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Linear motors are electric induction motors that produce motion in a straight line rather than rotational motion. In a traditional electric motor, the rotor (rotating part) spins inside the stator (static part); in a linear motor, the stator is unwrapped and laid out flat and the "rotor" moves past it in a straight line. Linear motors often use superconducting magnets, which are cooled to low temperatures to reduce power consumption.
Artwork: Top: Normal motor: The rotor spins inside the stator and the whole motor is fixed in place. Bottom: A linear motor is like a normal electric motor that has been unwrapped and laid in a straight line. Now the rotor moves past the stator as it turns.

In a traditional DC electric motor, a central core of tightly wrapped magnetic material (known as the rotor) spins at high speed between the fixed poles of a magnet (known as the stator) when an electric current is applied. In an AC induction motor, electromagnets positioned around the edge of the motor are used to generate a rotating magnetic field in the central space between them. This "induces" (produces) electric currents in a rotor, causing it to spin. In an electric car, DC or AC motors like these are used to drive gears and wheels and convert rotational motion into motion in a straight line.
Photo: An ordinary electric motor is all about rotation: the rotor (the coils in the center) turns inside the stator (the outer magnetic case).

| E Series--MLCE(Dynamic) MLFE(Stator) | |||||||
| Model/Par | MLCE-0075-075-00 | MLCE-0135-135-00 | MLCE-0260-255-00 | ||||
| Peak force(Fp) | N | 215 | 405 | 780 | |||
| Peak current(lp) | Amps | 4.8 | 4.35 | 8.1 | |||
| Continuous force(Fc) | N | 75 | 135 | 260 | |||
| Continuous current(lc) | Amps | 1.6 | 1.45 | 2.7 | |||
| Actuator constants(DC motor conversion/3p)(Ka) | N/W | 12.6 | 17.9 | 25.5 | |||
| Constant Thrust(L-L)(Kf) | N/Amps | 47.3 | 95.1 | 97.5 | |||
| Back EMF constant(L-L)(Kb) | V/m/sec | 27.3 | 54.9 | 54.9 | |||
| Electrical constant(Te) | ms | 0.35 | 0.35 | 0.35 | |||
| Resistance(L-L)(R) | @25℃Ω | 9.2 | 18.4 | 9.2 | |||
| Inductance(L-L)(l) | mh | 3.1 | 6.2 | 3.1 | |||
| Heat transfer coefficient(Rth) | ℃/W | **2 | **1.35 | **0.73 | |||
| Coil maximum temperature(Tmax) | ℃ | 120 | 120 | 120 | |||
| Magnet Pole pitch(2T) | mm | 30 | 30 | 30 | |||
| Mover weight | Kg | 0.45 | 0.82 | 1.53 | |||





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