CN111969358B - Replaceable modular socket structure - Google Patents

Replaceable modular socket structure Download PDF

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Publication number
CN111969358B
CN111969358B CN202011146078.6A CN202011146078A CN111969358B CN 111969358 B CN111969358 B CN 111969358B CN 202011146078 A CN202011146078 A CN 202011146078A CN 111969358 B CN111969358 B CN 111969358B
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socket
connecting piece
slot
travel switch
assembly
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CN111969358A (en
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周强
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/46Bases; Cases
    • H01R13/514Bases; Cases composed as a modular blocks or assembly, i.e. composed of co-operating parts provided with contact members or holding contact members between them
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/66Structural association with built-in electrical component
    • H01R13/70Structural association with built-in electrical component with built-in switch
    • H01R13/703Structural association with built-in electrical component with built-in switch operated by engagement or disengagement of coupling parts, e.g. dual-continuity coupling part
    • H01R13/7035Structural association with built-in electrical component with built-in switch operated by engagement or disengagement of coupling parts, e.g. dual-continuity coupling part comprising a separated limit switch

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Abstract

The invention relates to a replaceable modular socket structure, which comprises a socket component and a jack component, wherein a travel switch which is positioned outside a slot and is arranged close to a supporting platform is arranged in the socket component, and the travel switch is connected between an electric connector and a power supply; a notch which is communicated up and down is arranged on the supporting platform and is close to the outer edge of the supporting platform, and a trigger part of the travel switch is exposed above the notch and can be positioned on the inner wall surface of the slot in a sliding way up and down; the trigger part of the travel switch can slide downwards to the notch under the abutting action of the lower wall surface of the first part of the jack assembly so as to close the travel switch. The socket assembly is detachably inserted into the slot of the socket assembly, and the socket assembly is of a T-shaped structure, so that the socket assembly and the slot are more convenient to insert and assemble and are convenient to disassemble and assemble; after the plug-in mounting is finished, the first part of the T-shaped structure abuts against the trigger part of the travel switch, so that the socket assembly is electrified, and under the condition of not triggering, the socket assembly is automatically in a power-off state, and the safety performance of the socket is improved.

