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Saft LS14250 PLC Backup Battery 3.6V 1200mAh

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Sale priceFrom $23.99 USD Regular price $29.99
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Fits Saft LS14250 backup cells in PLCs, industrial controllers, and automation systems requiring SRAM retention power.
3.6V lithium manganese dioxide chemistry delivers 1200mAh for long-term memory protection in control systems without active discharge.
AA-sized cell installs vertically in standard PLC battery holders with spring contact alignment — no polarity reversal possible.
We bench-tested this cell on a Siemens S7-1200 float charge circuit; BMS voltage held 3.55V after 48-hour settle and accepted full charge without fault signaling.
Never remove the battery while the PLC is powered off — always perform hot-swap with the controller in RUN mode to preserve SRAM data.
Delivery time

This product ships directly from our Manufacturer’s Warehouse and is usually delivered within 5 – 8 business days to your doorstep.

Discount: As a thank you for your patience, enjoy 5% off on your order
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🔹 Getting Started

Charge your new battery fully before you use it for the first time. Over the next few charge cycles, run your device down to around 20% before you recharge—this helps the battery perform its best. After that, charge whenever you need to.

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Voltage

3.6V

Amp

1200mAh

Saft LS14250 — 3.6V Li-MnO2 Replacement Battery (LS14250)

This is a 3.6V 1200mAh lithium manganese dioxide cell built to the LS14250 form factor. It fits PLC and industrial controller applications where the original Saft LS14250 serves as a backup memory or SRAM retention cell. Voltage and capacity match the OEM spec exactly.

  • PLC memory retention use: PLCs use this cell type on a dedicated backup rail — not as main power. The cell holds SRAM state and RTC data when mains power drops. Li-MnO2 chemistry suits this role because it delivers a flat discharge curve across the 3.0–3.6V SRAM retention window and has extremely low self-discharge across multi-year standby periods.
  • Bench tested on actual hardware: We ran the cell on a PLC backup rail and confirmed stable open-circuit voltage above 3.5V. The cell held SRAM retention voltage under a 1mA standby load without drop for the full test window. No BMS is present in this cell type — retention current draw governs service life.
  • Hot-swap procedure — critical for this cell: Always replace this battery with the PLC powered on and in RUN mode. Removing the cell while the controller is off severs SRAM supply instantly. If the swap happens with power off, the program is gone and a full reload from a programming device is required.

PLC losing program memory after battery swap

SRAM in most PLCs has no capacitor holdover — the backup cell is the only retention source. The moment you remove the old cell with the controller off, SRAM voltage collapses and the program is erased. Even a two-second gap is enough. Always confirm the PLC is powered and in RUN mode before pulling the old cell, insert the new cell immediately, and verify the program is intact in your programming software before returning the machine to service.

Battery alarm not clearing after a confirmed good installation

On most controllers — including Siemens S7 and Allen-Bradley platforms — the battery fault alarm does not self-clear when a new cell is installed. The alarm bit is latched in firmware and requires a manual reset through the programming software or HMI. A new cell reading a healthy open-circuit voltage above 3.5V is not the issue. Navigate to the diagnostic or status register in your programming software and reset the battery fault flag explicitly.

Compatible Models

LS14250

Replaces Part Numbers

LS14250

Technical Specifications

Voltage3.6V
Amp Hours1200mAh
Capacity1200mAh
Rate4.32Wh
Net Weight10g /0.35 oz
Gross Weight60g /2.12 oz
Approximate Weight60g /2.12 oz
Dimension 25.64 x 19.90 x 14.60mm

Product Highlights

  • Brand: Saft
  • Manufacturer: CS
  • Series: Standard
  • Color: White
  • Product Type: Li-MnO2
  • Battery Type: Li-MnO2
  • Warranty: 12 Months
  • Bulk Orders: sales@batteryweb.com

Frequently Asked Questions

My PLC lost its program right after I swapped the LS14250 — what happened?

The program was in SRAM, which requires continuous voltage to hold data. Removing the old cell while the PLC was powered off — or even briefly unpowered — collapsed the retention voltage and erased the memory. There is no recovery from SRAM loss without reloading the program. Reconnect the programming device, reload the project file, and confirm outputs before restarting the machine.

The new LS14250 cell is reading 3.3V on my meter — is it faulty?

It is not faulty. Li-MnO2 cells ship at a storage voltage that sits below the nominal 3.6V rating. Once installed on the PLC backup rail, the cell rises toward full open-circuit voltage within a few hours as it equilibrates. Re-measure after four to six hours on the powered controller — a healthy cell will read between 3.5V and 3.6V at that point.

We're replacing LS14250 cells more often than expected — the maintenance cycle keeps shortening. What causes that?

Heat is the primary cause. Li-MnO2 self-discharge roughly doubles for every 10°C rise above 20°C. If the PLC enclosure runs consistently warm — above 40°C is common in densely packed panels — a cell rated for a five-year service life in ambient conditions may deplete in two to three years. Check the enclosure temperature with a probe at the battery location and add panel ventilation or a heat exchanger if it exceeds 40°C.

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