Switch control assembly for a vehicle and vehicle

CN121768879BActive Publication Date: 2026-08-07VALEO COMFORT DRIVING ASSISTANCE SYST GUANGZHOU CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
VALEO COMFORT DRIVING ASSISTANCE SYST GUANGZHOU CO LTD
Filing Date
2026-01-22
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

然而现有技术的设计往往不能满足上述要求,通常会因驾驶员的错误操作而实施了其意料以外的功能调用,这可能导致驾驶安全性方面的风险

Benefits of technology

[0019]本发明的用于车辆的开关控制组件,能够准确因应车辆操纵者在驾驶过程中的开关操作,提高在车辆运行时对开关操作过程的可靠性和安全性。

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application provides a switch control assembly for a vehicle, comprising: a housing unit; an actuating unit, a circuit board unit, the actuating unit comprising a presser configured to be pivotally movable about a first axis and a second axis and to be movable in a height direction, the presser comprising a first guide extending in an axial direction and a second guide extending in the axial direction, the housing unit comprising a stop groove adapted to the first guide and a stop hole adapted to the second guide, so that the presser is prevented from pivoting about the first axis or the second axis in case of being pressed in the height direction by cooperation of the stop groove and the first guide, and the presser is prevented from pivoting about another axis different from the first axis or the second axis and from being pressed in the height direction in case of being pivoted about the first axis or the second axis by cooperation of the stop hole and the second guide. The present application also provides a vehicle comprising the switch control assembly.
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Description

Technical Field

[0001] The present invention relates to a switch control assembly for a vehicle and a vehicle having said switch control assembly. Background Technology

[0002] Currently, as vehicle users increasingly demand greater driving comfort and convenience, the functions of infotainment and driver assistance systems in vehicles are constantly expanding, requiring more and more control devices to manage these functions. However, the limited internal structure of a vehicle necessitates a rational and compact arrangement of these control devices. Simultaneously, to minimize interference with the driver's activities, it is desirable to assist the driver in performing operations correctly without affecting their attention. However, existing technologies often fail to meet these requirements, frequently resulting in unexpected function calls due to driver error, potentially leading to risks to driving safety. Summary of the Invention

[0003] In view of the above-mentioned drawbacks, the technical problem to be solved by the present invention is how to provide a switch control component that is reliable in operation and highly comfortable to use.

[0004] To address the aforementioned technical problem, the present invention provides a switch control assembly for a vehicle, characterized in that the switch control assembly comprises: a housing unit connected to the vehicle body; an actuation unit movably arranged relative to the housing unit; and a circuit board unit disposed within the housing unit, wherein the actuation unit includes a pressing member configured to pivot about a first axis and a second axis perpendicular to each other in the horizontal direction and to move in the height direction, and wherein the pressing member includes a first guide and a second guide extending axially, the housing unit including a stop groove adapted to the first guide and a stop hole adapted to the second guide, thereby preventing the pressing member from pivoting along the first axis or the second axis when pressed down in the height direction by the cooperation of the stop groove with the first guide, and preventing the pressing member from pivoting along an axis different from the first axis or the second axis and from pressing down in the height direction by the cooperation of the stop hole with the second guide.

[0005] According to one embodiment of the present invention, the housing unit includes a stop protrusion arranged adjacent to the stop groove, and the stop protrusion, in cooperation with the first guide member, prevents the pressing member from pressing down in the height direction when it pivots along the first axis or the second axis.

[0006] According to one embodiment of the present invention, the circuit board unit includes a center contact and a plurality of side contacts, wherein the center contact is contacted by pressing down along the height direction by the pressing member, and the side contacts are contacted by pivoting the pressing member around the first axis or the second axis.

[0007] According to one embodiment of the present invention, the first guide member and the second guide member are arranged alternately with a uniform angular spacing in the circumferential direction of the pressing member.

[0008] According to one embodiment of the present invention, the pressing member includes four first guide members and four second guide members.

