Computing device and computing device system
By setting movable ear hangers on the computing device housing and adjusting their spacing to suit different specifications of cabinets, the server installation compatibility problem in different cabinets is solved, achieving higher compatibility and assembly accuracy.
Patent Information
- Application Number
- CN202422413802.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-09-30
AI Technical Summary
The size and specifications of the hanging holes on different models of cabinets make it difficult for the same server to be installed in different cabinets, reducing the compatibility of the server in cabinets of different specifications.
A movable ear-hanger assembly is provided on the housing of the computing device. By adjusting the installation position of the ear-hanger assembly on the housing, the spacing between two adjacent ear-hanger assembly is adjusted so that it can be assembled in conjunction with a variety of cabinets of different specifications.
Improves compatibility of computing equipment with cabinets of various specifications, reduces additional cabinet space, avoids interference between cables and cabinet doors, and improves assembly accuracy.
Smart Images

Figure CN223245051U_ABST
Abstract
Description
Technical Field
[0001] The embodiments of the present application relate to the field of computing device technology, and in particular, to a computing device and a computing device system. Background Art
[0002] The server is the core device of the network, providing services to network users and an important component for resource sharing. The server includes a processor, hard disk module, memory, system bus, etc.
[0003] During use, a server is typically installed in a cabinet. Specifically, the server has mounting ears, and the cabinet has mounting holes that mate with the mounting ears. The mounting ears are mounted in the mounting holes, allowing the server to be connected to the cabinet through the engagement between the mounting ears and the mounting holes. However, the mounting holes on different cabinet models vary in size and specifications, such as the spacing between the mounting holes. This makes it difficult to install the same server in different cabinets, reducing the server's compatibility across cabinets of different specifications. Utility Model Content
[0004] The embodiments of the present application provide a computing device and a computing device system, which can enable the computing device to be assembled in conjunction with cabinets of various specifications, thereby effectively improving the compatibility of the computing device.
[0005] A first aspect of the present application provides a computing device, comprising:
[0006] case;
[0007] At least two ear hanging components, the ear hanging components are located outside the housing, and the at least two ear hanging components are arranged in parallel;
[0008] The ear hanging components are movably connected to the housing along the distribution direction of the ear hanging components, so that the distance between two adjacent ear hanging components can be adjusted.
[0009] By providing a movable cabinet mounting lug assembly on the housing of a computing device, the spacing between adjacent mounting lug assemblies can be adjusted by adjusting the mounting position of the mounting lug assembly on the housing, enabling a variety of spacing sizes between adjacent mounting lug assemblies. This allows the computing device to adjust the spacing of the mounting lug assembly to a matching size based on the specifications of the cabinet it is used with, allowing the computing device to be assembled with a variety of cabinets of different specifications, effectively improving the compatibility of the computing device.
[0010] In one possible implementation, the ear hanging assembly includes:
[0011] a connecting piece, the connecting piece being movably connected to the housing;
[0012] An ear hanging piece is connected to the connecting piece, and the ear hanging piece is movably connected to the shell through the connecting piece.
[0013] When adjusting the ear mount assembly, the position of the ear mount can be adjusted by moving the connecting piece on the housing, thereby adjusting the ear mount to the appropriate position to fit the mounting hole on the cabinet. The connecting piece facilitates the adjustment of the ear mount and effectively improves the reliability and stability of the ear mount adjustment on the housing.
[0014] In one possible implementation, the ear hook assembly also includes a connecting pin; a strip groove is provided on the connecting plate, the connecting pin passes through the strip groove and is connected to the shell, the connecting plate is connected to the shell through the connecting pin, and the extension direction of the strip groove is the same as the distribution direction of the ear hook assembly.
[0015] During the movement of the connecting piece, the connecting pin can slide in the strip groove. During the sliding of the connecting pin in the strip groove, the connecting piece can be moved along the distribution direction of the hanging ear assembly to adjust the position of the hanging ear on the shell, thereby adjusting the distance between two adjacent hanging ear parts so that the hanging ear parts can cooperate with the hanging holes on the cabinet.
