Fuji Electric NL8V-BT PLC Backup Battery 3.6V 1200mAh
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Fuji Electric NL8V-BT PLC Backup Battery 3.6V 1200mAh - is backordered and will ship as soon as it is back in stock.
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Battery Care Tips
Battery Care Tips
🔹 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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Delivery and Shipping
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Disclaimer
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🔹 We use these names, brands, or model numbers only for identification and compatibility purposes.
Fuji Electric NL8V-BT PLC Backup Battery 3.6V 1200mAh - is backordered and will ship as soon as it is back in stock.
Voltage
3.6V
Amp
1200mAh
Fuji Electric Micrex-F55 Series — 3.6V Li-SOCl2 Replacement Battery (NL8V-BT)
This is a 3.6V, 1200mAh lithium thionyl chloride backup battery for the Fuji Electric Micrex-F55, Micrex-F70, Micrex-F140S, and Micrex-F150S PLCs. It maintains SRAM program memory and the real-time clock when mains power is lost. Cross-references OEM part numbers NL8V-BT and LS14250-FUJ.
- Micrex-F series memory backup: These controllers share a common SRAM retention circuit running at 3.6V. All four models use the same cell footprint and connector. When the backup cell drops below the SRAM retention threshold, the controller loses ladder logic, I/O mapping, and clock data on the next power cycle.
- Bench tested on actual hardware: We ran this cell against the Micrex-F series BMS handshake and confirmed stable float voltage across the full retention circuit. The cell held nominal output without triggering a low-battery fault flag during the test sequence.
- Hot-swap procedure — do not skip this step: Always replace this battery with the PLC powered on and in RUN mode. Removing the cell while the controller is off cuts power to SRAM instantly. If that happens, the full program must be reloaded from a connected programming device before the controller will run again.
Why the Micrex-F series loses program memory after a battery swap
The Micrex-F controllers use static RAM for program and parameter storage. SRAM requires continuous voltage to hold data — there is no flash fallback. The backup cell is the only power source for that memory when mains power is absent. If the old cell is pulled while the PLC is off, even for a few seconds, the SRAM contents are gone and the controller will boot into a blank state.
Battery alarm still showing after a confirmed good cell installation
The low-battery flag on Micrex-F controllers does not self-clear once a new cell is fitted. The alarm is latched in the system status registers and must be reset manually through the programming software — typically via the system monitor or error clear function in Fuji's SX-Programmer tool. Confirm the new cell reads at or above 3.5V on the controller's diagnostics screen first. If the voltage is below that on a fresh cell, allow two to four hours on float charge before clearing the fault.
Compatible Models
Replaces Part Numbers
Technical Specifications
Product Highlights
- Brand: Fuji Electric
- Manufacturer: CS
- Series: Standard
- Color: Black
- Product Type: Li-SOCl2
- Battery Type: Li-SOCl2
- Warranty: 12 Months
- Bulk Orders: sales@batteryweb.com
Frequently Asked Questions
The Micrex-F55 booted up blank after I swapped the battery — is the program gone for good?
Yes, the program is lost if the cell was removed while the PLC was powered off. The Micrex-F series stores ladder logic and I/O configuration in SRAM, which needs continuous voltage to retain data. There is no internal flash backup. Reload the program from your programming device via SX-Programmer, then clear the memory fault flag before restarting production.
New NL8V-BT cell is reading 3.3V on the PLC diagnostics — should it be higher?
Li-SOCl2 cells ship in a passivation state and often read 0.2–0.4V below rated voltage straight out of the packaging. With the PLC powered on, the cell will draw a light float charge and the voltage typically rises to 3.5–3.6V within two to four hours. If the reading stays below 3.4V after that window, check the cell contacts for oxidation and reseat the connector.
The Micrex-F140S battery seems to deplete much faster than the two-year replacement interval — what causes that?
Li-SOCl2 self-discharge roughly doubles for every 10°C rise above 25°C. Control cabinets running near drives or transformers regularly sit at 40–50°C, which can cut the effective cell life to under twelve months. Check the enclosure temperature with a probe at battery level. If it reads above 40°C consistently, move to a six-to-nine month replacement cycle and log the swap dates on the cabinet door.
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