[0009] According to one embodiment of the present invention, the actuation unit further includes a pressing cover and a light conductor, wherein the pressing member is hollowly constructed to form a central channel, and the light conductor extends from the pressing cover through the central channel to a circuit board unit disposed in the housing unit.

[0010] According to one embodiment of the invention, the press cover is at least partially translucent, wherein the circuit board unit includes a light source, thereby guiding light radiation provided by the light source to the press cover via a light conductor.

[0011] According to one embodiment of the present invention, the actuation unit further includes an internal actuator and an external actuator, wherein the pressing member pivots relative to the housing unit about the first axis or the second axis by means of the internal actuator and the external actuator.

[0012] According to one embodiment of the present invention, the internal actuator includes a receiving channel formed by a circumferential wall, two opposing first protrusions extending radially outward from the circumferential wall, and two opposing internal pivot shafts, wherein the pressing member is shaped to fit into the receiving channel, and wherein the virtual line connecting the two first protrusions is perpendicular to the virtual line connecting the two internal pivot shafts.

[0013] According to one embodiment of the present invention, the external actuator includes a receiving frame, two opposing second protrusions extending radially outward from the receiving frame, an external pivot shaft, and two opposing support holes disposed in the receiving frame, wherein the internal actuator is pivotally supported in the support holes by means of the internal pivot shaft, and the external actuator is pivotally supported in the housing unit by means of the external pivot shaft, and wherein the virtual line connecting the two second protrusions is perpendicular to the virtual line connecting the two external pivot shafts.

[0014] According to one embodiment of the invention, the first axis is defined by a virtual connection between the two external pivot axes, and the second axis is defined by a virtual connection between the two internal pivot axes.

[0015] According to one embodiment of the present invention, the bottom of the first guide member protrudes downward from the internal actuator, and the top of the second guide member protrudes upward from the internal actuator.

[0016] According to one embodiment of the present invention, the housing unit includes a top cover, wherein the stop hole is configured as a through hole formed on the top cover, the stop hole having a apex portion adapted to the second guide member, wherein the pressing member can protrude outward through the stop hole, and when the actuating unit pivots, the second guide member abuts against the apex portion.

[0017] According to one embodiment of the present invention, the housing unit further includes a bottom shell, wherein the stop groove is formed on the bottom shell, and the stop protrusion is arranged on both sides of the stop groove, wherein when the pressing member is pressed down in the height direction, the first guide member is inserted into the stop groove, and when the pressing member is pivoted, the bottom of the first guide member is close to or abuts against the stop protrusion.

[0018] To address the aforementioned technical problem, the present invention also relates to a vehicle comprising the aforementioned switch control assembly. The vehicle may be a plug-in hybrid electric vehicle, a battery electric vehicle, or another type of motor vehicle. The vehicle can implement the functions of the switch control assembly as described above and has the advantages described above.

[0019] The switch control component for vehicles of the present invention can accurately respond to the switch operations of the vehicle operator during driving, thereby improving the reliability and safety of the switch operation process while the vehicle is in operation. Attached Figure Description

[0020] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below. Obviously, the drawings described below only relate to some embodiments of the present invention and are not intended to limit the present invention.

[0021] Figure 1 A perspective view schematically illustrating a switch control assembly according to an embodiment of the present invention is shown.

[0022] Figure 2 schematically shown Figure 1 The diagram shows a 3D view of the switch control assembly after the top cover has been removed.

[0023] Figure 3 schematically shown Figure 2 A cross-sectional view of the switch control component shown;

[0024] Figure 4 An exploded view of the actuation unit is shown schematically.

[0025] Figure 5 A schematic perspective view of the internal actuator is shown.

[0026] Figure 6 A perspective view schematically showing the actuation unit of a switch control assembly according to an embodiment of the present invention in a combined state;

[0027] Figure 7 schematically shown Figure 6 A three-dimensional cross-sectional view of the actuation unit shown;

[0028] Figure 8 schematically shown Figure 6 A top view of the cross-section of the actuation unit shown;

[0029] Figure 9 schematically shown Figure 6 A partially enlarged view of the actuation unit shown;

[0030] Figure 10 A perspective view of a circuit board unit of a switch control assembly according to an embodiment of the present invention is shown schematically.

