CN212968393U - Power socket and switch linkage structure - Google Patents

Power socket and switch linkage structure Download PDF

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Publication number
CN212968393U
CN212968393U CN202021840767.2U CN202021840767U CN212968393U CN 212968393 U CN212968393 U CN 212968393U CN 202021840767 U CN202021840767 U CN 202021840767U CN 212968393 U CN212968393 U CN 212968393U
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China
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contact pin
conductive contact
socket
output conductive
input
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CN202021840767.2U
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Chinese (zh)
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翁晟皓
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Individual
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Individual
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Abstract

The utility model relates to a supply socket and switch linkage structure. Wherein: the power socket comprises a socket shell and a first input conductive contact pin, a second input conductive contact pin, a first output conductive contact pin and a second output conductive contact pin, wherein the first output conductive contact pin and the second output conductive contact pin are arranged in the socket shell; the switch linkage structure comprises main equipment, auxiliary equipment matched with the main equipment, a switch and the power socket. The utility model discloses can make and realize the linkage between main equipment and the external auxiliary assembly and open and close, make things convenient for user's operation to use etc. greatly.

Description

Power socket and switch linkage structure
Technical Field
The utility model relates to an electrical equipment field, concretely relates to supply socket and switch linkage structure.
Background
In daily production and life, many electrical equipment need to be externally connected with auxiliary equipment. This results in the need for individual switching control of the devices connected together during use. Not only is the operation very inconvenient, but also the situation that the main equipment is turned off and the auxiliary equipment is forgotten to be turned off is easy to happen even in some cases, so that the waste of electric energy is caused.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome above-mentioned prior art not enough, provide one kind and can make realize the linkage between main equipment and the external auxiliary assembly and open and the supply socket and the switch linkage structure who closes.
The purpose of the utility model is realized through the following technical scheme:
a power socket comprises a socket shell, a first input conductive contact pin, a second input conductive contact pin, a first output conductive contact pin and a second output conductive contact pin, wherein the first output conductive contact pin and the second output conductive contact pin are arranged in the socket shell, the first output conductive contact pin and the second output conductive contact pin are not in contact with each other, the socket shell is provided with a first power-taking socket and a second power-taking socket corresponding to the first output conductive contact pin and the second output conductive contact pin respectively, one end of the first input conductive contact pin is inserted in the socket shell and is in contact with the first output conductive contact pin, the other end of the first input conductive contact pin is exposed out of the socket shell, one end of the second input conductive contact pin is inserted in the socket shell and is in contact with the first input conductive contact pin, the first output conductive contact pin and the second output conductive contact pin, The second output conductive contact pins are not in contact, and the other ends of the second input conductive contact pins are exposed out of the socket shell.
Furthermore, the inserting end of the second input conductive contact pin, the first output conductive contact pin and the second output conductive contact pin are respectively provided with a first wiring portion, a second wiring portion and a third wiring portion, one side of the outer portion of the socket shell is provided with a wire fixing portion, and the first wiring portion, the second wiring portion and the third wiring portion all extend into the wire fixing portion.
Furthermore, the socket housing includes an insulating outer shell, an insulating inner shell, and an insulating fixing plate, the insulating inner shell includes an inner shell upper section and an inner shell lower section, the first input conductive contact pin and the second input conductive contact pin are fixed on a lower side of the insulating fixing plate, the first output conductive contact pin and the second output conductive contact pin are fixed on an upper side of the insulating fixing plate, a lower end of the inner shell upper section is sleeved on an upper portion of the insulating fixing plate, an upper end of the inner shell lower section is sleeved on a lower portion of the insulating fixing plate and is in butt joint with a lower end of the inner shell upper section, and the insulating outer shell is sleeved on the inner shell upper section and the inner shell lower section.
Further, it all sets up to get electric socket and second first get the top of electric socket upper segment, insulating casing's top surface is equipped with and is used for supplying first get the first opening that electric socket and second got electric socket and expose, insulating casing's bottom surface is equipped with and is used for supplying first input electrically conducts the contact foot and the second input electrically conducts the exposed second opening of contact foot, solidus portion sets up insulating casing's surface one side.
Furthermore, a first screw fixing hole is formed in the center of the lower section of the inner shell, a second screw fixing hole is formed in the center of the insulating fixing plate, a third screw fixing hole is formed in the center of the upper section of the inner shell, and the first screw fixing hole, the second screw fixing hole and the third screw fixing hole are connected through screws, so that the lower section of the inner shell, the insulating fixing plate and the upper section of the inner shell are fixed together.
