Bearing mechanism and electronic device
By designing a load bearing mechanism connected by rotatable frame and slide rail, the problem of insufficient installation convenience of electronic components in existing electronic devices is solved, and efficient component accommodation and removal is achieved.
Patent Information
- Application Number
- CN202410017754.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-04
- Publication Date
- 2025-07-04
AI Technical Summary
Existing electronic devices are inconvenient in installing or removing electronic components, especially large electronic devices such as computers and servers, where existing carriers cannot use space efficiently.
A load bearing mechanism including a frame, a load holder and a bracket is designed to make the frame rotatable through a slide rail connection, enabling the mobility of the load bearing mechanism, allowing the installation or removal of additional electronic components.
It improves the convenience of installation or removal of electronic components, avoids occupying the bottom space, and enhances the expansion function of electronic devices.
Smart Images

Figure CN120255653A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a carrier mechanism and an electronic device, and particularly to a carrier mechanism and an electronic device that can be moved to install or remove electronic components. Background Art
[0002] With the progress of technology, the application of electronic devices has become increasingly common. Especially for large electronic devices such as computers and servers, they have gradually become an indispensable part of daily life. These electronic devices usually have an electronic device (such as a chassis) to accommodate additional electronic components, for example, to achieve extended functions. However, in terms of the convenience of installing or removing electronic components, there is still room for improvement in existing electronic devices.
[0003] Therefore, it is necessary to provide a carrier mechanism and an electronic device to solve the above problems. Summary of the Invention
[0004] Some embodiments of the present invention provide a carrier mechanism adapted to accommodate an electronic component, and comprising: a frame, a carrier seat, and a bracket. The frame is adapted to accommodate the electronic component. The carrier seat is fixed to the frame. The bracket is provided with a slide rail, and the carrier seat is connected to the bracket through the slide rail, so that the frame is adapted to rotate relative to the bracket.
[0005] Some embodiments of the present invention provide an electronic device, comprising: a chassis, a fixing frame, and a carrier mechanism. The chassis has a bottom surface and side walls perpendicular to the bottom surface. The fixing frame is fixed on the side walls. The carrier mechanism is movably connected to the fixing frame and comprises: a frame, a carrier seat, and a bracket. The frame is adapted to accommodate the electronic component. The carrier seat is fixed to the frame. The bracket is movably arranged between the side walls of the chassis and the fixing frame. The bracket is provided with a slide rail, and the carrier seat is movably connected to the bracket through the slide rail, so that the carrier mechanism is adapted to rotate relative to the chassis.
[0006] The present invention provides a carrier mechanism and an electronic device that can be moved to install or remove electronic components. By means of the carrier mechanism provided by the present invention, an electronic device (such as a chassis) can accommodate additional electronic components without occupying the area on the bottom surface. In this way, it will not affect the space of other components originally arranged in the electronic device. In addition, the frame of the carrier mechanism can be rotated outside the electronic device, greatly improving the convenience of installing or removing electronic components. Brief Description of the Drawings
[0007] According to the following detailed description and in conjunction with the drawings, a better understanding of the concepts of the embodiments of the present invention can be obtained. It should be noted that, according to the standard practice in this industry, various features in the drawings are not necessarily drawn to scale. In fact, the sizes of various features may be arbitrarily enlarged or reduced for clear illustration. Similar reference numerals are used throughout the specification and the drawings to denote similar features.
[0008] Figure 1 Shows a perspective view of an electronic device according to some embodiments of the present invention.
[0009] Figure 2 Shows a perspective view of a carrier mechanism according to some embodiments of the present invention.
[0010] Figure 3 Shows an exploded view of a carrier mechanism according to some embodiments of the present invention.
[0011] Figure 4 Shows a perspective view of a carrier mechanism according to some embodiments of the present invention.
[0012] Figure 5 Shows a side view of a carrier mechanism according to some embodiments of the present invention.
[0013] Figure 6 Shows a side view of a carrier mechanism according to some embodiments of the present invention.
[0014] Figures 7A to 7D Shows a schematic diagram of each stage of operating a carrier mechanism according to some embodiments of the present invention.
[0015] Figure 8 Shows a partial perspective view of an electronic device according to some embodiments of the present invention.
[0016] Figure 9 Shows a perspective view of a carrier mechanism according to some embodiments of the present invention.
