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	<title>Ask Optibike! | Optibike</title>
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	<title>Ask Optibike! | Optibike</title>
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		<title>How E-Bikes Actually Work: The Electric Bike Professor Video Series</title>
		<link>https://optibike.com/electric-bike-professor-series/</link>
		
		<dc:creator><![CDATA[Nicholas]]></dc:creator>
		<pubDate>Tue, 12 May 2026 18:27:19 +0000</pubDate>
				<category><![CDATA[Ask Optibike!]]></category>
		<category><![CDATA[Blogs by Optibike Team]]></category>
		<category><![CDATA[Optibike News]]></category>
		<category><![CDATA[The Electric Bike Professor]]></category>
		<guid isPermaLink="false">https://optibike.com/?p=306297</guid>

					<description><![CDATA[How E-Bikes Actually Work: Introducing the Electric Bike Professor Video Series Understanding how an electric bike works — what torque really does, why power bands matter, and how watts relate to real-world riding — can make a significant difference in how you choose, set up, and ride an e-bike. The Electric Bike Professor series breaks [&#8230;]]]></description>
										<content:encoded><![CDATA[<h1>How E-Bikes Actually Work: Introducing the Electric Bike Professor Video Series</h1>
<article>Understanding how an electric bike works — what torque really does, why power bands matter, and how watts relate to real-world riding — can make a significant difference in how you choose, set up, and ride an e-bike. The Electric Bike Professor series breaks down these technical concepts in plain terms, so riders at any level can make more informed decisions.<!-- Series Introduction --></p>
<h2>About the Electric Bike Professor Series</h2>
<p>The Electric Bike Professor series is presented by Jim Turner, the designer of the Optibike and an engineer with more than 30 years of experience developing electric bike motors and drivetrains. Rather than promotional content, these videos are technical explanations — covering the physics and engineering principles that determine how an e-bike performs in the real world.</p>
<p>Topics covered in the series include e-bike torque, gear ratios, power bands, motor wattage, voltage, watt-hours vs amp-hours, and the difference between peak and continuous power. Each episode focuses on one concept and explains it from first principles, with specific numbers and comparisons to make the ideas concrete.</p>
<p><a href="https://www.youtube.com/playlist?list=PL2ezibOydWRwpXG6CWP1lxWZXUVKjNazB"><strong>Click Here for the Video Playlist of The Electric Bike Professor Series</strong></a></p>
<p>New episodes are added to the playlist as they are released. The summaries below cover the episodes currently available.<!-- Divider --></p>
<hr />
<p><!-- Episode Summaries --></p>
<h2>Episode Summaries<!-- Episode 1 --></h2>
<h3>Episode 1: E-Bike Torque and Gear Ratios — What the Numbers Actually Mean</h3>
<p>This episode explains what newton meters of torque mean in practical riding terms, and how gear ratios affect the torque delivered to the rear wheel. Using a straightforward example — a 100 Nm motor versus a 200 Nm motor, run through a 1:1 gear ratio and then a 2:1 gear ratio — Jim walks through exactly how much torque reaches the ground under each condition. The key insight is that a higher-torque motor means you can maintain usable rear-wheel torque in a higher gear, reducing the need to shift when a climb gets steeper.</p>
<ul>
<li><strong>Key concept:</strong> Rear-wheel torque = motor torque × gear ratio</li>
<li><strong>Why it matters:</strong> Higher motor torque means less downshifting on hills</li>
<li><strong>Numbers used:</strong> 100 Nm (typical e-bike) vs. 200 Nm (high-torque e-bike), 1:1 and 2:1 gear ratios</li>
</ul>
<p><iframe loading="lazy" title="E-Bike Torque and Gear Ratios Explained | Electric Bike Professor Ep. 1" width="1080" height="608" src="https://www.youtube.com/embed/Q0UyX-Escrs?feature=oembed&#038;enablejsapi=1&#038;origin=https://optibike.com"  allow="accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture; web-share" referrerpolicy="strict-origin-when-cross-origin" allowfullscreen></iframe></p>
<p><!-- Episode 2 --></p>
<h3>Episode 2: Torque, Power Band, and Why They Affect How You Ride</h3>
<p>Building on the torque episode, this video introduces the concept of the power band — the RPM range across which a motor can sustain its rated wattage output. At the US legal limit of 750 watts, a higher-torque motor reaches full power at a much lower cadence and maintains it across a wider range of speeds. A lower-torque motor requires higher cadence to reach the same wattage, which means more frequent shifting to stay in the effective power range. The practical result: a wider power band means less drivetrain wear, fewer shifts under load, and more consistent climbing performance.</p>
<ul>
<li><strong>Key concept:</strong> Power band = the cadence range where a motor produces its rated output</li>
<li><strong>Why it matters:</strong> A wider power band reduces shifting, especially under climbing loads</li>
<li><strong>Side benefit:</strong> Less shifting under load extends cassette and chain life</li>
</ul>
<p><iframe loading="lazy" title="E-Bike Power Band Explained — Why Torque Affects How You Ride | Electric Bike Professor Ep. 2" width="1080" height="608" src="https://www.youtube.com/embed/sOb-3c_ueOY?feature=oembed&#038;enablejsapi=1&#038;origin=https://optibike.com"  allow="accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture; web-share" referrerpolicy="strict-origin-when-cross-origin" allowfullscreen></iframe></p>
<p><!-- Episode 3 --></p>
<h3>Episode 3: What Is Power? Watts, Horsepower, and E-Bike Output Explained</h3>
