Graphics card tilting assembly bracket, installation method and graphics card
By designing the graphics card tilt assembly bracket, the graphics card is installed obliquely by using supporting plates, slot sockets, gold fingers and other components, the problems of graphics card stability and installation complexity are solved, and the stable fixation and simple installation of the graphics card are achieved, which is suitable for a variety of graphics card structures.
Patent Information
- Application Number
- CN202510242259.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-03-03
AI Technical Summary
The existing graphics card installation method is difficult to ensure the stability of the graphics card after the graphics card volume and weight increase, and it is prone to loosening and shaking problems. At the same time, the existing flat-lying installation structure has defects such as high cost, low versatility, and great heat dissipation impact.
A tilt assembly bracket for graphics card is designed, including support plate, slot socket, gold finger, damping assembly, plug-in unit, interface adapter and height adjustable mounting bracket. Through the synergy of these components, the oblique installation and stable fixation of graphics card is achieved.
It achieves improved stability of graphics cards, avoids loosening and shaking of graphics cards, simplifies the installation process, and is suitable for most graphics card structures without changing the graphics card or motherboard, and has good versatility and cost-effectiveness.
Smart Images

Figure CN119718018B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of computer graphics cards, and more particularly to a graphics card tilting assembly bracket, an installation method and a graphics card. Background Art
[0002] Graphics card is one of the important components in the computer. The traditional installation of graphics card usually adopts the following steps: insert the graphics card into the slot on the motherboard, and then screw the inverted L-shaped connecting piece on the edge of the graphics card to the chassis. The advantage of this installation method is that it is relatively simple, but with the increasing size and weight of graphics cards, especially with the performance upgrade of graphics cards, independent graphics card fans are usually configured, which greatly increases the size and weight of graphics cards. With the traditional connection mode, the graphics card has fewer supporting force points. When the graphics card is used horizontally (the computer motherboard on which the graphics card is installed is in a vertical state), it is difficult to ensure the stability of the graphics card, and it is easy to shake and loosen due to external influences;
[0003] The Chinese application, application number 202310459133.4, provides a flat connection structure between a graphics card and a motherboard. By installing the graphics card flatly, the center of gravity of the graphics card is lowered to solve the installation stability problem. However, this flat installation structure still has the following defects:
[0004] 1. The flat installation of the graphics card requires the re-layout of the components on the motherboard and the planning of the flat position, which will lead to high product costs and extremely low versatility;
[0005] 2. The contact surface between the graphics card and the motherboard increases, and the impact of the motherboard vibration on the graphics card will also increase;
[0006] 3. The heat dissipation of the graphics card is horizontal, and the hot air blown out is easy to affect the surrounding components. The air inlet and outlet paths need to be rearranged, which is costly and further reduces versatility;
[0007] 4. Components such as clips need to be arranged on the mainboard, which involves secondary development of the mainboard, increasing costs and reducing versatility again;
[0008] The above defects result in that the practicality of this solution is very low and it is difficult to implement in production. There is a need for a graphics card tilting assembly bracket and installation method that can improve stability while lowering the height of the graphics card and solve the above defects. Summary of the invention
[0009] The technical problem to be solved by the present invention is that, in view of the above-mentioned defects of the prior art, a tilted mounting bracket for a graphics card is provided, a method for installing the tilted mounting bracket for a graphics card is provided, and a graphics card installed using the bracket is provided.
[0010] The technical solution adopted by the present invention to solve its technical problem is:
[0011] A graphics card tilting assembly bracket is constructed, wherein the bracket comprises a support plate, and a plurality of heat dissipation mesh holes are provided on the support plate; a slot seat and a gold finger are provided at the lower end of the upper surface of the support plate, the slot seat is fixedly connected to the support plate, the gold finger is connected to the slot seat by a damping rotation component, a plug-in unit for plugging in a graphics card is provided in the slot seat, and the plug-in unit is electrically connected to the gold finger; an interface adapter seat for plugging in an interface on a graphics card is provided at the right end of the upper surface of the support plate for horizontal sliding, and the interface adapter seat is detachably connected to an inverted L-shaped frame on the graphics card by screws; the graphics card The card tilt assembly bracket also includes an inverted L-shaped height-adjustable mounting frame, which is fixedly connected to the chassis, and is provided with a longitudinal movable groove and a movable part whose position height can be adjusted along the movable groove, and the movable part is provided with an upper rubber roller and a lower rubber roller for clamping the side edges of the support plate up and down, the upper rubber roller is elastically connected to the movable part longitudinally through an elastic component, and the lower rubber roller is fixedly connected to the movable part; a display interface expansion dock is provided on the mounting frame, and the interface on the display interface expansion dock corresponds one-to-one with the interface on the interface adapter and is connected through a cable.