[0017] Figures 10A to 10D Shows a schematic diagram of each stage of operating a carrier mechanism according to some embodiments of the present invention.
[0018] Description of main component symbols:
[0019] 10 Electronic device
[0020] 50 Chassis
[0021] 51 Bottom surface
[0022] 52 Side wall
[0023] 53A, 53B Positioning pins
[0024] 55 Opening
[0025] 60 Electronic component
[0026] 80 Fixing bracket
[0027] 81 Groove
[0028] 82 Slot
[0029] 100 and 200 Bearing mechanisms
[0030] 110 Frame
[0031] 111 Bottom surface
[0032] 112 Stop portion
[0033] 114 Limiting portion
[0034] 120 Bearing seat
[0035] 121 Connecting portion
[0036] 1211 First - stage portion
[0037] 1212 Second - stage portion
[0038] 122 Fixing member
[0039] 130 Torsion member
[0040] 140 Handle
[0041] 141 Force - applying end
[0042] 142 Contact end
[0043] 143 Opening
[0044] 145 Axle member
[0045] 145A Nut
[0046] 145B Bolt
[0047] 150 Bracket
[0048] 151 Slide rail
[0049] 153 Positioning portion
[0050] 160 Sliding member
[0051] 161 Slide groove
[0052] 162 Fixing member
[0053] 163 Protruding portion
[0054] 164 Positioning portion
[0055] 165 Operating portion
[0056] 170 Elastic element Detailed implementation manners
[0057] The following describes the carrier mechanism and the electronic device of the embodiments of the present invention. However, it can be easily understood that the embodiments of the present invention provide many suitable creative concepts that can be implemented in a wide variety of specific backgrounds. The specific embodiments disclosed are only used to illustrate the use of the present invention in a specific manner and are not intended to limit the scope of the present invention.
[0058] In addition, relative terms such as "below" or "bottom" and "above" or "top" may be used in the embodiments to describe the relative relationship of one element of the drawing to another element. It can be understood that if the device in the drawing is flipped upside down, the element described on the "below" side will become the element on the "above" side.
[0059] It should be understood that although terms such as "first", "second", etc. may be used herein to describe various elements, materials, and / or parts, these elements, materials, and / or parts should not be limited by these terms, and these terms are only used to distinguish different elements, materials, and / or parts. Therefore, a first element, material, and / or part discussed below may be referred to as a second element, material, and / or part without departing from the teachings of some embodiments of the present invention, and unless otherwise defined, the first or second element, material, and / or part described in the scope of the claims may be understood as any element, material, and / or part in the specification as long as it conforms to the scope of the claims.
[0060] Unless otherwise defined, all terms used herein (including technical and scientific terms) have the same meaning as commonly understood by those of ordinary skill in the art to which this invention belongs. It can be understood that these terms, such as those defined in a commonly used dictionary, should be interpreted to have a meaning consistent with the related art and the background or context of the present invention, and should not be interpreted in an idealized or overly formal manner, unless specifically defined herein. In addition, terms such as "substantially", "about", or "approximately" are also recited herein, which are intended to cover cases or ranges that are substantially consistent and completely consistent. It should be noted that unless specifically defined, even if the above terms are not recited in the description, they should still be interpreted in the same sense as when the above approximate terms are recited.
[0061] Please first refer to Figure 1 , Figure 1 FIG. 16 is a perspective view of an electronic device 10 according to some embodiments of the present invention. It should be noted first that the electronic device 10 can be any suitable electronic device, such as a computer device, a server device, etc., but is not limited thereto. In some embodiments, only a part of the electronic device 10 is illustrated in the present invention, and any electronic device that may include this part is covered by the scope of the present invention. As Figure 1As shown, the electronic device 10 includes a chassis 50 and a carrier mechanism 100. The chassis 50 may include a bottom surface 51 and side walls 52 that are connected to and perpendicular to the bottom surface 51. Electronic components (not shown) may be disposed on the bottom surface 51 of the chassis 50. The electronic components can be any type of electronic components, depending on the function to be achieved, and thus will not be described in detail. In some embodiments, a fixing bracket 80 is provided on the side wall 52 of the chassis 50, whereby the carrier mechanism 100 can be disposed on the side wall 52. The carrier mechanism 100 can be used to accommodate additional electronic components without directly disposing the above-mentioned electronic components on the bottom surface 51. In this way, additional electronic components can be disposed in the space above the electronic components disposed on the bottom surface 51 of the chassis 50 without affecting other components originally disposed on the bottom surface 51. Specifically, when the carrier mechanism 100 overlaps the bottom surface 51 of the chassis 50 in a third direction (e.g., the Z direction), the carrier mechanism 100 is in a storage state.
