employing a laminated electrode architecture, our cells achieve lower internal resistance, resulting in superior discharge dynamics and enhanced cycle life compared to traditional winding methods.

  • Exceptional Power Output: Capable of sustaining 45C continuous discharge, a 90C burst (2 seconds), and a peak instantaneous pulse of 150C.

  • Fast Charging Support: Optimized for rapid replenishment with up to 5C charging rates.

  • Thermal Efficiency: Higher discharge efficiency with excellent temperature stability and resilience.

  • Flexible Form Factors: Ultra-thin, lightweight, and compact design with customizable geometry to adapt to diverse spatial constraints.

Technology Overview

A Lithium Iron Phosphate (LiFePO4) battery is a lithium-ion system utilizing $LiFePO_4$ as the cathode and carbon as the anode. With a nominal cell voltage of 3.2V and a charge cut-off of 3.6V–3.65V, it facilitates energy transfer through the intercalation and de-intercalation of lithium ions. This chemistry is globally acclaimed for its stable operating voltage, high energy density, extended cycle life, and superior safety profile. LiFePO4 technology is the definitive choice for electric buses, specialized industrial vehicles, stationary energy storage (ESS), and military-grade applications.

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