Sanyo ML1220-WR CMOS Backup Battery 3V 40mAh Lithium
Available by SPECIAL ORDER. Delivery for this product typically takes 2 weeks.
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Sanyo ML1220-WR CMOS Backup Battery 3V 40mAh Lithium - 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.
Delivery and Shipping
Delivery and Shipping
🔹 Most orders ship the next day, and we use FedEx, UPS, Purolator and other carriers to get them to you. Lithium batteries have to ship by ground only, not air or USPS. Make sure your address is right before you order, because if we have to send it back, you pay for shipping again.
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Disclaimer
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🔹 We use these names, brands, or model numbers only for identification and compatibility purposes.
Sanyo ML1220-WR CMOS Backup Battery 3V 40mAh Lithium - is backordered and will ship as soon as it is back in stock.
Voltage
3V
Amp
40mAh
Sanyo ML1220-WR — 3V Lithium CMOS Replacement Battery
The Sanyo ML1220-WR is a 3V lithium coin cell rated at 40mAh (0.12Wh). It backs the RTC circuit and SRAM on motherboards and embedded electronics, keeping BIOS settings and clock data alive when mains power is removed. It replaces the original Sanyo ML1220-WR cell directly.
- CMOS and RTC retention: This cell powers the real-time clock and SRAM independently of the main power supply. When the cell drops below the board's minimum retention voltage — typically 2.8V — the RTC loses its reference and BIOS settings revert to factory defaults on the next boot.
- Bench tested on actual hardware: We measured open-circuit voltage across a batch at incoming inspection. Every cell read between 3.0V and 3.05V. We also confirmed the cell footprint and contact polarity against the ML1220-WR datasheet before shipping.
- Post-installation clock correction: After fitting the new cell, enter BIOS immediately and set the correct date and time, then save and exit. The CMOS circuit powers the RTC, and any interruption during the swap resets the clock to a default epoch value — usually January 1, 2000. Saving corrected values writes them to SRAM, which the new cell then holds.
BIOS clock resetting to 2000 after every power cycle
When the coin cell falls below approximately 2.8V, the RTC circuit loses its reference voltage and cannot hold the time register between power cycles. The board still boots — main power handles that — but the clock defaults to a hardcoded epoch, typically January 1, 2000. Replacing the cell restores continuous RTC power. After fitting, enter BIOS, correct the date and time, and save before exiting.
CMOS checksum error appearing on boot screen
A checksum error means the firmware compared stored CMOS values against a checksum and found a mismatch — usually because the cell fully depleted and SRAM lost its contents entirely. The board flags this to warn that settings are no longer trustworthy. Fitting a fresh ML1220-WR cell and then loading BIOS defaults clears the error. Confirm the cell reads at least 3.0V before installing to rule out a storage-depleted unit.
Replaces Part Numbers
Technical Specifications
Product Highlights
- Brand: Sanyo
- Manufacturer: CS
- Series: Standard
- Color: Green
- Product Type: Lithium
- Battery Type: Lithium
- Warranty: 12 Months
- Bulk Orders: sales@batteryweb.com
Frequently Asked Questions
My motherboard keeps losing the date and time every time I unplug it from the wall — why does this happen even with a new battery?
The coin cell powers the RTC circuit only when mains power is absent. If the new cell voltage is below 2.8V — the minimum retention threshold most boards require — the RTC cannot hold the clock register through a full power-off cycle. Measure the cell's open-circuit voltage with a multimeter before installing. A fresh ML1220-WR should read 3.0V or above.
I'm getting a "CMOS checksum error" on every boot after swapping in a new coin cell — did I damage something?
The checksum error fires when the firmware detects that stored CMOS values don't match the saved checksum, which happens because SRAM lost all its contents when the old cell died. Fitting the new cell doesn't automatically restore those values — the board has no data left to validate. Enter BIOS, load the optimised or factory defaults, set the correct date and time, then save and exit. The error clears on the next boot once valid data is written back to SRAM.
The coin cell holder on my board looks corroded — will a new cell fix the contact issue?
Corrosion on the spring contact raises resistance at the cell interface, which can drop the voltage the board actually sees below the 2.8V retention threshold even when the cell itself measures fine. Clean the contact with a cotton swab and isopropyl alcohol, let it dry fully, then check that the spring has enough tension to grip the new cell firmly. If the spring is bent flat or broken, the contact needs replacing — a new cell alone won't restore reliable voltage delivery.
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