[0062] Figure 2 FIG. shows a perspective view of the carrier mechanism 100 according to some embodiments of the present invention. Figure 3 FIG. shows an exploded view of the carrier mechanism 100 according to some embodiments of the present invention. As Figure 2 and Figure 3 shown, the carrier mechanism 100 may include a frame 110, a carrier seat 120, a torsion member 130, a handle 140, a bracket 150, a sliding member 160, and an elastic element 170. In some embodiments, the frame 110 defines a carrier space adapted to accommodate at least one electronic component (e.g., Figure 7D the electronic component 60 shown). The carrier seat 120 is fixed to the frame 110 by, for example, a fixing member 122. For example, the fixing member 122 can be a bolt or other element suitable for fixing the frame 110 and the carrier seat 120. In some embodiments, the carrier seat 120 may include a connecting portion 121 to connect to the bracket 150. The connecting portion 121 includes a first section 1211 and a second section 1212, and the frame 110 is adapted to rotate relative to the bracket 150 about the connecting portion 121 to an unfolded state. When the carrier mechanism 110 is in the storage state, the frame 110 abuts against the sliding groove 151 (i.e., contacts the bracket 150) with the first section 1211; when the carrier mechanism 110 is in the unfolded state, the frame 110 abuts against the sliding groove 151 (i.e., contacts the bracket 150) with the second section 1212. For example, the connecting portion 121 can be L-shaped (i.e., the first section 1211 and the second section 1212 can be substantially perpendicular to each other) to correspond to the sliding groove 151 of the bracket 150. In some embodiments, the lengths of the first section 1211 and the second section 1212 may be different, but the present invention is not limited thereto. In other words, the connecting portion 121 may include a plurality of sections extending in different directions (e.g., the first section 1211 and the second section 1212), thereby reducing the risk of separation between the carrier seat 120 and the bracket 150 during movement.
[0063] In addition, the handle 140 can be coupled to the frame 110 through the shaft member 145. The shaft member 145 can pass through the opening 143 of the handle 140. In this way, the user can use the handle 140 to operate the carrying mechanism 100. For example, the shaft member 145 can include a nut 145A and a bolt 145B combined with each other, but the present invention is not limited thereto. In other embodiments, the shaft member 145 can be an integrally formed element. The torsion member 130 abuts against the shaft member 145 and is adapted to continuously apply a moment to the shaft member 145 so as to keep the handle 140 in place. For example, the torsion member 130 can be a torsion spring. In some embodiments, one end of the torsion member 130 can be connected to the handle 140, and the other end of the torsion member 130 is connected to the frame 110 (such as the bottom surface 111 of the frame 110), but the present invention is not limited thereto. It should be understood that the torsion member 130 can be any element that can apply a moment, and all configurations suitable for applying a moment to the shaft member 145 are covered by the scope of the present invention.
[0064] In addition, the carrier 120 is movably connected to the bracket 150 through the connecting portion 121. Specifically, the connecting portion 121 of the carrier 120 can be engaged with the slide rail 151 of the bracket 150, whereby the carrier 120 can move along the track of the slide rail 151. The slider 160 is provided with a chute 161 extending in a first direction (such as parallel to the X-axis), wherein the locking member 162 can pass through the chute 161 and the bracket 150 to connect the slider 160 and the bracket 150. The elastic element 170 can connect the bracket 150 and the slider 160 in the first direction (such as the X direction). In some embodiments, the slider 160 can move relative to the bracket 150 in the first direction (i.e., the direction in which the chute 161 extends). For example, the user can apply a force at the force application end 141 of the handle 140 and push the protruding portion 163 of the slider 160 through the abutting end 142. In this way, the slider 160 can be moved relative to the bracket 150. The following will refer to Figures 7A to 7D to further illustrate the operation mode of the carrying mechanism 100.
