Splicing laptop mainboard tray
By designing a modular laptop motherboard tray, and utilizing magnetic clasps and adjustable connectors to achieve flexible tray assembly, the problems of material waste and transportation damage are solved, resulting in an environmentally friendly and efficient transportation solution.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGDE ZHUCHANG ELECTRONIC TECH CO LTD
- Filing Date
- 2025-04-16
- Publication Date
- 2026-05-19
AI Technical Summary
The existing integrated design of the motherboard tray leads to material waste and environmental pollution, and is also prone to damage during transportation due to size mismatch.
Design a modular laptop motherboard tray that allows for flexible assembly using magnetic clasps and adjustable connectors. This allows for adjustments to the tray's length and layout as needed, quick assembly using magnetic clasps, and stable adjustment using adjustable connectors.
It reduces overall pallet waste, lowers environmental pollution, improves transportation efficiency, and avoids pallet damage during transportation.
Smart Images

Figure CN224263580U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of notebook computer structure, and in particular to a modular notebook motherboard tray. Background Technology
[0002] The metal frame inside a laptop casing that houses the motherboard is typically called a motherboard tray or motherboard bracket. This component provides a stable mounting platform for the motherboard, ensuring it is properly aligned inside the laptop, and also helps secure other internal components such as the battery and various cables. Motherboard trays are usually made of metal to provide sufficient strength and durability, as well as good thermal conductivity to help dissipate heat from the motherboard.
[0003] However, existing electroplating tanks often encounter the following problems during use:
[0004] (1) Existing motherboard trays are all one-piece designs. Once a part of the motherboard tray is damaged due to overheating, the entire tray must be replaced, which not only wastes materials, but also causes serious environmental pollution due to the degradation of the entire motherboard tray.
[0005] (2) Due to the different computer models, the motherboards of the existing motherboard trays have different styles and sizes during transportation. This results in a lot of empty space during transportation. However, the transportation will inevitably be bumpy and shaken. The empty space, combined with the bumps, will cause the motherboard trays to be bumped and damaged during transportation. Utility Model Content
[0006] The main purpose of this utility model is to provide a modular notebook motherboard tray, which effectively solves the problems mentioned in the background art, such as the serious environmental pollution caused by the degradation of existing solid motherboard trays and the impact and damage to motherboard trays during transportation.
[0007] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0008] A modular laptop motherboard tray, comprising:
[0009] Keyboard casing;
[0010] A keyboard hole is provided in the keyboard housing;
[0011] The heat dissipation holes are provided in two sets, which are located on both sides of the keyboard hole.
[0012] Mounting frame, which is installed inside the keyboard housing;
[0013] A splicing motherboard tray is mounted on the mounting frame, and the splicing motherboard tray includes two types: a first motherboard tray and a second motherboard tray.
[0014] The splicing slot is formed at the perimeter of the first motherboard tray and the second motherboard tray;
[0015] A magnetic absorbing sheet, which is attached to the opening of the splicing groove;
[0016] Heat dissipation slots are distributed on the splicing motherboard tray;
[0017] The adjustable splicing component is provided in two locations: one location where the adjustable splicing component is installed between the first motherboard tray and the second motherboard tray, and the other location where the adjustable splicing component is installed between the second motherboard tray and the third motherboard tray.
[0018] The adjustable splicing component also includes:
[0019] The splicing shell has an accommodating space;
[0020] A connector, which is inserted into the splicing shell of the splicing shell;
[0021] The limiting port, wherein the plug-in is embedded in the limiting port;
[0022] A baffle plate is installed on the plug-in end of the connector;
[0023] The first card interface is snapped into the edge of a heat sink on the first motherboard tray.
[0024] The second card interface is snapped onto the edge of a heatsink on the second motherboard tray.
[0025] The first motherboard tray and the second motherboard tray are magnetically joined together through their respective edges.
[0026] There are two first motherboard trays, which are distributed on both sides of the second motherboard tray.
