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公开(公告)号:US20210396076A1
公开(公告)日:2021-12-23
申请号:US17288724
申请日:2019-10-25
Applicant: SOMFY ACTIVITES SA
Inventor: Eric Lagarde , Héléna Robert , Dylan Mohamed
Abstract: An electromechanical actuator (11) for a closure, obscuring or solar protection installation (6) includes a motor assembly (16), including an electric motor (261) and a reduction gearbox (265), first and second (133) mechanical modules for filtering vibrations, and an output shaft (20), inserted at least partially in a casing (17. the electromechanical actuator (11) extends along a longitudinal axis (X), the first and the second mechanical modules (33, 133) being disposed on either side of the motor assembly (16) along the longitudinal axis (X) and each having a rigid transmission coupling, with at least a first degree of freedom perpendicularly to the longitudinal axis (X), allowing the motor assembly (16) to move along a plane perpendicular to the longitudinal axis (X), the electromechanical actuator also comprising at least one elastic module (130) that limits the movement of the motor assembly (16) along the perpendicular plane.
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公开(公告)号:US11643874B2
公开(公告)日:2023-05-09
申请号:US17288724
申请日:2019-10-25
Applicant: SOMFY ACTIVITES SA
Inventor: Eric Lagarde , Héléna Robert , Dylan Mohamed
Abstract: An electromechanical actuator (11) for a closure, obscuring or solar protection installation (6) includes a motor assembly (16), including an electric motor (261) and a reduction gearbox (265), first and second (133) mechanical modules for filtering vibrations, and an output shaft (20), inserted at least partially in a casing (17), the electromechanical actuator (11) extends along a longitudinal axis (X), the first and the second mechanical modules (33, 133) being disposed on either side of the motor assembly (16) along the longitudinal axis (X) and each having a rigid transmission coupling, with at least a first degree of freedom perpendicularly to the longitudinal axis (X), allowing the motor assembly (16) to move along a plane perpendicular to the longitudinal axis (X), the electromechanical actuator also comprising at least one elastic module (130) that limits the movement of the motor assembly (16) along the perpendicular plane.
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公开(公告)号:US12009707B2
公开(公告)日:2024-06-11
申请号:US18546730
申请日:2022-02-21
Applicant: SOMFY ACTIVITES SA
Inventor: Héléna Robert , Cyril Schuehmacher , Joël Ramos
CPC classification number: H02K11/40 , E06B9/42 , E06B9/72 , H02K7/116 , H02K11/33 , H02K2207/03 , H02K2211/03
Abstract: An electromechanical actuator includes a casing, a torque support, a ring, an electrical power supply cable and a device for discharging electrostatic charge. The ring is inserted partly around the torque support and forms a bearing guiding the rotation of a winding tube. The discharge device includes an electrical conduction element, which is configured to be in electrical contact with the tube, and an electrical linking element. The ring bears the electrical conduction element. The torque support at least partly accommodates the electrical linking element. The electrical conduction element is configured to be in electrical contact with the electrical linking element. The electrical linking element electrically connects the electrical conduction element to a shielding or to an earth electrical conductor of the cable.
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公开(公告)号:US11840885B2
公开(公告)日:2023-12-12
申请号:US17913105
申请日:2021-03-19
Applicant: SOMFY ACTIVITES SA
Inventor: Arnaud Darlot , Eric Lagarde , Frédéric Maraval , Héléna Robert
CPC classification number: E06B9/72 , H02P23/0031 , H02P23/14 , E06B2009/6836 , H02P2207/05
Abstract: A method for detecting an obstacle opposing the movement of a screen in a home automation closure or sun protection system includes an electromechanical actuator driving movement of the screen. The electromechanical actuator includes a torque support, a housing, an output shaft, and an electric motor including a stator and a rotor. The system includes a winding shaft rotating the screen and a connecting accessory between the electromechanical actuator's output shaft and the winding shaft. The method includes: determining an angular displacement value of the rotor with respect to the stator; determining angular displacement of the winding shaft relative to the housing or torque support of the electromechanical actuator; determining angular deformation of the kinematic chain between the electric motor and the winding shaft by comparing these two angular displacements; and determining the presence of an obstacle to screen movement from an angular deformation exceeding a predefined value.
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