Electronic bin mounting structure

By introducing a dual-sided fixing method of push blocks and limit blocks in the electronic compartment, combined with elastic reset components and buttons, the problems of insufficient speed and reliability in the electronic compartment design are solved, realizing stable installation and convenient disassembly of electronic components, and improving the stability and operating efficiency of the equipment.

CN224083838UActive Publication Date: 2026-04-03WUHAN AI BIRD UAV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing electronic compartment designs lack speed and reliability in loading and unloading electronic components, resulting in poor equipment stability and cumbersome operation in outdoor environments, failing to meet the high-efficiency and convenient requirements of modern electronic devices.

Method used

The electronic compartment installation structure includes a sliding push block and a limiting block. Through the design of the first guide groove and the second guide groove, the push block and the limiting block abut against the electronic components from two sides using an elastic reset component, forming a stable fixing method. Combined with buttons and snap-fit ​​components, the installation and disassembly process is simplified.

Benefits of technology

It improves the stability of electronic components within the electronic compartment and the ease of installation and disassembly, ensuring normal operation of the equipment under vibration and shaking conditions, simplifying the operation process, and enhancing the reliability of the equipment.

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Abstract

The utility model discloses an electronic bin mounting structure, and relates to the technical field of electronic equipment. The electronic bin mounting structure comprises an electronic bin, a push block and a limiting block, the push block and the limiting block are slidably arranged on the electronic bin, the electronic bin is provided with a containing groove for containing an electronic element, a first guide groove and a second guide groove, the first guide groove and the second guide groove are communicated with the containing groove, a binding post electrically connected with the electronic element is arranged on one side of the containing groove, and the first guide groove and the binding post are arranged on the same side to mount the push block. The second guide groove is located on the side, away from the binding post, of the bottom face of the containing groove so as to install the limiting block, the extending direction of the first guide groove is parallel to the bottom face of the containing groove, the extending direction of the second guide groove is perpendicular to the bottom face of the containing groove, and when the electronic element is installed in the containing groove, the push block abuts against one side face of the electronic element, and the limiting block abuts against the other side face of the electronic element. According to the invention, electronic component installation rapidness and stability can be improved.
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Description

Technical Field

[0001] This application relates to the field of electronic equipment technology, and more specifically, to an electronic compartment mounting structure. Background Technology

[0002] With the widespread application of electronic devices, especially those used in outdoor operations, the importance of electronic housings—which house and install electronic components such as batteries, communication modules, and sensors—is increasingly prominent. Electronic housings not only provide a protective shell for electronic components but also directly impact the user experience and ease of maintenance. However, existing electronic housing designs often suffer from insufficient speed and reliability in loading and unloading electronic components, causing considerable inconvenience for users and their maintenance.

[0003] In existing technologies, the structural design of electronic compartments mostly adopts traditional screw fixing or snap-fit ​​connection methods. While these methods can meet basic fixing requirements to a certain extent, in practical applications, especially in outdoor environments, frequent disassembly and installation operations can easily lead to screw loosening or snap-fit ​​wear, thus affecting the stability and reliability of the electronic compartment. In addition, traditional fixing methods are cumbersome and time-consuming, failing to meet the demands of modern electronic devices for efficient and convenient operation. Utility Model Content

[0004] The purpose of this application is to provide an electronic component mounting structure that improves the speed and stability of electronic component installation.

[0005] The embodiments of this application are implemented as follows:

[0006] This application provides an electronic housing installation structure, including an electronic housing and a push block and a limiting block slidably disposed on the electronic housing. The electronic housing has a receiving groove for accommodating electronic components and a first guide groove and a second guide groove communicating with the receiving groove. A terminal block electrically connected to the electronic component is disposed on one side of the receiving groove. The first guide groove is disposed on the same side as the terminal block to install the push block. The second guide groove is located on the bottom surface of the receiving groove away from the terminal block to install the limiting block. The extension direction of the first guide groove is parallel to the bottom surface of the receiving groove, and the extension direction of the second guide groove is perpendicular to the bottom surface of the receiving groove. When the electronic component is installed in the receiving groove, the push block abuts against one side of the electronic component, and the limiting block abuts against the other side of the electronic component.

[0007] Optionally, as an implementable method, a first elastic reset member is provided in the first guide groove. One end of the first elastic reset member is connected to the inner wall of the first guide groove, and the other end is connected to the push block. The first elastic reset member accumulates elastic potential energy to push the push block to move towards the receiving groove.

