CN210052887U - Socket - Google Patents

Socket Download PDF

Info

Publication number
CN210052887U
CN210052887U CN201921046115.9U CN201921046115U CN210052887U CN 210052887 U CN210052887 U CN 210052887U CN 201921046115 U CN201921046115 U CN 201921046115U CN 210052887 U CN210052887 U CN 210052887U
Authority
CN
China
Prior art keywords
module
socket
conducting strip
shell
electric connecting
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201921046115.9U
Other languages
Chinese (zh)
Inventor
李利
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ma'anshan Rainbow Professional Design Co Ltd
Original Assignee
Ma'anshan Rainbow Professional Design Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Ma'anshan Rainbow Professional Design Co Ltd filed Critical Ma'anshan Rainbow Professional Design Co Ltd
Application granted granted Critical
Publication of CN210052887U publication Critical patent/CN210052887U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Abstract

The utility model discloses a module socket, including module box and socket module. The module box comprises a zero line conducting strip and a live wire conducting strip or simultaneously comprises a ground wire conducting strip, wherein a threaded hole or a through hole is formed in the conducting strip, correspondingly, a socket module electric connecting pin is arranged on the socket module, and a through hole or a threaded hole is formed in the socket module electric connecting pin, so that the screw passes through the matched threaded hole or through hole in the socket module electric connecting pin and the conducting strip, and the detachable connection between the socket module electric connecting pin and the conducting strip is realized.