[0027] The first motherboard tray is symmetrically distributed with the second motherboard tray as the center line.
[0028] The first motherboard tray is provided with a connection hole for connecting to the splicing slot.
[0029] Compared with the prior art, the beneficial effects of this utility model are:
[0030] (1) The splicing notebook motherboard tray designed in this utility model is assembled into a whole motherboard tray by splicing a first motherboard tray and a second motherboard tray. If one part is damaged, only the damaged splicing part needs to be replaced, which reduces the waste of the whole disposable tray. In the long run, this helps to reduce the degradation of electronic waste, reduce pollution, and promote sustainable development.
[0031] (2) The modular motherboard is designed as a modular motherboard pallet. The first motherboard pallet and the second motherboard pallet can be flexibly assembled according to the size and weight of the goods. This can better adapt to motherboards of different specifications. At the same time, the small first or second motherboard pallet can be removed to fill the empty space, reduce bumps and damage, and improve transportation efficiency. Attached Figure Description
[0032] The accompanying drawings are provided to further understand the present invention and form part of the specification. They are used together with the specific embodiments of the present invention to explain the present invention, but do not constitute a limitation thereof.
[0033] Figure 1 This is a schematic diagram of the overall shape of the present utility model.
[0034] Figure 2 This is a schematic diagram of the cross-sectional structure of the adjustable splicing component.
[0035] Figure 3 This is a partial external shape diagram of the present utility model.
[0036] The diagram shows the following components: 1. Keyboard housing; 2. Keyboard hole; 3. Heat dissipation hole; 4. Mounting frame; 5. Motherboard tray; 51. First motherboard tray; 52. Second motherboard tray; 6. Splicing slot; 7. Magnetic plate; 8. Heat dissipation slot; 9. Adjustable splicing component; 91. Splicing shell; 92. Connector; 93. Limiting port; 94. Baffle; 95. First card interface; 96. Second card interface. Detailed Implementation
[0037] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0038] In the description of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "connected," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art will understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0039] like Figure 1-3 As shown, a modular laptop motherboard tray includes: a keyboard housing 1, keyboard holes 2, ventilation holes 3, a mounting frame 4, a modular motherboard tray 5, a splicing groove 6, a magnetic clasp 7, a heat dissipation groove 8, and adjustable splicing components 9. The keyboard holes 2 are located in the keyboard housing 1 to ensure the installation and use of the keyboard while maintaining the overall structure of the tray. This ensures the accuracy of the motherboard tray when the keyboard is installed, avoiding unnecessary contact or interference between the keyboard and the motherboard. Two sets of ventilation holes 3 are located on either side of the keyboard holes 2, which helps to enhance airflow, improve heat dissipation efficiency, prevent the motherboard from overheating, and protect the stability and lifespan of electronic components. The mounting frame 4 is installed inside the keyboard housing 1, providing a connection between the motherboard tray and the keyboard housing 1, ensuring the stability and alignment of the motherboard tray.
[0040] In this embodiment, as Figure 1 and 3 As shown, the motherboard tray 5 is mounted on the mounting frame 4. The motherboard tray 5 includes two types: a first motherboard tray 51 and a second motherboard tray 52. Splicing slots 6 are formed around the edges of both the first and second motherboard trays 51 and 52. Magnetic clips 7 are attached to the openings of the splicing slots 6. Heat dissipation slots 8 are distributed on the motherboard tray 5. Two adjustable splicing components 9 are provided: one between the first and second motherboard trays 51 and 52, and the other between the second and third motherboard trays 52. The magnetic clips 7 enable quick splicing, allowing for flexible adjustment of the motherboard tray's length and layout to meet the needs of different motherboard sizes. The first motherboard tray 51 and the second motherboard tray 52 are magnetically connected through their respective edges. There are two first motherboard trays 51, which are distributed on both sides of the second motherboard tray 52. The first motherboard trays 51 are symmetrically distributed with the second motherboard tray 52 as the center line. The first motherboard tray 51 is provided with a connection hole that connects to the splicing groove 6.
