Server device

By introducing an adjustable lifting device into the server device, the lifting and flipping of the component mounting plate is solved, and the maintenance inconvenience caused by the angle fixation of the component mounting plate in the prior art is solved, and maintenance efficiency and safety are improved.

CN223257898UActive Publication Date: 2025-08-22INSPUR SUZHOU INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202521480561.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-15
Publication Date
2025-08-22
Estimated Expiration
2035-07-15

AI Technical Summary

Technical Problem

In the existing server design, the component mounting plate is fixed inclination angle during lifting, which makes it inconvenient to repair when the space is narrow or requires a specific angle of operation, limiting the operation flexibility of technicians and increasing maintenance difficulty and time cost.

Method used

A server device is designed, adopting an adjustable lifting device, including a lifting bracket and a component mounting plate, which realizes the lifting and flipping of the component mounting plate through a link mechanism, allowing its inclination to be adjusted relative to the horizontal plane within a certain angle range, and enhances operating flexibility.

Benefits of technology

It realizes the liftability and reversibility of the component mounting plate, provides a spacious operating space, improves maintenance efficiency and operation convenience, reduces dependence on auxiliary tools, and improves maintenance safety and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a server device, and relates to the technical field of server equipment.The server device comprises a shell defining a mounting cavity with an opening and a lifting device arranged in the shell, the lifting device comprises a lifting support and an element mounting plate which are connected with each other, and the lifting support can drive the element mounting plate to ascend and descend; the lifting support and the element mounting plate are arranged in a turnover mode, when the element mounting plate needs to be overhauled, the element mounting plate can completely extend out of the opening, and even the included angle of the element mounting plate relative to the horizontal plane is further adjusted in the extending state. The problem that in the prior art, when the internal element mounting plate of the server is overhauled, operation of workers is not convenient is solved, and the technical effects of improving the overhauling efficiency, operation convenience and safety are achieved.
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Description

Technical Field

[0001] The present application relates to the technical field of server equipment, and in particular to a server device. Background Art

[0002] Currently, server technology, as a core component of information technology, has been widely used in a variety of fields, including data centers, cloud computing, and network storage. In modern server designs, to ensure high density, high performance, and high reliability, the internal structure is often complex and compact. This requires an efficient and convenient solution for the installation and maintenance of component mounting plates within the server. In existing technology, servers are typically designed with removable component mounting plates, which are mechanically connected to the server housing to facilitate hardware upgrades or maintenance. A key aspect of this design is ensuring that the component mounting plates can be safely moved in and out of the server housing during disassembly and installation, while minimizing the impact on the surrounding environment, such as heat dissipation, dust prevention, and physical protection.

[0003] However, when it's necessary to inspect or upgrade components inside a server, while some servers feature liftable mounting plates that can be adjusted to a convenient height, the plate's tilt angle is often fixed during the lift, making it particularly inconvenient in tight spaces or when operations require a specific angle. In server rooms, especially, due to the dense arrangement of racks, technicians may need to approach the mounting plates from different angles during maintenance. Existing technologies don't allow for dynamic adjustment of the plate's tilt during lifts, limiting technicians' operational flexibility and increasing the difficulty and time cost of maintenance work. Utility Model Content

[0004] The present application provides a server device to at least solve the problem in the related art that it is inconvenient for workers to operate when repairing the installation plate of internal components of the server.

[0005] The present application provides a server device, comprising:

[0006] a housing having a mounting cavity and an opening communicating with the mounting cavity;

[0007] A lifting device is disposed within the mounting cavity and includes a lifting bracket and a component mounting plate for mounting the electrical component. The bottom of the lifting bracket is connected to the housing, and the component mounting plate is mounted on the top of the lifting bracket. At least a portion of the lifting device is adjustably configured to allow the component mounting plate to be raised or lowered relative to the bottom of the housing so as to be accommodated in the accommodating cavity or extended through the opening.

[0008] The lifting bracket is connected to the component mounting plate in a flippable manner to adjust the angle of the component mounting plate relative to the horizontal plane.

[0009] Furthermore, the lifting bracket includes a first connecting rod and a second connecting rod, and the middle portion of the first connecting rod and the middle portion of the second connecting rod are hingedly arranged so that when the first connecting rod and the second connecting rod rotate relative to each other, the component mounting plate is raised or lowered.

