Interaction console of tool vehicle for riding instead of walk and tool vehicle for riding instead of walk
By integrating the interactive console of lighting components and sound modules on the transportation tool truck, the problem that operators cannot directly understand the vehicle status is solved, human-computer interaction is realized, and user experience is improved.
Patent Information
- Application Number
- CN202421521426.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-28
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-06-28
AI Technical Summary
The existing transportation vehicle lacks the interaction between operators and vehicles during use, resulting in operational errors and affecting the user experience.
Design an interactive console for mobility tool trucks, integrating lighting components and operating handles, triggering different luminous modes through operations in different directions, displaying the vehicle status, and combining buttons, display screens and sound modules to realize human-computer interaction.
Through lighting and sound prompts, users can understand the status of the vehicle in real time, reduce operational errors, and improve user experience.
Smart Images

Figure CN223092338U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of means of transport, in particular to an interactive control console of a means of transport and the means of transport. Background Art
[0002] Mobility vehicles are tools that assist people in moving around, including but not limited to wheelchairs, rollators, trolleys and strollers, which can meet the needs of different people.
[0003] During the use of current mobility scooters, there is a lack of interaction between the operator and the vehicle, that is, during the operation of the vehicle, the operator cannot directly know whether the mobility scooter is in a corresponding state, which easily leads to operational errors and affects the user experience.
[0004] Therefore, how to provide an interactive control console for a transportation tool vehicle to achieve human-computer interaction and improve user experience is a technical problem that needs to be solved urgently by technical personnel of this field. Utility Model Content
[0005] In view of this, the utility model provides an interactive control console of a vehicle for replacing mobility, so as to realize human-machine interaction and improve user experience. In addition, the utility model also provides a vehicle for replacing mobility with the interactive control console.
[0006] In order to achieve the above purpose, the utility model provides the following technical solutions:
[0007] An interactive control console for a transportation tool vehicle, comprising:
[0008] A housing assembly, wherein the housing assembly is mounted on a main unit of the mobility scooter via a mounting seat;
[0009] An operating handle, which is integrated on the housing assembly and is used to control the operating state of the mobility scooter;
[0010] A light assembly is installed on the shell assembly, the light assembly is connected to the operating handle, and the light assembly has at least one light emitting mode corresponding to the operating direction of the handle.
[0011] Preferably, the above-mentioned interactive console further includes:
[0012] A button assembly, the button assembly is mounted on the housing assembly, the button assembly includes a speed control button and a power button, the speed control button is used to adjust the travel speed of the mobility tool vehicle, the power button is used to start and stop the power supply, and the power supply is connected to the light assembly;
[0013] A display screen, the display screen includes at least one of a display module for vehicle status and information and a power display module, the display module for vehicle status and information is used to display the vehicle speed value or the fault code of the mobility scooter, and the power display module is used to display the power information of the power supply;
[0014] A main control board, the speed control key and the display module for vehicle status and information are connected through the main control board, and the power key and the power display module are connected through the main control board.
[0015] Preferably, in the above-mentioned interactive console, the button assembly further includes: an operation mode selection key, the operation mode selection key is connected to the main control board, and the operation mode selection key is used for switching or selecting between multiple operation modes;
[0016] The display screen further includes: an assisted walking mode display module, the assisted walking mode display module is connected to the main control board, and the main control board controls the assisted walking mode display module to turn on and off.
[0017] Preferably, in the above-mentioned interactive console, the operation mode includes at least one of a riding mode and a pushing mode and an assisted walking mode. When the main control board detects that the operation mode selection key is triggered, the mobility scooter is in the assisted walking mode.
[0018] Preferably, in the above-mentioned interactive console, the operation mode selection key is connected to the lighting component through the main control board. The main control board obtains a signal that the operation mode selection key is not triggered, and based on the non-triggered signal, the lighting component is in the first lighting mode;
[0019] The main control board obtains a signal that the operation mode selection key is triggered, and based on the triggered signal, the lighting component is in the second lighting mode.
[0020] Preferably, in the above-mentioned interactive console, the display screen further includes:
[0021] A seat detection display module, the seat detection display module is connected to the seat detection sensor of the mobility scooter through the main control board, and when the seat detection sensor detects a signal that the pressure and / or light at the seat meet the requirements, the main control board controls the seat detection display module to be in a display state.
