Actuator for driving a home-automation screen and installation comprising such an actuator
This actuator for driving a home-automation screen includes an electric motor (M), a reduction gear (R) for transmitting the movement of the motor to the home-automation screen and a brake. The actuator includes a direct current electronic switching motor (M) and a mechanical brake ( 2 ) having a continuous drag torque.
1. An actuator ( 1 ) for driving a home-automation screen (C), the actuator comprising:
an electric motor (M) comprised of a rotor formed by at least one permanent magnet and a stator formed by a set of coils;
a reduction gear (R) for transmitting the movement of the motor to the home-automation screen;
a brake ( 2 ) for resisting the movement of the motor; and
position referencing means for referencing a position of the rotor of the motor (M) integrated in an electronic switching module of the coils of a stator of the motor (M), the position referencing means configured to measure the position of the rotor by counting a number of switches occurring in the motor,
wherein the motor is an electronic switching electric motor (M), and
wherein the brake is a mechanical brake ( 2 ) configured to apply a continuous drag torque, said mechanical brake configured so that, in an operation to lower the home-automation screen, the mechanical brake dissipates an energy generated by a load of the home-automation screen upon the reduction gear and electric motor such that the operation to lower the home-automation screen does not cause the electric motor to operate as a generator.
2. The actuator ( 1 ) according to claim 1 , wherein the brake is a spring brake ( 2 ) comprising a helical spring ( 22 ) which is mounted tightly in a drum ( 20 ), the two ends of the spring ( 22 a , 22 b ) being curved towards the inside of the cylinder and each engaging with a part ( 24 ) rigidly connected to a brake input shaft and with a tappet ( 28 ) connected to a brake output shaft.
3. The actuator according to claim 1 , wherein the brake is a spring brake comprising a helical spring which is mounted tightly about a hub, the two ends of the spring being curved towards the outside of the hub and each engaging with a part rigidly connected to a brake input shaft and with a tappet rigidly connected to a brake output shaft.
4. The actuator ( 1 ) according to claim 2 , wherein the spring ( 2 ) is a helical spring with adjoined turns.
5. The actuator ( 1 ) according to claim 1 , wherein the brake is a cam brake.
6. The actuator ( 1 ) according to claim 1 , wherein the brake is arranged between two stages (R 1 , R 2 ) of the reduction gear (R).
7. The actuator ( 1 ) according to claim 1 , further comprising sensors of rotation of the rotor of the motor for detecting the rotor position.
8. The actuator ( 1 ) according to claim 1 , further comprising:
means for restoring at least a portion of the signals for referencing the position of the rotor of the motor.
9. An installation (I) for operating a home-automation screen (C), the installation comprising a tube ( 7 ) around which the screen is suitable for being wound and an actuator ( 1 ) for driving the tube, and the actuator according to claim 1 .
10. An installation for operating a home-automation screen, the installation comprising a drum around which a cord of the screen is suitable for being wound and an actuator ( 1 ) for driving the drum, and the actuator according to claim 1 .
11. An installation, comprising:
a home-automation screen (C) wound around one of the group consisting of a drum and a tube;
a frame ( 5 ); and
an actuator ( 1 ) comprised of i) a casing ( 101 ) having a first end ( 101 B) attached to the frame ( 5 ) and a second end ( 101 A) with a projecting shaft ( 107 ), the shaft ( 107 ) operatively connected to the one of the group consisting of a drum and a tube, the shaft ( 107 ) driving the one of the group consisting of a drum and a tube in rotation,
the actuator further comprising:
a direct current, electronic switching electric motor (M), comprised of an internal rotor formed by at least one permanent magnet and a stator formed by a set of coils, the coils being switched to create a rotating magnetic field causing the rotor to rotate under an effect of the rotating magnetic field,
a reduction gear (R) for transmitting the movement of the motor to the one of the group consisting of a drum and a tube,
a mechanical brake ( 2 ) having a continuous drag torque, and
position referencing means for referencing a position of the rotor of the motor (M) integrated in an electronic switching module of the coils of a stator of the motor (M), the position referencing means configured to measure the position of the rotor by counting a number of switches occurring in the motor,
said mechanical brake configured so that, in an operation to lower the home-automation screen, the mechanical brake dissipates an energy generated by a load of the home-automation screen upon the reduction gear and electric motor such that the operation to lower the home-automation screen does not cause the electric motor to operate as a generator.
12. The installation of claim 11 , wherein,
the reduction gear (R) comprises a first stage (R 1 ) and a second stage (R 2 ), and
the mechanical brake ( 2 ) is arranged between the first and second stages (R 1 , R 2 ) of the reduction gear (R).