<p>This episode addresses a common source of confusion: what &#8220;power&#8221; actually means in the context of an electric bike. Jim explains that watts are the metric equivalent of horsepower (1 hp ≈ 750 W), and puts e-bike power figures in perspective — a 750-watt e-bike produces roughly the same energy as a small space heater, and a fraction of what a typical car engine generates. The episode also clarifies the physics definition of power: it is not simply force or movement, but the rate at which work is done — force applied over a distance, divided by the time it takes. This distinction matters when comparing motor ratings and understanding what different wattage figures mean on the road.</p>
<ul>
<li><strong>Key concept:</strong> Power (watts) = work done per unit of time, not just force or speed alone</li>
<li><strong>Reference point:</strong> 750 W ≈ 1 horsepower; a small space heater runs at 1,500 W</li>
</ul>
<p><iframe loading="lazy" title="What Is E-Bike Power? Watts &amp; Horsepower Explained | Electric Bike Professor Ep. 3" width="1080" height="608" src="https://www.youtube.com/embed/GsLN2ees_zs?feature=oembed&#038;enablejsapi=1&#038;origin=https://optibike.com"  allow="accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture; web-share" referrerpolicy="strict-origin-when-cross-origin" allowfullscreen></iframe></p>
<h3></h3>
<h3>Episode 4: Torque vs Power Explained</h3>
<p>Torque vs. Power. Many buyers think more torque automatically means a faster bike, but that is not true. There are fundamentally different units and phenomena at play here.</p>
<p><strong>In this video, you will learn:</strong></p>
<ul>
<li>What Torque is: Force times distance (Newton Meters). It is the ability to turn the crank arm and wheel.</li>
<li>What Power is: Torque times rotational speed. This determines how fast you can climb a hill or maintain speed.</li>
<li>Why they matter: How torque gets you going on a hill, while power determines your climbing speed.</li>
<li>The Units: Understanding Newton Meters vs. Watts so you are not misled by marketing claims.</li>
</ul>
<p><iframe loading="lazy" title="Torque vs Power Explained: About E-Bike Motors | Electric Bike Professor Ep. 4" width="1080" height="608" src="https://www.youtube.com/embed/5ROqQqMACX0?feature=oembed&#038;enablejsapi=1&#038;origin=https://optibike.com"  allow="accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture; web-share" referrerpolicy="strict-origin-when-cross-origin" allowfullscreen></iframe></p>
<h3></h3>
<h3>Episode 5: Understanding E-Bike Voltage: Potential vs. Reality</h3>
<p>In this episode of The Ebike Professor, I break down exactly what voltage is and why it does not tell the whole story about your bike&#8217;s performance.</p>
<p>Voltage is simply potential. It represents the ability to do work, but without current, that potential remains unused. Most e-bikes on the market today are 37 volts, 48 volts, or sometimes 52 volts. While a higher voltage suggests more potential, it does not automatically mean one bike is more powerful than another.</p>
<p><strong>In this video, you will learn:</strong></p>
<ul>
<li>What Voltage actually means in physics terms (Potential to do work).</li>
<li>Why a higher voltage number does not guarantee more speed or power.</li>
<li>The role of current and how the battery must supply it to create actual work.</li>
<li>How a 37 volt bike can have the same power output as a 48 volt bike.</li>
<li>What you need to look at beyond voltage when comparing e-bike specs.</li>
</ul>
<p><iframe loading="lazy" title="Understanding E-Bike Voltage: Potential vs. Reality | Electric Bike Professor Ep. 5" width="1080" height="608" src="https://www.youtube.com/embed/6VVDxcfnk0g?feature=oembed&#038;enablejsapi=1&#038;origin=https://optibike.com"  allow="accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture; web-share" referrerpolicy="strict-origin-when-cross-origin" allowfullscreen></iframe></p>
<hr />
<p><!-- Closing / CTA --></p>
<h2>Watch the Full Series</h2>
<p>All available episodes are collected in the playlist linked below. New topics will be added as the series continues, covering additional subjects such as battery voltage, watt-hours vs. amp-hours, and peak versus continuous motor power ratings.</p>
<p><a href="https://www.youtube.com/playlist?list=PL2ezibOydWRwpXG6CWP1lxWZXUVKjNazB"><strong>Click Here for the Video Playlist of The Electric Bike Professor Series</strong></a></p>
<p>If you have a specific e-bike technical question you&#8217;d like covered in a future episode, <a href="https://optibike.com/contact/">send us a message!</a></p>
</article>
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		<item>
		<title>What range and electric bikes really means to you (or at least us!)</title>
		<link>https://optibike.com/what-range-and-electric-bikes-really-means-to-you-or-at-least-us/</link>
					<comments>https://optibike.com/what-range-and-electric-bikes-really-means-to-you-or-at-least-us/#respond</comments>
		
		<dc:creator><![CDATA[Nicholas]]></dc:creator>
		<pubDate>Fri, 23 Jan 2026 15:52:45 +0000</pubDate>
				<category><![CDATA[Ask Optibike!]]></category>
		<category><![CDATA[Fitness]]></category>
		<category><![CDATA[Health]]></category>
		<category><![CDATA[How do we do it?]]></category>
		<category><![CDATA[Optibike News]]></category>
		<category><![CDATA[best electric bike]]></category>
		<category><![CDATA[electric bike]]></category>
		<category><![CDATA[electric bike battery]]></category>
		<category><![CDATA[electric bike lifestyle]]></category>
		<category><![CDATA[electric bikes]]></category>
		<category><![CDATA[longest range e bike]]></category>
		<category><![CDATA[longest range ebike]]></category>
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		<category><![CDATA[Optibike OB1]]></category>
		<guid isPermaLink="false">https://optibike.com/what-range-and-electric-bikes-really-means-to-you-or-at-least-us/</guid>

					<description><![CDATA[]]></description>