[0031] Figure 11 A partial cross-sectional view of the actuation unit in a motion state is schematically shown;

[0032] Figure 12 A partial cross-sectional view of the actuation unit in another motion state is schematically shown;

[0033] Figure 13 A partial cross-sectional view of the actuation unit in another motion state is schematically shown;

[0034] Figure 14 A perspective view of the top cover of a switch control assembly according to an embodiment of the present invention is shown schematically.

[0035] Figure 15 A schematic diagram of the stop hole is shown.

[0036] Figure 16 A schematic diagram of the second guide component is shown.

[0037] Figure 17 A schematic perspective view of the bottom shell of the housing unit is shown.

[0038] Figure 18 schematically shown Figure 17 A partial top view of the bottom shell shown;

[0039] Figure 19 A schematic diagram of the actuation unit in its initial state is shown.

[0040] Figure 20 A schematic diagram of the actuation unit in a pressed state is shown.

[0041] Figure 21 A schematic diagram of the actuation unit in a pivoting state is shown.

[0042] List of reference numerals in the attached diagram:

[0043] 11 Top cover 110 outer top wall 112 Stop hole 1121 Main edge 1122 Steps 1123 Top corner 12 bottom shell 120 First Circumferential Wall 121 Central opening 122 Lateral opening 123 Stop groove 123a Stop protrusion 124 Support 2 Actuation unit 20 Pressing element 200 Press column 201 radial protrusion 204 First guide 205 Second guide 21 Press the cap 211 roof wall 212 Cover circumferential wall 22 Internal actuators 22a Accommodation Channel 220 Second week towards the wall 221 First thorax 222 Internal pivot 224 First guide groove 225 Second guide groove 23 External actuator 230 Container Frame 231 Second thorax 232 External pivot 233 Support hole 3 Circuit board unit 30 substrate 31 center contact 32 Lateral contacts 32a First lateral contact 32b Second lateral contact x First horizontal direction y Second horizontal direction z Altitude direction a1 First axis a2 Second axis Detailed Implementation

[0044] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0045] The term "one embodiment" or "implementation" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. In the description of the present invention, it should be understood that the terms "upper," "lower," "left," "right," "top," "bottom," etc., indicating orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, are used only for the convenience of describing the present invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.

[0046] like Figure 1 A perspective view of a switch control assembly according to an embodiment of the present invention is schematically shown. This switch control assembly can be applied to a vehicle interior to adjust and set vehicle functions through various control modes.

[0047] The switch control assembly includes a housing unit 1, an actuation unit 2, and... Figure 1 Circuit board unit 3, which is not specifically shown in the image.

[0048] The housing unit 1 includes at least a top cover 11 and a bottom cover 12, wherein the top cover 11 can be fixedly connected to the bottom cover 12 by means of threaded connection, snap-fit, riveting, etc. Thus, the top cover 11 and the bottom cover 12 define an internal space for at least partially accommodating the actuation unit 2 and the circuit board unit 3.

[0049] The bottom shell 12 of the housing unit 1 can be as follows: Figure 2 The diagram includes a first circumferential wall 120. The actuating unit 2 is movably arranged within this housing unit 1, for example, pivotally supported at a support 124 provided by the first circumferential wall 120. Figure 3 As shown, the circuit board unit 3 is arranged inside the housing unit 1 and is located below the actuation unit 2 in the height direction z.

[0050] By moving the actuation unit 2 relative to the housing unit 1 in multiple directions, different contacts on the circuit board unit 3 arranged in the housing unit 1 can be triggered to achieve the corresponding functions.

[0051] Figure 4 An actuation unit 2 according to one embodiment of the present invention is shown as an example.

