Monitor shell and monitor

By employing plug-in and snap-fit ​​designs within the monitor housing, the problem of inconvenient assembly of traditional baby monitors is solved, enabling rapid alignment and locking, and improving assembly efficiency and connection reliability.

CN224068737UActive Publication Date: 2026-03-31SHENZHEN YINGPAI TECHNOLOGY CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-28
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Traditional baby monitors are inconvenient to assemble, increasing the difficulty of assembly.

Method used

A monitor housing is designed, employing a first connecting component and a second connecting component, including a plug and a fastener, which enable quick alignment and locking of the housing, simplifying the assembly process.

Benefits of technology

It improves the assembly efficiency and reliability of the monitor housing, ensures tight housing connections, simplifies the assembly process, and enhances the overall structural robustness and aesthetics.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of monitors, and particularly relates to a monitor shell and a monitor, the monitor shell comprises a first shell, a second shell, a first connecting assembly and a second connecting assembly, the first shell is provided with a first side edge; the second shell is provided with a second side edge abutting against the first side edge. The first connecting assembly is arranged between the first side edge and the second side edge so as to lock the first shell and the second shell in the direction perpendicular to the assembling direction of the first shell and the second shell. The second connecting assembly is arranged between the first side edge and the second side edge so as to achieve alignment of the first shell and the second shell in the assembling direction. Through locking of the first connecting assembly and alignment of the second connecting assembly, assembling of the first shell and the second shell can be more convenient and faster, and the assembling efficiency of the first shell and the second shell is improved.
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Description

Technical Field

[0001] This application belongs to the field of monitor technology, specifically relating to a monitor housing and a monitor. Background Technology

[0002] In modern parenting, baby monitors have become an indispensable tool for many families. Through a variety of functions, they provide parents with a convenient, safe, and reassuring parenting experience. Baby monitors can transmit sound and images from the baby's room in real time, allowing parents to stay informed about their baby's condition.

[0003] However, traditional baby monitors are inconvenient to assemble, which increases the difficulty of assembling baby monitors. Utility Model Content

[0004] The purpose of this application is to provide a solution to the problem that the existing technology is inconvenient to assemble, which increases the difficulty of assembling baby monitors.

[0005] A first aspect of this application provides a monitor housing, comprising: a first housing having a first side edge; a second housing having a second side edge abutting against the first side edge; a first connecting assembly disposed between the first side edge and the second side edge to lock the first housing and the second housing in an assembly direction perpendicular to the first housing and the second housing; and a second connecting assembly disposed between the first side edge and the second side edge to align the first housing and the second housing in the assembly direction.

[0006] In one exemplary embodiment of this application, the first connection component includes a plug and a fastening member corresponding to the plug, the plug being disposed in the first housing and the fastening member being disposed in the second housing.

[0007] In one exemplary embodiment of this application, the fastening member includes a reinforcing rib and a female buckle, the female buckle being disposed on the side of the reinforcing rib away from the second housing and extending out of the second housing; and / or, the insertion member includes a connecting rib and a male buckle, the male buckle being disposed on the side of the connecting rib away from the first housing, the male buckle being inserted into the female buckle to connect and fasten the first housing and the second housing.

[0008] In one exemplary embodiment of this application, the first connecting component further includes a limiting block extending along the assembly direction, and the limiting block and the plug are spaced apart at the first side edge.

[0009] In one exemplary embodiment of this application, the first connecting component further includes a mounting groove disposed in the first housing, the mounting groove extending along the assembly direction, and at least one of the plug-in members being disposed in the mounting groove.

[0010] In one exemplary embodiment of this application, the second connection component includes a first alignment member and a second alignment member. One of the first housing and the second housing is provided with the first alignment member, and the other is provided with the second alignment member. When the first housing and the second housing are fastened together, the first side edge abuts against the second side edge, and the first alignment member and the second alignment member are aligned and connected.

[0011] In one exemplary embodiment of this application, the first alignment member is disposed on the first housing and extends out of the first housing; the second alignment member is disposed on the second housing, and when the first housing and the second housing are fastened together, the first alignment member abuts against the second alignment member, and / or the first alignment member extends into the second alignment member.

[0012] In one exemplary embodiment of this application, the first housing has an inclined surface on the side away from the second housing, an avoidance window is provided on the inclined surface, and a shielding member is provided on the side of the inclined surface facing the second housing, the shielding member being located below the avoidance window; and / or the second housing has a first mounting member, the first mounting member having an annular mounting cavity extending in the assembly direction.

[0013] A second aspect of this application provides a monitor, characterized in that it includes an image acquisition component and a monitor housing as described in any one of the preceding claims, wherein the image acquisition component is disposed in an accommodating cavity formed by the first housing and the second housing.

[0014] The monitor housing and monitor of the embodiments of this application have at least the following beneficial effects:

[0015] In this embodiment, both the first connecting component and the second connecting component are disposed between the first side edge of the first housing and the second side edge of the second housing. Thus, when the first housing and the second housing are fastened together, the second connecting component can be used to achieve rapid alignment of the first housing and the second housing in their assembly direction, shortening the alignment time of the two housings, making assembly more convenient, and effectively improving the assembly efficiency of the housing. At the same time, the first connecting component can be used to lock the first housing and the second housing in the vertical assembly direction, improving the assembly reliability and assembly firmness of the housing.

[0016] Other features and advantages of this application will become apparent from the following detailed description, or may be learned in part from practice of this application.

[0017] It should be understood that the above general description and the following detailed description are exemplary and explanatory only, and do not limit this application. Attached Figure Description

[0018] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application. It is obvious that the drawings described below are merely some embodiments of this application, and those skilled in the art can obtain other drawings based on these drawings without any inventive effort.

[0019] Figure 1 A schematic diagram of the structure of a monitor provided in an embodiment of this application is shown.

[0020] Figure 2 An exploded view of the monitor provided in an embodiment of this application is shown.

[0021] Figure 3 A schematic diagram showing the disassembled structure of the first and second housings provided in an embodiment of this application is shown.

[0022] Figure 4 A schematic cross-sectional view of the monitor housing provided in an embodiment of this application is shown.

[0023] Figure 5 A schematic diagram of the structure of the first housing provided in an embodiment of this application is shown.