[0012] The graphics card tilting assembly bracket described in the present invention, wherein the upper surface of the slot seat is provided with a first slot for plugging in the graphics card, the lower surface of the slot seat is provided with a second slot, and the interior of the slot seat is provided with a plurality of movable slots connecting the first slot and the second slot; an arc-shaped conductive rod with elasticity is provided in the movable slot, the middle part of the conductive rod is rotatably connected to the inner wall of the movable slot through a first rotating shaft, the two ends of the conductive rod extend out of the first slot and the second slot respectively, and a reset spring piece for resetting the conductive rod is provided in the movable slot; the first slot, the plurality of movable slots and the plurality of conductive rods constitute the plug-in unit.
[0013] The graphics card tilting assembly bracket described in the present invention, wherein the damping component includes a roller shaft rotatably arranged in the second slot, the surface of the roller shaft is radially fixedly connected to the gold finger, the surface of the roller shaft is provided with a conductive sheet electrically connected to the upper electrode sheet of the gold finger in a one-to-one correspondence, and the conductive sheet corresponds to the lower end of the conductive rod in a one-to-one correspondence; the conductive rods are divided into two groups and are respectively located on both sides of the roller shaft, when the graphics card is inserted into the first slot, the upper ends of the conductive rods are squeezed, so that the upper ends of the two groups of conductive rods are separated, and the lower ends are close to the surface of the roller shaft; when the graphics card exits the first slot, the upper end of the conductive rod is reset under the action of the reset spring.
[0014] The graphics card tilting assembly bracket of the present invention comprises a second rotating shaft coaxially passing through the roller shaft, and an axial hole cooperating with the second rotating shaft is provided on the inner wall of the second slot.
[0015] In the tilted graphics card assembly bracket of the present invention, both ends of the conductive rod are spherical.
[0016] The graphics card tilt assembly bracket described in the present invention, wherein the movable part includes a fixed plate and an adjusting plate arranged side by side, the lower rubber roller is longitudinally rotatably connected to the surface of one side of the fixed plate, a screw rod passing through a movable groove is fixed to the surface of the other side of the fixed plate, and the surface of the screw rod is provided with positioning grooves respectively cooperating with two side edges of the movable groove; the adjusting plate is provided with a screw hole cooperating with the screw rod.
[0017] The graphics card tilt assembly bracket described in the present invention, wherein the elastic component includes a vertical rod fixed to the upper end of the fixing plate, the roller shaft of the upper rubber roller is longitudinally slidably connected to the vertical rod, and the elastic component also includes an elastic member that provides elastic pulling force to the upper rubber roller.
[0018] In the graphics card tilting assembly bracket of the present invention, the elastic member is a spring, one end of the spring is connected to the fixing plate, and the other end of the spring is connected to the roller shaft of the upper rubber roller.
[0019] A method for installing a graphics card tilting assembly bracket is applied to the graphics card tilting assembly bracket as described above, wherein the method comprises the steps of:
[0020] Plug the gold finger into the computer motherboard, and fix the mounting frame into the chassis;
[0021] After the upper rubber roller is pulled upward, the support plate is manually deflected so that the support plate is supported by the lower rubber roller, and the upper rubber roller is released. The upper rubber roller presses the support plate downward by relying on the elastic force of the elastic component;
[0022] Adjust the movable part to the required position, and then manually deflect the support plate to the required angle;
[0023] Place the graphics card against the support plate, and plug the graphics card into the plug-in unit on the slot seat;
[0024] Slide the interface adapter to connect it to the interface on the inverted L-shaped frame on the graphics card, and tighten the inverted L-shaped frame and the interface adapter on the graphics card with screws.
[0025] A graphics card, wherein the graphics card is assembled using the graphics card tilting assembly bracket installation method as described above.
