About this replacement
Stonex P7 Controller / S3 / S6 / S9 — 7.4V Li-Polymer Replacement Battery (BP-1S)
This is the BP-1S Li-Polymer battery for the Stonex P7 Controller and compatible S-series handheld survey instruments. It runs at 7.4V with a 1400mAh (10.36Wh) capacity. The P7 Controller is a field data collector used with GNSS receivers and total stations, and this pack keeps it running when AC power is not an option.
- P7 Controller and S-series compatibility: The P7, S3, S6, and S9 share the same BP-1S battery form factor, voltage rail, and connector geometry. The BMS handshake is identical across the series, so one pack covers all four instruments without modification.
- Bench tested on actual hardware: We cycled this pack through simulated GNSS acquisition loads and total station sensor polling. The BMS held the output rail stable under the current spikes that occur at sensor initialisation — no cutoff events across the test runs.
- First deployment calibration: After installing, run a full calibration cycle through the instrument menu before heading into the field. The P7 maps battery state during that calibration sequence — skipping it causes premature low-battery warnings during your first measurement session, even with a full charge.
BMS lockout after the P7 sat unused in a carry case for months
Li-Polymer cells self-discharge slowly during storage. If the pack voltage drops below the BMS recovery threshold — typically around 2.5V per cell — the protection circuit locks out to prevent further discharge damage. When this happens, the P7 will not power on and the charger shows no activity. Connecting the pack to a compatible Li-Po charger with a recovery or boost mode for 10–15 minutes is usually enough to bring the cell voltage back above the re-initialisation threshold. Once the charger shows normal charging current, the BMS has recovered and you can proceed with a full charge cycle.
P7 display showing an inconsistent battery percentage after reboot
The P7's battery indicator is voltage-threshold based — it reads cell voltage and maps it to a percentage. A new or freshly recovered pack has a slightly different voltage curve than the depleted cell it replaced, so the instrument's indicator can read erratically for the first few cycles. This is not a fault with the pack. Run two to three full charge-and-use cycles through normal survey operation, and the indicator will stabilise as the instrument recalibrates its thresholds to the new cell's curve. After that, the percentage readout tracks consistently through a working session.