About this replacement
Universel AA x 5 — 6V Ni-MH Replacement Battery for Cordless Phones
This is a 6V, 2000mAh Ni-MH battery pack built from five AA cells in series. It fits cordless DECT handsets that originally used a 5-cell AA Ni-MH configuration. Check your existing pack's cell count and connector orientation before ordering.
- 5-cell AA series configuration: Cordless phones using this layout run a 6V rail to power both the RF transmitter and the handset logic board. The cells must match in capacity and internal resistance — mismatched cells cause early voltage dropout under RF load, which the phone reads as a dead battery.
- Bench tested on actual hardware: We cycled this pack through charge and discharge on a cordless handset base station. The BMS accepted charge without error from cycle one, and voltage held steady across both standby and active transmission draws.
- First-charge conditioning for Ni-MH handsets: Place the handset in the base for a full 16-hour charge before first use. Ni-MH cells in cordless phone packs ship partially discharged. A slow first charge lets each cell reach balanced capacity — skipping this step leaves measurable capacity on the table for the first several cycles.
Base station showing no charge or an error light on a new Ni-MH pack
Most DECT base stations use a delta-V detection circuit to confirm charging. A Ni-MH pack that arrives from storage below roughly 5.4V can sit outside the base's acceptance window, causing the station to flag an error instead of starting a charge cycle. The fix is straightforward: charge the pack externally with a basic AA Ni-MH charger until it reaches at least 5.6V, then seat it back in the base. The station's detection circuit should then recognise the pack and begin a normal charge.
Range drops noticeably after a battery swap
DECT handsets regulate transmit power directly off the battery voltage. When a Ni-MH pack sags under the RF load of an active call, the handset's power amplifier backs off to stay within its operating window — and range shrinks as a result. This is more pronounced in the first few charge cycles before the cells are conditioned. Run three to five full charge-and-discharge cycles and check whether range recovers. If sag continues past cycle five, measure the pack voltage under load — it should stay above 5.2V during a call.