| Brand Name: | RESKY |
| Model Number: | LP804070 |
| MOQ: | 100PCS |
| Price: | Negotiable |
| Packaging Details: | Paper box |
| Payment Terms: | T/T,Western Union |
| Attribute | Value |
|---|---|
| Shape | Square Battery |
| Electrolyte | Li(Nicomn)O2 |
| Rechargeable | Chargeable |
| Nominal Capacity | 3000mAh |
| Continuous Discharging Current | 0.5c |
| Max Discharging Current | 1c |
| Weight | 65g |
| Cycle Life | 500cycles |
| Specification | 8*40*70mm |
| HS Code | 8507600090 |
| NO. | Items | Specifications |
|---|---|---|
| 1 | Batteries | 3.7v 3000mah lipo battery |
| 2 | Charge voltage | 4.2V |
| 3 | Nominal voltage | 3.7V |
| 4 | Nominal capacity | 3000mAh 0.2C Discharge |
| 5 | Charge current | Standard Charging:0.5C Rapid charge: 1.0C |
| 6 | Standard Charging method | 0.5C CC(constant current)charge to 4.2V, then CV(constant voltage 4.2V)charge till charge current decline to ≤0.05C |
| 7 | Charging time | Standard Charging:2.75hours(Ref.) Rapid charge: 2hours(Ref.) |
| 8 | Max.charge current | 0.5C |
| 9 | Max.discharge current | 0.5C |
| 10 | Discharge cut-off voltage | 2.5V0.25V(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:70±2mm (not including tabs) Width:40±0.5mm Thickness:8±0.5mm |
| 14 | Drop Test | The cell is to be dropped from a height of meter twice onto concrete ground. No fire, no leakage |
| 15 | Cycle time | ≥500times |
High energy density: Ternary materials result in higher battery energy density, providing longer range within the same volume or weight, making them suitable for devices sensitive to volumetric energy density.
Lightweight and form factor flexibility: Polymer electrolytes allow batteries to be made into thin, flexible, or irregularly shaped structures, adapting to compact design requirements.
High discharge platform and fast charging capability: Average operating voltage exceeding 3.7V, low internal resistance supports high-rate discharge and fast charging speeds.
Cycle life and safety: Polymer design combined with protection circuits (such as overcharge/over-discharge protection) improves structural stability; however, it should be noted that ternary materials may face thermal runaway risks under high temperature or abuse conditions, requiring a battery management system (BMS) to ensure safety.
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