Externally-embedded display shell
By incorporating multi-directional heat dissipation and ventilation holes in the embedded display casing, the problem of heat accumulation is solved, achieving uniform heat dissipation and structural stability, thereby improving the display's performance and safety.
Patent Information
- Application Number
- CN202422171003.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-09-04
AI Technical Summary
When the space between the monitor casing and the wall is small, existing embedded monitors are prone to heat accumulation and cannot dissipate heat evenly.
An embedded display housing was designed, comprising a port panel, first, second and third heat dissipation sections, and a bracket. By setting heat dissipation holes and ventilation holes in different directions and positions, air circulation is achieved and heat accumulation is avoided.
It achieves uniform heat dissipation of the display, avoids local overheating, improves the stability and structural strength of the device, reduces the risk of electromagnetic interference and vibration damage, and enhances safety and user experience.
Smart Images

Figure CN223488586U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electronic hardware, and in particular to an embedded display housing. Background Technology
[0002] With market demand and the maturity of production technology, visualization functions are being applied in more and more fields, and the demand for monitors, as a major carrier of visualization functions, is also constantly increasing.
[0003] Currently, there are various installation methods for monitors on the market, including recessed monitors. A recessed monitor is a surface-mounted monitor, meaning it is mounted on a wall or other visible surface. When the back of the monitor casing is recessed into the wall, some monitors experience heat buildup due to the close proximity of the casing to the wall, especially when the space between the casing and the wall is small. This results in uneven and ineffective heat dissipation.
[0004] Therefore, it is necessary to provide an embedded display housing that can prevent heat buildup and dissipate heat evenly. Utility Model Content
[0005] The purpose of this invention is to provide an embedded display housing that can prevent heat accumulation and dissipate heat evenly.
[0006] According to one aspect of this application, an external display housing is provided, the display housing comprising:
[0007] Port panel;
[0008] The first heat dissipation part, when viewed along a first direction parallel to the surface of the port panel, is integrally formed on the port panel, and the first heat dissipation part is formed by a row of first heat dissipation holes arranged in sequence.
[0009] The second heat dissipation part, when viewed along a second direction perpendicular to the surface of the port panel, is integrally formed on the port panel, and the second heat dissipation part is formed by a second heat dissipation hole;
[0010] The third heat dissipation part, viewed along a second direction perpendicular to the surface of the port panel, is integrally formed on the port panel and located between the two second heat dissipation parts. The third heat dissipation part is formed by a third heat dissipation hole.
[0011] The bracket is fixedly connected to the port panel. The bracket is provided with ventilation holes. Air inside the display housing enters the bracket through the third heat dissipation hole and flows out of the bracket through the ventilation holes.
[0012] More preferably, the display housing further includes:
[0013] The display panel is fixedly connected to the port panel and is located on the side of the port panel opposite to the bracket.
[0014] More preferably, the display panel includes:
[0015] The display screen is fixedly connected to the surface of the display panel, and the surface is located on the side of the display panel opposite to the port panel.
[0016] More preferably, the display panel further includes:
[0017] The back panel, through which the display panel is fixedly connected to the port panel;
[0018] The frame is fixedly connected to the back panel and the display screen respectively, and is located between the back panel and the display screen;
[0019] The back panel is located on the side of the frame that faces away from the display screen.
[0020] More preferably, the port panel includes:
[0021] The port section is fixedly connected to the port panel;
[0022] A power switch is fixedly connected to the port portion;
[0023] The receiver, viewed along the second direction, is disposed on the surface of the port panel, and the surface is located on the side of the bracket opposite to the port portion;
[0024] The display housing is electrically connected to the outside world through the port portion.
[0025] More preferably, the display housing further includes:
[0026] A port board is fixedly connected to the port section and electrically connected to the port section. The port board is located on the side of the port section opposite to the power switch.
[0027] More preferably, when viewed along the second direction, the port panel is integrally formed with a fixing hole, and the bracket is integrally formed with a limiting part.
[0028] More preferably, the display housing further includes:
[0029] Bolts are inserted sequentially into the limiting part and the fixing hole, and the bracket is fixed to the port panel.
[0030] More preferably, the display housing further includes:
[0031] An anti-theft device is fixedly connected to the port panel and located on the side of the port panel opposite to the display panel;
[0032] The anti-theft component abuts against the bracket, and the anti-theft component is optional. The display housing reinforces the connection between the port panel and the bracket through the anti-theft component.
[0033] More preferably, when viewed along the second direction, the bracket is provided with six integrally formed limiting holes through which the display housing is mounted.