[0016] Furthermore, as the connecting piece moves, the connecting pins slide within the strip grooves, so that the engagement between the connecting pins and the strip grooves can provide guidance for the movement of the connecting piece. This can reduce or prevent the connecting piece from deflecting or falling out during movement, helping to improve the reliability and stability of the connecting piece's movement.
[0017] In one possible implementation, the connecting nail includes a connecting column and a pressing portion; the connecting column passes through the strip groove and is detachably connected to the shell, and the pressing portion presses on the connecting piece.
[0018] The pressing portion can press the connecting piece so that the connecting piece is connected to the housing under the action of the pressing portion. This can effectively reduce or prevent the connecting piece from moving or deflecting on the housing, which is conducive to improving the reliability and stability of the connecting piece's installation on the housing. It can also prevent the connecting piece from detaching from the connecting post and then falling from the housing, effectively improving the firmness and stability of the connection between the connecting piece and the housing, and enhancing the overall structural stability of the computing device.
[0019] In one possible implementation, it also includes a mounting base; the mounting base is connected to the shell, and the ear hook assembly is movably connected to the mounting base; the ear hook assemblies are all located on the mounting base and are spaced apart along the length direction of the mounting base; a plurality of avoidance slots are opened on the mounting base, and the avoidance slots are opposite to the ear hook components.
[0020] During the process of connecting the ear hanger and the connecting piece, the operation can be performed through the avoidance groove on the installation base plate, which can prevent the installation base plate from interfering with or affecting the installation of the ear hanger on the connecting piece, thereby facilitating the installation of the ear hanger on the connecting piece and helping to improve the convenience of assembling the ear hanger between the connecting pieces.
[0021] Moreover, it can also avoid interference or friction between the ear hook and the connecting substrate during the movement of the connecting piece and the ear hook on the installation substrate, and can avoid friction between the ear hook and the connecting substrate that affects the movement of the ear hook, which helps to improve the smoothness of the movement of the ear hook.
[0022] In one possible implementation, the connecting piece includes a connected ear-hanging mounting portion and an adjustment portion; the adjustment portion is located on both sides of the ear-hanging mounting portion, the ear-hanging piece is located on the ear-hanging mounting portion, the strip groove is opened on the adjustment portion, and the ear-hanging mounting portion is opposite to the avoidance groove.
[0023] The adjustment portion can be mounted on the mounting base plate via the cooperation of the strip groove and the connecting pin, so that the connecting piece can be movably connected to the mounting base plate via the adjustment portion. When the ear hanging piece needs to be adjusted, the position of the adjustment portion on the mounting base plate can be moved so that the adjustment portion can move the connecting piece, and the connecting piece can move the ear hanging piece, thereby achieving the position adjustment of the ear hanging piece.
[0024] The ear-hanging mounting portion is opposite to the avoidance slot, which can facilitate the installation of the ear-hanging piece on the ear-hanging mounting portion, reduce or avoid interference between the ear-hanging piece and the ear-hanging mounting portion and the mounting substrate, thereby facilitating the installation of the ear-hanging piece and subsequent adjustment and movement.
[0025] In a possible implementation, the ear-hanging mounting portion is recessed relative to the adjusting portion toward the avoidance slot, the adjusting portion is overlapped on the mounting base plate, and the ear-hanging mounting portion extends into the avoidance slot.
[0026] During the movement of the connecting piece, the ear mounting part also moves accordingly in the avoidance groove. The avoidance groove can provide a limit for the movement of the ear mounting part, which can reduce or avoid the displacement or disengagement of the ear mounting part during the movement, and help to improve the smoothness and reliability of the movement of the ear mounting part, thereby effectively improving the smoothness and reliability of the overall movement adjustment of the ear mounting part.
[0027] In a possible implementation, an elastic member is further included. The elastic member is passed through the connecting pin, and the elastic member is located between the connecting piece and the mounting substrate.
