Track plate and track type socket
By designing the structural connection method of the track plate, the problem of damage and difficulty in replacing the conductive socket is solved, and the socket is conveniently maintained and service life is extended.
Patent Information
- Application Number
- CN202420354723.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-26
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-02-26
AI Technical Summary
The conductive socket in existing track sockets is difficult to replace when damaged, which affects the service life of the track plate.
A track plate structure is designed, including a top cover, base, conductive sleeve, wire and wiring sleeve. Multiple plugs are connected through three wiring paths to facilitate the replacement of conductive sleeves.
It realizes convenient replacement of conductive plug sleeves and extends the service life of the track plate.
Smart Images

Figure CN223167818U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of low-voltage electrical equipment, in particular to an orbital plate and an orbital socket. Background Art
[0002] An orbital socket consists of an orbital plate and several adapters arranged on the orbital plate. The orbital plate can be installed on a wall or embedded in a table. Inside a common orbital plate, one way of arranging conductive sockets is that a group of conductive sockets are welded to a conductive bar. If one conductive socket is damaged, it is very difficult to replace and repair it. Summary of the Invention
[0003] In view of this, this application provides an orbital plate and an orbital socket to facilitate the replacement of conductive sockets in the orbital plate and extend the service life of the orbital plate.
[0004] In a first aspect, in an embodiment of the orbital plate provided in this application, the orbital plate includes a top cover, a base, at least one group of conductive sockets, three groups of wires, and three terminal sleeves. At least one first type of socket portion is provided on the top cover, and this first type of socket portion is used for installing an adapter; the base is connected to the top cover, and a plurality of wire grooves are respectively arranged on its inner bottom surface along three wiring paths, and two side grooves and one bottom groove are arranged on the inner bottom surface corresponding to one of the first type of socket portions.
[0005] Moreover, among several groups of conductive sockets, one group of conductive sockets includes two side sockets correspondingly arranged in the two side grooves and one grounding socket arranged in one bottom groove; wherein, the clamping mouths of the side sockets are parallel to the bottom surface of the base, and the clamping mouth of the grounding socket faces the first type of socket portion. Among the three groups of wires, each group of wires is arranged in the wire groove along its corresponding one of the three wiring paths, and two groups of wires respectively connect the corresponding plurality of side sockets beside the two side wiring paths, and the other group of wires connects the plurality of grounding sockets beside the middle wiring path. Each of the three terminal sleeves is electrically connected to a corresponding group of wires and is used for connecting to a power source.
[0006] As can be seen from the above solution, in this orbital plate, along the three wiring paths, two groups of wires respectively connect the corresponding plurality of side sockets beside the two side wiring paths, and the other group of wires connects the plurality of grounding sockets beside the middle wiring path. In this way, when a conductive socket at a certain place is damaged, it can be replaced very conveniently, so as to extend the service life of the orbital plate, that is, the orbital socket.
[0007] In a preferred embodiment of the track slab provided in the above embodiment, the side slot is formed with two side plates and a back plate located at the rear ends of the two side plates. The two side plates are connected to the inner bottom surface of the base, and the front ends of the side plates are lower than the clamping mouths of the side sockets. An insertion slot is formed between the back plate and the side plates. The side socket is formed with two opposite clamping pieces and a connecting piece connected to the rear ends of the two clamping pieces, and first wiring holes for connecting wires are formed at both ends of the connecting piece extending outwards. The side socket is clamped between the two side plates, and the connecting piece of the side socket is inserted into the two insertion slots.
[0008] In a preferred embodiment of the track slab provided in the above embodiment, the grounding socket is formed with a bottom plate, two bending ears and two connecting strips. A jack is provided in the middle of the bottom plate. The two bending ears are formed on opposite sides of the bottom plate, and the ends of the bending ears face the top surface of the bottom plate. The two connecting strips are formed on the other opposite sides of the bottom plate. The connecting strips first extend outwards and then bend upwards to form second wiring holes for connecting wires. The bottom slot includes a middle groove and bottom limiting grooves communicating with opposite sides of the middle groove. Wherein, the bottom plate and the two bending ears of the grounding socket are arranged in the middle groove, and the two connecting strips extend along the bottom limiting grooves.
