Customized steering device
By adding touch display components and driver components to car buttons, icon display and function switching are enabled, solving the problem of difficulty in distinguishing button functions when multiple people are using the car, and improving driving safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-06
- Publication Date
- 2026-03-20
Smart Images

Figure CN118833047B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of automobile manufacturing, in particular to a self-defined operation device. BACKGROUND
[0002] The existing car keys often optimize user selection through self-defined functions, but the existing keys generally use traditional hardware keys. When multiple vehicle users use the same car, it is difficult to distinguish the function types of the self-defined keys. SUMMARY
[0003] The present application mainly solves the technical problem that users cannot distinguish the function types of the self-defined keys in the prior art, and provides a self-defined operation device that switches icons while switching functions.
[0004] To solve the above technical problems and achieve the above application purposes, the present application provides a self-defined operation device, characterized in that it comprises,
[0005] a fixed frame;
[0006] an operation body arranged in the fixed frame along a first direction, the operation body comprising a circuit board for running the functions of the self-defined operation device;
[0007] a touch display assembly arranged on one side of the fixed frame along a second direction, the touch display assembly being correspondingly arranged with the operation body and connected with the circuit board; wherein,
[0008] the touch display assembly comprises a display area, the display area displays icons, the icons are used to represent the function types of the operation body at present, and the icons correspond one-to-one to the function types of the operation body.
[0009] In an implementable manner,
[0010] the touch display assembly comprises a touch area, the touch area is used to touch and switch the function types of the operation body at present.
[0011] The touch display assembly is located above the fixed frame, the display area is arranged close to the fixed frame, the display area is correspondingly arranged with the operation body, and the touch display assembly is connected with the fixed frame through a connecting structure.
[0012] In an implementable manner, the operation body comprises,
[0013] a driving assembly that can reciprocate under the driving of an external force.
[0014] A transmission assembly is arranged on one side of the driving assembly along the first direction and moves synchronously with the driving assembly;
[0015] A circuit board is arranged on the side of the transmission assembly away from the driving assembly, and a touch sensing device is connected to the circuit board and arranged correspondingly to the transmission assembly. During the reciprocating movement of the driving assembly, the transmission assembly contacts or moves away from the touch sensing device to adjust the current function of the self-defined control device.
[0016] In an embodiment, the touch sensing device is arranged to extend towards the transmission assembly, the driving assembly moves up and down under the driving of an external force, and the transmission assembly is used to switch the up and down movement of the driving assembly into the forward and backward movement relative to the touch sensing device to contact or move away from the touch sensing device.
[0017] In an embodiment, the fixed frame comprises,
[0018] A first fixed frame is arranged with a receiving cavity along the first direction, and a transverse hole is arranged through the first fixed frame along the first direction. The driving assembly is arranged on one side of the first fixed frame along the first direction.
[0019] A front cover plate is arranged between the driving assembly and the first fixed frame, and the first end of the driving assembly extends into the first fixed frame.
[0020] A second fixed frame is arranged on the side of the first fixed frame away from the driving assembly, and the first fixed frame is connected to the second fixed frame.
[0021] In an embodiment, the transmission assembly comprises:
[0022] A rotating frame is arranged in the receiving cavity, and the rotating frame is rotatably connected to the first fixed frame. The rotating frame is arranged with a first position and a second position along the second direction. The first position is in contact with the driving assembly, and the driving assembly is used to drive the rotating frame to rotate.
[0023] A transverse frame is arranged between the rotating frame and the circuit board. The first end of the transverse frame is arranged correspondingly to the touch sensing device, and the second end of the transverse frame passes through the transverse hole and abuts against the second position.
[0024] In an embodiment, the first position is arranged with a swing hole along the first direction. The side of the driving assembly close to the transmission assembly is extended with a swing plate along the first direction, and the swing plate is located in the swing hole.
[0025] In an embodiment, a reset plate is arranged between the circuit board and the transmission assembly, and reset posts are arranged on the reset plate at positions corresponding to the lateral frame, the reset posts are arranged in the first direction, the reset posts are movably connected with the reset plate, the reset posts are made of elastic material, the first ends of the reset posts abut against the lateral frame, and the second ends of the reset posts contact or are away from the touch sensing device.
[0026] In an embodiment, the reset plate is fixed to the side of the circuit board close to the driving assembly, and the second fixed frame is arranged on the side of the circuit board away from the driving assembly to form protection for the circuit board.
[0027] In an embodiment, the rotating frame is provided with rotating shafts on both sides in the third direction, the first fixed frame is provided with rotating holes corresponding to the rotating shafts, and the rotating shafts and the rotating holes are gap-fitted; wherein the rotating frame comprises a rotating state and a reset state.
