An embedded socket
Patent Information
- Application Number
- CN202522180559.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-15
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-10-15
AI Technical Summary
[0004]本实用新型是为了克服现有的使用效果差的不足,提供了一种使用效果好的嵌入式插座
[0014]本实用新型的有益效果是:电线穿过接线孔插入到接线仓内,转动螺柱使得底片压紧电线,保证底片与电线压紧,保证通电效果和使用效果;该结构接线操作简单、方便,提高使用效果。
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Figure CN224721178U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of socket-related technology, and in particular to an embedded socket. Background Technology
[0002] Recessed sockets are a common type of electrical interface device, widely used in homes, offices, and public places. Traditional recessed sockets are usually made of metal and plastic materials and are installed on walls or floors to provide power and connect electrical appliances.
[0003] Existing recessed sockets are inconvenient to wire and have poor wiring stability, making them prone to poor contact and ineffective use. To improve performance and address existing issues, this application proposes a novel recessed socket structure. Utility Model Content
[0004] The present invention aims to overcome the shortcomings of existing sockets with poor performance and provide a recessed socket with better performance.
[0005] To achieve the above objectives, this utility model adopts the following technical solution: an embedded socket, comprising: The outer casing has a connection channel inside, a socket on the top surface of the outer casing, and a wiring hole on the lower side wall of the outer casing. The connection channel communicates with the socket and the wiring hole respectively. A conductive copper sheet is installed in a connection channel, and an adjustable wiring assembly is installed at the lower end of the conductive copper sheet. The mounting cap is connected to the bottom surface of the outer casing. The mounting cap is provided with an adjustment hole, which corresponds to the wiring assembly.
[0006] This socket includes a housing with a socket on its top, which can be configured with three, four, or more holes depending on design requirements. Inside the housing is a connection channel that matches the socket. A wiring hole is located on the lower side wall of the housing for inserting electrical wires. A conductive copper plate is inserted into the connection channel, with its upper end aligned with the wiring hole and its lower end connected to a wiring assembly, also aligned with the wiring hole. This wiring assembly securely holds the wire in place, ensuring stable and reliable wiring and optimal performance. A mounting cap with an adjustment hole at the bottom of the housing corresponds to the wiring assembly, allowing for easy adjustment and stable wire mounting for continued reliable and efficient wiring.
[0007] Preferably, the upper end of the outer casing is cylindrical, and the lower end is a block with a cross-shaped cross-section. A mounting plate with several mounting holes is fitted onto the outer casing. Specifically, the upper end of the outer casing is cylindrical, and the lower end is a block with a cross-shaped cross-section. The mounting plate, with its cross-shaped holes, secures the mounting plate to the lower end of the outer casing. The mounting plate is connected to the upper end of the outer casing by screws. The mounting holes on the mounting plate are used to mount the outer casing to a wall, ensuring a good installation and facilitating installation.
[0008] Preferably, the conductive copper sheet is formed into a groove by bending a brass sheet, the upper end of the conductive copper sheet is provided with symmetrically arranged inward flaps, the lower end of the inward flaps is provided with contacting protrusions, the lower end of the conductive copper sheet is provided with a base plate, the base plate is placed in the wiring assembly, and the base plate is provided with several clamping strips. The conductive copper sheet is shaped by bending a brass sheet into a groove-like structure. Two symmetrically arranged inward-facing tabs are positioned at the upper end of the conductive copper sheet, with the inward-facing tabs angled. A protrusion is located at the lower end of each inward-facing tab, and the two protrusions contact each other. This structure ensures that when a plug is inserted into a socket, the plug's prongs contact the protrusions, guaranteeing connection stability and thus stable power delivery. Simultaneously, a base plate is located at the lower end of the conductive copper sheet, perpendicular to its sidewall. When the conductive copper sheet is installed in the connection channel, the base plate is parallel to the bottom of the connection channel. The base plate is installed inside the wiring assembly. This structure ensures that when a wire is inserted into the wiring assembly, the wire makes stable contact with the base plate, guaranteeing stable power delivery and good performance.
[0009] Preferably, the wiring assembly includes a wiring compartment, which is arched in shape and positioned within the lower end of a groove formed by conductive copper sheets. A bottom plate is placed inside the wiring compartment and contacts its bottom surface. Specifically, the wiring assembly includes a wiring compartment, which is arched in cross-section. The compartment is snapped into the lower end of the groove-shaped structure formed by conductive copper sheets, and the bottom plate is placed inside the compartment and contacts its bottom surface. During wiring, the wire is inserted into the compartment, causing the wire to contact the bottom plate, thus completing the connection. This structure ensures convenient and simple wiring operations and stable power delivery.