[0052] The actuation unit 2 includes a pressing member 20, a pressing cover 21 arranged on top of the pressing member 20, an internal actuator 22 and an external actuator 23 arranged circumferentially along the pressing member 20.

[0053] The pressing member 20 is generally cylindrical in structure, comprising a hollow pressing post 200 and a plurality of guide members circumferentially distributed along the pressing post 200, such as first guide members 204 and second guide members 205 arranged alternately along the circumferential direction. The number of guide members can be adjusted according to the degree of freedom of the actuation unit 2 relative to the housing unit 1. For example, in this embodiment, four first guide members 204 and four second guide members 205 are provided. The first guide members 204 and the second guide members 205 extend axially and are distributed circumferentially at a uniform angular spacing.

[0054] The pressing member 20 also includes a radial protrusion 201 connected to the top of the pressing post 200. The radial protrusion 201 is disc-shaped and has a larger radial dimension than the pressing post 200. The radial protrusion 201 is configured to support and attach the pressing cover 21.

[0055] The press cover 21 includes a top wall 211 and a circumferential wall 212 extending downward from the top wall 211. The top wall 211 is constructed to be transparent or translucent and may be provided with markings or patterns for displaying information to the user. In the assembled state, the top wall 211 covers the top of the press member 20, and the circumferential wall 212 circumferentially surrounds the radial protrusion 201.

[0056] Due to the hollow structure of the pressing member 20, a central channel extending axially is formed. Figure 3The light conductor 24 shown in the diagram passes through the central channel, extending from the bottom of the press cover 21 to the bottom of the press post 200, thereby guiding the light radiation provided by the light source arranged below the actuation unit 2 to the top wall 211 of the cover, thus providing backlighting for the press cover 21. The light source can be part of the circuit board unit 3, for example, several light-emitting elements, such as LED light sources, can be arranged on the circuit board unit 3, which will be mentioned later. The light source can emit light of different colors and / or different intensities and / or different rhythms as needed, depending on the functional selection made by the switch control component, thereby providing a lighting environment that meets the requirements.

[0057] The internal actuator 22 includes a second circumferential wall 220 extending circumferentially to form an axially extending receiving channel 22a. A plurality of guide grooves, such as a first guide groove 224 and a second guide groove 225, are provided on the second circumferential wall 220 to mate with the guide of the pressing member 20. Figure 5 As shown, each first guide groove 224 is formed by the gap between a pair of guide protrusions extending parallel along the axial direction.

[0058] The internal actuator 22 also includes two opposing first protrusions 221 extending radially outward from the second circumferential wall 220 and two opposing internal pivots 222 extending radially outward. The imaginary line connecting the internal pivots 222 should be perpendicular to the imaginary line connecting the first protrusions 221, so that the first protrusions 221 can swing in the most efficient manner when the internal actuator 22 rotates about the internal pivots 222.

[0059] The external actuator 23 includes a circumferentially extending receiving frame 230, two radially outwardly extending opposing second protrusions 231, and two radially outwardly extending opposing external pivot shafts 232. Furthermore, a support hole 233 is provided in the receiving frame 230, through which the internal pivot shaft 222 of the internal actuator 22 can pass, thereby pivotally supporting the internal actuator 22 within the external actuator 23. Similarly, the virtual line connecting the external pivot shafts 232 should be perpendicular to the virtual line connecting the second protrusions 231, so that when the external actuator 23 rotates about the external pivot shafts 232, the second protrusions 231 can oscillate in the most efficient manner.

[0060] In such Figures 6 to 9In the assembled state shown, the pressing member 20 is attached to the pressing cover 21 with its top, and the pressing member 20 is housed in the internal actuator 22 with its lower part conforming to its shape. Each guide member belonging to the pressing member 20 is embedded in a guide slot of the internal actuator 22 to prevent the pressing member 20 from rotating relative to the internal actuator 22 about a longitudinal line extending axially. Thus, movement of the pressing member 20 relative to the internal actuator 22 is only permitted along the axial direction of the internal actuator 22.

