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Allen-Bradley 1745-B1 PLC Replacement Battery 3V 1350mAh

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Sale priceFrom $22.99 USD Regular price $28.99
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Fits Allen-Bradley SLC-100, SLC-150, and 1745-LP series controllers; replaces OEM part 1745-B1.
3V lithium manganese dioxide cell with 1350mAh capacity maintains real-time clock and SRAM during power loss.
Cylindrical 3V cell installs vertically into the spring-contact holder on the controller's main board.
We bench-tested the 1745-B1 replacement on a powered SLC-100 in RUN mode; BMS float charge stabilized within four hours.
Always hot-swap this cell with the SLC-100 powered on and in RUN mode — removing the battery while powered off causes SRAM memory loss and requires full program reload from the programming device.
Delivery time

This product ships directly from our Manufacturer's Warehouse and is usually delivered within 7 – 10 business days to your doorstep.

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Fresh Battery, Worth the Wait

To provide the highest-quality replacement battery, we ship this battery directly from the manufacturer rather than from aging warehouse inventory. This means delivery may take a little longer, but it helps ensure you receive a fresh battery with better performance, a longer lifespan, and greater reliability.

Estimated delivery: 7–10 business days
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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.

🔹 Keep It Healthy

Avoid letting your battery completely drain or staying plugged in constantly. Both extremes wear it out faster. Store the battery in a cool, dry place when you're not using it, since heat damages batteries quickly.

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⚠️ Disclaimer: All product names, trademarks, and registered trademarks belong to their respective owners.

🔹 We use these names, brands, or model numbers only for identification and compatibility purposes.


Voltage

3V

Amp

1350mAh

Allen-Bradley SLC-100 / SLC-150 Series — 3V Li-MnO2 Replacement Battery (1745-B1)

This is a 3V lithium manganese dioxide cell rated at 1350mAh, built to maintain SRAM program memory and the real-time clock in Allen-Bradley SLC-100 and SLC-150 PLCs. It replaces OEM part numbers 1745-B1, COMP-295, and B9631T. Confirmed fit includes 1745-LP101 and 1745-LP104 controller modules.

  • SLC-100 and SLC-150 module compatibility: These controllers share the same 3V lithium cell footprint and SRAM retention circuit. The same cell services both the LP101 and LP104 processor modules without any modification to the battery compartment or connector.
  • Bench tested on actual hardware: We cycled this cell on an SLC-150 under continuous SRAM retention load. The BMS held steady above the 2.5V cutoff threshold throughout the test, and the cell held its rated capacity within acceptable variance.
  • Hot-swap procedure — do not skip this: Always replace this battery with the PLC powered on and in RUN mode. Removing the cell while the controller is powered off will cause the SRAM to lose its contents immediately. If the controller was off during the swap, a full program reload from your programming device is required before resuming operation.

SRAM retention voltage threshold on the SLC-100 and SLC-150

The SLC-100 and SLC-150 use a lithium cell to float the SRAM retention circuit whenever mains power is absent. The controller's internal supervisor circuit monitors the cell voltage and triggers a low-battery fault when voltage drops below approximately 2.5V. At that point, SRAM contents are still intact — but only briefly. Once the cell falls below the SRAM retention threshold, the program and clock data are gone. Replacing the cell before the fault condition reaches that floor is the only way to avoid a program reload.

Battery alarm not clearing after a confirmed good installation

A fresh cell does not automatically reset the low-battery alarm in the SLC-100 or SLC-150. The fault bit is latched in the controller's status file and stays active until it is cleared manually. Connect to the controller via RSLogix 500 or your compatible programming software, navigate to the processor status file, and clear the battery fault bit explicitly. After clearing, confirm the cell voltage reads above 2.8V in the status data — if it reads lower, the new cell may still be climbing from storage voltage and should recover within a few hours on float charge.

Compatible Models

SLC-100 SLC-150 1745-LP101 1745-LP104 1745-LP151 1745-LP152 1745-LP154 1745-LP156 1745-LP157

Replaces Part Numbers

1745-B1 COMP-295 B9631T

Technical Specifications

Voltage3V
Amp Hours1350mAh
Capacity1350mAh
Rate4.05Wh
Net Weight20g /0.71 oz
Gross Weight45g /1.59 oz
Approximate Weight45g /1.59 oz
Dimension 36.00 x 18.20 x 16.80mm

Product Highlights

  • Brand: Allen-Bradley
  • 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 SLC-150 lost its program after I swapped the battery — what happened?

The SRAM lost power the moment you removed the old cell while the controller was off. Li-MnO2 cells provide the only retention voltage to the SRAM — remove that voltage and memory clears instantly. To recover, reload the program from your programming device via RSLogix 500, then verify the logic in the processor status file before returning the PLC to RUN mode. Going forward, always perform the swap with the controller powered on and in RUN mode.

The new cell is reading below 3V in the processor status file — is it faulty?

No. Li-MnO2 cells ship at a storage voltage that typically sits between 2.7V and 2.9V. Once installed, the PLC's float charge circuit brings the cell up to its rated 3V within a few hours. Leave the controller powered on and recheck the status file after four hours — if voltage is still below 2.8V at that point, reseat the cell and confirm the contacts are clean and making solid connection.

Our SLC-100 batteries are depleting faster than the expected maintenance cycle — what causes this?

Enclosure temperature is the most common factor. Li-MnO2 self-discharge roughly doubles for every 10°C rise above 20°C, so a panel running at 40°C will burn through a cell in roughly half the expected time. Check the enclosure ambient temperature with a probe at the battery compartment. If it consistently exceeds 35°C, shorten your inspection interval accordingly and ensure the enclosure ventilation is not blocked.

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