[0034] This utility model has the following beneficial effects:
[0035] Air from inside the display housing enters the bracket through the third heat dissipation hole and flows out of the bracket through the vent hole, thus preventing heat accumulation in the bracket. Furthermore, by providing a first heat dissipation part, a second heat dissipation part, and a third heat dissipation part at different parts of the bracket, the display housing can dissipate heat evenly. Attached Figure Description
[0036] In order to more clearly illustrate the implementation methods of the present application or the technical solutions in the prior art, a brief introduction will be given below to the drawings required for use in the implementation methods or the description of the prior art. Obviously, the drawings described below are only some implementation methods of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0037] Figure 1 This is a three-dimensional structural diagram of the display housing according to one embodiment of the present utility model;
[0038] Figure 2 This is an enlarged planar view of the first heat dissipation part in the display housing according to an embodiment of the present invention;
[0039] Figure 3 This is an enlarged perspective view of the second heat dissipation part in the display housing according to an embodiment of the present invention;
[0040] Figure 4 This is an enlarged perspective view of the third heat dissipation part in the display housing according to an embodiment of the present invention;
[0041] Figure 5 This is a three-dimensional structural diagram of the bracket in the display housing according to one embodiment of the present utility model;
[0042] Figure 6 This is a three-dimensional structural diagram of the display panel in the display housing according to one embodiment of the present invention;
[0043] Figure 7 This is a schematic diagram of the planar structure of the display housing according to one embodiment of the present invention;
[0044] Figure 8 This is a schematic diagram of the internal planar structure of the port panel in the display housing according to one embodiment of the present invention;
[0045] Figure 9 This is an exploded view of the port panel and the bracket in a display housing according to an embodiment of the present invention;
[0046] Reference numerals: 100, Monitor housing; 10, Port panel; 11, Port section; 12, Power switch; 13, Receiver; 14, Mounting hole; 20, First heat dissipation section; 21, First heat dissipation hole; 30, Second heat dissipation section; 31, Second heat dissipation hole; 40, Third heat dissipation section; 41, Third heat dissipation hole; 50, Bracket; 51, Ventilation hole; 52, Limiting section; 53, Limiting hole; 60, Display panel; 61, Display screen; 62, Back panel; 63, Frame; 70, Bolt; 80, Port board; 90, Anti-theft component; F1, First direction; F2, Second direction. Detailed Implementation
[0047] To facilitate understanding of the present application, a more comprehensive description of the present application will be provided below with reference to the accompanying drawings. The accompanying drawings illustrate preferred embodiments of the present application. However, the present application may be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the disclosure of the present application.
[0048] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly attached to the other element or there may be an intermediate element. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or there may be an intermediate element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only.
[0049] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this application pertains. The terms used herein in the specification of this application are intended only to describe specific embodiments and are not intended to limit this application. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0050] Please refer to Figure 1 - Figure 9One embodiment of the present invention provides an embedded display housing 100, the display housing 100 including: a port panel 10, a first heat dissipation part 20, a second heat dissipation part 30, a third heat dissipation part 40 and a bracket 50.
[0051] Viewed along a first direction F1 parallel to the surface of the port panel 10, the first heat dissipation part 20 is integrally formed on the port panel 10, and the first heat dissipation part 20 is formed by a row of first heat dissipation holes 21. Viewed along a second direction F2 perpendicular to the surface of the port panel 10, the second heat dissipation part 30 is integrally formed on the port panel 10, and the second heat dissipation part 30 is formed by second heat dissipation holes 31. Viewed along a second direction F2 perpendicular to the surface of the port panel 10, the third heat dissipation part 40 is integrally formed on the port panel 10 and located between the two second heat dissipation parts 30, and the third heat dissipation part 40 is formed by third heat dissipation holes 41. The bracket 50 is fixedly connected to the port panel 10, and the bracket 50 is provided with a vent hole 51. Air inside the display housing 100 enters the bracket 50 through the third heat dissipation hole 41 and flows out of the bracket 50 through the vent hole 51.
[0052] The first heat dissipation section 20, the second heat dissipation section 30, and the third heat dissipation section 40 are respectively arranged in different directions and at different positions with first heat dissipation holes 21, second heat dissipation holes 31, and third heat dissipation holes 41. This design helps the monitor achieve more uniform heat dissipation. The heat dissipation holes at different positions can more effectively guide hot air out of the monitor and avoid local overheating. The vent holes 51 of the bracket 50 are designed to allow air circulation. Hot air inside the monitor enters the bracket 50 through the third heat dissipation hole 41 and then exits through the vent holes 51, forming a natural convection cooling effect. This design not only utilizes natural airflow but also prevents hot air from accumulating inside the monitor. By using the heat dissipation holes and vent holes 51 in combination, the entire system can maintain continuous airflow, thereby more effectively removing the heat generated by the monitor.