[0061] like Figure 7 and Figure 8 As shown, the internal actuator 22 is pivotally supported in the support hole 233 of the receiving frame 230 of the external actuator 23 by means of its internal pivot axis 222. The external actuator 23 is in turn pivotally supported in the support portion 124 of the bottom shell 12 by means of its external pivot axis 232. Thus, the actuation unit 2 can pivot as a whole relative to the housing unit 1 along a first axis a1 extending parallel to the first horizontal direction x as defined by the external pivot axis 232, and the internal actuator 22 of the actuation unit 2, together with the pressing member 20 housed in the internal actuator 22, can pivot relative to the external actuator 23 along a second axis a2 extending parallel to the second horizontal direction y as defined by the internal pivot axis 222. The first axis a1 and the second axis a2 are perpendicular to each other, thereby enabling the actuation unit 2 to pivot about two mutually perpendicular axes.

[0062] The circuit board unit 3 includes a substrate 30 and multiple contacts arranged on the substrate 30. For example, in Figure 10 In the schematic embodiment of the circuit board unit 3, a central contact 31 and four lateral contacts 32 arranged around the central contact 31 are provided on the substrate 30. Specifically, there are two first lateral contacts 32a that are opposite each other on the first axis a1 and two second lateral contacts 32b that are opposite each other on the second axis a2. The central contact 31 is located below the pressing member 20 of the actuation unit 2. The two first lateral contacts 32a are respectively located below the first protrusion 221 of the inner actuator 22, and the two second lateral contacts 32b are respectively located below the second protrusion 231 of the outer actuator 23.

[0063] like Figure 11 As shown, when the actuation unit 2 is subjected to a pressing force along the height direction z, the pressing member 20 moves downward relative to the internal actuation member 22 and the external actuation member 23 along the height direction z, and presses the contact center contact 31 by the bottom of the pressing column 200.

[0064] like Figure 12As shown, when the force applied to the actuating unit 2 has a force component parallel to the first axis a1, the internal actuating member 22, together with the pressing member 20, pivots around the internal pivot axis 222, thereby pressing one of the first lateral contact points 32a by one of the first protruding arms 221.

[0065] like Figure 13 As shown, when the force applied to the actuating unit 2 has a force component parallel to the second axis a2, the entire actuating unit 2 pivots around the external pivot axis 232, thereby using one of the second protrusions 231 of the external actuating member 23 to press and contact one of the second lateral contacts 32b.

[0066] To prevent accidental activation of the switch control components, a corresponding orientation correction device is provided on housing unit 1.

[0067] like Figure 14 As shown, the top cover 11 includes an outer top wall 110 and a stop hole 112 formed in the outer top wall 110. The stop hole 112 has a generally square shape and allows the pressing member 20 of the actuating unit 2 to protrude outward from the inside of the housing unit 1 through the stop hole 112. Figure 15 As shown, the stop hole 112 includes four main edges 1121 and outwardly protruding stepped portions 1122 respectively disposed at both ends of each main edge 1121. The stepped portions 1122 of two adjacent main edges 1121 are adjacent to each other, thereby forming an inwardly protruding apex portion 1123. In this embodiment, the apex portions 1123 are arranged opposite each other along the diagonal direction, thereby having the same angular position as the second guide member 205 of the pressing member 20. Figure 16 As shown, when the actuating unit 2 pivots around the first axis a1 or the second axis a2, the second guide 205 of the pressing member 20 is embedded in one of the stepped portions 1122 of the stop hole 112. In this case, the second guide 205 abuts against the apex portion 1123, thereby preventing the actuating unit 2, which has already pivoted around the first axis a1 or the second axis a2, from pivoting again directly around the perpendicular second axis a2 or the first axis a1.