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				<div class="et_pb_text_inner"><p><span style="font-size: small;">Riding an electric bike is about freedom (the real kind), exhilaration, fitness, fun, and a host of other emotions/sensations.  Where does range and distance fit into this experience?</span></p>
<p><span style="font-size: small;">Having adequate range on an electric bike is about having NO LIMITS.  Whether you are cruising the open road, getting groceries, or exploring a vast wilderness area - we believe that you should stop riding when YOU want to, not when your E-bike runs out of battery power. </span></p>
<p><span style="font-size: small;">How far do you need to go? </span></p>
<p><span style="font-size: small;">We have given this question some serious consideration and designed the Optibike to perform according to what we believe is the right answer.  We have talked to E-bike owners(both of Optibikes and other brands) and we have logged thousands of miles ourselves in the quest to determine the answer.  The magic number that we came up with is 100 miles on a single charge. </span></p>
<p><span style="font-size: small;">Riding 100 miles (called a century) on a bike is a tremendous feat that most cyclists seek to attain at least once in their lives.  For us at Optibike, the first time we rode one was at the 2005 Tour De Sol in New York, when we rode 104 miles in 4 hours through the rolling hills of upstate New York. </span></p>
<p><span style="font-size: small;">That is an average of 26 mph for over 4 hours on a single charge- and since then, our batteries have vastly improved in both size, energy density (energy capacity per gram of battery), output capability, and lifespan (we warranty them for 3 years/30,000 miles.) </span></p>
<p><span style="font-size: small;">No other electric bicycle made can even come close to delivering this kind of performance.</span></p>
<p><span style="font-size: small;">How does the Optibike go so far, while every other bike leaves you wanting more?</span></p>
<p><span style="font-size: small;">The Optibike has a 20ah lithium battery and is ready to accommodate an additional Optibike Touring Package to double the capacity.  That is a total of 40ah at 36v.  No other electric bike offers this magnitude of capacity.</span></p>
<p><span style="font-size: small;">The Optibike 850XLi uses 23 amps of power continuously at 36v to get 850w, so with this battery capacity - you can ride for just under 2 hours at full speed, or about 5 hours in economy mode (a half power feature that comes standard on all Optibikes.)  Or, in the essence of full disclosure and truth in advertising- the <a href="https://optibike.com/" target="_blank" rel="noopener">850XLi runs for just under an hour with the standard 20ah battery at full speed.</a></span></p>
<p><span style="font-size: small;">** Important note: The Optibikes Motorized Bottom Bracket (MBB), unlike our hub-motor driven ancestors, has the same efficiency on flat ground as it does climbing hills.  So the Optibike will run for an hour straight uphill, while a hub motor will die really quickly.</span></p>
<p><span style="font-size: small;">There are E-bikes out there with 1000w motors and only 9ah batteries.  How long will they run? </span></p>
<p><span style="font-size: small;">1000w = 27 amps of discharge current.  (1000/36volts)  So a 9ah battery will run for only 20 min!!!</span></p>
<p><span style="font-size: small;">That's like riding in a car with a 1 gallon gas tank. </span></p>
<p><span style="font-size: small;">You get what you pay for and while good, big batteries are more of an investment upfront - you won't feel limited when you want to go out and ride until YOU feel like stopping.</span></p></div>
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		<title>Optibike R15C Electric Bike Fit and Sizing</title>
		<link>https://optibike.com/optibike-r15c-electric-bike-fit-and-sizing/</link>
		
		<dc:creator><![CDATA[Nicholas]]></dc:creator>
		<pubDate>Thu, 18 Apr 2019 22:59:49 +0000</pubDate>
				<category><![CDATA[Ask Optibike!]]></category>
		<category><![CDATA[How do we do it?]]></category>
		<category><![CDATA[RxC Full Carbon Series]]></category>
		<category><![CDATA[handlebar height]]></category>
		<category><![CDATA[sizing]]></category>
		<category><![CDATA[standover]]></category>
		<guid isPermaLink="false">https://optibike.com/optibike-r15c-electric-bike-fit-and-sizing/</guid>

					<description><![CDATA[Optibike R15C Electric Bike Fit and Sizing [toc] The Optibike R15C Electric Bike is designed to fit a wide range of rider heights and weight. The versatile frame has the lowest stand over of any bike with a huge 1500 watt hour battery. The frame is slim and easy to ride. Other E bikes with larger batteries have very high stand over and are fat, making them difficult to mount and ride. The weight of their battery is also high so handling is not as stable or precise as the R15C. Optibike personally works with each rider to design the fit of the bike to the rider&#8217;s particular needs. Optibike has found from over a decade of working with E Bike riders that most riders want a different riding position from a regular bike. They often like the handlebars higher, seat a bit lower and the reach shorter for a more upright riding position. They are looking for comfort first so the long rides are fun. On a regular bike, the riding position is often configured for maximum efficiency, without an emphasis on rider comfort. With an E Bike, a little efficiency loss is offset by the motor and rider [&#8230;]]]></description>
										<content:encoded><![CDATA[<h1>Optibike R15C Electric Bike Fit and Sizing</h1>
<p>[toc]</p>
