Display device, display control method, and vehicle
By setting a combination of light-transmitting position and light-emitting lamp parts on the light-transmitting panel, a low-cost display device is realized, which can display weather and temperature information and improve user interaction experience.
Patent Information
- Application Number
- CN202510703382.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-28
- Publication Date
- 2025-07-11
AI Technical Summary
Existing display devices are costly and lack cost-effective display methods.
Using a combination of a light-transmitting panel and a light-emitting lamp component, by setting multiple light-transmitting positions on the light-transmitting panel, the light-emitting lamp component selectively transmits light in the light-transmitting position to display different information.
It reduces the cost of the display device, while providing a unique user interaction experience, able to display different information such as weather and temperature, to meet the personalized needs of users.
Smart Images

Figure CN120299371A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of display devices, and particularly to a display device, a display control method, and a vehicle. Background Art
[0002] In related technologies, display devices generally rely on display screens to display information, and this method has a relatively high cost. Summary of the Invention
[0003] The main object of the present invention is to provide a display device, a display control method, and a vehicle, aiming to provide a display method with lower cost.
[0004] To achieve the above object, the display device proposed by the present invention includes:
[0005] A housing, the housing includes a light-transmitting panel, and the light-transmitting panel has a plurality of light-transmitting positions;
[0006] Light-emitting lamp components, installed in the housing, and the light emitted by the light-emitting lamp components is configured to transmit through at least one of the plurality of light-transmitting positions.
[0007] In one embodiment, the light-transmitting panel includes a weather display area, the weather display area has a plurality of first light-transmitting positions, and each of the first light-transmitting positions is configured with a weather pattern. The light-emitting lamp components include first lamp components corresponding to the weather display area, and the light emitted by the first lamp components is configured to transmit through one of the plurality of first light-transmitting positions.
[0008] In one embodiment, the first light-transmitting position is configured with a light-transmitting hole, and the weather pattern is formed in the light-transmitting hole.
[0009] In one embodiment, the display device further includes a plurality of first light guide members, and one first light guide member correspondingly covers the light-transmitting hole of one of the first light-transmitting positions.
[0010] In one embodiment, the first lamp components are movably installed in the housing, and the display device further includes a driving device installed in the housing. The driving device is drivingly connected to the first lamp components, so as to drive the first lamp components to move to a position opposite to the corresponding first light-transmitting position.
[0011] In one embodiment, the driving device is configured as a motor, and the first lamp components are rotatably installed in the housing.
[0012] In one embodiment, the display device further includes a transmission member, one end of the transmission member is fixedly provided with the first lamp components, and the output shaft of the driving device is fixedly connected to the other end of the transmission member.
[0013] In one embodiment, the light-transmitting panel includes a temperature display area, the temperature display area has multiple second light-transmitting positions, the light-emitting lamp includes a second lamp arranged corresponding to the temperature display area, and the light emitted by the second lamp is transmitted through at least one of the multiple second light-transmitting positions.
[0014] In one embodiment, the temperature display area is provided with a plurality of through holes arranged in a rectangular array, and the display device also includes a plurality of second light guide members arranged relative to the temperature display area, and the plurality of second light guide members are arranged to form a plurality of spaced-apart "日" characters, and the through holes opposite to the second light guide members are the second light-transmitting positions, and corresponding to one of the second light guide members, at least one second lamp member is provided.
[0015] In one embodiment, the second light guide member is disposed on a side of the corresponding second lamp member close to the light-transmitting panel, and the second light guide member is gradually expanded in a direction from the second lamp member to the light-transmitting panel.
[0016] The present application also proposes a display control method, which comprises the steps of:
[0017] Obtaining target display information; and
[0018] The light emitting lamp is controlled to emit light according to the target display information, so that the light emitted by the light emitting lamp is transmitted through at least one light-transmitting position of the light-transmitting panel.
[0019] In one embodiment, the step of obtaining target display information includes:
[0020] Get current weather information;
[0021] The step of controlling the light emitting device to emit light according to the target display information comprises:
[0022] Acquire a first target light transmission position according to the current weather information; and
[0023] The first lamp is controlled to rotate to be opposite to the first target light-transmitting position, so that the light emitted by the first lamp is transmitted through the first target light-transmitting position, thereby causing the weather display area to display the target weather pattern.
[0024] In one embodiment, the step of controlling the first lamp to rotate to be opposite to the first target light transmission position comprises:
[0025] After controlling the first lamp component to rotate a preset number of circles, the first lamp component is controlled to maintain a position relative to the first target light transmission position.
[0026] In one embodiment, the display control method further includes:
[0027] During the process of the first lighting component rotating a preset number of turns, control the first lighting component to switch between the on state and the off state for a preset number of times;
[0028] Wherein, each time the first lighting component is in the on state, it can be opposite to a different first light-transmitting position.
[0029] In one embodiment, the display control method further includes:
[0030] During the process of the first lighting component rotating a preset number of turns, control the speaker to play a preset audio.
[0031] In one embodiment, the step of obtaining the target display information includes:
[0032] Obtain the current temperature information;
[0033] The step of controlling the light-emitting lighting component to emit light according to the target display information includes:
[0034] Control the second lighting component to emit light according to the current temperature information, so that the light emitted by the second lighting component is projected at the second target light-transmitting position, thereby enabling the temperature display area to display the target temperature value.
[0035] In one embodiment, the step of controlling the second lighting component to emit light according to the current temperature information includes:
[0036] Control the second lighting component to emit light in a breathing and flashing manner for a preset time according to the current temperature information, and then control the corresponding second lighting component to maintain the on state.
[0037] The present application also proposes a vehicle. In one embodiment, the vehicle includes the aforementioned display device;
[0038] In one embodiment, the vehicle includes a car machine, the car machine includes a memory and a processor, the memory is configured to store a computer program, and when the processor executes the computer program, the aforementioned display control method is implemented.