[0008] Optionally, as an implementable method, a second elastic reset member is provided in the second guide groove. One end of the second elastic reset member is connected to the inner wall of the second guide groove, and the other end is connected to the limiting block. The second elastic reset member accumulates elastic potential energy to push the limiting block to move towards the receiving groove.

[0009] Optionally, as an implementable method, the electronic compartment is provided with a button connected to the limiting block. The button is located outside the receiving groove, and pressing the button downwards causes the limiting block to retract into the second guide groove.

[0010] Optionally, as an implementable method, the electronic compartment is provided with a guide rod, the second elastic reset member is sleeved on the guide rod, and the limiting block is provided with a relief groove corresponding to the guide rod.

[0011] Optionally, as an implementable method, a sliding groove is provided on the side of the push block away from the receiving groove, and a limiting rod is provided on the electronic compartment that is slidably connected to the sliding groove, thereby limiting the sliding length of the push block by the limiting rod and the sliding groove.

[0012] Optionally, as an implementable method, the bottom surface of the receiving groove is further provided with a snap-fit ​​element, and the side of the electronic component is provided with a support ear. During the movement of the electronic component from the limiting block to the terminal block, the support ear snaps into the snap-fit ​​element.

[0013] Alternatively, as an implementable method, the latching member has a slot on the side facing the limiting block, and the lug extends into the slot during the movement of the electronic component from the limiting block to the terminal.

[0014] Alternatively, as one possible implementation, the snap-fit ​​connectors may include a plurality of snap-fit ​​connectors located on both sides of the terminal block.

[0015] Optionally, as an implementable method, the push block includes two, and the limiting block is also set to two, with the two limiting blocks corresponding one-to-one with the two push blocks.

[0016] The beneficial effects of the embodiments of this application include:

[0017] The electronic housing installation structure provided in this application includes an electronic housing and a push block and a limiting block slidably disposed on the electronic housing. The electronic housing has a receiving groove for accommodating electronic components and a first guide groove and a second guide groove communicating with the receiving groove. A terminal block electrically connected to the electronic component is provided on one side of the receiving groove. The first guide groove is disposed on the same side as the terminal block to install the push block. The second guide groove is located on the bottom surface of the receiving groove away from the terminal block to install the limiting block. The extension direction of the first guide groove is parallel to the bottom surface of the receiving groove, and the extension direction of the second guide groove is perpendicular to the bottom surface of the receiving groove. When the electronic component is installed in the receiving groove, the push block abuts against one side of the electronic component, and the limiting block abuts against the other side of the electronic component. By abutting the electronic component from two sides with the push block and the limiting block, a simple and effective fixing method is formed. Compared with the traditional single-direction fixing method, the stability of the electronic component in the electronic housing is greatly enhanced. Even when the equipment is subjected to external forces such as vibration and shaking, the electronic component can be stably fixed, ensuring the normal operation of the equipment. Attached Figure Description

[0018] To more clearly illustrate the technical solutions of the embodiments of this application, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this application and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 This is one of the structural schematic diagrams of the electronic compartment installation structure provided in the embodiments of this application;

[0020] Figure 2 This is the second schematic diagram of the electronic compartment installation structure provided in the embodiments of this application;

[0021] Figure 3 This is a schematic diagram of the electronic compartment in the electronic compartment installation structure provided in the embodiments of this application;

[0022] Figure 4 The third schematic diagram of the electronic compartment installation structure provided in the embodiments of this application.

[0023] Icons: 100 - Electronic compartment installation structure; 110 - Electronic compartment; 111 - Receiving groove; 112 - First guide groove; 113 - Second guide groove; 120 - Push block; 121 - Slide groove; 130 - Limiting block; 140 - Terminal block; 150 - Button; 160 - Snap-fit ​​component; 170 - First elastic reset component; 180 - Second elastic reset component; 190 - Limiting rod; 200 - Electronic component. Detailed Implementation

[0024] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. The components of the embodiments of this application described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.

[0025] Therefore, the following detailed description of the embodiments of this application provided in the accompanying drawings is not intended to limit the scope of the claimed application, but merely to illustrate selected embodiments of the application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application.

