A vehicle instrument scale layer display component
Patent Information
- Application Number
- CN202522429887.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-17
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-11-17
AI Technical Summary
然而,这种方式结构简单,但显示效果单一、缺乏立体感和层次感
本实用新型是一种车用仪表刻度层次显示组件,指针可于标识块上方对应第二显示区上进行相应迈速的转动过程,结合呈阶梯状依次递增设定的标识块使其具有一定的立体感和层次感,不影响驾驶员对相应迈速进行实时观察和判断的同时可进一步提高其视觉观感,同时可根据行驶速度进行不超过相应迈速下对应区域上分别位于第二通槽下方用于数字显示和第二通孔上多组灯组的逐次亮灭过程,相较于传统的多个刻度的显示方式可方便驾驶员进行观察的同时结合呈阶梯状依次递增设定的标识块,可有效提高标识块相应显示效果的立体感和层次感,另外,可根据显示需求结合相应显示状态灯组可进行不同颜色的设定,具体以图1中为例的显示方式,不超过正常行驶速度所对应区域上的灯组可设置呈绿色进行亮灭,超过正常行驶速度时可根据危险程度分别于对应区域上多组灯组可进行呈黄色和红色的依次亮灭,从而结合相应区域内多组第二通槽和第二通孔的不同显示颜色,进一步提高此种车用仪表刻度层次显示组件的使用灵活性和适用性。
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Figure CN224766489U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of instrumentation, specifically to a scale layer display component for automotive instruments. Background Technology
[0002] With the development of automotive technology, people have increasingly higher requirements for vehicle quality and greater demand for personalization. Traditional automotive instrument displays often use flat printing or a single backlight layer, such as printing scales and numbers on the surface of a light guide plate and providing uniform illumination through bottom LED lights. However, while this method is simple in structure, the display effect is monotonous and lacks a sense of depth and layering. Utility Model Content
[0003] The purpose of this utility model is to provide a vehicle instrument scale layer display component, which can give it a certain sense of three-dimensionality and layering, without affecting the driver's real-time observation and judgment, while further improving its visual appeal, and enhancing its flexibility and applicability.
[0004] The technical solution adopted by this utility model to solve the above problems is: A vehicle instrument scale layer display component includes a light guide plate and a pointer. The light guide plate includes a base plate and a stepped marker block arranged around it. The pointer is located above the marker block and is rotatably connected to the light guide plate. A first display area and a second display area are respectively formed on the base plate and the marker block.
[0005] Preferably, a groove is provided at the bottom of the identification block at a position corresponding to the second display area. The groove is set in a stepped shape and forms multiple slots through multiple sets of ribs.
[0006] Preferably, the marking blocks are provided in multiple sets and can be detachably mounted on the substrate.
[0007] Preferably, it also includes a housing for mounting and fixing the light guide plate, the housing comprising a first cover and a second cover located on the upper and lower sides of the light guide plate respectively and detachably connected.
[0008] Compared with the prior art, this utility model has the following advantages and effects: This utility model is a vehicle instrument scale layered display component. The pointer can rotate at a corresponding speed on the second display area above the indicator blocks. Combined with the stepped, progressively increasing indicator blocks, it provides a certain three-dimensional and layered effect, enhancing the driver's visual perception without hindering real-time observation and judgment of the corresponding speed. Simultaneously, multiple light groups located below the second through slot and on the second through hole in the corresponding area can sequentially illuminate and extinguish according to the driving speed, not exceeding the corresponding speed. Compared to traditional multi-scale display methods, this facilitates driver observation. Furthermore, the stepped, progressively increasing indicator blocks effectively improve the three-dimensionality and layered effect of the indicator display. Additionally, different colors can be set according to display requirements and corresponding display status light groups. Figure 1 Taking the example of the display method, the light groups in the area corresponding to the normal driving speed can be set to turn green and turn off. When the normal driving speed is exceeded, multiple light groups in the corresponding area can turn on and off in sequence in yellow and red according to the degree of danger. In combination with the different display colors of multiple second through slots and second through holes in the corresponding area, the flexibility and applicability of this kind of vehicle instrument scale layer display component are further improved. Attached Figure Description
[0009] Figure 1 This is a schematic diagram of the overall structure of a vehicle instrument scale layer display component according to an embodiment of the present invention.
[0010] Figure 2-3 This is a structural disassembly diagram of a vehicle instrument scale layer display component according to an embodiment of this utility model.
[0011] Figure numbers: Light guide plate 100, pointer 110, substrate 1, mounting hole 11, groove edge 12, partition 121, slot 122, groove body 13, second mounting hole 14, marker block 2, slot grid 20, groove 21, rib plate 22, cover body 23, connecting hole 230, outer edge plate 24, plug 25, first display area 3, through groove 31, through hole 32, second display area 4, second through groove 41, second through hole 42, housing 5, first cover 51, third mounting hole 510, second cover 52, first protrusion 520, top cover 53, plate body 530, bottom cover 54, second protrusion 541, slot hole 542. Detailed Implementation
[0012] The present invention will now be described in detail with reference to the accompanying drawings and through embodiments. The following embodiments are explanations of the present invention, but the present invention is not limited to the following embodiments.