[0039] In the technical solution of the present invention, by setting a plurality of light-transmitting positions on the light-transmitting panel, the light emitted by the light-emitting lighting component located inside the light-transmitting panel can be selectively transmitted among the plurality of light-transmitting positions. After the light is transmitted at different light-transmitting positions, different display pictures can be presented on the outside of the light-transmitting panel, thereby enabling different information to be displayed on the light-transmitting panel. Compared with traditional display screens, the display device of the present invention requires lower costs, and moreover, the appearance of the display device of the present invention is very different from that of traditional display screens, which can bring relatively special interaction experiences to users and meet the personalized pursuits of users. Description of the Drawings
[0040] In order 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 be obtained based on the structures shown in these drawings.
[0041] Figure 1 Schematic perspective view of an embodiment of a display device provided by the present invention;
[0042] Figure 2 Front view of an embodiment of a display device provided by the present invention;
[0043] Figure 3 Exploded structure diagram of an embodiment of a display device provided by the present invention;
[0044] Figure 4 Schematic partial structure diagram of an embodiment of a display device provided by the present invention from one perspective;
[0045] Figure 5 Schematic partial structure diagram of an embodiment of a display device provided by the present invention from another perspective;
[0046] Figure 6 Schematic partial structure diagram of an embodiment of a display device provided by the present invention from yet another perspective;
[0047] Figure 7 For Figure 6 Cross-sectional view of the partial structure along A-A in
[0048] Figure 8 Flowchart of an embodiment of a display control method provided by the present invention;
[0049] Figure 9 Refined flowchart of an embodiment of a display control method provided by the present invention;
[0050] Figure 10 Refined flowchart of another embodiment of a display control method provided by the present invention.
[0051] Explanation of the reference numerals in the drawings:
[0052] 10. Housing; 11. Translucent panel; 12. Back plate; 13. Middle case; 14. Partition; 15. Circuit board; 16. Accommodation space;
[0053] 101. Translucent position; 110. Weather display area; 111. First translucent position; 120. Temperature display area; 121. Second translucent position; 122. Through hole;
[0054] 210. First lighting component; 220. Second lighting component; 310. First light guide component; 320. Second light guide component;
[0055] 400. Driving device; 500. Transmission component; 510. Light guide hole.
[0056] The realization, functional features and advantages of the object of the present invention will be further described with reference to the embodiments and the accompanying drawings. Detailed implementation manners
[0057] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0058] It should be noted that if there are directional indications (such as up, down, left, right, front, back...) involved in the embodiments of the present invention, the directional indications are only used to explain the relative positional relationship and movement conditions between components in a specific posture. If the specific posture changes, the directional indications will also change accordingly.
[0059] In addition, if there are descriptions such as "first" and "second" involved in the embodiments of the present invention, the descriptions of "first" and "second" are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one such feature. In addition, if "and / or" or "and / or" appears throughout the text, its meaning includes three parallel solutions. Taking "A and / or B" as an example, it includes solution A, solution B, or a solution where A and B are satisfied simultaneously. In addition, the technical solutions between the embodiments can be combined with each other, but it must be based on the fact that those of ordinary skill in the art can implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the protection scope required by the present invention.
[0060] The present invention provides a display device.
[0061] Please refer to Figures 1 to 3 , in an embodiment of the present invention, the display device includes:
[0062] A housing 10, the housing 10 includes a light-transmitting panel 11, and the light-transmitting panel 11 has a plurality of light-transmitting positions 101;
[0063] A light-emitting lamp is installed inside a housing 10, and the light emitted by the light-emitting lamp is configured to be transmitted through at least one of a plurality of light-transmitting positions 101.
[0064] In the technical solution of the present invention, by providing a plurality of light-transmitting positions 101 on the light-transmitting panel 11, the light emitted by the light-emitting lamp located inside the light-transmitting panel 11 can be selectively transmitted through the plurality of light-transmitting positions 101. After the light is transmitted through different light-transmitting positions 101, different display pictures can be presented on the outside of the light-transmitting panel 11, thereby enabling different information to be displayed on the light-transmitting panel 11. Compared with traditional display screens, the display device of the present invention requires lower costs. Moreover, the appearance of the display device of the present invention is very different from that of traditional display screens, which can bring relatively special interaction experiences to users and meet the personalized pursuits of users.
[0065] In one embodiment, please refer to Figures 2 to 4 , the light-transmitting panel 11 includes a weather display area 110, the weather display area 110 has a plurality of first light-transmitting positions 111, each first light-transmitting position 111 is configured with a weather pattern, the light-emitting lamp includes a first lamp 210 provided corresponding to the weather display area 110, and the light emitted by the first lamp 210 is configured to be transmitted through one of the plurality of first light-transmitting positions 111.
[0066] Specifically, the weather pattern of each first light-transmitting position 111 corresponds to a weather condition, which may include overcast, sunny, rainy, snowy, etc. Among them, the weather pattern corresponding to overcast can be clouds, the weather pattern corresponding to sunny can be the sun, the weather pattern corresponding to rainy can be raindrops, and the weather pattern corresponding to snowy can be snowflakes. Figure 2 The four weather patterns shown are sunny, snowy, rainy, and overcast (or cloudy) in the order of upper left, upper right, lower left, and lower right.
[0067] Furthermore, rainy days can be divided into light rain, moderate rain, heavy rain, and rainstorm according to the intensity. Different intensities of rainy days correspond to different numbers of raindrops lit up. For example, the weather pattern corresponding to rainy days can be set to four raindrops, one raindrop is lit up for light rain, two raindrops are lit up for moderate rain, three raindrops are lit up for heavy rain, and four raindrops are lit up for rainstorm. Of course, it can also be that different degrees are represented by lighting up lights of different colors. For example, light blue from light to deep represents light rain, moderate rain, heavy rain, and rainstorm respectively. Or, a combination of lighting up different numbers of raindrops and lighting up lights of different colors can also be used to display different intensities of rainy days. The same applies to snowy days and other similar weather conditions.