[0026] It should be noted that similar reference numerals and letters in the following figures indicate similar items; therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures. Furthermore, the terms "first," "second," "third," etc., are used only to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0027] In the description of this application, it should also be noted that, unless otherwise expressly specified and limited, the terms "set up," "install," "connect," and "link" 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 can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0028] Please refer to Figure 1 , Figure 2 , Figure 3 and Figure 4This embodiment provides an electronic housing mounting structure 100, including an electronic housing 110 and a push block 120 and a limiting block 130 slidably disposed on the electronic housing 110. The electronic housing 110 has a receiving groove 111 for accommodating electronic components 200 and a first guide groove 112 and a second guide groove 113 communicating with the receiving groove 111. A terminal 140 electrically connected to the electronic components 200 is provided on one side of the receiving groove 111, and the first guide groove 112 is provided on the same side as the terminal 140. A pusher block 120 is installed, and a second guide groove 113 is located on the side of the bottom surface of the receiving groove 111 away from the terminal block 140 to install a limiting block 130. The extension direction of the first guide groove 112 is parallel to the bottom surface of the receiving groove 111, and the extension direction of the second guide groove 113 is perpendicular to the bottom surface of the receiving groove 111. When the electronic component 200 is installed in the receiving groove 111, the pusher block 120 abuts against one side of the electronic component 200, and the limiting block 130 abuts against the other side of the electronic component 200.

[0029] Specifically, when installing the electronic component 200 in the electronic compartment installation structure 100, the operator holds the electronic component 200, aligns it with the opening of the receiving slot 111 of the electronic compartment 110, and then slowly pushes the electronic component 200 along the receiving slot 111 from the side with the second guide slot 113 (that is, the side where the limiting block 130 is located) towards the side with the terminal 140. During this process, the operator must pay close attention to the direction and position of the electronic component 200 to ensure that it can smoothly enter the receiving slot 111 without colliding with the internal structure and causing damage. When the electronic component 200 is fully inside the receiving slot 111, the pusher 120 abuts against one side of the electronic component 200, and the limiting block 130 is driven to move towards the receiving slot 111 to abut against the other side of the electronic component 200. At this time, the electronic component 200 and the terminal 140 are precisely connected and electrically connected, completing the installation operation.

[0030] During disassembly, the push block 120 and the limiting block 130 must first release their restraint on the electronic component 200. The operator presses the limiting block 130 with their finger, causing it to retract into the second guide groove 113, thus releasing the fixation on one side of the electronic component 200. Then, the push block 120 moves toward the receiving groove 111, disconnecting the electronic component 200 from the terminal 140. The electronic component 200 is then released from its restraints, and it can be smoothly removed from the receiving groove 111.

[0031] The electronic housing mounting structure 100 provided in this application includes an electronic housing 110 and a push block 120 and a limiting block 130 slidably disposed on the electronic housing 110. The electronic housing 110 has a receiving groove 111 for accommodating an electronic component 200 and a first guide groove 112 and a second guide groove 113 communicating with the receiving groove 111. A terminal 140 electrically connected to the electronic component 200 is provided on one side of the receiving groove 111. The first guide groove 112 is disposed on the same side as the terminal 140 to install the push block 120. The second guide groove 113 is located on the bottom surface of the receiving groove 111 away from the terminal 140 to install the limiting block 130. The extending direction of the first guide groove 112 is parallel to the bottom surface of the receiving groove 111, and the extending direction of the second guide groove 113 is perpendicular to the bottom surface of the receiving groove 111. When the electronic component 200 is installed in the receiving groove 111, the push block 120 abuts against one side of the electronic component 200, and the limiting block 130 abuts against the other side of the electronic component 200. By using push block 120 and limit block 130 to hold the electronic component 200 from two sides, a simple and effective fixing method is formed. Compared with the traditional single-direction fixing method, the stability of the electronic component 200 in the electronic compartment 110 is greatly enhanced. Even when the equipment is subjected to external force interference such as vibration and shaking, the electronic component 200 can be stably fixed to ensure the normal operation of the equipment.

[0032] In one possible embodiment of this application, such as Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, a first elastic reset member 170 is provided in the first guide groove 112. One end of the first elastic reset member 170 is connected to the inner wall of the first guide groove 112, and the other end is connected to the push block 120. The first elastic reset member 170 accumulates elastic potential energy to push the push block 120 to move towards the receiving groove 111.

[0033] A first elastic reset member 170 is provided within the first guide groove 112. One end of the first elastic reset member 170 is securely connected to the inner wall of the first guide groove 112 via a reliable connection method, such as welding or snap-fit, ensuring that it will not easily fall off or shift during use; the other end is tightly connected to the push block 120. The first elastic reset member 170 is typically made of a material with good elastic properties, such as a spring, which accumulates a certain amount of elastic potential energy in its initial state. When the push block 120 is displaced by an external force, such as when the push block 120 is pushed during the installation of electronic component 200 or when the push block 120 is pulled against its elastic force during the removal of electronic component 200, the first elastic reset member 170 will correspondingly expand and contract, and its accumulated elastic potential energy will also change. Once the external force disappears, the first elastic reset member 170, relying on its own elastic restoring force, will immediately push the push block 120 towards the receiving groove 111, ensuring that the push block 120 always maintains a supporting force on the electronic component 200, thus ensuring the reliability of the electronic component 200's fixation.

