Server device
By designing the structure of the sliding disk and fixed unit in the server device, as well as the combination of the connecting structure and the anti-theft module, the problem of the cloud device service chassis is easily stolen, and the effect of improving security is achieved.
Patent Information
- Application Number
- CN202311638818.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-30
- Publication Date
- 2025-05-30
AI Technical Summary
The service chassis of existing cloud devices is easily opened by unauthorized personnel, resulting in the theft of important data or valuable parts of the server, resulting in economic losses and data security issues.
A server device is designed, including a chassis, a first module, a second module, a cover module and an anti-theft device. Through the design of sliding disk and fixed unit, it is increased the difficulty of opening the extraction rack, and through the triggering of the connecting structure and anti-theft module, an immediate countermeasure is achieved when trying to steal.
It effectively increases the difficulty of unauthorized personnel to open the extraction rack, and reduces the risk of important server data or valuable parts being theft through the triggering of anti-theft devices.
Smart Images

Figure CN120067028A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a server device, and more particularly to a server device capable of reducing theft damage. Background Art
[0002] Generally, the service chassis of cloud devices includes a plurality of removable racks, which respectively carry, for example, file servers, data servers, and application servers, etc., for operators to perform equipment maintenance and management for customers and provide services.
[0003] However, if unauthorized personnel can easily open the removable rack and pull it out of the service chassis, it may lead to the theft of important data of the server or valuable parts in the removable rack, which not only causes economic losses to the operator, but also raises doubts about data security maintenance.
[0004] Therefore, it can be seen that the above technologies still have obvious inconveniences and defects, which are urgent problems to be solved in this industry. Summary of the Invention
[0005] The purpose of the present invention is to provide a server device to solve the difficulties mentioned in the above prior art.
[0006] An embodiment of the present invention provides a server device, which includes a chassis, a first module, a second module, a covering module, and an anti-theft device. The chassis has a first accommodation slot and a second accommodation slot. The first module includes a first carrier and a first fixing unit. The first carrier is slidably located in the first accommodation slot, and the first fixing unit can switchably fix the first carrier in the first accommodation slot. The second module includes a second carrier and a second fixing unit. The second carrier is slidably located in the second accommodation slot, and the second fixing unit can switchably fix the second carrier in the second accommodation slot. The covering module includes a first shielding unit, a second shielding unit, and a linkage structure. The first shielding unit removably shields the first fixing unit. The second shielding unit removably shields the second fixing unit. The linkage structure is located on the first carrier and is respectively connected to the first shielding unit and the second shielding unit. The anti-theft device is connected to the covering module and is used to be triggered by the covering module. When the first shielding unit drives the second shielding unit through the linkage structure, the covering module respectively exposes the first fixing unit and the second fixing unit, and synchronously triggers the anti-theft device.
[0007] According to one or more embodiments of the present invention, in the above server device, the inner side of the chassis has a first fastening portion. The first module further includes a first handle assembly. The first handle assembly is located on an outer sidewall of the first carrier tray and is pivotally provided on two opposite side surfaces of the first carrier tray. The first fixing unit includes a first buckle portion and a first bolt unit. The first buckle portion is located on the first handle assembly for removably locking the first handle assembly to the outer sidewall of the first carrier tray. The first bolt unit is rotatably tightened on the first handle assembly for removably locking the first handle assembly to the outer sidewall of the first carrier tray. When the first carrier tray is located in the first receiving groove and the first handle assembly is rotated to the outer sidewall of the first carrier tray, the first buckle portion is buckled to the first fastening portion.
[0008] According to one or more embodiments of the present invention, in the above server device, the first shielding unit is slidably located on the outer sidewall of the first carrier tray for selectively shielding and exposing the first bolt unit.
[0009] According to one or more embodiments of the present invention, in the above server device, the first shielding unit includes a sheet-shaped body, a shielding groove, and an abutting portion. The sheet-shaped body is slidably located on the outer sidewall of the first carrier tray. The shielding groove is formed on one surface of the sheet-shaped body for accommodating the end of the first bolt unit. The abutting portion is connected to the sheet-shaped body for abutting against the anti-theft device.