[0022] Preferably, in the above-mentioned interactive console, the lighting component includes:
[0023] A lamp board, the lamp board is installed inside the housing assembly, and a plurality of lamp bead groups are arranged along the circumference of the lamp board;
[0024] An annular lamp shade, one end of the annular lamp shade is fixed to the lamp board, and the other end of the annular lamp shade is exposed outside the housing assembly.
[0025] Preferably, in the above-mentioned interactive console, the lamp bead group includes:
[0026] White light beads, orange light beads and blue light beads.
[0027] Preferably, the above-mentioned interactive console further comprises: a sound module, wherein the sound module is installed in the housing assembly;
[0028] The sound module is connected to the button of the button assembly, and when the button of the button assembly is triggered, the sound module can emit a corresponding reminder sound.
[0029] Preferably, in the above-mentioned interactive console, the sound module includes:
[0030] A speaker, which can emit sound and is connected to the button assembly;
[0031] A speaker bracket, through which the speaker is fixed inside the housing assembly;
[0032] A sound channel is provided on the shell assembly and is used to direct the sound emitted by the speaker to the outside.
[0033] A mobility scooter comprises an armrest and an interactive console mounted on the armrest, wherein the interactive console is any one of the interactive consoles described above.
[0034] Preferably, in the above-mentioned mobility scooter, the armrest comprises a left armrest and a right armrest, both the left armrest and the right armrest have a mounting position, and the interactive console is detachably mounted on the mounting position of the left armrest or the mounting position of the right armrest.
[0035] Preferably, in the above-mentioned mobility scooter, the interactive control console is connected to the armrest via a threaded member.
[0036] An interactive control console for a mobility tool vehicle is disclosed in an embodiment of the utility model. By adding a light component and connecting the light component to an operating handle, when the operating handle is pushed in different directions, the light component is in a corresponding light-emitting mode to display the corresponding operating status of the mobility tool vehicle. In this way, when a user operates the mobility tool vehicle, the status of the mobility tool vehicle can be displayed through the light, thereby realizing human-computer interaction and improving user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0037] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0038] Figure 1 Structural schematic diagram of the interactive console disclosed in the embodiments of the present invention;
[0039] Figure 2 Structural schematic diagram of the interactive console in another direction disclosed in the embodiments of the present invention;
[0040] Figure 3 Front view of the interactive console disclosed in the embodiments of the present invention;
[0041] Figure 4 For Figure 3 Cross-sectional view in the A-A direction in;
[0042] Figure 5 Partial structure split diagram of the interactive console disclosed in the embodiments of the present invention;
[0043] Figure 6 Front view of the lamp board of the interactive console disclosed in the embodiments of the present invention;
[0044] Figure 7 Structural schematic diagram of the installation of the interactive console and the armrest in the embodiments of the present invention;
[0045] 1 is a control handle, 2 is a housing assembly, 3 is a display screen, 4 is a button assembly, 5 is a lighting assembly, 6 is a charging module, 7 is a mounting seat, 8 is a main control board, 9 is a sound module;
[0046] 11 is an operating head, 12 is a dust cover, 21 is a cover plate, 22 is an upper shell, 23 is a lower shell, 31 is a power display module, 32 is a display module for vehicle status and information, 33 is an assisted walking mode display module, 34 is a seat detection display module, 41 is a running mode selection key, 42 is a horn key, 43 is a speed increase button, 44 is a speed decrease button, 45 is a power button, 51 is a lamp board, 52 is an annular lamp cover, 511 is a lamp bead group, 61 is a charging port, 62 is a protective cover, 71 is a first mounting hole, 72 is a second mounting hole, 91 is a horn, 92 is a sound channel, 93 is a horn bracket;
[0047] 100 is an interactive console, 101 is a left armrest, 102 is a right armrest. Detailed implementation manners
[0048] The present utility model discloses an interactive console for a mobility vehicle, which realizes human-machine interaction and improves the user experience. In addition, the present utility model also discloses a mobility vehicle having the above interactive console.
[0049] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.
[0050] Hereinafter, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features.
[0051] A mobility vehicle is a mobility aid for assisting people to move, including but not limited to wheelchair, walking aid, handcart, and baby carriage, which can meet the usage needs of different people.
[0052] During the use of current mobility vehicles, there is a lack of interaction between the operator and the vehicle, that is, during the operation of the vehicle by the operator, it is impossible to directly know whether the mobility vehicle is in the corresponding state, which is prone to operation errors and affects the user experience.
