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High-drain 2.5Ah 18650 lithium-ion power cell designed for applications that need proven Samsung SDI quality, a strong 20A continuous-discharge rating, compact 18650 compatibility, and a rugged performance profile for tools, lighting, RC systems, robotics, and custom packs.
The Samsung INR18650-25R is one of the classic high-drain 18650 cells: moderate capacity, strong discharge current, predictable pack behavior, and broad compatibility with 18650-oriented systems. It is best used where current delivery matters more than maximum runtime per cell.
For engineering calculations, use 2500mAh standard discharge capacity, 2450mAh rated discharge capacity at 10A, 3.6V nominal voltage, and 20A maximum continuous discharge.
| Brand / Model | Samsung SDI INR18650-25R |
|---|---|
| Cell Type | 18650 cylindrical lithium-ion rechargeable cell |
| Standard Discharge Capacity | Minimum 2500mAh at 0.2C / 500mA discharge to 2.5V |
| Rated Discharge Capacity | Minimum 2450mAh at 10A discharge to 2.5V after rated charge |
| Nominal Voltage | Samsung specification: 3.6V; live retail listing: 3.7V |
| Charge Cut-Off Voltage | 4.20V |
| Discharge Cut-Off Voltage | 2.50V |
| Standard Charge Method | 1.25A CC-CV to 4.20V, terminate at 125mA |
| Rated Charge Method | 4A CC-CV to 4.20V, terminate at 100mA |
| Charging Time | Standard charge approx. 180 minutes; rated charge approx. 62 minutes |
| Max Continuous Discharge | 20A at room temperature Primary product rating |
| Pulse Discharge Reference | 100A momentary pulse, less than 1 second, in Samsung characterization material |
| Initial Impedance | ≤18mΩ AC at 1kHz; ≤30mΩ DC reference in Samsung characterization material |
| Dimensions | Height max 65.00mm; diameter max 18.40mm in product specification |
| Weight | 45.0g max; characterization material shows ~43.8g typical |
| Operating Temperature | Charge 0°C to 45°C; discharge -20°C to 60°C ambient |
| Storage Temperature | 1 year: 0–23°C; 3 months: 0–45°C; 1 month: 0–60°C at ex-factory status |
| Shipment Voltage | 3.43V to 3.58V charging-voltage range |
| Protection | No — unprotected bare cell |
These quick-reference visuals summarize how the 25R behaves in relation to current, voltage window, capacity-to-energy translation, and C-rate interpretation.
Key current reference points for standard charge, rated charge, rated capacity testing, continuous discharge, and momentary pulse characterization.
Basic per-cell voltage limits used for charger, BMS, and pack configuration.
Approximate nominal energy using Samsung’s 3.6V nominal-voltage specification.
For a 2500mAh cell, 1C equals approximately 2.5A.
| 0.5C | 1.25A standard charge |
|---|---|
| 1C | 2.5A normalized current reference |
| 4A | ≈1.6C rated charge |
| 10A | ≈4C rated discharge-capacity test |
| 20A | ≈8C maximum continuous discharge rating |
| 100A | ≈40C momentary pulse characterization, <1 second |
Samsung’s product specification indexes discharge-rate capability against the 10A rated-discharge result: 5A is listed at 97%, 10A at 100%, and 20A at 95%. Samsung’s characterization material also shows discharge data through 25A, but cell temperature rises sharply at the highest currents, so 20A remains the correct continuous product rating.
The simplified discharge graph below visualizes voltage versus capacity under 5A, 10A, 20A, and 25A loading so shoppers can understand the trade-off between current, voltage sag, delivered energy, and heat.
| 1C / 2.5A | 9.02Wh, 3.61V average in Samsung characterization |
|---|---|
| 5A | 8.95Wh, 3.54V average |
| 10A | 8.79Wh, 3.44V average |
| 15A | 8.55Wh, 3.35V average |
| 20A | 8.25Wh, 3.27V average |
| 25A | 7.84Wh, 3.18V average, high temperature rise in characterization |
Voltage vs. capacity illustration under 5A, 10A, 20A, and 25A discharge. Simplified for product-page visualization.
Using the specification limit of ≤18mΩ AC impedance as a fast order-of-magnitude planning reference.
The Samsung 25R is often used near its current ceiling, so temperature rise should be treated as a primary design constraint. Characterization data shows a sharp increase in surface temperature as discharge current rises from 10A to 20A and beyond.