<p>The Optibike <a href="https://optibike.com/">R15C</a> Electric Bike is designed to fit a wide range of rider heights and weight. The versatile frame has the lowest stand over of any bike with a huge 1500 watt hour battery. The frame is slim and easy to ride. Other E bikes with larger batteries have very high stand over and are fat, making them difficult to mount and ride. The weight of their battery is also high so handling is not as stable or precise as the <a href="https://optibike.com/">R15C</a>. Optibike personally works with each rider to design the fit of the bike to the rider&#8217;s particular needs.</p>
<p><a href="https://optibike.com/wp-content/uploads/2025/11/5x3-Optibike-High-Performance-Sticker.png"><img decoding="async" class="alignleft wp-image-5423 size-thumbnail" src="https://optibike.com/wp-content/uploads/2025/11/5x3-Optibike-High-Performance-Sticker.png" alt="" width="150" height="250" /></a></p>
<p>Optibike has found from over a decade of working with E Bike riders that most riders want a different riding position from a regular bike. They often like the handlebars higher, seat a bit lower and the reach shorter for a more upright riding position. They are looking for comfort first so the long rides are fun.</p>
<p>On a regular bike, the riding position is often configured for maximum efficiency, without an emphasis on rider comfort. With an E Bike, a little efficiency loss is offset by the motor and rider comfort becomes the main target.</p>
<div id="attachment_5410" style="width: 410px" class="wp-caption aligncenter"><a href="https://optibike.com/wp-content/uploads/2025/11/R15C-with-stand-over-dimensions.jpg"><img decoding="async" aria-describedby="caption-attachment-5410" class="wp-image-5410 size-medium" src="https://optibike.com/wp-content/uploads/2025/11/R15C-with-stand-over-dimensions.jpg" alt="" width="400" height="325" /></a><p id="caption-attachment-5410" class="wp-caption-text"><strong>R15C Frame Fit Dimensions</strong></p></div>
<h3 id="rider-height">Rider Height</h3>
<p>The <a href="https://optibike.com/">R15C</a> will fit riders from approximately 5&#8217;5&#8243; to 6&#8217;6&#8243;. Riders shorter or taller may still fit depending on their body dimensions. Each bike is custom adjusted to the riders riding style, height and weight.</p>
<h3 id="stand-over">Stand Over</h3>
<p>Stand over is the height of the frame where you are straddling the bike with feet on the ground. The R15C ultra low stand over is only 28 inches, so riders with a 29 inch inseam are able to have their feet flat on the ground when standing over the bike. (Your inseam is typically your pant size. For a better measurement, put a book against your crotch and measure from top of book to the ground with your shoes on. This will give your inseam. <a href="https://www.youtube.com/watch?v=tZtk4ZRF92w">Watch video on this method</a>)  Generally you want the stand over 1 inches lower than your inseam. Stand over varies about 1 inch based on tire size and fork travel chosen.</p>
<h3 id="reach">Reach</h3>
<p>Reach is the distance for the center of the seat to center of the handlebars. This can be adjusted by changing the height of the seat, the position of seat on seat post and the handlebar stem. The R15C has a very shallow seat angle, so as the seat is adjusted higher, for taller riders, the reach increases. The reach can be adjusted from 24 to 30 inches on the R15C. There is no exact formula for reach versus rider height. Riders that want a more upright riding position will want a shorter reach.</p>
<h3 id="handlebar-height">Handlebar Height</h3>
<p>Handlebar height can be adjusted with the spacers under stem, the stem angle and the rise of the handlebar. With the <a href="https://optibike.com/">R15C</a>, the handlebar height can be adjusted over a range of 5 inches. Riders that want a more upright riding position to relive pressure on shoulders an back will want a higher handlebar height.</p>
<h3 id="seat-height">Seat Height</h3>
<p>Many riders like to have lower seat height to feel comfortable. The Fox dropper seat post on the R15C has an adjustment range of 5 inches. The height of the seat is quickly adjusted while riding with a lever on the handlebars. We often use a lower seat height in town, whee we have to dismount a lot at stop signs and a higher seat height on the open rode. The minimum height of the R15C seat is 36 inches with the dropper seat post. If a rigid seat post is used, then the minimum height is 34 inches.</p>
<p>In Summary, E bikes are different. Optibike focuses on designing the best rider comfort in E bikes and works with each rider to make the bike a perfect fit.</p>
<p>For the complete guide on choosing the perfect E Bike <a href="https://optibike.com/how-to-choose-the-perfect-e-bike/">Click Here</a>.</p>
<p><a href="https://optibike.com/">Visit the R15C Page</a></p>
<p>About Optibike: Optibike hand builds high performance electric bikes one at a time in the Rocky Mountains of Colorado. <a href="https://optibike.com/why-optibike/">Learn more about the amazing history of Optibike</a></p>
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		<title>What is Torque in an Electric Bike?</title>
		<link>https://optibike.com/what-is-torque-in-an-electric-bike/</link>
					<comments>https://optibike.com/what-is-torque-in-an-electric-bike/#respond</comments>
		
		<dc:creator><![CDATA[Nicholas]]></dc:creator>
		<pubDate>Wed, 18 Feb 2015 18:04:33 +0000</pubDate>
				<category><![CDATA[Ask Optibike!]]></category>
		<category><![CDATA[Jim's Blog]]></category>
		<category><![CDATA[Optibike News]]></category>
		<guid isPermaLink="false">https://optibike.com/what-is-torque-in-an-electric-bike/</guid>