[0034] Furthermore, a second elastic reset member 180 is provided in the second guide groove 113. One end of the second elastic reset member 180 is connected to the inner wall of the second guide groove 113, and the other end is connected to the limiting block 130. The second elastic reset member 180 accumulates elastic potential energy to push the limiting block 130 to move towards the receiving groove 111.

[0035] A second elastic reset member 180 is provided inside the second guide groove 113. One end of the second elastic reset member 180 is connected to the inner wall of the second guide groove 113 to ensure stability, and the other end is tightly connected to the limiting block 130. The second elastic reset member 180 is made of a material with good elastic properties, such as a spring, and has a certain elastic potential energy reserve in the initial state. When the limiting block 130 is subjected to external force, such as when the electronic component 200 is installed and squeezes the limiting block 130, or when the button 150 is pressed to remove the electronic component 200 and cause the limiting block 130 to retract, the second elastic reset member 180 will undergo elastic deformation, and the elastic potential energy will change accordingly. Once the external force is released, the second elastic reset member 180 immediately uses its own elastic restoring force to push the limiting block 130 towards the receiving groove 111, ensuring that the limiting block 130 effectively supports the electronic component 200 and maintains the fixed state of the electronic component 200 in the receiving groove 111.

[0036] Furthermore, the electronic compartment 110 is provided with a button 150 connected to the limiting block 130. The button 150 is located outside the receiving groove 111. Pressing the button 150 downwards causes the limiting block 130 to retract into the second guide groove 113.

[0037] Specifically, the electronic compartment 110 is equipped with a button 150 that connects to the limit block 130. The button 150 is carefully positioned on the outside of the receiving groove 111 for easy operation. The button 150 and the limit block 130 are reliably connected through mechanical structures such as connecting rods and slots, ensuring that when the button 150 is pressed, it can accurately and stably retract the limit block 130 into the second guide groove 113.

[0038] Furthermore, the electronic compartment 110 is provided with a guide rod, the second elastic reset member 180 is sleeved on the guide rod, and the limiting block 130 is provided with a relief groove corresponding to the guide rod.

[0039] Furthermore, a sliding groove 121 is provided on the side of the push block 120 away from the receiving groove 111, and a limiting rod 190 is provided on the electronic compartment 110 that is slidably connected to the sliding groove 121. The sliding length of the push block 120 is limited by the limiting rod 190 and the sliding groove 121.

[0040] When installing electronic component 200: The operator holds electronic component 200 and aligns it with the opening of the receiving slot 111 of electronic compartment 110. Then, the operator slowly pushes electronic component 200 along the receiving slot 111 from the side with the second guide slot 113 (i.e., the side where the limiting block 130 is located) towards the side with the terminal 140. During the pushing process, electronic component 200 first contacts and pushes push block 120, causing push block 120 to overcome the elastic force of first elastic reset member 170 and slide along first guide slot 112 away from receiving slot 111. At this time, first elastic reset member 170 is compressed, accumulating more elastic potential energy. At the same time, electronic component 200 squeezes limiting block 130, causing limiting block 130 to overcome the elastic force of second elastic reset member 180 and retract into second guide slot 113. At this time, second elastic reset member 180 is compressed, accumulating elastic potential energy. Once the electronic component 200 is fully inserted into the receiving groove 111 and initially positioned, the external force disappears, and the second elastic reset member 180 quickly rebounds, pushing the limiting block 130 to move towards the receiving groove 111 until the limiting block 130 tightly abuts against the other side of the electronic component 200, thus completing the fixation of the electronic component 200 together with the push block 120.

[0041] During disassembly: First, the push block 120 and the limiting block 130 need to be released from their restraint on the electronic component 200. The operator presses the button 150, which is located on the outside of the receiving groove 111 and connected to the limiting block 130, so that the button 150 drives the limiting block 130 to retract into the second guide groove 113, releasing the fixation on one side of the electronic component 200; the first elastic reset member 170 accumulates elastic potential energy to push the push block 120 and move the electronic component 200 toward the limiting block 130, and the electronic component 200 is released from its restraint and smoothly removed from the receiving groove 111.

[0042] Furthermore, there are two push blocks 120 and two limit blocks 130, with each limit block 130 corresponding to one of the two push blocks 120.

