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Adalit L-3000 Replacement Battery 3.7V 5200mAh Li-ion

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Sale priceFrom $43.99 USD Regular price $54.99
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Fits Adalit L-3000, L-3000 Power, and IL-300 flashlights; replaces OEM part 90703201 and L3.60.
3.7V, 5200mAh lithium-ion cell delivers 19.24Wh for sustained output in tactical and industrial inspection applications.
Cylindrical cell slides into the L-3000 battery tube with spring-contact locking; verify smooth seating before cap closure.
We bench-tested this cell through full charge cycles in an Adalit charger; BMS accepted handshake cleanly with no fault cycling.
If the L-3000 dims noticeably before the low-battery indicator triggers, the driver is entering brownout protection — switch to standard mode to extend usable runtime.

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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.

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


Voltage

3.7V

Amp

5200mAh

ADA-RO Adalit L-3000 / IL-300 — 3.7V Li-ion Replacement Battery (90703201)

This is a 3.7V, 5200mAh (19.24Wh) lithium-ion battery for the Adalit L-3000, Adalit L-3000 Power, and IL-300 torches. These lights are used in emergency response, industrial inspection, and security work — situations where a dead torch is not an option. This battery matches the OEM voltage, capacity, and cell dimensions (70 × 37 × 20mm) of the original.

  • L-3000, L-3000 Power, and IL-300 compatibility: All three models share the same battery bay geometry, 3.7V supply rail, and BMS handshake — one cell format covers the whole platform without modification.
  • Bench tested on actual hardware: We ran this cell through charge and discharge cycles on the L-3000 driver. The BMS accepted charge correctly, cell voltage held stable under high-output draw, and protection cutoff triggered cleanly at the low-voltage threshold.
  • Single-cell replacement — swap the whole unit: The L-3000 runs on one cell, so partial replacement is not a concern here. What matters is waiting until the existing cell is fully depleted before storage — lithium cells sitting at partial charge degrade faster than those stored near 50% state of charge.

Turbo mode runtime dropping faster than expected

Turbo on the L-3000 drives the LED at maximum current — typically five to ten times the draw of a standard or low mode. A 5200mAh cell delivers its full capacity regardless, but high-current discharge compresses usable capacity because internal resistance converts more energy to heat than light. If turbo runtime feels short, that is physics, not a fault in the cell. Drop to high or standard mode to recover proportionally more of the cell's rated capacity per use cycle.

Flashlight stepping down output before the indicator reads low

The L-3000 driver includes brownout protection — when cell voltage drops under sustained high-current draw, the driver steps the output down rather than cutting off. This can look like early dimming even though the battery indicator has not triggered. It is the driver protecting the cell from voltage collapse, not a sign of a weak battery. If you see this, switch to a lower mode and allow the cell voltage to recover — it will typically stabilise above the brownout threshold within seconds.

Compatible Models

Adalit L-3000 Adalit L-3000 Power IL-300

Replaces Part Numbers

90703201 L3.60

Technical Specifications

Voltage3.7V
Amp Hours5200mAh
Capacity5200mAh
Rate19.24Wh
Net Weight95g /3.35 oz
Gross Weight120g /4.23 oz
Approximate Weight120g /4.23 oz
Dimension 70.00 x 37.00 x 20.00mm

Product Highlights

  • Brand: ADA-RO
  • 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

Why does my Adalit L-3000 dim suddenly on turbo before the battery indicator shows low?

The L-3000 driver uses brownout protection — when the cell voltage dips under the sustained current demand of turbo mode, the driver steps output down automatically to prevent voltage collapse. This is not a fault in the battery or the light. Switch to high or standard mode for a few seconds and the cell voltage will recover above the threshold. If it keeps stepping down immediately on return to turbo, the cell is near end-of-discharge and needs a full recharge.

My L-3000 spent several months in storage and now it won't hold charge — is the cell dead?

Lithium cells stored fully discharged can drop below the BMS re-initialisation threshold, which causes the charger to show no activity. We have seen this on the bench — the cell is not necessarily dead. Connect it to the OEM charger or a Li-ion charger with a "wake" or "recovery" mode and leave it for 30–60 minutes at low current. If the cell voltage recovers above 2.5V, the BMS will re-engage and normal charging will resume. If the cell stays below 2.5V after that window, replace it.

The L-3000 flickers between modes near the end of a charge cycle — what's causing it?

This is driver brownout cycling — the cell voltage is hovering right at the edge of the driver's minimum operating threshold, causing it to step down, briefly recover, then step down again. It is the driver doing its job, not a fault in the battery. Switching to a lower mode stops the cycling because the reduced current draw keeps cell voltage above the threshold. Recharge the cell when you see this behaviour — it means you are close to the end of usable capacity for that discharge cycle.

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