[0010] According to one or more embodiments of the present invention, in the above server device, the inner side of the chassis has a second fastening portion. The second module further includes a second handle assembly. The second handle assembly is located on an outer sidewall of the second carrier tray and is pivotally provided on two opposite side surfaces of the second carrier tray. The second fixing unit includes a second buckle portion and a second bolt unit. The second buckle portion is located on the second handle assembly for removably locking the second handle assembly to the outer sidewall of the second carrier tray. The second bolt unit is rotatably tightened on the second handle assembly for removably locking the second handle assembly to the outer sidewall of the second carrier tray. When the second carrier tray is located in the second receiving groove and the second handle assembly is rotated to the outer sidewall of the second carrier tray, the second buckle portion is buckled to the second fastening portion.
[0011] According to one or more embodiments of the present invention, in the above server device, the second shielding unit is slidably located on the outer sidewall of the second carrier tray for selectively shielding and exposing the second bolt unit.
[0012] According to one or more embodiments of the present invention, in the above server device, the second shielding unit includes a rotating cover, a covering groove, and a fixed shaft portion. The rotating cover includes a first portion and a second portion that intersect each other. The covering groove is formed on the first portion for accommodating the end of the second bolt unit, and the fixed shaft portion is fixedly connected to the linkage structure and the second portion of the rotating cover.
[0013] According to one or more embodiments of the present invention, in the above-mentioned server device, the linkage structure includes a first bracket, a second bracket, and at least one third bracket. The first bracket and the first shielding unit are parallel to each other. The second bracket is fixedly connected to the first shielding unit and the first bracket respectively. The third bracket is pivotally connected to the first bracket, is disposed at an interval from the second bracket, and is fixedly connected to the second shielding unit. When the first shielding unit linearly moves the second bracket and the first bracket along the long axis direction of the first bracket, the first shielding unit exposes the first fixing unit, and the first bracket rotates the second shielding unit through the third bracket, so that the second shielding unit rotates away from the second fixing unit.
[0014] According to one or more embodiments of the present invention, in the above-mentioned server device, the anti-theft device includes an anti-theft module and a trigger unit. The anti-theft module is located inside the chassis. The trigger unit is electrically connected to the anti-theft module, is located on the first carrier, and is triggerably connected to the first shielding unit.
[0015] According to one or more embodiments of the present invention, in the above-mentioned server device, the anti-theft module is one of a sound device, a communication device, a power-off device, and a kernel self-destruction device.
[0016] Thus, through the above architecture, the server device of this case can increase the difficulty for unauthorized personnel to open the drawer rack. Further, even after the drawer rack is opened, the server device can still immediately execute a preset program through the anti-theft device and take corresponding countermeasure means, thereby reducing the chance of important data or valuable parts of the server being stolen.
[0017] The above is only used to elaborate on the problems to be solved by the present invention, the technical means for solving the problems, and the effects produced thereby. The specific details of the present invention will be introduced in detail in the following embodiments and related drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] To make the above and other objects, features, advantages and embodiments of the present invention more obvious and understandable, the description of the accompanying drawings is as follows:
[0019] Figure 1 is a partial perspective view of a server device according to an embodiment of the present invention;
[0020] Figure 2 is Figure 1 an exploded view of the server device;
[0021] Figure 3 is Figure 2 an exploded view of the first module;
[0022] Figure 4 is an operation schematic diagram of unlocking Figure 1 the first module;
[0023] Figure 5 For unlocking Figure 1 Schematic diagram of the operation of the second module;
[0024] Figure 6 Schematic diagram of the first module observed from another perspective; Figure 2
[0025] Figure 7 For sliding open Figure 1 The covering module to expose the first and second bolt units, schematic diagram of the operation.