[0010] Preferably, the bottom of the wiring compartment is provided with a threaded hole, and a stud is installed in the threaded hole. The bottom surface of the stud is provided with a rotating hole, which corresponds to the adjustment hole. Specifically, the threaded hole at the bottom of the wiring compartment houses the stud, and the rotating hole on the bottom surface of the stud is a countersunk hole or an internal hexagonal hole, which can be matched with a hexagonal bolt for adjusting the stud. During wiring, the wire is inserted into the wiring compartment, and the stud is rotated. The stud pushes the bottom plate upward, causing the bottom plate to press the wire tightly, ensuring a stable and reliable connection and guaranteeing the power supply and performance.
[0011] Preferably, the inner wall of the wiring compartment is provided with a plurality of contact grooves. These contact grooves improve the wiring effect, ensure the tightness between the wire and the substrate, and guarantee the power supply and usability.
[0012] Preferably, the top of the wiring compartment is provided with a top block, which is arc-shaped. The arc-shaped top block, when placed on top of the wiring compartment, works in conjunction with the upward-lifting base plate to ensure a tight seal between the wires and the base plate, thus guaranteeing power supply and usability.
[0013] Preferably, the wiring hole and the wiring compartment have the same outline. A groove is provided at the bottom of the side wall of the wiring hole, and a limiting card is provided at the outer end of the base plate. The limiting card is inserted into the groove. The wiring hole and the wiring compartment have the same outline. The groove on the bottom side wall of the wiring hole and the limiting card at the outer end of the base plate allow the structure to allow the center of the base plate to be lifted first when the stud lifts it, forming a bulge to press the wire. As the stud is lifted higher, the limiting card disengages from the groove, allowing the entire base plate to press the wire firmly. This structure improves the wire compression effect, ensuring power transmission and performance.
[0014] The beneficial effects of this utility model are: the wire is inserted into the wiring compartment through the wiring hole, and the screw is rotated to make the base plate press the wire tightly, ensuring that the base plate and the wire are pressed tightly, thus ensuring the power supply effect and the use effect; the wiring operation of this structure is simple and convenient, improving the use effect. Attached Figure Description
[0015] Figure 1 This is a three-dimensional view of the present invention; Figure 2 This is the first sectional view of this utility model; Figure 3 This is the second sectional view of this utility model.
[0016] In the attached diagram: 1. Outer shell; 2. Conductive copper sheet; 3. Mounting cap; 4. Mounting plate; 5. Wiring compartment; 10. Connection channel; 11. Socket; 12. Wiring hole; 13. Slot; 20. Inner flap; 21. Protrusion; 22. Base plate; 23. Clamping strip; 24. Limiting clip; 30. Adjustment hole; 40. Mounting hole; 50. Threaded hole; 51. Stud; 52. Rotating hole; 53. Contact groove; 54. Top block. Detailed Implementation
[0017] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. The following description of at least one exemplary embodiment is merely illustrative and is in no way intended to limit the present application or its application or use. 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.
[0018] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.
[0019] Furthermore, it should be noted that the use of terms such as "first" and "second" to define components is merely for the purpose of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore cannot be construed as limiting the scope of protection of this application.
[0020] Example 1, as Figure 1-3 As shown, an embedded socket includes: The outer casing 1 has a connecting channel 10 inside, a socket 11 on the top surface of the outer casing 1, and a wiring hole 12 on the lower side wall of the outer casing 1. The connecting channel 10 is connected to the socket 11 and the wiring hole 12 respectively. A conductive copper sheet 2 is installed in the connection channel 10, and an adjustable wiring assembly is installed at the lower end of the conductive copper sheet 2. Mounting cap 3 is connected to the bottom surface of housing 1. Mounting cap 3 is provided with adjustment hole 30, which corresponds to the wiring group.
[0021] The upper end of the outer shell 1 is cylindrical, and the lower end of the outer shell 1 is a block with a cross-shaped cross section. The outer shell 1 is fitted with a mounting plate 4, and the mounting plate 4 is provided with a plurality of mounting holes 40.