[0013] See Figure 1-3This embodiment relates to a scale layer display component for automotive instruments, including a light guide plate 100 and a pointer 110. The light guide plate 100 includes a base plate 1 and a stepped marker block 2 arranged around it. The pointer 110 is located above the marker block and is rotatably connected to the light guide plate 100. A first display area 3 and a second display area 4 are respectively opened on the base plate 1 and the marker block 2.
[0014] Specifically in this embodiment, such as Figure 1 The overall structure of this type of automotive instrument scale layer display assembly is shown. The first display area 3 on the base plate 1 of the light guide plate 100 can be configured according to the display requirements of the vehicle model to be installed. Figure 1 For example, the through slot 31 or through hole 32 structure is opened at the corresponding position on the substrate 1. The size and shape of the through slot 31 or through hole 32 can be adapted to the display mark and display screen on the vehicle machine. The second display area 4 on the mark block 2 in the light guide plate 100 can be set with a second through slot 41 opened in a numerical shape as shown in the figure and a second through hole 42 for mounting the lamp group for status display under the corresponding number, according to the display needs and user requirements. At the same time, the top wall of the mark block 2 can be set with a stepped structure that increases or decreases sequentially according to the specific display method and corresponding arrangement rule of the second display area 4. The pointer 110 can be positioned above the marker block 2 and rotated through the mounting hole 11 on the base plate 1. Specifically, the pointer 110 and multiple sets of lamps located below the second through slot 41 and on the second through hole 42 act on the main board commonly used in traditional automotive instruments for driving the pointer 110 and lamps to achieve their rotation and on / off processes respectively. Thus, after this type of automotive instrument scale layer display assembly is installed and connected to the vehicle's infotainment system, the vehicle's status can be flexibly displayed through the first display area 3 and the second display area 4 opened at corresponding positions on the base plate 1 and the marker block 2. Figure 1 Taking the speedometer display as an example, the pointer 110 can rotate above the indicator block 2 on the corresponding second display area 4 to indicate the speed. Combined with the step-like, progressively increasing indicator blocks 2, it provides a certain sense of three-dimensionality and layering, enhancing the driver's visual perception without hindering real-time observation and judgment of the speed. Furthermore, based on the driving speed, multiple light groups located below the second through slot 41 for digital display and on the second through hole 42 in the corresponding area can sequentially illuminate and de-illuminate according to the corresponding speed. Compared to the traditional multi-scale display method, this facilitates driver observation. The step-like, progressively increasing indicator blocks 2 effectively improve the three-dimensionality and layering of the indicator block display. Additionally, different colors can be set according to the display requirements and the corresponding display status light groups. Figure 1Taking the above as an example, the light groups in the area corresponding to the normal driving speed can be set to turn green and turn off when the normal driving speed is exceeded. When the speed exceeds the normal driving speed, multiple light groups in the corresponding area can turn on and off in sequence in yellow and red according to the degree of danger. In combination with the different display colors of multiple second through slots 41 and second through holes 42 in the corresponding area, the flexibility and applicability of this kind of vehicle instrument scale layer display component are further improved.
[0015] A groove 21 is provided at the bottom of the identification block 2 at a position corresponding to the second display area 4. The groove 21 is set in a stepped shape and forms multiple sets of slots 20 through multiple sets of ribs 22. For details, please refer to [link / reference needed]. Figure 3 As shown, the multiple sets of stepped grooves 21 ensure that the thickness of the multiple sets of second through holes 42 and second through slots 41 in the second display area 4 is consistent, reducing the difference in display effect and ensuring the consistency of corresponding display effects such as brightness. At the same time, during installation, the lamp head of the lamp assembly can be placed in the multiple sets of slots 20 formed by multiple sets of ribs 22. Combined with the blocking of the ribs 22, the phenomenon of light leakage between adjacent areas of the lamp assembly can be effectively reduced, further improving the display effect, operational stability and corresponding visual experience of this automotive instrument scale layer display component. In addition, to further reduce the phenomenon of light leakage, an adapter cover 23 can be added to the bottom of the corresponding slot 20. The adapter connection hole 230 for lamp assembly to pass through or be clamped can be opened on the cover 23, thereby effectively improving the convenience and efficiency of lamp assembly installation and meeting different installation needs.