[0024] Figure 6 A schematic diagram of the structure provided in the embodiment of this application shows that the inner wall of the first housing has a connector.

[0025] Figure 7 The diagram shows a schematic structural view of the first housing provided in an embodiment of this application from the right side.

[0026] Figure 8 A schematic diagram of the structure provided in the embodiment of this application shows that a limiting post is provided on the inner wall of the first housing.

[0027] Figure 9 It shows Figure 8 Enlarged structural diagram of the connector at point A.

[0028] Figure 10 A schematic diagram of the structure provided in the embodiment of this application shows a second mounting component provided on the inner wall of the first housing.

[0029] Figure 11 A schematic diagram of the structure of the second housing provided in an embodiment of this application is shown.

[0030] Figure 12 A schematic diagram of the structure provided in the embodiment of this application shows that a limiting block is provided on the inner wall of the second housing.

[0031] Figure 13A schematic diagram of the structure provided in this application embodiment shows that the outer wall of the second housing has sound outlet holes and heat dissipation holes.

[0032] Explanation of reference numerals in the attached figures:

[0033] 10. Monitor;

[0034] 100. Monitor housing;

[0035] 110. First housing; 111. First side edge; 112. Inclined surface; 113. Clearance window; 114. Covering component; 115. First anti-slip part; 116. Limiting groove;

[0036] 120. Second housing; 121. Second side edge; 122. First mounting component; 1220. Annular mounting cavity; 123. Sound outlet; 124. Second anti-slip part; 125. Limiting strip; 126. Heat dissipation hole; 127. Limiting block; 128. Dummy hole;

[0037] 131. Connector; 1310. Male snap-fit; 1311. Abutment surface; 1312. Connecting rib; 1313. First inclined surface; 1314. Flat surface; 1315. Second inclined surface; 132. Fastener; 1320. Female snap-fit; 1321. Reinforcing rib; 133. Limiting block; 134. Mounting groove;

[0038] 141. First alignment component; 1410. First adapter post; 1411. Second adapter post; 142. Second alignment component; 1420. First fastening post; 1421. Second fastening post;

[0039] 150. Limiting post; 160. Limiting hole; 170. Second mounting component; 171. Connecting post; 172. Reinforcing block;

[0040] 20. Image acquisition component; 210. Rotating ball head; 220. Image acquisition element; 221. Circuit board; 222. Camera; 30. First driving element; 310. First driving body; 320. First output shaft; 40. Second driving element; 50. Speaker; 60. Mounting plate; 70. Bottom shell; 710. Blocking plate; 80. Detection element. Detailed Implementation

[0041] Exemplary embodiments will now be described more fully with reference to the accompanying drawings. However, these exemplary embodiments can be implemented in many forms and should not be construed as limited to the examples set forth herein; rather, these embodiments are provided to make this application more comprehensive and complete, and to fully convey the concept of the exemplary embodiments to those skilled in the art.

[0042] In this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.

[0043] In this application, unless otherwise expressly specified and limited, the terms "assembly," "connection," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0044] Furthermore, the described features, structures, or characteristics can be combined in any suitable manner in one or more embodiments. Numerous specific details are provided in the following description to give a thorough understanding of embodiments of this application. However, those skilled in the art will recognize that the technical solutions of this application can be practiced without one or more of the specific details, or other methods, components, apparatuses, steps, etc., can be employed. In other instances, well-known methods, apparatuses, implementations, or operations are not shown or described in detail to avoid obscuring various aspects of this application.

[0045] In modern childcare environments, baby monitors are crucial devices for ensuring infant safety and health, and their performance and design are of great concern.

[0046] Figure 1 A schematic diagram of the monitor's structure is shown. Figure 2 A schematic diagram of the exploded structure of the monitor is shown. Figure 3 A schematic diagram of the disassembled first and second shells is shown.

[0047] This application provides a monitor housing 100, which can be used as a housing for a baby monitor to reduce the difficulty of assembling the monitor housing 100. See also Figure 1 and Figure 2 As shown, the monitor housing 100 may include a first housing 110 and a second housing 120, which are interlocked to form a hollow receiving chamber (not shown in the figure).

[0048] Among them, see Figure 2 and Figure 3As shown, the accommodating chamber can house the image acquisition component 20 of the monitor 10, as well as the first drive unit 30 and the second drive unit 40 for changing the position of the image acquisition component 20, so that the image acquisition component 20, the first drive unit 30 and the second drive unit 40 are integrated into the monitor housing 100. For example, the image acquisition component 20 can be placed near the top of the first housing 110, the first drive unit 30 can be placed between the image acquisition component 20 and the second housing 120, and the second drive unit 40 can be placed between the image acquisition component 20 and the bottom housing 70 described below. In this way, the components inside the housing are arranged from top to bottom, which can minimize the space occupied by the monitor 10 in the vertical direction, making the monitor 10 slimmer, more compact, and more aesthetically pleasing.

[0049] Figure 4 A schematic diagram of the cross-sectional structure of the monitor housing is shown. Figure 5 A schematic diagram of the first housing is shown. Figure 6 A schematic diagram of a structure with a connector on the inner wall of the first housing is shown. Figure 7 A schematic diagram of the first housing is shown in the right view. Figure 8 A schematic diagram of a structure with limiting posts on the inner wall of the first housing is shown. Figure 9 It shows Figure 8 Enlarged structural diagram of the connector at point A.

[0050] Figure 10 A schematic diagram of a structure in which a second mounting component is provided on the inner wall of the first housing is shown. Figure 11 A schematic diagram of the second housing is shown. Figure 12 A schematic diagram of a structure with a limiting block on the inner wall of the second housing is shown. Figure 13 A schematic diagram of the structure showing that the outer wall of the second housing has sound outlet holes and heat dissipation holes is shown.

[0051] In some embodiments of this application, see Figure 10 and Figure 11 As shown, the first housing 110 has a first side edge 111. The second housing 120 has a second side edge 121 that abuts against the first side edge 111.

[0052] For example, see Figure 4 and Figure 10 As shown, both the first housing 110 and the second housing 120 can adopt an arc-shaped structure. The first side edge 111 and the second side edge 121 can be U-shaped. The first housing 110 is recessed away from the second housing 120, and the second housing 120 is recessed away from the first housing 110. The first side edge 111 of the first housing 110 and the second side edge 121 of the second housing 120 interlock to form the aforementioned accommodating chamber.