Description

Socket
Technical Field
The invention relates to the field of sockets, in particular to a socket.
Background
A "modular jack" under publication No. CN108418041A discloses a jack characterized by: the socket comprises a module box, a socket module and a module socket assembled by the module box and the socket module. The socket module comprises a module body and a conductive elastic sheet; the conductive elastic sheet is exposed on the side wall of the module body and is electrically connected with the internal elements of the module, a cavity for installing the socket module is arranged on the module box, and a corresponding conductive contact sheet is arranged in the cavity. When the socket is used, the socket module is inserted into the cavity on the module box, and the conductive elastic sheet on the socket module is communicated with the conductive contact sheet in the module box, so that the normally used module socket is assembled.
An in-line modular jack, publication No. CN108847543A, discloses a jack, characterized in that: the jack includes a modular cage and a jack module. The module box comprises an isolation bracket, a conducting strip and a module box lower shell; the isolation support and the lower shell of the module box jointly form a conducting strip isolation bin and a module bin, and the conducting strip is arranged in the conducting strip isolation bin. The isolation bin is provided with a slit which is opened on the top surface of the isolation bracket and two adjacent side walls between the two isolation bins; the conducting strip is provided with a clamping part corresponding to the position of the slit. Correspondingly, the side wall of the socket module is provided with pins which are exposed outside the socket module and are vertical to the side wall of the socket module. The pins are inserted into the slots to electrically connect the cage to the jack module.
Disclosure of Invention
1. Technical problem to be solved by the invention
The invention aims to solve the problem that in the prior socket technology, the production cost is high due to the fact that a connecting structure and a fixing structure of a socket module and a socket box are complex.
2. Technical scheme
In order to achieve the purpose, the technical scheme provided by the invention is as follows:
a socket includes a socket module and a socket case; the socket module comprises a module body and module electrical connection pins; the socket module is provided with a module mounting hole for fixing the socket module; the module body comprises an upper module shell and a lower module shell; one end of the module electric connecting pin is electrically connected with the internal circuit of the socket, and the other end of the module electric connecting pin penetrates through the side wall of the module body and is exposed on two sides of the module body; the socket box comprises a socket box upper shell, a socket box lower shell, a conducting strip and a conducting strip supporting structure; the upper socket box shell is detachably and fixedly connected with the lower socket box shell, and the conducting strip supporting structure are fixedly arranged in the lower socket box shell; the conducting plate and the conducting plate supporting structure are fixedly connected with each other through clamping; the conducting strip supporting structure is detachably connected with the lower socket box shell or forms an integral structure; one end of the conducting strip is connected with the wiring terminal or connected with the wiring terminal through a switch; the conducting plate is provided with conducting plate pins which are matched with the positions of the module electric connecting pins on the corresponding socket module, and the conducting plate pins are positioned above the conducting plate supporting structure; after the socket module is inserted into the socket box, the module electric connecting pins on the socket module are electrically connected with the conducting strip pins through contact, so that the socket can be normally used.
Furthermore, the inosculating part of the module upper shell and the module lower shell is provided with an electric connecting hole; one end of the module electric connecting pin penetrates through the electric connecting hole and is exposed at two sides of the module body.
Furthermore, the electric connection hole is positioned in the middle of the module body, and the module mounting hole is a through hole arranged on the module electric connection pin.
Furthermore, sheet structures protruding out of the side wall of the upper shell of the socket module are arranged on two opposite sides of the upper shell of the module, partition structures formed by raised column structures are arranged in the middle positions of the bottoms of the corresponding sheet structures, and the module mounting holes are through holes which are arranged on the partition structures and penetrate through the bottoms of the partition structures and the tops of the sheet structures; the electric connecting holes are positioned on one side of the partition structure, or the two sides of the partition structure are both provided with electric connecting holes; the corresponding module electric connecting pins respectively penetrate out of the corresponding electric connecting holes and are exposed below the sheet structure, so that the conducting strips in the socket box are electrically connected through contact.
Furthermore, through holes are formed in the pins of the conducting strips, and the positions of the through holes are matched with the positions of the module mounting holes in the socket module.
Furthermore, a groove for accommodating the partition structure is arranged on the conducting strip supporting structure at a position corresponding to the partition structure; correspondingly, the pins of the conducting plate are positioned at the corresponding positions of the two sides of the groove and the electric connecting pins of the module.
Furthermore, the conducting strips comprise a zero line conducting strip and a live wire conducting strip; and the zero line conducting strip and the live wire conducting strip are electrically connected with the wiring terminal through a switch or directly electrically connected with the wiring terminal.
Furthermore, the conducting strips also comprise a ground wire conducting strip which is arranged at the middle position of the bottom side of the socket box and is directly and electrically connected with the wiring terminal.
Furthermore, the socket comprises the following assembly steps: screws sequentially penetrate through the lower socket box shell, the conducting strip supporting structure and the module mounting holes to be connected to the upper socket box shell, so that the upper socket shell and the lower socket shell and internal components are fixed, namely, the socket module clamps the socket module through the upper socket box shell and the lower socket box shell to fix all components; or the socket module sequentially passes through the module mounting hole and the conducting strip supporting structure through screws to be connected to the lower shell of the socket box, so that the socket module is fixed; after the socket module is fixed, the module electric connecting pins are directly extruded through the module body or the screws to be in contact with the corresponding conducting strip pins to realize electric connection, so that the socket module is connected into a circuit.
3. Advantageous effects
Compared with the prior art, the technical scheme provided by the invention has the following beneficial effects:
1. according to the socket, the socket module is directly connected with the socket box conducting strip through the screw, so that the manufacturing cost is reduced, and the production is convenient.
2. According to the socket, the threaded hole is formed in the socket box, so that the socket module is convenient to fix.
3. The socket is simple in structure and convenient to produce and use.
Drawings
FIG. 1 is a top side view of a module body according to embodiment 1;
fig. 2 is a top side view of a jack module of embodiment 1;
FIG. 3 is a bottom side view of a jack module of embodiment 1;
FIG. 4 is a bottom side view of a module body according to embodiment 2;
FIG. 5 is a bottom side view of a jack module of embodiment 2;
FIG. 6 is a topside view of a conductive sheet support structure according to embodiment 3;
FIG. 7 is a top side view of a live wire conductive strip of example 3;
FIG. 8 is a top side view of a lower case of the socket case according to embodiment 3;
FIG. 9 is a diagram showing the positional relationship among the lower case of the socket case, the conductive plate supporting structure and the conductive plate in accordance with embodiment 3;
FIG. 10 is a topside view of a conductive sheet support structure according to example 4;
FIG. 11 is a top side view of a live wire conductive strip of example 4;
FIG. 12 is a schematic view of a conductive sheet support structure and a conductive sheet assembly according to embodiment 4;
