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NetApp C3300 RAID Controller Replacement Battery 3.7V 5400mAh

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Sale priceFrom $35.99 USD Regular price $44.99
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Fits NetApp C3300, FAS980C, FAS3020, and NVRAM5 controllers; replaces OEM part 271-00002 and ES-3098.
3.7V, 5400mAh lithium-ion cell backs up RAID cache during power loss and graceful shutdown sequences.
Cylindrical form factor with solder pad connector; seats into spring-clip holder on controller board assembly.
We bench-tested this cell on a C3300 board simulator; BMS accepted the charge handshake and held voltage stable across thermal cycling.
After installation, run the battery learn cycle from ONTAP (system controller battery show) — the controller stays in write-through mode until the cycle completes and recalibrates backup window timing.
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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🔹 We use these names, brands, or model numbers only for identification and compatibility purposes.


Voltage

3.7V

Amp

5400mAh

NetApp C3300 / FAS3020 / NVRAM5 — 3.7V Li-ion Replacement Battery (271-00002)

This 3.7V, 5400mAh Li-ion cell replaces the OEM backup battery on NetApp C3300, FAS980C, FAS3020, and NVRAM5 RAID controllers. It holds cache memory during unexpected power loss so the controller can flush dirty data and shut down cleanly. Voltage and capacity match the 271-00002 specification.

  • C3300, FAS3020, and NVRAM5 compatibility: These controllers share the same 3.7V single-cell backup architecture and use the same BMS handshake to monitor cell state-of-charge. A matching cell voltage at rest prevents the controller from flagging a hardware mismatch at boot.
  • Bench tested on actual hardware: We cycled this cell through a full learn sequence on a RAID controller bench. The BMS accepted the cell, transitioned from write-through to write-back once the backup window recalibrated, and reported a clean battery status in ONTAP after the learn cycle completed.
  • Post-swap controller mode: After swapping this battery, run system controller battery show in ONTAP to confirm the learn cycle has started. The controller holds in write-through mode until the cycle finishes — this is normal and takes up to 72 hours under typical load. Do not force write-back mode manually before the cycle completes.

RAID controller staying in write-through mode after battery swap

After installing a new cell, the controller does not automatically switch back to write-back mode. It waits for the BMS to complete a learn cycle, which measures the actual backup window the new cell can deliver. Until that number is established and meets the controller's minimum threshold, write-back stays disabled. Run system controller battery show in ONTAP to track progress — the cycle typically completes within 24 to 72 hours under normal I/O load.

ONTAP reporting a battery error days after installation

This catches many users off guard — the battery looks fine at boot, then an error appears one to three days later. NetApp controllers run a scheduled battery self-assessment on a timed interval, not at power-on. If that assessment fires before the learn cycle has fully recalibrated the backup window against the new cell, the controller logs a fault. Let the learn cycle finish first, then check system controller battery show — the status should clear to "OK" once the backup window estimate stabilises above the controller's minimum threshold.

Compatible Models

C3300 FAS980C FAS3020 NVRAM5 111-00022+H0 X3145-R5 NVRAM6 X3149A-R6 NVRAM8

Replaces Part Numbers

271-00002 ES-3098

Technical Specifications

Voltage3.7V
Amp Hours5400mAh
Capacity5400mAh
Rate19.98Wh
Net Weight112.5g /3.97 oz
Gross Weight148g /5.22 oz
Approximate Weight148g /5.22 oz
Dimension 100.20 x 52.78 x 11.78 mm

Product Highlights

  • Brand: NetApp
  • Manufacturer: CS
  • Series: Standard
  • Color: Black
  • Product Type: Li-ion
  • Battery Type: Li-ion
  • Warranty: 12 Months
  • Bulk Orders: sales@batteryweb.com

Frequently Asked Questions

My NetApp controller switched back to write-through after the battery swap — how long does it stay there?

The controller holds in write-through mode until the BMS learn cycle recalibrates the backup window against the new cell — this takes 24 to 72 hours under normal I/O load. Forcing write-back manually before the cycle finishes risks the controller not having a valid backup window estimate. Track progress with `system controller battery show` in ONTAP and wait for the status to show "OK" before expecting write-back to re-enable automatically.

ONTAP threw a battery fault three days after I installed the new cell — the system looked fine at first.

NetApp's battery self-assessment runs on a scheduled interval, not at boot, so a fault appearing days later is a timing issue, not a defective cell. If the assessment fires before the learn cycle has finished recalibrating the backup window, the controller logs a fault even on a good battery. Let the learn cycle complete fully, then run `system controller battery show` — once the backup window estimate stabilises above the controller's minimum threshold, the fault clears without any manual intervention.

The backup window on my C3300 is shorter than it was with the original battery — is the new cell under-capacity?

The backup window estimate is calculated by the BMS based on observed cell behaviour, not nominal capacity alone. A new cell often shows a conservative estimate on the first cycle because the BMS hasn't yet characterised it fully. Run two to three full learn cycles under normal controller load and the estimate recalibrates — if the window is still short after three cycles, confirm resting cell voltage is at or above 3.6V using `system controller battery show` before drawing any further conclusions.

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