[0053] More preferably, the display housing 100 further includes a display panel 60. The display panel 60 is fixedly connected to the port panel 10 and is located on the side of the port panel 10 opposite to the bracket 50.
[0054] By fixing the display panel 60 to the port panel 10 and positioning it on the side opposite to the bracket 50, physical isolation between the display panel 60 and the ports and heat dissipation components is ensured. This partitioned design allows the display portion of the monitor and other functional components to operate independently, avoiding mutual interference and improving the stability and reliability of the device. Separating the display panel 60 from the port panel 10 allows the heat dissipation unit to centrally handle the heat generated by the monitor without affecting the operation of the display panel 60. This design effectively dissipates heat from inside the monitor, preventing the display panel 60 from being affected by heat and ensuring its normal display effect. This design also makes the installation of the display panel 60 more stable. Since the display panel 60 is fixed to the port panel 10, and the port panel 10 is connected to the bracket 50, this multi-layered structure provides additional support and fixation, increasing the structural strength of the monitor and reducing the risk of damage to the display screen 61 from vibration or external forces.
[0055] More preferably, the display panel 60 includes a display screen 61. The display screen 61 is fixedly connected to the surface of the display panel 60, and the surface is located on the side of the display panel 60 opposite to the port panel 10.
[0056] By fixing the display screen 61 to the surface of the display panel 60 and positioning it on the side of the display panel 60 away from the port panel 10, the front of the display screen 61 faces the user. Placing the display screen 61 away from the port panel 10 effectively avoids interference from functional components such as ports, power switches 12, and heat dissipation vents. This layout ensures the display screen 61 is unaffected by other components, reducing potential electromagnetic interference and heat effects, and guaranteeing image quality and display effect. The integrated fixing of the display screen 61 to the display panel 60 and its location away from the port panel 10 enhances the structural stability of the entire display. The relatively fixed position of the display screen 61 reduces the risk of image jitter or display damage caused by structural movement or external vibration. This layout design separates the functional areas of the display screen 61 and the port panel 10, facilitating easier operation during installation and maintenance. The arrangement of the display screen 61 away from the port panel 10 also helps to separate the display screen 61 from heat dissipation components, preventing performance degradation or damage due to overheating. This design helps to better manage the internal temperature distribution of the display.
[0057] More preferably, the display panel 60 further includes a back panel 62 and a bezel 63.
[0058] The display panel 60 is fixedly connected to the port panel 10 via the back plate 62. The bezel 63 is fixedly connected to both the back plate 62 and the display screen 61, and is located between the back plate 62 and the display screen 61. The back plate 62 is located on the side of the bezel 63 facing away from the display screen 61.
[0059] The display panel 60 is fixedly connected to the port panel 10 via the back plate 62, making the entire structure more stable and improving the overall strength and durability of the display. The fixed connection between the back plate 62, the bezel 63, and the display screen 61 effectively protects the display screen 61 from damage caused by external impacts or vibrations. Simultaneously, the design of the back plate 62 provides additional support for the display screen 61, further enhancing its reliability. Furthermore, the back plate 62 is located on the side of the bezel 63 away from the display screen 61, effectively isolating the display screen 61 from the external environment, reducing interference, and aiding in heat dissipation management.
[0060] More preferably, the port panel 10 includes: a port section 11, a power switch 12, and a receiver 13.
[0061] The port portion 11 is fixedly connected to the port panel 10. The power switch 12 is fixedly connected to the port portion 11. Viewed along the second direction, the receiver 13 is disposed on the surface of the port panel 10, and the surface is located on the side of the bracket 50 opposite to the port portion 11. The display housing 100 is electrically connected to the outside world through the port portion 11.
[0062] This design facilitates unified management and connection of various monitor interfaces, including power, video signals, and audio, reducing internal connection complexity and creating a cleaner, more organized interface layout for easier user operation. Integrating the power switch 12 with the port section 11 allows for more convenient user control of the monitor's power on and off. The centralized operation area not only improves the user experience but also reduces the risk of accidental operation from dispersed switch designs. This structural design simplifies the connection between the monitor and external devices, making the connection more stable and reliable while reducing potential signal interference or power loss. This connection method contributes to improved monitor efficiency and stability.