[0028] The rotating frame is deflected under the driving of the driving assembly to form the rotating state, and the reset posts are compressed, in the rotating state, the lateral frame contacts the touch sensing device;
[0029] The rotating frame switches the rotating state to the reset state through the compression force of the reset posts, in the reset state, the lateral frame is away from the touch sensing device.
[0030] Compared with the prior art, the self-defined control device has the following beneficial effects:
[0031] In specific use, the icon of the sliding touch area is switched to switch the function type of the current control body, and the icon corresponding to the function of the current control body is displayed on the display area, so that the user can clearly distinguish the function of the current self-defined control device, avoid the situation that the user excessively observes the keys during driving, and further ensure driving safety.
[0032] Therefore, the self-defined control device has the characteristics of reasonable structure and convenient use. BRIEF DESCRIPTION OF DRAWINGS
[0033] FIG. 1 is a structural schematic diagram of a self-defined control device according to the present application; Figure 1 FIG. 1 is a structural schematic diagram of a self-defined control device according to the present application;
[0034] FIG. 2 is a structural schematic diagram of a fixed frame and a touch display assembly according to the present application; Figure 2 FIG. 2 is a structural schematic diagram of a fixed frame and a touch display assembly according to the present application;
[0035] Figure 3 FIG. 3 is a structural schematic diagram of a driving assembly according to the present application;
[0036] Figure 1 is a structural schematic diagram of a rotating frame of the present application; Figure 4
[0037] Figure 2 is a front view of the rotating frame of the present application; Figure 5
[0038] Figure 3 is a structural schematic diagram of a first fixing frame of the present application; Figure 6
[0039] Figure 4 is a structural schematic diagram of a horizontal moving frame of the present application; Figure 7
[0040] Figure 5 is a structural schematic diagram of a reset plate of the present application; Figure 8
[0041] Figure 6 is a sectional view of the reset plate of the present application. Figure 9
[0042] Figure 7 is a legend of the drawings;
[0043] Y, first direction; Z, second direction; X, third direction;
[0044] 100, fixing frame;
[0045] 110, first fixing frame; 111, accommodating cavity; 112, rotating hole; 113, horizontal moving hole;
[0046] 120, front cover plate; 121, inlet;
[0047] 130, second fixing frame
[0048] 200, control body;
[0049] 210, driving assembly; 211, swing plate; 212, pressing plate; 213, positioning strip; 214, positioning hole;
[0050] 220, transmission assembly;
[0051] 221, rotating frame; 221-1, rotating shaft; 221-2, first position; 221-3, second position; 221-4, swing hole; 221-5, surrounding plate;
[0052] 222, horizontal moving frame; 222-1, horizontal plate; 222-2, vertical plate;
[0053] 230, circuit board;
[0054] 240, touch sensing device;
[0055] 250, reset plate; 251, reset column; 252, reset hole; 253, connecting ring;
[0056] 300, touch display assembly; 310, display area; 320, touch area;
[0057] 400, connecting structure; 410, limiting side; 420, front limiting block; 430, rear limiting block. DETAILED DESCRIPTION
[0058] In order to make the purpose, features and advantages of the present application more obvious and easy to understand, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0059] The technical problem that users cannot distinguish the function types of the current custom keys exists in the prior art.
[0060] Therefore, the present application provides a custom control device, which comprises,
[0061] A fixing frame;
[0062] A control body arranged in the fixing frame along a first direction, the control body comprising a circuit board for running the functions of the custom control device.
[0063] A touch display assembly arranged on one side of the fixing frame along a second direction, the touch display assembly being correspondingly arranged with the control body and connected with the circuit board; wherein,
[0064] The touch display assembly comprises a display area displaying icons, the icons being used to represent the function types of the current control body, and the icons corresponding one-to-one to the function types of the control body.
[0065] Embodiment:
[0066] Figure Figure 1 Figure 1 is a structural schematic diagram of the custom control device of the present application. Please refer to Figure 1, the present application provides a custom control device, the custom control device of the present application is used together with a touch display screen, and is suitable for terminal products such as automobiles and household appliances. Figure 1 Figure 2 is a structural schematic diagram of the custom control device of the present application. Please refer to Figure 2, the present application provides a custom control device, the custom control device of the present application is used together with a touch display screen, and is suitable for terminal products such as automobiles and household appliances.