[0028] The elastic member is elastic and can be in an elastically compressed state between the connecting piece and the mounting substrate. This elastic member in this elastically compressed state exerts a resilient force. This resilient force can drive the elastic member toward the connecting piece and the mounting substrate, thereby improving the tightness and firmness of the contact between the elastic member, the connecting piece, and the mounting substrate. This makes the connection between the connecting piece and the mounting substrate more secure and reliable, effectively reducing or preventing the connecting piece from becoming loose, and thereby effectively improving the firmness and reliability of the connection between the connecting piece and the mounting substrate.
[0029] In one possible implementation, the ear hanging piece is a captive screw.
[0030] This can effectively reduce or avoid separation between the ear piece and the connecting piece, and can prevent the ear piece and the connecting piece from separating and affecting the connection between the computing device and the cabinet, and can effectively improve the reliability and stability of the connection between the computing device and the cabinet.
[0031] In one possible implementation, the connecting nail is a stepped screw.
[0032] In one possible implementation, the computing device is a server.
[0033] A second aspect of the present application provides a computing device system, a cabinet and any of the computing devices described above, wherein the computing device is located in the cabinet;
[0034] The cabinet is provided with a hanging hole, the hanging ear assembly on the computing device is hung in the hanging hole, and the computing device is connected to the hanging hole through the cooperation of the hanging ear assembly.
[0035] By making the computing device system include the above-mentioned computing device, the present application can enable the computing device to be assembled with cabinets of various specifications, which can effectively improve the compatibility between the computing device and the cabinet, and facilitate the assembly of the computing device assembly.
[0036] In one possible implementation, the computing equipment is assembled into a data center cabinet. BRIEF DESCRIPTION OF THE DRAWINGS
[0037] Figure 1 A schematic diagram of a partial structure of a computing device provided in an embodiment of the present application;
[0038] Figure 2 A schematic structural diagram of a mounting ear assembly provided in an embodiment of the present application;
[0039] Figure 3 A schematic structural diagram of a connecting pin provided in an embodiment of the present application;
[0040] Figure 4A schematic diagram of the structure of the connection between a connecting pin and a hanging ear assembly provided in an embodiment of the present application;
[0041] Figure 5 A schematic structural diagram of an elastic member provided in an embodiment of the present application, arranged on a mounting base.
[0042] Description of reference numerals:
[0043] 100-Computing device;
[0044] 110-housing;
[0045] 120-ear mounting assembly;
[0046] 121-connecting piece;
[0047] 1211-strip groove;
[0048] 1212-ear mounting portion;
[0049] 1213-Regulation Department;
[0050] 122-ear hanging piece;
[0051] 123-connecting nail;
[0052] 1231-connecting column;
[0053] 1232-pressing part;
[0054] 124- elastic member;
[0055] 130-installing the base plate;
[0056] 131-Avoidance channel. DETAILED DESCRIPTION
[0057] The terms used in the implementation section of this application are only used to explain the specific embodiments of this application and are not intended to limit this application. The implementation of the embodiments of this application will be described in detail below with reference to the accompanying drawings.
[0058] To make the purpose, technical solutions, and advantages of the embodiments of this application more clear, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the drawings in the embodiments of this application. Obviously, the described embodiments are part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0059] The present invention provides a computing device and a computing device assembly including the computing device. The computing device may be a server, a switch, a high-performance computing (HPC), or other device with computing capabilities.
[0060] The computing device may include a housing and a circuit board located in the housing, a central processing unit (CPU), a memory, a hard disk module, a dual inline memory module (DIMM), a graphics processing unit (GPU), a network card, a high-speed serial bus (Peripheral Component Interconnect Express, PCIE) card, a complex programmable logic device (CPLD), a baseboard management controller (BMC), and other devices arranged on the circuit board.