[0065] Figure 4 FIG. 11 is a perspective view of the carrying mechanism 100 according to some embodiments of the present invention. It should be noted first that, in order to clearly show the structure of the frame 110, only a partial structure of the carrying mechanism 100 is shown in this embodiment, and the frame 110 is turned upside down (such as making the negative Z direction face up) to show the bottom surface 111 of the frame 110. As Figure 4As shown, a stop portion 112 and a limiting portion 114 are provided on the bottom surface 111 of the frame 110. In some embodiments, the stop portion 112 protrudes from the bottom surface 111. Since the torsion member 130 continuously applies a torque (e.g., in the clockwise direction) to the shaft member 145 (and the handle 140), the stop portion 112 is adapted to abut against the handle 140, so that the handle 140 and the connected frame 110 are maintained in an appropriate position. It should be understood that although one stop portion 112 is illustrated in this embodiment, any suitable structure and number of the stop portions 112 are covered by the scope of the present invention.
[0066] In addition, in some embodiments, the limiting portion 114 protrudes from the bottom surface 111 and is adapted to be penetrated by the handle 140, thereby restricting the rotation angle of the handle 140, so that the handle 140 can efficiently push the sliding member 160 (described later) to drive the frame 110 to move, reducing the risk that the handle 140 deviates and cannot operate properly. The handle 140 is provided with a force application end 141 and an abutting end 142 on both sides of the shaft member 145, and the user can apply a force to the force application end 141 of the handle 140 to operate the handle 140. In some embodiments, the linear distance between the force application end 141 and the shaft member 145 (e.g., as a fulcrum) can be greater than the linear distance between the abutting end 142 and the shaft member 145, thereby achieving a labor-saving effect, but the present invention is not limited thereto. The handle 140 can adopt any suitable lever configuration, and all possible configurations will not be separately listed hereinafter.
[0067] Figure 5 A side view of a carrying mechanism 100 according to some embodiments of the present invention is shown. As Figure 5 shown, a groove 81 is provided on the fixing bracket 80, and the groove 81 is adapted to receive the positioning portion 153 of the bracket 150. In some embodiments, the groove 81 extends in a third direction (e.g., parallel to the Z axis) perpendicular to the first direction (e.g., parallel to the X axis). The groove 81 can be a closed type to define the moving range of the bracket 150 by the positioning portion 153, so that the carrying mechanism 100 is movably disposed between the fixing bracket 80 and the side wall 52. In some embodiments, a plurality of slots 82 are provided on the fixing bracket 80, and the slots 82 are adapted to receive other positioning portions 153 of the bracket 150. Although one groove 81 and two slots 82 are illustrated in this embodiment, it should be understood that the number and configuration of the groove 81 and the slots 82 are not limited thereto.
[0068] Figure 6 A side view of a carrying mechanism 100 according to some embodiments of the present invention is shown. As Figure 6 shown, the sliding member 160 is provided with a protruding portion 163 and a positioning portion 164. The protruding portion 163 can extend in a third direction (e.g., parallel to the Z axis), and the positioning portion 164 can extend in the first direction (e.g., parallel to the X axis). On the side wall 52 of the chassis 50 (e.g., refer to Figure 1)Multiple positioning pins 53A and 53B may be provided thereon. The positioning pins 53A and 53B are arranged along the second direction (e.g., parallel to the Y-axis). When the positioning pins 53A and 53B are assembled on the side wall 52 of the chassis 50, the positioning pin 53A is adjacent to the bottom surface 51, and the positioning pin 53B is away from the bottom surface 51. In some embodiments, the elastic element 170 may continuously apply a thrust force (e.g., along a direction parallel to the X-axis) to the sliding member 160, such that the positioning portion 164 is located between the positioning pin 53A and the bottom surface 51. In this way, the positioning pin 53A is adapted to abut against the positioning portion 164, preventing the sliding member 160 and the bracket 150 from moving in the second direction (e.g., parallel to the Y-axis) and keeping the carrying mechanism 100 in the storage state.
