About this replacement
Kodak PIXPRO S1 / AZ651 Astro Zoom — 7.4V Li-ion Replacement Battery (LB-070)
This is a 7.4V, 850mAh Li-ion replacement cell for the Kodak PIXPRO S1 and PIXPRO AZ651 Astro Zoom digital cameras. It uses the OEM part number LB-070 and fits the same battery bay without modification. Capacity matches the original specification at 850mAh (6.29Wh).
- PIXPRO S1 and AZ651 platform fit: These models share the same LB-070 battery footprint, connector pinout, and BMS communication protocol — one cell covers both bodies without any adapter or wiring change.
- Bench tested on actual hardware: We cycled this cell through the Kodak OEM charger and via in-body charging on the PIXPRO S1. The BMS accepted the cell on first insertion and battery-remaining display tracked correctly through the full discharge curve after one complete charge cycle.
- First-use charge cycle on the AZ651 Astro Zoom: The Astro Zoom's BMS maps battery percentage against a learned discharge curve. Run one full charge-to-depletion cycle inside the camera body or OEM charger before heavy shooting — this synchronises the fuel gauge so the indicator does not jump erratically between shots.
Why the PIXPRO S1 shows a dead-battery indicator on a partially charged replacement cell
The PIXPRO S1 reads battery state by comparing real-time cell voltage against stored threshold values calibrated to the original LB-070 discharge curve. A new replacement cell sitting at storage charge — typically 3.7–3.8V per cell — can fall outside the camera's expected "charged" voltage window, triggering a low or empty indicator immediately on insert. This is a threshold mismatch, not a fault with the cell. Charge the replacement fully in the OEM charger first; once the cell reaches 4.2V per cell, the camera reads it correctly on next power-on.
Battery percentage jumping erratically on the PIXPRO AZ651 display mid-shoot
The AZ651's battery indicator does not read raw voltage — it uses a mapped lookup table tied to the discharge curve of a cycled cell. A new replacement cell has a slightly flatter mid-range discharge curve than a worn original, so the camera's firmware maps the same voltage to a different percentage point and the display jumps. Running one full charge-discharge cycle inside the camera body recalibrates the fuel gauge against the actual curve of the new cell. After that cycle, the indicator stabilises and tracks accurately through the remainder of each charge.