[0053] Understandably, this curved design not only makes it easier for users to hold the device, but also effectively increases the utilization of internal space, making the overall structure of the monitor 10 more compact.

[0054] In addition, in different embodiments, the first housing 110 and the second housing 120 may also be square, hemispherical or irregular in shape to meet different design requirements and application scenarios.

[0055] The monitor housing 100 also includes a first connecting component (not shown in the figure) and a second connecting component (not shown in the figure). Both the first and second connecting components are located between the first side edge 111 and the second side edge 121. The first connecting component can lock the first housing 110 and the second housing 120 in an assembly direction perpendicular to the first housing 110 and the second housing 120. The second connecting component can align the first housing 110 and the second housing 120 in the assembly direction. Thus, the first housing 110 and the second housing 120 can be precisely assembled through the second connecting component and fastened through the first connecting component, simplifying the assembly method and improving assembly efficiency. Simultaneously, the second connecting component can also serve as a movable connecting part between the image acquisition component 20 and the first driving component 30 inside the baby monitor, reducing the number of internal components in the housing 100, simplifying the overall structure, and reducing production costs.

[0056] In some embodiments, the first housing 110 further has a third side edge, the two ends of which are smoothly connected to the two free ends of the first side edge 111 respectively; the third side edge may be a semi-circular side edge, and its plane is perpendicular to the plane of the first side edge 111. The second housing 120 further has a fourth side edge, the two ends of which are smoothly connected to the two free ends of the second side edge 121 respectively; the fourth side edge may be a semi-circular side edge, and its plane is perpendicular to the plane of the second side edge 121. When the first housing 110 and the second housing 120 are fastened together, the first side edge 111 and the second side edge 121 abut against each other, are aligned by the second connecting component, and are locked by the first connecting component; the third side edge and the fourth side edge abut against each other and enclose to form a circular open bottom, which is adapted to the bottom shell, and the outer shell 100 can be assembled onto the bottom shell through the circular open bottom to form the overall shape of the monitor.

[0057] In some embodiments of this application, see Figure 2 and Figure 4As shown, the first connecting assembly includes a connector 131 and a corresponding fastening member 132. The connector 131 is provided on the first housing 110, and the fastening member 132 is provided on the second housing 120. The first housing 110 and the second housing 120 are connected by the connector 131 and the fastening member 132, and are locked together in an assembly direction perpendicular to the first housing 110 and the second housing 120. The locking method is simple, with strong locking stability and reliability, and good assembly effect.

[0058] In different embodiments, the first housing 110 may be provided with a fastening member 132, and the second housing 120 may be provided with a connecting member 131. The first housing 110 and the second housing 120 may be connected by connecting member 131 and fastening member 132. Alternatively, the first housing 110 may be provided with both connecting member 131 and fastening member 132, and the second housing 120 may be provided with both connecting member 131 and fastening member 132. That is, the design positions of connecting member 131 and fastening member 132 can be adjusted, and their specific positions are not limited.

[0059] In some embodiments of this application, see Figure 6 and Figure 11 As shown, the connector 131 includes a male buckle 1310 protruding from the inner wall of the first housing 110. The fastening member 132 includes a female buckle 1320 extending in the assembly direction of the first housing 110 and the second housing 120, with the female buckle 1320 protruding from the upper surface of the second housing 120 facing the first housing 110. When the first housing 110 and the second housing 120 are fastened together, the male buckle 1310 can be inserted into the female buckle 1320 in the vertical assembly direction to lock the first housing 110 and the second housing 120. The first connecting assembly provided in this example has a simple structure and is easy to manufacture.

[0060] In some embodiments of this application, see Figure 2 and Figure 9 As shown, the male buckle 1310 has an abutment surface 1311 on the side opposite to the second housing 120, and this abutment surface 1311 is perpendicular to the assembly direction. When the first housing 110 and the second housing 120 are fastened together, the female buckle 1320 can abut against the abutment surface 1311 of the male buckle 1310, preventing the female buckle 1320 from falling off the male buckle 1310, ensuring the tightness of the connection between the male buckle 1310 and the female buckle 1320, thereby improving the tightness of the connection between the first housing 110 and the second housing 120, and ensuring that the first housing 110 and the second housing 120 are not easily separated.

[0061] In different embodiments, the abutment surface 1311 may also form an acute angle with the inner wall surface of the first housing 110, that is, the abutment surface 1311 and the inner wall surface of the first housing 110 form a wedge-shaped limiting space (not shown in the figure). When the first housing 110 and the second housing 120 are fastened together, the female buckle 1320 can be locked in the wedge-shaped limiting space. The wedge-shaped limiting space can be similar to a hook to further lock the female buckle 1320 onto the male buckle 1310, preventing the female buckle 1320 and the male buckle 1310 from separating from each other, further ensuring the tight contact between the male buckle 1310 and the female buckle 1320, thereby ensuring the tight connection between the first housing 110 and the second housing 120.

[0062] In some embodiments of this application, see Figure 8 and Figure 9 As shown, the connector 131 may further include a connecting rib 1312 connected to the male buckle 1310. The connecting rib 1312 and the male buckle 1310 are arranged sequentially in the assembly direction, and the connecting rib 1312 is located on the side of the male buckle 1310 closer to the second housing 120. The connecting rib 1312 can increase the strength of the male buckle 1310 in the assembly direction, so that when the first housing 110 and the second housing 120 are separated from each other, it is not easy to break the male buckle 1310, thus ensuring the engagement between the first housing 110 and the second housing 120.

[0063] In some embodiments of this application, see Figure 11 and Figure 12 As shown, the fastening member 132 also includes a reinforcing rib 1321 connected to the female fastener 1320. The reinforcing rib 1321 is located on the side of the female fastener 1320 away from the first housing 110 and extends in the assembly direction, and the reinforcing rib 1321 is connected to the inner wall of the second housing 120. This reinforcing rib 1321 can increase the strength of the female fastener 1320 on the second housing 120, avoiding the problem of the female fastener 1320 breaking during fastening and disassembly.