[0068] In this embodiment, by setting different weather patterns at different first light-transmitting positions 111, corresponding weather patterns can be displayed according to the weather of the day, enabling users to more clearly understand the outdoor weather conditions and facilitating users to make preparations before entering the outdoor environment. The display device can be configured at home, at an office workstation, or in a vehicle, adding a sense of ceremony to life. If configured at home or at an office workstation, the opening time of the display device can be set according to the waking-up time or work time correspondingly. If configured in a vehicle, it can be automatically turned on when the user gets in the car or starts the car. Of course, it can also be manually turned on by the user every day.
[0069] In one embodiment, please refer to Figure 2 , the first light-transmitting position 111 is configured with a light-transmitting hole, and the weather pattern is formed in the light-transmitting hole. That is, by forming light-transmitting holes of different shapes at the first light-transmitting position 111, different weather patterns can be obtained. The weather patterns obtained in this way can be concise and clear, and can facilitate the processing of the light-transmitting panel 11. Of course, in other embodiments, it can also be that a light-transmitting plate with a specific shape is configured at each first light-transmitting position 111. The light-transmitting plate is made of a transparent material and can transmit light. The light-transmitting plates set at different first light-transmitting positions 111 can have the same color or different colors. The light-transmitting plate can also be set as a frosted material or a diffuser plate, so as to have different display effects.
[0070] In one embodiment, please refer to Figure 3 and Figure 4 , the display device further includes a plurality of first light-guiding members 310, and a first light-guiding member 310 correspondingly covers the light-transmitting hole of a first light-transmitting position 111. In this way, after the light of the first light source 210 is projected onto the first light-guiding member 310, the first light-guiding member 310 can efficiently guide the light to the corresponding light-transmitting hole, and at the same time, can effectively evenly distribute the light of the first light source 210 on the surface of the first light-guiding member 310 close to the light-transmitting hole, avoiding the phenomenon of too high or too low local brightness. In addition, since the first light-guiding member 310 can reliably guide the light, the setting position of the first light source 210 can be relatively flexible. The first light source 210 can be opposite to the light-transmitting hole or can be appropriately deviated from the light-transmitting hole. Of course, in other embodiments, the first light-guiding member 310 can also not be provided, and by setting the first light source 210 opposite to the corresponding light-transmitting hole, the light of the first light source 210 can be transmitted outward through the light-transmitting hole.
[0071] In one embodiment, please refer to Figure 4 , Figure 6 and Figure 7, the first light member 210 is movably mounted on the housing 10. The display device further includes a driving device 400 mounted on the housing 10. The driving device 400 is drivingly connected to the first light member 210, so as to drive the first light member 210 to move to a position opposite to the corresponding first light-transmitting position 111. In this way, the number of the first light members 210 can be reduced, and only one first light member 210 needs to be provided. By driving the first light member 210 to different positions through the driving device 400, different weather patterns can be displayed. At the same time, during the process of the first light member 210 moving towards the direction of the weather pattern to be displayed, a dynamic display effect can be achieved, improving the interest and display effect.
[0072] It should be noted that an appropriate electrical connection method needs to be configured for the first light member 210 to continuously and reliably supply power to the first light member 210 during the movement of the first light member 210. For example, the first light member 210 may protrude with a conductive plug portion (not shown in the figure), and a conductive track (not shown in the figure) is correspondingly provided on the housing 10 according to the movement track of the first light member 210. The conductive plug portion is slidably connected to the conductive track. When the first light member 210 moves to a position opposite to different first light-transmitting positions 111, the conductive plug portion can be electrically connected to the conductive track, so as to ensure the power supply to the first light member 210.
[0073] Of course, in other embodiments, different first light members 210 may also be fixedly provided for different first light-transmitting positions 111, and when different weather patterns are displayed, the corresponding first light members 210 can be turned on.
[0074] In one embodiment, the driving device 400 is configured as a motor, and the first light member 210 is rotatably mounted on the housing 10. It can be understood that by rotating the output shaft of the motor, the first light member 210 can be stably and reliably driven to rotate. It should be noted that the multiple first light-transmitting positions 111 will also be arranged in a substantially circular pattern, so that when the first light member 210 rotates in a circle, it can be ensured to be opposite to each first light-transmitting position 111, thereby ensuring the display effect of the display device. In addition, in this embodiment, the movement track of the first light member 210 is a circular track, and the above-mentioned conductive track should also be correspondingly set as a circular track. Of course, in other implementations, it may also be that the first light member 210 is slidably mounted on the housing 10, and the driving device 400 can be configured as a cylinder or a linear motor to drive the first light member 210 to slide, and the conductive track is correspondingly set as a linear type.
[0075] In one embodiment, please refer to Figure 6 and Figure 7, the display device further includes a transmission member 500. One end of the transmission member 500 is fixedly provided with a first light member 210, and the output shaft of the driving device 400 is fixedly connected to the other end of the transmission member 500. In this way, when the output shaft of the driving device 400 rotates, it will drive the transmission member 500 to rotate around the rotation axis of the output shaft, thereby driving the first light member 210 provided on the transmission member 500 to rotate around the rotation axis of the output shaft, so that the first light member 210 can switch between positions opposite to different first light-transmitting positions 111. Of course, in other embodiments, it may also be that a transmission disc is coaxially fixed to the output shaft of the driving device 400, and the first light member 210 is eccentrically arranged on the transmission disc.
[0076] Further, please refer to Figure 6 and Figure 7 , a light guide hole 510 is provided at one end of the transmission member 500 away from the driving device 400. The first light member 210 is installed on the side of the transmission member 500 facing away from the light-transmitting panel 11 and is disposed opposite to the light guide hole 510. In this way, the light emitted by the first light member 210 will be projected onto the corresponding first light guide member 310 under the guidance of the light guide hole 510, which can further improve the light-emitting directivity of the first light member 210.
