Actuator and electronic clutch system
10797554 ยท 2020-10-06
Assignee
Inventors
Cpc classification
H02K11/30
ELECTRICITY
F16D48/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2500/1023
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2121/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2500/102
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H02K11/215
ELECTRICITY
H02K5/10
ELECTRICITY
F16D2300/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2500/302
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2500/1107
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G01D5/145
PHYSICS
International classification
H02K29/08
ELECTRICITY
H02K11/215
ELECTRICITY
H02K11/30
ELECTRICITY
H02K5/10
ELECTRICITY
F16D48/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An actuator includes a controller, a motor and a sensor device. The controller includes a housing, and the motor includes a rotor, and the rotor includes a rotating shaft. The motor is mounted on the outside of the housing, and the sensor device includes a magnet and a sensor, the magnet is mounted on the rotating shaft of the motor, and the sensor is mounted inside the housing. The actuator has a good waterproof performance and anti-interference ability. This disclosure also relates to an electronic clutch system having the actuator.
Claims
1. An actuator, comprising: a controller comprising a housing; a motor comprising a rotor, and the rotor comprises a rotating shaft; and a sensor device; wherein the motor is mounted on the outside of the housing, and the sensor device comprises a magnet and a sensor, the magnet is mounted on the rotating shaft of the motor, and the sensor is mounted inside the housing; wherein a groove is disposed on one side of the housing, one end of the rotating shaft is received in the groove, and the magnet is mounted on the end of the rotating shaft; wherein the sensor device further comprises a mounting member secured to the end of the rotating shaft, and the magnet is mounted in the mounting member, facing a bottom wall of the groove; wherein the mounting member comprises a latching portion for latching on the rotating shaft and a receiving portion for receiving the magnet, one end of the latching portion is provided with a clamping groove, and one end of the rotating shaft is retained in the clamping groove.
2. The actuator of claim 1, wherein a receiving cavity is formed in the housing, the sensor is disposed in the receiving cavity.
3. The actuator of claim 1, wherein a groove is disposed on one side of the housing, and the motor is partially recessed in the groove of the housing.
4. The actuator of claim 1, wherein a mounting groove is defined in a side of the bottom wall of the groove facing away from the rotating shaft, and the sensor is received in the mounting groove.
5. The actuator of claim 4, wherein the mounting groove, the groove, the magnet, and the rotating shaft are disposed opposite to each other in the axial direction of the rotating shaft.
6. The actuator of claim 1, wherein the housing comprises an upper cover and a lower cover, the upper cover and the lower cover are assembled to form a receiving cavity, the controller further comprises a circuit board received in the receiving cavity and a plurality of electronic components mounted on the circuit board, the motor is mounted on one side of the upper cover.
7. An electronic clutch system, comprising: an actuator; wherein the actuator comprises: a controller comprising a housing; a motor comprising a rotor, and the rotor comprises a rotating shaft; and a sensor device; wherein the motor is mounted on the outside of the housing, and the sensor device comprises a magnet and a sensor, the magnet is mounted on the rotating shaft of the motor, and the sensor is mounted inside the housing; wherein a groove is disposed on one side of the housing, one end of the rotating shaft is received in the groove, and the magnet is mounted on the end of the rotating shaft; wherein the sensor device further comprises a mounting member secured to the end of the rotating shaft, and the magnet is mounted in the mounting member, facing a bottom wall of the groove; wherein the mounting member comprises a latching portion for latching on the rotating shaft and a receiving portion for receiving the magnet, one end of the latching portion is provided with a clamping groove, and one end of the rotating shaft is retained in the clamping groove.
8. The electronic clutch system of claim 7, wherein a receiving cavity is formed in the housing, the sensor is disposed in the receiving cavity.
9. The electronic clutch system of claim 7, wherein a groove is disposed on one side of the housing, and the motor is partially recessed in the groove of the housing.
10. The electronic clutch system of claim 7, wherein a mounting groove is defined in a side of the bottom wall of the groove facing away from the rotating shaft, and the sensor is received in the mounting groove.
11. The electronic clutch system of claim 10, wherein the mounting groove, the groove, the magnet, and the rotating shaft are disposed opposite to each other in the axial direction of the rotating shaft.