[0061] Computing devices can be installed in a cabinet to form a computing device system. For example, the computing device system can be a data center cabinet. Specifically, the server has mounting ears, and the cabinet has mounting holes that mate with the mounting ears. The mounting ears are mounted in the mounting holes, so that the server is connected to the cabinet through the engagement between the mounting ears and the mounting holes. However, the mounting holes on different cabinet models vary in size and specifications, such as the spacing between the mounting holes. This makes it difficult to install the same server in different cabinets, reducing the compatibility of the server in cabinets of different specifications.
[0062] In some related technologies, a U-shaped adapter is provided in a computing device assembly. The adapter has two opposing mounting plates, one of which is connected to the server, and the other mounting plate is provided with different matching holes according to the specifications of the cabinet so as to be connected to the cabinet, so that the server and the cabinet can be connected through the adapter.
[0063] However, the adapter is large in size and will occupy a certain space in the cabinet, reducing the cable outlet space in the cabinet, easily causing interference between the cables and the cabinet door, and affecting the overall assembly accuracy of the computing device assembly.
[0064] To address the aforementioned issues, embodiments of the present application provide a computing device that, by disposing a movable cabinet mounting lug assembly on the housing of the computing device, allows the spacing between two adjacent mounting lug assemblies to be adjusted by adjusting the mounting position of the mounting lug assembly on the housing, enabling a variety of spacing sizes between adjacent mounting lug assemblies to be achieved. This allows the computing device to adjust the spacing of the mounting lug assembly to a matching size based on the specifications of the cabinet it is used with, thereby enabling the computing device to be assembled with a variety of cabinets of different specifications, effectively improving the computing device's compatibility.
[0065] The following is a detailed description of the computing device provided in the embodiments of the present application in conjunction with the accompanying drawings.
[0066] Figure 1 A schematic diagram of the partial structure of a computing device provided in an embodiment of the present application.
[0067] The present application embodiment provides a computing device, see Figure 1 As shown, the computing device 100 may include a housing 110 and at least two ear hook components. The housing 110 may be provided with components such as a circuit board, a processor, a memory, a network card, etc. for implementing server functions.
[0068] The ear-hanging assembly 120 can be located outside the shell 110, and at least two ear-hanging assemblies 120 can be arranged in parallel. For example, multiple groups of ear-hanging assemblies 120 can be arranged on the shell 110, and each group of ear-hanging assemblies 120 can have two, three or four ear-hanging assemblies 120. In the embodiment of the present application, three ear-hanging assemblies 120 will be used as an example for explanation.
[0069] Multiple sets of ear assemblies 120 can be evenly distributed on the housing 110 of the computing device 100, so that the housing 110 of the computing device 100 can be connected to the cabinet via the ear assemblies 120. The ear assemblies 120 can be movably connected to the housing 110 along the distribution direction of the ear assemblies 120, so that the distance between two adjacent ear assemblies 120 can be adjusted.
[0070] For example, one of the ear hanging components 120 can be moved so that it approaches or moves away from the adjacent ear hanging component 120, thereby reducing or increasing the distance between the two adjacent ear hanging components 120. Alternatively, two adjacent ear hanging components 120 can be moved simultaneously so that the two adjacent ear hanging components 120 move closer to or away from each other, thereby reducing or increasing the distance between the two adjacent ear hanging components 120.
[0071] For example, when the computing device 100 is installed in conjunction with cabinets of different specifications, the mounting ear assemblies 120 on the computing device 100 can be moved according to the spacing of the upper mounting holes of the corresponding cabinet to adjust the spacing between two adjacent mounting ear assemblies 120 to match the spacing of the mounting holes on the cabinet. This allows the mounting ear assemblies 120 to respectively mate with the respective mounting holes on the cabinet, thereby allowing the computing device 100 to be connected to the cabinet through the mating between the mounting ear assemblies 120 and the mounting holes.
