BMS NMC 3S 10A (SLCT) (7fdb)
Product Price
₹64
Description
SLCT BMS NMC 3S 10A WITH NICKEL WITHOUT BAL Hardware
Product Data Sheet
The BMS NMC 3S 10A (SLCT) is a highly efficient and compact Battery Management System specifically designed to safeguard 3-series Lithium-ion NMC cells. This BMS module supports a discharge current of up to 10A, making it ideal for medium-load applications such as LED systems, e-bikes, robotics, drones, and various portable power banks.
Technical Specifications
- This Data sheet is for Lichtronics 3S 10A NMC PCM/BMS
- Charging Voltage -DC:12.6V CC/CV
- Max continuous charging current - 10A
- Over charge detection voltage - 4.25±0.05V
- Over discharge detection voltage - 2.7±0.08V
- Over current detection voltage - 0.1±0.03V
- Operating Temperature -45°C --+65°C
- Storage Temperature -45°C -- +85°C
Key Features
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Compatible with 3S (11.1V) Li-ion NMC cells
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Built-in Protections:
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Overcharge protection
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Over-discharge protection
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Short-circuit protection
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Overcurrent protection
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Auto-recovery Function – Resumes normal operations after fault removal
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Balanced Charging – Maintains uniform voltage across cells
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Compact Design with Nickel Strips – Easy to weld or integrate into cylindrical cell configurations
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Optimized Thermal Layout – Reduces heating during high current loads
Application Areas
- Emergency LED Lighting
- Power Tools
- E-bikes & E-scooters
- Lab Prototyping & Projects
- RC Toys & Hobby Kits
- IoT Power Supplies
The PCM NMC 03S 10A WITH NICKEL (SLCT) is a protection circuit module designed for 3-series lithium nickel manganese cobalt (NMC) batteries, with a continuous current rating of 10A. The "WITH NICKEL" likely refers to the use of nickel-plated connectors or components, which enhance the module's conductivity and durability. The "SLCT" feature indicates that the protection settings are selectable or adjustable, allowing users to customize the module based on their specific needs. This PCM provides essential protection against overcharge, over-discharge, short-circuit, and overcurrent conditions, ensuring the safe and efficient operation of the NMC battery. It is commonly used in medium to high-power applications such as energy storage systems, electric vehicles, and other devices requiring reliable and efficient battery management and safety.