[0009] In a preferred embodiment of the track slab provided in the above embodiment, a port box protrudes from the bottom of the base. Three installation slots are provided in the port box, and a wire passing hole and a wire pressing hole are provided on the side wall of the port box corresponding to each installation slot. The axes of the wire passing hole and the wire pressing hole are perpendicular to each other. Wherein, one wiring sleeve is arranged in one of the installation slots, and the wiring sleeve is provided with a wire insertion hole facing the wire passing hole and a screw hole facing the wire pressing hole. The wiring sleeve also extends to form a third wiring hole for connecting wires.
[0010] In a preferred embodiment of the track slab provided in the above embodiment, at least one second type socket part is further provided on the top cover.
[0011] In a preferred embodiment of the track slab provided in the above embodiment, the second type socket part is a three-hole socket part. Three conductive sleeves are provided on the inner bottom surface of the base corresponding to the three-hole socket part, and the three conductive sleeves are respectively electrically connected to a corresponding group of wires in three groups of wires.
[0012] In a preferred embodiment of the track slab provided in the above embodiment, the second type socket part is a two-hole socket part. Two conductive sleeves are provided on the inner bottom surface of the base corresponding to the two-hole socket part, and the two conductive sleeves are respectively electrically connected to their corresponding groups of wires.
[0013] In a preferred embodiment of the track board provided in the above embodiment, the second type of socket part is a USB socket part, a charging circuit is further provided on the base, the input end of the charging circuit is connected to three groups of wires, and the output end of the charging circuit is provided with a USB interface facing the USB socket part, and the USB interface is arranged on the inner bottom surface of the base.
[0014] In a preferred embodiment of the track board provided in the above embodiment, the USB interface is any one of Type-A, Type-B, Type-C, Mini-USB, and Micro-USB.
[0015] In a second aspect, in an embodiment of the track socket provided in the present application, the track socket includes the track board described in any one of the embodiments in the first aspect and at least one adapter. A part of the adapter extends into the first type of socket part of the track board, and a group of conductive pins of the adapter are also electrically connected to a group of conductive sockets of the track board. Description of the Drawings
[0016] The following will make the above and other features and advantages of the present application clearer to those of ordinary skill in the art by describing the preferred embodiments of the present application in detail with reference to the drawings, in which:
[0017] Figure 1 is a schematic diagram of an embodiment of the track socket of the present application.
[0018] Figure 2 is Figure 1 a schematic diagram of the internal structure decomposition of the track board in.
[0019] Figure 3 is Figure 2 a schematic diagram of a partial wire connection structure inside the track board shown.
[0020] Figure 4 is Figure 1 a schematic diagram of the bottom structure of the track board in.
[0021] Figure 5 is a schematic diagram of the structure of the track board according to another embodiment of the present application.
[0022] Figure 6 is a schematic diagram of the structure of the track board according to still another embodiment of the present application.
[0023] Among them, the reference numerals are as follows:
[0024] 10 - Adapter;
[0025] 1 - Top cover;
[0026] 11 - First type of socket part;
[0027] 12 - Three - hole socket part;
[0028] 13 - Two - hole socket part;
[0029] 14 - USB socket part;
[0030] 2 - Base;
[0031] 21 - Card wire groove;
[0032] 22 - Side card slot;
[0033] 23 - Bottom card slot;
[0034] 24 - Port box; 241 - Installation groove; 242 - Wire passing hole; 243 - Wire pressing hole;
[0035] 3 - Conductive socket sleeve;
[0036] 31 - Side socket sleeve; 311 - Clamping mouth; 312 - Clamping piece; 313 - Connecting piece; 3131 - First wiring hole;
[0037] 32 - Grounding socket sleeve; 321 - Bottom piece; 3211 - Jack; 322 - Bent ear; 323 - Connecting strip; 3231 - Second wiring hole;
[0038] 4 - Wire;
[0039] 5 - Wiring sleeve; 51 - Wire insertion hole; 52 - Screw hole; 53 - Third wiring hole. Detailed implementation mode
[0040] To make the purpose, technical solution and advantages of this application clearer, the following examples are given to further elaborate on this application in detail.
[0041] In the description of this application, it should be understood that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing this application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, so it cannot be understood as a limitation to this application. Also, the terms "first", "second", "third" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0042] As Figure 1 shown, the track - type socket consists of a track board and several adapters 10 arranged on the track board. The track board can be set on the wall or embedded in the table.