Description

Replaceable modular socket structure
Technical Field
The present invention relates to a replaceable modular jack structure.
Background
The power socket in the prior art may generally include a plurality of power modules, but these power modules are generally connected to the same external power source, and the power modules all adopt the same national standard. Any power module fails, which may result in the damage of other power modules, thereby affecting the service life of the entire socket product. However, the power supply standards of different countries may be different, for example, the domestic power of the china power grid is generally 220V, so that the china appliances are generally suitable for 220V ac, and the domestic power of the japan power grid is generally 110V, so that the japan appliances are generally suitable for 110V ac. In some specific occasions, if a plurality of electric appliances using the same power socket are suitable for different national standards, a user has power supply requirements of power management modules with different standards, the user can only change the power supply standard by using various adapters, and the traditional power socket can not perform personalized adjustment on the power socket.
In order to solve the above problems, the combined power socket of chinese patent application publication No. CN106025675A (application No. CN 201610489209.8) provides a combined power socket with multiple power modules, where multiple power supply modules with different output standards can be provided on the same power socket, and a user can adjust the number and types of the power supply modules according to the needs. However, if a certain power module fails, the power module is very inconvenient to disassemble, assemble and maintain; and the power module and the power socket are powered on once being assembled, so that unsafe factors such as mistaken power-on exist for children.
Disclosure of Invention
The invention aims to solve the technical problem of providing a replaceable modular socket structure which is convenient to disassemble and assemble and has good safety performance aiming at the current situation of the prior art.
The technical scheme adopted by the invention for solving the technical problems is as follows: a replaceable modular socket structure comprises a socket assembly and a socket assembly, wherein a slot for the socket assembly to be detachably inserted and matched is formed in the upper wall surface of the socket assembly, plug pins are arranged at the bottom of the socket assembly, correspondingly, a socket for the plug pins to penetrate through is formed in the bottom wall of the slot, and an electric connecting piece which is arranged corresponding to the socket and is used for connecting the plug pins with power supply electric signals is arranged at the outer bottom of the slot;
the socket assembly is provided with a first part positioned on the upper part and a second part positioned on the lower part, the width of the second part is smaller than that of the first part, so that the cross section of the socket assembly is shaped into a T-shaped structure, and the shape of the slot is matched with that of the socket assembly of the T-shaped structure, so that a support table for supporting the lower wall surface of the first part is formed in the middle part;
a travel switch which is arranged outside the slot and close to the saddle is arranged in the socket assembly and is connected between the electric connecting piece and the power supply; a notch which is communicated up and down is formed on the supporting platform and is close to the outer edge of the supporting platform, and a trigger part of the travel switch is exposed above the notch and can be positioned on the inner wall surface of the slot in a vertically sliding manner; and when the socket assembly and the socket assembly are assembled, the trigger part of the travel switch slides downwards to the notch under the abutting action of the lower wall surface of the first part of the socket assembly so as to close the travel switch.
Preferably, the slot is provided with a sliding groove communicated with the notch at the position corresponding to the notch, the upper end of the sliding groove is positioned above the saddle, the triggering part of the travel switch is of a Z-shaped structure, a first transverse part at the bottom of the Z-shaped structure can slide up and down and penetrates through the sliding groove to be connected with the travel switch, a vertical part at the middle part of the Z-shaped structure is arranged close to the inner wall of the slot, and a second transverse part at the top of the Z-shaped structure is used for limiting the descending position of the Z-shaped structure. The trigger part of the Z-shaped structure is matched with the inner wall of the slot and the notch to be compact and stable, and the reliability of the travel switch in the closing or opening process is improved.
Preferably, a limit block is arranged on the side wall of the bottom of the notch, which is opposite to the sliding groove, and the second transverse part of the top of the Z-shaped structure abuts against the limit block for limiting under the condition that the trigger part of the travel switch moves downwards into the notch. This structure is injectd descending extreme position for trigger part, guarantees after canceling the pressure of support, and trigger part can bounce smoothly, further improves its reliability.
Preferably, the upper portion of socket subassembly is through spacing subassembly restraint on socket subassembly, the slot bottom is provided with the flexible post that can stretch out and draw back from top to bottom and offset with the diapire of socket subassembly, and this flexible post keeps the trend of popping out the socket subassembly upwards all the time, and flexible post can be either the bottom of restraint at the socket subassembly, also can be the restraint on the socket subassembly. The structure can pop the jack component out of the jack slot after the limit component cancels the limit of the jack component, thereby being convenient for replacing the jack component.
In order to facilitate assembly, an assembly plate located below the slot is arranged in the socket assembly, an opening for the telescopic column to penetrate through is formed in the bottom of the slot, the telescopic column is restrained on the assembly plate and penetrates through the opening to be arranged, and an elastic piece abutted against the bottom of the telescopic column is further arranged on the assembly plate.