[0053] It should be noted that the state of the mobility vehicle includes the operation mode and operation state of the mobility vehicle. Among them, the operation mode includes a riding mode, a power-assisted pushing mode, and a rehabilitation walking mode; the operation state includes but is not limited to forward, backward, left turn, and right turn. Among them, the walking mode is also called the hand-pushing mode.
[0054] Based on this, as Figures 1 to 6 shown in the disclosed embodiments, the mobility vehicle is integrated with an interactive console. By operating the interactive console by the operator, the usage state of the mobility vehicle is changed, and the mobility vehicle displays its state through lights and / or sounds.
[0055] As Figures 1 to 2 shown, the interactive console of the mobility vehicle in the present application includes: a housing assembly 2, a mounting seat 7, an operation handle 1, a display screen 3, a button assembly 4, a lighting assembly 5, a charging module 6, and a main control board 8.
[0056] Among them, the housing assembly 2 includes a cover plate 21, an upper shell 22, and a lower shell 23. Among them, the housing assembly 2 forms a sealed accommodation space.
[0057] The display screen 3 and the button assembly 4 are arranged on the cover plate 21 to facilitate operation and viewing by the operator. The operating handle 1 is exposed outside the cover plate 21.
[0058] The operating handle 1 includes an operating head 11 and a dust cover 12 that are exposed outside the cover plate 21. Among them, by controlling the operating head 11, the state of the mobility scooter can be adjusted.
[0059] The manner in which the operating handle 1 changes the state of the mobility scooter will not be specifically described here. For reference, see the operating methods of the operating handles of existing known mobility scooters.
[0060] The dust cover 12 is connected between the operating head 11 and the cover plate 21 and is used to seal the cover plate 21. The dust cover 12 includes, but is not limited to, a leather material.
[0061] Among them, when the user rides the mobility scooter, that is, when the user sits on the main body of the mobility scooter, the operating handle 1 is close to the user to facilitate the operator to control the operating handle 1; the display screen 3 is located between the operating handle 1 and the button assembly 4, and the button assembly 4 is far from the user.
[0062] In some embodiments, the button assembly 4 includes, but is not limited to, a running mode selection key 41, a speed increase button 43, a speed decrease button 44, and a power button 45.
[0063] The operator can change the traveling speed of the mobility scooter by operating the speed increase button 43 and the speed decrease button 44. In some embodiments, the mobility scooter has a speed limit, that is, the maximum traveling speed of the mobility scooter is limited. In some embodiments, operating the speed increase button 43 and the speed decrease button 44 increases or decreases the speed by 5 km / h. The speed increase button 43 and the speed decrease button 44 are used as speed control keys, and their shapes are not limited.
[0064] In some embodiments, the maximum traveling speed of the mobility scooter is limited to 15 km / h.
[0065] The power button 45 controls whether the entire mobility scooter is powered on or off to facilitate the assisted driving of the mobility scooter. After starting the power, the mobility scooter is in the riding mode. After triggering the running mode selection key 41, the running mode of the mobility scooter can be switched. Exemplarily, when the running mode selection key 41 is pressed once, the mobility scooter switches to the thrust-assisted walking mode; when the running mode selection key 41 is pressed again, the mobility scooter switches to the rehabilitation-assisted walking mode.
[0066] In the riding mode, the operator can control the operating handle 1 to make the mobility scooter move forward, backward, turn left, and turn right.
[0067] It should be noted that the operation mode selection key 41 is a key for switching the operation mode of the walking vehicle. The walking vehicle is internally provided with a rechargeable power source, which can be understood as a rechargeable battery.
[0068] In some embodiments, the power key 45 can also control the power supply of the lighting component 5. It can be considered that the power key 45 controls the power-on of the entire walking vehicle. The above lighting component 5 is arranged around the housing component 2, and the lighting component 5 has different light-emitting modes, and the light-emitting modes include at least one of different light brightness, different light colors, different light presentation effects, and different frequencies of flashing. Exemplarily, when the operating handle 1 moves forward (the front is the direction in which the walking vehicle moves forward), the lighting component 5 can be in a light-emitting mode of flashing with a first color and a first frequency.
[0069] In some embodiments, the lighting component 5 is connected to the operating handle 1, and the connection manner between the lighting component 5 and the operating handle 1 includes but is not limited to being connected by a circuit or a touch switch. Exemplarily, different touch switches are triggered during the movement of the operating handle 1, so that the lighting component 5 presents corresponding light-emitting modes.
