About this replacement
Symbol MC9000 / MC909X-K Series — 7.4V Li-ion Replacement Battery (BRTY-MC90SAB00-01)
This 7.4V, 3400mAh Li-ion battery replaces the OEM pack in Symbol MC9000 series mobile computers, including the MC909X-K and MC9090-K. It fits the multi-pin connector and BMS handshake protocol used across the MC9000 platform. Slot it in, seat it in the cradle, and the unit resumes normal charging and boot behaviour.
- MC9000 platform fit: The MC9000, MC909X-K, MC9090-K, and related MC909 variants share the same 7.4V battery bay, connector pinout, and BMS communication bus — one pack covers the full range without adapters or firmware workarounds.
- Bench tested on actual hardware: We ran this pack through charge and discharge cycles on MC9000-series hardware and verified BMS handshake completion, correct state-of-charge reporting on the device display, and stable voltage delivery through combined scan and wireless transmit loads.
- First-shift cradle cycle: After installing a new pack, seat the scanner in its cradle and let it complete a full charge cycle before starting pick-and-pack. The scan trigger draws peak inrush current at low cell voltage — a pre-charged pack prevents a false BMS trip on the opening scan burst of the first shift.
Cradle showing charging error on a new MC9000 pack
The MC9000 cradle reads battery state through the pack's contact pads before initiating a charge cycle. If those pads have oxidation, shipping residue, or uneven seating pressure, the dock sees high contact resistance and throws a charge fault. Wipe the gold contacts on the battery and the cradle bay with a dry lint-free cloth, then reseat the pack with firm downward pressure until the latch clicks. If the error clears within 30 seconds, the contacts were the issue — not the pack or the cradle electronics.
Scanner losing wireless connection during a rapid scan burst
During a rapid scan burst, the MC9000 pulls current for the imager or laser, the CPU decode cycle, and the 802.11 radio transmit all within a tight window. A weakened or deeply discharged cell can't sustain voltage through that combined draw, and the radio drops off first because it requires a stable rail to maintain association. The BMS may not trip — the device stays on, but the wireless link drops and reconnects, causing missed transmissions. Charge the pack to full before the shift and confirm resting voltage is above 7.2V before loading the unit into rotation.