[0077] In one embodiment, please refer to Figures 2 to 5 , the light-transmitting panel 11 includes a temperature display area 120. The temperature display area 120 has a plurality of second light-transmitting positions 121. The light-emitting lamp member includes a second light member 220 provided corresponding to the temperature display area 120. The light emitted by the second light member 220 is transmitted through at least one of the plurality of second light-transmitting positions 121. In this way, when light is transmitted through different second light-transmitting positions 121, the temperature display area 120 can correspondingly display different temperature values, and the temperature values can match the current ambient temperature, so that users can more clearly understand the outdoor temperature situation and facilitate users to make preparations before entering the outdoor environment.
[0078] In addition, when the light-transmitting panel 11 has both a weather display area 110 and a temperature display area 120, the display device can provide users with more abundant information, enabling users to more clearly understand the outdoor environmental situation and facilitating users to make sufficient preparations before entering the outdoor environment.
[0079] Of course, in other embodiments, it may also be that the light-transmitting panel 11 includes a date and time display area for displaying the date of the current day and the real-time time. The time can be displayed in the form of numbers or a dial. The date and time display area can be formed separately on the light-transmitting panel 11 or arranged in different areas of the light-transmitting panel 11 in combination with the weather display area 110 and the temperature display area 120.
[0080] In one embodiment, please refer to Figures 2 to 4The temperature display area 120 is provided with a plurality of through holes 122 arranged in a rectangular array, and the display device further comprises a plurality of second light guides 320 arranged relative to the temperature display area 120, and the plurality of second light guides 320 are arranged to form a plurality of spaced “日” characters, and the through holes 122 opposite to the second light guides 320 are second light transmission positions 121, and corresponding to a second light guide 320, at least one second lamp 220 is provided. Among them, Figure 2 In order to clearly show the through hole 122 corresponding to the second light transmission position 121, the outline of the corresponding through hole 122 is thickened. Figure 1 and Figure 3 As shown, the through hole 122 corresponding to the second light-transmitting position 121 and the through holes 122 at other positions may have a consistent structure.
[0081] It should be noted that at least every 7 second light guides 320 are assembled to form a "日" shape, so that each "日" shape has 7 sides. The "日" shape is actually in the shape of a square number "8". The second light members 220 corresponding to the 7 sides are controlled to be switched on or off, so as to display the numbers 0 to 9. Among them, a strip-shaped through hole 122 can be set corresponding to one side of the "日" shape, that is, only one second light-transmitting position 121 is formed, or a plurality of strip-shaped through holes 122 are formed, that is, a plurality of second light-transmitting positions 121 are formed with strip-shaped intervals. The plurality of second light guides 320 can form two "日" shapes, or three "日" shapes, and a point is set between the second "日" shape and the third "日" shape, that is, a temperature value with a decimal point is displayed. In addition, the second lamp 220 can emit light of different colors to represent the positive and negative temperature values. A through hole 122 in the shape of a minus sign, or a plurality of through holes 122 arranged horizontally, can be provided before the first "日" shape, and corresponding lamps and light guides can be provided to display a minus sign when the temperature value is negative.
[0082] It can be understood that the light-emitting side of the second light guide member 320 is disposed opposite to the light-transmitting panel 11, and the light-incident side of the second light guide member 320 is opposite to the light-emitting side of the second lamp member 220. After the light of the second lamp member 220 is projected onto the second light guide member 320, the second light guide member 320 can efficiently guide the light to the corresponding second light-transmitting position 121, and at the same time, can effectively distribute the light of the second lamp member 220 evenly on the surface of the second light guide member 320 close to the light-transmitting panel 11, avoiding the phenomenon of too high or too low local brightness. In addition, since the second light guide member 320 can reliably guide the light, the setting position of the second lamp member 220 can be relatively flexible. The second lamp member 220 can be opposite to the corresponding "day" shaped side, or can be appropriately deviated. Among them, a plurality of through holes 122 arranged in a rectangular array are provided in the temperature display area 120, so that the appearance of the light-transmitting panel 11 in the temperature display area 120 has high consistency, and it is also convenient for the processing of the light-transmitting panel 11. Only a part of the through holes 122 provided corresponding to the second light guide member 320 serve as the second light-transmitting positions 121. In fact, this part of the through holes 122 will also correspondingly form a plurality of "day" shapes, and such a structure is relatively easy to form among the plurality of through holes 122 arranged in a rectangular array.
[0083] Of course, in other embodiments, it may also be that by providing a plurality of "day" shaped transparent areas in the temperature display area 120 and correspondingly providing lamp members to display the temperature value.
[0084] In one embodiment, please refer to Figure 4 and Figure 5 ., the second light guide member 320 is disposed on the side of the corresponding second lamp member 220 close to the light-transmitting panel 11, and the second light guide member 320 is in a gradually expanding shape in the direction from the second lamp member 220 to the light-transmitting panel 11. That is, the length of the second light guide member 320 on the light-incident side is smaller, and the length on the light-emitting side is larger. The light-emitting sides of the 7 second light guide members 320 are pieced together to form a "day" shape. In this way, for a corresponding second light guide member 320, a smaller number of second lamp members 220 can be provided. By guiding the light emitted by the second lamp member 220 through the gradually expanding second light guide member 320, a strip-shaped display effect can also be formed, thereby further reducing the design cost of the display device. Of course, in other embodiments, the size of the second light guide member 320 can also be uniform in the direction from the light-incident side to the light-emitting side.
[0085] In one embodiment, please refer to Figure 3 and Figure 4, the housing 10 further includes a back plate 12 disposed opposite to the light-transmitting panel 11 at an interval, and a middle housing 13 erected on the side of the light-transmitting panel 11 facing the back plate 12. The back plate 12, the middle housing 13, and the light-transmitting panel 11 together form a receiving space 16. Structures such as the light-emitting lamp, the light guide, and the driving device 400 are all received and installed in the receiving space 16. A circuit board 15 is disposed on the inner side of the back plate 12 corresponding to the temperature display area 120, and a plurality of second lamp members 220 are arranged on the circuit board 15 in a specific layout. Further, to avoid interference between the light of the first lamp member 210 and the second lamp member 220, a partition 14 is also erected on the light-transmitting panel 11, thereby separating two receiving spaces 16. The first lamp member 210 and related structures are received in one of the receiving spaces 16, and the second lamp member 220 and related structures are received in the other receiving space 16.