[0010] Furthermore, the bottom end of the first connecting rod is hinged to the bottom of the housing, and the bottom end of the second connecting rod is slidably connected to the bottom of the housing along the first straight line direction;

[0011] The top end of the first connecting rod is slidably connected to the component mounting plate along a first straight line direction, and the top end of the second connecting rod is slidably connected to the component mounting plate along a preset arc track.

[0012] Furthermore, the lifting bracket also includes a first fixed block and a second fixed block, the first fixed block is connected to the bottom of the shell, and the bottom end of the first connecting rod is hinged to the first fixed block; the second fixed block is hinged to the top end of the first connecting rod, and a protrusion is also provided on the second fixed block, and a slide groove is provided on the component mounting plate, at least part of the protrusion extends into the slide groove and slides with the slide groove, so that the second fixed block is slidably connected to the component mounting plate along the horizontal direction.

[0013] Furthermore, the lifting bracket also includes a third fixed block and a fourth fixed block, the third fixed block is hinged to the bottom end of the second connecting rod, a guide rail extending along the first straight line direction is provided on the shell, and a sliding groove is provided on the third fixed block, and the sliding groove slides with the guide rail; the fourth fixed block is hinged to the top end of the second connecting rod, and an arc groove extending along a preset arc track is provided on the fourth fixed block, and a rotating shaft is provided on the component mounting plate, and at least part of the rotating shaft extends into the arc groove so that the fourth fixed block slides with the component mounting plate.

[0014] Furthermore, the bottom end of the first connecting rod is hinged to the bottom of the shell, and the top end of the first connecting rod is slidably connected to the component mounting plate along the first straight line direction. The second connecting rod is a telescopic rod, and the bottom end of the second connecting rod is slidably connected to the bottom of the shell along the first straight line direction, and the top end of the second connecting rod is hinged to the component mounting plate.

[0015] Furthermore, the lifting bracket also includes a third fixed block and a fourth fixed block. The third fixed block is hinged to the bottom end of the second connecting rod. A guide rail extending along the first straight line direction is provided on the shell. A sliding groove is provided on the third fixed block. The sliding groove slides with the guide rail; the fourth fixed block is hinged to the top end of the second connecting rod, and the fourth fixed block is fixed on the component mounting plate.

[0016] Furthermore, there are at least two lifting brackets, and lifting brackets are arranged on opposite sides of the component mounting plate; the lifting device also includes a first connecting rod and an electric push rod, the first connecting rod is connected to the third fixed blocks of at least two lifting brackets, one end of the electric push rod is rotatably connected to the first connecting rod, and the other end of the electric push rod is hinged to the shell, and the electric push rod is extended and retracted to drive each third fixed block to slide along the extension direction of the guide rail.

[0017] Furthermore, the lifting device also includes a second connecting rod and a telescopic support rod, the second connecting rod is connected to the first fixed blocks of at least two lifting brackets, the telescopic support rod is telescopically arranged, one end of the telescopic support rod is rotatably connected to the second connecting rod, and the other end of the telescopic support rod is rotatably connected to the component mounting plate.

[0018] Furthermore, the lifting bracket includes a supporting piston cylinder and a rotating connection part, the bottom of the supporting piston cylinder is connected to the bottom of the shell, and the top of the supporting piston cylinder is connected to the component mounting plate through the rotating connection part, so as to drive the component mounting plate to rise and fall when the supporting piston cylinder is extended and retracted; wherein, the rotating connection part is rotatably connected to the component mounting plate, or the rotating connection part is rotatably connected to the top of the supporting piston cylinder, so that the component mounting plate can be flipped relative to the horizontal plane.