[0026] The beneficial effects of the present invention are as follows: plugging the gold finger with the computer motherboard, and fixing the mounting frame with the chassis; after pulling up the upper rubber roller, manually deflecting the support plate so that the support plate is supported by the lower rubber roller, loosening the upper rubber roller, and relying on the elastic force of the elastic component, the upper rubber roller presses the support plate downward; adjusting the movable part to a required position, and then manually deflecting the support plate to a required angle; leaning the graphics card against the support plate, and plugging the graphics card with the plug-in unit on the slot seat; sliding the interface adapter, connecting the interface adapter with the interface on the inverted L-shaped frame on the graphics card, and locking the inverted L-shaped frame on the graphics card and the interface adapter by screws;
[0027] By applying the structure and method of the present application, the graphics card can be assembled obliquely, the support plate can provide reliable support for the graphics card, the air intake and outlet of the graphics card will not affect other components, and there is no need to change the structure of the mainboard. The gold finger part of the graphics card is connected to the mainboard and the interface of the graphics card is expanded and transferred by relying on the plug-in unit and the interface adapter. The graphics card is also positioned and fixed on the support plate. The assembly can be very simple and can be applicable to most existing graphics card structures without making improvements to the graphics card. In addition, the expansion dock function can realize interface conversion and / or expansion as needed, and the mounting frame can be matched and installed with the existing chassis without changing the structure of the chassis. Combined with the above-mentioned applicability to the motherboard, graphics card and chassis, the structure of the present application can have very good versatility. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the present invention will be further described below in conjunction with the accompanying drawings and embodiments. The drawings described below are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative work:
[0029] Figure 1 It is a front view of a graphics card tilting assembly bracket structure according to a preferred embodiment of the present invention;
[0030] Figure 2 is a cross-sectional view of a slot seat of a graphics card tilted assembly bracket according to a preferred embodiment of the present invention;
[0031] Figure 3 It is a cross-sectional view of a movable part of a graphics card tilting assembly bracket according to a preferred embodiment of the present invention;
[0032] Figure 4 The present invention is a flowchart of a method for installing a tilted mounting bracket for a graphics card according to a preferred embodiment of the present invention. DETAILED DESCRIPTION
[0033] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the following will be described clearly and completely in combination with the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are partial embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work belong to the protection scope of the present invention.
[0034] The graphics card tilting mounting bracket of the preferred embodiment of the present invention is as follows: Figure 1 See also Figure 2 and Figure 3 , including a support plate 1, on which a plurality of heat dissipation mesh holes are provided (for heat dissipation and weight reduction); a slot seat 2 and a gold finger 3 are provided at the lower end of the upper surface of the support plate 1, the slot seat 2 is fixedly connected to the support plate 1, the gold finger 3 is connected to the slot seat 2 by a damping rotation component 4, a plug-in unit 5 for plugging in a graphics card 8 is provided in the slot seat 2, and the plug-in unit 5 is electrically connected to the gold finger 3; an interface adapter seat 6 for plugging in an interface 80 on the graphics card 8 is provided at the right end of the upper surface of the support plate 1 in a transverse sliding manner (a slide groove or a slide rail 10 may be provided on the support plate 1), and the interface adapter seat 6 is detachably connected to an inverted L-shaped frame 81 on the graphics card 8 by screws 60; the graphics card tilting assembly bracket also includes an inverted L-shaped height-adjustable mounting frame 7, the mounting frame 7 is fixedly connected to the chassis, and a mounting frame 7 is provided There is a longitudinal movable groove and a movable member 71 whose position and height can be adjusted along the movable groove. The movable member 71 is provided with an upper rubber roller 72 and a lower rubber roller 73 for clamping the side of the support plate 1 up and down. The upper rubber roller 72 is elastically connected to the movable member 71 longitudinally through an elastic component 74, and the lower rubber roller 73 is fixedly connected to the movable member 71; a display interface expansion dock 75 is provided on the mounting frame 7, and the interface on the display interface expansion dock 75 corresponds to the interface on the interface adapter 6 one by one and is connected through a flat cable 9 (through the soft connection of the flat cable 9, the interface of the graphics card can be well expanded, and at the same time, the mounting frame 7 can be installed without being horizontally opposite to the gold finger 3, but can have a misaligned relationship, so that the upper and lower rubber rollers can clamp the support plate 1 while the support plate 1 is tilted);