[0070] In this application, different light-emitting modes of the lighting component 5 are described by taking different light colors as an example. The lighting component 5 in this application is connected to the operation mode selection key 41. Specifically, it can be connected through a switch. When the operation mode selection key 41 is not pressed, the switch is in an off state, and the walking vehicle is in a riding mode, and the light of the lighting component 5 can be in a first light-emitting mode, for example, a first color; when the operation mode selection key 41 is pressed once, the switch is in a conducting state, and the walking vehicle is in an assisted push mode, and the light of the lighting component 5 is in a second light-emitting mode, for example, a second color, and the first color and the second color are different; when the operation mode selection key 41 is pressed continuously once, the walking vehicle switches to a rehabilitation assisted walking mode, and the light of the lighting component 5 is in a third light-emitting mode, for example, a third color, and the first color, the second color, and the third color are different.
[0071] In addition, a main control board 8 is integrated inside the interaction console. In some embodiments, the operation mode selection key 41 is connected to the main control board 8. The main control board 8 obtains the trigger signal of the operation mode selection key 41 and switches the operation mode of the walking vehicle. And when the main control board 8 detects that the operation mode selection key 41 is triggered, the walking vehicle is in an assisted walking mode.
[0072] In some embodiments, the operation mode selection key 41 is connected to the light assembly 5 through the main control board 8, the main control board 8 obtains a signal that the operation mode selection key 41 is not triggered, and the main control board 8 controls the light assembly 5 to be in the first light-emitting mode; the main control board 8 obtains a signal that the operation mode selection key 41 is triggered once, and the main control board 8 controls the light assembly 5 to be in the second light-emitting mode; the main control board 8 obtains a signal that the operation mode selection key 41 is triggered again, and the main control board 8 controls the light assembly 5 to be in the third light-emitting mode. The interactive console 100 in the present application can realize the rapid switching of the operation state of the vehicle for transport by setting the operation mode selection key 41. It should be noted that the switching of the operation mode of the vehicle for transport can refer to the switching of the operation state of the existing vehicle for transport. When the operation mode selection key 41 set in the present application realizes the state switching, it can be quickly switched through the operation mode selection key 41, and the principle of switching can refer to the existing principle, which will not be repeated here.
[0073] The housing assembly 2 is fixedly connected to the mounting base 7, and the mounting base 7 is mounted on the main body of the vehicle through the first mounting hole 71 and the second mounting hole 72 on both sides. The installation position of the interactive console on the main body of the vehicle can be set according to different needs and is within the protection range.
[0074] The connection method between the first mounting hole 71 and the second mounting hole 72 and the main body includes but is not limited to threaded connection through a screw member.
[0075] The charging module 6 includes a charging port 61 and a protective cover 62. The charging port 61 can be connected to a plug of an external power source. In some embodiments, the vehicle has an adaptive charger for connecting the charging port 61 to the external power source to charge the built-in rechargeable power source of the vehicle.
[0076] The protective cover 62 is hinged to the mounting base 7 and is used to open or cover the charging port 61 .
[0077] In some embodiments, the charging port 61 includes but is not limited to a XLR charging port.
[0078] In the present application, a lighting component 5 is added to the interactive console, and the lighting component 5 is connected to the operating mode selection key 41, so that when the operating mode selection key 41 switches the operating mode of the means of transportation vehicle, the light of the lighting component 5 is in the corresponding lighting mode, which is convenient for reminding the user of the status of the means of transportation, avoiding the problem of operating errors, and ensuring the user's experience.
[0079] Combination Figure 3 As shown, the display screen 3 in the present application has: a power display module 31 , a vehicle status and information display module 32 , a travel assistance mode display module 33 , a seat detection sensor and a seat detection display module 34 .
[0080] It should be noted that the power display module 31 and the display module 32 for vehicle status and information may not be set simultaneously. It can be understood that in some embodiments, only one of them may be set to achieve the corresponding prompting function. In some embodiments, the above-mentioned power display module 31, display module 32 for vehicle status and information, assistive walking mode display module 33, and seat detection display module 34 all use the on / off state of the display lamp for display.
[0081] Among them, the power display module 31 is used to display the power information of the power supply built in the mobility scooter. In some embodiments, the power display module 31 displays the percentage of the power supply. For example, the power display module 31 displays 10%, 30%, 50%, 80%, and 100% of the power supply. In addition, the power display module 31 can also display the power usage status and charging status, etc.