[0064] In some embodiments of this application, see Figure 9 As shown, the connecting rib 1312 has a first inclined surface 1313 on the side away from the inner wall of the first housing 110, and the male buckle 1310 has a plane 1314 and a second inclined surface 1315 away from the inner wall of the first housing 110. The first inclined surface 1313 is connected to the second inclined surface 1315 through the plane 1314.

[0065] Please see below. Figure 9As shown, the first inclined surface 1313 is inclined from the inner wall of the first housing 110 toward a direction away from the second housing 120. When assembling the first housing 110 and the second housing 120, the female buckle 1320 can slide along the first inclined surface 1313 toward the interior of the first housing 110, allowing the female buckle 1320 to engage more smoothly with the male buckle 1310. The abutment surface 1311 is located on the side of the second inclined surface 1315 away from the second housing 120. The plane 1314 is connected to the abutment surface 1311 through the second inclined surface 1315, and the extension line of the plane 1314 is perpendicular to the extension line of the abutment surface 1311, that is, the plane 1314 is parallel to the assembly direction. The second inclined surface 1315 is inclined from the top of the abutment surface 1311 toward the inner wall surface away from the first housing 110 and toward the second housing 120. The inclination direction of the second inclined surface 1315 is opposite to the inclination direction of the first inclined surface 1313. By inclination of the second inclined surface 1315 toward the second housing 120, the female buckle 1320 can slide from the abutment surface 1311 along the second inclined surface 1315 toward the direction closer to the second housing 120. The female buckle 1320 can more easily and effectively disengage from the male buckle 1310, making the disassembly process of the first housing 110 and the second housing 120 easier.

[0066] In some embodiments of this application, see Figure 12 As shown, the fastener 132 may include two reinforcing ribs 1321. The two reinforcing ribs 1321 are respectively spaced apart on the side of the female buckle 1320 away from the first housing 110, and both extend along the assembly direction. The two reinforcing ribs 1321 can further enhance the assembly strength of the female buckle 1320 on the second housing 120, making it less prone to breakage.

[0067] Please refer to some embodiments of this application. Figure 6 As shown, the first housing 110 is provided with multiple plug-in units (not shown in the figure), which are arranged sequentially at intervals on the inner edge of the first housing 110. Each plug-in unit includes two mutually spaced plug-in parts 131. Correspondingly, the second housing 120 is provided with multiple fastening parts 132, which are arranged sequentially at intervals on the inner edge of the second housing 120. When the first housing 110 and the second housing 120 are fastened together, the plug-in units correspond one-to-one with the fastening parts 132. The multiple plug-in units and the reinforcing parts make the fastening of the first housing 110 and the second housing 120 more secure, preventing the first housing 110 and the second housing 120 from falling off.

[0068] Please refer to some embodiments of this application. Figure 4 and Figure 6As shown, the first connecting assembly also includes a limiting block 133 disposed on the first housing 110. This limiting block 133 extends in the assembly direction and protrudes beyond the first housing 110, and the limiting block 133 and the plug-in unit are spaced apart on the first side edge 111. When the first housing 110 and the second housing 120 are fastened together, the limiting block 133 protruding from the first housing 110 is inserted into the interior of the second housing 120 and abuts against the inner wall surface of the second housing 120. This effectively prevents the first housing 110 from deforming and misaligning outwards when the first housing 110 and the second housing 120 are fastened together, thereby ensuring the overall flatness and aesthetics of the monitor housing 100.

[0069] In different embodiments, the limiting block 133 may also be provided on the second housing 120, or the limiting block 133 may be provided on both the first housing 110 and the second housing 120.

[0070] Please refer to some embodiments of this application. Figure 6 As shown, the first connecting assembly also includes a mounting groove 134 disposed on the first housing 110. The mounting groove 134 opens toward the second housing 120 and extends in the assembly direction. The aforementioned plug-in member 131 may be disposed within the mounting groove 134. Since the mounting groove 134 is recessed in the inner wall of the first housing 110, the bottom wall of the mounting groove 134 is lower than the inner wall of the first housing 110. Therefore, when the first housing 110 and the second housing 120 are fastened together, the fastening member 132 can fit more closely to the bottom wall of the mounting groove 134, making the outer edges of the fastening points of the first housing 110 and the second housing 120 flush, thus ensuring the aesthetics of the monitor housing 100.

[0071] It is understandable that the number of mounting slots 134 corresponds one-to-one with the number of the aforementioned plug-in units, so as to ensure that the joint between the first housing 110 and the second housing 120 is flush and without any height difference.

[0072] Please refer to some embodiments of this application. Figure 2 As shown, the second connecting assembly includes a first alignment member 141 and a second alignment member 142. The first housing 110 contains the first alignment member 141, and the second housing 120 contains the second alignment member 142. When the first housing 110 and the second housing 120 are engaged, the first side edge 111 abuts against the second side edge 121, and the first alignment member 141 and the second alignment member 142 are aligned and connected. This example provides a separate second connecting assembly.

[0073] In different embodiments, the first housing 110 is provided with a second alignment member 142, and the second housing 120 is provided with a first alignment member 141.

[0074] In some embodiments of this application, a first alignment member 141 is disposed on the inner wall of the first housing 110 and extends out of the first housing 110, and a second alignment member 142 is disposed on the inner wall of the second housing 120. When the first housing 110 and the second housing 120 are engaged with each other, the first alignment member 141 and the second alignment member 142 abut against each other.

[0075] For example, see Figure 6 As shown, the first alignment member 141 includes a first adapter post 1410 and a second adapter post 1411 disposed opposite each other on the inner wall of the first housing 110. Both the first adapter post 1410 and the second adapter post 1411 extend in the assembly direction and protrude beyond the first housing 110. The first adapter post 1410 has a semi-circular hole (not shown) opening toward the second housing 120 for accommodating the rotating post described below. The second adapter post 1411 has a clearance notch (not shown) opening toward the second housing 120 for accommodating the first output shaft described below.