[0069] Figures 7A to 7D Schematic diagrams showing the stages of operating the carrying mechanism 100 according to some embodiments of the present invention. As Figure 7A shown, when the user operates the handle 140 (e.g., the force application end 141), the handle 140 (e.g., the abutting end 142) pushes the protruding portion 163, thereby pushing the sliding member 160 and compressing the elastic element 170. The positioning portion 164 moves away from the positioning pin 53A, putting the carrying mechanism 100 in a movable free state. Next, as Figure 7B shown, the user can continuously operate the handle 140 or manually lift the frame 110 of the carrying mechanism 100 in the third direction (e.g., the Z direction). Until the positioning portion 153 of the bracket 150 abuts against the top of the groove 81 (not labeled). At this time, the user can release the handle 140 (or the frame 110). The thrust force provided by the elastic element 170 will reset the sliding member 160, and the positioning portion 164 abuts against the positioning pin 53B to position the carrying mechanism 100.
[0070] Then, as Figure 7C shown, the user can apply a force to the handle 140 (or the frame 110), so that the carrier 120 and the frame 110 can rotate relative to the bracket 150 along the slide rail 151 with the connecting portion 120 as a fulcrum to the unfolded state. At this time, the frame 110 can be located outside the side wall 52 and does not overlap with the bottom surface 51 in the third direction (e.g., the Z-axis direction), which is conducive to installing or removing the electronic component 60 (e.g., refer to Figure 7D ). As Figure 7D shown, the electronic component 60 can be installed in the frame 110 in this way, without being interfered by other components in the chassis 50, greatly improving the convenience of installing or removing the electronic component 60. However, the present invention is not limited thereto. The user can install the electronic component 60 in the carrying mechanism 100 or remove the electronic component 60 from the carrying mechanism 100 in any state described in the present invention.
[0071] It should be understood that after the installation or removal of the electronic component 60 is completed, the user can return the carrier mechanism 100 to its original position according to the reverse process of the above steps. For example, the user can rotate the carrier seat 120 and the frame 110 along the slide rail 151 with the connecting portion 120, and operate the handle 140 (such as the force application end 141) to move the positioning portion 164 away from the positioning pin 53B, so that the carrier mechanism 100 is in a movable free state. Then, move the carrier mechanism 100 along the third direction (such as the Z-axis direction) until the positioning portion 153 of the bracket 150 abuts against the top (not labeled) of the groove 81. The thrust provided by the elastic element 170 resets the slider 160 and abuts against the positioning pin 53A to maintain the carrier mechanism 100 in the retracted state. However, the present invention is not limited thereto. The user can place the carrier mechanism 100 at any position described in the present invention according to the operation requirements.
[0072] Figure 8 FIG. shows a partial perspective view of the electronic device 10 according to some embodiments of the present invention. In this embodiment, the carrier mechanism 200 is disposed in the electronic device 10 instead of the carrier mechanism 100 and is movably disposed between the fixing frame 80 and the side wall 52. As Figure 8 shown, at this time, the carrier mechanism 200 is in a retracted state. The following will refer to Figure 9 for further description of the detailed structure of the carrier mechanism 200.
[0073] Figure 9 FIG. shows a perspective view of the carrier mechanism 200 according to some embodiments of the present invention. It should be noted that the carrier mechanism 200 in this embodiment may include elements or parts that are the same as or similar to those of the carrier mechanism 100 in the above embodiment. These elements or parts will be denoted by the same or similar reference numerals and will not be described in detail below. As Figure 9 shown, the carrier mechanism 200 may include a frame 110, a carrier seat 120, a bracket 150, a slider 160, and an elastic element 170. In other words, the carrier mechanism 200 omits the torsion member 130 and the handle 140 compared with the carrier mechanism 100, thereby simplifying the structure and reducing the cost. In some embodiments, a plurality of operating portions 165 are provided on a surface (such as parallel to the X-Z plane) of the slider 160 of the carrier mechanism 200. In some embodiments, the operating portions 165 may be parallel to each other and each have a plurality of grooves (such as recessed from the above surface of the slider 160) to facilitate the user to apply force to the slider 160 to operate the carrier mechanism 200. For example, the operating portions 165 may extend along the first direction (such as parallel to the X-axis). In this way, the user can apply force to the slider 160 along the first direction (such as parallel to the X-axis) by hand on the operating portions 165. However, the present invention is not limited thereto.
