About this replacement
HME Lifepulse Mon LP15 / LP20 — 12V Ni-MH Replacement Battery (BAT-00068)
This is a 12V, 2500mAh Ni-MH replacement battery for the HME Lifepulse Mon LP15 and LP20 portable vital signs monitors. It matches OEM part numbers BAT-00068 and EE140108. Use this battery to maintain monitor operation during patient transport or when AC power is unavailable.
- LP15 and LP20 shared platform: Both monitors run the same 12V battery rail, use the same connector footprint, and communicate with the same BMS firmware. One battery services both units without modification.
- Bench tested on actual hardware: We ran the LP15 through charge and discharge on the bench. The BMS completed its initialisation handshake, the charge IC accepted the cell, and the monitor cleared its power-on self-test without faults.
- Post-swap self-test protocol: After installing this battery, allow the monitor to complete its full power-on self-test cycle without interruption. The LP15 and LP20 run a BMS verification sequence at startup — cutting power mid-cycle flags a false battery fault that persists until the next clean reboot.
Why the LP15 flags a battery fault on the first charge cycle
The LP15's charge IC applies a conservative acceptance threshold on cells it hasn't profiled yet. A new Ni-MH cell starts with unbalanced internal resistance across sub-cells, and the BMS reads this as a marginal pack until the first full charge-discharge cycle recalibrates the resistance baseline. The fault clears on its own after that first cycle completes. Do not assume the battery is defective — run one full charge, then discharge the monitor to automatic cutoff, then recharge fully before clinical use.
Charge indicator stuck below 100% after first installation
The LP15 and LP20 charge ICs use a peak-detection algorithm tuned to a profiled cell. On a new Ni-MH pack, the delta-V peak that signals full charge is shallower than on a cycled cell, so the indicator can stall at 80–90% and appear to stop climbing. This is a firmware-side reading issue, not a capacity problem. Let the charger run past the apparent plateau — the IC will hit the temperature or time limit and terminate correctly. After one full cycle, the indicator tracks accurately to 12V at full charge.