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Aventon Level 4 ADV eBike
More Specs
Recommended Rider Height
M: 5'3" - 5'10" | L: 5'10" - 6'4" | XL: 6'4" - 6'7"
Local Pickup Option
We offer free assembly on local pickup orders.
Experience the daily commute with the Aventon Level 4 ADV Commuter, where precision meets power. Its robust mid-drive motor delivers 100Nm of torque for effortless climbing, while the smart Shimano CUES 10-speed drivetrain handles shifting automatically so you can focus on the ride. Designed for versatility, this commuter bike features front suspension to smooth out rough city streets and a reliable rear rack for all your cargo needs. With its lightweight balance and refined handling, every trip feels like an upgrade. It is a reliable partner for riders who demand sophistication and seamless performance on every journey.
Motor: Ultro S Mid-Drive
Torque: 100Nm
Drivetrain: Shimano CUES 10-Speed
Shifting: Aventon E-Shifter with Autoshift
Max Rider Capacity: 300 lbs
Suspension: Front Suspension
Included Accessories: Fenders, Rear Rack
Motor Power: 750 Watt
Weight: 61 lbs
Battery: Removable
Understand This eBike
Not sure what all the numbers mean? Here are the key things to know when comparing eBikes.
How far will this Aventon Level 4 ADV really go?
Aventon rates this bike for up to 110 miles of range. Real-world range can vary based on pedal-assist level, rider weight, bike weight, terrain, speed, temperature, tire pressure, cargo, and throttle use.
Riders using mostly throttle or the highest assist setting will often see closer to about half of the advertised maximum range. Lower assist levels and more rider pedaling can significantly extend range.
How powerful is the motor on this Aventon Level 4 ADV?
This bike uses a 250W Mid-Drive, 100Nm, with up to 750W of peak output.
The motor's nominal power describes the power it is designed to provide continuously. Peak power is the higher amount it can deliver for short periods, such as accelerating from a stop or climbing a hill.
For eBike classification and legal compliance, nominal motor power is generally accepted as the relevant power figure rather than the short-duration peak power number. Regulations can vary by state and local jurisdiction, so riders should always follow the rules where they ride.
Higher motor power can provide stronger acceleration and better performance on hills or with heavier riders and cargo, but wattage alone doesn't tell the whole story. Torque, bike weight, gearing, wheel size, and the motor controller also affect how powerful an eBike actually feels.
What does the battery size mean on this Aventon Level 4 ADV?
This bike uses a 36V, 20Ah, 800Wh, Removable Samsung Lithium-Ion battery. Battery capacity on eBikes is commonly measured in watt-hours (Wh). The higher the watt-hour number, the more energy the battery can store.
As a general rule, a larger battery can provide more riding range, but battery size alone doesn't determine how far an eBike will go. Bike weight, motor efficiency, assist level, throttle use, rider weight, terrain, speed, tire pressure, temperature, and cargo can all affect battery consumption.
Watt-hours also make it easier to compare battery capacity between different eBikes. For example, a 700Wh battery stores roughly 40% more energy than a 500Wh battery, even if the bikes use different battery voltages.
Keep in mind that a larger battery usually adds some weight and can take longer to charge, so the biggest battery isn't necessarily the best choice for every rider.
What eBike classes can this Aventon Level 4 ADV be used as?
This Aventon Level 4 ADV can be configured for Class 1, Class 2 (w/throttle addition), or Class 3 operation.
Under the commonly used three-class eBike system:
Class 1: Pedal assist only, with motor assistance up to 20 mph.
Class 2: Includes throttle operation up to 20 mph.
Class 3: Pedal assist up to 28 mph. Class 3 operation generally does not include throttle assistance.
Some eBikes can be configured for more than one class, allowing the rider to adjust the bike for different riding locations or regulations. eBike laws and trail-access rules vary by state and local jurisdiction, so riders should check the rules where they plan to ride.
What's the difference between torque and cadence sensors?
eBikes typically use either a torque sensor or a cadence sensor to determine how the motor responds while you pedal.
Torque sensors measure how hard you're pedaling and provide motor assistance in proportion to your effort. This generally creates a smoother, more natural, and more responsive riding experience. The harder you pedal, the more assistance the motor provides.
Cadence sensors primarily detect whether the pedals are turning. Once you begin pedaling, the motor provides assistance based largely on the selected assist level rather than how much force you're putting into the pedals.
Torque sensors are generally considered the more refined system and have become increasingly common on modern eBikes. Cadence sensors can still be useful for riders who prefer the motor to provide more assistance with less pedaling effort.