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Iridium BAT2081 Satellite Phone Replacement Battery 3.7V 2400mAh

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Sale priceFrom $34.99 USD Regular price $43.99
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Fits Iridium 9555 satellite phone, replaces OEM battery part BAT2081 and BAT20801.
3.7V, 2400mAh lithium-ion cell delivers 8.88Wh for extended field operations between charging cycles.
Connector seats flush into the battery compartment slot with single-point locking tab on the device rear.
Bench testing shows clean BMS handshake on first insertion; no fault codes during satellite acquisition current draws.
In sub-zero field conditions, keep the battery warm in an inner pocket before use — Li-ion internal resistance rises sharply below 0C and the satellite acquisition current spike can trip the BMS on a cold cell.

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Check that your old battery model number and device model to match our description. This makes sure they work together.


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


Voltage

3.7V

Amp

2400mAh

Iridium 9555 — 3.7V Li-ion Replacement Battery (BAT2081)

This is a 3.7V, 2400mAh Li-ion replacement battery for the Iridium 9555 satellite phone. It slots directly into the 9555 battery bay and runs global voice and text communication via the Iridium satellite network. Voltage and capacity match the OEM spec exactly — no adapter required.

  • Iridium 9555 compatibility: The 9555 uses a single-cell Li-ion pack at 3.7V nominal with a proprietary connector and BMS handshake. This pack meets that handshake requirement, so the phone's fuel gauge and charge circuit operate normally — no false low-battery warnings or charge refusals.
  • Bench tested on actual hardware: We cycled this pack through satellite acquisition sequences on a 9555 — the sharp current spike when the antenna deploys and the radio locks onto a satellite. The BMS held the rail steady through acquisition without tripping, and the charge circuit accepted the pack from flat without prompting a reset.
  • Cold-weather field handling: In sub-zero conditions, keep this battery in an inner chest pocket until the moment you need it. Li-ion internal resistance rises sharply below 0°C, and the satellite acquisition current spike is large enough to trip the BMS on a cell that started cold. A warm pack dramatically reduces that risk.

Iridium 9555 shutting down during satellite acquisition

Satellite acquisition on the 9555 pulls a sharp current spike — the antenna deploys, the L-band radio spins up, and the modem begins scanning for a satellite lock simultaneously. An aged or cold battery may not sustain the rail through that spike, and the BMS trips as a protection response, cutting power entirely. This looks like a random shutdown but it is almost always tied to acquisition timing. If it happens repeatedly, check the cell temperature first — warm the battery to above 10°C and attempt acquisition again before concluding the pack is faulty.

Charger refusing to accept the battery after extended storage

If a 9555 battery has been stored discharged for several weeks or more, the cell voltage may drop below the charger's acceptance threshold — typically around 2.5V for Li-ion. Below that level, the charger sees an out-of-spec pack and refuses to begin a charge cycle. Connect the battery to the phone rather than the stand-alone charger and use the phone's USB port to trickle charge — the phone's internal charge circuit has a pre-charge mode that will recover a low cell. Once the voltage climbs above 3.0V, the standard charger will accept it normally.

Compatible Models

9555

Replaces Part Numbers

BAT2081 BAT20801

Technical Specifications

Voltage3.7V
Amp Hours2400mAh
Capacity2400mAh
Rate8.88Wh
Net Weight60g /2.12 oz
Gross Weight95g /3.35 oz
Approximate Weight95g /3.35 oz
Dimension 108.60 x 38.50 x 12.50mm

Product Highlights

  • Brand: Iridium
  • 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 Iridium 9555 cuts out every time it tries to lock onto a satellite — is the battery causing this?

Yes, this is one of the most common causes. The current draw during satellite acquisition — antenna deployment plus L-band radio lock — spikes sharply, and an aged or cold battery can't hold the voltage rail through it, so the BMS trips and shuts the phone down. Warm the battery to above 10°C before use and try acquisition again. If the problem stops, the original battery has degraded and needs replacing.

The phone is losing charge far faster than expected when I'm using it in cold conditions — what's happening?

Li-ion cells lose usable capacity below 0°C because internal resistance rises as temperature drops — the chemistry simply can't deliver the same current the radio demands. The 9555 transmits at maximum power in cold conditions and the battery reads as depleted long before it actually is at room temperature. Keep the spare battery in an inner pocket and swap it in warm — the capacity comes back once the cell warms up. A battery that reads near-empty at −10°C may still show 60–70% capacity when returned to 15°C.

The stand-alone charger won't start charging a battery that's been sitting unused for two months — the light just blinks and stops.

The cell voltage has dropped below the charger's acceptance floor, which is typically around 2.5V for Li-ion packs. The charger treats anything below that threshold as a fault condition and refuses to begin a cycle. Plug the battery into the 9555 itself and charge via the phone's USB port — its internal charge IC includes a pre-charge stage that will slowly raise the cell voltage. Once the cell reaches approximately 3.0V, remove it and place it back in the stand-alone charger, which will then accept it and complete the charge normally.

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