Preferably, the electric connector comprises a live wire connecting piece, a zero line connecting piece and a grounding connecting piece, a first socket corresponding to the grounding connecting piece is transversely arranged at the central part of the slot, and a second socket corresponding to the live wire connecting piece and a third socket corresponding to the zero line connecting piece are respectively and vertically arranged on two sides of the first socket. The width of the first jack, the width of the second jack and the width of the third jack are all smaller than 1mm, and the width of the plug pin is also smaller than 1 mm. By adopting the structure, the electric shock risk can be reduced, and a protection structure does not need to be arranged independently.
The grounding connecting piece is provided with a first connecting piece, a second connecting piece and a third connecting piece which are all shaped like S, wherein the first connecting piece and the second connecting piece are arranged oppositely, the first connecting piece and the second connecting piece are gradually far away from each other from top to bottom, the bent parts of the upper parts of the first connecting piece and the second connecting piece are relatively close to each other, the third connecting piece is positioned beside the first connecting piece and the second connecting piece and is gradually far away from the first connecting piece and the second connecting piece from top to bottom, the bent part of the upper part of the third connecting piece is close to the bent parts of the upper parts of the first connecting piece and the second connecting piece, and a splicing seam which corresponds to the arrangement of. The structure is different from the existing electric connector structure, is beneficial to reducing the resistance between the pin and the electric connector and is convenient for connection, and the grounding connector formed by three groups of connecting sheets has better stability and is beneficial to improving the electric connection performance.
In order to facilitate production and assembly, the socket assembly comprises an upper cover and a lower cover which can be mutually buckled, the slots are arranged on the upper wall surface of the upper cover at intervals, and the upper cover is also provided with a main switch used for controlling the socket assembly to be electrified or not.
In each scheme, the jack component is selected from a dual-national standard two-jack module, a universal jack module, a USB (universal serial bus) socket module, a five-combined-jack module, a national standard two-jack module, a national standard 10A three-jack module, a national standard 16A three-jack module, an LED (light-emitting diode) lamp module, an electronic clock module and an indicator light module, so that a user can select the corresponding jack component as required, and more requirements of consumers are met.
A replaceable modular socket structure comprises a socket assembly and a socket assembly, wherein a slot for the socket assembly to be detachably inserted and matched is formed in the upper wall surface of the socket assembly, plug pins are arranged at the bottom of the socket assembly, correspondingly, a socket for the plug pins to penetrate through is formed in the bottom wall of the slot, and an electric connecting piece which is arranged corresponding to the socket and is used for connecting the plug pins with power supply electric signals is arranged at the outer bottom of the slot;
the socket assembly is provided with a first part positioned at the upper part and a second part positioned at the lower part, the width of the second part is smaller than that of the first part, for example, the socket assembly can be in a frustum-shaped structure with a large upper end and a small lower end, and the shape of the slot is matched with that of the socket assembly;
a travel switch positioned at the outer side part of the slot is arranged in the socket assembly and is connected between the electric connecting piece and the power supply; a notch is formed in the inner wall of the slot, and a trigger part of the travel switch penetrates through the notch and can be positioned on the inner wall surface of the slot in a vertically sliding manner; and when the socket assembly and the socket assembly are assembled, the trigger part of the travel switch slides downwards along the notch under the abutting action of the outer wall of the socket assembly so as to close the travel switch.
Compared with the prior art, the invention has the advantages that: the socket assembly is detachably inserted into the slot of the socket assembly, is of a T-shaped structure, and is more convenient to insert and assemble and disassemble compared with the socket assembly with the same width up and down; after the plug-in mounting is finished, the first part of the T-shaped structure abuts against the trigger part of the travel switch, so that the socket assembly is powered on, and the socket assembly is automatically in a power-off state in an unfired state, and the safety performance of the socket is improved.
Drawings
FIG. 1 is a schematic structural view of example 1 of the present invention;
FIG. 2 is a partially exploded view of FIG. 1;
FIG. 3 is a schematic structural view of a jack module according to example 1 of the present invention;
FIG. 4 is a cross-sectional view of the receptacle assembly according to embodiment 1 of the present invention;
FIG. 5 is a schematic view of a connection structure of a part of the electrical components in the socket assembly according to embodiment 1 of the present invention;
fig. 6 is a schematic structural view of a ground connection member in embodiment 1 of the present invention;
FIG. 7 is another cross-sectional view of the receptacle assembly of embodiment 1 of the present invention;
FIG. 8 is a sectional view in embodiment 2 of the present invention;
FIG. 9 is an exploded view of embodiment 3 of the present invention;
FIG. 10 is a sectional view of example 3 of the present invention;
FIG. 11 is a schematic view of different jack assemblies in example 1 of the present invention.
Detailed Description