[0063] Integrating the receiver 13 onto the surface of the port panel 10 helps maintain the simplicity of the display's external structure while facilitating the reception of various signals (such as remote control signals, wireless signals, etc.), thus improving the performance and stability of the receiver 13. Placing the receiver 13 away from the port section 11 avoids interference between the port section 11 and the receiver 13, reducing electromagnetic interference during signal transmission and ensuring the quality of the received signal. Furthermore, this design prevents port connection cables from obstructing the receiver 13, thereby enhancing user convenience.
[0064] More preferably, when viewed along the second direction F2, the port panel 10 is integrally formed with a fixing hole 14, and the bracket 50 is integrally formed with a limiting part 52.
[0065] By directly forming the mounting holes 14 on the port panel 10, the design and manufacturing process of the components are simplified, reducing the use of additional parts. Simultaneously, the mounting holes 14 ensure that the monitor housing 100 is securely fixed during installation, preventing loosening or displacement and improving the overall stability of the monitor. The design of the limiting part 52 works in conjunction with the mounting holes 14 to ensure accurate positioning of the monitor housing 100 during installation, preventing displacement of the monitor during use. Furthermore, the limiting part 52 also provides support and distributes stress, further enhancing the stability of the monitor housing 100.
[0066] More preferably, the display housing 100 further includes a bolt 70. The bolt 70 is inserted sequentially into the limiting part 52 and the fixing hole 14, thereby fixing the bracket 50 to the port panel 10.
[0067] The use of bolts 70 effectively and securely connects the bracket 50 to the port panel 10, preventing loosening or displacement during use. This also ensures the overall stability of the monitor housing 100. Bolts 70, through the engagement of the limiting part 52 and the fixing hole 14, ensure that the bracket 50 and the port panel 10 maintain the correct position and alignment during installation. This design simplifies the installation process while improving installation accuracy and consistency. The use of bolts 70 makes the connection between the bracket 50 and the port panel 10 more detachable. When maintenance, repair, or replacement of parts is required, bolts 70 can be easily removed, allowing for easy disassembly and reassembly of the monitor housing 100.
[0068] More preferably, the display housing 100 further includes a port board 80. The port board 80 is fixedly connected to the port portion 11 and electrically connected to the port portion 11, and the port board 80 is located on the side of the port portion 11 opposite to the power switch 12.
[0069] Fixing the port board 80 to the side of the port section 11 opposite to the power switch 12 helps to centralize various ports and electrical connection components in one area. This centralized layout simplifies cable management, reduces clutter, and improves the overall aesthetics. By centralizing the port board 80 and port section 11, the space behind the display can be effectively utilized. This layout reduces space occupation, making the port panel 10 appear more compact, which is especially important in space-constrained environments.
[0070] More preferably, when viewed along the second direction F2, the bracket 50 is provided with six integrally formed limiting holes 53 through which the display housing 100 is mounted.
[0071] The six positioning holes 53 provide more mounting points, allowing for a more even distribution of the monitor housing 100's weight compared to fewer mounting points. This enhances the overall stability of the monitor and reduces wobbling or loosening caused by vibration or other external forces. Multiple positioning holes 53 also offer greater flexibility in installation location, allowing for selection of the most suitable position based on actual needs. This flexibility helps adapt to different installation environments or conditions, facilitating adjustments and optimization of the monitor housing 100's installation. The one-piece molded positioning hole design simplifies the installation process, reducing the need for additional mounting components or accessories. These positioning holes 53 allow installers to complete installation more quickly and ensure accurate alignment of all bolts 70 or fasteners. The multiple positioning holes 53 provide different mounting position options, facilitating operation when the monitor housing 100 requires adjustment or maintenance. The position of the bolts 70 can be adjusted to accommodate different maintenance needs or adjust the monitor's mounting angle.
[0072] More preferably, the display housing 100 further includes an anti-theft component 90. The anti-theft component 90 is fixedly connected to the port panel 10 and located on the side of the port panel 10 opposite to the display panel 60. The anti-theft component 90 abuts against the bracket 50, and the anti-theft component 90 is optional. The display housing 100 reinforces the connection between the port panel 10 and the bracket 50 through the anti-theft component 90.