[0076] See Figure 11 As shown, the second alignment member 142 includes a first fastening post 1420 and a second fastening post 1421 disposed opposite to each other on the inner wall of the second housing 120. See also Figure 2 As shown, the first snap-fit ​​post 1420 corresponds to the first adapter post 1410, and the second snap-fit ​​post 1421 corresponds to the second adapter post 1411. When the first housing 110 and the second housing 120 are engaged, the first snap-fit ​​post 1420 and the second snap-fit ​​post 1421 abut against each other, so that the semi-circular hole on the first snap-fit ​​post 1420 and the first adapter post 1410 form a sealed space, and the clearance notch on the second snap-fit ​​post 1421 and the second adapter post 1411 form a sealed space, to prevent the first output shaft and the rotating post described below from disengaging from the clearance notch and the semi-circular hole, thereby ensuring the smooth rotation of the rotating ball head 210 described below.

[0077] In different embodiments, the first alignment member 141 can also be inserted into the second alignment member 142 and engaged with it. That is, the first adapter post 1410 is inserted into the first fastening post 1420, and the second adapter post 1411 is inserted into the second fastening post 1421, to further increase the tightness of the connection between the first housing 110 and the second housing 120. Alternatively, a portion of the first alignment member 141 can abut against the second alignment member 142, and another portion can be engaged with the second alignment member 142. For example, the first adapter post 1410 abuts against the first fastening post 1420 and forms a semi-circular hole with the first fastening post 1420, forming a sealed space. The second adapter post 1411 is inserted into the second fastening post 1421 and forms a clearance notch with the second fastening post 1421.

[0078] It should be noted that the first adapter post 1410, the second adapter post 1411, the first fastening post 1420, and the second fastening post 1421 can all adopt an internal hollow structure, that is, there is a gap between them and the inner wall of the first housing 110 and the inner wall of the second housing 120, so as to reduce the vibration and noise generated by the first drive member 30 during rotation, as described below, thereby making the monitor 10 rotate more smoothly and reducing noise, thus bringing users a better and quieter user experience.

[0079] In some embodiments of this application, see Figure 5 As shown, the first housing 110 has an inclined surface 112 on the side away from the second housing 120. The inclined surface 112 can be inclined from the top to the bottom of the first housing 110, so that the inclined surface 112 forms an acute angle with the axis of symmetry of the monitor housing 100. Furthermore, a clearance window 113 with a smaller area than itself is provided on the inclined surface 112, through which part of the image acquisition component 20 can be exposed for acquiring external image information.

[0080] It should be noted that, see Figure 5 As shown, the opening area of ​​the avoidance window 113 is smaller than the area of ​​the inclined surface 112, which allows the field of view below the image acquisition component 20 to be exposed through the inclined surface 112. This effectively reduces the obstruction of the area below the image acquisition component 20, increases the image acquisition area, and greatly improves the monitoring effect of the monitor 10.

[0081] In addition, see Figure 5 As shown, the inclined surface 112 can be inverted teardrop shape, and the clearance window 113 can be circular. The clearance window 113 is located at the top of the inclined surface 112. That is to say, the curvature of the arc at the top of the inclined surface 112 is equal to or approximately equal to the curvature of the arc at the top of the clearance window 113, and the curvature of the arc at the bottom of the inclined surface 112 is less than the curvature of the arc at the bottom of the clearance window 113. This structure can overcome the problem that the lower field of view of the image acquisition component 20 extending out of the clearance window 113 is blocked by the first housing 110 below it. At the same time, it can also reduce the loss of the housing space due to the reduction caused by the inclined surface 112. In addition, the teardrop-shaped inclined surface can also improve the overall aesthetics of the device.

[0082] Please refer to some embodiments of this application. Figure 6As shown, a shielding member 114 is provided on the side of the inclined surface 112 facing the second housing 120. The shielding member 114 extends in the assembly direction, is located below the clearance window 113, and is curved toward the clearance window 113 to make the shielding member 114 arc-shaped. The shielding member 114 can shield the internal components of the housing when the image acquisition assembly 20 rotates upward, improving aesthetics; at the same time, the shielding member 114 can also prevent external dust from entering the monitor 10 and accumulating on the electronic components inside the housing, improving heat dissipation performance and extending the service life of the internal electronic components.

[0083] It is worth mentioning that the first adapter post 1410 and the second adapter post 1411 both abut against the side of the inclined surface 112 near the second housing 120, so as to improve the rigidity of the first adapter post 1410 and the second adapter post 1411 and prevent them from falling off due to collision.

[0084] Please refer to some embodiments of this application. Figure 2 As shown, monitor 10 includes a speaker 50. See also Figure 11 and Figure 12 As shown, a first mounting member 122 for mounting a speaker 50 is provided on the inner wall of the second housing 120. The first mounting member 122 has an annular mounting cavity 1220 extending in the assembly direction. The speaker 50 can be placed in this annular mounting cavity 1220 so as to detachably mount the speaker 50 into the monitor housing 10 and prevent it from falling off.

[0085] Please refer to some embodiments of this application. Figure 12 and Figure 13 As shown, the outer side of the second housing 120 is provided with a sound outlet 123 that communicates with the interior of the second housing 120. The sound outlet 123 corresponds to the annular mounting cavity 1220, that is, the speaker 50 can release sound to the outside through the sound outlet 123.

[0086] In different embodiments, the first mounting member 122 may also be provided on the inner wall of the first housing 110, and the first housing 110 may be provided with a sound outlet 123 that extends through in the assembly direction.

[0087] Please refer to some embodiments of this application. Figure 8 As shown, the first housing 110 is provided with a first anti-slip portion 115. The first anti-slip portion 115 is located on the outer wall surface of the first housing 110 near the first side edge 111, and the first anti-slip portion 115 has multiple first curved surfaces (not shown in the figure). See also Figure 11 As shown, the second housing 120 is provided with a second anti-slip portion 124. The second anti-slip portion 124 is located on the outer wall surface of the second housing 120 near the second side edge 121, and the second anti-slip portion 124 has multiple second curved surfaces (not shown in the figure). See also Figure 1As shown, when the first housing 110 and the second housing 120 are fastened together, the curved grooves on the first anti-slip part 115 and the curved grooves on the second anti-slip part 124 can correspond to each other, so that the user will not drop the monitor 10 from their hand when holding it. Moreover, by designing the first anti-slip part 115 and the second anti-slip part 124 as curved arc structures, the first anti-slip part 115 and the second anti-slip part 124 can fit into the gaps between fingers, improving the user's hand grip comfort.