					<description><![CDATA[There has been a lot of discussion in the news lately about electric bikes and torque. For most people, the term &#8220;Torque&#8221; has little or no meaning. In this first of 3 articles on torque, I will go over the basics of torque. In Part 2, I will discuss torque and how it relates to horsepower and then in the Part 3, I will compare the torque of Optibike and other leading brands of electric bicycles. Why Torque Matters In An E bike In an electric bicycle, torque is the ability to rotate the rear wheel. In a regular bicycle, this translates to the ability to rotate the pedals and crank arms. Higher torque will rotate the wheel easier and create more acceleration, especially from a stop. This means a bike with higher torque is easier to get going from a stop. What is Torque? The general definition of torque is the force on an arm at a distance from a center of rotation. In the picture below, the distance is 1 Meter and the force is 50 Newtons, so the torque is 50 Newton Meters. Torque Equation The general equation for torque is below. Torque=Force X Distance or T=F [&#8230;]]]></description>
										<content:encoded><![CDATA[<p>There has been a lot of discussion in the news lately about electric bikes and torque. For most people, the term &#8220;Torque&#8221; has little or no meaning.</p>
<p>In this first of 3 articles on torque, I will go over the basics of torque. In Part 2, I will discuss torque and how it relates to horsepower and then in the Part 3, I will compare the torque of Optibike and other leading brands of electric bicycles.</p>
<h3><strong>Why Torque Matters In An E bike<br />
</strong></h3>
<p>In an electric bicycle, torque is the ability to rotate the rear wheel. In a regular bicycle, this translates to the ability to rotate the pedals and crank arms. Higher torque will rotate the wheel easier and create more acceleration, especially from a stop. This means a bike with higher torque is easier to get going from a stop.</p>
<h3 id="what-is-torque"><strong>What is Torque?</strong></h3>
<p>The general definition of torque is the force on an arm at a distance from a center of rotation. In the picture below, the distance is 1 Meter and the force is 50 Newtons, so the torque is 50 Newton Meters.</p>
<h3 id="torque-equation"><strong>Torque Equation</strong></h3>
<p>The general equation for torque is below.</p>
<p><strong>T</strong>orque=<strong>F</strong>orce X <strong>D</strong>istance</p>
<p>or <strong>T=F X D</strong></p>
<p>In a standard  bicycle, the rider pushes on the pedal to create a &#8220;Force&#8221; and the length of the crank arm is the distance. Crank arms are typically 175 mm or <strong>7 inches long</strong>. If the rider weighs <strong>200 pounds</strong> and stands on the pedal, the torque is <strong>1400 inch pounds</strong> as given by the equation below:</p>
<p><strong>T</strong>orque=<strong>F</strong>orce X <strong>D</strong>istance</p>
<p><strong>1400 inch pounds = 200 pounds X 7 inches</strong></p>
<p>&nbsp;</p>
<h3 id="torque-units"><strong>Torque Units</strong></h3>
<p>In electric bikes, you will read about Torque in Metric Units (Newton Meters) or US units (inch pounds). You may also see torque in foot pounds.<strong><br />
</strong></p>
<p>A common torque for lower powered e bikes is 50 Newton Meters, which can be converted to 442 inch pounds or 36 foot pounds.</p>
<p><strong>50 Newton Meters = 442 inch pounds = 36 foot pounds</strong></p>
<p>In Part 2 I will discuss how torque multiplied by RPM make horsepower and how this affects your ride.</p>
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		<title>Welcome to the first and only ebike fitness coaching website</title>
		<link>https://optibike.com/welcome-to-the-first-and-only-ebike-fitness-coaching-website/</link>
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		<dc:creator><![CDATA[Nicholas]]></dc:creator>
		<pubDate>Sat, 02 Feb 2013 22:23:49 +0000</pubDate>
				<category><![CDATA[Ask Optibike!]]></category>
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		<category><![CDATA[Health]]></category>
		<category><![CDATA[Optibike News]]></category>
		<category><![CDATA[Weight loss]]></category>
		<category><![CDATA[bikes]]></category>
		<category><![CDATA[cycling]]></category>
		<category><![CDATA[electric bikes]]></category>
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		<category><![CDATA[getting fit]]></category>
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					<description><![CDATA[Welcome to electricbikefitness.com The site is all about electric bike fitness using Optibike electric bikes. What? Electric bikes? Aren’t those for losers? Yes they are! People losing weight! Electric bikes are perfect for those who are out of shape but want to get fit. They’re way more fun than using a stationary bike and let you increase your effort level and your fitness level while you still get the sensation of speed. Nobody will work out on a long term basis if it’s not fun. And Optibikes are the most fun you can have on 2 wheels. With an Optibike, your commute time can become fitness time, thereby giving you more time in your day for other activities you love. Optibike is proud to sponsor it’s annual weight loss challenge. All the participants are exercising using Optibikes, improving their nutrition, having lots of fun getting lean. Sign up to meet other e-bike riders, get fitness and weightloss tips, and to stay motivated! electricbikefitness.com]]></description>
										<content:encoded><![CDATA[<p>Welcome to <a href="https://electricbikefitness.com">electricbikefitness.com</a></p>
<p>The site is all about electric bike fitness using <a href="https://optibike.com/optibike-elite-series">Optibike electric bikes</a>. What? Electric bikes? Aren’t those for losers? Yes they are! People losing weight! Electric bikes are perfect for those who are out of shape but want to get fit. They’re way more fun than using a stationary bike and let you increase your effort level and your fitness level while you still get the sensation of speed. Nobody will work out on a long term basis if it’s not fun. And Optibikes are the most fun you can have on 2 wheels. With an Optibike, your commute time can become fitness time, thereby giving you more time in your day for other activities you love. Optibike is proud to sponsor it’s annual weight loss challenge. All the participants are exercising using Optibikes, improving their nutrition, having lots of fun getting lean.</p>
