If you are buying or already riding a Citycoco electric scooter, one of the most common questions is simple: how long does it take to charge a Citycoco scooter?
For most Citycoco scooters using a standard lithium battery charger, a full charge typically takes about 4–8 hours. However, the actual charging time depends on the battery capacity, charger output current, remaining battery level, battery condition, temperature, and the charging system.
For example, a 60V 20Ah Citycoco battery with a 3A–5A charger may take around 4–8 hours, while a larger 72V 30Ah battery with a 5A charger may take around 7–8 hours.
This guide explains how to calculate Citycoco charging time, compares common battery and charger combinations, and shows how to charge a Citycoco lithium battery more efficiently and safely.
For most Citycoco electric scooters:
|
Citycoco Battery |
Typical Charger |
Approx. Full Charging Time |
|
60V 20Ah |
2A |
10–15 hours |
|
60V 20Ah |
3A |
7–9 hours |
|
60V 20Ah |
5A |
4–5 hours |
|
60V 30Ah |
5A |
7–8 hours |
|
60V 30Ah |
10A |
3.5–4 hours |
|
72V 20Ah |
5A |
About 5–6 hours |
|
72V 30Ah |
5A |
7–8 hours |
|
72V 30Ah |
10A |
About 3–4 hours |
These are estimated charging times, not guaranteed times. Your actual Citycoco charging time can vary depending on the battery's state of charge, charger design, BMS settings, temperature, battery age, and other factors.
· Standard charging: about 4–8 hours
· Large battery: about 7–10 hours with a standard charger
· Higher-current charging: around 2–4 hours in some configurations
· Fast charging: potentially around 1–2 hours, but only when the battery, BMS, charger and wiring are specifically designed for it
The safest approach is to use a charger specifically matched to your Citycoco battery.
The two most important specifications are:
1. Battery capacity, measured in amp-hours (Ah)
2. Charger output current, measured in amps (A)
A larger battery stores more energy, so it generally takes longer to charge.
A higher-current charger can deliver energy faster, so it generally reduces charging time.
For example, assuming the same battery condition:
· A 60V 20Ah battery generally charges faster than a 60V 30Ah battery with the same charger.
· A 5A charger generally charges faster than a 3A charger for the same battery.
· A 10A charger can significantly reduce charging time compared with a 5A charger.
However, you cannot simply use a higher-current charger to make any Citycoco battery charge faster. The battery pack, BMS, charger, connectors and wiring must all support the charging current.
A simple way to estimate charging time is:
Charging time ≈ Battery capacity (Ah) ÷ Charger current (A)
For real-world charging, the actual time is usually longer than the theoretical calculation because charging efficiency is not 100% and the charging current decreases as the battery approaches full charge.
A practical estimate is:
Charging time ≈ Battery capacity ÷ Charger current × efficiency factor
For many lithium battery applications, using an approximate factor of 1.1–1.3 can provide a more realistic starting estimate.
With a 5A charger:
20Ah ÷ 5A = 4 hours
Allowing for charging losses and the final charging stage:
Actual charging time ≈ 4–5 hours
With a 5A charger:
30Ah ÷ 5A = 6 hours
The real charging time may be approximately:
6–8 hours
This is why the battery capacity and charger current are useful for estimating charging time, but they should not be treated as an exact prediction.
A 60V 20Ah lithium battery is one of the common configurations used for Citycoco-style electric scooters.
The approximate charging time depends heavily on the charger.
20Ah ÷ 2A = 10 hours theoretically.
The actual time may be around:
10–15 hours
20Ah ÷ 3A ≈ 6.7 hours theoretically.
A realistic charging time may be:
7–9 hours
20Ah ÷ 5A = 4 hours theoretically.
A realistic charging time is approximately:
4–5 hours
Therefore, if someone asks:
How long does it take to charge a 60V 20Ah Citycoco scooter?
A good general answer is:
Around 4–8 hours with a typical 3A–5A charger.
A 60V 30Ah battery stores more energy than a 60V 20Ah battery.
With the same charger, it will therefore normally take longer to charge.
30Ah ÷ 5A = 6 hours theoretically.
Actual charging time:
Approximately 7–8 hours
30Ah ÷ 10A = 3 hours theoretically.
Actual charging time:
Approximately 3.5–4 hours
This makes charger output particularly important when choosing a larger-capacity Citycoco battery.
If you upgrade from a 20Ah battery to a 30Ah battery but keep the same charger, expect the charging time to increase.
A 72V 30Ah lithium battery is another configuration used for higher-voltage electric scooters.