[0016] The identification block 2 is provided in multiple sets and is detachably mounted on the base plate 1, combined with Figure 2 and Figure 3 As shown, the substrate 1 has a groove 12 for mounting multiple sets of marker blocks 2. The groove 12 is divided into multiple sets of slots 13 by a partition 121, which are adapted to the number of marker blocks 2. The bottom of the marker block 2 is surrounded by an outer edge plate 24 adapted to the size of the slot 13. At the same time, multiple sets of plugs 25 are arranged around the bottom of the marker block 2 outside the outer edge plate 24. Multiple sets of adapter slots 122 for inserting the plugs 25 are arranged on the groove 12. When the marker block 2 is installed, its bottom outer edge plate 24 and multiple sets of plugs 25 can be inserted into the slots 13 respectively. The detachable installation process, which allows for insertion into multiple slots 122, facilitates the disassembly, replacement, and cleaning of the marker block 2. The marker block 2 can be configured in multiple groups according to display requirements and corresponding display states. Furthermore, the stepped surfaces corresponding to the multiple second through slots 41 and second through holes 42 in the second display area 4 of the marker block 2 can be divided into the second display area 4 using different colored markings or overall painting. This further enhances the structural detachability and display flexibility of this automotive instrument scale layer display component, meeting diverse display needs.
[0017] This type of automotive instrument scale layer display assembly also includes a housing 5 for mounting and fixing the light guide plate 100. The housing 5 includes a first cover 51 and a second cover 52, which are detachably connected to the upper and lower sides of the light guide plate 100, respectively. Specifically, the first cover 51 and the second cover 52 are configured as hollow cylindrical structures. The top of the first cover 51 and the bottom of the second cover 52 can be installed with bolts to connect the top cover 53 and the bottom cover 54, respectively. A plate 530 made of transparent material such as glass or acrylic sheet is provided between the opening of the top cover 53 and the second cover 52 for blocking. At the same time, multiple sets of mounting and fixing base plates 1 are arranged at the upper and lower ends of the second cover 52. The first protrusion 520 and the second protrusion 541, which act on the bottom of the bottom cover 54 for mounting and fixing with the vehicle's infotainment system, are commonly used for instrument drive displays and other related mainboards and electronic components. These components can be placed and fixed inside the second cover 52 above the bottom cover 54. The slots 542 on the bottom cover 54 facilitate the routing of wiring and connection with corresponding wiring on the vehicle's infotainment system. The corresponding light groups can be initially placed in multiple slots 20 at the bottom of the marking block 2 on the base plate 1, corresponding to the second display area 4. After connection, the light guide plate 100 can be combined with multiple sets of second mounting holes 14 on it for the first protrusion 520 to be fitted and inserted. The installation process involves covering the opening at the bottom. Multiple displays on the vehicle's infotainment system, used for status and indicator displays, can be used within the second cover 52 to display status indicators in the corresponding first through slots 31 and first through holes 32 on the first display area 3 of the substrate 1 in the light guide plate 100. The pointer 110 can then be connected via the mounting hole 11 on the substrate 1 to the corresponding connection structure on the main board within the second cover 52 for its rotation. Finally, using bolts, the first cover 51 can be detachably connected to the second cover 52 above the light guide plate 100 through a third mounting hole 510 at its bottom, which accommodates the first protrusion 520. The housing 5 can be detachably connected via the bottom... The multiple sets of second protrusions 541 at the bottom of the cover 54 are connected to the external threads on them by threaded connection, and are installed and fixed at the corresponding installation position on the vehicle machine. This completes the detachable installation process of the overall structure of this vehicle instrument scale layer display component on the vehicle machine. A plate 530 made of transparent material is provided between the opening of the first cover 51 and the top cover 53 to observe the corresponding display status of the first display area 3 and the second display area 4 on the internal light guide plate 100 and the pointer 110 thereon in real time. The addition of the structure of the housing 5 can further improve the installation convenience and structural detachability of this vehicle instrument scale layer display component, and improve its practicality and applicability.
[0018] The above description in this specification is merely illustrative of the present invention. Those skilled in the art to which this invention pertains may make various modifications or additions to the described specific embodiments or use similar methods to replace them, as long as they do not depart from the content of this specification or exceed the scope defined in the claims, all of which shall fall within the protection scope of this invention.
Claims
1. A vehicle instrument scale layer display component, characterized in that: It includes a light guide plate and a pointer. The light guide plate includes a substrate and a stepped marker block arranged around it. The pointer is located above the marker block and is rotatably connected to the light guide plate. A first display area and a second display area are respectively opened on the substrate and the marker block.
2. The automotive instrument scale layer display component according to claim 1, characterized in that: The bottom of the identifier block has a groove corresponding to the second display area. The groove is set in a stepped shape and forms multiple slots through multiple sets of ribs.
3. The automotive instrument scale layer display component according to claim 1, characterized in that: The aforementioned identification blocks are provided in multiple sets and can be detachably mounted on the substrate.
4. The automotive instrument scale layer display component according to claim 1, characterized in that: It also includes a housing for mounting and fixing the light guide plate, the housing comprising a first cover and a second cover located on the upper and lower sides of the light guide plate respectively and detachably connected.