[0086] This application also proposes a display control method. Please refer to Figure 8 , the display control method includes the steps of:
[0087] S100. Obtain target display information; and
[0088] S200. Control the light-emitting lamp to emit light according to the target display information, so that the light emitted by the light-emitting lamp is transmitted at at least one light-transmitting position of the light-transmitting panel 11.
[0089] Specifically, the display control method is used to control the display device. Please refer to Figures 1 to 3 , the display device includes a housing 10 and a light-emitting lamp installed in the housing 10. The housing 10 includes a light-transmitting panel 11, and the light-transmitting panel 11 has a plurality of light-transmitting positions 101. The light emitted by the light-emitting lamp is configured to be transmitted at at least one of the plurality of light-transmitting positions 101.
[0090] In the technical solution of the present invention, by providing a plurality of light-transmitting positions 101 on the light-transmitting panel 11, after obtaining the target display information, by controlling the light-emitting lamp located inside the light-transmitting panel 11 to emit light, after the light is transmitted through the target light-transmitting position, a display screen carrying the target display information can be presented on the outside of the light-transmitting panel 11. Compared with the traditional display screen, the display method of the present invention requires lower costs, and moreover, the display screen of the present invention is very different from the traditional display screen, which can bring a relatively special interaction experience to users and meet the personalized pursuit of users.
[0091] In an embodiment, please refer to Figure 9 , step S100 includes:
[0092] S110. Obtain the current weather information;
[0093] Step S200 includes:
[0094] S210. Obtain a first target light-transmitting position according to the current weather information; and
[0095] S220. Control the first light member to rotate to face the first target light-transmitting position, so that the light emitted by the first light member is transmitted at the first target light-transmitting position, thereby enabling the weather display area to display a target weather pattern.
[0096] Specifically, please refer to Figures 2 to 4 , the light-transmitting panel 11 includes a weather display area 110, the weather display area 110 has a plurality of first light-transmitting positions 111, each first light-transmitting position 111 is configured with a weather pattern, the light-emitting lamp member includes a first light member 210 arranged corresponding to the weather display area 110, and the light emitted by the first light member 210 is configured to be transmitted at one of the plurality of first light-transmitting positions 111.
[0097] Among them, the weather pattern of each first light-transmitting position 111 corresponds to a weather condition, which may include cloudy, sunny, rainy, snowy, etc. Among them, the weather pattern corresponding to cloudy days may be clouds, the weather pattern corresponding to sunny days may be the sun, the weather pattern corresponding to rainy days may be raindrops, and the weather pattern corresponding to snowy days may be snowflakes.
[0098] Furthermore, rainy days can be divided into light rain, moderate rain, heavy rain, and rainstorm according to the intensity. Different degrees of rainy days correspond to different numbers of raindrops lit up. For example, the weather pattern corresponding to rainy days can be set to four raindrops, one raindrop is lit up for light rain, two raindrops are lit up for moderate rain, three raindrops are lit up for heavy rain, and four raindrops are lit up for rainstorm. Of course, it can also be that different degrees are represented by lighting up lights of different colors. For example, light blue to dark blue respectively represent light rain, moderate rain, heavy rain, and rainstorm. Or, it can also be a combination of lighting up different numbers of raindrops and lighting up lights of different colors to display different degrees of rainy days. The same applies to snowy days and other similar weather conditions.
[0099] In this embodiment, by setting different weather patterns at different first light-transmitting positions 111, a position where the weather pattern matches the current weather information can be selected from the plurality of first light-transmitting positions 111 as the first target light-transmitting position according to the obtained current weather information. Then, by controlling the first light member 210 to rotate to a position opposite to the first target light-transmitting position, the light emitted by the first light member 210 is projected onto the first target light-transmitting position, and the light-transmitting panel 11 can display the target weather pattern that matches the current weather information, so that users can more clearly understand the outdoor weather conditions and facilitate users to make preparations before entering the outdoor environment.
[0100] The display device can be configured at home, in the office or in the car to add a sense of ritual to life. If it is configured at home or in the office, the opening time of the display device can be set according to the time of getting up or going to work. If it is configured in the car, it can be automatically turned on after the user gets in the car or starts the car. Of course, the user can also manually turn on the display device every day.
[0101] In this embodiment, the number of first lamps 210 can be reduced, and only one first lamp 210 is required. By controlling the first lamp 210 to rotate to different positions, different weather patterns can be displayed. At the same time, when the first lamp 210 moves in the direction of the weather pattern to be displayed, a dynamic display effect can be achieved, thereby improving the fun and display effect.
[0102] Understandable, see Figure 4 , Figure 6 and Figure 7 The housing 10 of the display device is also equipped with a driving device 400. By controlling the driving device 400, the driving device 400 drives the first lamp 210 to rotate to a corresponding position. Further, the display device also includes a transmission member 500, one end of which is fixedly provided with the first lamp 210, and the output shaft of the driving device 400 is fixedly connected to the other end of the transmission member 500. In this way, the output shaft of the driving device 400 rotates, which will drive the transmission member 500 to rotate around the rotation axis of the output shaft, thereby driving the first lamp 210 provided on the transmission member 500 to rotate around the rotation axis of the output shaft, so that the first lamp 210 can be switched between positions relative to different first light-transmitting positions 111. Of course, it is also possible that the output shaft of the driving device 400 is coaxially fixed with a transmission disk, and the first lamp 210 is eccentrically arranged on the transmission disk.