[0067] Figure 3 is a structural schematic diagram of the custom control device of the present application. Please refer to Figure 3, the present application provides a custom control device, the custom control device of the present application is used together with a touch display screen, and is suitable for terminal products such as automobiles and household appliances. Figure 1As shown, the first direction Y of this application refers to the width direction of the custom control device, that is, the front-to-back direction of the custom control device. In the custom control device, the drive component 210 is in front of the second fixed frame 130. The second direction Z of this application refers to the height direction of the custom control device, that is, the vertical direction of the custom control device. In the custom control device, the top is at the top and the bottom is at the bottom. The third direction X of this application refers to the length direction of the custom control device, that is, the left-to-right direction of the custom control device.
[0068] Please refer to Figure 1 As shown, the custom control device provided in this application includes, along the second direction Z, a touch display component 300 and a mounting bracket 100. The mounting bracket 100 houses a control body 200, which includes a drive component 210, a rotating bracket 221, a horizontal sliding bracket 222, a reset plate 250, and a circuit board 230 arranged along the first direction Y. A touch sensor 240 is correspondingly disposed on the circuit board 230, and the touch sensor 240 is correspondingly disposed with the horizontal sliding bracket 222. The touch display component 300 is correspondingly disposed with the control body 200, and further, the touch display component 300 is correspondingly disposed with the drive component 210. The touch display component 300 is connected to the circuit board 230. The touch display component 300 can display the current function type of the control body 200, and the touch display component 300 can be used to switch the current function type of the control body 200.
[0069] Please refer to Figure 1 As shown, multiple drive components 210 are provided to form a diversified control system for a customizable control device. The multiple drive components 210 are arranged side-by-side along a third direction X.
[0070] In the present application, the driving assembly 210 can reciprocate under the driving of external force. The external force refers to the up and down movement of the driving assembly 210 by the user through the hand force, so as to realize the up and down linear movement of the driving assembly 210, and further drive the transmission assembly 220. Alternatively, the driving assembly 210 is rotated in the circumferential direction, so as to realize the circumferential rotation movement of the driving assembly 210, and further drive the transmission assembly 220. The reciprocating movement includes not only the up and down linear reciprocating movement, but also the circumferential rotation reciprocating movement. Further, the types of self-defined control devices are divided according to the movement mode, including the plate-shaped self-defined control device for up and down linear movement, and the cylindrical self-defined control device for circumferential rotation movement. The plate-shaped self-defined control device is triggered by the up and down linear reciprocating movement under the action of external force, that is, the plate-shaped self-defined control device makes the transmission assembly 220 contact or move away from the touch sensing device 240 through the up and down linear reciprocating movement of the driving assembly 210. The cylindrical self-defined control device is triggered by the circumferential rotation movement under the action of external force, that is, the cylindrical self-defined control device realizes the transmission assembly 220 approaching or moving away from the touch sensing device 240 through the circumferential rotation movement. In an embodiment, the self-defined control device of the present application adopts the plate-shaped self-defined control device.
[0071] Please refer to the accompanying drawings Figure 1 As shown in the drawings, the transmission assembly 220 is arranged on one side of the driving assembly 210 along the first direction Y, and the transmission assembly 220 moves synchronously with the driving assembly 210. That is, after the driving assembly 210 realizes the up and down linear reciprocating movement or the circumferential rotation reciprocating movement, the driving assembly 210 transmits the movement to the transmission assembly 220, and the transmission assembly 220 synchronously realizes the movement.
[0072] In an embodiment, the self-defined control device of the present application adopts the plate-shaped self-defined control device. At the same time, the transmission assembly 220 can switch the up and down movement of the driving assembly 210 along the second direction Z into the forward and backward movement of the transmission assembly 220 along the first direction Y.
[0073] In an embodiment, the transmission assembly 220 includes a rotating frame 221 and a horizontal moving frame 222, and the rotating frame 221 and the horizontal moving frame 222 are arranged in sequence along the first direction Y, and the rotating frame 221 is arranged closer to the driving assembly 210 than the horizontal moving frame 222. The rotating frame 221 has a first side and a second side formed along the first direction Y, the first side of the rotating frame 221 is connected with the driving assembly 210, and the second side of the rotating frame 221 abuts against the horizontal moving frame 222.
[0074] Please refer to the accompanying drawings Figure 1As shown, the fixing frame 100 includes, in sequence along the first direction Y, a front cover plate 120, a first fixing frame 110, and a second fixing frame 130. The front cover plate 120 is connected to the first fixing frame 110 on the side close to the driving assembly 210, and the surface of the front cover plate 120 is smooth without any protrusions to ensure the appearance of the fixing frame 100. The first fixing frame 110 is connected to the second fixing frame 130 on the side away from the front cover plate 120.
[0075] In an embodiment, the front cover plate 120 is connected to the first fixing frame 110 by buckling. The first fixing frame 110 is connected to the second fixing frame 130 by buckling.
