Price
$1,399


Technical Architecture
Price
$1,399
MSRP
Motor
750 W
Nominal Output · 1,310 W peak
Battery
624 Wh
Battery Capacity
Speed
28 mph
Unlocked Top Speed
Payload
450 lbs
Max Load Capacity · bike weighs 65 lbs
Safety Standards
UL 2849 Certified
Electrical System Integrity
UL 2271 Certified
Battery Performance & Safety
Foldable
No
Frame style(s): Step-Thru
Score breakdown
Every metric below is a ladder. The bike sits on one rung, and that rung’s points are the points it earns. Add the six category subtotals and you get the score at the top of the page. There is no weighting step, no normalisation and nothing rounded away.
System voltage x controller amperage - the one number that decides acceleration and hill climbing. Scored once, not three times.
A torque sensor measures how hard you pedal and matches it. Every bike has at least a cadence sensor, so cadence alone earns nothing.
Lets you pull away from a stop without pedalling - useful with a load, on a hill, in traffic, or with joint pain.
Class 3 bikes (28 mph) keep pace with city traffic. Class 1 and 2 stop assisting at 20 mph.
Total watt-hours you can carry, counting a second battery if one is included. Capacity is scored once whether it arrives in one pack or two.
The charger's own output in watts. Scored on the charger alone so that a large battery is not penalised, and so a 36 V high-amp charger cannot pass for a 48 V one.
Cells from LG, Samsung or Panasonic publish cycle-life and thermal data. Anything else earns nothing.
The published IP rating of the battery pack - not the bike. IPX5 is a water-jet test only; IP65 adds a dust-tight claim; IPX7 adds immersion.
Mechanical disc is the bare minimum and earns nothing. Hydraulic discs stop harder with less hand effort; a four-piston calliper is more than twice the braking power of a two-piston and over double the price.
Whether pads, rotors and callipers can be bought and serviced anywhere. Tektro and Star Union are both serviceable; Magura is better.
On a throttle bike, squeezing the brake should cut motor power. It is a backstop for a stuck throttle or a controller fault. A bike with no throttle cannot have that failure, so it scores full marks here.
A rear light that brightens under braking is the cheapest way to be seen slowing down.
Signal without taking a hand off the bars.
A rigid steel fork costs about $6 to make; a name-brand suspension fork is $80 or more. The spread reflects that.
Gear range, shifting quality and maintenance burden on one ladder. An internally-geared hub with a belt is several levels above a single-speed chain and costs roughly eighty times as much.
The best available proxy for grip, rolling resistance and puncture resistance. Deliberately kept small - a name-brand tyre is only about $5 more.
Weld finish is a visible proxy for frame manufacturing control.
A thru-axle holds the wheel more securely than a quick-release; a threaded thru-axle more securely still.
An adjustable stem lets one bike fit several riders. A quick-release adjustable stem costs roughly triple a tooled one.
The part most owners replace first. Quick-release aluminium pedals fold the bike into a smaller space and do not snap.
Lock-on grips do not twist loose or slide off in the wet.
Whether the bike carries anything out of the box, and whether accessories clip to a published standard instead of needing bungee cords.
Full-coverage fenders are what make an e-bike usable in the rain. Composite fenders do not rattle, rust or cut.
An adjustable or double-leg stand holds a loaded bike upright.
How much you can read at a glance, in sunlight, without stopping. A touchscreen TFT is $40-50 of cost over a colour LCD.
Whether you can change how the bike delivers power, or only how much.
Useful for firmware updates and diagnostics. Nice to have, but most riders do not use it.
These are real, checkable facts about the bike, and buyers ask about them. None of them predicts whether the bike is good, so none of them moves the score. Quick-release pedals are convenient; they are not a quarter of a braking system.
Editorial Insights
Expert Verdict
Editorial Review: Evaluating theXPedition2 Single
The Lectric XPedition 2.0 Single Battery is the highly anticipated evolution of Lectric's heavy-duty cargo workhorse, built to act as a true car-replacing utility machine without breaking the bank. The massive headline for this second-generation model is the upgrade to a custom torque sensor paired with PWR+ programming, entirely eliminating the jerky power delivery of the original version for a beautifully smooth, natural pedaling experience under heavy loads. It also introduces a front suspension fork and an updated, longer hydroformed frame to significantly improve ride comfort and stability, making it an incredibly agile "minivan on two wheels" whether you're hauling kids, groceries, or commercial gear.
This single-battery utility hauler features a quiet 750W Stealth M24 hub motor that peaks at 1310W and delivers 85Nm of torque to easily muscle up steep hills. Its single, removable 48V 13Ah (624Wh) UL-certified battery provides a range of up to 60 miles per charge, though a terminal cover on the frame lets you easily drop in a second battery later if you decide you need more range down the road. It can be unlocked to function as a Class 3 bike hitting 28 mph, controlled safely by an upgraded Shimano Altus 8-speed drivetrain and powerful hydraulic disc brakes that grip a massive 203mm front rotor and a 180mm rear rotor for serious stopping power.
Comfort and utility are heavily optimized with a new Courier 50 dual-spring suspension fork offering 50mm of adjustable travel, a newly integrated quiet wheel shroud to protect passengers' feet, and 20x2.5-inch puncture-resistant street tires with Slime pre-installed. The bike handles a beastly 450-pound total payload capacity, with the heavy-duty integrated rear rack alone rated for an impressive 300 pounds. Tech and safety are fully updated with an IP65-rated color LCD display featuring a USB-C port, an ergonomic left-side thumb throttle, and an integrated lighting system to ensure maximum visibility when you're fully loaded.
Key Specifications
Fine-tuned for the 624 Wh Battery
31.2 mi
Motor Type
Terrain Profile
Estimated range is total usable battery capacity divided by adjusted energy consumption: Range (mi) = Battery (Wh) ÷ Adjusted Consumption (Wh/mi). Manufacturer range claims are measured in ideal lab conditions, so this model starts from a real-world baseline and applies a multiplier for each factor you change above.
This estimate is independent of the Battery & Range score in the rating breakdown, which scores the published specification rather than predicting a single ride. Treat the figure as a planning guide — tyre pressure, wind, temperature and stop-start riding all move the real number.
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