[0103] It should be noted that the first lamp component 210 needs to be configured with an appropriate electrical connection method so as to continuously and reliably supply power to the first lamp component 210 during its movement. For example, the first lamp component 210 may be provided with a protruding conductive plug-in portion, and a conductive track may be provided on the shell 10 corresponding to the movement trajectory of the first lamp component 210. The conductive plug-in portion may be slidably connected to the conductive track. When the first lamp component 210 moves to a position relative to different first light-transmitting positions 111, the conductive plug-in portion may be electrically connected to the conductive track, thereby ensuring the power supply to the first lamp component 210.
[0104] In this embodiment, the movement trajectory of the first lighting element 210 is a circular trajectory, and the above conductive track should also be correspondingly set as a circular trajectory. However, the present invention is not limited thereto, and the first lighting element 210 can be movably arranged in any manner, and the driving device 400 can drive the first lighting element 210 to move in a corresponding manner. For example, the first lighting element 210 can also be slidably installed on the housing 10, and the driving device 400 can be configured as a cylinder or a linear motor to drive the first lighting element 210 to slide, and the conductive track is also correspondingly set as a linear type.
[0105] In one embodiment, step S220 includes:
[0106] Step S221, after controlling the first lighting element to rotate a preset number of turns, control the first lighting element to maintain a position opposite to the first target light-transmitting position.
[0107] That is, in this embodiment, the first lighting element does not directly rotate to a position opposite to the first target light-transmitting position, but rotates a certain number of turns and then is opposite to the first target light-transmitting position, so that the light emitted by the first lighting element is fixed at the first target light-transmitting position. In this way, the interactive experience brought to the user can be improved, and the interest and sense of ceremony can be increased. Among them, the preset number of turns for each rotation of the first lighting element can be the same, and the value of the preset number of turns can be set by the user; of course, the preset number of turns can also be different. For example, each time the first lighting element is controlled to rotate, a random number can be obtained within a certain numerical range and used as the value of the preset number of turns. The randomness of the preset number of turns can also increase the interest of the display method of the present invention, thereby improving the interactive experience brought to the user. Specifically, the preset number of turns can be 2 to 5 turns, so that the time taken for the first lighting element to rotate will not be too long, and the display device can timely display weather information to the user.
[0108] In other embodiments, it can also be that the first lighting element directly rotates to a position opposite to the first target light-transmitting position and emits light in a breathing and flashing manner, which can also improve the interactive experience brought to the user to a certain extent and increase the interest and sense of ceremony.
[0109] In one embodiment, the display control method further includes the step of:
[0110] S230, during the process of the first lighting element rotating a preset number of turns, control the first lighting element to switch between the on state and the off state a preset number of times;
[0111] Among them, each time the first lighting element is in the on state, it can be opposite to different first light-transmitting positions.
[0112] That is, while performing step S221, step S230 is performed. In this way, while the first lamp member rotates, it will also be accompanied by the switching between the on state and the off state of the first lamp member, so that the first lamp member can be dim and bright. And since the first lamp member will be opposite to one of the first light-transmitting positions when it is lit, a display effect of jumping between multiple weather patterns can be formed, which can further increase the interest of the display method of the present invention, thereby enhancing the interactive experience and sense of ceremony brought to the user. Among them, when displaying each time, the preset number of times for the first lamp member to switch between the on state and the off state can be the same, and the user can set the value of the preset number of times; of course, the preset number of times can also be different. For example, a random number can be obtained within a certain value range and used as the value of the preset number of times. The randomness of the preset number of times can also increase the interest of the display method of the present invention, thereby enhancing the interactive experience brought to the user. Specifically, the preset number of times can be 4 to 10 times, so that the number of bright and dark switches of the first lamp member can match the above-mentioned preset number of turns, and a better interactive experience can be provided to the user. In addition, the time interval for each switch can be the same or different.
[0113] Of course, in other embodiments, it can also be that during the rotation of the first lamp member, the first lamp member is controlled to maintain a constant on state, and in this way, a dynamic display effect can also be formed.
[0114] In one embodiment, the display control method further includes:
[0115] S240. During the process of the first lamp member rotating a preset number of turns, control the speaker to play a preset audio.
[0116] That is, while performing step S221, step S240 is performed. In this way, by controlling the speaker to play audio, an auditory interactive experience can be brought to the user, combined with the visual interactive experience brought by the first lamp member 210, which can make the interactive experience felt by the user richer. Among them, the preset audio played by the speaker each time can be the same, and the user can set the music or sound effects they want; of course, the preset audio played each time can also be randomly generated from a preset audio library, and the user can add their favorite audio to the preset audio library. The randomness of the preset audio can also increase the interest of the display method of the present invention, thereby enhancing the interactive experience brought to the user.
[0117] Furthermore, step S221, step S230, and step S240 can be performed simultaneously. Specifically, during the rotation of the first lamp member, the first lamp member switches between the on state and the off state following the rhythm of the preset audio played by the speaker, so that the bright and dark switching rhythm of the first lamp member can match the musical rhythm of the preset audio, thereby further enhancing the interactive experience brought to the user.
[0118] In one embodiment, refer to Figure 10 , step S100 includes:
[0119] S120. Obtain the current temperature information;
[0120] Step S200 includes:
[0121] S250. Control the second light-emitting component to emit light according to the current temperature information, so that the light emitted by the second light-emitting component is projected at the second target light-transmitting position, thereby enabling the temperature display area to display the target temperature value.
[0122] Specifically, refer to Figures 2 to 4 , the light-transmitting panel 11 includes a temperature display area 120, the temperature display area 120 has a plurality of second light-transmitting positions 121, the light-emitting lamp components include second lamp components 220 arranged corresponding to the temperature display area 120, and the light emitted by the second lamp components 220 is transmitted through at least one of the plurality of second light-transmitting positions 121. In this way, according to the obtained current temperature information, a position matching the current temperature value can be selected from the plurality of second light-transmitting positions 121 as the second target light-transmitting position, and then by controlling the light emitted by the second lamp component to be projected at the second target light-transmitting position, the temperature display area 120 can display the target temperature value matching the current temperature, so that the user can more clearly understand the outdoor temperature situation and facilitate the user to make preparations before entering the outdoor environment.