[0072] In the embodiment of the present application, a movable cabinet mounting lug assembly 120 is provided on the housing 110 of the computing device 100. By adjusting the mounting position of the mounting lug assembly 120 on the housing 110, the spacing between two adjacent mounting lug assemblies 120 can be adjusted, enabling a variety of spacing sizes between adjacent mounting lug assemblies 120. This allows the computing device 100 to adjust the spacing between the mounting lug assemblies 120 to a matching size based on the specifications of the cabinet it is used with, thereby enabling the computing device 100 to be assembled with a variety of cabinets of different specifications, thereby effectively improving the compatibility of the computing device 100.
[0073] Compared to the solution of providing adapters in the related art, the computing device 100 of the present application can be compatible with cabinets of different specifications by simply moving the mounting ear assembly 120 on the computing device 100. This eliminates the need for additional adapters and does not occupy additional space in the cabinet. This effectively improves the spatial layout within the cabinet and increases the space for wiring inside the cabinet. This reduces or avoids interference between cables and cabinet doors, thereby effectively improving the overall assembly accuracy of the computing device 100.
[0074] The specific structure of one of the ear mounting components 120 in the computing device 100 will be described in detail below.
[0075] Figure 2 This is a schematic diagram of the structure of a hanging ear assembly provided in an embodiment of the present application. Figure 3 This is a schematic diagram of the structure of a connecting pin provided in an embodiment of the present application. Figure 4 This is a schematic diagram of the structure of the connection between a connecting pin and a hanging ear assembly provided in an embodiment of the present application. Figure 5 A schematic structural diagram of an elastic member provided in an embodiment of the present application, arranged on a mounting base.
[0076] See also Figure 2As shown, the ear hanging assembly 120 may include a connecting piece 121 and an ear hanging member 122. The connecting piece 121 may be movably connected to the housing 110. The ear hanging member 122 may be connected to the connecting piece 121. For example, the ear hanging member 122 and the connecting piece 121 may be connected by riveting, screwing, or the like, and the ear hanging member 122 may be movably connected to the housing 110 via the connecting piece 121.
[0077] For example, during the assembly process, the ear hanging piece 122 can be assembled with the connecting piece 121 first to form the ear hanging assembly 120, and then the ear hanging assembly 120 can be assembled with the shell 110 of the computing device 100. The connecting piece 121 can provide an installation platform for the ear hanging piece 122, which can facilitate the installation and disassembly between the ear hanging piece 122 and the shell 110.
[0078] During adjustment of the ear mounting assembly 120, the position of the ear mounting member 122 can be adjusted by moving the connecting piece 121 on the housing 110, thereby adjusting the ear mounting member 122 to a suitable position to fit within the mounting hole on the cabinet. The connecting piece 121 facilitates adjustment of the position of the ear mounting member 122, effectively improving the reliability and stability of the adjustment of the ear mounting member 122 on the housing 110.
[0079] See also Figure 3 and Figure 4 As shown, the ear hanging assembly 120 may further include a connecting pin 123. The connecting piece 121 may be provided with a strip groove 1211. The connecting pin 123 may pass through the strip groove 1211 and be connected to the housing 110, so that the connecting piece 121 can be connected to the housing 110 via the connecting pin 123. In addition, the extending direction of the strip groove 1211 may be the same as the distribution direction of the ear hanging assembly 120.
[0080] The connecting pins 123 can fix the connecting piece 121 so that the connecting piece 121 can be fixed to the housing 110 of the computing device 100. When the position of the ear hanging member 122 needs to be adjusted, the connecting pins 123 can be loosened to reduce the force exerted by the connecting pins 123 on the connecting piece 121, allowing the connecting piece 121 to move.
[0081] The direction in which the strip groove 1211 extends is the same as the direction in which the ear assemblies 120 are distributed. As the connecting piece 121 moves, the connecting pin 123 can slide within the strip groove 1211. As the connecting pin 123 slides within the strip groove 1211, the connecting piece 121 can be moved along the direction in which the ear assemblies 120 are distributed. This allows the position of the ear assemblies 122 on the housing 110 to be adjusted, thereby adjusting the distance between adjacent ear assemblies 122 so that the ear assemblies 122 can mate with the hanging holes on the cabinet.
