Electronic building block with a jack reinforcement

CN224777410UActive Publication Date: 2026-09-22SHENZHEN ELECROW LTD
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Patent Information

Application Number
CN202521556627.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-24
Publication Date
2026-09-22
Estimated Expiration
2035-07-24

AI Technical Summary

Technical Problem

首先,现有的电子积木在拼接时,其导线所连接的电子供电元件全部暴露在外,当积木之间相互连接时,需要对导线进行牵拉,在此过程中,若是牵拉的力量较大,会导致导线与供电元件分离引起导线脱落进而造成电子元件故障;

Benefits of technology

1、本实用新型中,工作时,先将导线靠近供电部件一端依次穿过限制套与固定套,接着将导线与供电部件连接,此时,将固定套与限制套连接,随着固定套套在限制套外壁,固定套对限制套外壁的限制块进行挤压,限制块对导线挤压对导线进行固定,锁定完成后,再将限制槽与加固槽连接从而将限制套与固定套进行限制锁定,在电子积木块拼接过程中,牵拉加固组件外壁的导线时,限制套与固定套能够对导线靠近供电部件一端进行限制,防止导线牵拉过程中用力过大导致导线与供电部件连接处脱落从而影响导线的正常工作,同时,加固组件能够对供电部件位置进行防护,当积木掉落时,其能够防止供电部位电子元件损坏。

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Abstract

The utility model discloses an electronic building block with wiring port reinforcing function relates to electronic building block technical field, including building block, the middle of building block bottom outer wall is provided with the wire, the wire end is provided with the power supply part, the wire is connected with power supply part, building block bottom outer wall is provided with reinforcing component, reinforcing component is suitable with wire. In the utility model, the wire is in turn through the limit cover and the fixed cover, then the wire is connected with the power supply part, the fixed cover is connected with the limit cover, the fixed cover extrudes the limit piece of limit cover outer wall, the limit piece extrudes the wire and fixes the wire, then the limit groove is connected with the reinforcing groove and the limit cover and the fixed cover are locked, when the wire of fixed cover outer wall is pulled, the limit cover and the fixed cover can limit the wire close to the power supply part one end, prevent the wire pulling process and the wire and the power supply part connection place fall off and thus influence the normal work of the wire.
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Description

Technical Field

[0001] This utility model relates to the field of electronic building block technology, and in particular to an electronic building block assembly block with reinforced wiring ports. Background Technology

[0002] Electronic building blocks are made by fixing electronic components such as wires, light bulbs, diodes, transistors, resistors, capacitors, various switches, meters, motors, speakers, and integrated circuits onto plastic sheets (blocks) and using unique snap-fit ​​connectors to create independent, assembleable accessories. Circuit combinations are then assembled on the mounting base provided with the product, just like assembling building blocks.

[0003] However, existing electronic building blocks have certain shortcomings: First, when existing electronic building blocks are assembled, all the electronic power supply components connected to their wires are exposed. When the building blocks are connected to each other, the wires need to be pulled. If the pulling force is too large during this process, the wires may separate from the power supply components, causing the wires to fall off and resulting in electronic component failure. Secondly, when existing electronic building blocks are in operation, their electronic components are usually exposed. If the building blocks collide or are accidentally dropped, the electronic components are easily detached from or damaged. Utility Model Content

[0004] The purpose of this application is to provide an electronic building block assembly with reinforced wiring ports to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this application provides the following technical solution: an electronic building block assembly with a reinforced connection port, comprising a building block, a wire disposed in the middle of the bottom outer wall of the building block, a power supply component disposed at the end of the wire, the wire being connected to the power supply component, a reinforcement component disposed on the bottom outer wall of the building block, the reinforcement component being adapted to the wire, the power supply component being located inside the reinforcement component, the reinforcement component comprising a reinforcement groove disposed on the bottom outer wall of the building block, a limiting groove evenly disposed at both ends of the top outer wall of the reinforcement groove, the limiting groove being adapted to the reinforcement groove, a limiting sleeve disposed inside the reinforcement groove, the limiting sleeve being adapted to the wire, a fixing sleeve disposed on the outer wall of the limiting sleeve, both the limiting sleeve and the fixing sleeve being cylindrical structures, a through groove evenly distributed on the outer wall of the limiting sleeve, a limiting block hinged to the bottom of the through groove, the limiting block, the limiting sleeve, and the fixing sleeve being made of plastic, and an anti-slip sleeve adapted to it being covered on the outer wall of the limiting block.