The invention is described in further detail below with reference to the accompanying examples.
Example 1:
as shown in fig. 1 to 7, the replaceable modular jack structure in this embodiment includes a jack module 2 and a socket module 1, wherein an upper wall surface of the jack module 2 is provided with a slot 21 for detachably inserting and matching the socket module 1 therein, as shown in fig. 3, a bottom of the socket module 1 is provided with a plug 11, correspondingly, as shown in fig. 4, a bottom wall of the slot 21 is provided with a socket 211 for the plug 11 to pass through, as shown in fig. 5, an outer bottom of the slot 21 is provided with an electrical connector 22 arranged corresponding to the socket 211 and used for connecting the plug 11 with an electrical signal of a power supply.
As shown in fig. 3, the socket assembly 1 has a first portion 1a at the upper part and a second portion 1b at the lower part, the width of the second portion 1b is smaller than that of the first portion 1a so that the cross section of the socket assembly 1 is formed into a T-shaped structure, and as shown in fig. 4, the shape of the slot 21 is matched with the shape of the socket assembly 1 having the T-shaped structure so that a saddle 212 for supporting the lower wall surface of the first portion 1a is formed at the middle part. The socket assembly 2 is provided therein with a travel switch 3 located outside the slot 21 and arranged close to the pallet 212, the travel switch 3 being connected between the electrical connector 22 and the power source. The holder 212 has a notch 213 penetrating vertically near the outer edge thereof, and the trigger 31 of the travel switch 3 is exposed above the notch 213 and slidably positioned on the inner wall surface of the slot 21 in the vertical direction. In the state that the jack assembly 1 and the socket assembly 2 are completely assembled, the trigger part 31 of the travel switch 3 slides downwards to the notch 213 under the abutting action of the lower wall surface of the first part 1a of the jack assembly 1 so as to close the travel switch 3, and in the state that the jack assembly 1 is taken out of the socket assembly 2, the trigger part 31 of the travel switch 3 is not triggered, and the socket assembly 2 is automatically in the power-off state, so that the safety performance of the socket is improved.
As shown in fig. 4, the slot 21 is provided with a sliding slot 214 at a position corresponding to the notch 213, the sliding slot 214 is communicated with the notch 213, the upper end of the sliding slot 214 is located above the saddle 212, the triggering portion 31 of the travel switch 3 is a Z-shaped structure 30, a first transverse portion 301 at the bottom of the Z-shaped structure 30 can pass through the sliding slot 214 to be connected with the travel switch 3 in a vertically sliding manner, a vertical portion 303 at the middle of the Z-shaped structure 30 is arranged close to the inner wall of the slot 21, and a second transverse portion 302 at the top of the Z-shaped structure 30 is used for limiting the descending position of the Z-shaped structure 30. The trigger part 31 of the Z-shaped structure 30 is tightly and stably engaged with the inner wall of the slot 21 and the notch 213, which is beneficial to improving the reliability of the on/off of the travel switch 3. A limit block 215 is arranged on the side wall of the bottom of the notch 213 opposite to the sliding groove 214, and the second transverse part 302 at the top of the Z-shaped structure 30 is abutted against the limit block 215 for limiting under the state that the trigger part 31 of the travel switch 3 moves downwards into the notch 213. This structure defines descending extreme position for trigger part 31, guarantees after canceling the backpressure, and trigger part 31 can bounce smoothly, further improves its reliability.
In the present embodiment, as shown in fig. 4 and 7, the upper portion of the jack assembly 1 is constrained on the socket assembly 2 by the limiting assembly 4, the bottom of the slot 21 is provided with a telescopic column 23 which can be vertically telescopic and abuts against the bottom wall of the jack assembly 1, and the telescopic column 23 always keeps a tendency of extending upwards. After the limiting component 4 cancels the limiting of the socket component 1, the telescopic column 23 pops the socket component 1 out of the slot 21, so that the socket component 1 can be conveniently replaced. In order to facilitate assembly, an assembly plate 24 located below the slot 21 is disposed in the socket assembly 2, an opening 216 through which the telescopic column 23 passes is formed at the bottom of the slot 21, the telescopic column 23 is constrained on the assembly plate 24 and passes through the opening 216 to be arranged, an elastic member 25 abutting against the bottom of the telescopic column 23 is further disposed on the assembly plate 24, and the elastic member 25 is a spring.
As shown in fig. 5, the electrical connector 22 of the present embodiment includes a live wire connector 22a, a neutral wire connector 22b and a ground connector 22c, wherein a first socket 211a corresponding to the ground connector 22c is transversely opened at a central portion of the slot 21, and a second socket 211b corresponding to the live wire connector 22a and a third socket 211c corresponding to the neutral wire connector 22b are respectively vertically arranged at two sides of the first socket 211 a. The widths of the first socket 211a, the second socket 211b and the third socket 211c are all less than 1mm, and the width of the pin 11 is also less than 1 mm. By adopting the structure, the electric shock risk can be reduced, and a protection structure does not need to be arranged independently.