[0082] Furthermore, during the movement of the connecting piece 121, the connecting pin 123 slides within the strip groove 1211, so that the engagement between the connecting pin 123 and the strip groove 1211 can provide a guide for the movement of the connecting piece 121. This can reduce or prevent the connecting piece 121 from deflecting or falling out during movement, thereby helping to improve the reliability and stability of the movement of the connecting piece 121.
[0083] Continue to see Figure 3 As shown, the connecting pin 123 may include a connecting column 1231 and a pressing portion 1232. The connecting column 1231 can pass through the bar groove 1211 and be detachably connected to the shell 110, so that the connecting pin 123 can be connected to the shell 110 through the connecting column 1231. The pressing portion 1232 can be pressed on the connecting piece 121, so that the connecting piece 121 can be fixed on the shell 110 under the action of the pressing portion 1232.
[0084] The pressing portion 1232 can press the connecting piece 121 so that the connecting piece 121 is connected to the housing 110 under the action of the pressing portion 1232. This can effectively reduce or prevent the connecting piece 121 from moving or deflecting on the housing 110, which helps to improve the reliability and stability of the connection of the connecting piece 121 on the housing 110. It can also prevent the connecting piece 121 from escaping from the connecting post 1231 and then falling from the housing 110, effectively improving the firmness and stability of the connection between the connecting piece 121 and the housing 110, and enhancing the overall structural stability of the computing device 100.
[0085] When the position of the connecting piece 121 needs to be adjusted, the connection between the connecting post 1231 and the housing 110 can be loosened to reduce the pressing force of the pressing portion 1232 on the connecting piece 121, allowing the connecting piece 121 to move relative to the housing 110, thereby driving the ear hook 122 to move on the housing 110. After the ear hook 122 is adjusted to the appropriate position, the connecting post 1231 and the housing 110 can be tightened again so that the pressing portion 1232 can press tightly on the connecting piece 121 to prevent the connecting piece 121 from moving.
[0086] For example, the connecting pin 123 may be a stepped screw that can be detachably connected to the housing 110 via a screw on the stepped screw, and the nut can be pressed against the connecting piece 121. When the position of the connecting piece 121 needs to be adjusted, the screw can be loosened to reduce the pressing force of the nut on the connecting piece 121, thereby allowing the connecting piece 121 to move on the housing 110 to adjust the position of the ear hanging piece 122.
[0087] After the ear hanging piece 122 is adjusted to a suitable position, the screw and the housing 110 can be tightened again so that the nut can be tightly pressed on the connecting piece 121 to prevent the connecting piece 121 from moving.
[0088] Continue to see Figure 4 As shown, the computing device 100 may further include a mounting substrate 130 , which may be connected to the housing 110 , the ear hook assembly 120 may be movably connected to the mounting substrate 130 , and the ear hook assemblies may all be located on the mounting substrate 130 and spaced apart along the length direction of the mounting substrate 130 .
[0089] For example, the mounting substrate 130 may be a rectangular structure with a long side. The ear hook assemblies may be spaced apart along the rectangular mounting substrate 130. During adjustment, the ear hook assemblies 120 may be moved along the length of the mounting substrate 130 to adjust the distance between adjacent ear hook assemblies 120.
[0090] The mounting base 130 may be provided with a plurality of avoidance slots 131, which may be opposite to the ear hooks 122. Thus, during the connection process between the ear hooks 122 and the connecting piece 121, the avoidance slots 131 on the mounting base 130 can be used to operate, thereby preventing the mounting base 130 from interfering with or affecting the installation of the ear hooks 122 on the connecting piece 121. This facilitates the installation of the ear hooks 122 on the connecting piece 121 and helps improve the ease of assembly of the ear hooks 122 between the connecting pieces 121.