[0006] Preferably, the bottom outer wall of the limiting groove is provided with a connecting block, and the top outer wall of the reinforcing groove is provided with connecting grooves at both ends. The connecting grooves are adapted to the connecting blocks, and the connecting blocks are inserted into the connecting grooves.

[0007] Preferably, a control groove is provided on one side of the inner wall of the connecting groove, a control plate is slidably installed on the inner wall of the control groove, locking pins are provided on the outer wall of the control plate at equal intervals, and locking holes are provided on the outer wall of the connecting block at equal intervals, the locking pins and locking holes being adapted to each other.

[0008] Preferably, a spring is provided on the outer wall of the control plate away from the locking pin, the end of the spring is connected to the inner wall of the control groove, and the spring is provided with a damper adapted to it.

[0009] Preferably, a control rod is provided on the outer wall of the control plate near the spring, and the control rod passes through the reinforcing groove.

[0010] Preferably, a wire-passing groove is provided on the outer wall of the top outer wall of the limiting groove on one side. The wire-passing groove is arc-shaped, and a protective pad adapted to it is provided on the inner wall of the wire-passing groove. The protective pad is made of silicone. A hole adapted to the wire is provided on the top of the limiting sleeve, and the inner diameter of the limiting sleeve is larger than the diameter of the hole.

[0011] In summary, the technical effects and advantages of this utility model are as follows: 1. In this utility model, during operation, the end of the wire closest to the power supply component is first passed through the limiting sleeve and the fixing sleeve in sequence. Then, the wire is connected to the power supply component. At this time, the fixing sleeve is connected to the limiting sleeve. As the fixing sleeve is placed on the outer wall of the limiting sleeve, the fixing sleeve squeezes the limiting block on the outer wall of the limiting sleeve. The limiting block squeezes the wire to fix it. After locking, the limiting groove is connected to the reinforcing groove to restrict and lock the limiting sleeve and the fixing sleeve. During the assembly of electronic building blocks, when the wire on the outer wall of the reinforcing component is pulled, the limiting sleeve and the fixing sleeve can restrict the end of the wire close to the power supply component, preventing excessive force during the pulling process from causing the connection between the wire and the power supply component to fall off, thus affecting the normal operation of the wire. At the same time, the reinforcing component can protect the position of the power supply component. When the building block falls, it can prevent damage to the electronic components of the power supply part.

[0012] 2. In this utility model, when the limiting groove and the reinforcing groove are connected, pulling the control rod causes the control plate and locking pin to retract into the control groove. After the connecting block is inserted into the connecting groove, the control rod is released. At this time, the control plate moves forward under the elastic force of the spring, causing the locking pin to be inserted into the locking hole on the outer wall of the connecting block, thereby firmly connecting the limiting groove and the reinforcing groove, thus restricting the limiting sleeve and the fixing sleeve, thereby ensuring that the wire inside the reinforcing component is not affected by the pulling of the external wire. The wire groove facilitates the wire to pass through, and at the same time, the protective pad protects the wire and prevents wear on the outer wall of the wire. Attached Figure Description

[0013] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0014] Figure 1 This is a schematic diagram of the main body's external structure in an embodiment of this application; Figure 2 This is a schematic diagram of the limiting sleeve and fixing sleeve structure in the embodiments of this application; Figure 3 This is an exploded view of the reinforcement component in the embodiments of this application; Figure 4 This is a schematic diagram of the spring structure in an embodiment of this application; Figure 5 This is a schematic diagram of the external structure of the reinforcement component in the embodiments of this application.

[0015] In the diagram: 1. Building block; 2. Wire; 3. Reinforcing groove; 4. Limiting groove; 5. Limiting sleeve; 6. Fixing sleeve; 7. Limiting block; 8. Connecting block; 9. Connecting groove; 10. Control panel; 11. Locking pin; 12. Spring; 13. Control rod; 14. Wire channel; 15. Protective pad; 16. Locking hole. Detailed Implementation

[0016] 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.

[0017] Example: Reference Figure 1-5The electronic building block assembly shown includes a building block 1, a wire 2 is provided in the middle of the bottom outer wall of the building block 1, a power supply component is provided at the end of the wire 2, and the wire 2 is connected to the power supply component. A reinforcement component is provided on the bottom outer wall of the building block 1, and the reinforcement component is adapted to the wire 2. The power supply component is located inside the reinforcement component. The reinforcement component includes a reinforcement groove 3 provided on the bottom outer wall of the building block 1. Restriction grooves 4 are evenly provided at both ends of the top outer wall of the reinforcement groove 3, and the restriction grooves 4 are adapted to the reinforcement groove 3. A restriction sleeve 5 is provided inside the reinforcement groove 3, and the restriction sleeve 5 is adapted to the wire 2. A fixing sleeve 6 is fitted on the outer wall of the restriction sleeve 5. Both the restriction sleeve 5 and the fixing sleeve 6 are cylindrical structures. The outer wall of the restriction sleeve 5 has through grooves distributed at equal intervals. A restriction block 7 is hinged to the bottom of the through groove. The restriction block 7, the restriction sleeve 5, and the fixing sleeve 6 are all made of plastic. The outer wall of the restriction block 7 is covered with an anti-slip sleeve adapted to it.