[0019] The lifting device of the present application allows the component mounting plate to be not only raised and lowered vertically but also tilted relative to the horizontal plane within a certain range of angles through its reversible connection to the lifting bracket. Therefore, during maintenance, the component mounting plate can be extended from the interior of the housing, providing workers with more spacious operating space and facilitating component replacement and maintenance. At least a portion of the lifting device is adjustable, allowing the position and angle of the component mounting plate to be adjusted according to actual needs. This adjustability ensures that the component mounting plate can adapt to different maintenance environments and angle requirements, facilitating operator operation and improving maintenance efficiency. When the component mounting plate requires maintenance, it can be fully extended out of the opening, and its angle relative to the horizontal plane can even be further adjusted while extended. This feature ensures that workers can fully access and inspect all components on the component mounting plate without the need for additional tools or complex disassembly. The liftable and reversible component mounting plate solves the technical problem of inconvenient operation for workers during maintenance of the component mounting plate inside a server in the related art, thereby improving maintenance efficiency, operational convenience, and safety. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] In order to more clearly illustrate the embodiments of the present application, the following is a brief introduction to the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0021] Figure 1 A three-dimensional schematic diagram of a server device provided in an embodiment of the present application;

[0022] Figure 2 A three-dimensional schematic diagram of a server device provided in an embodiment of the present application from another perspective;

[0023] Figure 3 A three-dimensional schematic diagram of a lifting device and a base plate of a server device provided in an embodiment of the present application;

[0024] Figure 4 A schematic perspective view of a lifting device and a base plate of a server device provided in an embodiment of the present application from another perspective;

[0025] Figure 5 A three-dimensional schematic diagram of a fourth fixing block of a server device provided in an embodiment of the present application;

[0026] Figure 6 A side view of a lifting device and a base plate of a server device provided in an embodiment of the present application in a first state;

[0027] Figure 7 A side view of a lifting device and a bottom plate of a server device provided in an embodiment of the present application in a second state;

[0028] Figure 8 A side view of a lifting device and a base plate of a server device provided in an embodiment of the present application in a third state.

[0029] The above drawings include the following reference numerals:

[0030] 100. Shell; 101. Threading hole; 110. Bottom plate; 120. Side wall; 121. Ventilation window; 122. Ventilation duct; 123. Dust screen; 130. Cover plate; 140. Opening; 150. Mounting cavity; 160. Guide rail; 200. Lifting device; 210. Lifting bracket; 211. First connecting rod; 212. Second connecting rod; 213a. First connecting rod; 213b. Second connecting rod; 214. Telescopic support rod; 215. Electric push rod; 216. First fixing block; 217. Second fixing block; 218. Third fixing block; 219. Fourth fixing block; 219a. Arc groove; 220. Component mounting plate; 221. Slide groove; 222. Mounting hole; 300. Roller; 301. Brake pad. DETAILED DESCRIPTION

[0031] The following will be combined with the accompanying drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of them. 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.

[0032] It should be noted that the terms "center," "longitudinal," "transverse," "length," "width," "thickness," "upper," "lower," "front," "back," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," "circumferential," and the like, indicating positions or relationships, are based on the positions or relationships shown in the accompanying drawings and are intended solely for ease of description and simplification of the present application. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation, and therefore should not be construed as limiting the present application. The terms "mounted," "connected," and "connected" should be interpreted broadly, and may include, for example, fixed, removable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediary; and internal communication between two components. The terms "parallel," "perpendicular," and "equal" encompass the described conditions and conditions similar to the described conditions, provided that the range of the similar conditions is within an acceptable range of deviation, as determined by a person of ordinary skill in the art taking into account the measurement in question and the errors associated with the measurement of the particular quantity (i.e., the limitations of the measurement system). For example, "parallel" includes both absolute parallelism and approximate parallelism, where the acceptable deviation range for approximate parallelism may be, for example, within 5°; "perpendicular" includes both absolute perpendicularity and approximate perpendicularity, where the acceptable deviation range for approximate perpendicularity may also be, for example, within 5°. "Equal" includes both absolute equality and approximate equality, where the acceptable deviation range for approximate equality may be, for example, that the difference between the two is less than or equal to 5% of either. Those skilled in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.

[0033] In order to enable those skilled in the art to better understand the present application, the present application is further described in detail below with reference to the accompanying drawings and specific implementation methods.

[0034] An embodiment of the present application provides a server device, and the device is described in detail in combination with the structure and working principle of the server device.