[0026]
Symbol description
[0027] 10: Server device
[0028] 100: Chassis
[0029] 110: Cover
[0030] 120: Box body
[0031] 121: Bottom plate
[0032] 122: Partition board
[0033] 123: Spacing
[0034] 124: Side plate
[0035] 125: Inner side
[0036] 130: Internal space
[0037] 131: First accommodation groove
[0038] 132: Second accommodation groove
[0039] 140: First clamping part
[0040] 150: Second clamping part
[0041] 200: First module
[0042] 210: First carrier
[0043] 211: Outer wall
[0044] 212: Side
[0045] 213: Inner wall
[0046] 214: Clamping hole
[0047] 215: Locking hole
[0048] 220: Linear slide rail
[0049] 230: First handle assembly
[0050] 231: First handle body
[0051] 232: Grip part
[0052] 233: First pivot part
[0053] 234: First electronic device
[0054] 235: Fixing hole
[0055] 240: First fixing unit
[0056] 241: First buckle part
[0057] 250: First bolt unit
[0058] 251: First stud
[0059] 252: First nut
[0060] 253: First buffer cover
[0061] 300: Second module
[0062] 310: Second carrier
[0063] 311: Outer wall
[0064] 312: Side surface
[0065] 313: Locking hole
[0066] 320: Second handle assembly
[0067] 321: Second handle body
[0068] 322: Second pivot part
[0069] 323: Second electronic device
[0070] 330: Second fixing unit
[0071] 331: Second buckle part
[0072] 340: Second bolt unit
[0073] 341: Second stud
[0074] 342: Second nut
[0075] 343: Second buffer cover
[0076] 400: Covering module
[0077] 410: First shielding unit
[0078] 411: Flaky body
[0079] 412: Shielding groove
[0080] 413: Elastic element
[0081] 414: Abutting portion
[0082] 415: Guide chute
[0083] 416: Plunger portion
[0084] 420: Second shielding unit
[0085] 421: Rotating mask
[0086] 421A: First part
[0087] 421B: Second part
[0088] 422: Covering groove
[0089] 423: Fixed shaft portion
[0090] 500: Linkage structure
[0091] 510: First bracket
[0092] 520: Second bracket
[0093] 530: Third bracket
[0094] 531: Pivot
[0095] 600: Anti-theft device
[0096] 610: Anti-theft module
[0097] 620: Trigger unit
[0098] 630: Wire
[0099] X,Y,Z: Axis Detailed implementation manners
[0100] Multiple embodiments of the present invention will be disclosed below with reference to the accompanying drawings. For the sake of clarity, many practical details will be described together in the following description. However, it should be understood that these practical details are not used to limit the present invention. That is to say, in one embodiment of the present invention, these practical details are not necessary. In addition, for the purpose of simplifying the drawings, some conventional structures and elements will be shown in a simple schematic manner in the drawings.
[0101] Figure 1 It is a partial perspective view of the server device 10 according to an embodiment of the present invention. Figure 2 It is Figure 1Exploded view of the server device 10. Figure 3 For Figure 2 the exploded view of the first module 200. As Figures 1 to 3 shown, a server device 10 includes a chassis 100, a first module 200, one or more (e.g., 2) second modules 300, a covering module 400, and an anti-theft device 600. The chassis 100 has a first receiving slot 131 and one or more (e.g., 2) second receiving slots 132. The second receiving slots 132 are horizontally arranged side by side, and the first receiving slot 131 is vertically arranged side by side with the second receiving slots 132. However, the present invention is not limited to the above arrangement.
[0102] The first module 200 includes a first carrier 210 and a first fixing unit 240. The first carrier 210 is slidably located within the first receiving slot 131 such that the first carrier 210 can linearly slide within the first receiving slot 131 along the long axis direction (such as the X-axis) of the chassis 100. The first carrier 210 is used to carry a first electronic device 234, and the first electronic device 234 is, for example, an expansion card component (GPU or PCI-e). However, the present invention is not limited to the type of the first electronic device 234. The first fixing unit 240 can switchably fix the first carrier 210 within the first receiving slot 131, that is, the first fixing unit 240 can fix the first carrier 210 to the chassis 100 and keep it staying within the first receiving slot 131. Conversely, after the first fixing unit 240 is operated, it can unlock the first carrier 210 from the chassis 100 for extraction from the first receiving slot 131.
[0103] Each second module 300 includes a second carrier 310 and a second fixing unit 330. The second carrier 310 is slidably located within one of the second receiving slots 132 such that the second carrier 310 can linearly slide within the corresponding second receiving slot 132 along the long axis direction (such as the X-axis) of the chassis 100. The second carrier 310 is used to carry a second electronic device 323, and the second electronic device 323 is, for example, a transmission unit or a storage unit. However, the present invention is not limited to the type of the second electronic device 323. The second fixing unit 330 can switchably fix the second carrier 310 within the second receiving slot 132, that is, the second fixing unit 330 can fix the second carrier 310 to the chassis 100 so that the second carrier 310 is fixedly stayed within the second receiving slot 132. Conversely, after the second fixing unit 330 is operated, it can unlock the second carrier 310 from the chassis 100 for extraction from the second receiving slot 132.