<p>Sign up to meet other e-bike riders, get fitness and weightloss tips, and to stay motivated! <a href="https://electricbikefitness.com">electricbikefitness.com</a></p>
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		<title>Exert from “The Power of Electric Bikes”</title>
		<link>https://optibike.com/exert-from-the-power-of-electric-bikes/</link>
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		<dc:creator><![CDATA[Nicholas]]></dc:creator>
		<pubDate>Thu, 15 Nov 2012 22:27:53 +0000</pubDate>
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					<description><![CDATA[Exert from “The Power of Electric Bikes” by Jim Turner BATTERIES The Battery is The Gas Tank The key to any electric vehicle is the battery and how much energy it can hold. The battery is the gas tank. The battery holds energy.  Power   accelerates the car, but the size of the gas tank (energy capacity) determines the distance. For a gas car, you buy energy in the form of gasoline. In an electric vehicle, you buy energy in the form of Kilowatt –hrs. This is the way you buy electricity in your house. Your house electricity bill charges you for the amount of kilowatt-hrs of energy you use in the month. High Power With a Small Gas Tank Doesn’t’ Get you Far If a high horsepower  Corvette has a small gas tank, the car doesn’t go very far. An electric vehicle needs a battery with a high energy capacity to go far. The amount of energy is measured in kilowatt-hrs. An electric vehicle’s range is constrained by batteries. Batteries don’t have the energy density of gasoline, meaning they provide less energy in terms of size and weight compared to gasoline. Electric Vehicles Need High Energy Batteries, Not High Power [&#8230;]]]></description>
										<content:encoded><![CDATA[<p><strong>Exert from “The Power of Electric Bikes” by Jim Turner</strong><br />
BATTERIES<br />
The Battery is The Gas Tank<br />
The key to any electric vehicle is the battery and how much energy it can hold. The battery is the gas tank. The battery holds energy.  Power   accelerates the car, but the size of the gas tank (energy capacity) determines the distance. For a gas car, you buy energy in the form of gasoline. In an electric vehicle, you buy energy in the form of Kilowatt –hrs. This is the way you buy electricity in your house. Your house electricity bill charges you for the amount of kilowatt-hrs of energy you use in the month.</p>
<p>High Power With a Small Gas Tank Doesn’t’ Get you Far<br />
If a high horsepower  Corvette has a small gas tank, the car doesn’t go very far. An electric vehicle needs a battery with a high energy capacity to go far. The amount of energy is measured in kilowatt-hrs. An electric vehicle’s range is constrained by batteries. Batteries don’t have the energy density of gasoline, meaning they provide less energy in terms of size and weight compared to gasoline.</p>
<p>Electric Vehicles Need High Energy Batteries, Not High Power<br />
Energy is the amount of power used  over time.  An electric vehicle must be more efficient with the use of energy than a gas car. With an electric vehicle, a battery with high  energy, not high power is preferred. This gives the vehicle the ability to travel long distances.  Some batteries put out a large amount of power, but they don’t have very much energy. That means the vehicle will accelerate very quickly, like a high horsepower Corvette, but will not  go very far, because the size of the gas tank is small..</p>
<p>Humans Have Energy and Power Differences Too<br />
In the Olympics, there are sprinters and marathoners. The sprinters who run the 100 meter dash have very large muscles. They can go really fast and have huge amounts of power, but they don’t have much energy left because they use it all up in 100 yards. The sprinter isn’t interested in energy density, he wants all-out horsepower.  In contrast, the marathon runner can run a marathon averaging 5-minute miles because he uses his energy so efficiently. The marathon runner wants a balance between power and energy. He needs power to have the speed and energy to go the distance.  This is the same with an electric vehicle. Electric vehicles need high energy density in their batteries to go the distance.</p>
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		<title>Battery Capacity and How it is Measured</title>
		<link>https://optibike.com/battery-capacity-and-how-it-is-measured/</link>
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		<dc:creator><![CDATA[Nicholas]]></dc:creator>
		<pubDate>Fri, 14 Sep 2012 03:32:33 +0000</pubDate>
				<category><![CDATA[Ask Optibike!]]></category>
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					<description><![CDATA[As a consumer, the new world of electric vehicles continues to require us to learn a new vocabulary. Last issue, we learned about how volts and amps are like water flow. In this issue we will learn how to determine the size of an  Electric vehicle “gas tank”.  The capacity of the gas tank in our cars is measured in gallons. In an electric vehicle, the capacity is measured in amp-hrs or watt-hrs. After the article, you will understand that amp-hr capacity of a battery does not tell the whole story, you must know the watt-hrs. More watt-hrs means longer distance. Battery Capacity is measured in Amp-hrs or watt-hrs. The higher the capacity, the longer a battery will run Example:  A battery is rated with  a 10 amp-hr capacity.  This means the battery will deliver 10 amps for one hour. (assuming the battery has a 1C rating, which we will discuss later). The rate of discharge affects the battery capacity. When the discharge current  is increased the capacity of the battery goes down.  Battery companies will list the battery  capacity based on the “C” rating.  A 1C rating means the battery was discharged at the rated capacity. Example: A battery [&#8230;]]]></description>
