About this replacement
NEC E540 / N850 Series — 3.7V Li-ion Replacement Battery (MAY-BD0027)
This is the MAY-BD0027 replacement cell for the NEC E540, N411i, N850, and N511i smartphones. It runs at 3.7V with an 850mAh (3.15Wh) capacity. When the original cell degrades and can no longer hold voltage under screen or modem load, this is the direct swap.
- E540, N411i, N850, N511i compatibility: These four models share the same battery bay dimensions, connector pinout, and 3.7V nominal voltage rail, which is why one part number covers the whole group. The BMS handshake protocol is consistent across the series.
- Bench tested on actual hardware: We ran this cell through a full charge-discharge cycle on the bench. The BMS accepted the charge IC handshake without fault flags and held voltage steady through simulated modem and display load spikes.
- Fuel gauge recalibration on first install: On first use after installation, disable fast charging and complete one full discharge-charge cycle. This lets the fuel gauge IC map the new cell's discharge curve before the charge IC starts pushing higher current into an uncalibrated cell.
Sudden shutdown at 20–30% on the replacement cell
This happens when the fuel gauge IC is still calibrated to the old cell's discharge curve. The new cell hits a voltage cliff under modem or display load at a higher state-of-charge than the IC expects. The phone reads 25% but the cell voltage drops below the shutdown threshold under load. Run one full discharge to 0% and a complete recharge — this recalibrates the coulomb counter to the new cell and the false cutoffs stop.
Phone warm near the battery during the first few charge cycles
A new cell typically has slightly higher internal impedance than a conditioned one. The charge IC dissipates the excess as heat while it works through the initial CC-CV charge phases. This is normal for the first two to three cycles and reduces as the cell conditions. If the phone stays warm beyond cycle three at the same ambient temperature, check that the charge IC dropped to CV phase correctly — voltage at the terminals should read 4.20V when the current tapers off.