Solar Lipo Batteries 803048 3.7V 1200mAh 4.44Wh Lithium Ion Polymer Battery Cell
High-performance lithium polymer battery cell designed for various electronic applications with reliable power delivery and long cycle life.
Product Specifications
| Attribute |
Value |
| Model NO. |
LP803048 |
| Discharge Rate |
Low Discharge Rate |
| Shape |
Square Battery |
| Nominal Capacity |
1200mAh |
| Weight |
11g |
| Cycle Life |
500 cycles |
| Warranty |
12 months |
| Specification |
8×30×48mm |
| HS Code |
8507600090 |
| Supply Ability |
100,000 PCS/Day |
Technical Details
| NO. |
Items |
Specifications |
| 1 |
Batteries |
3.7V 1200mAh LiPo Battery |
| 2 |
Charge Voltage |
4.2V |
| 3 |
Nominal Voltage |
3.7V |
| 4 |
Nominal Capacity |
1200mAh 0.2C Discharge |
| 5 |
Charge Current |
Standard Charging: 0.5C Rapid Charge: 1.0C |
| 6 |
Standard Charging Method |
0.5C CC charge to 4.2V, then CV charge till charge current ≤0.05C |
| 7 |
Charging Time |
Standard: 2.75 hours Rapid: 2 hours |
| 8 |
Max. Charge Current |
1.0C |
| 9 |
Max. Discharge Current |
1.0C |
| 10 |
Discharge Cut-off Voltage |
2.5V±0.25V (0.2C) |
| 11 |
Operating Temperature |
Charging: 0°C~45°C Discharging: 0°C~45°C |
| 12 |
Storage Temperature |
-10°C~+45°C |
| 13 |
Dimension |
Length: 48±2mm Width: 30±0.5mm Thickness: 8±0.2mm |
| 14 |
Drop Test |
Dropped from 1 meter twice onto concrete ground. No fire, no leakage |
| 15 |
Cycle Time |
≥500 times |
Applications
- Electrical Toothbrush
- MP4
- MID
- Monitor
- Backup Power
- Portable DVD
- POS Machine
- Desk Video
- Motor Drill
- Digital Camera
Advantages of 3.7V Li-Polymer vs 3.2V LiFePO4 Batteries
Higher Nominal Voltage
3.7V lithium polymer provides higher working voltage than 3.2V LiFePO4, delivering stronger power output and better performance in small electronics.
Higher Energy Density
Traditional 3.7V Li-polymer offers higher capacity and energy density in the same dimensions, supporting longer runtime for compact devices.
Wider Application in Consumer Electronics
Matches the charging and discharging logic of most small smart devices, with better compatibility and simpler circuit design.
More Mature Mass Production
Stable supply chain, lower cost, and higher consistency for mass production compared to LiFePO4 polymer in small-capacity sizes.
Better Low-Temperature Performance
Performs more stably in cold environments than most 3.2V LiFePO4 batteries, making it suitable for outdoor and portable devices.