[0082] The display module 32 for vehicle status and information displays the numerical value of the real-time vehicle speed of the mobility scooter, and when the mobility scooter fails, it displays a fault code to remind the user to repair the mobility scooter.
[0083] It should be noted that for the display principle of the power display module 31 and the display module 32 for vehicle status and information, as well as the type of fault codes, the existing display principles and fault codes can be referred to. In this application, functions such as vehicle speed display and power display are integrated and applied to the mobility scooter.
[0084] The assistive walking mode display module 33 is connected to the main control board 8, and the main control board 8 controls the on / off of the assistive walking mode display module 33. Specifically, the assistive walking mode display module 33 is used to display the running mode of the mobility scooter. When the assistive walking mode display module 33 is lit, the mobility scooter is in the assistive walking mode; when the assistive walking mode display module 33 is not lit, the mobility scooter is in the riding mode.
[0085] It should be noted that when the assistive walking mode display module 33 is lit, it means that the operation mode selection key 41 has been pressed.
[0086] The seat detection display module 34 is connected to the seat detection sensor through the main control board 8. When the seat detection sensor detects that the pressure and / or light at the seat meet the requirements, the main control board 8 controls the seat detection display module 34 to be in the display state. The seat detection display module 34 being in the display state indicates that there is a person sitting on the seat of the mobility scooter. Specifically, a weight detector can be installed on the seat of the mobility scooter to detect whether there is a person sitting on the seat, and it is displayed through the on / off of the seat detection display module 34.
[0087] By adding the seat detection display module 34 to remind whether there is a person on the seat, misoperation can be reduced, and the vehicle can be prevented from moving when it is empty.
[0088] In the present application, a display screen 3 is integrated on the interactive console of the mobility vehicle, and the power level, vehicle speed, operation mode of the mobility vehicle, and whether a person is sitting on the seat are displayed on the display screen 3. This facilitates the user to obtain the status of the mobility vehicle at all times.
[0089] Combination Figure 4 As shown, a sound module 9 is also integrated on the interactive control console of the transportation tool vehicle in the present application, wherein the sound module 9 includes a speaker 91 , a speaker bracket 93 and a sound channel 92 .
[0090] The speaker 91 is installed inside the housing assembly 2 through a speaker bracket 93 . In some embodiments, the speaker 91 is installed inside the lower housing 23 and is located between the lower housing 23 and the upper housing 22 .
[0091] A sound channel 92 is provided on the lower shell so that the speaker in the shell assembly 2 can diffuse to the outside through the sound channel 92 .
[0092] It should be noted that the opening position and shape of the sound channel 92 can be set according to the installation position of the speaker 91, and are not specifically limited here. The shape of the speaker bracket 93 needs to be set in combination with the shape of the speaker 91 and the shape of the lower shell 23 where the speaker 91 is installed, as long as the speaker 91 can be fixed in the lower shell 23.
[0093] Combination Figure 1 and Figure 2 As shown, in some embodiments, the speaker 91 can emit a reminder sound, in view of this, the key assembly 4 also includes a speaker key 42. When a reminder needs to be issued, the user can press the speaker key 42 to make the speaker 91 emit a reminder sound.
[0094] In some embodiments, the speaker 91 is connected to all the buttons of the button assembly 4, and when the corresponding button is triggered, the speaker 91 can emit a corresponding sound reminder, including but not limited to: when the speed plus button 43 is triggered, the speaker 91 emits a "speed up" sound; when the speed minus button 44 is triggered, the speaker emits a "slow down" sound; when the power button 45 is triggered, the speaker 91 emits a "power on" or "power off" sound; when the operation mode selection button 41 is triggered, the speaker 91 emits a "mode switch" sound.
[0095] In addition, when the mobility scooter is reversing, the horn 91 may also emit a sound of "Please be careful when reversing".
[0096] In combination with the above description, it can be seen that in the present application, by adding the sound module 9, the effect of human-computer interaction can be further improved, thereby improving the user experience.
[0097] On the basis of the above technical solution, the interactive console in the present application realizes the communication connection between the button assembly 4 and the display screen 3 and the speaker 91 respectively through the main control board 8, so that when the button is triggered, the main control board 8 processes and controls the display screen 3 and the speaker 91 to perform corresponding operations.
