About this replacement
Archos 50F NEON — 3.7V Li-ion Replacement Battery (AC50F)
This is a 3.7V Li-ion cell rated at 1000mAh (3.7Wh), built as a direct swap for the Archos 50F NEON smartphone. It replaces a degraded or failed original cell that can no longer sustain voltage under normal phone load. Fits the 50F NEON only — confirm your model before ordering.
- 50F NEON fitment: The AC50F and AC50FNEV part numbers both reference this specific cell format — same voltage rail, same connector pinout, same physical footprint at 70.50 × 52.78 × 4.36mm. No adapter or modification needed.
- Bench tested on actual hardware: We cycled this cell through a full discharge and charge sequence, monitoring BMS behaviour at cutoff thresholds. The protection circuit tripped cleanly at the low-voltage floor with no false trips during normal load swings.
- Fuel gauge recalibration on first use: On first use after installation, disable fast charging for one complete discharge-charge cycle. This lets the fuel gauge IC build an accurate discharge curve against the new cell before high-current charging is applied to an uncalibrated cell.
Sudden shutdown at 20–30% on the Archos 50F NEON after a cell swap
This is a voltage cliff issue, not a capacity fault. The modem radio and display draw short bursts of high current, and if the fuel gauge IC is still calibrated to the old cell's discharge curve, it misreads remaining capacity. The new cell's actual voltage drops below the shutdown threshold under that load spike before the gauge reaches zero. One full discharge-charge cycle without fast charging resets the coulomb counter and eliminates most of these premature shutdowns.
Device not powering on after the replacement cell sat in storage
Li-ion cells self-discharge in storage. If the cell voltage drops below roughly 2.5V, the BMS enters lockout mode and blocks current flow to protect the cell from damage. The phone appears completely dead — no boot screen, no charging indicator. Connect to a wall charger and leave it for 15–20 minutes before attempting to power on. The charge IC needs to trickle current into the cell long enough to lift it above the BMS re-enable threshold, typically around 2.9V.