[0074] Figures 10A to 10DSchematic diagrams showing the various stages of operating the load-bearing mechanism 200 according to some embodiments of the present invention. As Figure 10A shown, the user can apply a force to the sliding member 160 (such as the operating portion 165) through the opening 55 on the side wall 52 to push the sliding member 160 and compress the elastic element 170, causing the positioning portion 164 to move away from the positioning pin 53A. At this time, the load-bearing mechanism 200 is in a movable free state. That is, in this embodiment, the opening 55 will expose one of the operating portions 165. In some embodiments, in a plane substantially parallel to the side wall 52 (such as the X-Z plane), the size of the opening 55 is larger than the size of one of the operating portions 165. However, the present invention is not limited thereto.
[0075] Next, as Figure 10B shown, the user can simultaneously lift the frame 110 while applying a force to the sliding member 160 to lift the load-bearing mechanism 200 until the positioning portion 153 of the bracket 150 abuts against the top (not numbered) of the groove 81. At this time, the user can release the sliding member 160, and the thrust provided by the elastic element 170 causes the sliding member 160 to automatically reset, and the positioning portion 164 abuts against the positioning pin 53B to position the load-bearing mechanism 100. When the load-bearing mechanism 200 is lifted, the opening 55 will expose the other of the operating portions 165. It should be understood that this embodiment illustrates a configuration of the opening 55, but the present invention is not limited thereto. In other embodiments, a plurality of openings 55 may be provided on the side wall 52, corresponding to different operating portions 165 respectively. At this time, the size of the opening 55 may be respectively larger than or equal to the size of the corresponding one of the operating portions 165.
[0076] Then, as Figure 10C shown, the user can apply a force to the frame 110 to rotate the carrier 120 and the frame 110 relative to the bracket 150 about the connecting portion 120 along the slide rail 151 to the unfolded state. At this time, the frame 110 can be located outside the side wall 52 and does not overlap with the bottom surface 51 in the third direction (such as the Z-axis direction), which is beneficial for installing or removing the electronic component 60 (for example, refer to Figure 10D ). As Figure 10D shown, the electronic component 60 can be installed in the frame 110 without being interfered by other components in the chassis 50, greatly improving the convenience of installing or removing the electronic component 60. However, the present invention is not limited thereto. The user can install the electronic component 60 in the load-bearing mechanism 200 or remove the electronic component 60 from the load-bearing mechanism 200 in any state described in the present invention.
[0077] It should be understood that after the installation or removal of the electronic component 60 is completed, the user can return the carrier mechanism 200 to its original position according to the reverse process of the above steps. For example, the user can rotate the carrier base 120 and the frame 110 along the slide rail 151 with the connecting portion 120 as a fulcrum, apply force to the slider 160, so that the carrier mechanism 200 is in a movable free state. Then, move the carrier mechanism 200 in the third direction (for example, the Z-axis direction) until the positioning portion 153 of the bracket 150 abuts against the bottom of the groove 81 (not labeled). At this time, the thrust provided by the elastic element 170 will reset the slider 160 and abut against the positioning pin 53A, and the positioning portion 164 will be restricted by the positioning pin 53A to keep the carrier mechanism 200 in the storage state. However, the present invention is not limited thereto. The user can place the carrier mechanism 200 at any position described in the present invention according to the operation requirements.
[0078] In summary, the present invention provides a carrier mechanism and an electronic device that can be moved to install or remove electronic components. With the carrier mechanism of the above embodiments, the electronic device (such as a chassis) can accommodate additional electronic components without occupying the area on the bottom surface. In this way, it will not affect the space of other components originally arranged in the electronic device. In addition, the frame of the carrier mechanism can be rotated outside the electronic device, greatly improving the convenience of installing or removing electronic components.
[0079] However, although the embodiments of the present invention and their advantages have been disclosed as above, it should be understood that any person of ordinary skill in the art can make changes, substitutions and modifications without departing from the spirit and scope of the present invention. In addition, the protection scope of the present invention is not limited to the processes, machines, manufactures, compositions of matter, devices, methods and steps in the specific embodiments described in the specification. Any person of ordinary skill in the art can understand the processes, machines, manufactures, compositions of matter, devices, methods and steps developed currently or in the future from the disclosure of the present invention. As long as they can perform substantially the same functions or obtain substantially the same results in the embodiments described herein, they can be used according to the present invention. Therefore, the protection scope of the present invention includes the above processes, machines, manufactures, compositions of matter, devices, methods and steps, and as long as the features between the embodiments do not violate the creative spirit or conflict with each other, they can be arbitrarily mixed and used. In addition, the scope of each claim constitutes an individual embodiment, and the protection scope of the present invention also includes the scope of each claim and the combination of embodiments.
