8/10/2023 0 Comments Ebike range calculator![]() ![]() With all other variables being neutral or average, our general e-bike average provides us with 1 mile per 20Wh. The Level Commuter e-bike has a 48V, 14Ah battery, as seen in the Technical Specifications under Battery.Ĥ8 voltage x 14 amp hours = 672 watt-hours ![]() ![]() We’ll use the Aventon Level Commuter as an illustration. Wh stands for watt-hourĪll e-bike manufacturers currently in existence supply the first two numbers. The above equation v indicates the voltage, and ah means amp hours. But the physics is simple you must enter a few quickly-found integers into the equation below: Some high school physics needs to be dug up from the memory banks here. The average e-bike battery has a reported and tested range of around 1 mile per 20-watt hour, with all other elements being neutral or moderate. However, if the battery is relatively new, we can estimate how many miles it can travel on a single charge. When this occurs, it’s time to consider getting a new battery. The capacity of the electric bike battery won’t decrease significantly, but a smaller capacity means less power is available, which results in a shorter range. You’ll notice that the battery won’t fully charge after roughly 1000 charge cycles, or around the 2-year mark for a daily e-bike user and up to the 5-year mark for infrequent users or “weekend warriors.” All lithium-ion batteries experience this naturally as part of their lifecycle. Your battery is a lithium-ion battery, the same as in your phone or laptop, unless you’re riding one of the first electric bicycles introduced in the modern age, which is highly doubtful. Internal factors affecting the electric bike range Capacity of batteryĪn e-bike’s battery capacity, or how much power it can contain, is the first and most evident range factor, and we can use this to determine an e-bike’s range. Alternatively, the e-bike compensates by increasing its energy input and decreasing your content the lazier you are with your energy intake. The power the e-bike must put in decreases as you put more into the system. The energy the e-bike needs is directly related to how hard you pedal. The motor will have to work rigid to accelerate off the line and return to the desired speed once you’ve stopped and lost momentum. Repeated activationĮbikes use much more energy to accelerate to their highest speed than it does to maintain that pace. Wet surfaces, including paved roads and mud, are likewise less gripping, requiring the e-bike to use more force to propel the rider forward. A tailwind can aid in buoying you along, assisting you, and boosting your capacity. Effects of weatherĪ headwind does the reverse, making you and your e-bike work harder and lowering your range. These surfaces require more power than smooth pavements do. The landscape doesn’t simply refer to hills but less-grippy surfaces like dirt and gravel. The weight aspect mentioned above worsens this situation because moving more weight uphill requires more effort. More energy is needed when moving upwards because the motor is fighting gravity and friction, as opposed to conflict when moving uphill on flat terrain. It is based on the rider’s weight and any load they may be hauling. As a result, the distance traveled on an electric bike is reduced. As a result, as the weight on the e-bike increases, the motor needs to work harder and utilize more power. It takes more force to move an object the heavier it is. Several external elements can affect a bike’s range, some of which can be changed to increase the distance an e-bike can travel on a single charge more on that later. External factors affecting the electric bike range The size of the bike’s battery, the surface, and the weight of the rider will all affect this. With them, you can also enjoy the scenery and get some exercise on your way.Įlectric bikes typically range from 25 to 45 miles (40 to 72 kilometers) on a single charge. Because at the moment, e-bikes are one of the fastest and safest forms of mobility. If you don’t already own an electric bike, you probably want one now. You will understand why occasionally your battery could deplete considerably more quickly after reading this article. In addition, a variety of outside circumstances influence the riding range. The longer an e-bike can be used between charges, the better the battery. Simple e-bikes typically have a range of 50 to 60 kilometers per charge. Standard e-bikes could travel up to 100–120 km on a single charge with batteries that were 400–500W. Typically, 3kW batteries are used to power these e-bikes. The size of the battery and the surface you’ll be riding on will determine how far you can travel.Įlectric bicycles can currently travel 350–400 kilometers on a single charge, which is their maximum range. Electric bike range is a maximum distance an electric bike can travel on a single charge.
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