[0091] Moreover, it can also avoid interference or friction between the ear hook part 122 and the connecting substrate during the movement of the connecting piece 121 and the ear hook part 122 on the mounting substrate 130, and can avoid friction between the ear hook part 122 and the connecting substrate that affects the movement of the ear hook part 122, which helps to improve the smoothness of the movement of the ear hook part 122.
[0092] Continue to see Figure 4 As shown, the connecting plate may include a connected ear mounting portion 1212 and an adjustment portion 1213. The adjustment portion 1213 may be located on both sides of the ear mounting portion 1212, and the ear mounting member 122 may be located on the ear mounting portion 1212. For example, the ear mounting member 122 may be connected to the ear mounting portion 1212 by riveting or threading.
[0093] The strip groove 1211 can be formed on the adjustment portion 1213, so that the adjustment portion 1213 can be mounted on the mounting base 130 through the cooperation of the strip groove 1211 and the connecting pin 123. Thus, the connecting piece 121 is movably connected to the mounting base 130 via the adjustment portion 1213. When the ear hook 122 needs to be adjusted, the adjustment portion 1213 can be moved on the mounting base 130, so that the adjustment portion 1213 can move the connecting piece 121, and the connecting piece 121 can move the ear hook 122, thereby adjusting the position of the ear hook 122.
[0094] The ear hook mounting portion 1212 can be opposite to the avoidance slot 131, and the avoidance slot 131 can facilitate the installation of the ear hook component 122 on the ear hook mounting portion 1212, reduce or avoid interference between the ear hook component 122 and the ear hook mounting portion 1212 and the mounting substrate 130, and facilitate the installation of the ear hook component 122 and subsequent adjustment and movement.
[0095] Continue to see Figure 4 As shown, the ear hook mounting portion 1212 can be recessed relative to the adjusting portion 1213 toward the avoidance groove 131, the adjusting portion 1213 can be overlapped on the mounting substrate 130, and the adjusting portion 1213 can be connected to the mounting substrate 130 through the strip groove 1211 thereon, so that the connecting piece 121 can be movably connected to the mounting substrate 130 through the adjusting portion 1213.
[0096] The ear mounting portion 1212 can extend into the avoidance slot 131. For example, the connecting piece 121 can be bent by a bending process so that the ear mounting portion 1212 can be bent toward the avoidance slot 131 relative to the adjustment portions 1213 on both sides, so that the ear mounting portion can extend into the avoidance slot 131.
[0097] In this way, during the movement of the connecting piece 121, the ear mounting portion 1212 also moves accordingly in the avoidance groove 131. The avoidance groove 131 can provide a limit for the movement of the ear mounting portion 1212, which can reduce or avoid the ear mounting portion 1212 from being offset or falling out during the movement, thereby helping to improve the smoothness and reliability of the movement of the ear mounting portion 1212, thereby effectively improving the smoothness and reliability of the overall movement adjustment of the ear mounting portion 120.
[0098] See also Figure 5 As shown, the ear hook assembly 120 may further include an elastic member 124, which may be inserted into the connecting pin 123 and located between the connecting piece 121 and the mounting substrate 130. The elastic member 124 is elastic and may be in an elastically compressed state between the connecting piece 121 and the mounting substrate 130. The elastic member 124 in the elastically compressed state has a rebound force. The rebound force may drive the elastic member 124 to squeeze toward the connecting piece 121 and the mounting substrate 130, thereby improving the tightness and firmness of the contact between the elastic member 124, the connecting piece 121, and the mounting substrate 130. This makes the connection between the connecting piece 121 and the mounting substrate 130 more secure and reliable, effectively reducing or preventing the loosening of the connecting piece 121, thereby effectively improving the firmness and reliability of the connection between the connecting piece 121 and the mounting substrate 130.
[0099] In the embodiment of the present application, the ear piece 122 is a captive screw. A captive screw is a screw that is both loose and won't fall off, also known as a captive screw, spring screw, or captive screw. It can be installed on the connecting piece 121 by press riveting or expansion riveting. This effectively reduces or prevents separation between the ear piece 122 and the connecting piece 121, preventing separation of the ear piece 122 from the connecting piece 121 and affecting the connection between the computing device 100 and the cabinet, thereby effectively improving the reliability and stability of the connection between the computing device 100 and the cabinet.