[0076] The rotating frame 221 is arranged on the side of the first fixing frame 110 close to the driving assembly 210 and is connected to the first fixing frame 110 by rotation. The horizontal moving frame 222, the reset plate 250, and the circuit board 230 are arranged between the first fixing frame 110 and the second fixing frame 130 along the first direction. Further, the reset plate 250 is connected to the circuit board 230, and the circuit board 230 is connected to the second fixing frame 130.
[0077] The front cover plate 120 is provided with an inlet 121 along a direction, and one end of the driving assembly 210 is connected to the rotating frame 221 through the inlet 121. In an embodiment, the number of inlets 121 corresponds to the number of driving assemblies 210.
[0078] Please refer to the accompanying drawings Figure 1 As shown, the touch display assembly 300 is arranged on one side of the fixing frame 100 along the second direction. In an embodiment, the touch display assembly 300 is arranged above the fixing frame 100. The relative position relationship between the touch display assembly 300 and the fixing frame 100 depends on the specific application scenario and is not limited to arranging the touch display assembly 300 above the fixing frame 100.
[0079] In an embodiment, the touch display assembly 300 is a touch display screen, so the touch display assembly 300 can realize both touch control function and display function. Based on the above functions, the touch display assembly 300 includes a display area 310, a touch area 320, and other areas.
[0080] Further, the display area 310 displays an icon, which is used to represent the current function category of the control body 200. The function category of the control body 200 includes air conditioner air volume regulation, air conditioner temperature regulation, dangerous alarm light switch, etc. The icon corresponds to the function category of the control body 200 one by one to represent the current function category of the control body 200 through the icon.
[0081] Further, the touch area 320 is used to touch and switch the function state of the control body 200. In the present application, the display area 310 and the touch area 320 are the same area, and the user switches the function type of the control body 200 by sliding the icon up and down or left and right, that is, the icon remaining on the touch display assembly 300 after sliding the icon can represent the function type of the control body 200 at present.
[0082] In an embodiment, the other area is used to display other multimedia information.
[0083] In the specific embodiments of the present application, the driving assembly 210 is provided in plurality. In an embodiment, the touch display assembly 300 is one or more. When the touch display assembly 300 is one, the touch display assembly 300 is a whole screen, the touch display assembly 300 is a long strip structure extending along the third direction X, and the touch display assembly 300 is arranged with a plurality of display areas 310 along the third direction X, the display areas 310 are arranged one by one with the driving assembly 210, and the icons are displayed on the display areas 310, the icons are used to represent the function type of the control body 200 corresponding at present, so as to facilitate the user to clearly distinguish the function of the self-defined control device after the function switching. When the touch display assembly 300 is provided in plurality, each touch display assembly 300 is arranged one by one with the driving assembly 210, and the icons are displayed on the touch display assembly 300, the icons are used to represent the function type of the control body 200 corresponding at present, so as to facilitate the user to clearly distinguish the function of the self-defined control device after the function switching.
[0084] Please refer to the accompanying drawings Figure 1 As shown in the drawings, the circuit board 230 is arranged on the side of the transmission assembly 220 away from the driving assembly 210, the circuit board 230 is connected with the touch display assembly 300, so as to switch the function type recorded in the circuit board 230. The touch sensing device 240 is arranged on the circuit board 230, the touch sensing device 240 is arranged corresponding to the transmission assembly 220, the transmission assembly 220 is arranged corresponding to the driving assembly 210, and the driving assembly 210 is arranged corresponding to the display assembly.
[0085] In an embodiment, the touch sensing device 240 is arranged extending towards the transmission assembly 220, the transmission assembly 220 is used to switch the up and down movement of the driving assembly 210 into the front and back movement relative to the touch sensing device 240, so as to contact or move away from the touch sensing device 240. Further, the transmission assembly 220 contacts or moves away from the touch sensing device 240, so as to realize the function state adjustment of the control body 200. If the function type of the control body 200 at present refers to the air conditioner air volume control, the function state adjustment of the control body 200 refers to adjusting the size of the air conditioner air volume.
[0086] In an embodiment, the touch sensing device 240 is a micro switch or a position sensor.
[0087] In an embodiment, the circuit board 230 is connected with a data module, which is used to record function information and icon information.
[0088] In an embodiment, the second fixing frame 130 is provided with a connecting structure 400 at an end away from the driving assembly 210, the connecting structure 400 extends along the first direction Y, and the self-defined control device is connected with other components through the connecting structure 400.