[0018] With the above structure: during operation, the end of the wire 2 closest to the power supply component is first passed through the limiting sleeve 5 and the fixing sleeve 6 in sequence. Then, the wire 2 is connected to the power supply component. At this time, the fixing sleeve 6 is connected to the limiting sleeve 5. As the fixing sleeve 6 is fitted onto the outer wall of the limiting sleeve 5, the fixing sleeve 6 presses against the limiting block 7 on the outer wall of the limiting sleeve 5. The limiting block 7 presses against the wire 2 to fix the wire 2. After locking, the limiting groove 4 is connected to the reinforcing groove 3 to restrict and lock the limiting sleeve 5 and the fixing sleeve 6. During the assembly of the electronic building blocks, when the wire 2 on the outer wall of the reinforcing component is pulled, the limiting sleeve 5 and the fixing sleeve 6 can restrict the end of the wire 2 closest to the power supply component, preventing the wire 2 from falling off due to excessive force during the pulling process, thus affecting the normal operation of the wire 2. At the same time, the reinforcing component can protect the position of the power supply component. When the building block falls, it can prevent damage to the electronic components of the power supply part.

[0019] like Figure 4As shown, connecting blocks 8 are provided on the bottom outer wall of the limiting groove 4, and connecting grooves 9 are provided at both ends of the top outer wall of the reinforcing groove 3. The connecting grooves 9 are adapted to the connecting blocks 8, and the connecting blocks 8 are inserted into the connecting grooves 9. A control groove is provided on one inner wall of the connecting groove 9, and a control plate 10 is slidably installed on the inner wall of the control groove. Locking pins 11 are provided on the outer wall of the control plate 10 at equal intervals. Locking holes 16 are provided on the outer wall of the connecting blocks 8 at equal intervals, and the locking pins 11 are adapted to the locking holes 16. A spring 12 is provided on the outer wall of the control plate 10 away from the locking pins 11. The end of the spring 12 is connected to the inner wall of the control groove, and the spring 12 is provided with a resistance adapted to it. The control plate 10 has a control rod 13 on its outer wall near the spring 12. The control rod 13 passes through the reinforcing groove 3. When the limiting groove 4 is connected to the reinforcing groove 3, pulling the control rod 13 will cause the control plate 10 and the locking pin 11 to retract into the control groove. When the connecting block 8 is inserted into the connecting groove 9, the control rod 13 is released. At this time, the control plate 10 moves forward under the elastic force of the spring 12, causing the locking pin 11 to be inserted into the locking hole 16 on the outer wall of the connecting block 8, thereby firmly connecting the limiting groove 4 and the reinforcing groove 3, thereby restricting the limiting sleeve 5 and the fixing sleeve 6, and thus ensuring that the wire 2 inside the reinforcing component is not affected by the pull of the external wire 2.

[0020] like Figure 3 As shown, a wire-passing groove 14 is provided on the outer wall of the top of the limiting groove 4 adjacent to one side. The wire-passing groove 14 is arc-shaped, and a protective pad 15 adapted to it is provided on the inner wall of the wire-passing groove 14. The protective pad 15 is made of silicone. The top of the limiting sleeve 5 is provided with a hole adapted to the wire 2. The inner diameter of the limiting sleeve 5 is larger than the diameter of the hole. The wire-passing groove 14 facilitates the wire 2 to pass through, while the protective pad 15 protects the wire 2 and prevents the outer wall of the wire 2 from being worn.