[0041] Preferably, the adjustable splicing component 9 further includes: a splicing shell 91 with an accommodating space, a connector 92 inserted into the splicing shell 91, the connector 92 being embedded in a limiting port 93, a baffle 94 installed on the insertion end of the connector 92, a first locking interface 95 locking onto the edge of a heat dissipation groove 8 on the first motherboard tray 51, and a second locking interface 96 locking onto the edge of a heat dissipation groove 8 on the second motherboard tray 52. Through the sliding of the connector 92 and the locking of the first and second locking interfaces 96, not only is the stability of the splicing point ensured, but also fine-tuning can be performed according to the actual distance between the motherboard trays, enhancing the adaptability and stability of the entire structure.
[0042] It should be noted that the modular laptop motherboard tray designed in this utility model is simple to use. Simply align the splicing slots 6 of the first motherboard tray 51 and the second motherboard tray 52 according to your needs and the layout inside the computer case. The magnetic 7 at the opening of the splicing slot 6 will automatically adhere, making it quick and easy. The adjustable splicing component 9 ensures the stability of the splicing point. When using the adjustable splicing component 9, manually pull one end of the adjustable splicing component 9 according to the distance between the splicing slot 6 of the first motherboard tray 51 and the two adjacent heat dissipation slots 8 of the second motherboard tray 52. The connector 92 will slide within the limiting port 93. After adjustment, manually squeeze both ends of the adjustable splicing component 9. The first card interface 95 will engage with the edge of the corresponding heat dissipation slot 8, further securing the first motherboard tray 51 and the second motherboard tray 52. The splicing is then complete. It is worth noting that the baffle 94 is designed so that when one end of the adjustable splice 9 is pulled, the baffle 94 can abut against the limiting port 93 to prevent the plug part 92 from falling off.
[0043] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations may be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A splicable notebook main plate tray, characterized by, include: Keyboard casing (1); Keyboard hole (2), the keyboard hole (2) is formed in the keyboard housing (1); Heat dissipation holes (3) are provided in two sets, and the two sets of heat dissipation holes (3) are located on both sides of the keyboard hole (2); Mounting frame (4), which is installed inside the keyboard housing (1); The splicing motherboard tray (5) is installed on the mounting frame (4). The splicing motherboard tray (5) includes two types: a first motherboard tray (51) and a second motherboard tray (52). There are two first motherboard trays (51), which are distributed on both sides of the second motherboard tray (52). The splicing groove (6) is provided at the perimeter of the first motherboard tray (51) and the second motherboard tray (52); Magnetic absorbing piece (7), the magnetic absorbing piece (7) is attached to the groove of the splicing groove (6); Heat dissipation slots (8) are distributed on the splicing motherboard tray (5); Adjustable splicing component (9) is provided in two places. One adjustable splicing component (9) is installed between the first motherboard tray (51) and the second motherboard tray (52), and the other adjustable splicing component (9) is installed between the second motherboard tray (52) and the first motherboard tray (51) at another location.
2. The splicable notebook pad tray of claim 1, wherein, The adjustable splice (9) also includes: The splicing shell (91) has an accommodating space; Connector (92), which is inserted into the splicing shell (91) of the splicing shell (91); Limiting port (93), the plug (92) is embedded in the limiting port (93); A baffle (94) is installed at the plug end of the connector (92); The first card interface (95) is snapped into the edge of a heat sink (8) of the first motherboard tray (51); The second card interface (96) is snapped into the edge of a heat sink (8) of the second motherboard tray (52).
3. The splicable notebook pad tray of claim 1, wherein, The first motherboard tray (51) and the second motherboard tray (52) are magnetically joined together through their respective edges.
4. The splicable notebook pad tray of claim 1, wherein, The first motherboard tray (51) is symmetrically distributed with the second motherboard tray (52) as the center line.
5. The splicable notebook pad tray of claim 1, wherein, The first motherboard tray (51) is provided with a connection hole that connects to the splicing slot (6).