[0035] like Figures 1 to 7 As shown, the server device of the present application includes a shell 100 and a lifting device 200, the shell 100 has an installation cavity 150 and an opening 140 connected to the installation cavity 150; the lifting device 200 is arranged in the installation cavity 150, and the lifting device 200 includes a lifting bracket 210 and a component mounting plate 220 for mounting electrical components, the bottom of the lifting bracket 210 is connected to the shell 100, and the component mounting plate 220 is installed on the top of the lifting bracket 210, and at least a part of the lifting device 200 is adjustably arranged to enable the component mounting plate 220 to be raised and lowered relative to the bottom of the shell 100 so as to be accommodated in the installation cavity 150 or extended from the opening 140; wherein, the lifting bracket 210 and the component mounting plate 220 are flippably connected to adjust the angle of the component mounting plate 220 relative to the horizontal plane.

[0036] The housing 100 of the present application provides an enclosed space, namely a mounting cavity 150, and an opening 140 to facilitate the entry and exit of a component mounting plate 220. The lifting device 200 comprises a lifting bracket 210 and a component mounting plate 220. The lifting bracket 210 is attached to the bottom of the housing 100, and the component mounting plate 220 is mounted on its top. The reversible connection between the lifting bracket 210 allows the component mounting plate 220 to change its angle relative to the horizontal plane, achieving a certain angle of inclination relative to the horizontal plane. Therefore, during maintenance, the component mounting plate 220 can be extended from the interior of the housing 100, providing more spacious operating space for personnel and facilitating component replacement and maintenance. At least a portion of the lifting device 200 is adjustable, allowing the position and angle of the component mounting plate 220 to be adjusted according to actual needs. This adjustability ensures that the component mounting plate 220 can adapt to different maintenance environments and angle requirements, facilitating operation and improving maintenance efficiency. When the component mounting plate 220 requires maintenance, it can be fully extended out of the opening 140, and its angle relative to the horizontal plane can even be further adjusted while extended. This feature ensures that the staff can fully access and inspect the various components on the component mounting plate 220 without the need for additional auxiliary tools or complicated disassembly processes. Since the component mounting plate 220 can be raised and lowered and flipped, it can solve the technical problem in the related technology that it is inconvenient for the staff to operate when repairing the internal component mounting plate 220 of the server, thereby achieving the technical effect of improving maintenance efficiency, operational convenience and safety.

[0037] like Figure 3 、 Figure 4Specifically, the lifting bracket 210 includes a first link 211 and a second link 212. The middle portions of the first link 211 and the second link 212 are hingedly connected. This allows the component mounting plate 220 to be raised or lowered when the first link 211 and the second link 212 rotate relative to each other. This principle is based on the characteristics of a linkage mechanism. The hinged design at the middle portion enables the component mounting plate 220 to be raised or lowered when the two links rotate relative to each other. This is achieved through the principles of mechanics. By controlling the relative rotation of the first link 211 and the second link 212, the vertical movement of the component mounting plate 220 is achieved. This arrangement improves the smoothness and precision of the lifting and lowering of the component mounting plate 220, ensuring the safety of electronic components during movement.

[0038] like Figure 5 As shown, specifically, the bottom end of the first connecting rod 211 is hinged to the bottom of the housing 100, and the bottom end of the second connecting rod 212 is slidably connected to the bottom of the housing 100 along a first linear direction. The top end of the first connecting rod 211 is slidably connected to the component mounting plate 220 along the first linear direction, and the top end of the second connecting rod 212 is slidably connected to the component mounting plate 220 along a predetermined arc path. A first fixing block 216 is fixed to the bottom of the housing 100. This connection allows the bottom end of the first connecting rod 211 to rotate about the first fixing block 216. The slidable connection between the bottom end of the second connecting rod 212 and the housing 100 along the first linear direction enables the second connecting rod 212 to slide along the linear direction, providing power and guidance for the lifting and lowering of the component mounting plate 220. The slidable connection between the top end of the first connecting rod 211 and the component mounting plate 220 along the first linear direction ensures smooth movement of the top end of the first connecting rod 211 on the component mounting plate 220. The top end of the second connecting rod 212 is connected to the component mounting plate 220 in a sliding manner along a predetermined arc, allowing the component mounting plate 220 to adjust its angle during the lifting process, increasing operational flexibility. This configuration utilizes the sliding and articulating nature of the connecting rod to achieve the lifting and tilting of the component mounting plate 220, adapting to various installation and maintenance requirements and enhancing the freedom of movement of the component mounting plate 220.