[0035] Plug the gold finger 3 into the computer motherboard, and fix the mounting frame 7 into the chassis; after pulling up the upper rubber roller 72, manually deflect the support plate 1 so that the support plate 1 is supported by the lower rubber roller 73 (this step is a rough adjustment of the inclination angle of the support plate 1, only for extending the support plate 1 between the upper and lower rollers), loosen the upper rubber roller 72, and rely on the elastic force of the elastic component 74 to press the support plate 1 downward; adjust the movable part 71 to the required position, and then manually deflect the support plate 1 to the required angle (this step is a fine adjustment of the inclination angle of the support plate 1); lean the graphics card 8 against the support plate 1, and plug the graphics card 8 into the plug-in unit 5 on the slot seat 2; slide the interface adapter 6, connect the interface adapter 6 with the interface on the inverted L-shaped frame 81 on the graphics card 8, and lock the inverted L-shaped frame 81 on the graphics card 8 and the interface adapter 6 with the screw 60;
[0036] By applying the structure and method of the present application, the graphics card 8 can be assembled obliquely, and the support plate 1 can provide reliable support for the graphics card 8 (even if the graphics card is designed to be heavy, there is no need to worry about insufficient support force, and both vertical and horizontal chassis usage scenarios are taken into account). The air intake and outlet of the graphics card 8 will not affect other components, and there is no need to change the structure of the motherboard. The gold finger part of the graphics card is connected to the motherboard and the interface of the graphics card is expanded and transferred by relying on the plug-in unit and the interface adapter. The graphics card is also positioned and fixed on the support plate. The assembly can be very simple and can be applicable to most existing graphics card structures without the need to improve the graphics card. In addition, the expansion dock function can realize interface conversion and / or expansion as needed, and the mounting frame can be matched and installed with the existing chassis without changing the structure of the chassis. Combining the above-mentioned applicability to the motherboard, graphics card and chassis, the structure of the present application can have very good versatility.
[0037] Preferably, the upper surface of the slot seat 2 is provided with a first slot 50 for the graphics card to be plugged in, the lower surface of the slot seat 2 is provided with a second slot 20, and the interior of the slot seat 2 is provided with a plurality of movable slots 51 connecting the first slot 50 and the second slot 20; an arc-shaped conductive rod 52 with elasticity is provided in the movable slot 51, the middle part of the conductive rod 52 is rotatably connected to the inner wall of the movable slot 51 through a first rotating shaft 53, and the two ends of the conductive rod 52 extend out of the first slot 50 and the second slot 20 respectively, and a reset spring 54 for resetting the conductive rod 52 is provided in the movable slot 51; the first slot 50, the plurality of movable slots 51 and the plurality of conductive rods 52 constitute the plug-in unit 5; the damping assembly 4 includes a roller shaft 40 rotatably arranged in the second slot 20, the surface of the roller shaft 40 is radially fixedly connected to the gold finger 3, and the surface of the roller shaft 40 is provided with a spring that is connected to the gold finger The pole pieces 30 on the fingers 3 correspond one-to-one to the electrically connected conductive pieces 41, and the conductive pieces 41 correspond one-to-one to the lower ends of the conductive rods 52; the conductive rods 52 are divided into two groups and are respectively located on both sides of the roller 40. When the graphics card 8 is inserted into the first slot 20, the upper ends of the conductive rods 52 are squeezed, so that the upper ends of the two groups of conductive rods 52 are separated, and the lower ends are close to the surface of the roller 40 (providing damping friction while making electrical connection); on the contrary, when the graphics card 8 withdraws from the first slot 50, it is necessary to overcome the friction force of the upper ends of multiple conductive rods 52 on it. After the graphics card 8 is completely withdrawn, the upper ends of the conductive rods 52 are reset under the action of the reset spring sheet 54; a second rotating shaft 400 is coaxially penetrated on the roller 40, and an axial hole matching the second rotating shaft 400 is provided on the inner wall of the second slot 20; both ends of the conductive rod 52 are spherical;
[0038] With this structural design, when the graphics card 8 is not installed, the roller shaft 40 is not subject to the pressing force of the conductive rod 52 and can rotate relatively freely, and it is very easy to adjust the angle of the support plate at this time; when the graphics card 8 is plugged in, as described above, the conductive rod 52 will clamp the graphics card to prevent it from falling off, while electrically connecting the graphics card and the gold finger, and also providing damping friction for the roller shaft 40. This special multifunctional structural design can make the overall volume of the slot seat 2 very small.
