CN211530288U - Building block type interference-free multi-position power module socket - Google Patents

Building block type interference-free multi-position power module socket Download PDF

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Publication number
CN211530288U
CN211530288U CN202020610809.7U CN202020610809U CN211530288U CN 211530288 U CN211530288 U CN 211530288U CN 202020610809 U CN202020610809 U CN 202020610809U CN 211530288 U CN211530288 U CN 211530288U
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group
wire connecting
piece
socket
live wire
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CN202020610809.7U
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Chinese (zh)
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王陕平
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Individual
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Individual
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Abstract

The utility model provides a cordwood system interference-free multi-position power module socket, which comprises a socket module and a connecting piece, wherein the connecting piece is arranged below the socket module, and the socket module comprises a module shell and a plurality of conductive contact pieces arranged in the module shell; the utility model discloses a modularized socket is adopted in the design, strong adaptability, convenient adjustment can pull down back counter-clockwise turning 90 with the socket and install again on inserting the row to this can carry out the dislocation use to the socket hole on the socket, has avoided because of not different emergence conflicts, the phenomenon of interference with electrical apparatus power plug, makes the socket hole on the row is inserted to the power can obtain abundant use, has also improved the availability factor that the row was inserted to the power.

Description

Building block type interference-free multi-position power module socket
Technical Field
The utility model relates to a socket field specifically is an interference many power module sockets are exempted from to cordwood system.
Background
The socket holes on the existing multi-position power strip are fixed, and in actual use, due to different specifications of power plugs of various electrical equipment, such as chargers of various low-voltage electrical appliances such as notebooks, mobile phones, routers, set top boxes, switches and the like, the sizes of the various low-voltage electrical appliances are different, when a plurality of equipment are used together, adjacent socket holes are extremely easy to cause conflict and interference due to narrow distance, so that the socket holes on the power strip cannot be fully used, and the use efficiency of the power strip is reduced.
SUMMERY OF THE UTILITY MODEL
The technique that exists is not enough to the aforesaid, the utility model aims at providing a many power module sockets of interference are exempted from to cordwood system, and it is with socket modularization, can pull down back rotation angle with the socket and install again for socket hole on the socket can carry out the dislocation use, has solved adjacent socket hole site and has easily caused the conflict and interfere, and the socket hole on the power strip can't obtain abundant problem of using.
In order to solve the technical problem, the utility model adopts the following technical scheme:
a building block type interference-free multi-position power module socket comprises a socket module and a connecting piece, wherein the connecting piece is arranged below the socket module, the socket module comprises a module shell and a plurality of conductive contact pieces arranged in the module shell, the conductive contact pieces comprise a first live wire contact piece, a first zero wire contact piece, a second live wire contact piece, a second zero wire contact piece and a ground wire contact piece, the first live wire contact piece is electrically connected with the second live wire contact piece, the first zero wire contact piece is electrically connected with the second zero wire contact piece, a live wire connecting insertion piece is arranged on the first live wire contact piece, an A group live wire connecting clamping block and a B group live wire connecting clamping block are further arranged on the live wire connecting insertion piece, a zero wire connecting insertion piece is arranged on the second zero wire contact piece, an A group zero wire connecting clamping block and a B group zero wire connecting clamping block are arranged on the zero wire connecting insertion piece, and a ground wire connecting insertion piece is arranged on the ground wire contact piece, the ground wire connecting insert is provided with an A group ground wire connecting clamp splice and a B group ground wire connecting clamp splice, the connecting piece comprises a live wire connecting piece, a ground wire connecting piece and a zero line connecting piece which are sequentially arranged in parallel, the live wire connecting piece is respectively provided with an A group live wire clamping groove and a B group live wire clamping groove which correspond to the A group live wire connecting clamp splice and the B group live wire connecting clamp splice, the zero line connecting piece is respectively provided with an A group zero line connecting clamp splice and a B group zero line clamping groove which correspond to the B group zero line connecting clamp splice, and the ground wire connecting piece is provided with a ground wire clamping groove which is matched with the A group ground wire connecting clamp splice and the B group ground wire connecting clamp splice.
Preferably, the top end of the module housing is provided with socket holes corresponding to the conductive contacts.