Furthermore, the first input conductive contact pin and the second input conductive contact pin are conductive metal sheets of a male plug structure, and the first output conductive contact pin and the second output conductive contact pin are conductive metal sheets of a female plug structure.
The utility model provides a switch linkage structure, includes the main equipment, with supporting auxiliary assembly of main equipment, switch and supply socket, supply socket is as above supply socket, the second input electrically conducts touch the foot pass through the wire with switch one end electricity is connected, the second output electrically conducts touch the foot and a power input end of main equipment all pass through the wire with the switch other end electricity is connected, the first output electrically conducts touch the foot pass through the wire with another power input end electricity of main equipment is connected, auxiliary assembly with first output electrically conducts touch foot and second output electrically conducts touch the foot electricity and is connected.
Further, the switch is disposed on the master device.
Further, when one auxiliary device is provided, the auxiliary device is electrically connected with the first output conductive contact pin and the second output conductive contact pin through a two-pin power plug.
Further, when the number of the auxiliary devices is two or more, the two or more auxiliary devices are electrically connected with the first output conductive contact pin and the second output conductive contact pin through a multi-socket with a two-pin power plug.
Compared with the prior art, the utility model discloses following beneficial effect has:
this use novel supply socket and switch linkage structure that provides can make and realize the linkage between main equipment and the external auxiliary assembly and open and close to can improve the convenience that the operation was used on the one hand, on the other hand can avoid appearing that main equipment has turned off and auxiliary assembly but forgets the situation of turning off, avoids causing the electric energy extravagant then, has simple and convenient practicality, uses advantages such as extensive.
Drawings
Fig. 1 is a schematic perspective view of a power socket of the present invention.
Fig. 2 is an exploded view of the power socket of the present invention.
Fig. 3 is an exploded view of the power socket of the present invention.
Fig. 4 is a schematic structural view of the present invention in which each conductive contact pin is fixed on the insulating fixing plate.
Fig. 5 is a schematic circuit connection diagram of a switch linkage structure according to the present invention.
Fig. 6 is a schematic view of an application of the switch linkage structure of the present invention.
Fig. 7 is a schematic diagram of an application of the switch linkage structure of the present invention.
Fig. 8 is a third schematic view of an application of the switch linkage structure of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the following embodiments shown in the drawings.
As shown in fig. 1, fig. 2, fig. 3 and fig. 4, the power socket provided in this embodiment includes a socket housing 1, and a first input conductive contact pin 2, a second input conductive contact pin 3, a first output conductive contact pin 4 and a second output conductive contact pin 5, where the first output conductive contact pin 4 and the second output conductive contact pin 5 are both disposed in the socket housing 1, and the first output conductive contact pin 4 and the second output conductive contact pin 5 are not in contact with each other, a first power-taking socket 40 and a second power-taking socket 50 are respectively disposed on the socket housing 1 corresponding to the first output conductive contact pin 4 and the second output conductive contact pin 5, one end of the first input conductive contact pin 2 is inserted in the socket housing 1 and is in contact with the first output conductive contact pin 4, the other end of the first input conductive contact pin 2 is exposed out of the socket housing 1, one end of the second input conductive contact pin 3 is inserted in the socket housing 1 and is in contact with the first input conductive contact pin 2, the second input conductive contact pin 2, The first output conductive contact pin 4 and the second output conductive contact pin 5 are not in contact, and the other end of the second input conductive contact pin 3 is exposed out of the socket shell 1.
For convenient wiring, the inserting end of the second input conductive contact pin 3, the first output conductive contact pin 4 and the second output conductive contact pin 5 are respectively provided with a first wiring portion 31, a second wiring portion 41 and a third wiring portion 51, one side of the exterior of the socket housing 1 is provided with a wiring fixing portion 6, and the first wiring portion 31, the second wiring portion 41 and the third wiring portion 51 all extend into the wiring fixing portion 6.
In this embodiment, the socket housing 1 includes an insulating outer shell 11, an insulating inner shell 12 and an insulating fixing plate 13, the insulating inner shell 12 includes an inner shell upper section 121 and an inner shell lower section 122, the first input conductive contact pin 2 and the second input conductive contact pin 3 are fixed on the lower side of the insulating fixing plate 13, the first output conductive contact pin 4 and the second output conductive contact pin 5 are fixed on the upper side of the insulating fixing plate 13, the lower end of the inner shell upper section 121 is sleeved on the upper portion of the insulating fixing plate 13, the upper end of the inner shell lower section 122 is sleeved on the lower portion of the insulating fixing plate 13 and is abutted to the lower end of the inner shell upper section 121, the insulating outer shell 11 is sleeved on the inner shell upper section 121 and the inner shell lower section 122, and the insulating outer shell 11 is fixedly connected to the inner.