[0043] As Figures 1 to 3As shown in the figure, the track plate includes a top cover 1, a base 2, at least one set of conductive sockets 3, three sets of wires 4, and three wiring sleeves 5. Among them, at least one first type of socket portion 11 is provided on the top cover 1, and the first type of socket portion 11 is used to install the adapter 10. The base 2 is connected to the top cover 1. Along three wiring paths on its inner bottom surface, a plurality of wire grooves 21 are respectively provided, and two side grooves 22 and one bottom groove 23 are provided on the inner bottom surface corresponding to one first type of socket portion 11. One set of conductive sockets 3 includes two side sockets 31 correspondingly arranged in the two side grooves 22, and one ground socket 32 arranged in one bottom groove 23; wherein, the clamping mouth 311 of the side socket 31 is parallel to the bottom surface of the base 2, and the clamping mouth 311 of the ground socket 32 faces the first type of socket portion 11.
[0044] Each set of the three sets of wires 4 is arranged in the wire groove 21 along its corresponding one wiring path. And two sets of wires 4 respectively connect the corresponding plurality of side sockets 31 beside the two side wiring paths, and the other set of wires 4 connects the plurality of ground sockets 32 beside the middle wiring path. Each of the three wiring sleeves 5 is electrically connected to the corresponding set of wires 4 and is used to access the power supply.
[0045] Correspondingly, when the track socket is in use, a part of the bottom of the adapter 10 extends into the first type of socket portion 11 of the track plate, and a set of conductive pins of the adapter 10 is also conductively connected to a set of conductive sockets 3 of the track plate. The plug of the electrical appliance is plugged into the adapter 10 to draw power.
[0046] In the track plate and the track socket, along the three wiring paths, two sets of wires 4 respectively connect the corresponding plurality of side sockets 31 beside the two side wiring paths, and the other set of wires 4 connects the plurality of ground sockets 32 beside the middle wiring path. In this way, when a certain conductive socket 3 is damaged, it can be conveniently replaced to extend the service life of the track plate.
[0047] Refer to Figure 2 and Figure 3 , the side groove 22 is formed with two side plates and a back plate at the rear ends of the two side plates. The two side plates are connected to the inner bottom surface of the base 2, and the front ends of the side plates are lower than the clamping mouth 311 of the side socket 31. An insertion slot is formed between the back plate and the side plates. Correspondingly, the side socket 31 is formed with two opposite clamping pieces 312 and a connecting piece 313 connected to the rear ends of the two clamping pieces 312. And through holes for connecting the wires 4 are formed at both ends of the connecting piece 313; the side socket 31 is clamped between the two side plates, and the connecting piece 313 of the side socket 31 is inserted into the two insertion slots.
[0048] In this way, the side socket 31 can be conveniently and stably installed, and the wire 4 is quickly connected to the side socket 31 in a way that passes through the first wiring hole 3131. When in use, the conductive pin of the adapter 10 is inserted into the clamping opening 311 of the side socket 31 for conductive contact.
[0049] Continue to refer to Figure 2 and Figure 3 As shown in FIGS. and, the grounding socket 32 is formed with a bottom plate 321, two bent ears 322 and two connection strips 323. A jack 3211 is provided in the middle of the bottom plate 321; the two bent ears 322 are formed on opposite sides of the bottom plate 321, and the ends of the bent ears 322 face the top surface of the bottom plate 321; the two connection strips 323 are formed on the other opposite sides of the bottom plate 321, and the connection strips 323 first extend outward and then bend upward to form a second wiring hole 3231 for connecting the wire 4. The bottom card slot 23 includes a middle groove and bottom limiting grooves communicating with opposite sides of the middle groove; wherein, the bottom plate 321 and the two bent ears 322 of the grounding socket 32 are arranged in the middle groove, and the two connection strips 323 extend along the bottom limiting grooves.
[0050] In this way, the grounding socket 32 can be conveniently and stably installed, and the wire 4 is quickly connected to the grounding socket 32 in a way that passes through the second wiring hole 3231. When in use, the grounding conductive pin of the adapter 10 is inserted between the two bent ears 322 of the grounding socket 32 and passes through the jack 3211 on the bottom plate 321 for conductive contact.