Preferably, the clamping block is connected to the live wire of A group the live wire of B group connect the clamping block with the inserted sheet is connected to the live wire and is the integrated into one piece structure, the clamping block is connected to the ground wire of A group the clamping block is connected to the ground wire of B group with the inserted sheet is connected to the ground wire and is the integrated into one piece structure, the clamping block is connected to the zero line of A group the clamping block is connected to the zero line of B group with the inserted sheet is connected to the zero line and is the integrated into one piece structure.
The beneficial effects of the utility model reside in that: modularized socket is adopted in this design, strong adaptability, convenient adjustment can pull down the socket after 90 remounting of anticlockwise rotation on inserting the row to this can carry out the dislocation use to the socket hole on the socket, has avoided because of not coinciding the phenomenon that takes place conflict, interference with electrical apparatus power plug, makes the socket hole on the power row of inserting can obtain abundant use, has also improved the availability factor that the row was inserted to the power.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a schematic structural diagram of a modular interference-free multi-position power module socket according to an embodiment of the present invention;
FIG. 2 is a schematic structural view of a cordwood interference-free multi-position power module socket rotated 90 degrees counterclockwise according to an embodiment of the present invention;
FIG. 3 is a schematic structural diagram of a modular interference-free multi-position power module socket according to an embodiment of the present invention;
fig. 4 is a schematic top view of a modular interference-free multi-position power module socket according to an embodiment of the present invention.
Description of reference numerals:
1-module housing, 2-fire wire connecting piece, 3-ground wire connecting piece, 4-zero wire connecting piece, 5-group zero wire connecting clamping block, 6-group zero wire connecting clamping block, 7-group fire wire connecting clamping block, 8-group zero wire clamping groove, 9-group zero wire clamping groove, 10-group fire wire clamping groove, 11-fire wire contact piece, 12-ground wire contact piece, 13-zero wire contact piece, 14-second fire wire contact piece, 15-second zero wire contact piece, 16-fire wire connecting insertion piece, 17-group fire wire connecting clamping block, 18-zero wire connecting insertion piece, 19-group fire wire clamping groove, 20-ground wire clamping groove, 21-group ground wire connecting clamping block, 22-group ground wire connecting clamping block, 23-ground wire connecting insertion piece, 26-jack hole.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
As shown in fig. 1 to 4, a modular interference-free multi-position power module socket comprises a socket module and a connecting piece, wherein the connecting piece is arranged below the socket module, the socket module comprises a module shell 1 and a plurality of conductive contact pieces arranged in the module shell 1, the conductive contact pieces comprise a first live wire contact piece 11, a first zero wire contact piece 13, a second live wire contact piece 14, a second zero wire contact piece 15 and a ground wire contact piece 12, the first live wire contact piece 11 is electrically connected with the second live wire contact piece 14, the first live wire contact piece 11 and the second live wire contact piece 14 can be in a power connection state at the same time, the first zero wire contact piece 13 is electrically connected with the second zero wire contact piece 15, the first zero wire contact piece 13 and the second zero wire contact piece 15 can be in a power connection state at the same time, a live wire connecting insertion piece 16 is arranged on the first live wire contact piece 11, and the first live wire contact piece 11 can be electrically connected with a live wire connecting piece 2, therefore, the first firing line contact piece 11 and the second firing line contact piece 14 can be in a power connection state, the firing line connecting insertion piece 16 is further provided with an A group firing line connecting clamping block 7 and a B group firing line connecting clamping block 17, the second zero line contact piece 15 is provided with a zero line connecting insertion piece 18, the zero line connecting insertion piece 18 is used for connecting the second zero line contact piece 15 and the zero line connecting piece 4, the zero line connecting insertion piece 18 is provided with an A group zero line connecting clamping block 5 and a B group zero line connecting clamping block 6, the ground line contact piece 12 is provided with a ground line connecting insertion piece 23, the ground line connecting insertion piece 23 is provided with an A group ground line connecting clamping block 22 and a B group ground line connecting clamping block 21 and is used for connecting the ground line contact piece 12 and the ground line connecting piece 3, the connecting piece comprises a firing line connecting piece 2, a ground line connecting piece 3 and a zero line connecting piece 4 which are sequentially arranged in parallel, the firing line connecting piece 2, the ground line connecting piece 3 and the zero line connecting piece, the socket module is characterized in that the socket module can be provided with corresponding current, the live wire connecting piece 2 is respectively provided with an A group live wire clamping groove 19 and a B group live wire clamping groove 10 which correspond to the A group live wire connecting clamping block 7 and the B group live wire connecting clamping block 17, before rotation, the A group live wire connecting clamping block 7 and the A group live wire clamping