[0104] The covering module 400 includes a first shielding unit 410, one or more (e.g., two) second shielding units 420, and a linkage structure 500. The first shielding unit 410 removably shields the first fixing unit 240. For example, the first shielding unit 410 is located on the outer sidewall 211 of the first carrier 210 (such as the outer surface of the first module 200), and can linearly slide along a transverse direction (such as the Y-axis) orthogonal to the X-axis. Each second shielding unit 420 removably shields one of the second fixing units 330. For example, the second shielding unit 420 is located on the outer sidewall 211 of the first carrier 210, and can rotate on the first carrier 210. The linkage structure 500 is located on the first carrier 210, and is respectively connected to the first shielding unit 410 and the second shielding unit 420 to synchronously link the first shielding unit 410 and the second shielding unit 420. For example, the linkage structure 500 is located on the inner sidewall 213 of the first carrier 210. However, the present invention is not limited to the configuration position of the covering module 400.
[0105] The anti-theft device 600 is located on the first module 200 and is connected to the first shielding unit 410 of the covering module 400 to be triggered to execute a preset program in response to the linkage of the first shielding unit 410, so as to perform corresponding countermeasure means. However, the present invention is not limited to the configuration position of the anti-theft device 600 corresponding to the covering module 400. For example, the anti-theft device 600 may also be connected to the second shielding unit 420 or the linkage structure 500 of the covering module 400.
[0106] In this embodiment, more specifically, the chassis 100 includes a cover body 110 and a box body 120. The box body 120 includes a bottom plate 121, a partition plate 122, a space 123, and two side plates 124. These side plates 124 are respectively located on two opposite long sides of the bottom plate 121 and both extend in a common direction (such as the Z-axis). The cover body 110 faces the bottom plate 121 and covers these side plates 124, so that the cover body 110, the bottom plate 121, and these side plates 124 together define an internal space 130. The above-mentioned partition plate 122 is located in the internal space 130, and two opposite long sides of the partition plate 122 are respectively connected to these side plates 124. The above-mentioned space 123 is located between these side plates 124, and two opposite long sides of the space 123 are respectively connected to the partition plate 122 and the bottom plate 121, so that the above-mentioned partition plate 122 and the space 123 divide the internal space 130 into the above-mentioned first accommodation groove 131 and the above-mentioned two second accommodation grooves 132.
[0107] Figure 4 For unlocking Figure 1 Schematic diagram of the operation of the first module 200. As Figure 2 And Figure 4As shown, the chassis 100 further has two first fastening parts 140, and these first fastening parts 140 are respectively protruded on the inner sides 125 of the box body 120 facing each other. The first module 200 further includes a first handle assembly 230. The first handle assembly 230 is located outside the first carrier 210, and is located on an outer side wall 211 of the first carrier 210 (such as the outer surface of the first module 200), and pivotally connects to two opposite side surfaces 212 of the first carrier 210. The first fixing unit 240 includes two first buckling parts 241, and the first buckling parts 241 are respectively arranged at two opposite ends of the first handle assembly 230.
[0108] More specifically, the first handle assembly 230 includes a first handle body 231, a grip part 232 and two first pivoting parts 233. The grip part 232 is located on one side of the first handle body 231. These first pivoting parts 233 are respectively located at two opposite ends of the first handle body 231, and protrude outward from the other side of the first handle body 231. The first handle assembly 230 is respectively pivotally connected to two opposite side surfaces 212 of the first carrier 210 through these first pivoting parts 233. Therefore, the first handle assembly 230 can rotate relatively around the Y axis, so that the grip part 232 can rely on or move away from the outer side wall 211 of the first carrier 210. The first buckling parts 241 are respectively arranged on the first pivoting parts 233 of the first handle assembly 230. In this embodiment, for example but not limited thereto, the first buckling part 241 is a buckling opening.