[0051] Combined with Figure 2 and Figure 4 As shown in FIGS. and, a port box 24 protrudes from the bottom of the base 2. Three mounting grooves 241 are provided in the port box 24, and a wire passing hole (242) and a wire pressing hole 243 are provided on the side wall of the port box 24 corresponding to each mounting groove 241, and the axes of the wiring hole and the wire pressing hole 243 are perpendicular to each other. Among them, a wiring sleeve 5 is arranged in one mounting groove 241, and the wiring sleeve 5 is provided with a wire insertion hole 51 facing the wire passing hole (242), and a screw hole 52 facing the wire pressing hole 243. The wiring sleeve 5 also extends to form a third wiring hole 53 for connecting the wire 4.
[0052] In this way, after the external power cord is inserted into the wire passing hole (242) and the wire insertion hole 51, the power cord can be quickly connected by pressing the power cord with a screw passing through the wire pressing hole 243 and the screw hole 52. At the same time, the wiring sleeve 5 can be conveniently and stably installed, and the wire 4 is quickly connected to the wiring sleeve 5 in a way that passes through the third wiring hole 53.
[0053] In a preferred embodiment, at least one second - type socket part is further provided on the top cover 1. The technical concept of this embodiment is to connect the conductive socket sleeve 3, the conductive sleeve or the charging circuit through the wire 4, so that different types of sockets can be set on the track board to meet the user's usage requirements in different scenarios.
[0054] Exemplarily, referring to Figure 5 , the second - type socket part can be a three - hole socket part 12. Three conductive sleeves are provided on the inner bottom surface of the base 2 corresponding to the three - hole socket part 12, and the three conductive sleeves are respectively electrically connected to a corresponding group of wires 4 in the three groups of wires 4.
[0055] Exemplarily, continuing to refer to Figure 5 , the second - type socket part can be a two - hole socket part 13. Two conductive sleeves are provided on the inner bottom surface of the base 2 corresponding to the two - hole socket part 13, and the two conductive sleeves are respectively electrically connected to their corresponding groups of wires 4.
[0056] Exemplarily, referring to Figure 6 , the second - type socket part is a USB socket part 14USB. A charging circuit is further provided on the base 2. The input end of the charging circuit is connected to the three groups of wires 4, and the output end of the charging circuit is provided with a USB interface facing the USB socket part 14USB. The USB interface is provided on the inner bottom surface of the base 2. For example, the USB interface can be any one of Type - A, Type - B, Type - C, Mini - USB and Micro - USB. In this way, it can be used to charge products such as mobile phones, laptops and headphones.
[0057] This application relates to the technical field of low - voltage electrical equipment, especially a track board and a track - type socket. The track board includes a top cover 1, a base 2, at least one group of conductive socket sleeves 3, three groups of wires 4 and three wiring sleeves 5. In this track board and track - type socket, along three wiring paths, two groups of wires 4 connect the corresponding multiple side socket sleeves 31 beside the two side wiring paths respectively, and the other group of wires 4 connects the multiple grounding socket sleeves 32 beside the middle wiring path. In this way, when a certain conductive socket sleeve 3 is damaged, it can be replaced very conveniently to extend the service life of the track board.
[0058] The above are only the preferred embodiments of this application and are not intended to limit this application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of this application shall be included within the protection scope of this application. In this patent application, nouns and pronouns related to people are not limited to specific genders.
Claims
1. Track slab, characterized in that, Comprising: A top cover (1) provided with at least one first type of socket part (11) thereon for mounting an adapter (10); A base (2) connected to the top cover (1), on the inner bottom surface of which a plurality of wire grooves (21) are respectively arranged along three wiring paths, and two side grooves (22) and one bottom groove (23) are arranged corresponding to one of the first type of socket parts (11) on the inner bottom surface; At least one set of conductive socket sleeves (3), one set of conductive socket sleeves (3) including two side socket sleeves (31) correspondingly arranged in the two side grooves (22) and one ground socket sleeve (32) arranged in one bottom groove (23); wherein, the clamping mouth (311) of the side socket sleeve (31) is parallel to the bottom surface of the base (2), and the clamping mouth (311) of the ground socket sleeve (32) faces the first type of socket part (11); Three groups of wires (4), each group of wires (4) is arranged in the wire groove (21) along its corresponding one of the wiring paths, and two groups of wires (4) connect the corresponding plurality of side socket sleeves (31) beside the two wiring paths respectively, and the other group of wires (4) connects the plurality of ground socket sleeves (32) beside the middle wiring path; Three wiring sleeves (5), each electrically connected to a corresponding group of wires (4) and used for accessing a power supply.