[0039] In the above embodiment, the first linear direction is the length direction of the component mounting plate 220 .

[0040] Specifically, the lifting bracket 210 further includes a first fixing block 216 and a second fixing block 217. The first fixing block 216 is connected to the bottom of the housing 100. The bottom end of the first connecting rod 211 is hingedly connected to the first fixing block 216. The second fixing block 217 is hingedly connected to the top end of the first connecting rod 211. The second fixing block 217 is also provided with a protrusion. A slide groove 221 is provided on the component mounting plate 220. At least a portion of the protrusion extends into and slidably engages with the slide groove 221, thereby enabling the second fixing block 217 to slide horizontally with the component mounting plate 220. The protrusion of the second fixing block 217 engages with the slide groove 221 on the component mounting plate 220, ensuring a horizontal sliding connection between the second fixing block 217 and the component mounting plate 220, facilitating angle adjustment and increasing the versatility of the component mounting plate 220.

[0041] Specifically, the lifting bracket 210 also includes a third fixing block 218 and a fourth fixing block 219. The third fixing block 218 is hingedly connected to the bottom end of the second connecting rod 212. The housing 100 is provided with a guide rail 160 extending along a first linear direction. The third fixing block 218 is provided with a sliding groove that slidably engages with the guide rail 160. The fourth fixing block 219 is hingedly connected to the top end of the second connecting rod 212. The fourth fixing block 219 is provided with an arcuate groove 219a extending along a predetermined arcuate trajectory. The component mounting plate 220 is provided with a rotating shaft, at least partially extending into the arcuate groove 219a, allowing the fourth fixing block 219 to slidably engage with the component mounting plate 220. The third fixing block 218 is hingedly connected to the bottom end of the second connecting rod 212 and engages with the guide rail 160 on the housing 100, ensuring sliding along the first linear direction. Fourth fixing block 219 is hinged to the top of second connecting rod 212, and arcuate slot 219a cooperates with the rotating shaft on component mounting plate 220 to enable sliding and angle adjustment of component mounting plate 220. This embodiment utilizes the cooperation between the fixing block, guide rail, and rotating shaft to achieve multi-dimensional movement of component mounting plate 220, improving the operability of internal components of the server.

[0042] Specifically, the bottom end of the first connecting rod 211 is hinged to the bottom of the housing 100, and the top end of the first connecting rod 211 is slidably connected to the component mounting plate 220 along a first linear direction. The second connecting rod 212 is a telescopic rod. The bottom end of the second connecting rod 212 is slidably connected to the bottom of the housing 100 along the first linear direction, and the top end of the second connecting rod 212 is hinged to the component mounting plate 220. This embodiment provides a second embodiment of a lifting bracket. The second connecting rod 212 is designed as a telescopic rod, with its bottom end slidably connected to the housing 100 along the first linear direction. This telescopic design increases the flexibility of the lifting function. The top end of the second connecting rod 212 is hinged to the component mounting plate 220, allowing the angle of the component mounting plate 220 to be adjusted. This embodiment achieves a reversible configuration of the component mounting plate 220 by adjusting the length of the second connecting rod 212, allowing its angle relative to the horizontal plane to be adjusted, facilitating operation by maintenance personnel.

[0043] Specifically, the lifting bracket 210 further includes a third fixing block 218 and a fourth fixing block 219. The third fixing block 218 is hingedly connected to the bottom end of the second connecting rod 212. The housing 100 is provided with a guide rail 160 extending along the first linear direction. The third fixing block 218 is provided with a sliding groove that slidably engages with the guide rail 160. The fourth fixing block 219 is hingedly connected to the top end of the second connecting rod 212 and is fixed to the component mounting plate 220. In this embodiment, the coordination between the fixing block and the guide rail 160 enables stable sliding of the connecting rod, thereby controlling the raising and lowering of the component mounting plate 220, thereby improving the smoothness and reliability of the raising and lowering of the component mounting plate 220.