[0073] The anti-theft component 90 is fixedly connected to the port panel 10 and abuts against the bracket 50, effectively preventing the monitor housing 100 from being disassembled or stolen after installation. This design provides a physical protection mechanism, reducing the risk of the monitor being stolen in public or easily accessible locations. The anti-theft component 90 not only provides additional security but also reinforces the connection between the port panel 10 and the bracket 50. This reinforcement effectively reduces structural loosening caused by use or external forces, thereby enhancing the overall stability and durability of the monitor housing 100. The design of the anti-theft component 90 makes the installation and removal process of the monitor housing 100 more complex, preventing unauthorized personnel from easily disassembling or accessing the monitor's internal components. This is particularly important for locations requiring high security, such as public display areas or commercial environments. The optional functionality of the anti-theft component 90 allows users to decide whether to install it based on specific needs, providing flexibility. Users can install the anti-theft component 90 in environments requiring higher security and choose not to install it in other environments, thus adjusting the security level according to actual conditions. In addition to its anti-theft function, the anti-theft component 90 also helps prevent physical damage. The anti-theft component 90, by reinforcing the connection, reduces friction or impact between the monitor housing 100 and the bracket 50, protecting the overall structure of the monitor from damage. By making the anti-theft component 90 an optional accessory, installers can easily decide whether to use the anti-theft function when installing the monitor housing 100. This design simplifies the installation process and provides users with more options to adapt to different installation environments and security needs.
[0074] In this way, air inside the display housing 100 enters the bracket 50 through the third heat dissipation hole 41 and flows out of the bracket 50 through the vent hole 51, so that the display housing 100 avoids heat accumulation in the bracket 50. Furthermore, by providing a first heat dissipation part 20, a second heat dissipation part 30, and a third heat dissipation part 40 at different parts of the bracket 50, the display housing 100 can dissipate heat evenly.
[0075] The above-described embodiments merely represent several embodiments of the present application. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that a person skilled in the art may make various modifications and improvements without departing from the spirit of the present application, and such modifications and improvements are all within the scope of protection of the present application.
Claims
1. An external display housing, characterized in that, The display housing includes: Port panel; The first heat dissipation part, when viewed along a first direction parallel to the surface of the port panel, is integrally formed on the port panel, and the first heat dissipation part is formed by a row of first heat dissipation holes arranged in sequence. The second heat dissipation part, when viewed along a second direction perpendicular to the surface of the port panel, is integrally formed on the port panel, and the second heat dissipation part is formed by a second heat dissipation hole; The third heat dissipation part, viewed along a second direction perpendicular to the surface of the port panel, is integrally formed on the port panel and located between the two second heat dissipation parts. The third heat dissipation part is formed by a third heat dissipation hole. The bracket is fixedly connected to the port panel. The bracket is provided with ventilation holes. Air inside the display housing enters the bracket through the third heat dissipation hole and flows out of the bracket through the ventilation holes.
2. The embedded display housing according to claim 1, characterized in that, The display housing also includes: The display panel is fixedly connected to the port panel and is located on the side of the port panel opposite to the bracket.
3. An embedded display housing according to claim 2, characterized in that, The display panel includes: The display screen is fixedly connected to the surface of the display panel, and the surface is located on the side of the display panel opposite to the port panel.
4. An embedded display housing according to claim 3, characterized in that, The display panel also includes: The back panel, through which the display panel is fixedly connected to the port panel; The frame is fixedly connected to the back panel and the display screen respectively, and is located between the back panel and the display screen; The back panel is located on the side of the frame that faces away from the display screen.
5. An embedded display housing according to claim 1, characterized in that, The port panel includes: The port section is fixedly connected to the port panel; A power switch is fixedly connected to the port portion; The receiver, viewed along the second direction, is disposed on the surface of the port panel, and the surface is located on the side of the bracket opposite to the port portion; The display housing is electrically connected to the outside world through the port portion.
6. An embedded display housing according to claim 5, characterized in that, The display housing also includes: A port board is fixedly connected to the port section and electrically connected to the port section. The port board is located on the side of the port section opposite to the power switch.
7. An embedded display housing according to claim 1, characterized in that, Viewed along the second direction, the port panel is integrally formed with a fixing hole, and the bracket is integrally formed with a limiting part.
8. An embedded display housing according to claim 7, characterized in that, The display housing also includes: Bolts are inserted sequentially into the limiting part and the fixing hole, and the bracket is fixed to the port panel.
9. An embedded display housing according to claim 2, characterized in that, The display housing also includes: An anti-theft device is fixedly connected to the port panel and located on the side of the port panel opposite to the display panel; The anti-theft component abuts against the bracket, and the anti-theft component is optional. The display housing reinforces the connection between the port panel and the bracket through the anti-theft component.
10. An embedded display housing according to claim 1, characterized in that, Viewed along the second direction, the bracket is provided with six integrally formed limiting holes for mounting the display housing.