[0098] In addition, the main control board 8 is also connected to the operating handle 1 for communication. During the operation of the operating handle 1 , the main control board 8 can detect the movement of the operating handle 1 and can control the speaker 91 to perform corresponding operations.
[0099] The processing process of the main control board 8 is not described in detail here, and reference may be made to the processing method of the existing main control board 8. The core of the interactive console in the present application is to integrate the above functions into the interactive console of the transportation tool vehicle.
[0100] Combination Figures 4 to 6 As shown, the light assembly 5 of the mobility scooter includes a light panel 51 and an annular light cover 52 .
[0101] Among them, the light board 51 is fixed in the upper shell 22, the light board 51 is arranged close to the cover plate 21, the annular lampshade 52 is arranged around the periphery of the light board 51, one end is detachably fixed on the light board 51, and the other end is limited between the upper shell 22 and the cover plate 21. It should be noted that the annular lampshade 52 is located between the cover plate 21 and the upper shell 22, and is exposed to the shell assembly 2, that is, an annular light strip is formed in the circumference of the cover plate 21, which is convenient for users to observe the light strip.
[0102] In the present application, the annular lampshade 52 can increase the light strip area of the interactive console, making it easier to observe.
[0103] The lamp board 51 of the present application is provided with a plurality of lamp bead groups 511, and the lamp bead groups 511 are arranged along the circumference of the lamp board 51. The annular lamp cover 52 is provided on the outside of the lamp bead groups 511 and can evenly distribute the light emitted by the lamp bead groups 511, thereby ensuring that the light emitted by the lighting assembly 5 is uniform.
[0104] In some embodiments, each lamp bead group 511 includes but is not limited to one white light lamp bead, one orange light lamp bead and one blue light lamp bead, and all the lamp bead groups 511 are evenly arranged along the circumference of the light board 51 .
[0105] The light board 51 in the present application controls the lighting of each lamp bead of the lamp bead group 511, so that the light assembly 5 presents different colors when the transportation tool vehicle is in different states.
[0106] In some embodiments, the power button 45 is communicatively connected with the light board 51. When the power button 45 is triggered to start the mobility scooter, the white lamp beads light up, and the white lamp beads present effects including but not limited to breathing effects or marquee effects.
[0107] In addition, the lamp board 51 is also connected to the main control board 8. When the main control board 8 detects a fault in the scooter, the lighting component 5 presents a breathing effect prompt of a full circle of blue lights, that is, the blue lamp beads light up and go out.
[0108] When the main control board 8 detects that no one is sitting on the seat and the movement operation handle 1 is moved, a breathing prompt of a full circle of orange lights is presented for the annular lamp, that is, the orange lamp beads light up and go out.
[0109] As Figure 6 shown, along the circumferential direction of the lamp board 51, the lamp beads are divided into: area A, area B, area C, area D, area E, area F, area G, and area H.
[0110] The lamp board 51 is connected to the operation handle 1 through the main control board 8. When the main control board 8 detects that the operation handle 1 is pushed forward, the lamp beads in area A of the lamp board 51 light up; when the main control board 8 detects that the operation handle 1 is pushed backward, the lamp beads in area E of the lamp board 51 light up; when the main control board 8 detects that the operation handle 1 is pushed to the left, the lamp beads in area C of the lamp board 51 light up; when the main control board 8 detects that the operation handle 1 is pushed to the right, the lamp beads in area G of the lamp board 51 light up; when the main control board 8 detects that the operation handle 1 is pushed to the left front, the lamp beads in area B of the lamp board 51 light up; when the main control board 8 detects that the operation handle 1 is pushed to the right front, the lamp beads in area H of the lamp board 51 light up; when the main control board 8 detects that the operation handle 1 is pushed to the left rear, the lamp beads in area D of the lamp board 51 light up; when the main control board 8 detects that the operation handle 1 is pushed to the right rear, the lamp beads in area F of the lamp board 51 light up.
[0111] In some embodiments, during the operation of the operation handle 1, the white lamp beads in the corresponding area lamp bead group 511 light up.
[0112] The interactive console in this application realizes sound and light prompts in various scenarios through the annular lamp and the speaker; by integrating the walking assistance function, it can realize the walking assistance switch, which is convenient for pushing. The integrated seat detection prompt can greatly reduce misoperations.
[0113] In addition, this application also discloses a scooter, including an armrest and an interactive console 100 installed on the armrest. Among them, the interactive console 100 is the interactive console 100 disclosed in the above embodiments. Therefore, the scooter with this interactive console 100 also has all the above technical effects, which will not be elaborated one by one here.