2. The track slab according to claim 1, characterized in that, The side groove (22) is formed with two side plates and a back plate at the rear ends of the two side plates, the two side plates are connected to the inner bottom surface of the base (2), and the front ends of the side plates are lower than the clamping mouth (311) of the side socket sleeve (31), and an insertion slot is formed between the back plate and the side plates; The side socket sleeve (31) is formed with two opposite clamping pieces (312) and a connecting piece (313) connected to the rear ends of the two clamping pieces (312), and first wiring holes (3131) for connecting wires (4) are formed by the two ends of the connecting piece (313) protruding; the side socket sleeve (31) is clamped between the two side plates, and the connecting piece (313) of the side socket sleeve (31) is inserted into the two insertion slots.
3. The track slab according to claim 1, characterized in that, The ground socket sleeve (32) is formed with a bottom plate (321), two bent ears (322) and two connecting strips (323); a jack (3211) is arranged in the middle of the bottom plate (321); the two bent ears (322) are formed on the opposite sides of the bottom plate (321), and the ends of the bent ears (322) face the top surface of the bottom plate (321); the two connecting strips (323) are formed on the other opposite sides of the bottom plate (321), and the connecting strips (323) first extend outwards and then bend upwards to form second wiring holes (3231) for connecting wires (4); The bottom groove (23) includes a middle groove and bottom limiting grooves communicated with the opposite sides of the middle groove; wherein, the bottom plate (321) and the two bent ears (322) of the ground socket sleeve (32) are arranged in the middle groove, and the two connecting strips (323) extend along the bottom limiting grooves.
4. The track slab according to claim 1, characterized in that, A port box (24) protrudes from the bottom of the base (2). Three mounting grooves (241) are provided in the port box (24), and a wire passing hole (242) and a wire pressing hole (243) are provided on the side wall of the port box (24) corresponding to each mounting groove (241). The axes of the wire passing hole (242) and the wire pressing hole (243) are perpendicular to each other. Among them, one wiring sleeve (5) is arranged in one of the mounting grooves (241). The wiring sleeve (5) is provided with a wire insertion hole (51) facing the wire passing hole (242) and a screw hole (52) facing the wire pressing hole (243). The wiring sleeve (5) further extends to form a third wiring hole (53) for connecting a wire (4).
5. The track slab according to claim 1, characterized in that, At least one second type of socket part is further provided on the top cover (1).
6. The track slab according to claim 5, characterized in that, The second type of socket part is a three-hole socket part (12). Three conductive sleeves are provided on the inner bottom surface of the base (2) corresponding to the three-hole socket part (12), and the three conductive sleeves are respectively electrically connected to a corresponding group of wires (4) in the three groups of wires (4).
7. The track slab according to claim 5, characterized in that, The second type of socket part is a two-hole socket part (13). Two conductive sleeves are provided on the inner bottom surface of the base (2) corresponding to the two-hole socket part (13), and the two conductive sleeves are respectively electrically connected to their corresponding groups of wires (4).
8. The track slab according to claim 5, characterized in that, The second type of socket part is a USB socket part (14). A charging circuit is further provided on the base (2). The input end of the charging circuit is connected to the three groups of wires (4), and the output end of the charging circuit is provided with a USB interface facing the USB socket part (14). The USB interface is arranged on the inner bottom surface of the base (2).
9. The track slab according to claim 8, characterized in that, The USB interface is any one of Type-A, Type-B, Type-C, Mini-USB, and Micro-USB.
10. The track socket is characterized in that, Comprising: The track slab according to any one of claims 1 to 9; At least one adapter (10), a part of the adapter (10) extends into the first type of socket part (11) of the track slab, and a group of conductive pins of the adapter (10) is also electrically connected to a group of conductive sockets (3) of the track slab.