If you want to replace, upgrade or build an electric scooter battery pack, understanding how to calculate battery pack parameters is essential. Getting the S/P configuration wrong can damage your controller, charger, or even create fire risks. This guide breaks down all the formulas with real e-scooter examples, no advanced engineering degree required.
Core Basic Knowledge
Nearly all consumer electric scooter battery packs use 3.7V lithium-ion cells (18650 or 21700 are the most common).
- Single cell nominal voltage: 3.7V
- Fully charged cell voltage: 4.2V
- Reference cell for below table: 18650 2600mAh = 2.6Ah per cell
- Cell capacity: Marked on each cell, measured in Ah (Ampere-hour). It tells you how much energy a single cell can store.
Two ways to connect lithium cells: Series (S) and Parallel (P). They serve completely different purposes.
1. Calculate Total Voltage: Series (S) Connection
Connecting cells in series raises the total voltage of the battery pack, while the capacity (Ah) remains unchanged.
Formula: Total Nominal Voltage = Number of series cells × 3.7V
Common scooter pack examples:
- 10S: 10 ×3.7V = 37V nominal (Commercial labeled as 36V, Full charge: 10 ×4.2V=42V)
- 13S: 13 ×3.7V = 48.1V nominal, widely called 48V battery (Full charge:54.6V)
- 14S:14 ×3.7V=51.8V nominal, marked as 52V battery (Full charge:58.8V)
- 16S:16 ×3.7V = 59.2V nominal, known as 60V battery (Full charge:67.2V)
⚠️ Important: Your charger and controller must match this S count. A 13S 48V battery pack must use a 54.6V charger.
2. Calculate Total Capacity (Ah): Parallel (P) Connection
Connecting cells in parallel increases total battery capacity, while voltage stays identical.
Formula: Pack Total Ah = Number of parallel branches × single cell Ah
Example: If your single 18650 cell is 2.6Ah, building a 4P parallel group: Total Ah = 4 × 2.6Ah = 10.4Ah.
More parallel branches = larger capacity = longer riding range. But voltage will not change.
3. Calculate Battery Energy (Wh Watt-hour)
Watt-hour (Wh) is the best metric to compare battery real stored energy and estimate scooter range.
Formula: Wh = Nominal Battery Voltage × Pack Capacity(Ah)
Example: 48.1V 10.4Ah battery Wh = 48.1 × 10.4 = 500.24Wh
A higher Wh value means more energy storage and longer mileage. This is much more reliable than only comparing Ah when battery voltage differs.

Battery Pack Reference Table
Base Spec: Single 18650 cell: 2600mAh (2.6Ah), 3.7V nominal
Note: 36V/48V/52V/60V are commercial marketing names, the true voltage is calculated by 3.7V per lithium cell.
| Commercial Battery Pack | S/P Configuration | Total Number of Cells | Total Energy (Wh) |
|---|---|---|---|
| 36V 7.8Ah | 10S3P | 30 | 288.6 |
| 36V 10.4Ah | 10S4P | 40 | 384.8 |
| 36V 15Ah | 10S6P | 60 | 555.0 |
| 48V 7.8Ah | 13S3P | 39 | 375.18 |
| 48V 10.4Ah | 13S4P | 52 | 500.24 |
| 48V 15Ah | 13S6P | 78 | 721.5 |
| 48V 20.8Ah | 13S8P | 104 | 1000.48 |
| 52V 13Ah | 14S5P | 70 | 673.4 |
| 52V 15.6Ah | 14S6P | 84 | 808.08 |
| 52V 20.8Ah | 14S8P | 112 | 1077.44 |
| 52V 23.4Ah | 14S9P | 126 | 1212.66 |
| 52V 30Ah | 14S12P | 168 | 1554.0 |
| 60V 20.8Ah | 16S8P | 128 | 1231.36 |
| 60V 23.4Ah | 16S9P | 144 | 1385.28 |
| 60V 25.6Ah | 16S10P | 160 | 1515.52 |
| 60V 29Ah | 16S11P | 176 | 1716.8 |
Calculation Rules for Table:
- Total Cells = Series quantity × Parallel quantity
- True Nominal Voltage: 10S=37V|13S=48.1V|14S=51.8V|16S=59.2V
- Wh = True Nominal Voltage × Pack Rated Ah
Full S/P Practical Calculation Example
Let’s use a common 13S2P e-scooter battery pack with 2600mAh(2.6Ah) cells:
- Series:13S → Nominal voltage =13 ×3.7V = 48.1V
- Parallel:2P → Total capacity =2 ×2.6=5.2Ah
- Total energy Wh=48.1V ×5.2Ah=250.12Wh
This is a standard 48V 5.2Ah battery pack for many compact electric scooters.
Calculate Max Discharge Current
Discharge current determines acceleration performance and if the battery can support your motor.
Formula: Max Pack Discharge Current = Single cell max discharge current × P number
If one cell supports 10A continuous discharge, for 3P pack: Max continuous discharge =10A × 3 =30A.
Key Rules You Must Follow
- Same cell only: Never mix different cell brands, capacities or ages inside one battery pack. Mismatched cells cause imbalance, overheating and shorten battery life.
- BMS must match S count: 13S battery requires a 13S BMS. Wrong BMS will not balance cells and may stop charging.
- Voltage match: Replacement battery pack must match your scooter controller rated voltage. A 60V pack cannot work on a 48V controller.
FAQ
Q1: What is the difference between 10Ah and 15Ah battery?
Same voltage, higher Ah = larger capacity, longer riding range. The top speed stays the same, only the mileage increases.
Q2: Can I mix different capacity cells in one pack?
No. Cells will charge and discharge unevenly. Some cells will overcharge or over-discharge, which creates safety risks.
Q3: How do I find the S count of my original battery pack?
Check the label of your old battery pack. If it says nominal 48V, it is almost always 13S lithium pack. You can also check the full charging voltage printed on your charger.

Wrap Up
Calculating an electric scooter battery pack relies on 3 simple formulas for voltage, Ah and Wh.
- Series(S): Raise voltage
- Parallel(P): Raise capacity
- Wh = Voltage × Ah
Before buying a replacement battery pack, confirm your scooter’s required S count, voltage and discharge current. Wocomotors provides pre-built compatible battery packs and spare battery components for most popular electric scooter models, factory direct from China.