[0088] In other embodiments of this application, the curved grooves of the first anti-slip part 115 and the curved grooves of the second anti-slip part 124 may also be misaligned with each other, as long as they can increase the contact surface of the user holding the monitor 10 and prevent the risk of the monitor 10 slipping.

[0089] In some embodiments of this application, the first housing 110 is provided with a first anti-slip part 115, which has multiple first curved surfaces, and the second housing 120 is not provided with a second anti-slip part 124. That is, the first anti-slip part 115 is used to prevent the risk of the monitor 10 slipping.

[0090] In some other embodiments of this application, the second housing 120 is provided with a second anti-slip part 124, which has multiple second curved surfaces. The first housing 110 is not provided with a first anti-slip part 115. That is, the risk of the monitor 10 slipping is prevented by the second anti-slip part 124.

[0091] It is understandable that when the first anti-slip part 115 or the second anti-slip part 124 is used alone, the area of ​​the first anti-slip part 115 / the second anti-slip part 124 can be equal to the sum of the areas of the first anti-slip part 115 and the second anti-slip part 124 spliced ​​together.

[0092] Furthermore, the curved first anti-slip part 115 and the second anti-slip part 124 can be formed by injection molding and formed in the lower middle part of the first housing 110 and the second housing 120. The above-mentioned plug-in member 131 can be provided on the inner wall of the first housing 110 where the first anti-slip part 115 is provided, and the above-mentioned fastening member 132 can be provided on the inner wall of the second housing 120 where the second anti-slip part 124 is provided.

[0093] Please refer to some embodiments of this application. Figure 4 , Figure 10 and Figure 11As shown, the first housing 110 also includes a limiting post 150 disposed on the first housing 110. The limiting post 150 and the connector 131 are spaced apart on the first side edge 111, and the limiting post 150 extends in the assembly direction and protrudes from the first housing 110. A limiting cylinder (not shown in the figure) is provided on the inner wall of the second housing 120, and a limiting hole 160 is provided inside the limiting cylinder, which opens toward the first housing 110. When the first housing 110 and the second housing 120 are fastened together, the limiting post 150 protruding from the first housing 110 can be inserted into the limiting hole 160, reducing the gap between the first housing 110 and the second housing 120, and improving the flatness and aesthetics of the fastening point of the first housing 110 and the second housing 120.

[0094] Please refer to some embodiments of this application. Figure 10 As shown, the bottom of the first housing 110 is provided with two limiting posts 150 facing each other, and the second housing 120 is provided with two limiting holes 160 corresponding to the limiting posts 150, which can improve the tightness of the connection between the first housing 110 and the second housing 120. Moreover, the two limiting posts 150 and the limiting holes 160 facing each other can also avoid the alignment deviation between the first housing 110 and the second housing 120, and ensure the flatness of the fastening between the first housing 110 and the second housing 120.

[0095] In some other embodiments of this application, the second housing 120 is provided with a limiting post 150, and the first housing 110 is provided with a limiting hole 160 corresponding to the limiting post 150. When the first housing 110 and the second housing 120 are fastened together, the limiting post 150 can be inserted into the limiting hole 160 so that the first housing 110 and the second housing 120 are fastened together.

[0096] Please refer to some embodiments of this application. Figure 3 As shown, the monitor housing 100 also includes a second mounting member 170, which can be used to mount the mounting plate 60 described below. The second mounting member 170 is provided on the inner wall of both the first housing 110 and the second housing 120, and the second mounting member 170 on the first housing 110 and the second mounting member 170 on the second housing 120 are arranged sequentially in the assembly direction.

[0097] For example, see Figure 10 and Figure 11 As shown, the first housing 110 is provided with two oppositely arranged second mounting members 170, and the inner wall of the second housing 120 is also provided with two oppositely arranged second mounting members 170, which are respectively connected to the four diagonal corners of the mounting plate 60 so that the mounting plate 60 is placed flat in the accommodating cavity.

[0098] In some embodiments of this application, see Figure 10 and Figure 11As shown, the second mounting component 170 includes a connecting post 171 and a reinforcing block 172. The connecting post 171 protrudes from the inner wall of the first housing 110 / second housing 120 and has a mounting hole facing the bottom of the housing, which can be connected to the mounting plate 60 by screws or other fixing structures. A reinforcing block 172 is provided on the side of the connecting post 171 facing the first housing 110 / second housing 120. One end of the reinforcing block 172 is connected to the inner wall surface of the first housing 110 / second housing 120, and the other end is connected to the connecting post 171. The reinforcing block 172 can improve the strength of the connecting post 171 within the first housing 110 / second housing 120 and prevent it from falling off during a collision.

[0099] In other embodiments of this application, the second mounting member 170 may also be provided only on the first housing 110 or the second housing 120, as long as the mounting plate 60 can be detachably fixed inside the monitor housing 100.

[0100] Please refer to some embodiments of this application. Figure 4 , Figure 10 and Figure 11 As shown, a limiting groove 116 is provided at the first side edge 111, opening toward the second housing 120. A limiting strip 125 is provided on the second side edge 121. When the first housing 110 and the second housing 120 are fastened together, the limiting strip 125 can be engaged in the limiting groove 116, further preventing the first housing 110 and the second housing 120 from separating and ensuring the tight connection between the first housing 110 and the second housing 120.

[0101] In some embodiments of this application, the first housing 110 is provided with a plurality of limiting grooves 116, and the second housing 120 is provided with a plurality of limiting strips 125. The plurality of limiting strips 125 are arranged at intervals on the outer surface of the second housing 120. The plurality of limiting strips 125 can improve the tightness of the connection between the first housing 110 and the second housing 120 and prevent them from falling off.

[0102] It is understood that the limiting block 133 can correspond to the limiting groove 116, that is, at least one limiting block 133 is provided at the location where the limiting groove 116 is provided. Since the limiting block 133, which protrudes from the inner wall of the first housing 110, abuts against the inner wall of the second housing 120 when the first housing 110 and the second housing 120 are fastened together, when the limiting strip 125 is inserted into the limiting groove 116, the limiting strip 125 is sandwiched between the limiting block 133 and the limiting groove 116. The limiting strip 125 can be limited outward by the inner wall of the limiting groove 116 and inward by the limiting block 133, thereby effectively restricting the inward and outward expansion of the second housing 120, ensuring that there is no discontinuity at the joint between the first housing 110 and the second housing 120, and ensuring the aesthetic appearance of the first housing 110.