[0044] Specifically, there are at least two lifting brackets 210, each of which is disposed on opposite sides of the component mounting plate 220. The lifting device 200 also includes a first connecting rod 213a and an electric push rod 215. The first connecting rod 213a is connected to the third fixing blocks 218 of at least two lifting brackets 210. One end of the electric push rod 215 is rotatably connected to the first connecting rod 213a, and the other end of the electric push rod 215 is hinged to the housing 100. The electric push rod 215 extends and retracts to drive each third fixing block 218 to slide along the extension direction of the guide rail 160. The first connecting rod 213a is connected to multiple third fixing blocks 218. One end of the electric push rod 215 is rotatably connected to the first connecting rod 213a, and the other end is hinged to the side wall 120 of the housing 100. The extension and retraction of the electric push rod 215 can synchronously control the raising and lowering of multiple lifting brackets 210. In this embodiment, the first connecting rod 213 a is driven to move by the extension and retraction of the electric push rod 215 , thereby controlling the synchronous movement of the plurality of lifting brackets 210 , thereby achieving smooth lifting and lowering of the component mounting plate 220 .

[0045] In the above embodiment, the electric push rod 215 is connected to the first connecting rod 213a via a collar, allowing the electric push rod 215 to rotate relative to the first connecting rod 213a while also slightly moving along the axis of the first connecting rod 213a, thereby preventing the electric push rod 215 from becoming stuck during relative rotation with the first connecting rod 213a. The end of the electric push rod 215 closest to the housing 100 is movably connected to a ring structure via a rotating shaft and a bearing. The ring is bolted to the housing 100, thereby achieving the movable connection between the electric push rod 215 and the housing 100.

[0046] Specifically, the lifting device 200 also includes a second connecting rod 213b and a telescopic support rod 214. The second connecting rod 213b is connected to the first fixed blocks 216 of at least two lifting brackets 210. The telescopic support rod 214 is telescopically arranged, with one end of the telescopic support rod 214 rotatably connected to the second connecting rod 213b, and the other end of the telescopic support rod 214 rotatably connected to the component mounting plate 220. The second connecting rod 213b is connected to at least two first fixed blocks 216. The ends of the telescopic support rod 214 are rotatably connected to the second connecting rod 213b and the component mounting plate 220, respectively. The telescopic support rod 214 controls the lifting and angling of the component mounting plate 220 through its extension and retraction. This embodiment enhances the stability and freedom of movement of the component mounting plate 220 during its rotation by adjusting the length of the telescopic support rod 214, thereby improving the flexibility of the internal space of the server.

[0047] Specifically, the lifting bracket 210 includes a supporting piston cylinder and a rotating connection portion. The bottom of the supporting piston cylinder is connected to the bottom of the housing, and the top of the supporting piston cylinder is connected to the component mounting plate 220 via the rotating connection portion, so as to drive the component mounting plate 220 to rise and fall when the supporting piston cylinder is extended or retracted. The rotating connection portion is rotatably connected to the component mounting plate 220, or the rotating connection portion is rotatably connected to the top of the supporting piston cylinder, so that the component mounting plate 220 can be tilted relative to the horizontal plane. This embodiment provides another embodiment of the lifting device. In this embodiment, the bottom of the supporting piston cylinder is directly connected to the bottom of the housing 100, and the top is connected to the component mounting plate 220 via the rotating connection portion. The extension and retraction of the supporting piston cylinder drives the component mounting plate 220 to rise and fall. The rotating connection portion allows the component mounting plate 220 to be tilted, improving the convenience of operation. The extension and retraction of the supporting piston cylinder achieves the vertical lifting of the component mounting plate 220, while the rotation of the rotating connection achieves the tilt adjustment of the component mounting plate 220, thereby improving the accessibility and operability of the internal components of the server.

