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Lipo Battery LP602530 3.7V 400mAh 1.48wh Rechargeable Lithium Polymer Battery Cell For Smart Watch

Categories Lithium Polymer Battery Cell
Brand Name: RESKY
Model Number: LP602530
Certification: CE, RoHS, MSDS, Un38.3, IEC62133
Place of Origin: China
MOQ: 100pcs
Price: Negotiable
Payment Terms: T/T,Western Union
Supply Ability: 50000pcs/dat
Delivery Time: 7-10days
Packaging Details: Standard exporting package
Model NO.: LP602530
Capacity: 400mAh
MOQ: 100PCS
Electrolyte: Li(Nicomn)O2
Cycle Life: 500cycles
Warranty: 12months
Shipping: UPS, DHL, FedEx, TNT, by Air, by Sea, Special Line
Lead Time: Within 3-10 Workdays
Connector: Jst, Molex....
Specification: 6*25*30mm
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Lipo Battery LP602530 3.7V 400mAh 1.48wh Rechargeable Lithium Polymer Battery Cell For Smart Watch

Product Description

Lipo Battery LP602530 3.7V 400mAh 1.48wh Rechargeable Lithium Polymer Battery Cell For Smart Watch


NO.ItemsSpecifications
1batteries3.7v 400mah lipo battery
2Charge voltage4.2V
3Nominal voltage3.7V
4Nominal capacity400mAh 0.2C Discharge
5Charge current
Standard Charging:0.2C
Rapid charge: 1.0C
6Standard Charging method0.5C CC(constant current)charge to 4.2V, then CV(constant voltage 4.2V)charge till charge current decline to ≤0.05C
7Charging time

Standard Charging:2.75hours(Ref.

)Rapid charge: 2hours(Ref.)

8Max.charge current0.5C
9Max.discharge current1.0C
10Discharge cut-off voltage2.5V0.25V(0.2C)
11Operating temperature

Charging: 0 °C ~45 °C

Discharging:0 °C ~45 °C

12Storage temperature-10°C~ +45 °C
13DimensionLength:30±0.5mm (not including tabs)
Width:25±0.5mm
Thickness:6±0.2mm
14Drop TestThe cell is to be dropped from a height of meter twice onto concrete ground. No fire, no leakage
15cycle time≥800times


Production Process for lithium polymer battery cell:


Electrode Preparation: The ternary positive electrode material (lithium nickel cobalt manganese oxide) and negative electrode material (graphite) are mixed with a binder and a conductive agent, respectively, to form a slurry. The slurry is then evenly coated onto aluminum foil (positive electrode) and copper foil (negative electrode). After drying and roller pressing, the slurry is cut into electrode sheets of corresponding sizes.


Cell Assembly: Using a lamination process (suitable for the high-precision requirements of small cells), the positive electrode, separator, and negative electrode are alternately stacked to form the cell body. This is then encapsulated in an aluminum-plastic film with a pre-reserved injection port.


Injection and Packaging: The electrolyte (carbonate-based) is injected in a dry environment, and the aluminum-plastic film is vacuum-sealed to prevent leakage and moisture intrusion.


Formation and Aging: The cells undergo an initial charge (to form the SEI film and ensure cycling stability). Capacity, voltage, and internal resistance testing are then performed to screen qualified cells. Finally, the cells are aged for 24-48 hours to ensure stable performance.​


Main Advantages for lipo battery:


High Energy Density: The ternary material system boasts a specific capacity of 150-180 mAh/g, 15%-20% higher than lithium iron phosphate batteries of the same volume. Its 400 mAh capacity is ideal for the battery life requirements of small devices.

Excellent Discharge Performance: Supports a 0.5C-2C discharge rate (normal use: 0.5C, peak: 2C), with a stable voltage platform (over 80% of the discharge range is between 3.7V and 3.2V), making it suitable for intermittent, low-power power supply scenarios.


Strong Form Factor: The flexible aluminum-plastic film package withstands slight compression and deformation, allowing it to fit into irregular installation spaces within devices (such as curved smart wearables). It is also 30% lighter than a steel-cased lithium battery of the same capacity.


Safety and Controllability: Equipped with an overcharge, over-discharge, and overcurrent protection board (PCB), it prevents voltage anomalies (upper limit: 4.2V / lower limit: 3.0V), reducing the risk of bulging.​


Main Application:


Smart Wearable Devices: Small smart bracelets (such as pedometers), Bluetooth headsets (single/double earbuds with charging pods), suitable for lightweight and compact device designs;


Micro IoT Devices: Low-power smart sensors (such as temperature and humidity sensors, door and window sensors), and micro locators (children's anti-lost location badges), suitable for long-term standby (1-3 months) and low-frequency data transmission;


Small Consumer Electronics: Mini remote-controlled toys (mini RC cars, fingertip gyroscope lights), portable testing equipment (mini formaldehyde detectors, pulse oximeter backup power supplies), suitable for intermittent high-rate discharge scenarios;


Medical Assistive Devices: Mini insulin pen accessories, portable heart rate monitors, meeting the stringent battery stability and safety requirements of medical equipment.


Product pictures:


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