[0039] Preferably, the movable member 71 includes a fixed sheet 710 and an adjusting sheet 711 arranged side by side. A lower rubber roller 73 is longitudinally rotatably connected to a surface of one side of the fixed sheet 710. A screw rod 712 passing through the movable groove is fixed to a surface of the other side of the fixed sheet 710. The surface of the screw rod 712 is provided with positioning grooves respectively matched with the two sides of the movable groove (to prevent the screw rod from rotating relative to the movable groove); a screw hole matched with the screw rod 712 is provided on the adjusting sheet 711; the elastic component 74 includes a vertical rod 740 fixed to the upper end of the fixed sheet 710, and the roller shaft of the upper rubber roller 72 is longitudinally slidably connected to the vertical rod 740 The elastic component 74 also includes an elastic member 741 that provides elastic pulling force to the upper rubber roller; the elastic member is a spring, one end of the spring is connected to the fixing plate 710, and the other end is connected to the roller shaft of the upper rubber roller 72; the structure is simple, reasonable and compact, and the mounting frame 7 can be tightened or released by rotating the adjusting plate 711, and the position of the movable member 71 can be adjusted; when the upper rubber roller 72 is manually pulled upward, the spring will be stretched, and after releasing it, the spring will recover its deformation to provide elastic holding force; the wheel body surfaces of the upper and lower rubber rollers are made of rubber material, which can provide good shock absorption and buffering protection.
[0040] A method for installing a graphics card tilting assembly bracket is applied to the graphics card tilting assembly bracket as described above. Figure 4 As shown, the method comprises the steps of:
[0041] S01: Plug the gold finger into the computer motherboard, and fix the mounting frame into the chassis;
[0042] S02: After the upper rubber roller is pulled upward, the support plate is manually deflected so that the support plate is supported by the lower rubber roller, the upper rubber roller is released, and the upper rubber roller presses the support plate downward by relying on the elastic force of the elastic component;
[0043] S03: Adjust the movable part to the required position, and then manually deflect the support plate to the required angle;
[0044] S04: Lean the graphics card against the support plate, and plug the graphics card into the plug-in unit on the slot seat;
[0045] S05: Slide the interface adapter to connect the interface adapter to the interface on the inverted L-shaped frame on the graphics card, and tighten the inverted L-shaped frame on the graphics card and the interface adapter with screws;
[0046] By applying the method of the present application, the graphics card can be assembled obliquely, the support plate can provide reliable support for the graphics card, the air intake and outlet of the graphics card will not affect other components, and there is no need to change the structure of the mainboard. The gold finger part of the graphics card is connected to the mainboard and the interface of the graphics card is expanded and transferred by relying on the plug-in unit and the interface adapter. The graphics card is also positioned and fixed on the support plate. The assembly can be very simple and can be applicable to most existing graphics card structures without making improvements to the graphics card. In addition, the expansion dock function can realize interface conversion and / or expansion as needed, and the mounting frame can be matched and installed with the existing chassis without changing the structure of the chassis. Combined with the above-mentioned applicability to the motherboard, graphics card and chassis, the structure of the present application can have very good versatility and is suitable for popularization.
[0047] A graphics card, wherein the graphics card is assembled using the graphics card tilting assembly bracket installation method as described above.
[0048] It should be understood that those skilled in the art can make improvements or changes based on the above description, and all these improvements and changes should fall within the scope of protection of the appended claims of the present invention.
Claims
1. A graphics card tilting mounting bracket, characterized in that: It includes a support plate, on which a plurality of heat dissipation mesh holes are provided; a slot seat and a gold finger are provided at the lower end of the upper surface of the support plate, the slot seat is fixedly connected to the support plate, the gold finger is connected to the slot seat by a damping rotation assembly, a plug-in unit for plugging in a graphics card is provided in the slot seat, and the plug-in unit is electrically connected to the gold finger; an interface adapter seat for plugging in an interface on a graphics card is provided at the right end of the upper surface of the support plate for horizontal sliding, and the interface adapter seat is detachably connected to an inverted L-shaped frame on the graphics card by screws; the graphics card tilt assembly bracket also includes an inverted L-shaped height-adjustable mounting frame, the mounting frame is fixedly connected to the chassis, and a longitudinal movable groove and a movable groove along the mounting frame are provided on the mounting frame The movable slot adjusts the position height of the movable part, and the movable part is provided with an upper rubber roller and a lower rubber roller for clamping the side of the support plate up and down, the upper rubber roller is elastically connected to the movable part longitudinally through an elastic component, and the lower rubber roller is fixedly connected to the movable part; a display interface expansion dock is provided on the mounting frame, and the interface on the display interface expansion dock corresponds one-to-one with the interface on the interface adapter seat and is connected through a cable; the upper surface of the slot seat is provided with a first slot for plugging in a graphics card, and the lower surface of the slot seat is provided with a second slot, and a plurality of movable slots connecting the first slot and the second slot are provided inside the slot seat; an arc-shaped conductive rod with elasticity is provided in the movable slot.