[0048] In some embodiments, the shell 100 includes a base plate 110, a side wall 120 and a cover plate 130. The base plate 110 and the side wall 120 enclose an installation cavity 150. The cover plate 130 is detachably connected to the side wall 120 to seal the opening 140. The bottom of the lifting bracket 210 is connected to the base plate 110, and the electric push rod 215 is hinged to the side wall 120 at one end away from the lifting bracket 210. The base plate 110, side wall 120 and cover plate 130 constitute the basic structure of the shell 100, wherein the base plate 110 provides the foundation, the side wall 120 encloses the installation cavity 150, and the cover plate 130 blocks the opening 140 through a detachable connection to protect the internal components from external influences. Fastening screws are respectively provided through threaded holes at the dead corners of the top of the cover plate 130, and four matching threaded holes are correspondingly provided at the four corners of the top of the side wall. The two are connected to make the shell 100 sealed to form the installation cavity 150, thereby realizing the closure and opening of the internal space of the server, facilitating the lifting and lowering of the component mounting plate 220 and the maintenance of the internal components of the server.

[0049] In some embodiments, a plurality of ventilation windows 121 are provided on the sidewall 120 to connect the installation cavity 150 to the outside, and a plurality of ventilation ducts 122 are provided on the cover plate 130 to connect the installation cavity 150 to the outside. A dust screen 123 is provided at each ventilation window 121 and each ventilation duct 122. The provision of ventilation windows 121 and ventilation ducts 122 effectively dissipates heat within the server, while the installation of dust screens 123 prevents dust and foreign matter from entering the server, maintaining internal cleanliness and stable operation. This improves the server's heat dissipation efficiency and dustproof performance, extending the server's service life while also reducing maintenance costs.

[0050] In some embodiments, the component mounting plate 220 is provided with multiple mounting holes 222 for mounting electronic components. The bottom of the housing 100 is provided with multiple rollers 300 to space the bottom of the housing 100 from the supporting base. The bottom of the housing 100 is provided with multiple wire holes 101, through which wires for connecting to the electronic components are passed. Each roller 300 is provided with a brake pad 301. The multiple mounting holes 222 on the component mounting plate 220 enable rapid installation and positioning of electronic components. The rollers 300 on the bottom of the housing 100 facilitate easy movement and positioning of the server. The wire holes 101 on the bottom of the housing 100 enable orderly management and connection of the server's internal wiring. This improves server installation efficiency and mobility while also facilitating management and maintenance of the server's internal wiring. During use, the maintenance personnel first easily move the server to the designated position using the roller 300, then use the brake pad 301 to fix the server, and then connect or disconnect the internal lines of the server through the wire hole 101, and finally quickly install or remove electronic components through the mounting hole 222. The entire process improves the maintenance efficiency and operational convenience of the server.

[0051] The above is a detailed introduction to a server device provided by the present application. Specific examples are used herein to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only intended to help understand the method and core concept of the present application. It should be noted that, for those skilled in the art, without departing from the principles of the present application, several improvements and modifications can be made to the present application, and these improvements and modifications also fall within the scope of protection of the claims of the present application.

Claims

1. A server device, characterized in that: include: A housing (100), the housing (100) having a mounting cavity (150) and an opening (140) communicating with the mounting cavity (150); a lifting device (200), the lifting device (200) being arranged in the installation cavity (150), the lifting device (200) comprising a lifting bracket (210) and a component mounting plate (220) for mounting an electrical component, the bottom of the lifting bracket (210) being connected to the housing (100), the component mounting plate (220) being mounted on the top of the lifting bracket (210), and at least a portion of the lifting device (200) being adjustably arranged so that the component mounting plate (220) can be raised and lowered relative to the bottom of the housing (100) so as to be accommodated in the installation cavity (150) or extended from the opening (140); The lifting bracket (210) is connected to the component mounting plate (220) in a flippable manner to adjust the angle of the component mounting plate (220) relative to the horizontal plane.

2. The server device according to claim 1, wherein The lifting bracket (210) comprises a first connecting rod (211) and a second connecting rod (212), wherein the middle portion of the first connecting rod (211) and the middle portion of the second connecting rod (212) are hingedly arranged so that the component mounting plate (220) is raised or lowered when the first connecting rod (211) and the second connecting rod (212) rotate relative to each other.

3. The server device according to claim 2, wherein: The bottom end of the first connecting rod (211) is hinged to the bottom of the housing (100), and the bottom end of the second connecting rod (212) is slidably connected to the bottom of the housing (100) along a first straight line direction; The top end of the first connecting rod (211) is slidably connected to the element mounting plate (220) along the first straight line direction, and the top end of the second connecting rod (212) is slidably connected to the element mounting plate (220) along a preset arc track.