With a 5A charger:
30Ah ÷ 5A = 6 hours theoretical charging time
In actual use, a full charge may take approximately:
7–8 hours
With a 10A charger:
30Ah ÷ 10A = 3 hours theoretical charging time
The actual charging time may be approximately:
3–4 hours
A much higher-current charger may reduce the charging time further, but only if the battery pack and BMS are designed to accept that charging current.
You may notice something interesting when charging a Citycoco scooter:
The battery seems to charge quickly at first, but the final part takes much longer.
This is normal for lithium-ion battery charging.
Lithium battery charging generally uses a constant-current (CC) stage followed by a constant-voltage (CV) stage.
During the main part of the charging process, the charger supplies a relatively stable current.
The battery percentage increases relatively quickly during this stage.
As the battery approaches its full-charge voltage, the charger maintains the target voltage while the charging current gradually decreases.
This means the final portion of charging can take disproportionately longer.
Therefore, don't assume that:
80% charge time × 1.25 = 100% charge time.
The final charging stage does not always progress at the same speed as the first 80%.
This is also one reason why the charging time displayed by a simple calculation may be shorter than the actual time you observe.
Battery capacity is one of the biggest factors.
For example:
· 60V 20Ah → smaller capacity
· 60V 30Ah → larger capacity
· 72V 20Ah → same Ah capacity but higher voltage
· 72V 30Ah → larger overall energy capacity
If you use the same charger, a larger Ah battery normally takes longer to charge.
The charger current directly affects how quickly the battery can receive energy.
For example, a 20Ah battery with:
· 2A charger → relatively slow
· 3A charger → moderate
· 5A charger → faster
· 10A charger → significantly faster, if supported
But more amps are not automatically better.
The correct charger must match the battery's charging specifications and BMS.
A battery that is already 50% charged obviously needs less energy than one that is nearly empty.
Therefore:
Charging from 20% to 80% will normally take much less time than charging from nearly empty to 100%.
If you only need enough energy for your daily ride, you may not always need to charge the battery completely.
Lithium batteries gradually lose capacity and charging performance as they age.
An older battery may show:
· Reduced riding range
· Longer charging time
· More noticeable voltage drop
· Increased heat during charging or riding
· Reduced overall capacity
However, battery age alone does not determine whether a battery needs replacement. Actual battery condition, cycle count, capacity and BMS performance are more useful indicators.
Temperature can also affect lithium battery charging.
Charging in extremely cold or hot conditions can cause the BMS to reduce or stop charging.
For normal operation, follow the battery manufacturer's specified charging temperature range.
Avoid charging a hot battery immediately after heavy riding if the battery temperature is unusually high.
Likewise, do not charge a lithium battery that is extremely cold until it has returned to a suitable temperature.
The BMS is an important part of a modern Citycoco lithium battery system.
Depending on the battery design, the BMS can monitor parameters such as:
· Cell voltage
· Pack voltage
· Charging current
· Temperature
· Over-voltage
· Over-current
· Short-circuit conditions
The BMS can also limit or stop charging when certain protection thresholds are reached.
This means the battery's charging time depends not only on the charger but also on how the battery's protection system is configured.
Some Citycoco users want to reduce charging time as much as possible.
A high-current charger can significantly reduce theoretical charging time.
However, there is an important rule:
Never choose a charger based only on its amp rating.
The charger must be compatible with:
· Battery voltage
· Battery chemistry
· Maximum charging current
· BMS
· Charging connector
· Battery pack design
· Manufacturer specifications
Typical advantages:
· Longer charging time
· Lower charging current
· Convenient for overnight charging
· Suitable for many daily-use applications
· Generally easier on the battery when used within specifications
Potential advantages:
· Much shorter charging time
· Useful for commercial or high-utilization applications
· Less waiting between rides
Potential disadvantages:
· Requires a compatible battery and BMS
· Generates more heat
· Requires suitable wiring and connectors
· May increase battery stress depending on the battery design and charging rate
For most Citycoco users, a properly matched standard charger is sufficient for daily charging.
If your Citycoco uses a lithium battery, follow the manufacturer's charging instructions rather than relying only on a general charging rule.
Here are some practical tips.
Always use a charger designed for your battery's voltage and chemistry.
For example, a charger designed for a 60V lithium battery should not automatically be used with a different battery voltage.
Look at:
· Output voltage
· Output current
· Connector
· Charging indicator
· Cable condition
If the charger becomes unusually hot, smells abnormal, sparks, or behaves differently from normal, stop using it and have the system checked.
Keep the charger and battery away from:
· Rain
· Water
· Direct sunlight
· Flammable materials
· Excessive heat
Maintain adequate ventilation around the charger.
Do not charge a battery that is:
· Swollen
· Physically damaged
· Leaking
· Producing an unusual smell
· Abnormally hot
A damaged lithium battery should be inspected by a qualified technician.