The grounding connecting piece 22c comprises a first connecting piece 221, a second connecting piece 222 and a third connecting piece 223 which are all shaped like an S, wherein the first connecting piece 221 and the second connecting piece 222 are arranged oppositely and gradually far away from each other from top to bottom, a first bending part 201 at the upper part of the first connecting piece 221 and a second bending part 202 at the upper part of the second connecting piece 222 are relatively close to each other, the third connecting piece 223 is positioned at the side of the first connecting piece 221 and the second connecting piece 222 and gradually far away from the first connecting piece 221 and the second connecting piece 222 from top to bottom, and a third bending part 203 at the upper part of the third connecting piece 223 is close to the bending parts at the upper parts of the first connecting piece 221 and the second connecting piece 222 and forms an inserting seam 220 corresponding to the first inserting opening 211a together with the side walls of the first connecting. The structure is different from the existing electric connector structure, is beneficial to reducing the resistance between the pin 11 and the electric connector and is convenient for connection, and the grounding connector 22c formed by three groups of connecting sheets has better stability and is beneficial to improving the electric connection performance.
For convenience of production and assembly, as shown in fig. 1, the socket assembly 2 includes an upper cover 26 and a lower cover 27 that can be fastened to each other, a plurality of slots 21 are provided on an upper wall surface of the upper cover 26 at intervals, and the upper cover 26 is further provided with a main switch 5 for controlling whether the socket assembly 2 is powered on or not.
As shown in fig. 11, the jack module 1 of the present embodiment is selected from a dual-national standard two-jack module, a universal jack module, a USB socket module, a five-combination-hole module, a national standard two-jack module, a national standard 10A three-jack module, a national standard 16A three-jack module, an LED lamp module, an electronic clock module, and an indicator lamp module, so that a user can select a corresponding jack module 1 as needed, thereby meeting more demands of consumers.
In this embodiment, as shown in fig. 2, the position limiting component 4 includes a buckle 4211 and a bayonet 411, the outer side wall of the socket component 1 is provided with the bayonet 411 near the top edge, and correspondingly, the side wall of the slot 21 is provided with the buckle 4211 near the top edge, which can be engaged with the bayonet 411 to restrain the socket component 1 on the socket component 2. Specifically, the socket assembly 2 is provided with two slits 422 extending downward from the top edge of the insertion slot 21, the slits 422 are arranged at intervals, a portion between the two slits 422 forms a locking piece 423, and the latch 4211 is located at the top edge of the locking piece 423. This arrangement is advantageous to improve the resilience of the buckle 4211, facilitating the manual pushing of the buckle 4211 outwards and thereby eliminating the need for limiting the socket assembly 1.
Example 2:
this example differs from example 1 in that:
as shown in fig. 8, in the stopper unit 4 of the present embodiment, in addition to embodiment 1, a slide groove 4213 penetrating the insertion groove 21 is formed in the top wall of the socket unit 2, a buckle 4231 extending into the slide groove 4213 is provided at the outer edge of the top of the engagement piece 423, and a rib 4232 is provided at the outer edge of the buckle 4231. This structure is advantageous for further improving the convenience of operation, and when the socket assembly 1 needs to be taken out from the socket 21, the user can easily disengage the buckle 4211 from the bayonet 411 by manually gripping the convex ridge 4232 on the buckle 4231 and shifting it outwards along the slide groove 4213, thereby eliminating the limitation on the socket assembly 1.
The receptacle unit 2 is provided with a first elastic member 44 for always urging the card 423 toward the inside of the insertion groove 21. The first elastic member 44 is a spring, and elastically presses against the outer side of the card 423. This structure is advantageous for improving the limit stability of the jack module 1 in the assembled state.
Example 3:
the present embodiment is different from embodiments 1 and 2 in that: the structure and the operation mode of the limiting assembly are different.
As shown in fig. 9 and 10, the limiting assembly of the present embodiment includes a bayonet 11a, a locking block 41a and a driving assembly 4a, the outer sidewall of the socket assembly 1 is opened with the bayonet 11a, the sidewall of the slot 21 is opened with a notch 211a disposed corresponding to the bayonet 11a, and the socket assembly 2 is provided with the locking block 41a capable of passing through the notch 211a to be disposed telescopically and being inserted into the slot 21 for limiting.
The socket assembly 2 of this embodiment is further provided with a driving assembly 4a for driving the latch 41a to extend and retract, and a part of the driving assembly 4a is exposed on the outer wall surface of the socket assembly 2 and always keeps the latch 41a extending into the slot 21.
The driving assembly 4a includes a swinging member 42a and an elastic member 43a, the middle portion of the swinging member 42a is rotatably connected to the socket assembly 2, the first end of the swinging member 42a is connected to the latch 41a, the latch 41a and the swinging member 42a are integrally formed, the second end of the swinging member 42a is exposed out of the outer sidewall of the socket assembly 2, and the elastic member 43a is disposed corresponding to the second end of the swinging member 42 a.
Specifically, the socket assembly 2 is provided with a rotating shaft 22a which is located beside the notch 211a and is vertically arranged, and the middle of the swinging member 42a is provided with a shaft hole 421a which is matched and connected with the rotating shaft 22 a. The outer sidewall of the receptacle module 2 is opened with a port 23a corresponding to the second end of the swinging member 42a, and the second end of the swinging member 42a has a pressing portion 422a exposed to the port 23 a. The second end of the swinging member 42a is provided with a limit post 423a extending into the socket assembly 2, the elastic member 43a is a spring sleeved on the outer periphery of the limit post 423a, the first end of the spring is abutted against the inner wall surface of the swinging member 42a, and the second end of the spring is abutted against the stop piece 24a close to the end of the limit post 423a in the socket assembly 2. The bayonet 11a is located below the top edge of the socket assembly 1, and the bayonet 11a is located at the position and can be hidden after being assembled, so that the surface integrity is better and the appearance is more attractive.