[0021] The working principle of this practical application is as follows: During operation, the end of the wire 2 closest to the power supply component is first passed through the limiting sleeve 5 and the fixing sleeve 6 in sequence. Then, the wire 2 is connected to the power supply component. At this time, the fixing sleeve 6 is connected to the limiting sleeve 5. As the fixing sleeve 6 is placed on the outer wall of the limiting sleeve 5, the fixing sleeve 6 presses against the limiting block 7 on the outer wall of the limiting sleeve 5. The limiting block 7 presses against the wire 2 to fix the wire 2. After locking, the limiting groove 4 is connected to the reinforcing groove 3 to limit and lock the limiting sleeve 5 and the fixing sleeve 6. During the assembly of the electronic building blocks, when the wire 2 on the outer wall of the reinforcing component is pulled, the limiting sleeve 5 and the fixing sleeve 6 can limit the end of the wire 2 closest to the power supply component, preventing the wire 2 from falling off due to excessive force during the pulling process, thus affecting the normal operation of the wire 2. At the same time, the reinforcing component can protect the position of the power supply component. When the building block falls, it can prevent damage to the electronic components of the power supply part. When the limiting groove 4 is connected to the reinforcing groove 3, the control rod 13 is pulled to drive the control plate 10 and the locking pin 11 into the control groove. When the connecting block 8 is inserted into the connecting groove 9, the control rod 13 is released. At this time, the control plate 10 moves forward under the elastic force of the spring 12, driving the locking pin 11 to be inserted into the locking hole 16 on the outer wall of the connecting block 8, thereby firmly connecting the limiting groove 4 and the reinforcing groove 3, thereby restricting the limiting sleeve 5 and the fixing sleeve 6, thus ensuring that the wire 2 inside the reinforcing component is not affected by the pulling of the external wire 2. The wire groove 14 facilitates the wire 2 to pass through, and at the same time the protective pad 15 protects the wire 2 and prevents the outer wall of the wire 2 from being worn.

[0022] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. An electronic building block assembly with reinforced wiring ports, comprising building blocks (1), characterized in that: A wire (2) is provided in the middle of the bottom outer wall of the building block (1). A power supply component is provided at the end of the wire (2). The wire (2) is connected to the power supply component. A reinforcement component is provided on the bottom outer wall of the building block (1). The reinforcement component is adapted to the wire (2). The power supply component is located inside the reinforcement component. The reinforcement component includes a reinforcement groove (3) provided on the bottom outer wall of the building block (1). Restriction grooves (4) are evenly provided at both ends of the top outer wall of the reinforcement groove (3). The restriction grooves (4) and the reinforcement grooves (3) are connected. The reinforcing groove (3) is equipped with a limiting sleeve (5), which is compatible with the wire (2). The limiting sleeve (5) is fitted with a fixing sleeve (6) on its outer wall. Both the limiting sleeve (5) and the fixing sleeve (6) are cylindrical structures. The outer wall of the limiting sleeve (5) is provided with equally spaced through grooves. A limiting block (7) is hinged to the bottom of the through groove. The limiting block (7), the limiting sleeve (5), and the fixing sleeve (6) are all made of plastic. The outer wall of the limiting block (7) is covered with an anti-slip sleeve that is compatible with it.

2. The electronic building block assembly with reinforced wiring ports according to claim 1, characterized in that: The bottom outer wall of the limiting groove (4) is provided with connecting blocks (8), and the top outer wall of the reinforcing groove (3) is provided with connecting grooves (9) at both ends. The connecting grooves (9) are adapted to the connecting blocks (8), and the connecting blocks (8) are inserted into the connecting grooves (9).

3. The electronic building block assembly with reinforced wiring ports according to claim 2, characterized in that: A control groove is provided on one side of the inner wall of the connecting groove (9), and a control plate (10) is slidably installed on the inner wall of the control groove. The outer wall of the control plate (10) is provided with locking pins (11) distributed at equal intervals, and the outer wall of the connecting block (8) is provided with locking holes (16) distributed at equal intervals. The locking pins (11) and locking holes (16) are adapted to each other.

4. The electronic building block assembly with reinforced wiring ports according to claim 3, characterized in that: A spring (12) is provided on the outer wall of the control plate (10) away from the locking pin (11). The end of the spring (12) is connected to the inner wall of the control groove. The spring (12) is provided with a damper that is compatible with it.

5. The electronic building block assembly with reinforced wiring ports according to claim 4, characterized in that: The control plate (10) has a control rod (13) on the outer wall near the spring (12), and the control rod (13) passes through the reinforcing groove (3).

6. The electronic building block assembly with reinforced wiring ports according to claim 1, characterized in that: The outer wall of the top of the limiting groove (4) is provided with a wire-passing groove (14) on one side. The wire-passing groove (14) is arc-shaped. The inner wall of the wire-passing groove (14) is provided with a protective pad (15) that matches it. The protective pad (15) is made of silicone. The top of the limiting sleeve (5) is provided with a hole that matches the wire (2). The inner diameter of the limiting sleeve (5) is larger than the diameter of the hole.