Installing a larger charger simply because it has a higher amp rating can be dangerous if the battery and BMS are not designed for it.
It depends on how you use the scooter and the battery manufacturer's recommendations.
If you need maximum riding range, charging to 100% is reasonable.
If you only need a short daily commute, you may not need to fully charge the battery every time.
For long-term lithium battery storage, avoiding prolonged periods at extremely high or extremely low state of charge is generally preferable.
If you will not use your Citycoco scooter for an extended period, follow the battery manufacturer's recommended storage state of charge and check the battery periodically.
If your Citycoco scooter takes too long to charge, don't immediately replace the charger with a higher-current model.
Instead, check the following:
Find out whether your battery is:
· 60V 20Ah
· 60V 30Ah
· 72V 20Ah
· 72V 30Ah
· Or another specification
Look at the charger's label.
For example:
Output: 67.2V 5A
This tells you much more than simply knowing that it is a "fast charger."
Use:
Battery Ah ÷ Charger A
For example:
20Ah ÷ 5A = 4 hours theoretical time.
Then allow additional time for charging losses and the CV stage.
If the battery or charger becomes unusually hot, the charging system may reduce current or stop charging.
If a previously normal battery suddenly takes much longer to charge, the issue may not be the charger.
Possible causes include:
· Battery aging
· BMS protection
· Cell imbalance
· Charger problems
· Loose connectors
· Wiring problems
In this situation, changing to a higher-current charger is not the first thing you should do.
Charging time is only one part of the battery equation.
When choosing a Citycoco electric scooter, you should also consider:
· Battery voltage
· Battery capacity
· Motor power
· Rider weight
· Riding speed
· Tire size
· Terrain
· Temperature
· Riding style
For example, a larger battery can increase both the potential riding range and the charging time.
A 60V 30Ah battery stores more energy than a 60V 20Ah battery, so it can potentially provide longer range, but it will generally take longer to charge with the same charger.
If you're comparing battery sizes for a Citycoco scooter, don't look at Ah alone. Consider the complete battery specification and the actual riding conditions.
Most Citycoco scooters take approximately 4–8 hours to fully charge with a standard charger. The exact time depends on battery capacity, charger current, remaining charge and battery condition.
With a typical 3A–5A charger, a 60V 20Ah lithium battery may take approximately 4–8 hours.
A 5A charger may take around 4–5 hours under typical conditions.
With a 5A charger, a 60V 30Ah battery may take approximately 7–8 hours.
A 10A charger can reduce the estimated charging time to around 3–4 hours, provided that the battery and BMS support the charging current.
With a 5A charger, a 72V 30Ah battery may take approximately 7–8 hours.
With a compatible 10A charger, charging may take approximately 3–4 hours.
Not automatically.
The charger must be compatible with the battery voltage, battery chemistry, BMS and maximum charging current.
Using a charger with an unsuitable voltage or excessive current can damage the battery or create a safety hazard.
This is usually because the charging system enters the constant-voltage stage as the battery approaches full charge.
The charging current gradually decreases, so the final portion can take longer.
Many properly designed lithium battery systems are equipped with charging protection, but you should always follow the battery and charger manufacturer's instructions.
Charge the scooter in a safe, dry and ventilated location and avoid using a damaged or incompatible charger.
Usually, yes.
For example, if both batteries use the same 5A charger:
20Ah battery → shorter charging time
30Ah battery → longer charging time
However, the actual time also depends on the battery's charging current and charging system.
Check:
1. Battery nominal voltage
2. Charger output voltage
3. Charger output current
4. Battery chemistry
5. Connector
6. Manufacturer/BMS charging requirements
If any of these specifications are unclear, confirm them with the battery or scooter supplier before connecting the charger.
For most Citycoco electric scooters with lithium batteries, a full charge takes approximately 4–8 hours with a standard charger.
A typical 60V 20Ah battery with a 5A charger may take around 4–5 hours, while a 72V 30Ah battery with a 5A charger may take around 7–8 hours.
A higher-current charger can reduce charging time, but only when the battery, BMS, wiring and charger are designed to work together.
The best charging setup is not necessarily the fastest one. For everyday Citycoco use, the priority should be correct voltage, compatible charging current, battery safety and long-term reliability.
If you are choosing a Citycoco scooter for personal use, rental, distribution or wholesale, the battery capacity and charger specification should be considered together with the scooter's motor power, expected range and riding conditions.
Name: kim Gong
Mobile:+86-15150222860
Tel:+86-15150222860
Whatsapp:8615150222860
Email:kim@leonmobility.com
Add:G1 Shazhou Lake industry park, Zhangjiagang High tech zone,Jiangsu Province, China