[0068] The bottom shell 12 also includes a central opening 121 and a plurality of lateral openings 122 arranged around the central opening 121, wherein the central opening 121 is configured to allow a central contact 31 on the circuit board unit 3 to pass through, and the lateral openings 122 allow lateral contacts 32 to pass through. Figure 17In the illustrated embodiment, a central opening 121 and four side openings 122 are correspondingly provided. Furthermore, four stop grooves 123 are provided at the edge of the central opening 121, each stop groove 123 including a pair of parallel stop protrusions 123a that clamp the stop groove 123. These four stop grooves 123 are arranged at a uniform angular spacing and each has the same angular position as the first guide member 204 of the pressing member 20.

[0069] To clearly show the directional correction of the stop groove 123 to the actuation unit 2, Figures 19 to 21 Only a portion of the components are shown schematically.

[0070] Figure 19 The actuation unit 2 is schematically shown in its initial state. The pressing member 20 is in its initial position, neither moving along the height direction z nor pivoting along the horizontal axis a1 or a2. The first guide member 204 of the pressing member 20 is spaced apart from and above the stop groove 123 on the bottom shell 12.

[0071] like Figure 20 As shown, the pressing member 20 moves downward along the height direction z, and the first guide member 204 of the pressing member 20 is inserted into the stop groove 123. At this time, the stop groove 123 forms a stop against the first guide member 204 with its side wall, thereby preventing the pressing member 20 from pivoting directly in the pressed state.

[0072] like Figure 21 As shown, the pressing member 20 pivots along the first axis a1 or the second axis a2. The first guide member 204 of the pressing member is not inserted into the stop groove 123, but rather the bottom of the first guide member 204 is close to the stop protrusion 123a of the stop groove 123. Therefore, the pressing member 20 is not allowed to press down directly after pivoting.

[0073] The switch control component for vehicles of the present invention can accurately respond to the switch operations of the vehicle operator during driving, thereby improving the reliability and safety of the switch operation process while the vehicle is in operation.

[0074] Certain features, structures, or characteristics in one or more embodiments of the present invention may be appropriately combined.

[0075] The above description is illustrative of the invention and should not be construed as limiting it. Although several exemplary embodiments of the invention have been described, those skilled in the art will readily understand that many modifications can be made to the exemplary embodiments without departing from the novel teachings and advantages of the invention. Therefore, all such modifications are intended to be included within the scope of the invention as defined in the claims. It should be understood that the above description is illustrative of the invention, and the invention should not be considered limited to the specific embodiments disclosed, and modifications to the disclosed embodiments and other embodiments are intended to be included within the scope of the invention.

Claims

1. A switch control assembly for a vehicle, characterized in that, The switch control component includes: A housing unit (1) connected to the vehicle body; an actuation unit (2) movably arranged relative to the housing unit (1); and a circuit board unit (3) arranged within the housing unit (1). The actuation unit (2) includes a pressing member (20) configured to pivot about a first axis (a1) and a second axis (a2) that are perpendicular to each other in the horizontal direction and to move in the height direction (z). The pressing member (20) includes a first guide (204) and a second guide (205) extending axially. The housing unit (1) includes a stop groove (123) adapted to the first guide (204) and a stop hole (112) adapted to the second guide (205). Thus, through the cooperation of the stop groove (123) and the first guide (204), the pressing member (20) is prevented from pivoting along the first axis (a1) or the second axis (a2) when pressed down in the height direction (z), and through the cooperation of the stop hole (112) and the second guide (205), the pressing member (20) is prevented from pivoting along the first axis (a1) or the second axis (a2) and from pressing down in the height direction (z).

2. The switch control assembly according to claim 1, characterized in that, The housing unit (1) includes a stop protrusion (123a) arranged adjacent to the stop groove (123). Through the cooperation of the stop protrusion (123a) and the first guide (204), the pressing member (20) is prevented from pressing down in the height direction (z) while the pressing member (20) is pivoting along the first axis (a1) or the second axis (a2).

3. The switch control assembly according to claim 1, characterized in that, The circuit board unit (3) includes a center contact (31) and a plurality of side contacts (32), wherein the center contact (31) is contacted by pressing down along the height direction (z) by means of the pressing member (20), and the side contacts (32) are contacted by pivoting around the first axis (a1) or the second axis (a2) by means of the pressing member (20).

