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Rechargeable Li‑Ion cell INNE INR18650 MH1 3200mAh 3.7V 10A (18650 format)
Rechargeable Li‑Ion cell INNE INR18650 MH1 3200mAh 3.7V 10A (18650 format)
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Rechargeable Li‑Ion cell INNE INR18650 MH1 3200mAh 3.7V 10A (18650 format)
Leave your address - as soon as the price of the product goes down, you'll know about it right away
Rechargeable Li‑Ion cell INNE INR18650 MH1 3200mAh 3.7V 10A (18650 format)
Rechargeable Li‑Ion cell INNE INR18650 MH1 3200mAh 3.7V 10A (18650 format)
INNE INR18650 MH1 is a rechargeable lithium‑ion cylindrical cell in 18650 format with a nominal capacity of 3200mAh and nominal voltage of 3.7V. The cell delivers a continuous discharge current rating of 10A, providing a balance between energy density and moderate high-current performance. Its cylindrical 18650 dimensions and standardized voltage make it compatible with a wide range of battery packs, power banks, flashlights and portable electronic devices that accept 18650 cells.
The INNE INR18650 MH1 combines relatively high capacity with a moderate continuous discharge capability, making it suitable for applications that require extended runtimes without extreme current draw. Its chemistry and cell format provide stable nominal voltage and predictable discharge behaviour across typical operating conditions. The standardized 18650 form factor facilitates replacement and integration into battery holders and multi-cell assemblies.
Use the INNE INR18650 MH1 cell in devices or assemblies designed to accept 18650 lithium‑ion cells. Charge with a compatible lithium‑ion charger that follows recommended charging profiles for 3.7V cells, including proper constant-current/constant-voltage (CC/CV) charging and appropriate charge termination. Observe correct polarity when installing cells in holders or packs. For multi-cell configurations, ensure proper balancing and wiring to match the device's voltage and current requirements.
Store and use cells within the manufacturer’s recommended temperature range. Avoid deep discharge below recommended cutoff voltages and protect cells from short circuits, mechanical damage and exposure to high temperatures. For extended service life, charge and store cells at partial state of charge rather than at full charge for prolonged periods when not in use. Replace cells showing signs of swelling, excessive self-discharge, or degraded performance.
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