[0109] Thus, as Figure 1 shown in Figure 2 When the first carrier 210 is located in the first accommodating groove 131 and the grip part 232 is rotated to the outer side wall 211 of the first carrier 210, the first fastening part 140 ( Figure 2 ) in the chassis 100 can be exactly buckled to the corresponding first buckling part 241, so that the first carrier 210 is fixed in the first accommodating groove 131; conversely, as Figure 4 shown in Figure 2 , when the first handle assembly 230 rotates so that the grip part 232 moves away from the outer side wall 211 of the first carrier 210, the first buckling parts 241 of the first handle assembly 230 can respectively disengage from the buckling of the first fastening part 140 of the chassis 100. Thus, the user can pull out the first handle assembly 230 from the first accommodating groove 131 (
[0110] ) through the grip part 232. Figure 3As shown, the first fixing unit 240 further includes a first bolt unit 250. The first bolt unit 250 is rotatably located on the first handle assembly 230 for removably locking the first handle assembly 230 to the outer side wall 211 of the first carrier 210. Therefore, once the first handle assembly 230 cannot be turned away from the outer side wall 211 of the first carrier 210, the first engaging portion 241 of the first handle assembly 230 cannot disengage from the engaging portion of the first locking portion 140.
[0111] In this embodiment, more specifically, the first bolt unit 250 includes a first stud 251, a first nut 252 and a first buffer cover 253. The first nut 252 is fixedly connected to one end of the first stud 251 and is received in the first buffer cover 253. The first stud 251 is rotatably located on the fixing hole 235 of the first handle body 231 for directly locking to the locking hole 215 on the outer side wall 211 of the first carrier 210, so that the first handle assembly 230 is fixed to the first carrier 210, and the first engaging portion 241 of the first handle assembly 230 cannot disengage from the engaging portion of the first locking portion 140. In this embodiment, the first bolt unit 250 is, for example, a quick-release bolt or other similar locking element. However, the present invention is not limited thereto.
[0112] Figure 5 For unlocking Figure 1 Schematic diagram of the operation of the second module 300. As Figure 2 And Figure 5 As shown, the chassis 100 has two second locking portions 150 on the relative inner sides 125 of each second receiving groove 132 respectively. Each second module 300 further includes a second handle assembly 320. The second handle assembly 320 is located on the outer side wall 311 of the second carrier 310 (such as the outer surface of the second module 300) and pivotally connects to two opposite side faces 312 of the second carrier 310. The second fixing unit 330 includes two second engaging portions 331, and the second engaging portions 331 are respectively arranged at two opposite ends of the second handle assembly 320.
[0113] More specifically, for example, the second handle assembly 320 includes a second handle body 321 and two second pivoting portions 322. These second pivoting portions 322 are respectively located at two opposite ends of the second handle body 321 and protrude outward from the other side of the second handle body 321. The second handle assembly 320 is pivotally connected to two opposite side faces 312 of the second carrier 310 through these second pivoting portions 322, so that the second handle assembly 320 can be turned to or away from the outer side wall 311 of the second carrier 310. The second engaging portions 331 are respectively arranged on the second pivoting portions 322 of the second handle assembly 320.
[0114] Thus, as Figure 1 And Figure 2As shown, when the second carrier 310 is located within the second receiving slot 132 and the second handle assembly 320 is rotated to attach to the outer sidewall 311 of the second carrier 310, the second locking portion 331 of the second handle assembly 320 is exactly locked onto the second locking portion 150 of the chassis 100; conversely, as Figure 2 and Figure 5 shown, when the second handle assembly 320 is rotated away from the outer sidewall 311 of the second carrier 310, the second locking portion 331 of the second handle assembly 320 can be disengaged from the locking of the second locking portion 150 of the chassis 100 respectively. Thus, the user can extract the second receiving slot 132 through the second handle assembly 320.
[0115] In addition, the second fixing unit 330 further includes a second bolt unit 340. The second bolt unit 340 is rotatably located on the second handle assembly 320 for removably locking the second handle assembly 320 to the outer sidewall 311 of the second carrier 310. Therefore, once the second handle assembly 320 cannot be rotated away from the outer sidewall 311 of the second carrier 310, the second locking portion 331 of the second handle assembly 320 cannot be disengaged from the locking of the second locking portion 150.
[0116] In this embodiment, more specifically, the second bolt unit 340 includes a second stud 341, a second nut 342 and a second buffer cover 343. The second nut 342 is fixedly connected to one end of the second stud 341 and is received within the second buffer cover 343. The second stud 341 is rotatably located on the second handle body 321 and directly locks the second handle assembly 320 to the locking hole 313 on the outer sidewall 311 of the second carrier 310, so that the second locking portion 331 of the second handle assembly 320 cannot be disengaged from the locking of the second locking portion 150. In this embodiment, the second bolt unit 340 is, for example, a quick-release bolt or other similar locking elements. However, the present invention is not limited thereto.