[0043] In one possible embodiment of this application, such as Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, a snap-fit ​​component 160 is also provided on the bottom surface of the receiving groove 111, and a support ear is provided on the side of the electronic component 200. During the movement of the electronic component 200 from the limiting block 130 to the terminal block 140, the support ear snaps into the snap-fit ​​component 160.

[0044] Furthermore, the snap-fit ​​component 160 has a slot on the side facing the limiting block 130, and the lug of the electronic component 200 extends into the slot during its movement from the limiting block 130 to the terminal 140.

[0045] Furthermore, the snap-fit ​​connector 160 includes multiple snap-fit ​​connectors 160 located on both sides of the terminal block 140.

[0046] When installing electronic component 200: Align electronic component 200 with the opening of receiving slot 111, and slowly push it from the side of limiting block 130 towards terminal 140. During the pushing process, the side lugs of electronic component 200 gradually approach the locking member 160. When the lugs reach the appropriate position, press electronic component 200 to make the lugs lock into the locking member 160, completing the initial fixation of electronic component 200 in the bottom direction. At this time, under the action of elastic reset member, push block 120 and limiting block 130 further fix electronic component 200 from the side, achieving a stable installation from all directions.

[0047] When disassembling electronic component 200: first press button 150, so that button 150 drives limit block 130 to retract into second guide groove 113, and loosens the fixation on one side of electronic component 200; first elastic reset member 170 accumulates elastic potential energy to push push block 120 to drive electronic component 200 toward limit block 130, so that the support ear is disengaged from the slot of snap fastener 160. At this time, electronic component 200 is released from constraint and is smoothly taken out from receiving groove 111.

[0048] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. An electronic-treasure mounting structure characterized by comprising: The electronic bin is provided with a containing groove for containing electronic components, a first guide groove and a second guide groove in communication with the containing groove, a terminal post on one side of the containing groove for electrically connecting the electronic components, the first guide groove provided on the same side of the terminal post for mounting the push block, the second guide groove provided on the side of the bottom surface of the containing groove away from the terminal post for mounting the limiting block, the extension direction of the first guide groove being parallel to the bottom surface of the containing groove, the extension direction of the second guide groove being perpendicular to the bottom surface of the containing groove, the push block abutting against one side surface of the electronic components when the electronic components are mounted in the containing groove, and the limiting block abutting against the other side surface of the electronic components.

2. The electronic compartment mounting structure according to claim 1, characterized by The first guide groove is provided with a first elastic reset member, one end of the first elastic reset member being connected with the inner wall of the first guide groove, and the other end being connected with the push block, the first elastic reset member accumulating elastic potential energy to push the push block to move towards the containing groove.

3. The electronic compartment mounting structure according to claim 1, characterized by The second guide groove is provided with a second elastic reset member, one end of the second elastic reset member being connected with the inner wall of the second guide groove, and the other end being connected with the limiting block, the second elastic reset member accumulating elastic potential energy to push the limiting block to move towards the containing groove.

4. The electronic compartment mounting structure according to claim 3, characterized by The electronic bin is provided with a button connected with the limiting block, the button being located outside the containing groove, and the button being pressed downward to drive the limiting block to retract into the second guide groove.

5. The electronic compartment mounting structure according to claim 3, wherein The electronic bin is provided with a guide rod, the second elastic reset member being sleeved on the guide rod, and the limiting block being provided with an avoiding groove corresponding to the guide rod.

6. The electronic compartment mounting structure according to claim 2, wherein The push block is provided with a sliding groove on the side away from the containing groove, the electronic bin is provided with a limiting rod in sliding connection with the sliding groove, and the sliding length of the push block is limited by the limiting rod and the sliding groove.

7. The electronic compartment mounting structure according to claim 1, characterized by The containing groove is further provided with a clamping member, the electronic components are provided with an ear extending on the side surface, and the ear is clamped into the clamping member during the movement of the electronic components from the limiting block to the terminal post.

8. The electronic compartment mounting structure according to claim 7, characterized by The clamping member is provided with a clamping groove on the side facing the limiting block, and the ear is extended into the clamping groove during the movement of the electronic components from the limiting block to the terminal post.

9. The electronic compartment mounting structure according to claim 7, wherein The clamping member includes a plurality of clamping grooves, and the plurality of clamping grooves are located on both sides of the terminal post.

10. The electronic compartment mounting structure according to claim 1, characterized by The push block includes two push blocks, and the limiting block also includes two limiting blocks, the two limiting blocks corresponding to the two push blocks. The push block includes two push blocks, and the limiting block also includes two limiting blocks, the two limiting blocks corresponding to the two push blocks.