[0103] In addition, please see Figure 4 As shown, the limiting block 133, the limiting groove 116 and the limiting strip 125 can also limit the relative movement of the first housing 110 and the second housing 120 in the first direction and the second direction, effectively improving the tightness of the connection between the first housing 110 and the second housing 120 and preventing the first housing 110 and the second housing 120 from falling off.

[0104] Please refer to some embodiments of this application. Figure 12 and Figure 13 As shown, a plurality of heat dissipation holes 126 are provided on the outer side wall of the second housing 120. These heat dissipation holes 126 can transfer heat from the accommodating cavity to the outside, thereby reducing the temperature inside the accommodating cavity. The heat dissipation holes 126 are located above the sound outlet hole 123 to prevent heat from being transferred upward and re-entering the accommodating cavity through the sound outlet hole 123.

[0105] Please refer to some embodiments of this application. Figure 2 and Figure 12 As shown, the second housing 120 is also provided with a limiting block 127 located below the first mounting member 122 and connected to the outer contour of the first mounting member 122. This limiting block 127 can cooperate with the baffle plate 710 provided on the bottom housing 70 as described below. During the rotation of the first housing 110 and the second housing 120, the rotational movement between the first housing 110 and the second housing 120 and the bottom housing 70 can be stopped, preventing the first housing 110 and the second housing 120 from continuing to rotate.

[0106] It is understandable that placing the limit block 127 below the first mounting member 122 and connecting it to the first mounting member 122 can improve the strength of the limit block 127 on the second housing 120 and avoid the problem of damage caused by excessive collision force between the blocking plate 710 and the limit block 127.

[0107] Please refer to some embodiments of this application. Figure 13 As shown, the second housing 120 is also provided with a dummy hole 128 on the outside. The dummy hole 128 can be distributed around the sound hole 123 and the heat dissipation hole 126, and can be used to decorate the monitor housing 100.

[0108] Please see Figures 1 to 3 As shown, this application embodiment also provides a monitor 10, which includes an image acquisition component 20 and a monitor housing 100. The image acquisition component 20 is disposed in the accommodating cavity formed by the first housing 110 and the second housing 120, and can acquire external information through the avoidance window 113.

[0109] Please refer to some embodiments of this application. Figure 2 and Figure 3 As shown, the image acquisition component 20 includes a rotating ball head 210 and an image acquisition element 220 disposed inside the rotating ball head 210.

[0110] The rotating ball head 210 can be a hemispherical structure with a hollow interior and a mounting bracket (not shown in the figure). The image acquisition component 220 is fixed inside the rotating ball head 210 by screws or other connecting structures. Please refer to [link to relevant documentation]. Figure 1 As shown, a portion of the rotating ball head 210 can extend from the clearance window 113 and move flexibly within the clearance window 113. A collection port (not shown in the figure) corresponding to the clearance window 113 is provided on the side of the rotating ball head 210 away from the second housing 120. The image acquisition component 220 corresponds to the collection port and can acquire external information through the collection port.

[0111] It is understandable that since the image acquisition component 220 is fixed inside the rotating ball head 210, the image acquisition component 220 can also rotate with the rotating ball head 210 during the rotation of the rotating ball head 210, thereby flexibly changing the acquisition position of the image acquisition component 220.

[0112] In some embodiments of this application, the image acquisition device 220 includes a circuit board 221 and a camera 222 disposed on the circuit board 221. The camera 222 corresponds to the acquisition port of the rotating ball head 210 so as to acquire external image information through the acquisition port. The circuit board 221 is connected to the mounting bracket on the rotating ball head 210, and the circuit board 221 can provide power to the camera 222 or change the focal length of the camera 222, etc.

[0113] It should be noted that the heat generated during the operation of the circuit board 221 can be released to the outside through the heat dissipation holes 126 on the outer wall of the second housing 120 to reduce the temperature inside the accommodating cavity.

[0114] In some embodiments of this application, see Figure 3 As shown, the monitor 10 may also include a first drive unit 30. The first drive unit 30 is connected to the rotating ball head 210, and the first drive unit 30 can drive the rotating ball head 210 to rotate, thereby expanding the acquisition range of the image acquisition unit 220.

[0115] In some embodiments of this application, the first driving member 30 includes a first driving body 310 and a first output shaft 320. The first driving body 310 is connected to the inner wall of the rotating ball head 210, and the first output shaft 320 passes through the connecting ear on the rotating ball head 210 and engages with the clearance notch on the second adapter post 1411. The rotating ball head 210 has a rotating post at the end opposite to the connecting ear, which is inserted into a semi-circular hole. The first fastening post 1420 and the second fastening post 1421 prevent the first output shaft 320 from disengaging from the clearance notch and prevent the rotating post from disengaging from the semi-circular hole. The first driving body 310 can rotate along the circumference of the first output shaft 320 during the rotation of the first output shaft 320, thereby driving the rotating ball head 210 and the image acquisition member 220 connected to the rotating ball head 210 to rotate along the circumference of the first output shaft 320, thereby enabling the camera 222 to acquire images in the vertical direction.

[0116] It is worth mentioning that the first drive unit 30 can be horizontally installed in the accommodating cavity, and the axis of the first output shaft 320 is perpendicular to the axis of the monitor housing 100. The first drive unit 30 can drive the image acquisition component 20 to rotate in the vertical direction.

[0117] In different embodiments, the first output shaft 320 of the first drive member 30 can be directly connected to the rotating ball head 210. Both ends of the rotating ball head 210 are rotatably connected to the monitor housing 100. During the rotation of the first output shaft 320, the rotating ball head 210 will be driven to rotate within the monitor housing 100, thereby switching the position of the camera 222 in the vertical direction and improving the camera's acquisition range.

[0118] Please refer to some embodiments of this application. Figure 2 As shown, the monitor 10 also includes a mounting plate 60. The mounting plate 60 is placed horizontally within the accommodating cavity, and its four corners are fixed to the connecting posts 171 on the first housing 110 / second housing 120 by screws or other fixing structures. A second driving member 40 may be provided above the mounting plate 60, which can drive the mounting plate 60 and the first housing 110 and second housing 120 fixed to the mounting plate 60 to rotate.

