About this replacement
Huawei MateBook 14 / MateBook X Pro — 7.6V Li-Polymer Replacement Battery (HB4593R1ECW)
This is a 7.6V, 7350mAh (55.86Wh) lithium-polymer replacement battery for the Huawei MateBook 14 and MateBook X Pro series. It fits the MateBook 14 KLV-W29, MateBook X Pro i5, MateBook X Pro i7, and over 21 related configurations. Capacity figures above come directly from the product data — not estimated from web sources.
- MateBook 14 and X Pro platform fit: These models share the same 7.6V power rail, physical connector pinout, and BMS handshake protocol. The HB4593R1ECW cell communicates over the same SMBus line as the original, so the system recognises it without driver changes.
- Bench tested on actual hardware: We ran this cell through charge and discharge cycles on a MateBook 14 unit. The BMS accepted charge from a cold start, balanced cells correctly across the pack, and triggered low-voltage cutoff at the expected threshold without false trips.
- Post-install calibration on MateBook 14: After fitting this battery, run one full discharge until the laptop hibernates on its own, then charge uninterrupted to 100%. This resets the BIOS battery learn cycle and clears the inaccurate health warning that appears after every cell swap on this platform.
BIOS reporting battery health as poor immediately after replacement
The MateBook BIOS stores battery health data in EEPROM tied to the original cell's cycle count and rated Wh. When a new cell is installed, that stored data doesn't auto-clear — the BIOS compares current readings against the old cell's profile and flags a mismatch as poor health. This is a firmware read issue, not a fault with the replacement cell. Running one full discharge-to-hibernate cycle followed by a complete uninterrupted charge forces the BIOS to rewrite the learn cycle data against the new cell. After one to two full cycles, the health indicator normalises.
MateBook 14 shutting down at 20–30% charge shown on screen
This happens when the fuel gauge IC has not yet calibrated against the new cell's actual discharge curve. The gauge reads an estimated state of charge rather than a measured one, and the estimate diverges sharply at the low end. Under combined CPU and display load, the cell's voltage drops faster than the gauge predicted, and the system shuts down to protect the hardware before the display shows 0%. The fix is to complete two or three full discharge-to-cutoff and full-recharge cycles — after that, the fuel gauge IC maps the real curve and the shutdown threshold drops back to the correct level near 5%.