[0117] As Figure 2 and Figure 3 shown, the first shielding unit 410 is slidably located on the outer sidewall 311 of the first carrier 210. Therefore, when the first handle assembly 230 is located on the outer sidewall 311 of the first carrier 210, after the first shielding unit 410 slides a certain distance, the end of the first bolt unit 250 can be exposed by the first shielding unit 410; conversely, after the first shielding unit 410 is pushed back to its original position, the first shielding unit 410 can overlap and shield the end of the first bolt unit 250.
[0118] More specifically, the first shielding unit 410 includes a sheet-like body 411, a shielding groove 412, an elastic element 413, a supporting portion 414 and a plunger portion 416. The sheet-like body 411 is located outside the first carrier 210 and is slidably located on the outer side wall 211. The shielding groove 412 is formed on one side of the sheet-like body 411 to completely accommodate the first buffer cover 253 of the first bolt unit 250 so as to complete the shielding of the first bolt unit 250 by the first shielding unit 410. The supporting portion 414 is located on the inner side wall 213 of the first carrier 210, connected to the sheet-like body 411 through the first carrier 210, and is supported by the anti-theft device 600 so as to trigger the anti-theft device 600 with the synchronous movement of the sheet-like body 411. The elastic element 413 is located on the inner side wall 213 of the first carrier 210, connecting the first carrier 210 and the sheet-like body 411. The plunger portion 416 is telescopically located on the sheet body 411 and inserted into the fastening hole 214 of the outer wall 211 of the first carrier 210, so that the sheet body 411 is fixed to the outer wall 211 of the first carrier 210. In this way, when the sheet body 411 covers the first bolt unit 250 and stretches the elastic element 413, the plunger portion 416 is inserted into the fastening hole 214, so that the elastic element 413 stores an elastic pulling force that can keep the sheet body 411 away from the first bolt unit 250.
[0119] In addition, a linear slide rail 220 is protrudingly provided on the outer side wall 211 of the first carrier 210. The linear slide rail 220 extends linearly along the lateral direction (such as the Y axis). One side of the sheet body 411 also includes a guide groove 415. The guide groove 415 can slidably engage the above-mentioned slide rail, so that the first shielding unit 410 can slide relative to the outer side wall 211.
[0120] The second shielding unit 420 is movably located on the outer side wall 311 of the second carrier 310 to selectively shield and expose the second bolt unit 340. Therefore, when the second shielding unit 420 is moved to stagger the second bolt unit 340, the second shielding unit 420 can expose the second bolt unit 340; conversely, after the second shielding unit 420 returns to its original position, the second shielding unit can overlap and shield the second bolt unit 340. In this way, the user cannot use the second bolt unit 340, and thus cannot rotate the second handle assembly 320 away from the second carrier 310.
[0121] More specifically, the second shielding unit 420 includes a rotating mask 421, a covering groove 422, and a fixed shaft portion 423. The rotating mask 421 is in an L shape and includes a first portion 421A and a second portion 421B that intersect each other. The covering groove 422 is recessed in the first portion 421A for completely accommodating the second buffer cover 343 of the second bolt unit 340, so as to complete the shielding of the second bolt unit 340 by the second shielding unit 420. The fixed shaft portion 423 fixedly connects the linkage structure 500 and the second portion 421B of the rotating mask 421.
[0122] Figure 6 For observing from another perspective Figure 2 of the first module 200. As Figure 6 shown, the linkage structure 500 is located on the inner side wall 213 of the first carrier 210, and the linkage structure 500 includes a first bracket 510, a second bracket 520, and two third brackets 530. The first bracket 510 and the first shielding unit 410 are parallel to each other and separated from each other. That is, the long axis direction (such as the Y axis) of the first bracket 510 is parallel to the above-mentioned transverse movement direction (such as the Y axis). The long axis direction (such as the Z axis) of the second bracket 520 is parallel to the above-mentioned common direction (such as the Z axis). The second bracket 520 is fixedly connected to the abutting portion 414 of the first shielding unit 410 and the first bracket 510. These third brackets 530 are pivotally connected to the first bracket 510 through a pivot 531, and the second bracket 520 is located between these third brackets 530 and is respectively arranged at an interval of 123 from these third brackets 530. The long axis direction of each third bracket 530 intersects the above-mentioned transverse movement direction (such as the Y axis), and each third bracket 530 is fixedly connected to one of the second shielding units 420 (the second portion 421B of the rotating mask 421) through the fixed shaft portion 423. Therefore, when the first shielding unit 410 synchronously drives the second bracket 520 and the first bracket 510 along a transverse movement direction, the second bracket 520 synchronously rotates these third brackets 530, and rotates the second shielding unit 420 through the corresponding pivot 531 to expose the second fixing unit 330.