fig. 13 is a diagram showing the positional relationship among the lower case of the socket case, the conductive sheet support structure, and the conductive sheet in embodiment 4.
The reference numerals in the figures illustrate:
1. a module body; 101. a module upper shell; 1011. a sheet-like structure; 1012. a partition structure; 102. a module lower case; 103. an electrical connection hole; 2. a module electrical connection pin; 201. a zero line electrical connection pin; 202. a live wire electrical connection pin; 203. a module mounting hole; 3. a lower case of the socket case; 4. a conductive sheet; 401. conducting plate pins; 402. a zero line conducting strip; 403. a live wire conducting strip; 5. a conductive sheet support structure; 501. and (4) a groove.
Detailed Description
For a further understanding of the invention, reference should be made to the following detailed description taken in conjunction with the accompanying drawings.
Example 1
As shown in fig. 1-3, a receptacle module of the present embodiment includes a receptacle module body (1) and module electrical connection pins (2) exposed outside the receptacle module. The module body (1) comprises an upper module shell (101), a lower module shell (102) and internal elements of the module. An electric connecting hole (103) is formed in the matching part of the module upper shell (101) and the module lower shell (102).
In the embodiment, the module electrical connection pins (2) comprise a zero line electrical connection pin (201) and a live line electrical connection pin (202) which are positioned at two opposite sides of the socket module and are respectively and fixedly and electrically connected with corresponding conductors of a zero line circuit or a live line circuit in the socket or simultaneously comprise a ground line electrical connection pin positioned at the bottom of the socket module.
In this embodiment, the module electrical connection pin (2) may be an extension portion on the socket base or a portion of the extension portion of the socket incoming line patch that penetrates through the electrical connection hole (103) and is exposed to the outside of the module body (1). And the module electric connecting pin (2) is provided with a module mounting hole (203) formed by a through hole.
Example 2
As shown in fig. 4 and 5, a receptacle module of this embodiment has substantially the same structure as the receptacle module of embodiment 1, except that: the module comprises a module upper shell (101), wherein sheet structures (1011) protruding out of the side wall of the upper shell of the socket module are arranged on two opposite sides of the module upper shell (101), partition structures (1012) formed by raised column structures are arranged at the middle positions of the bottoms of the corresponding sheet structures (1011), and module mounting holes (203) formed by through holes penetrating through the bottoms of the partition structures (1012) and the tops of the sheet structures (1011) are formed in the partition structures (1012).
The electric connection hole (103) is positioned on one side of the partition structure (1012), or the electric connection holes (103) are arranged on both sides of the partition structure (1012); the corresponding module electric connecting pins (2) respectively penetrate through the corresponding electric connecting holes (103) and are exposed below the sheet-shaped structure (1011), so that the conducting strips (4) in the socket box are electrically connected through contact.
In the embodiment, the module electrical connection pin (2) is of a spring plate structure, when a screw penetrates through the module mounting hole (203) and is fixed with the socket box, the sheet structure (1011) extrudes the module electrical connection pin (2) to enable the module electrical connection pin to be electrically connected with a corresponding conducting strip in the socket through contact, and then the socket module is connected into a circuit.
Example 3
As shown in fig. 6 to 9, the socket case of the present embodiment includes a socket case upper shell, a socket case lower shell (3), a conductive sheet (4), and a conductive sheet support structure (5). The socket box upper shell and the socket box lower shell (3) are detachably and fixedly connected, and the conducting strip (4) and the conducting strip supporting structure (5) are structurally and fixedly arranged in the socket box lower shell (3). The conducting plate (4) and the conducting plate supporting structure (5) are fixedly connected with each other through clamping; the conducting strip supporting structure (5) can form an integral structure or be detachably connected with the lower socket box shell (3). The conducting plate (4) is provided with conducting plate pins (401) which are adaptive to the positions of the module electric connecting pins (2) on the corresponding socket module; through holes are formed in the conducting plate pins (401); correspondingly, the conducting strip supporting structure (5) is provided with a threaded hole or a through hole at a position corresponding to the through hole of the conducting strip (4). The conducting strips comprise a zero line conducting strip (402) and a live wire conducting strip (403) which are of mirror image structures with each other; and the zero line conducting strip (402) and the live wire conducting strip (403) are respectively and electrically connected with the wiring terminal through a switch or directly connected with the wiring terminal.
In this embodiment, the conductive plate (4) may further include a ground conductive plate, and the ground conductive plate is directly electrically connected to the connection terminal.
The socket box of this embodiment can be used in combination with the socket module described in embodiment 1. The installation method comprises the following steps: screws sequentially penetrate through the socket box lower shell (3), the conducting strip supporting structure (5), the conducting strip pins (401) and the module electric connecting pins (2) to be connected to the socket box upper shell, so that the fixing of the socket upper shell and the socket lower shell and internal components is realized, namely, the socket module mainly clamps the socket module through the socket box upper shell and the socket box lower shell to realize the fixing of all components; or the socket module sequentially penetrates through the module electric connecting pin (2), the conducting plate pin (401) and the conducting plate supporting structure (5) to be connected with the socket box lower shell (3) through screws, so that the socket module is fixed. After the socket module is fixed, the module electric connecting pins (2) are directly extruded through screws or the upper shell of the socket box to be in contact with corresponding conducting strip pins (401) to realize electric connection, so that the socket module is connected into a circuit.
Example 4
As shown in fig. 10 to 13, a socket box of the present embodiment has substantially the same structure as the socket box of embodiment 3, except that: a groove (501) is formed in the conducting strip supporting structure (5), and a through hole or a threaded hole is formed in the middle of the groove; correspondingly, the conducting strip pins (401) are respectively arranged at the positions where the grooves (501) are matched with the module electric connecting pins (2) on the socket module.
The socket box of this embodiment can be used in combination with the socket module described in embodiment 2. The installation method comprises the following steps: screws sequentially penetrate through the lower socket box shell (3), the conducting strip supporting structure (5) and the sheet structure (1011) to be connected to the upper socket box shell, so that the upper and lower socket shells and internal components are fixed, namely, the socket module mainly clamps the socket module through the upper socket box shell and the lower socket box shell to fix all components; or the socket module sequentially penetrates through the sheet structure (1011) and the conducting strip supporting structure (5) to be connected with the lower socket box shell (3) through screws, so that the socket module is fixed. After the socket module is fixed, the partition structure (1012) is positioned in the groove (501), so that the safety in the screw installation process is improved; at the moment, the module electric connecting pins (2) are directly extruded through the sheet-shaped structures (1011) to be contacted with the corresponding conductive sheet pins (401) so as to realize electric connection, so that the socket module is connected into a circuit.
The shapes of the socket box upper shell, the socket box lower shell, the conducting sheet and the conducting sheet supporting structure in the socket box are suitable for the specified structure of the present invention, and the rest structures and the installation mode among the rest structures can refer to 'a socket box' with Chinese patent publication No. CN209001226U for easy understanding.