12. The electronic clutch system of claim 7, wherein the housing comprises an upper cover and a lower cover, the upper cover and the lower cover are assembled to form a receiving cavity, the controller further comprises a circuit board received in the receiving cavity and a plurality of electronic components mounted on the circuit board, the motor is mounted on one side of the upper cover.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) A preferred embodiment of the disclosure will now be described, by way of example only, with reference to figures of the accompanying drawings. In the figures, identical structures, elements or parts that appear in more than one figure are generally labeled with a same reference numeral in all the figures in which they appear. Dimensions of components and features shown in the figures are generally chosen for convenience and clarity of presentation and are not necessarily shown to scale. The figures are listed below.
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(9) Various features are described hereinafter with reference to the figures. It shall be noted that the figures are not drawn to scale, and that the elements of similar structures or functions are represented by like reference numerals throughout the figures. It shall also be noted that the figures are only intended to facilitate the description of the features for illustration and explanation purposes, unless otherwise specifically recited in one or more specific embodiments or claimed in one or more specific claims. The drawings figures and various embodiments described herein are not intended as an exhaustive illustration or description of various other embodiments or as a limitation on the scope of the claims or the scope of some other embodiments that are apparent to one of ordinary skills in the art in view of the embodiments described in the Application. In addition, an illustrated embodiment need not have all the aspects or advantages shown.
(10) An aspect or an advantage described in conjunction with a particular embodiment is not necessarily limited to that embodiment and may be practiced in any other embodiments, even if not so illustrated, or if not explicitly described. It should be noted that, when a component is referred to as being fixed to another component, it can be on another component or exist inside another component. When a component is referred to be connected to another component, it can be connected to another component or exist inside another component. When a component is referred to be set to another component, it can be disposed on another component or exist inside another component.
(11) Referring to
(12) The actuator 10 further includes a motor 20, and the motor 20 includes a shell 21, a stator 24 and a rotor 25 mounted in the shell 21. The controller 30 includes a housing 31. The shell 21 is connected to the outside of the housing 31, and the motor 20 is partially recessed in the housing 31. A bearing seat 212 for receiving a bearing 213 is disposed on a side of the shell 21 away from the controller 30, and the bearing 213 is used to support a rotating shaft 251 of the rotor 25. In the embodiment of the present disclosure, the shell 21 has a main portion, and the main portion of the shell 21 is a hollow cylinder.
(13) The controller 30 further includes a circuit board 33 mounted in the housing 31. The circuit board 33 has a plurality of electronic components 35 mounted thereon. The controller 30 is configured to supply power to the motor 20 and the sensor device 50. In the embodiment of the present disclosure, the housing 31 of the controller 30 is used for supporting and connecting to the motor 20.
(14) Referring to
(15) A groove 321 is disposed on a side of the upper cover 32 adjacent to the rotating shaft 251, and one end of the rotating shaft 251 is rotatably received in the groove 321. The sensor device 50 includes a magnet 525 and a sensor 526. The magnet 525 is mounted on the end of the rotating shaft 251.
(16) The sensor 526 is disposed in the receiving cavity 36 and is mounted on the circuit board 33. The sensor 526 is opposite to the magnet 525, so that the sensor 526 can sense the position information of the magnet 525. Preferably, the sensor device 50 is a magnetoresistive sensor.
(17) With referring to
(18) Referring to
(19) The upper cover 32 is further provided with a through hole 326, and the through hole 326 is disposed between the groove 321 and the sealing groove 324. Conductive terminals 27 of the motor 20 are electrically connected to the circuit board 33 through the through hole 326.
(20) Referring to
(21) In present disclosure, the controller 30 of the actuator 10 includes a housing 31. A magnet 525 of the sensor device 50 is mounted on an end of the rotating shaft 251. The sensor 526 is mounted in the housing 31 to prevent other substances, such as water, from entering the sensor 526, causing the sensor 526 to fail. In addition, the upper cover 32 of the housing 31 defines a mounting groove 323 for receiving the sensor 526 at a position opposite to the magnet 525, so that a thickness of the bottom wall 322 of the housing 31 between the magnet 525 and the sensor 526 is smaller, thus reducing obstruction.
(22) In the description and claims of the present application, each of the verbs comprise, include and have, and variations thereof, are used in an inclusive sense, to specify the presence of the stated item or feature but do not preclude the presence of additional items or features.
(23) It is appreciated that certain features of the disclosure, which are, for clarity, described in the context of separate embodiments, may also be provided in combination in a single embodiment. Conversely, various features of the disclosure which are, for brevity, described in the context of a single embodiment, may also be provided separately or in any suitable sub-combination.
(24) The embodiments described above are provided by way of example only, and various other modifications will be apparent to persons skilled in the field without departing from the scope of the disclosure as defined by the appended claims.