groove 19 are matched with each other to fix and connect the live wire connecting inserting piece 16 and the live wire connecting piece 2, so that the first live wire contact piece 11 is electrified, and the socket module is fixed to prevent the socket module from electric shock caused by inadvertent pulling out in use, after the socket module rotates 90 degrees anticlockwise, the B group live wire connecting clamping block 17 and the B group live wire clamping groove 10 are matched with each other to fix and connect the live wire connecting piece 16 and the live wire connecting piece 2, so that the first live wire contact piece 11 is electrified, and the socket module is fixed to a certain extent, the socket module is prevented from being accidentally pulled out to cause electric shock danger in use, the zero line connecting piece 4 is respectively provided with an A group zero line clamping groove 8 and a B group zero line clamping groove 9 which correspond to the A group zero line connecting clamping block 5 and the B group zero line connecting clamping block 6, the zero line connecting inserting piece 18 and the zero line connecting piece 4 are fixed and connected before rotation through the mutual matching of the A group zero line connecting clamping block 5 and the A group zero line clamping groove 8, so that the second zero line contact piece 15 is electrified, meanwhile, the socket module is also fixed to a certain degree, the socket module is prevented from being inadvertently pulled out to cause electric shock danger in use, the B group zero line connecting block 6 and the B group zero line clamping groove 9 are mutually matched, the zero line connecting piece 4 is also in an electrified state after the socket module rotates 90 degrees anticlockwise, the ground wire connecting piece 3 is provided with a ground wire clamping groove 20 matched with the A group ground wire connecting clamping block 22 and the B group ground wire connecting clamping block 23, the ground wire connecting piece 3 can be in a power-on state before and after rotation, and meanwhile, the socket module is fixed to a certain extent, and the socket module is prevented from being pulled out unintentionally in use to cause electric shock hazard.
Further, the top end of the module housing 1 is provided with socket holes corresponding to the conductive contacts, and the socket holes are used for inserting and connecting a charger.
Further, the group A live wire connecting clamping block 7, the group B live wire connecting clamping block 17 and the live wire connecting insertion sheet 16 are of an integrally formed structure, the group A ground wire connecting clamping block 22, the group B ground wire connecting clamping block 21 and the ground wire connecting insertion sheet 23 are of an integrally formed structure, and the group A zero wire connecting clamping block 5, the group B zero wire connecting clamping block 6 and the zero wire connecting insertion sheet 18 are of an integrally formed structure.
When in use, the live wire connecting sheet 2, the ground wire connecting sheet 3 and the zero line connecting sheet 4 are respectively installed in the socket and connected with corresponding power lines in the socket, the socket module is normally powered on through the mutual matching of the corresponding connecting clamping blocks and the clamping grooves before rotation, when the phenomena of conflict and interference are caused by different power plugs of electric appliances, the socket module is pulled out and is inserted into the connecting sheet again after rotating anticlockwise for 90 degrees, at the moment, the socket module also normally powers on the socket module through the mutual matching of the corresponding connecting clamping blocks and the clamping grooves, and simultaneously plays a certain fixing role on the socket module to prevent the socket module from being unintentionally pulled out to cause electric shock hazard in use, the rotated socket hole 26 and the socket hole 26 on the adjacent socket module can be used in a staggered way, so that the phenomena of conflict and interference cannot occur to the power plugs of the electric appliances, also make the socket hole on the power row of inserting can obtain abundant use, the availability factor of the power row of inserting has also been improved, simultaneously because corresponding A group, B group live wire, the position design of zero line and bottom wire connection clamp splice, when the socket is installed by unexpected clockwise rotation 90 back, A group, B group live wire, the zero line, ground wire double-layered groove and A group, B group live wire, the zero line, the ground wire is connected the clamp splice and is all not in the contact position, so can't install, the effectual zero that has prevented to lead to because of the reverse rotation, the condition that the live wire was connect conversely takes place.
The utility model provides a modular socket is adopted in the design, strong adaptability, convenient adjustment can pull down back counter-clockwise turning 90 with the socket and install again on inserting the row to this can carry out the dislocation use to the socket hole on the socket, has avoided because of not different emergence conflicts, the phenomenon of interference with electrical apparatus power plug, makes the socket hole on the row is inserted to the power can obtain abundant use, has also improved the availability factor that the row was inserted to the power.
It will be apparent to those skilled in the art that various changes and modifications may be made without departing from the spirit and scope of the invention. Thus, if such modifications and variations of the present invention fall within the scope of the claims and their equivalents, the present invention is also intended to include such modifications and variations.