[0089] In an embodiment, the function types of the control body 200 include air conditioner air volume control, air conditioner temperature control, and dangerous alarm light switch, etc. If air conditioner air volume control is needed, two rows of touch sensing devices 240 are arranged at the corresponding positions of the same rotating frame 221, and two rows of transverse frames 222 are arranged at the same time, so as to ensure that the driving assembly 210 can trigger the touch sensing device 240 when it is pressed downward, and the driving assembly 210 can also trigger the touch sensing device 240 when it is pulled upward, so as to realize bidirectional control of air conditioner air volume, that is, the air conditioner air volume can be increased or decreased.
[0090] Please refer to the accompanying Figure 1 The self-defined control device further includes a reset plate 250, which is located between the circuit board 230 and the transmission assembly 220, and further, the reset plate 250 is located between the transverse frame 222 and the circuit board 230. The reset plate 250 includes a first side and a second side along the first direction Y, the first side of the reset plate 250 abuts against the transverse frame 222, and the second side of the reset plate 250 is away from or contacts the circuit board 230, so as to realize the on-off of the touch sensing device 240 on the circuit board 230.
[0091] The rotating frame 221 includes a rotating state and a reset state.
[0092] The rotating frame 221 is deflected under the driving of the driving assembly 210, so as to form the rotating state. In the rotating state, the rotating frame 221 drives the transverse frame 222 to move to one side of the reset plate 250, after contacting the reset frame, the reset plate 250 is compressed, and the reset plate 250 is driven to move to one side of the touch sensing device 240, so as to realize the contact between the reset plate 250 and the touch sensing device 240, and indirectly realize the contact between the transverse frame 222 and the touch sensing device 240.
[0093] After the driving assembly 210 cancels the pressing, the rotating assembly forms the reset state. In the reset state, the rotating frame 221 switches the rotating state to the reset state through the compression force of the reset plate 250, and in the reset state, the transverse frame 222 is away from the touch sensing device 240.
[0094] The accompanyingFigure 2 is a structural schematic diagram between the fixed frame and the touch display assembly of the present application. The touch display assembly 300 of the present application can be connected with the fixed frame 100 through the connecting structure, or the touch display assembly 300 can be directly connected with the fixed frame 100. In an embodiment, when the touch display assembly 300 is directly connected with the fixed frame 100, the outer frame of the touch display assembly 300 can be integrally formed with the fixed frame 100 or fastened and connected with the fixed frame 100 through bolts or the like.
[0095] Please refer to the accompanying drawings Figure 2 , which shows the assembly relationship between the fixed frame 100 and the touch display assembly 300 when the touch display assembly 300 is connected with the fixed frame 100 through the connecting mechanism. The touch display assembly 300 is arranged on one side of the fixed frame 100 along the second direction Z, and further, the touch display assembly 300 is installed above the fixed frame 100. The touch display assembly 300 is connected with the fixed frame 100 through the connecting mechanism.
[0096] The fixed frame 100 comprises a front cover plate 120, a first fixed frame 110 and a second fixed frame 130 arranged in sequence along the first direction Y, the front cover plate 120 is connected with the first fixed frame 110, and the first fixed frame 110 is connected with the second fixed frame 130. The connecting structure 400 comprises a limiting side edge 410 arranged along the third direction X, and further comprises a front limiting block 420 and a rear limiting block 430 arranged in sequence along the first direction Y.
[0097] The front limiting block 420 is arranged on the upper surface of the first fixed frame 110, and the rear limiting block 430 is arranged on the upper surface of the second fixed frame 130. Further, the front limiting block 420 is arranged in plurality on the surface of the first fixed frame 110 along the third direction X. Further, the rear limiting block 430 is arranged in plurality on the surface of the second fixed frame 130 along the third direction X.
[0098] The limiting side edge 410 is arranged on both sides of the first fixed frame 110 along the third direction X. After the first fixed frame 110 is connected with the second fixed frame 130, the limiting side edge 410, the front limiting block 420 and the rear limiting block 430 jointly form a limiting space, and when the touch display assembly 300 is arranged in the limiting space, the limiting side edge 410, the front limiting block 420 and the rear limiting block 430 jointly form a clamping to the touch display assembly 300. In an embodiment, the clamping position of the touch display assembly 300 is on the side of the touch display assembly 300 where the display area 310 and the touch area 320 are arranged.
[0099] The accompanying drawings Figure 3is a structural schematic diagram of a driving assembly of the present application. Please refer to the drawings, in the specific embodiment of the present application, the driving assembly 210 is a plate-like structure moving up and down linearly, the up and down linear motion here is relative to the driving assembly 210 itself.
