Product Highlights
- Chemistry Li-ion
- Nominal Voltage (V) 10.8
- Capacity (mAh) 4400
- Max Continuous Discharge Current 5.7A
- Weight 280g
- Dimension 73.5 x 56.5 x 37.5mm (LxWxT)
- Connector Bare Leads
Features
Product Summary: This is a 3S Li-Ion rechargeable battery pack. Our battery pack label may indicate 10.8V or 11.1V, but essentially it is the same pack and same features. The voltage naming differences come from different groups who use the average (3.6V) or nominal (3.7V) voltage in calculating the single cell voltage.
output
- Type Pack
- Chemistry Li-ion
- Nominal Voltage (V) 10.8
- Capacity (mAh) 4400
- Max Continuous Discharge Current 5.7A
- Battery Charging Current
- Standard 0.9A
- Rapid 2.2A
- Weight 280g
- Dimension 73.5 x 56.5 x 37.5mm (LxWxT)
- Connector Bare Leads
- Avg. Temperature Ranges for:
- Charging 32° F~113° F / (0~45°C)
- Discharging 14°F ~140°F / (-10~60°C)
- Storage 32°F ~86°F / (0~30°C)
- PCB/Pack Protection:
- Overcharge Protection: >12.6V
- Over-discharge Protection: <9.0V
- Over Current Cutoff (A): 6.5 ± 1.5A
Supported Chargers:
Item Number | Model/Description | Compatible Packs | Charging Current |
01211 | Tenergy TLP-2000 Li-Ion Battery Pack Charger | 3.7V - 14.8V (1-4S) | 0.5A |
01281 | Tenergy TLP-4000 Li-Ion Battery Pack Charger | 3.7V - 14.8V (1-4S) | 1.0A |
01340 | Tenergy Li-Ion 11.1V Battery Pack Charger | 11.1V (3S only) | 2.0A |
CAUTION:
- when working with Li-ion cells, they are very sensitive to charging characteristics and may explode if mis-handled.
- users should have enough knowledge on Li-Ion rechargeable batteries in charging, and discharging before use.
- we are not responsible for any damage caused by misuse or mishandling of these Li-Ion battery packs.
- it is strongly suggest that you use our Smart Li-Ion battery chargers to recharge the battery pack
- never use conventional DC adapter to charge the battery module - we are NOT responsible for any damage that is caused by improper charging.
- do not make parallel connection with more than three modules to avoid uneven charge.