										<content:encoded><![CDATA[<h2 id="as-a-consumer-the-new-world-of-electric-vehicles-continues-to-require-us-to-learn-a-new-vocabulary">As a consumer, the new world of electric vehicles continues to require us to learn a new vocabulary.</h2>
<p>Last issue, we learned about how volts and amps are like water flow. In this issue we will learn how to determine the size of an  Electric vehicle “gas tank”.  The capacity of the gas tank in our cars is measured in gallons. In an electric vehicle, the capacity is measured in amp-hrs or watt-hrs. After the article, you will understand that amp-hr capacity of a battery does not tell the whole story, you must know the watt-hrs. More watt-hrs means longer distance.</p>
<p>Battery Capacity is measured in Amp-hrs or watt-hrs. The higher the capacity, the longer a battery will run</p>
<p><strong>Example:</strong>  <span style="text-decoration: underline;">A battery is rated with  a 10 amp-hr capacity.  This means the battery will deliver 10 amps for one hour</span>. (assuming the battery has a 1C rating, which we will discuss later).</p>
<p>The rate of discharge affects the battery capacity. When the <span style="text-decoration: underline;">discharge current  is increased</span> <span style="text-decoration: underline;">the capacity of the battery goes down.</span>  Battery companies will list the battery  capacity based on the “C” rating.  A 1C rating means the battery was discharged at the rated capacity.</p>
<p><strong>Example:</strong> A battery with a 10 amp-hr rating at <strong>1C</strong> was tested at <strong>10 amps</strong> for one hour. A battery with a 10 amp-hr rating at  <strong>C/10</strong> was tested at <strong>1 amp </strong>for one  hour. The first battery, with the 1C rating will run longer than the battery with the C/10 rating.</p>
<p>In electric bikes, batteries  should be rated at a 1C rating. Electric bikes require high current during acceleration. A battery with a C/10 rating will offer poor acceleration and the capacity will be much lower when discharged at higher currents. Lead acid batteries tend to be rated with C/10 ratings while NiMH are rated at 1C ratings.</p>
<p>The other way to describe battery capacity is the Watt-hrs. <strong>Watt-hrs combine  the amp-hrs with the voltage </strong> and are more accurate when comparing one battery pack to another.</p>
<p>Example: <strong>Bike A</strong>  has a NiMH <strong>24 volt</strong> <strong>12 amp-hr pack</strong> and <strong>Bike B</strong> has a NiMH <strong>36 volt</strong> <strong>12 amp hour pack</strong>. Even though <strong>the amp-hrs are the same</strong>, <strong>Bike B has 50% more capacity.</strong></p>
<p>Bike B has a 36 volt battery versus the 24 volt battery on Bike A.  Bike A has a capacity of  286-watt-hr while Bike B has a 432 watt-hr capacity, which means Bike B will runs 50% longer.</p>
<p>Next Tech blog we will discuss why higher battery voltages make electric bikes more efficient.</p>
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		<title>Optibike Development History</title>
		<link>https://optibike.com/optibike-development-history/</link>
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		<dc:creator><![CDATA[Nicholas]]></dc:creator>
		<pubDate>Mon, 30 Jul 2012 22:28:28 +0000</pubDate>
				<category><![CDATA[Ask Optibike!]]></category>
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		<category><![CDATA[How do we do it?]]></category>
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					<description><![CDATA[]]></description>
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				<div class="et_pb_text_inner"><p>&nbsp;</p>
<p style="text-align: left;">After first investigating hub motors in 1996, <a href="https://optibike.com">Optibike</a> developed this first<br />mid drive unit 12 years ago in 1997. This unit featured 24 volts with a 15<br />amp -hr lead acid battery and about 350 watts of power. The motor was off<br />board on the crank axle and drove through the final drive chain (other<br />companies still use variations of this design today. Optibike did not file<br />any patents on this design as it did not meet the final design objectives<br />of high power in a small efficient package. ) This prototype validated the<br />superior performance of mid drives  and led to the development of the <br />Optibike MBB and several patents.   The MBB design integrated the mid drive<br />into a small compact package that it is today. The MBB has evolved since<br />then, with now over 3X the power of the first units and superior<br />reliability. All Optibike MBB are still made in the USA. The first<br />prototype pictured here, without suspension,  also convinced us of the need<br />for suspension.</p></div>
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		<title>Winter Storage Tips for your Optibike Lithium Ion Battery</title>
		<link>https://optibike.com/winter-storage-tips-for-your-optibike-lithium-ion-battery/</link>
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		<dc:creator><![CDATA[Nicholas]]></dc:creator>
		<pubDate>Tue, 14 Feb 2012 22:31:37 +0000</pubDate>