[0123] In addition, as Figure 6 shown, the anti-theft device 600 includes an anti-theft module 610 and a triggering unit 620. The anti-theft module 610 is located inside the chassis 100. The triggering unit 620 is electrically connected to the anti-theft module 610, is located on the inner side wall 213 of the first carrier 210, and the triggering unit 620 is triggerably connected to the first shielding unit 410. In this embodiment, the anti-theft module 610 is a sound device and is located inside the first carrier 210, and the triggering unit 620 is a contact button and is connected to the sound device through a wire 630.
[0124] Thus, when the pressed contact button abuts against the abutting portion 414 of the first shielding unit 410, the contact button has not been triggered by the first shielding unit 410. It is not until the first shielding unit 410 moves away from the contact button that the anti-theft module 610 receives the trigger signal transmitted back by the contact button, and then immediately emits an alarm sound.
[0125] However, the present invention is not limited thereto. In other embodiments, the contact button may also be changed to be pressed by the abutting portion 414 of the first shielding unit 410, and immediately send a trigger signal to the anti-theft module 610.
[0126] Furthermore, in other embodiments, the trigger unit 620 may also be changed to a non-contact sensor (such as a light interruption detector, etc.). The anti-theft module 610 may also be changed to a communication device. Therefore, when the anti-theft module 610 is triggered, the communication device will send a warning message externally; or, the anti-theft module 610 may also be changed to a power-off device. Therefore, when the anti-theft module 610 is triggered, the power-off device will cut off the power supply of the server device 10; or, the anti-theft module 610 may also be changed to a kernel self-destruction device. Therefore, when the anti-theft module 610 is triggered, the kernel self-destruction device will burn the core chip in the server device 10.
[0127] Figure 7 For sliding open Figure 1 the covering module 400 to expose the operation schematic diagrams of the first and second bolt units 250, 340. As Figure 7 shown, when an operator pulls out the plunger portion 416 from the clamping hole 214, such that the first shielding unit 410 is pushed by the elastic pulling force of the elastic element 413 along the above-mentioned transverse movement direction (such as the Y-axis), the first shielding unit 410 is displaced from the first bolt unit 250 to expose the first bolt unit 250. Therefore, this operator can unlock the first bolt unit 250, so that the first module 200 can be pulled out from the first accommodating groove 131. At the same time, the first shielding unit 410 will move the second shielding unit 420 through the linkage structure 500, and expose the second fixing unit 330 outside the second shielding unit 420. Therefore, the user can unlock one of the second bolt units 340, so that the second module 300 can be pulled out from the second accommodating groove 132.
[0128] In addition, since the first shielding unit 410 abuts against the contact button of the anti-theft device 600, when the above-mentioned operator pushes the first shielding unit 410, the first shielding unit 410 will synchronously trigger the anti-theft module 610 of the anti-theft device 600 through the contact button, so as to perform corresponding countermeasure means.
[0129] It should be understood that since the plunger portion 416 inserted into the card fixing hole 214 fixes the covering module, a person unfamiliar with the server device 10 cannot separately move one of the second shielding units 420, thereby increasing the difficulty of stealing the second module 300.
[0130] In some embodiments, the chassis 100 is a rack server chassis 100 (Rack) for accommodating the above-mentioned related electronic devices and / or expansion components. The height of the chassis 100 is measured in units of U (1U is equal to 1.75 inches or 44.45 millimeters). The chassis 100 is, for example but not limited to, used to accommodate standard server chassis 100 such as 7U.
[0131] Thus, through the above architecture, the server device of the present case can increase the difficulty for unauthorized personnel to open the drawer-type rack. Further, even after the drawer-type rack is opened, the server device can still immediately execute a preset program through the anti-theft device and take corresponding countermeasures, thereby reducing the chance of the server's important data or valuable parts being stolen.
[0132] Finally, in the above-disclosed embodiments, they are not intended to limit the present invention. Any person familiar with this art can make various changes and modifications without departing from the spirit and scope of the present invention, and all can be protected by the present invention. Therefore, the protection scope of the present invention shall be subject to that defined by the appended claims.