Claims (9)

1. A socket comprising a socket module and a socket case, wherein: the socket module comprises a module body (1) and module electrical connection pins (2); the socket module is provided with a module mounting hole (203) for fixing the socket module; the module body comprises an upper module shell and a lower module shell (102); one end of the module electric connecting pin (2) is electrically connected with the internal circuit of the socket, and the other end of the module electric connecting pin penetrates through the side wall of the module body and is exposed on two sides of the module body; the socket box comprises a socket box upper shell, a socket box lower shell (3), a conducting strip (4) and a conducting strip supporting structure (5); the upper socket box shell is detachably and fixedly connected with the lower socket box shell (3), and the conducting strip (4) and the conducting strip supporting structure (5) are fixedly arranged in the lower socket box shell (3); the conducting plate (4) and the conducting plate supporting structure (5) are fixedly connected with each other through clamping; the conducting strip supporting structure (5) is detachably connected with the lower socket box shell (3) or forms an integral structure; one end of the conducting strip is connected with the wiring terminal or connected with the wiring terminal through a switch; the conducting plate (4) is provided with conducting plate pins (401) which are matched with the positions of the module electric connecting pins (2) on the corresponding socket module, and the conducting plate pins (401) are positioned above the conducting plate supporting structure (5); after the socket module is inserted into the socket box, the module electric connecting pin (2) on the socket module is electrically connected with the conducting strip pin (401) through contact, so that the socket can be normally used.
2. A socket according to claim 1, wherein: an electric connecting hole (103) is formed in the matching part of the module upper shell (101) and the module lower shell (102); one end of the module electric connecting pin (2) penetrates through the electric connecting hole (103) and is exposed at two sides of the module body.
3. A socket according to claim 2, wherein: the electrical connection hole (103) is located in the middle of the module body, and the module mounting hole (203) is a through hole formed in the module electrical connection pin (2).
4. A socket according to claim 2, wherein: the two opposite sides of the module upper shell (101) are respectively provided with a sheet structure (1011) protruding out of the side wall of the socket module upper shell, the middle position of the bottom of the corresponding sheet structure (1011) is respectively provided with a partition structure (1012) formed by a raised column structure, and the module mounting hole (203) is a through hole which is arranged on the partition structure (1012) and penetrates through the bottom of the partition structure (1012) and the top of the sheet structure (1011); the electric connection hole (103) is positioned on one side of the partition structure (1012), or the electric connection holes (103) are arranged on both sides of the partition structure (1012); the corresponding module electric connecting pins (2) respectively penetrate through the corresponding electric connecting holes (103) and are exposed below the sheet-shaped structure (1011), so that the conducting strips (4) in the socket box are electrically connected through contact.
5. A socket according to claim 3, wherein: through holes are formed in the conducting strip pins (401), and the positions of the through holes are matched with the positions of the module mounting holes (203) in the socket module.
6. A socket according to claim 4, wherein: a groove (501) for accommodating the partition structure (1012) is formed in the position, corresponding to the partition structure (1012), of the conducting strip supporting structure (5); correspondingly, the conducting strip pins (401) are positioned at the corresponding positions of the two sides of the groove (501) and the module electric connecting pins (2).
7. A socket according to claim 1, wherein: the conducting strips (4) comprise a neutral conducting strip (402) and a live conducting strip (403); and the zero line conducting strip (402) and the live wire conducting strip (403) are electrically connected with the wiring terminal through a switch or directly electrically connected with the wiring terminal.
8. A socket according to claim 2, wherein: the conducting strip (4) also comprises a ground wire conducting strip which is arranged at the middle position of the bottom side of the socket box and is directly and electrically connected with the wiring terminal.
9. A socket according to claim 1, wherein: the socket further comprises a screw; the screws sequentially penetrate through the socket box lower shell (3), the conducting strip supporting structure (5) and the module mounting holes (203) to be connected to the socket box upper shell, or the screws sequentially penetrate through the module mounting holes (203) and the conducting strip supporting structure (5) to be connected to the socket box lower shell (3), so that the fixing of each component in the socket is realized.
CN201921046115.9U 2019-03-18 2019-07-05 Socket Expired - Fee Related CN210052887U (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN2019203341398 2019-03-18
CN201920334139 2019-03-18