Standard charge: 1.25A CC-CV to 4.2V, terminate at 125mA. Rated charge: 4A CC-CV to 4.2V, terminate at 100mA.
Published operating temperature ranges from the Samsung product specification.
Samsung characterization data: capacity stays strong, but temperature rises rapidly with current.
Higher current lowers average voltage and delivered watt-hours.
| 1C | 9.02Wh, 3.61V average |
|---|---|
| 5A | 8.95Wh, 3.54V average |
| 10A | 8.79Wh, 3.44V average |
| 15A | 8.55Wh, 3.35V average |
| 20A | 8.25Wh, 3.27V average |
| 25A | 7.84Wh, 3.18V average |
Product specification criterion: ≥1500mAh after 250 cycles using rated charge and 20A discharge.
Samsung product specification: capacity recovery after 30 days at 60°C should be ≥1960mAh.
| Condition | Rated charge, storage for 30 days at 60°C |
|---|---|
| Measurement | 10A discharge to 2.5V at room temperature |
| Minimum Recovery | ≥1960mAh, equal to 80% of rated capacity |
| Storage Guidance | For long storage, keep cells dry and cool, and avoid full-charge or high-temperature storage where possible. |
The Samsung product specification gives a maximum 65.00mm height and 18.40mm diameter; characterization material lists 18.33 ± 0.07mm diameter and 64.85 ± 0.15mm height.
Mechanical envelope for 18650 holders, pack CAD, wrappers, and spot-weld layouts.
Quick math for series/parallel planning.
Pack Voltage ≈ Series Count × 3.6V
Pack Capacity ≈ Parallel Count × 2.5Ah
Pack Energy ≈ S × P × 9.0Wh
Pack Current Capability ≈ Parallel Count × 20A
Approximate scaling, assuming balanced cells and proper thermal/electrical design.
| 1P | 2.5Ah, 9.0Wh, 20A |
|---|---|
| 2P | 5.0Ah, 18.0Wh, 40A |
| 3P | 7.5Ah, 27.0Wh, 60A |
| 4P | 10.0Ah, 36.0Wh, 80A |
| 5P | 12.5Ah, 45.0Wh, 100A |
Nominal voltage examples only. Full-charge and cut-off pack voltages scale separately.
| 1S | 3.6V nominal / 4.2V full / 2.5V cut-off |
|---|---|
| 3S | 10.8V nominal / 12.6V full / 7.5V cut-off |
| 4S | 14.4V nominal / 16.8V full / 10.0V cut-off |
| 10S | 36.0V nominal / 42.0V full / 25.0V cut-off |
| 13S | 46.8V nominal / 54.6V full / 32.5V cut-off |
This product is an unprotected lithium-ion cell. It should only be used by customers who understand cell-level lithium-ion safety and who are using the battery in compatible hardware, managed packs, or professionally designed assemblies. Improper use can lead to overheating, venting, fire, or explosion.
The Samsung product specification lists 2500mAh minimum standard discharge capacity and 2450mAh minimum rated discharge capacity at 10A.
The maximum continuous discharge rating is 20A at room temperature. Samsung characterization material also includes higher-current test points, but those are not the primary continuous product rating.
No. This is an unprotected bare 18650 cell and should only be used in compatible equipment or battery packs with proper voltage, current, short-circuit, and temperature protection.
Use a lithium-ion charger or BMS using a CC-CV profile to 4.20V per cell. Standard charge is 1.25A; rated charge is 4A.
The Samsung product specification uses 2.50V as the end-of-discharge voltage. Some systems may use a higher cut-off to reduce stress and improve service life.
Yes. It is widely used in custom 18650 packs where current capability matters, but packs must use matched cells, proper welding, insulation, fusing, BMS protection, and thermal validation.
Samsung’s product specification lists a maximum height of 65.00mm and maximum diameter of 18.40mm.
The product specification lists charge operation from 0°C to 45°C and discharge operation from -20°C to 60°C ambient. Samsung also notes that discharge over-temperature protection should not exceed 70°C at the cell surface.
The product specification states capacity should remain at least 1500mAh after 250 cycles using rated charge and 20A discharge under the stated room-temperature conditions. Real service life depends heavily on load, temperature, depth of discharge, and charge limits.
No. Loose transport is unsafe because metal objects can short the terminals. Always use a non-conductive battery case.




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