[0022] The conductive copper sheet 2 is formed into a groove by bending a brass sheet. The upper end of the conductive copper sheet 2 is provided with symmetrically arranged inward flaps 20. The lower end of the inward flaps 20 is provided with contacting protrusions 21. The lower end of the conductive copper sheet 2 is provided with a base plate 22. The base plate 22 is placed in the wiring group. The base plate 22 is provided with several clamping strips 23.
[0023] The wiring assembly is provided with a wiring compartment 5, which is arched and placed inside the lower end of a groove formed by conductive copper sheets 2. The bottom plate 22 is placed inside the wiring compartment 5 and in contact with the bottom surface of the wiring compartment 5.
[0024] The bottom of the wiring compartment 5 is provided with a threaded hole 50, on which a stud 51 is installed. The bottom surface of the stud 51 is provided with a rotating hole 52, which corresponds to the adjustment hole 30.
[0025] The inner wall of the wiring compartment 5 is provided with several contact grooves 53.
[0026] A top block 54 is provided on the top of the wiring compartment 5, and the top block 54 is arc-shaped.
[0027] The wiring hole 12 has the same outline as the wiring compartment 5. A slot 13 is provided at the bottom of the side wall of the wiring hole 12. A limiting card 24 is provided at the outer end of the bottom plate 22. The limiting card 24 is inserted into the slot 13.
[0028] The principle of this utility model is as follows: Figure 1-3 As shown, this socket includes a housing 1 with a socket 11 on its top. The socket 11 can be configured with three, four, or more holes depending on design requirements. Inside the housing 1 is a connecting channel 10 that matches the socket 11. A wiring hole 12 is located on the lower side wall of the housing 1 for connecting wires. A conductive copper sheet 2 is inserted and installed inside the connecting channel 10. The upper end of the conductive copper sheet 2 is aligned with the wiring hole 12, and its lower end is connected to a wiring assembly, which is also aligned with the wiring hole 12. This wiring assembly is used to securely mount the wire, ensuring that the wire is inserted into the wiring hole 12 and fixed in place, thus guaranteeing stable and reliable wiring and optimal performance. A mounting cap 3 is located at the bottom of the housing 1, with an adjustment hole 30 corresponding to the wiring assembly. This structure allows for easy adjustment of the wiring assembly, ensuring stable and reliable wiring and good performance.
[0029] The upper end of the outer shell 1 is a cylindrical structure, and the lower end of the outer shell 1 is a block structure with a cross-shaped cross section. A mounting plate 4 is fitted onto the outer shell 1. The mounting plate 4 has cross-shaped holes to ensure that the mounting plate 4 is fitted and snapped into the lower end of the outer shell 1. At the same time, the mounting plate 4 is connected to the upper end of the outer shell 1 by screws. The mounting plate 4 has mounting holes 40 for mounting the outer shell 1 on the wall to ensure the installation effect and facilitate the installation operation of the outer shell 1.
[0030] The conductive copper sheet 2 is shaped by bending a brass sheet into a groove-like structure. Two symmetrically arranged inward-facing tabs 20 are positioned at the upper end of the conductive copper sheet 2, and these inward-facing tabs are inclined. A protrusion 21 is located at the lower end of each inward-facing tab 20, and the two protrusions 21 contact each other. This structure allows the plug's prongs to contact the protrusions 21 when the plug is inserted into the socket 11, ensuring connection stability and thus stable power supply. Simultaneously, a base plate 22 is located at the lower end of the conductive copper sheet 2. Several clamping strips 23 are provided on the upper surface of the base plate 22. The clamping strips 23 can improve the clamping of the base plate 22 to the wire inserted into the wiring compartment 5. The base plate 22 is arranged perpendicular to the side wall of the conductive copper sheet 2. When the conductive copper sheet 2 is installed in the connection channel 10, the base plate 22 is parallel to the bottom of the connection channel 10. The base plate 22 is installed inside the wiring assembly. This structure can ensure that after the wire is inserted into the wiring assembly, the wire can stably contact the base plate 22, ensuring stable power supply and good performance.
[0031] The wiring assembly includes a wiring compartment 5, which is an arched compartment (i.e., with an arched cross-section). The wiring compartment 5 is snapped into the lower end of a groove-shaped structure formed by conductive copper sheets 2, and the bottom plate 22 is placed inside the wiring compartment 5 and contacts the bottom surface of the wiring compartment 5. During wiring, the wire is inserted into the wiring compartment 5, so that the wire bottom plate 22 contacts, thus completing the wiring. This structure ensures that the wiring operation is convenient and simple, and the power supply effect is stable.