[0100] The driving assembly 210 comprises a pressing plate 212 and a swing plate 211 arranged in sequence along the first direction Y, and the pressing plate 212 is connected to the swing plate 211 away from the transmission assembly 220. The upper side of the pressing plate 212 is provided with anti-skid lines, which can increase the touch feeling and avoid the slip between the finger and the pressing plate 212. The swing plate 211 is arranged along the first direction Y, and the swing plate 211 is provided with a positioning strip 213 along the first direction Y. In an embodiment, the positioning strip 213 is arranged on both sides of the swing plate 211 along the second direction Z. The swing plate 211 is provided with a positioning hole 214 along the second direction Z. The driving assembly 210 is connected with the rotating frame through the positioning strip 213 and the positioning hole 214, so as to ensure that the rotating frame rotates synchronously during the up and down movement of the driving assembly 210.
[0101] The driving assembly 210 is connected with the rotating frame through the positioning strip 213 and the positioning hole 214, so as to ensure that the rotating frame rotates synchronously during the up and down movement of the driving assembly 210. Figure 4 is a structural schematic diagram of a rotating frame of the present application. The driving assembly 210 is connected with the rotating frame through the positioning strip 213 and the positioning hole 214, so as to ensure that the rotating frame rotates synchronously during the up and down movement of the driving assembly 210. Figure 5 is a front view of the rotating frame of the present application. Please refer to the drawings, the driving assembly 210 is connected with the rotating frame through the positioning strip 213 and the positioning hole 214, so as to ensure that the rotating frame rotates synchronously during the up and down movement of the driving assembly 210. Figure 4 and the driving assembly 210 is connected with the rotating frame through the positioning strip 213 and the positioning hole 214, so as to ensure that the rotating frame rotates synchronously during the up and down movement of the driving assembly 210. Figure 5 The transmission assembly of the present application comprises a rotating frame 221, and the rotating frame 221 is provided with rotating shafts 221-1 on both sides along the third direction X, and the rotating frame 221 is rotatably connected with the first fixed frame 110 through the rotating shafts 221-1. In an embodiment, the two rotating shafts 221-1 are coaxially arranged.
[0102] Please refer to the drawings, the driving assembly 210 is connected with the rotating frame through the positioning strip 213 and the positioning hole 214, so as to ensure that the rotating frame rotates synchronously during the up and down movement of the driving assembly 210. Figure 4 and the driving assembly 210 is connected with the rotating frame through the positioning strip 213 and the positioning hole 214, so as to ensure that the rotating frame rotates synchronously during the up and down movement of the driving assembly 210. Figure 5 The rotating frame 221 is provided with a first position 221-2 and a second position 221-3 along the second direction Z, and the first position 221-2 and the second position 221-3 are arranged at intervals. The swing plate is located in the swing hole 221-4, and the swing hole 221-4 is provided with a fitting hole matched with the positioning strip, and the swing hole 221-4 is provided with a fitting strip matched with the positioning hole 214. Through the cooperation between the positioning strip and the fitting hole and the swing hole 221-4 and the positioning strip, the limiting after the assembly between the swing plate and the swing hole 221-4 is realized, so as to avoid the disconnection between the swing plate 211 and the swing hole 221-4 after the swing plate is assembled into the swing hole 221-4, and further enhance the working stability of the self-defined control device.
[0103] In an embodiment, the swing hole 221-4 penetrates the rotating frame along the first direction Y.
[0104] In an embodiment, the rotating frame is provided with a surrounding plate 221-5 on both sides along the first direction Y, the surrounding plate 221-5 is provided corresponding to the swing hole 221-4, the swing hole 221-4 extends along both sides of the first direction Y and penetrates the surrounding plate 221-5. When the swing plate is located in the swing hole 221-4, the existence of the surrounding plate 221-5 increases the contact area between the swing plate and the rotating frame 221, so as to facilitate the swing plate to drive the rotation of the rotating frame 221.
[0105] The second position 221-3 is a flat plate type structure, during the driving of the rotating frame 221 by the driving assembly, the second position 221-3 is synchronously rotated towards the transverse frame and drives the transverse movement of the transverse frame.
[0106] Attached Figure 6 is a structural schematic diagram of the first fixed frame of the application. Please refer to the attached Figure 5 , the fixed frame of the application includes a first fixed frame 110, corresponding to a plurality of driving assemblies, the first fixed frame 110 in the application is provided with a plurality of first fixed frames 110 along the third direction X, and the plurality of first fixed frames 110 are connected in sequence to form a first fixed frame group as shown in the attached Figure 6 .
[0107] In an embodiment, the first fixed frame group of the application is formed at one time.