4. The server device according to claim 3, wherein The lifting bracket (210) further includes a first fixing block (216) and a second fixing block (217), wherein the first fixing block (216) is connected to the bottom of the shell (100), and the bottom end of the first connecting rod (211) is hinged to the first fixing block (216); the second fixing block (217) is hinged to the top end of the first connecting rod (211), and a protrusion is further provided on the second fixing block (217), and a slide groove (221) is provided on the component mounting plate (220), and at least a portion of the protrusion extends into the slide groove (221) and slidably cooperates with the slide groove (221), so that the second fixing block (217) is slidably connected to the component mounting plate (220) in a horizontal direction.

5. The server device according to claim 3, wherein The lifting bracket (210) further includes a third fixed block (218) and a fourth fixed block (219), wherein the third fixed block (218) is hinged to the bottom end of the second connecting rod (212), and the housing (100) is provided with a guide rail (160) extending along the first straight line direction, and the third fixed block (218) is provided with a sliding groove, and the sliding groove is slidably matched with the guide rail (160); the fourth fixed block (219) is hinged to the top end of the second connecting rod (212), and the fourth fixed block (219) is provided with an arc groove (219a) extending along the preset arc trajectory, and the component mounting plate (220) is provided with a rotating shaft, and at least a portion of the rotating shaft extends into the arc groove (219a) so that the fourth fixed block (219) is slidably matched with the component mounting plate (220).

6. The server device according to claim 2, wherein: The bottom end of the first connecting rod (211) is hinged to the bottom of the shell (100), and the top end of the first connecting rod (211) is slidably connected to the component mounting plate (220) along a first straight line direction. The second connecting rod (212) is a telescopic rod, and the bottom end of the second connecting rod (212) is slidably connected to the bottom of the shell (100) along the first straight line direction, and the top end of the second connecting rod (212) is hinged to the component mounting plate (220).

7. The server device according to claim 6, wherein: The lifting bracket (210) further includes a third fixed block (218) and a fourth fixed block (219), wherein the third fixed block (218) is hinged to the bottom end of the second connecting rod (212), and the housing (100) is provided with a guide rail (160) extending along the first straight line direction, and the third fixed block (218) is provided with a sliding groove, and the sliding groove is slidably matched with the guide rail (160); the fourth fixed block (219) is hinged to the top end of the second connecting rod (212), and the fourth fixed block (219) is fixed to the component mounting plate (220).

8. The server device according to claim 5 or 7, characterized in that: There are at least two lifting brackets (210), and the lifting brackets (210) are arranged on opposite sides of the component mounting plate (220); the lifting device (200) also includes a first connecting rod (213a) and an electric push rod (215), the first connecting rod (213a) is connected to the third fixing blocks (218) of at least two of the lifting brackets (210), one end of the electric push rod (215) is rotatably connected to the first connecting rod (213a), and the other end of the electric push rod (215) is hinged to the housing (100), and the electric push rod (215) is extended and retracted to drive each of the third fixing blocks (218) to slide along the extension direction of the guide rail (160).

9. The server device according to claim 8, wherein: The lifting device (200) further includes a second connecting rod (213b) and a telescopic support rod (214), wherein the second connecting rod (213b) is connected to the bottom ends of the first connecting rods (211) of at least two of the lifting brackets (210), and the telescopic support rod (214) is telescopically arranged, one end of the telescopic support rod (214) is rotatably connected to the second connecting rod (213b), and the other end of the telescopic support rod (214) is rotatably connected to the component mounting plate (220).

10. The server device according to claim 1, wherein The lifting bracket (210) includes a supporting piston cylinder and a rotating connection part, the bottom of the supporting piston cylinder is connected to the bottom of the shell, and the top of the supporting piston cylinder is connected to the element mounting plate (220) through the rotating connection part, so as to drive the element mounting plate (220) to rise and fall when the supporting piston cylinder is extended or retracted; wherein, the rotating connection part is rotatably connected to the element mounting plate (220), or the rotating connection part is rotatably connected to the top of the supporting piston cylinder, so that the element mounting plate (220) can be flipped relative to the horizontal plane.