Claims (8)

1. The utility model provides a can replace modularization socket structure, includes socket subassembly (2) and socket subassembly (1), the last wall of socket subassembly (2) is opened and is supplied socket subassembly (1) to shirk to insert slot (21) of joining in marriage wherein, the bottom of socket subassembly (1) has and participates in (11), and is corresponding, it has socket (211) that confession is participated in (11) and passes to open on slot (21) the diapire, the outer bottom of slot (21) is provided with and corresponds socket (211) and arrange and be used for inserting electric connector (22) of participating in (11) and power signal connection, its characterized in that:
the socket assembly (1) is provided with a first part (1a) positioned at the upper part and a second part (1b) positioned at the lower part, the width of the second part (1b) is smaller than that of the first part (1a) so that the cross section of the socket assembly (1) is shaped into a T-shaped structure, and the shape of the slot (21) is matched with that of the socket assembly (1) with the T-shaped structure so that a saddle (212) used for bearing the lower wall surface of the first part (1a) is formed in the middle part;
the socket assembly (2) is internally provided with a travel switch (3) which is positioned outside the slot (21) and close to the pallet, and the travel switch (3) is connected between the electric connector (22) and a power supply; a notch (213) which is penetrated up and down is arranged on the supporting platform (212) near the outer edge of the supporting platform, and a trigger part (31) of the travel switch (3) is exposed above the notch (213) and can be positioned on the inner wall surface of the slot (21) in a vertically sliding manner; under the state that the socket assembly (1) and the socket assembly (2) are assembled, the trigger part (31) of the travel switch (3) slides downwards into the notch (213) under the abutting action of the lower wall surface of the first part (1a) of the socket assembly (1) so as to close the travel switch (3);
the width of the plug pin (11) and the width of the corresponding socket (211) are both smaller than 1 mm;
the slot (21) is provided with a sliding groove (214) communicated with the notch (213) at the position corresponding to the notch (213), the upper end of the sliding groove (214) is positioned above the supporting platform (212), the triggering part (31) of the travel switch (3) is of a Z-shaped structure (30), a first transverse part (301) at the bottom of the Z-shaped structure (30) can slide up and down and penetrate through the sliding groove (214) to be connected with the travel switch (3), a vertical part (303) in the middle of the Z-shaped structure (30) is arranged close to the inner wall of the slot (21), and a second transverse part (302) at the top of the Z-shaped structure (30) is used for limiting the descending position of the Z-shaped structure.
2. The replaceable modular jack structure of claim 1, wherein: the bottom of the notch (213) is provided with a limit block (215) on the side wall which is arranged opposite to the sliding groove (214), and the second transverse part (302) at the top of the Z-shaped structure (30) is abutted against the limit block (215) for limiting under the state that the trigger part (31) of the travel switch (3) moves downwards into the notch (213).
3. The replaceable modular jack structure of claim 1, wherein: the upper portion of socket subassembly (1) is through spacing subassembly restraint on socket subassembly (2), slot (21) bottom is provided with flexible post (23) that can stretch out and draw back from top to bottom and offset with the diapire of socket subassembly (1), and this flexible post (23) remain throughout with the trend that upwards pops out of socket subassembly (1).
4. The replaceable modular jack structure of claim 3, wherein: be provided with assembly plate (24) that is located slot (21) below in socket subassembly (2), open slot (21) bottom has opening (216) that supply flexible post (23) to pass, flexible post (23) restraint is on assembly plate (24) and pass opening (216) and arrange, still be provided with elastic component (25) that offset with flexible post (23) bottom on assembly plate (24).
5. The replaceable modular jack structure of claim 1, wherein: the electric connector (22) comprises a live wire connecting piece (22a), a zero line connecting piece (22b) and a grounding connecting piece (22c), a first socket (211a) corresponding to the grounding connecting piece (22c) is transversely arranged at the central part of the slot (21), and a second socket (211b) corresponding to the live wire connecting piece (22a) and a third socket (211c) corresponding to the zero line connecting piece (22b) are vertically arranged on two sides of the first socket (211a) respectively.
6. The replaceable modular jack structure of claim 5, wherein: the widths of the first socket (211a), the second socket (211b) and the third socket (211c) are all smaller than 1mm, and the width of the plug pin (11) is also smaller than 1 mm.
7. The replaceable modular jack structure of claim 5, wherein: the grounding connecting piece (22c) is provided with a first connecting piece (221), a second connecting piece (222) and a third connecting piece (223) which are all shaped like an S, the first connecting piece (221) and the second connecting piece (222) are arranged oppositely, the first connecting piece (221) and the second connecting piece (222) are gradually far away from each other from the top to the bottom, the bending positions of the upper portions of the first connecting piece and the second connecting piece are relatively close to each other, the third connecting piece (223) is located beside the first connecting piece (221) and the second connecting piece (222) and is gradually far away from the first connecting piece (221) and the second connecting piece (222) from the top to the bottom, the bending positions of the upper portion of the third connecting piece (223) are close to the bending positions of the upper portions of the first connecting piece (221) and the second connecting piece (222), and a plug.
8. The replaceable modular jack structure of any one of claims 1 to 7, wherein: the jack component (1) is selected from one or more of a universal jack module, a USB (universal serial bus) jack module, a five-combined-jack module, a national standard two-jack module, a national standard 10A three-jack module, a national standard 16A three-jack module, an electronic clock module and an indicator light module.
CN202011146078.6A 2020-10-23 2020-10-23 Replaceable modular socket structure Active CN111969358B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202011146078.6A CN111969358B (en) 2020-10-23 2020-10-23 Replaceable modular socket structure