[0108] The first fixed frame 110 is provided with a containing cavity 111 along the first direction Y, the containing cavity 111 is provided with an opening towards the rotating frame side, the containing cavity 111 is closed towards the transverse frame side, and the closed side of the first fixed frame 110 provides a basis for forming a transverse hole 113. The rotating hole 112 is provided through the both sides of the first fixed frame 110 along the third direction X, and the rotating hole 112 is communicated with the containing cavity 111. The transverse hole 113 is provided through the first fixed frame 110 along the first direction Y, and the transverse hole 113 is communicated with the containing cavity 111. The rotating frame enters the containing cavity 111 through the opening, and the rotating frame is rotationally connected with the rotating hole 112 through the rotating shaft, that is, the rotating shaft is clearance fitted with the rotating hole 112. The reset structure can be provided between the rotating frame and the rotating hole 112 to realize the reset of the rotating frame after rotation.
[0109] In an embodiment, the reset structure is a torsion spring. One end of the transverse frame penetrates the transverse hole 113 and abuts against the second position.
[0110] Attached Figure 7 is a structural schematic diagram of the transverse frame of the application. Please refer to the attached Figure 7As shown, the horizontal moving frame 222 consists of a horizontal plate 222-1 and a vertical plate 222-2. The first end of the horizontal plate 222-1 abuts against the rotating frame 221, and the second end of the horizontal plate 222-1 is connected to the vertical plate 222-2. The vertical plate 222-2 abuts against the reset plate. The horizontal moving frame 222 is used to switch the rotational motion of the rotating frame 221 into a horizontal moving motion and transmit the horizontal moving motion to the reset plate, so as to realize the lateral movement of the reset plate relative to the circuit board along the first direction Y. The touch sensing device is disposed on the surface of the circuit board along the first direction Y. If the touch sensing device is triggered by moving it up and down along the second direction Z, its triggering accuracy will be reduced. If the rotational motion of the rotating frame is switched to the lateral movement of the horizontal moving frame along the first direction Y, the touch sensing device is pressed against along the first direction Y when triggered, thereby improving the accuracy of triggering the touch sensing device.
[0111] In one embodiment, the horizontal plate 222-1 is arranged along a first direction Y, and the vertical plate 222-2 is arranged along a second direction Z. In another embodiment, the horizontal plate 222-1 and the vertical plate 222-2 are arranged perpendicularly to each other. A reinforcing rib is provided between the horizontal plate 222-1 and the vertical plate 222-2, and the reinforcing rib is connected to the horizontal plate 222-1 and the vertical plate 222-2 respectively to enhance the connection strength between the horizontal plate 222-1 and the vertical plate 222-2.
[0112] Appendix Figure 8 This is a schematic diagram of one structure of the reset plate 250 of this application. (Attached) Figure 9 This is a cross-sectional view of the reset plate 2509 of this application. Please refer to the attached diagram. Figure 8 and appendix Figure 9 As shown, the custom control device of this application also includes a reset plate 250, which is located between the circuit board and the transmission assembly. The reset plate 250 is used to provide driving force after the drive assembly is pressed down, so as to reset the drive assembly.
[0113] A reset hole 252 is provided at the corresponding position of the reset plate 250 and the transverse frame, and a reset hole 252 is further provided at the corresponding position of the vertical plate and the transverse frame. A reset post 251 is provided in the reset hole 252, and the reset post 251 is flexibly connected to the reset hole 252 through a connecting ring 253, so that the reset post 251 can move along the first direction Y within the reset hole 252. The reset post 251 is arranged along the first direction Y, the first end of the reset post 251 always abuts against the transverse frame, and the second end of the reset post 251 contacts or moves away from the touch sensing device.
[0114] In one embodiment, the reset post 251, reset plate 250, and connecting ring 253 are all made of an elastic material to provide a restoring force for the drive assembly. Further, the reset post 251, reset plate 250, and connecting ring 253 are all made of rubber. Depending on the positional relationship of the touch sensing device, the reset post 251 can be arranged in a single row or multiple rows.
[0115] Please refer to the accompanying Figure 1 to the accompanying Figure 9 As shown, in specific use, the user presses the driving assembly 210 for a certain duration, the driving assembly 210 synchronously drives the rotating frame 221 to rotate downward, the second position 221-3 of the rotating frame 221 rotates toward the horizontal moving frame 222 while the rotating frame 221 rotates downward, and drives the horizontal moving frame 222 to move horizontally toward the reset column 251, at this time, the reset column 251 forms a compression state and stores the reset force of the driving assembly 210, then the reset column 251 moves horizontally toward the touch sensing device 240 to realize the triggering of the touch sensing device 240, so as to adjust the state of the self-defined control device. When the user cancels the pressing of the driving assembly 210, due to the compression force of the reset column 251, the reset column 251 simultaneously drives the horizontal moving frame 222 to move toward one side of the rotating frame 221, and the second position 221-3 of the rotating frame 221 simultaneously moves toward one side of the driving assembly 210, finally realizes the upward rebound of the driving assembly 210 to the original position, and prepares for the next pressing.
