E-bikes use rechargeable batteries, electric motors and some form of control. Battery systems in use include sealed lead-acid (SLA), nickel-cadmium (NiCad), nickel-metal hydride (NiMH) or lithium-ion polymer (Li-ion). Batteries vary according to the voltage, total charge capacity (amp hours), weight, the number of charging cycles before performance degrades, and ability to handle over-voltage charging conditions. The energy costs of operating e-bikes are small, but there can be considerable battery replacement costs. The lifespan of a battery pack varies depending on the type of usage. Shallow discharge/recharge cycles will help extend the overall battery life.


The environmental effects involved in recharging the batteries can of course be reduced. The small size of the battery pack on an e-bike, relative to the larger pack used in an electric car, makes them very good candidates for charging via solar power or other renewable energy resources. Sanyo capitalized on this benefit when it set up "solar parking lots", in which e-bike riders can charge their vehicles while parked under photovoltaic panels.[66]
There remains an element of myth around them, however. For some, it's cheating; for others, it's like riding a motorbike. Neither is true. Electric bikes offer battery-powered assistance, which means the engine gives you a power boost when you pedal. While this jacks up the price, they're a simple, quick and fun way of commuting, exploring the countryside, or even going off-road. 
Pedal Assist Electric Bikes, also known as "E-bikes," are bicycles that have an electric motor to assist riders. The motor is powered by a battery and only assists the cyclist when he/she is pedaling. Electric bikes come in many different styles including commuter, recreational, step-thru with low-entry frames, cargo and mountain. They all have one thing in common: e-bikes are very simple to ride – if you can ride a bike you can ride an electric bike!

For the past few months, I’ve been preparing for a trip through Scotland and England. If you’ve read any of my other lifestyle posts, then you know that I think the absolute best way to explore an area is by bicycle. So, when I was planning my trip, of course I decided to do an electric bike tour. I’ll be doing a John O’ Groats to Land’s End ride, approximately 900 miles. Let’s talk about the best electric bikes for bike touring.
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The Hanebrink all-terrain vehicle's lithium ion 10 amp hour battery (LiFePO4) will give the bike enough juice for about an hour's use on a single charge, which will take three hours. The rear rack could have up to five batteries fitted which will extend the run time to over five hours. The wide aluminum rear rack is otherwise capable of carrying over 100 pounds of cargo.
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Back to the bike. I’ve gotta be honest, it doesn’t look half bad. The battery fits into the downtube, which is way better than those crazy brackets you see on cheap ebikes. The welds are also smoothed over, like an old Aluminum Cannondale. The drivetrain is a mix of parts, with Shimano Altus in the rear. Altus is a mountain bike groupset, but on the very low end.


This 48-volt mid-motor electric mountain bike is a great value. The X-Treme Summit is packed with top-of-the-line components from Shimano, Suntour, Tektro, Samsung, Kenda, Velo, and more. With a top speed of 28 mph and tremendous torque from the mid-frame mounted motor, it conquers rough terrain and inclines like a champ. Pull power from the motor by pedal assist and throttle.
E-bikes mostly use motors and battery options from a few major suppliers: Bosch, Yamaha, Shimano, and Brose. A few other brands exist, but are less reliable or powerful. Some, like the Yamaha system, have more torque and others are quieter. But generally all four make good options. Look for motor output (in watts) which will give you an idea of total power. But watt hours (Wh) is perhaps a better figure to use—it takes into account battery output and life to give a truer reflection of power.
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