Applications Claiming Priority (1)

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CN113878769A (en) * 2021-10-12 2022-01-04 刘伟 Novel installation positioning die
TW202322492A (en) 2021-11-22 2023-06-01 品威電子國際股份有限公司 Replaceable socket device and adapter

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CN109962365A (en) * 2017-12-25 2019-07-02 深圳市海鹏信电子股份有限公司 Plug-in PDU
CN209119508U (en) * 2018-12-03 2019-07-16 东莞舜威电业有限公司 Replaceable socket structure

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CN2218415Y (en) * 1995-01-24 1996-01-24 曾进 Socket with switch and special plug
CN104868288A (en) * 2015-06-16 2015-08-26 洪亮 Multi-plug socket
CN205985629U (en) * 2016-07-07 2017-02-22 温州国好机电科技有限公司 Built -in safe socket
CN207782002U (en) * 2017-12-01 2018-08-28 南京普天鸿雁电器科技有限公司 A kind of electrification exchange self-locking hot plug socket power distribution unit
CN109962365A (en) * 2017-12-25 2019-07-02 深圳市海鹏信电子股份有限公司 Plug-in PDU
CN108666788A (en) * 2018-06-08 2018-10-16 马鞍山虹迈专业化设计有限公司 A kind of modular jack box
CN209119508U (en) * 2018-12-03 2019-07-16 东莞舜威电业有限公司 Replaceable socket structure

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