[0116] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. Moreover, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples. In addition, the person skilled in the art can combine and combine the different embodiments or examples described in the present specification and the features of the different embodiments or examples without contradiction.
[0117] In addition, the terms "first", "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise specifically limited.
[0118] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical scope disclosed in the present application, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A customizable control device, characterized in that, include, Fixture; A control body is arranged in the fixed frame along a first direction. The control body includes a circuit board for operating the functions of the custom control device. A touch display component is disposed on one side of the mounting bracket along a second direction. The touch display component is correspondingly disposed with the control body and connected to the circuit board. The touch display component includes a display area, which displays icons. The icons are used to indicate the current function type of the control body, and the icons correspond one-to-one with the function type of the control body. The touch display component includes a touch area, which is used to switch the current function type of the control body via touch. The touch display component is located above the mounting bracket, the display area is positioned close to the mounting bracket, the display area corresponds to the control body, and the touch display component is connected to the mounting bracket via a connecting structure. The touch area is used to switch the current function state of the control unit. The display area and the touch area are the same area. Users can switch the function of the control unit by sliding the icons up and down or left and right. That is, the icon left on the touch display component after sliding the icon can indicate the function of the control unit at that time.
2. The custom control device according to claim 1, characterized in that, The control body includes, A drive component that can reciprocate under the drive of an external force; A transmission component is disposed on one side of the drive component along the first direction, and the transmission component moves synchronously with the drive component; A circuit board is disposed on the side of the transmission component away from the drive component. A touch sensing device is connected to the circuit board and is correspondingly disposed with the transmission component. During the reciprocating motion of the drive component, the transmission component contacts or moves away from the touch sensing device to adjust the current function of the custom control device.
3. The custom control device according to claim 2, characterized in that, The touch sensing device extends toward the transmission assembly, and the drive assembly moves up and down under the drive of an external force. The transmission assembly is used to switch the up and down movement of the drive assembly into a back and forth movement relative to the touch sensing device, so as to contact or move away from the touch sensing device.
4. The custom control device according to claim 2, characterized in that, The fixing frame includes, A first fixed frame, wherein a receiving cavity is provided inside the first fixed frame along a first direction, and a transverse moving hole is provided through the first fixed frame along the first direction, and the driving component is located on one side of the first fixed frame along the first direction; A front cover plate is disposed between the drive assembly and the first fixed frame, and a first end of the drive assembly extends into the first fixed frame. A second fixing bracket is disposed on the side of the first fixing bracket away from the drive assembly, and the first fixing bracket is connected to the second fixing bracket.
5. The custom control device according to claim 4, characterized in that, The transmission assembly includes: A rotating frame is disposed in the receiving cavity and is rotatably connected to the first fixed frame. The rotating frame has a first position and a second position along a second direction. The first position is in contact with the driving assembly, and the driving assembly is used to drive the rotating frame to rotate. A transverse frame is disposed between the rotating frame and the circuit board. The first end of the transverse frame is correspondingly disposed with the touch sensing device, and the second end of the transverse frame passes through the transverse hole and abuts against the second position.
6. The custom control device according to claim 5, characterized in that, The first position is provided with a swing hole along the first direction, and the drive component extends a swing plate along the first direction on the side near the transmission component, with the swing plate located inside the swing hole.
7. The custom control device according to claim 5, characterized in that, A reset plate is provided between the circuit board and the transmission assembly. A reset post is provided on the reset plate at the corresponding position of the transverse frame. The reset post is arranged along the first direction and is movably connected to the reset plate. The reset post is made of elastic material. The first end of the reset post abuts against the transverse frame, and the second end of the reset post contacts or moves away from the touch sensing device.
8. The custom control device according to claim 7, characterized in that, The reset plate is fixed to the side of the circuit board near the drive assembly, and the second fixing bracket is disposed on the side of the circuit board away from the drive assembly to form protection for the circuit board.
9. The custom control device according to claim 7, characterized in that, The rotating frame has rotating shafts on both sides in the third direction, and the first fixed frame has rotating holes corresponding to the rotating shafts, with a clearance fit between the rotating shafts and the rotating holes; wherein, the rotating frame includes a rotating state and a reset state. The rotating frame deflects under the drive of the drive assembly to form the rotating state, and the reset column is compressed. In the rotating state, the transverse frame comes into contact with the touch sensing device. The rotating frame switches the rotation state to the reset state by the compressive force of the reset column. In the reset state, the horizontal moving frame moves away from the touch sensing device.
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