Claims
1. A carrying mechanism, which is adapted to accommodate an electronic component, and the carrying mechanism includes: A frame, which is adapted to accommodate the electronic component; A carrier base, which is fixedly attached to the frame; And A bracket, on which a slide rail is provided, and the carrier base is connected to the bracket through the slide rail, so that the frame is adapted to rotate relative to the bracket.
2. The carrier mechanism according to claim 1, wherein the carrier mechanism further comprises: A slider, which is movably arranged on the bracket.
3. The carrier mechanism according to claim 2, the carrier mechanism further comprising: A handle, which is rotatably arranged on a bottom surface of the frame.
4. The carrying mechanism according to claim 3, wherein a stop portion is provided on the bottom surface of the frame, and the stop portion is adapted to abut against the handle.
5. The carrying mechanism according to claim 3, wherein the slider is provided with a protruding portion, and the protruding portion is adapted to be pushed by the handle, so that the slider can move relative to the bracket.
6. The carrying mechanism according to claim 2, wherein a plurality of operating portions are provided on a surface of the slider, and the operating portions are parallel to each other.
7. The carrying mechanism according to claim 1, wherein the carrier base is provided with a connecting portion, and the carrier base is connected to the slide rail of the bracket with the connecting portion.
8. The carrying mechanism according to claim 7, wherein the connecting portion includes a first section and a second section extending in different directions.
9. The carrying mechanism according to claim 8, wherein the carrier base is adapted to rotate along the slide rail with the connecting portion as a pivot point. When the carrying mechanism is in a storage state, the connecting portion is connected to the slide rail with the first section. When the carrying mechanism is in an unfolded state, the connecting portion is connected to the slide rail with the second section.
10. An electronic device, which includes: A chassis, which has a bottom surface and a side wall perpendicular to the bottom surface; A fixing bracket, which is fixed on the side wall; And A carrying mechanism, which is movably connected to the fixing bracket, and the carrying mechanism includes: A frame, which is adapted to accommodate an electronic component; A carrier base, which is fixed to the frame; and A bracket, which is movably arranged between the side wall of the chassis and the fixing bracket; Wherein, the bracket is provided with a slide rail, and the carrier base is movably connected to the bracket through the slide rail, so that the carrying mechanism is adapted to rotate relative to the chassis.
11. The electronic device according to claim 10, wherein a groove is provided on the fixing bracket, and the groove is adapted to accommodate a positioning portion of the bracket, so that the bracket can be slidably arranged on the fixing bracket.
12. The electronic device according to claim 10, wherein the carrier mechanism further comprises: A slider, which is movably arranged on the bracket, and the slider is located between the bracket and the side wall.
13. The electronic device according to claim 12, wherein the slider is provided with a positioning portion and a protruding portion, and the positioning portion and the protruding portion extend in different directions respectively.
14. The electronic device according to claim 13, wherein a plurality of positioning pins are provided on the side wall, and the positioning portion of the slider is adapted to abut against the positioning pins to position the carrying mechanism.
15. The electronic device according to claim 14, wherein the carrying mechanism further includes: A handle, which is arranged on a bottom surface of the frame, and the handle is adapted to push against the protruding portion of the slider to move the slider away from the positioning pins.
16. The electronic device according to claim 12, wherein a plurality of operating parts are provided on one surface of the sliding member, and the operating parts are parallel to each other.
17. The electronic device according to claim 16, wherein an opening is provided on the side wall, and one of the operating parts is exposed through the opening.
18. The electronic device according to claim 10, wherein the carrier seat is provided with a connecting part, and the carrier seat is connected to the slide rail of the bracket by the connecting part.
19. The electronic device according to claim 18, wherein the connecting part includes a first section and a second section extending in different directions.
20. The electronic device according to claim 19, wherein the carrier seat is adapted to rotate about the connecting part along the slide rail. When the carrying mechanism is in a storage state, the connecting part is connected to the slide rail by the first section. When the carrying mechanism is in an unfolded state, the connecting part is connected to the slide rail by the second section.