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Resistance & User's Power Output

Resistance of elliptical machine indicates the exercise intensity the machine can provoide. Pedal torque (N·m) on the crank is used to represent the the resistance value.

User's Power Output (watts) is a commonly used to express the workload. It is a combined factor of pedal torque and cadence. Power Output can also be used to assess calorie expenditure.

Power Output & Calorie Burn Calculation...

How Elliptical Machines Produce Resistance

Elliptical machines produce exercise resistance mainly in two ways:

Magnetic Resistance

Most modern elliptical machines use a magnetic resistance (or magnetic brake) device to create a smooth and quiet workout load. In this system, a metal flywheel rotates near a set of magnets. The magnets do not need to touch the flywheel, so the resistance can be produced without frictional contact.

When the flywheel rotates through the magnetic field, electrical currents are induced inside the metal flywheel. These currents are called eddy currents. The eddy currents create an opposing magnetic effect that resists the rotation of the flywheel. This opposing force is what the exerciser feels as resistance.

The resistance level can be adjusted by changing the gap between the magnet set and the outer ring of the flywheel. The closer the magnet set is to the flywheel, the higher the resistance.

Consistent Resistance At a given gap, the magnetic resistance is consistent regardless of how fast or slow the exerciser pedals. Therefore, at each resistance level, the magnetic resistance is steady, predictable, and independent of speed and acceleration.

Magnetic resistance is smooth, quiet, adjustable, and low-maintenance because the magnets do not rub against the flywheel. This is why it is widely used in elliptical machines, exercise bikes, and other indoor fitness equipment.

Acceleration Resistance

Acceleration resistance is different from magnetic resistance. It comes from the force required to change the kinetic energy when the exerciser speeds up the pedal stroke.

Responsive Resistance Acceleration resistance responds to acceleration. There is no acceleration resistance if the exerciser pedals the elliptical at a constant stroke rate.

Resistance Value

The resistance value can be expressed by the pedal torque on crank.

Pedal Torque (Nm) Measurement of resistant torque at a certain pedal cadance.
User Power Output (W) Calculation of user's power output at a certain pedal torque and cadance.

Resistance range of an elliptical machine is the pedal torque range the machine offers.

User Power Output is commonly used to evaluate and compare the resistance capability of different elliptical machines.

User Power Output is calculated based on a given pedal torque and a certain cadence. The pedal cadence of 1 cycle / sec, or 60 RPM of crank rotation is usually adopted for the assessment and calculation.

Ellipical Machine User Power Output Calculation

It is important to understand the resistance range for choosing the right elliptical machine that fits your physical condition and fitness goal.

Resistance Levels — Not Restance Range

Resistance Levels do not represent the resistance range.

For example, a manufacturer may divide a resistance torque range from 30Nm to 100Nm into 12 incremental levels, while another manufacturer may divide the same range to 24 incremental levels. It does not mean a 24-level elliptial offers broader resistance range than a 12-level one. It is just that for the 24-level elliptical, users will need to press the Level+ button many times to feel the change of resistance.

LB007 Vertical Elliptical offer a broad resistance range from 5Nm to 43Nm at pedal cadance 1 stroke/sec.

Resitance and Fitness Applications

Below are a general reference for selecting a right elliptical machine that provides the needed User Power Output for suitable fitness applications.

Pedal Torque*
(Nm)
Power Output
(W)
Application
5–8 30–50 Light Exercise
Warm-up, recovery, and low-effort daily activity.
8–16 50–100 General Cardio
Comfortable continuous exercise for cardiovascular health and basic fitness.
16–32 100–200 Fitness & Endurance
Improve stamina, aerobic capacity, and calorie expenditure.
32–48 200–300 Advanced Training
Demanding workouts for well-trained users and serious endurance conditioning.
48+ 300+ Competitive Athletes
High-intensity intervals and elite-level endurance training.
*Equivalent pedal torque calculated at a crank cadence of 60 RPM. At lower cadences, achieving the same power output requires proportionally higher pedal torque.
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