Publications (1)

Publication Number Publication Date
CN210052887U true CN210052887U (en) 2020-02-11

Family

ID=69398459

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921046115.9U Expired - Fee Related CN210052887U (en) 2019-03-18 2019-07-05 Socket

Country Status (1)

Country Link
CN (1) CN210052887U (en)

Similar Documents

Publication Publication Date Title
CN100595978C (en) Push-in wire connector
CN110190478B (en) Slide rail type socket convenient to connect
CN201054388Y (en) Cable connector assembly
CN101562282A (en) Electric connector
WO2010131912A2 (en) Printed circuit board surface-mounting connector and a multilayer circuit board coupling structure comprising the same
CN110071386A (en) Electric connector
CN2850015Y (en) Multi-plate type structure socket connector
CN210052887U (en) Socket
CN210294355U (en) Electric energy meter and electric energy meter case
CN111817239B (en) Plug-in box
CN111509464B (en) A small-size split formula wiring terminal for cloud computing data transmission
CN209844143U (en) Wall socket
CN111585121B (en) Power socket branching structure
CN219513481U (en) Modularized multi-position conversion device and socket
CN213460377U (en) Combined terminal block and terminal base thereof
CN218241737U (en) Wiring terminal of circuit breaker
CN213755282U (en) Wiring frame positioning structure of overvoltage and undervoltage protector
CN218415129U (en) Ultra-thin extension socket
CN220122159U (en) Connector and lamp assembly using same
CN218828146U (en) Conveniently-assembled double-socket terminal wire
CN220189923U (en) Novel laminated busbar
CN219144544U (en) Row inserts convenient to production
CN218997125U (en) Flip type wiring terminal and power distribution system
JPH0531833Y2 (en)
CN218447742U (en) Plug-in base of molded case circuit breaker

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20200211

Termination date: 20200705