About this replacement
Nipro NCU-12 — 12V Ni-MH Replacement Battery (10N-700AACL)
This is a 12V, 2000mAh Ni-MH replacement battery for the Nipro NCU-12 patient monitoring device. It uses OEM part number 10N-700AACL and slots directly into the NCU-12 battery bay. Capacity matches the original at 2000mAh (24Wh).
- NCU-12 compatibility: The NCU-12 runs a 12V battery rail with a BMS handshake that checks chemistry type and cell voltage on startup. This cell matches the Ni-MH chemistry profile the device expects, so the handshake completes without triggering a battery fault code.
- Bench tested on actual hardware: We cycled this cell through the NCU-12 charge and discharge sequence. The BMS accepted the cell on the first cycle, reached full charge without flagging a fault, and the device passed its power-on self-test each time.
- Post-installation self-test: After fitting this battery, let the NCU-12 complete its full power-on self-test without pressing any keys or interrupting the boot sequence. The device runs a BMS verification pass at startup — cutting power during this window writes a battery fault flag that persists until the next clean reboot.
NCU-12 not completing boot sequence on new Ni-MH cell
The NCU-12 boot sequence includes a battery self-test that checks resting cell voltage before allowing full startup. A new Ni-MH cell sitting in storage can drop below the BMS recovery threshold through self-discharge, which causes the device to stall mid-boot rather than reaching the home screen. Charge the replacement cell fully before first installation — do not install it straight from the packaging. Once the cell reads at or above 13.2V on a resting charge, the boot sequence completes normally.
NCU-12 charge indicator not reaching 100% on first charge cycle
On the first charge after installation, the NCU-12 charge IC applies a conservative current limit to an unrecognised cell — this is normal behaviour for medical-grade charge controllers. The indicator may plateau at 85–95% and appear to stall. Do not pull the charger early. Allow the charge cycle to complete fully; the IC will push through the final top-up phase once it completes its cell recognition pass. After one full charge-discharge cycle, subsequent charges reach 100% at the expected rate.