Claims
1. A server device, characterized in that, it includes: a chassis having a first accommodating groove and a second accommodating groove; a first module including a first carrier and a first fixing unit, the first carrier is slidably located in the first accommodating groove, and the first fixing unit can switchably fix the first carrier in the first accommodating groove; a second module including a second carrier and a second fixing unit, the second carrier is slidably located in the second accommodating groove, and the second fixing unit can switchably fix the second carrier in the second accommodating groove; a covering module including a first shielding unit, a second shielding unit and a linkage structure, the first shielding unit can removably shield the first fixing unit, the second shielding unit can removably shield the second fixing unit, the linkage structure is located on the first carrier and is respectively connected to the first shielding unit and the second shielding unit; and an anti-theft device connected to the covering module for being triggered by the covering module, wherein when the first shielding unit drives the second shielding unit through the linkage structure, the covering module exposes the first fixing unit and the second fixing unit respectively, and synchronously triggers the anti-theft device.
2. The server device according to claim 1, characterized in that, wherein the inner side of the chassis has a first clamping portion, the first module further includes a first handle assembly, the first handle assembly is located on an outer side wall of the first carrier and is pivotally provided on two opposite side surfaces of the first carrier; and the first fixing unit includes a first clamping portion and a first bolt unit, the first clamping portion is located on the first handle assembly for removably locking the first handle assembly to the outer side wall of the first carrier, and the first bolt unit is rotatably tightened on the first handle assembly for removably locking the first handle assembly to the outer side wall of the first carrier, wherein when the first carrier is located in the first accommodating groove and the first handle assembly is rotated to the outer side wall of the first carrier, the first clamping portion is clamped to the first clamping portion.
3. The server device according to claim 2, characterized in that, wherein the first shielding unit is slidably located on the outer side wall of the first carrier for selectively shielding and exposing the first bolt unit.
4. The server device according to claim 3, characterized in that, wherein the first shielding unit includes: a sheet-shaped body slidably located on the outer side wall of the first carrier; a shielding groove formed on one surface of the sheet-shaped body for accommodating the end of the first bolt unit; and a abutting portion connected to the sheet-shaped body for abutting against the anti-theft device.
5. The server device according to claim 1, characterized in that, wherein the inner side of the chassis has a second clamping portion, the second module further includes a second handle assembly, the second handle assembly is located on an outer side wall of the second carrier and is pivotally provided on two opposite side surfaces of the second carrier; and The second fixing unit includes a second buckling portion and a second bolt unit. The second buckling portion is located on the second handle assembly and is used to removably lock the second handle assembly to the outer sidewall of the second carrier. The second bolt unit is rotatably located on the second handle assembly and is used to removably lock the second handle assembly to the outer sidewall of the second carrier. Wherein when the second carrier is located in the second receiving groove and the second handle assembly is rotated to the outer sidewall of the second carrier, the second buckling portion is buckled to the second fastening portion.
6. The server device according to claim 5, characterized in that wherein the second shielding unit is slidably located on the outer sidewall of the second carrier and is used to selectively shield and expose the second bolt unit.
7. The server device according to claim 6, characterized in that wherein the second shielding unit includes: a rotating mask including a first part and a second part intersecting each other; a covering groove formed on the first part and used to accommodate the end of the second bolt unit; and a fixed shaft portion fixedly connecting the linkage structure and the second part of the rotating mask.
8. The server device according to claim 1, characterized in that wherein the linkage structure includes: a first bracket parallel to the first shielding unit; a second bracket fixedly connecting the first shielding unit and the first bracket respectively; and at least one third bracket pivotally connected to the first bracket, spaced apart from the second bracket, and fixedly connecting the second shielding unit, wherein when the first shielding unit linearly moves the second bracket and the first bracket along the long axis direction of the first bracket, the first shielding unit exposes the first fixing unit, and the first bracket rotates the second shielding unit through the third bracket so that the second shielding unit turns away from the second fixing unit.
9. The server device according to claim 1, characterized in that wherein the anti-theft device includes: an anti-theft module located in the chassis; and a triggering unit electrically connected to the anti-theft module, located on the first carrier, and triggerably connected to the first shielding unit.
10. The server device according to claim 9, characterized in that wherein the anti-theft module is one of a sound device, a communication device, a power-off device, and a kernel self-destruction device.