[0100] In the description of the embodiments of this application, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they may refer to a fixed connection, an indirect connection via an intermediate medium, internal communication between two components, or an interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in the embodiments of this application based on specific circumstances.
[0101] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the embodiments of the present application, rather than to limit them. Although the embodiments of the present application have been described in detail with reference to the aforementioned embodiments, ordinary technicians in this field should understand that they can still modify the technical solutions recorded in the aforementioned embodiments, or replace some or all of the technical features therein with equivalents. These modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.
Claims
1. A computing device, characterized in that include: Housing (110); At least two ear-hanging assemblies (120), the ear-hanging assemblies (120) being located outside the housing (110), and the at least two ear-hanging assemblies (120) being arranged in parallel; The ear hanging components (120) are movably connected to the housing (110) along the distribution direction of the ear hanging components (120), so that the distance between two adjacent ear hanging components (120) can be adjusted.
2. The computing device according to claim 1, wherein The ear hanging assembly (120) comprises: a connecting piece (121), the connecting piece (121) being movably connected to the housing (110); An ear hanging piece (122), the ear hanging piece (122) is connected to the connecting piece (121), and the ear hanging piece (122) is movably connected to the housing (110) via the connecting piece (121).
3. The computing device according to claim 2, wherein: The ear hanging assembly (120) further includes a connecting pin (123); The connecting piece (121) is provided with a strip groove (1211), the connecting nail (123) passes through the strip groove (1211) and is connected to the shell (110), the connecting piece (121) is connected to the shell (110) via the connecting nail (123), and the extending direction of the strip groove (1211) is the same as the distribution direction of the ear hanging assembly (120).
4. The computing device according to claim 3, wherein: The connecting nail (123) includes a connecting column (1231) and a pressing portion (1232); The connecting column (1231) passes through the strip-shaped groove (1211) and is detachably connected to the housing (110), and the pressing portion (1232) presses on the connecting piece (121).
5. The computing device according to claim 3 or 4, characterized in that It also includes a mounting base plate (130); the mounting base plate (130) is connected to the housing (110), and the ear hanging assembly (120) is movably connected to the mounting base plate (130); The ear hanging components (120) are all located on the mounting substrate (130) and are spaced apart along the length direction of the mounting substrate (130); A plurality of avoidance slots (131) are provided on the mounting base plate (130), and the avoidance slots (131) are opposite to the ear hanging parts (122). The computing device according to claim 5 , wherein: The connecting piece (121) comprises a connected ear-hanging mounting portion (1212) and an adjusting portion (1213); The adjusting portion (1213) is located on both sides of the ear-hanging mounting portion (1212), the ear-hanging piece (122) is located on the ear-hanging mounting portion (1212), the strip-shaped groove (1211) is provided on the adjusting portion (1213), and the ear-hanging mounting portion (1212) is opposite to the avoidance through groove (131).
7. The computing device according to claim 6, wherein: The ear hook mounting portion (1212) is recessed relative to the adjustment portion (1213) toward the avoidance slot (131); the adjustment portion (1213) is overlapped on the mounting base plate (130); and the ear hook mounting portion (1212) extends into the avoidance slot (131).
8. The computing device according to claim 5, wherein: It also includes an elastic member (124), the elastic member (124) being passed through the connecting pin (123), and the elastic member (124) being located between the connecting piece (121) and the mounting base plate (130).
9. The computing device according to any one of claims 1 to 4, characterized in that: The computing device is a server.
10. A computing device system, characterized in that: A cabinet and a computing device according to any one of claims 1 to 9, wherein the computing device is located in the cabinet; The cabinet is provided with a hanging hole, the hanging ear component (120) on the computing device is hung in the hanging hole, and the computing device is connected to the hanging hole through the cooperation of the hanging ear component (120).