About this replacement
Lenovo ThinkPad Neo 14 — 11.52V Li-Polymer Replacement Battery (5B11E33552)
This 11.52V, 4850mAh (55.87Wh) Li-Polymer battery replaces the original cell in the Lenovo ThinkPad Neo 14. It matches the OEM connector, BMS handshake protocol, and physical dimensions (292.20 x 78.20 x 6.50mm) exactly. Compatible part numbers include 5B11E33552, 5B11E33553, L21C3PD4, L21D3PD4, L21L3PD4, L21M3PD4, SB11E33549, and SB11E33551.
- ThinkPad Neo 14 platform fit: All listed OEM part numbers share the same 11.52V three-cell Li-Polymer configuration, the same PCM pinout, and the same SMBus communication line that the Neo 14's embedded controller uses to read state-of-charge. Swapping any of these parts for this cell keeps that handshake intact.
- Bench tested on actual hardware: We cycled this battery through charge and discharge on a ThinkPad Neo 14 unit. The BMS negotiated charge termination correctly at 100%, reported accurate voltage at each state-of-charge step, and triggered low-voltage cutoff without fault codes.
- Post-install calibration on the Neo 14: After fitting this battery, run one full discharge until the laptop hibernates, then charge uninterrupted to 100% without interruption. This resets the BIOS battery learn cycle and clears the inaccurate health warning that appears after every cell swap on ThinkPad firmware.
BIOS reporting poor battery health immediately after fitting a new cell
The ThinkPad Neo 14 BIOS stores battery health data in EEPROM on the original cell's BMS board. When a new cell is installed, that EEPROM data does not transfer — the embedded controller reads the fresh cell against old learned parameters and flags a health warning. This is a firmware state issue, not a fault with the replacement cell. Running one complete discharge-to-hibernate followed by a full uninterrupted charge forces the BIOS to rewrite its battery learn table against the new cell's actual chemistry. After one or two full cycles, the health status clears and the gauge reads accurately.
Laptop shutting down at 20–30% charge shown on screen
This shutdown pattern points to a voltage cliff — the cell voltage drops sharply under combined CPU and display load before the fuel gauge IC updates its estimate. The fuel gauge IC calibrates its state-of-charge model over several cycles against the new cell's discharge curve. Until that calibration converges, the displayed percentage lags the real voltage by a significant margin. To accelerate calibration, run two to three full discharge-to-hibernate and charge-to-100% cycles without unplugging mid-cycle. After calibration, the displayed percentage should track closely to actual cell voltage, with shutdown occurring at or below 5% shown.