[0123] In addition, when the light-transmitting panel 11 simultaneously has a weather display area 110 and a temperature display area 120, the display device can control the current weather condition to be displayed in the weather display area 110 and the current temperature condition to be displayed in the temperature display area 120, providing richer information for the user, enabling the user to more clearly understand the outdoor environmental situation, and facilitating the user to make sufficient preparations before entering the outdoor environment.
[0124] Of course, in other embodiments, it may also be that the light-transmitting panel 11 includes a date and time display area for displaying the date of the current day and the real-time time. The time can be displayed in the form of numbers or a dial. The date and time display area can be formed separately on the light-transmitting panel 11 or arranged in different areas of the light-transmitting panel 11 in combination with the weather display area 110 and the temperature display area 120. In this way, different light-emitting lamp components can be controlled to work to display richer information.
[0125] Specifically, the temperature display area 120 is provided with a plurality of through holes 122 arranged in a rectangular array, and the display device further includes a plurality of second light guides 320 arranged relative to the temperature display area 120, and the plurality of second light guides 320 are arranged to form a plurality of spaced "日" characters, and the through holes 122 opposite to the second light guides 320 are second light transmission positions 121, and corresponding to a second light guide 320, at least one second lamp 220 is provided. In this way, the second lamp 220 opposite to the second target light transmission position can be controlled to emit light, and the second lamps 220 opposite to other second light transmission positions 121 can not emit light, thereby displaying a temperature value matching the current temperature.
[0126] It should be noted that at least every 7 second light guides 320 are assembled to form a "日" shape, so that each "日" shape has 7 sides, which is actually similar to the shape of the number "8". The second light members 220 corresponding to the 7 sides are controlled to be switched on or off, so that the numbers 0 to 9 can be displayed. Among them, corresponding to one side of the "日" shape, a strip-shaped through hole 122 can be set, that is, only one second light-transmitting position 121 is formed, or multiple through holes 122 arranged in strips are formed, that is, multiple second light-transmitting positions 121 distributed in strips are formed. Multiple second light guides 320 can form two "日" shapes, or three "日" shapes, and a point is set between the second "日" shape and the third "日" shape, that is, a temperature value with a decimal point is displayed. In addition, the second lamp 220 can emit light of different colors to represent the positive and negative temperature values. A through hole 122 in the shape of a minus sign, or a plurality of through holes 122 arranged horizontally, can be provided before the first "日" shape, and corresponding lamps and light guides can be provided to display a minus sign when the temperature value is negative.
[0127] It can be understood that the light-emitting side of the second light guide member 320 is disposed opposite to the light-transmitting panel 11, and the light-incident side of the second light guide member 320 is opposite to the light-emitting side of the second lamp member 220. After the light of the second lamp member 220 is projected onto the second light guide member 320, the second light guide member 320 can efficiently guide the light to the corresponding second light-transmitting position 121, and at the same time, can effectively distribute the light of the second lamp member 220 evenly on the surface of the second light guide member 320 close to the light-transmitting panel 11, avoiding the phenomenon of too high or too low local brightness. In addition, since the second light guide member 320 can reliably guide the light, the installation position of the second lamp member 220 can be relatively flexible. The second lamp member 220 can be opposite to the corresponding "day"-shaped side, or can be appropriately offset. Among them, a plurality of through holes 122 arranged in a rectangular array are provided in the temperature display area 120, so that the appearance of the light-transmitting panel 11 in the temperature display area 120 has high consistency, and it is also convenient for the processing of the light-transmitting panel 11. Only a part of the through holes 122 provided corresponding to the second light guide member 320 serve as the second light-transmitting positions 121. In fact, this part of the through holes 122 will also correspondingly form a plurality of "day" shapes, and such a structure is relatively easy to form among the plurality of through holes 122 arranged in a rectangular array.
[0128] Of course, in other embodiments, it may also be that by providing a plurality of "day"-shaped transparent areas in the temperature display area 120 and correspondingly providing lamp members to display temperature values.
[0129] Further, the second light guide member 320 is disposed on the side of the corresponding second lamp member 220 close to the light-transmitting panel 11, and the second light guide member 320 is in a gradually expanding shape in the direction from the second lamp member 220 to the light-transmitting panel 11. That is, the length of the second light guide member 320 on the light-incident side is smaller, and the length on the light-emitting side is larger. The light-emitting sides of the seven second light guide members 320 are joined together to form a "day" shape. In this way, for a corresponding second light guide member 320, a smaller number of second lamp members 220 can be provided. By guiding the light emitted by the second lamp members 220 through the gradually expanding second light guide member 320, a bar-shaped display effect can also be formed, thereby further reducing the design cost of the display device. Of course, in other embodiments, the size of the second light guide member 320 may also be uniform in the direction from the light-incident side to the light-emitting side.
[0130] In one embodiment, step S250 includes the steps of:
[0131] S251. After controlling the second lamp member to emit light in a breathing and flashing manner for a preset time according to the current temperature information, control the corresponding second lamp member to maintain the on state.
[0132] That is, in step S251, before the second light element displays the target temperature value in a constantly-on state, it has a process of breathing and flashing. In this way, the temperature display process can have a dynamic display effect, thereby improving the interaction experience brought to the user. Among them, the preset time for the second light element to breathe and flash can be set by the user. Specifically, the preset time can be 3 to 6 seconds.
[0133] Furthermore, the first light element 210 and the second light element 220 can be configured as light elements capable of emitting multiple colors of light. When the first light element 210 rotates and when the second light element 220 breathes and flashes, the light colors can be synchronously switched to provide a more dazzling display effect. After finally freezing to the corresponding light-transmitting position, the first light element 210 and the second light element 220 are then switched to a more comfortable light color, such as white light, to avoid causing visual oppression to the user or causing visual fatigue to the user.
