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Applications & Safety Profile of High-Rate LiFePO4 Cells:
Performance: Ideal for high-drain applications such as UAV rapid climbing, sustained torque in power tools, and low-temperature automotive cranking.
Safety Architecture: Equipped with comprehensive protection circuits (Overcharge/Over-discharge) and real-time thermal sensors. The robust electrochemical nature of $LiFePO_4$ ensures superior resistance to thermal runaway.
Longevity: Features an extensive cycle life of 2,000+ cycles, providing a cost-effective energy solution for long-term industrial use.
| Model | Rate | Voltage | Capacity | Max Cont. Current | Dimensions (TWL) | Weight (±g) |
| BATFT3721175 | 10C | 3.2V | 950mAh | 9.5A | 3.5 * 20 * 174 mm | 22.5g |
| BATFT6735062 | 10C | 3.2V | 1100mAh | 11.0A | 6.5 * 34.5 * 62.5 mm | 25.5g |
| BATFT6633065 | 10C | 3.2V | 1100mAh | 11.0A | 6.3 * 32.5 * 66.5 mm | 25.0g |
| BATFT4746099 | 10C | 3.2V | 1600mAh | 16.0A | 4.5 * 45.5 * 98 mm | 36.5g |
| BATFT7934096 | 10C | 3.2V | 2100mAh | 21.0A | 7.6 * 33.5 * 96.5 mm | 47.0g |
| BATFT9645090 | 10C | 3.2V | 3200mAh | 32.0A | 9.3 * 44.5 * 90.5 mm | 71.5g |
| BATFT7867100 | 10C | 3.2V | 4100mAh | 41.0A | 7.6 * 66.5 * 100.5 mm | 99.0g |
| Different C Rate Discharge Curve (Nominal Capacity: 1600mAh)
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Cycle Life Testing Curve (1C Charging)
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Key Technical Advantages
Precision Stacking Technology: By employing a laminated electrode architecture, our cells achieve significantly lower internal resistance (IR), resulting in superior discharge dynamics and extended cycle longevity.
Exceptional Power Output: Engineered to support a peak instantaneous pulse of 150C, a 90C burst for 2 seconds, and a 45C continuous discharge, while maintaining 5C ultra-fast charging capability.
Enhanced Thermal Stability: Superior discharge efficiency with consistent performance and high tolerance across fluctuating temperature ranges.
Design Versatility: Ultra-thin, lightweight, and compact form factors with flexible geometry to accommodate diverse hardware spatial constraints.
Primary Application Fields
BATFT’s high-rate LiFePO4 batteries are the premier choice for mission-critical sectors including:
Industrial & Robotics: Automated forklifts, industrial robotic platforms, and AGVs.
Medical Technology: High-precision electric bone drills and surgical power tools.
Power & Emergency: Automotive jump starters and ignition systems for sports equipment.
Electric Transportation: Performance racing, electric go-karts, motorized paragliders, and medical lift beds. Our R&D team works in close synergy with clients to deliver bespoke, optimized energy solutions for complex specialized equipment.
Lithium Iron Phosphate technology offers a unique suite of advantages, including high operating voltage, high energy density, exceptional cycle life, and environmental sustainability. It supports modular, step-less expansion, making it an ideal candidate for utility-scale energy storage. A comprehensive BATFT LiFePO4 ESS integrates the following core components:
Battery Array: High-durability LiFePO4 battery modules.
Battery Management System (BMS): Intelligent monitoring and cell balancing.
Power Conversion System (PCS): High-efficiency rectifiers and inverters.
Central Monitoring System: Real-time data acquisition and system control.
Transformer Architecture: Power regulation for grid integration.
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