[0032] The wiring compartment 5 has a threaded hole 50 at its bottom, and a stud 51 is installed inside the threaded hole 50. The bottom surface of the stud 51 has a rotating hole 52, which is a countersunk hole or an internal hexagonal hole. It can be matched with a hexagonal bolt to adjust the stud 51. When wiring, the wire is inserted into the wiring compartment 5 and the stud 51 is rotated. The stud 51 can push the bottom plate 22 upward, so that the bottom plate 22 presses the wire tightly, ensuring a stable and reliable connection of the wire and ensuring the power supply and use effect.
[0033] The wiring compartment 5 has several contact grooves 53 on its inner side wall. These contact grooves 53 can improve the wiring effect, ensure the tightness between the wire and the base plate 22, and ensure the power supply and use effect.
[0034] Among them, a top block 54 is set on the top of the wiring compartment 5. The top block 54 is arc-shaped. This structure can cooperate with the upward-lifting bottom plate 22 to ensure the tightness between the wire and the bottom plate 22, and ensure the power supply effect and the use effect.
[0035] The wiring hole 12 and the wiring compartment 5 have the same outline. A slot 13 is provided on the bottom side wall of the wiring hole 12, and a limiting card 24 is provided on the outer end of the base plate 22. The limiting card 24 is inserted into the slot 13. This structure allows the middle part of the base plate 22 to be lifted up to form a bulge when the stud 51 lifts the base plate 22, thus pressing the wire. As the stud 51 is lifted higher, the limiting card 24 is disengaged from the slot 13, so that the entire base plate 22 presses the wire. This structure can improve the wire pressing effect and ensure the power supply and use effect.
[0036] The above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.
Claims
1. An embedded socket, characterized in that, include: The outer shell (1) has a connecting channel (10) inside, a socket (11) on the top surface of the outer shell (1), and a wiring hole (12) on the lower side wall of the outer shell (1). The connecting channel (10) is connected to the socket (11) and the wiring hole (12) respectively. Conductive copper sheet (2), the conductive copper sheet (2) is installed in the connection channel (10), and an adjustable wiring group is installed at the lower end of the conductive copper sheet (2); Mounting cap (3) is connected to the bottom surface of housing (1). Mounting cap (3) is provided with adjustment hole (30), which corresponds to wiring group.
2. The recessed socket according to claim 1, characterized in that, The upper end of the outer shell (1) is cylindrical, and the lower end of the outer shell (1) is a block with a cross-shaped cross section. The outer shell (1) is fitted with a mounting plate (4), and the mounting plate (4) is provided with a plurality of mounting holes (40).
3. The recessed socket according to claim 1, characterized in that, The conductive copper sheet (2) is formed into a groove by bending a brass sheet. The upper end of the conductive copper sheet (2) is provided with symmetrically arranged inward flaps (20). The lower end of the inward flaps (20) is provided with contacting protrusions (21). The lower end of the conductive copper sheet (2) is provided with a base plate (22). The base plate (22) is placed in the wiring group. The base plate (22) is provided with several clamping strips (23).
4. An embedded socket according to claim 3, characterized in that, The wiring assembly is provided with a wiring compartment (5), which is arched and placed in the lower end of a groove formed by conductive copper sheets (2). The bottom plate (22) is placed in the wiring compartment (5) and in contact with the bottom surface of the wiring compartment (5).
5. An embedded socket according to claim 4, characterized in that, The bottom of the wiring compartment (5) is provided with a threaded hole (50), a stud (51) is installed in the threaded hole (50), and a rotating hole (52) is provided on the bottom surface of the stud (51), which corresponds to the adjustment hole (30).
6. An embedded socket according to claim 4, characterized in that, The inner wall of the wiring compartment (5) is provided with several contact grooves (53).
7. An embedded socket according to claim 4, characterized in that, The top of the wiring compartment (5) is provided with a top block (54), which is arc-shaped.
8. An embedded socket according to claim 4, characterized in that, The wiring hole (12) has the same outline as the wiring compartment (5). A slot (13) is provided at the bottom of the side wall of the wiring hole (12). A limit card (24) is provided at the outer end of the bottom plate (22). The limit card (24) is inserted into the slot (13).