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					<description><![CDATA[With cold weather here, caring for your lithium ion battery is critical for long cycle life and optimal performance. Do not store your bike in temperatures below -17C (0F) or above 27C (80F). Prolonged storage outside this temperature range may cause permanent damage the battery &#8211; Keep bike warm and indoors prior to riding for peak performance. Do NOT charge the battery if it is below 0C (32F) or above 45C (113F). This will cause permanent damage. Expect decreased capacity and range at lower operating temperatures; maximum capacity will be 80% of normal at temperatures near 0C (32F). In short, your battery likes to be charged warm, kept warm, and will preform best when warm. This can be a little tricky in the winter- usually a warm garage is perfect for storage. Also, if you can- try to discharge and re-charge your bike 1x per month. This will help keep the battery in tip top shape for summer riding. Be aware that Optibike Lithium Batteries (like most lithium batteries) do NOT trickle charge like their lead acid ancestors. The Optibike lithium battery will only start the charge sequence once the battery has been depleted about 10%. Do you have a question? Please [&#8230;]]]></description>
										<content:encoded><![CDATA[<p>With cold weather here, caring for your lithium ion battery is critical for long cycle life and optimal performance.</p>
<ul>
<li>Do not store your bike in temperatures below -17C (0F) or above 27C (80F). Prolonged storage outside this temperature range may cause permanent damage the battery &#8211; Keep bike warm and indoors prior to riding for peak performance.</li>
<li>Do NOT charge the battery if it is below 0C (32F) or above 45C (113F). This will cause permanent damage.</li>
<li>Expect decreased capacity and range at lower operating temperatures; maximum capacity will be 80% of normal at temperatures near 0C (32F).</li>
</ul>
<p>In short, your battery likes to be charged warm, kept warm, and will preform best when warm. This can be a little tricky in the winter- usually a warm garage is perfect for storage.</p>
<p>Also, if you can- try to discharge and re-charge your bike 1x per month. This will help keep the battery in tip top shape for summer riding.</p>
<p>Be aware that Optibike Lithium Batteries (like most lithium batteries) do NOT trickle charge like their lead acid ancestors. The Optibike lithium battery will only start the charge sequence once the battery has been depleted about 10%.</p>
<p>Do you have a question? Please call Optibike Service at 303.848.8382 or call Optibike Sales at 303.848.8380</p>
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		<title>Ask Optibike! Q: Does the Optibike have regenerative braking like some hybrid cars?</title>
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		<dc:creator><![CDATA[Nicholas]]></dc:creator>
		<pubDate>Wed, 08 Feb 2012 17:23:14 +0000</pubDate>
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					<description><![CDATA[A:  In short, no.  There are a few reasons why we decided not to offer &#8220;regen&#8221; on the Optibike. 1. Compromised riding experience.  Bikes we have ridden with regenerative braking have been heavy, a bit clumsy, and generally require a hub motor to capture the relatively small amount of energy that is recovered through slowing down.     2. Excessively complicated. In a 3000lb car, recovering the potential energy when slowing down makes sense.  There is far less energy to recover with a 60lb bike and rider combo to warrant the excess of mechanics required to incorporate regenerative braking.  Sure, our marketing people could brag about it- but the reality is that its little more than marketing fodder. 3. Battery Abuse. E-bike batteries are small compared to electric or hybrid car batteries, smaller batteries do not absorb spikes in energy produced by regen braking without compromising cycle life of the battery.  We decided that offering a 3 year/30,000 mile battery warranty was a better feature than regen.  There are no electric bikes with regen braking that offer a comparable warranty. 4. How far do you really want to go? This is our favorite conversation to have, because all this talk of [&#8230;]]]></description>
										<content:encoded><![CDATA[<div><strong>A: </strong></div>
<div>In short, no.  There are a few reasons why we decided not to offer &#8220;regen&#8221; on the Optibike.</div>
<div>
</div>
<div><strong>1. Compromised riding experience. </strong></div>
<p>Bikes we have ridden with regenerative braking have been heavy, a bit clumsy, and generally require a hub motor to capture the relatively small amount of energy that is recovered through slowing down.</p>
<div><span style="font-size: xx-small;"><span style="line-height: 16px;"> </span></span></div>
<div><strong> </strong></div>
<div><strong>2. Excessively complicated.</strong></div>
<p>In a 3000lb car, recovering the potential energy when slowing down makes sense.  There is far less energy to recover with a 60lb bike and rider combo to warrant the excess of mechanics required to incorporate regenerative braking.  Sure, our marketing people could brag about it- but the reality is that its little more than marketing fodder.</p>
<div>
<div><strong>3. Battery Abuse.</strong></div>
<p>E-bike batteries are small compared to electric or hybrid car batteries, smaller batteries do not absorb spikes in energy produced by regen braking without compromising cycle life of the battery.  We decided that offering a 3 year/30,000 mile battery warranty was a better feature than regen.  There are no electric bikes with regen braking that offer a comparable warranty.</p>
</div>
<div>
<div><strong>4. How far do you really want to go?</strong></div>
<p>This is our favorite conversation to have, because all this talk of regen really comes down to how far you want to be able to ride.  With the Optibike Touring battery, you can ride 100 miles- which would take about 4 hours or so.  My rear end gets tired before my Optibike battery does.  We are curious- how far do you need to be able to ride on a single charge to do everything that you want to do?</p>
<p>Really! We want to hear from you.  Send us an email at: ask@optibike.com with your questions, comments, concerns, personal observations or suggestions.</p>
</div>
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