[0114] As Figure 7In the illustrated embodiment, the armrest includes a left armrest 101 and a right armrest 102, and both the left armrest 101 and the right armrest 102 have mounting positions, and the interactive console 100 is detachably mounted on the mounting position of the left armrest 101 or the mounting position of the right armrest 102. It can be understood that the interactive console 100 in the present application can be replaced between the left armrest 101 and the right armrest 102 as needed.
[0115] Exemplarily, the interactive console 100 is connected to the armrest by a screw. The mounting base 7 of the interactive console 100 is mounted on the armrest of the vehicle through the first mounting hole 71 and the second mounting hole 72 on both sides. The mounting position of the interactive console on the armrest of the vehicle can be set according to different needs and is within the protection range.
[0116] The various embodiments in this specification are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same or similar parts between the various embodiments can be referenced to each other.
[0117] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to the embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. An interactive console for a mobility vehicle, characterized in that, Comprising: A housing assembly, which is mounted on the main body of the mobility scooter through a mounting base; An operating handle, which is integrated on the housing assembly and is used to control the running state of the mobility scooter; A lighting assembly, which is mounted on the housing assembly, is connected to the operating handle, and has at least one lighting mode corresponding to the operating direction of the operating handle.
2. The interactive console according to claim 1, wherein It further comprises: A button assembly, which is mounted on the housing assembly and includes a speed control button and a power button. The speed control button is used to adjust the running speed of the mobility scooter, and the power button is used to start and stop the power supply. The power supply is connected to the lighting assembly; A display screen, which includes at least one of a display module for vehicle status and information and a power level display module. The display module for vehicle status and information is used to display the vehicle speed value or the fault code of the mobility scooter, and the power level display module is used to display the power level information of the power supply; A main control board. The speed control button and the display module for vehicle status and information are connected through the main control board, and the power button and the power level display module are connected through the main control board.
3. The interactive console according to claim 2, wherein The button assembly further includes: a running mode selection button, which is connected to the main control board and is used to switch or select between multiple running modes; The display screen further includes: a walking assistance mode display module, which is connected to the main control board, and the main control board controls the on / off state of the walking assistance mode display module.
4. The interactive console according to claim 3, characterized in that, The running mode selection button and the lighting assembly are connected through the main control board. The main control board obtains the signal that the running mode selection button is not triggered, and based on the non-triggered signal, the lighting assembly is in the first lighting mode; The main control board obtains the signal that the running mode selection button is triggered, and based on the triggered signal, the lighting assembly is in the second lighting mode.
5. The interactive console according to claim 3, characterized in that, The display screen further includes: A seat detection display module, which is connected to the seat detection sensor of the mobility scooter through the main control board. When the seat detection sensor detects a signal that the pressure and / or light at the seat meet the requirements, the main control board controls the seat detection display module to be in the display state.
6. The interactive console according to any one of claims 1 to 5, characterized in that, The lighting assembly includes: A lamp board, which is mounted inside the housing assembly, and a plurality of lamp bead groups are arranged along the circumference of the lamp board; An annular lamp shade, one end of which is fixed to the lamp board, and the other end of which is exposed outside the housing assembly.
7. The interactive console according to claim 6, wherein The lamp bead group includes: White light beads, orange light beads and blue light beads.
8. The interactive console according to any one of claims 2 to 5, characterized in that It further comprises: A sound module, which is mounted inside the housing assembly; The sound module is connected to the buttons of the button assembly, and when the buttons of the button assembly are triggered, the sound module can emit corresponding reminder sounds.
9. The interactive console according to claim 8, wherein The sound module includes: A speaker, which can emit sounds and is connected to the button assembly; A speaker bracket, through which the speaker is fixed inside the housing assembly; A sound channel is provided on the housing assembly and is used to direct the sound emitted by the speaker to the outside.
10. A vehicle for getting around, comprising an armrest and an interactive console mounted on the armrest, characterized in that, The interactive console is the interactive console according to any one of claims 1 to 9.
11. The walking vehicle according to claim 10, characterized in that, The armrest includes a left armrest and a right armrest. Both the left armrest and the right armrest have mounting positions, and the interactive console is detachably mounted on the mounting position of the left armrest or the mounting position of the right armrest.
12. The walking vehicle according to claim 11, characterized in that, The interactive console is connected to the armrest by a threaded member.