2. The graphics card tilting mounting bracket according to claim 1, characterized in that: The middle part of the conductive rod is rotatably connected to the inner wall of the movable groove through a first rotating shaft, and the two ends of the conductive rod extend out of the first slot and the second slot respectively. A reset spring for resetting the conductive rod is arranged in the movable slot; the first slot, multiple movable slots and multiple conductive rods constitute the plug-in unit.
3. The graphics card tilting mounting bracket according to claim 2, characterized in that: The damping assembly includes a roller shaft rotatably arranged in the second slot, the surface of the roller shaft is radially fixedly connected to the gold finger, the surface of the roller shaft is provided with a conductive sheet electrically connected to the upper electrode sheet of the gold finger in a one-to-one correspondence, and the conductive sheet corresponds to the lower end of the conductive rod in a one-to-one correspondence; the conductive rods are divided into two groups and are respectively located on both sides of the roller shaft, when the graphics card is inserted into the first slot, the upper ends of the conductive rods are squeezed, so that the upper ends of the two groups of conductive rods are separated, and the lower ends are close to the surface of the roller shaft; when the graphics card exits the first slot, the upper end of the conductive rod is reset under the action of the reset spring.
4. The graphics card tilting mounting bracket according to claim 3, characterized in that: A second rotating shaft is coaxially passed through the roller shaft, and an inner wall of the second slot is provided with an axial hole matched with the second rotating shaft.
5. The graphics card tilting mounting bracket according to claim 3, characterized in that: Both ends of the conductive rod are spherical.
6. The graphics card tilting mounting bracket according to claim 1, characterized in that: The movable part includes a fixed plate and an adjusting plate arranged side by side, the lower rubber roller is longitudinally rotatably connected to the surface of one side of the fixed plate, a screw rod passing through the movable groove is fixed to the surface of the other side of the fixed plate, and the surface of the screw rod is provided with positioning grooves respectively cooperating with the two side edges of the movable groove; the adjusting plate is provided with a screw hole cooperating with the screw rod.
7. The graphics card tilting mounting bracket according to claim 6, characterized in that: The elastic component includes a vertical rod fixed to the upper end of the fixing plate, the roller shaft of the upper rubber roller is longitudinally slidably connected to the vertical rod, and the elastic component also includes an elastic member that provides elastic tension to the upper rubber roller.
8. The graphics card tilting mounting bracket according to claim 7, characterized in that: The elastic member is a spring, one end of which is connected to the fixing plate, and the other end of which is connected to the roller shaft of the upper rubber roller.
9. A method for installing a graphics card tilting assembly bracket, applied to the graphics card tilting assembly bracket as claimed in any one of claims 1 to 8, characterized in that: The method comprises the steps of: Plug the gold finger into the computer motherboard, and fix the mounting frame into the chassis; After the upper rubber roller is pulled upward, the support plate is manually deflected so that the support plate is supported by the lower rubber roller, and the upper rubber roller is released. The upper rubber roller presses the support plate downward by relying on the elastic force of the elastic component; Adjust the movable part to the required position, and then manually deflect the support plate to the required angle; Place the graphics card against the support plate, and plug the graphics card into the plug-in unit on the slot seat; Slide the interface adapter to connect it to the interface on the inverted L-shaped frame on the graphics card, and tighten the inverted L-shaped frame and the interface adapter on the graphics card with screws.
Citation Information
Patent Citations
A flat connection structure between a graphics card and a motherboard
CN116520950B
Display card fixing support, case and display card mounting method
CN116449924A
Graphics card supporting structure for computer host
CN212647359U