[0119] Please refer to some embodiments of this application. Figure 2 As shown, the monitor 10 also includes a bottom shell 70, which covers the bottom of the monitor housing 100 to seal the accommodating chamber, and the first housing 110 and the second housing 120 are rotatable relative to the bottom shell 70.

[0120] Please refer to some embodiments of this application. Figure 2As shown, the monitor 10 also includes a second drive unit 40. The second drive unit 40 includes a second drive body (not shown in the figure) and a second output shaft (not shown in the figure). The axis of the second output shaft is parallel to the axis of symmetry of the monitor housing 100. The second drive body is located on the side of the mounting plate 60 away from the bottom housing 70 and is connected to the mounting plate 60 by screws or bolts. The second output shaft is fixedly connected to the bottom housing 70. The second drive body can drive the mounting plate 60, the first housing 110 and the second housing 120 to rotate relative to the bottom housing 70 during the rotation of the second output shaft, thereby driving the first housing 110, the second housing 120 and the image acquisition component 20 to perform circular motion in the horizontal direction, thereby adjusting the position of the avoidance window 113 relative to the bottom housing 70.

[0121] It is understood that both the first drive unit 30 and the second drive unit 40 can be electrically connected to the circuit board 221 in the image acquisition unit 220. The circuit board 221 can accurately acquire the instruction information input by the user and intelligently adjust the working state of the first drive unit 30 and the second drive unit 40 according to the instruction information, so as to flexibly adjust the acquisition range of the image acquisition component 20 and meet the diverse monitoring perspective needs of the user.

[0122] Please refer to some embodiments of this application. Figure 2 and Figure 11 As shown, a baffle plate 710 is also provided on the bottom shell 70, extending towards the accommodating cavity and protruding outside the bottom shell 70. The baffle plate 710 can cooperate with the limiting block 127 located below the first mounting member 122. During the rotation of the first housing 110 and the second housing 120, the baffle plate 710 can stop the rotational movement between the first housing 110 and the second housing 120 and the bottom shell 70, preventing the first housing 110 and the second housing 120 from continuing to rotate.

[0123] Please refer to some embodiments of this application. Figure 2 As shown, the monitor 10 may also include a detection element 80 and a control element (not shown in the figure). The detection element 80 is located on the side of the bottom housing 70 and extends outward to detect external information. The detection element 80 is electrically connected to the control element, and can transmit the acquired external information to the control element and transmit it to the user in real time via the network, so that the user can intuitively obtain the current external information.

[0124] It should be noted that this detection component 80 can be a temperature sensor, humidity sensor, or light sensor, etc.

[0125] In addition, the control board is equipped with a charging port (not shown in the figure), a charging management chip (not shown in the figure), and a power management chip (not shown in the figure). External power is transmitted to the charging management chip through the charging port and to the power management chip through the input protection circuit. The power management chip converts the voltage to a level suitable for the image acquisition circuit board 221 and the camera 222, and then supplies power to the camera 222 through the line.

[0126] In the description of this specification, references to terms such as "some embodiments," "exemplarily," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this application. The illustrative expressions of the above terms in this specification do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in a suitable manner in any one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0127] Although embodiments of this application have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting this application. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of this application. Therefore, any changes or modifications made in accordance with the claims and description of this application should fall within the scope of this patent application.

Claims

1. A monitor housing, characterized by, The application relates to a first shell, a second shell, a first connecting assembly and a second connecting assembly. The first shell has a first side edge. The second shell has a second side edge abutting the first side edge. The first connecting assembly is arranged between the first side edge and the second side edge to lock the first shell and the second shell in a direction perpendicular to the assembling direction of the first shell and the second shell. The second connecting assembly is arranged between the first side edge and the second side edge to realize the alignment of the first shell and the second shell in the assembling direction. The first connecting assembly comprises a plug and a buckle corresponding to the plug.

2. The monitor housing of claim 1, wherein, The buckle is arranged on the reinforcing rib away from the second shell and extends out of the second shell.

3. The monitor housing of claim 2, wherein, The plug comprises a connecting rib and a male buckle. The male buckle is arranged on the connecting rib away from the second shell and is plugged into the female buckle to connect and fasten the first shell and the second shell.

4. The monitor housing of claim 2, wherein, The first connecting assembly further comprises a limiting block extending in the assembling direction.

5. The monitor housing of claim 2, wherein, The limiting block and the plug are arranged at intervals on the first side edge.

6. The monitor housing of claim 1, wherein, The first connecting assembly further comprises a mounting groove arranged on the first shell.

7. The monitor housing of claim 6, wherein, The mounting groove extends in the assembling direction and at least one plug is arranged in the mounting groove.

8. The monitor housing of claim 1, wherein, The second connecting assembly comprises a first alignment member and a second alignment member. One of the first shell and the second shell is provided with the first alignment member and the other is provided with the second alignment member.

9. The monitor housing of claim 1, wherein, When the first shell and the second shell are buckled, the first side edge abuts the second side edge, the first alignment member is aligned with the second alignment member and / or the first alignment member extends into the second alignment member. The first shell away from the second shell is provided with an inclined surface. The inclined surface is provided with an avoiding window. The side of the inclined surface facing the second shell is provided with a shielding member. The shielding member is located below the avoiding window. The second shell is provided with a first mounting member. The first mounting member has an annular mounting cavity extending in the assembling direction. The first shell is provided with a first anti-skid part. The first anti-skid part is arranged on the outer wall surface of the first shell close to the first side edge. The first anti-skid part has a plurality of first curved surfaces. The second shell is provided with a second anti-skid part. The second anti-skid part is arranged on the outer wall surface of the second shell close to the second side edge. The second anti-skid part has a plurality of second curved surfaces. One of the first shell and the second shell is provided with a limiting column extending in the assembling direction. The other is provided with a limiting hole corresponding to the limiting column. The first shell and the second shell are provided with a limiting column extending in the assembling direction. The other is provided with a limiting hole corresponding to the limiting column. The monitor housing further comprises a second mounting member provided on an inner wall of the first housing and / or an inner wall of the second housing.

10. A monitor, characterized by A monitor housing as claimed in any one of claims 1 to 9, comprising an image capturing assembly provided in the accommodation cavity formed by the first housing and the second housing.