An actuator comprising: two motors; an output member; and a harmonic gear comprising: an elliptical wave generator component; a flexible spline component which is coupled to the wave generator by a bearing and flexes to conform to the elliptical shape of the wave generator; and a circular spline component which surrounds and meshes with the flexible spline component. One of the harmonic gear components is coupled to the output member, and each of the other harmonic gear components is coupled to a respective one of the motors.
1. An actuator comprising:
two motors, each of said motors having a drive path;
an output member; and
a harmonic gear comprising:
an elliptical wave generator component;
a flexible spline component which is coupled to the wave generator component by a bearing and flexes to conform to the elliptical shape of the wave generator component; and
a circular spline component which surrounds and meshes with the flexible spline component, wherein one of the harmonic gear components is coupled to the output member, and each of the other harmonic gear components is coupled to a respective one of the two drive paths, wherein said two motors are dissimilar.
2. The actuator of claim 1 wherein the flexible spline component is coupled to the output member.
3. The actuator of claim 1 further comprising two brakes, each brake configured to apply a braking force to a respective one of the harmonic gear components.
4. The actuator of claim 1 further comprising respective gears coupling each drive motor to a respective harmonic component.
5. The actuator of claim 1 wherein the gear ratio between the output member and the first motor is different to the gear ratio between the output member and the second motor.
6. A method of operating the actuator of claim 1 , the method comprising simultaneously driving the motors.
7. The method of claim 6 comprising driving the motors so as to apply power in opposite senses to the output member.
8. The method of claim 6 comprising:
operating the actuator in a mode in which the motors are driven simultaneously; and
operating the actuator in a further mode in which at least one of the motors is back driven by its respective harmonic gear component.
9. The method of claim 6 , comprising:
operating the actuator in a mode in which the motors are driven simultaneously; and
operating the actuator in a further mode in which one of the motors is shorted so as to generate a damping force.
10. The method of claim 6 comprising:
operating the actuator in a mode in which the motors are driven simultaneously; and
operating the actuator in a further mode in which at least one of the harmonic gear components is locked.
11. The method of claim 6 wherein the output member is coupled to a component of an aircraft.
12. An aircraft comprising an actuator according to claim 1 .
13. An aircraft landing gear comprising at least one wheel, and an actuator according to claim 1 having its output member coupled to the at least one wheel and said landing gear and actuator configured so the output member causes the at least one wheel to be steered.