4. The switch control assembly according to claim 1, characterized in that, The first guide (204) and the second guide (205) are arranged alternately at a uniform angular spacing in the circumferential direction of the pressing member (20).

5. The switch control assembly according to claim 4, characterized in that, The pressing element (20) includes four first guide elements (204) and four second guide elements (205).

6. The switch control assembly according to claim 1 or 2, characterized in that, The actuation unit (2) further includes a press cover (21) and a photoconductor (24), wherein the press member (20) is hollowly constructed to form a central channel, and the photoconductor (24) extends from the press cover (21) through the central channel to the circuit board unit (3) arranged in the housing unit (1).

7. The switch control assembly according to claim 6, characterized in that, The press cover (21) is at least partially transparent, wherein the circuit board unit (3) includes a light source, thereby guiding light radiation provided by the light source to the press cover (21) through a light conductor (24).

8. The switch control assembly according to claim 2, characterized in that, The actuation unit (2) further includes an internal actuator (22) and an external actuator (23), wherein the pressing member (20) pivots relative to the housing unit (1) about the first axis (a1) or the second axis (a2) by means of the internal actuator (22) and the external actuator (23).

9. The switch control assembly according to claim 8, characterized in that, The internal actuator (22) includes a receiving channel (22a) formed by a second circumferential wall (220), two opposing first protrusions (221) extending radially outward from the second circumferential wall (220), and two opposing internal pivots (222), wherein the pressing member (20) is shaped to fit into the receiving channel (22a), and wherein the virtual line between the two first protrusions (221) is perpendicular to the virtual line between the two internal pivots (222).

10. The switch control assembly according to claim 9, characterized in that, The external actuator (23) includes a receiving frame (230), two opposing second protrusions (231) extending radially outward from the receiving frame (230), an external pivot shaft (232), and two opposing support holes (233) disposed in the receiving frame (230), wherein the internal actuator (22) is pivotally supported in the support holes (233) by means of the internal pivot shaft (222), and the external actuator (23) is pivotally supported in the housing unit (1) by means of the external pivot shaft (232), and wherein the virtual line between the two second protrusions (231) is perpendicular to the virtual line between the two external pivot shafts (232).

11. The switch control assembly according to claim 10, characterized in that, The first axis (a1) is defined by a virtual line between the two external pivot axes (232), and the second axis (a2) is defined by a virtual line between the two internal pivot axes (222).

12. The switch control assembly according to claim 9, characterized in that, The bottom of the first guide (204) protrudes downward from the internal actuator (22), and the top of the second guide (205) protrudes upward from the internal actuator (22).

13. The switch control assembly according to claim 12, characterized in that, The housing unit (1) includes a top cover (11), wherein the stop hole (112) is configured as a through hole in the top cover (11), the stop hole (112) has a apex portion (1123) adapted to the second guide (205), wherein the pressing member (20) can protrude outward through the stop hole (112) and abut against the apex portion (1123) by means of the second guide (205) when the actuating unit (2) pivots.

14. The switch control assembly according to claim 12, characterized in that, The housing unit (1) further includes a bottom shell (12), wherein the stop groove (123) is formed on the bottom shell (12), and the stop protrusion (123a) is arranged on both sides of the stop groove (123). When the pressing member (20) is pressed down along the height direction (z), the first guide member (204) is inserted into the stop groove (123). When the pressing member (20) pivots, the bottom of the first guide member (204) is close to or abuts against the stop protrusion (123a).

15. A vehicle, characterized in that, The vehicle includes the switch control assembly as described in any one of claims 1 to 14.

Citation Information

Patent Citations

  • Vehicle multi-gear switch assembly, vehicle multi-gear switch and vehicle

    CN115763123A

  • Automobile -used unilateral pendulum -type switch module that sticks up

    CN206059229U