[0134] This application also proposes a vehicle that satisfies at least one of the following:
[0135] First, the vehicle includes the aforementioned display device;
[0136] Second, the vehicle includes a car machine. The car machine includes a memory and a processor. The memory is configured to store a computer program. When the processor executes the computer program, it implements the aforementioned display control method.
[0137] Therefore, the vehicle adopts all the technical solutions of the above-mentioned all embodiments and at least has all the beneficial effects brought by the technical solutions of the above-mentioned embodiments, which will not be elaborated here one by one.
[0138] The above is only an exemplary embodiment of the present invention and does not limit the protection scope of the present invention. Any equivalent structural transformation made under the technical concept of the present invention by using the content of the specification and drawings of the present invention, or directly / indirectly applied to other related technical fields, is included in the protection scope of the present invention.
Claims
1. A display device, characterized in that, include: A housing, the housing comprising a light-transmitting panel, the light-transmitting panel having a plurality of light-transmitting positions; A light-emitting lamp is installed in the housing, and the light emitted by the light-emitting lamp is configured to be transmitted through at least one position selected from the plurality of light-transmitting positions.
2. The display device according to claim 1, characterized in that, The light-transmitting panel includes a weather display area, the weather display area has a plurality of first light-transmitting positions, each of the first light-transmitting positions is configured with a weather pattern, the light-emitting lamp includes a first lamp arranged corresponding to the weather display area, and the light emitted by the first lamp is configured to be transmitted at one of the plurality of first light-transmitting positions.
3. The display device according to claim 2, characterized in that, The first light-transmitting position is provided with a light-transmitting hole, and the weather pattern is formed in the light-transmitting hole.
4. The display device according to claim 3, wherein The display device further includes a plurality of first light guide members, and a first light guide member corresponds to and covers a light transmission hole at a first light transmission position.
5. The display device according to claim 2, wherein The first lamp component is movably mounted on the shell, and the display device further comprises a driving device mounted on the shell, wherein the driving device is drivingly connected to the first lamp component, thereby driving the first lamp component to move to a position opposite to the corresponding first light-transmitting position.
6. The display device according to claim 5, wherein, The driving device is configured as a motor, and the first lamp component is rotatably mounted on the housing.
7. The display device according to claim 6, wherein The display device further comprises a transmission member, one end of which is fixedly provided with the first lamp member, and the output shaft of the driving device is fixedly connected to the other end of the transmission member.
8. The display device according to any one of claims 1 to 7, characterized in that, The light-transmitting panel includes a temperature display area, the temperature display area has a plurality of second light-transmitting positions, the light-emitting lamp includes a second lamp arranged corresponding to the temperature display area, and the light emitted by the second lamp is transmitted through at least one of the plurality of second light-transmitting positions.
9. The display device according to claim 8, wherein, The temperature display area is provided with a plurality of through holes arranged in a rectangular array, and the display device also includes a plurality of second light guide members arranged relative to the temperature display area, and the plurality of second light guide members are arranged to form a plurality of spaced-apart "日" characters, and the through holes opposite to the second light guide members are the second light-transmitting positions, and corresponding to one of the second light guide members, at least one second lamp member is provided.
10. The display device according to claim 9, wherein The second light guide member is arranged on a side of the corresponding second lamp member close to the light-transmitting panel, and the second light guide member is gradually expanded in a direction from the second lamp member to the light-transmitting panel.
11. A display control method, characterized in that, include: Get target display information; as well as The light emitting lamp is controlled to emit light according to the target display information, so that the light emitted by the light emitting lamp is transmitted through at least one light-transmitting position of the light-transmitting panel.
12. The display control method according to claim 11, wherein The step of obtaining target display information comprises: Get current weather information; The step of controlling the light emitting device to emit light according to the target display information so that the light emitted by the light emitting device is transmitted through at least one light-transmitting position of the light-transmitting panel comprises: Acquire a first target light transmission position according to the current weather information; and The first lamp is controlled to rotate to be opposite to the first target light-transmitting position, so that the light emitted by the first lamp is transmitted through the first target light-transmitting position, thereby causing the weather display area to display the target weather pattern.
13. The display control method according to claim 12, characterized in that, The step of controlling the first lamp to rotate to be opposite to the first target light transmission position comprises: After controlling the first lighting component to rotate a preset number of turns, control the first lighting component to maintain a position opposite to the first target light-transmitting position.
14. The display control method according to claim 13, wherein The display control method further includes: During the process of the first lighting component rotating a preset number of turns, control the first lighting component to switch between the on state and the off state a preset number of times; Wherein, each time the first lighting component is in the on state, it can be opposite to a different first light-transmitting position; And / or, the display control method further includes: During the process of the first lighting component rotating a preset number of turns, control the speaker to play a preset audio.
15. The display control method according to any one of claims 11 to 14, characterized in that, The step of obtaining the target display information includes: Obtain the current temperature information; The step of controlling the light-emitting lighting component to emit light according to the target display information so that the light emitted by the light-emitting lighting component is transmitted at at least one light-transmitting position of the light-transmitting panel includes: Control the second lighting component to emit light according to the current temperature information so that the light emitted by the second lighting component is projected at the second target light-transmitting position, thereby causing the temperature display area to display the target temperature value.
16. The display control method according to claim 15, wherein The step of controlling the second lighting component to emit light according to the current temperature information includes: Control the second lighting component to emit light in a breathing and flashing manner for a preset time according to the current temperature information, and then control the corresponding second lighting component to maintain the on state.
17. A vehicle, characterized in that, Including the display device according to any one of claims 1 to 10; And / or, the vehicle includes a vehicle-mounted computer, the vehicle-mounted computer includes a memory and a processor, the memory is configured to store a computer program, and when the processor executes the computer program, it implements the display control method according to any one of claims 11 to 16.