Claims (3)

1. A building block type interference-free multi-position power module socket is characterized by comprising a socket module and a connecting piece, wherein the connecting piece is arranged below the socket module, the socket module comprises a module shell and a plurality of conductive contact pieces arranged in the module shell, the conductive contact pieces comprise a first live wire contact piece, a first zero wire contact piece, a second live wire contact piece, a second zero wire contact piece and a ground wire contact piece, the first live wire contact piece is electrically connected with the second live wire contact piece, the first zero wire contact piece is electrically connected with the second zero wire contact piece, a live wire connecting insertion piece is arranged on the first live wire contact piece, an A group live wire connecting clamping block and a B group live wire connecting clamping block are further arranged on the live wire connecting insertion piece, a zero wire connecting insertion piece is arranged on the second zero wire contact piece, an A group zero wire connecting clamping block and a B group zero wire connecting clamping block are arranged on the zero wire connecting insertion piece, the ground wire connecting piece is provided with a ground wire connecting insertion piece, the ground wire connecting insertion piece is provided with an A group ground wire connecting clamping block and a B group ground wire connecting clamping block, the connecting piece comprises a live wire connecting piece, a ground wire connecting piece and a zero line connecting piece which are sequentially arranged in parallel, the live wire connecting piece is respectively provided with an A group live wire clamping groove and a B group live wire clamping groove which correspond to the A group live wire connecting clamping block and the B group live wire connecting clamping block, the zero line connecting piece is respectively provided with an A group zero line connecting clamping block and an A group zero line clamping groove and a B group zero line clamping groove which correspond to the B group zero line connecting clamping block, and the ground wire connecting piece is provided with a ground wire clamping groove which is matched with the A group ground wire connecting clamping block and the B group ground wire connecting clamping block.
2. The modular interference-free multi-position power module socket as claimed in claim 1, wherein the top of the module housing defines socket openings corresponding to the conductive contacts.
3. The modular interference-free multi-position power module socket as claimed in claim 1, wherein the group a live wire connecting clamp block, the group B live wire connecting clamp block and the live wire connecting insert are integrally formed, the group a ground wire connecting clamp block, the group B ground wire connecting clamp block and the ground wire connecting insert are integrally formed, and the group a neutral wire connecting clamp block, the group B neutral wire connecting clamp block and the neutral wire connecting insert are integrally formed.
CN202020610809.7U 2020-04-21 2020-04-21 Building block type interference-free multi-position power module socket Active CN211530288U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020610809.7U CN211530288U (en) 2020-04-21 2020-04-21 Building block type interference-free multi-position power module socket

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020610809.7U CN211530288U (en) 2020-04-21 2020-04-21 Building block type interference-free multi-position power module socket

Publications (1)

Publication Number Publication Date
CN211530288U true CN211530288U (en) 2020-09-18

Family

ID=72461043

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020610809.7U Active CN211530288U (en) 2020-04-21 2020-04-21 Building block type interference-free multi-position power module socket

Country Status (1)

Country Link
CN (1) CN211530288U (en)

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