Cham 18650 3.1 Ah Cell Thermal Behavior Data
Detailed Insights into Capacity and Resistance Changes at Extreme Temperatures – Optimize Your Battery Models and Algorithms with Reliable Data
The Cham 18650 3.1 Ah cell undergoes rigorous testing to examine its thermal behavior, especially under extreme temperature conditions. Testing the cell at room temperatures (25°C), high temperatures (45°C) and low temperature (0°C) provides crucial data on how capacity and internal resistance respond to ambient temperature changes. This information is vital for optimizing the performance, efficiency, and safety of lithium-ion batteries.
Information document
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Cham 18650 data sheet
Static capacity
Hybrid Pulse Power Characterisation
Essential Data for Accurate Cell Modeling and Efficient Battery Management
Enhanced Battery Safety: Knowing how the cell behaves at temperature extremes helps identify potential risks, supporting safer battery designs.
Improved Performance: The data allows for precise modeling of temperature impacts on capacity, enabling better power management and longevity.
Advanced SOC Estimation: Accurate data helps refine State of Charge (SOC) algorithms, improving real-time performance metrics for applications.
Reliable Cell Characterization: Detailed thermal data aids in understanding the cell's behavior, supporting reliable integration into various systems.
Enhancing Battery Performance Across Electric Vehicles, Energy Storage, and More
Battery Management Systems (BMS): Data enhances BMS algorithms, improving temperature management and battery protection.
Electric Vehicles (EVs): Crucial for ensuring safe battery operation in varying climates, optimizing EV battery life.
Consumer Electronics: Informs design for portable devices, ensuring battery performance remains stable despite temperature changes.
Consumer Electronics: Informs design for portable devices, ensuring battery performance remains stable despite temperature changes.
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