Further, the first power-taking socket 40 and the second power-taking socket 50 are both arranged at the top end of the inner shell upper section 121, the top surface of the insulating shell 11 is provided with a first opening 111 for exposing the first power-taking socket 40 and the second power-taking socket 50, the bottom surface of the insulating shell 11 is provided with a second opening 112 for exposing the first input conductive contact pin 2 and the second input conductive contact pin 3, and the wire fixing part 6 is arranged on one side of the outer surface of the insulating shell 11.
Furthermore, a first screw fixing hole 1221 is formed in the center of the lower section 122 of the inner casing, a second screw fixing hole 131 is formed in the center of the insulating fixing plate 13, a third screw fixing hole 1211 is formed in the center of the upper section 121 of the inner casing, and the first screw fixing hole 1221, the second screw fixing hole 131 and the third screw fixing hole 1211 are connected by screws, so that the lower section 122 of the inner casing, the insulating fixing plate 13 and the upper section 121 of the inner casing are fixed together.
In this embodiment, the first input conductive contact pin 2 and the second input conductive contact pin 3 are conductive metal sheets of a male plug structure, and the first output conductive contact pin 4 and the second output conductive contact pin 5 are conductive metal sheets of a female plug structure.
As described above, the power socket provided in this embodiment can be used for switch linkage between two or more electrical devices, and in particular, as described below.
As shown in fig. 5, the switch linkage structure provided in this embodiment includes a main device 7, an auxiliary device 8 matched with the main device 7, a switch 9 disposed on the main device 7, and a power socket 10 as described above, wherein the second input conductive contact pin 3 is electrically connected to one end of the switch 9 through a wire, the second output conductive contact pin 5 and one power input end of the main device 7 are both electrically connected to the other end of the switch 9 through a wire, the first output conductive contact pin 4 is electrically connected to the other power input end of the main device 7 through a wire, and the auxiliary device 8 is electrically connected to the first output conductive contact pin 4 and the second output conductive contact pin 5. During the use, electrically conductive contact pin 2 of first input and electrically conductive contact pin 3 of second input are pegged graft on power supply 20, then, can realize the switch linkage between main equipment 7 and auxiliary assembly 8 through controlling of switch 9, specifically speaking, when switch 9 is closed, main equipment 7 and auxiliary assembly 8 all switch on the power and are in the on-state, and when switch 9 disconnection, main equipment 7 and auxiliary assembly 8 all break off the power and are in the off-state to need not to carry out the independent control to main equipment and auxiliary assembly like among the prior art, then made things convenient for user's operation to use greatly.
As shown in fig. 6 and 7, when one auxiliary device 8 is provided, the auxiliary device 8 is electrically connected to the first output conductive contact pin 4 and the second output conductive contact pin 5 through a two-pin power plug 80. Specifically, one end of the two-pin power plug 80 is connected to the auxiliary device, and the other end of the two-pin power plug is inserted into the power socket 10 from the first power socket 40 and the second power socket 50 through two pins to contact the first output conductive contact pin 4 and the second output conductive contact pin 5, so that the single auxiliary device 8 is electrically connected to the first output conductive contact pin 4 and the second output conductive contact pin 5. As shown, the main apparatus 7 and the auxiliary apparatus 8 in the present embodiment are exemplified by a slotter and a blower/suction pump associated with the slotter, respectively.
As shown in fig. 8, when two or more auxiliary devices 8 are provided, the two or more auxiliary devices 8 are electrically connected to the first output conductive contact pin 4 and the second output conductive contact pin 5 through a multi-socket 82 having a two-pin power plug 81. Specifically, the two or more auxiliary devices 8 are first plugged into the multi-plug socket 82 with the dual-plug power plug 81, and then the two plugs of the dual-plug power plug 81 are plugged into the power socket 10 from the first power-taking socket 40 and the second power-taking socket 50 to contact with the first output conductive contact pin 4 and the second output conductive contact pin 5, so that the two or more auxiliary devices 8 are electrically connected with the first output conductive contact pin 4 and the second output conductive contact pin 5. As shown in the drawing, the main apparatus 7 in the present embodiment is exemplified by a slotter, and the auxiliary apparatus 8 is exemplified by a blower 8a and a suction pump 8b which are associated with the slotter.
The above mentioned embodiments are only preferred embodiments of the present invention, and the scope of the present invention can not be limited thereby, and all the simple equivalent changes and modifications made according to the claims and the description of the present invention are still included in the scope of the present invention.

Claims (10)

1. An electrical outlet, comprising: the socket comprises a socket shell, a first input conductive contact pin, a second input conductive contact pin, a first output conductive contact pin and a second output conductive contact pin, wherein the first output conductive contact pin and the second output conductive contact pin are arranged in the socket shell and are not in contact with each other, a first power taking socket and a second power taking socket are respectively arranged at the positions, corresponding to the first output conductive contact pin and the second output conductive contact pin, on the socket shell, one end of the first input conductive contact pin is inserted in the socket shell and is in contact with the first output conductive contact pin, the other end of the first input conductive contact pin is exposed out of the socket shell, one end of the second input conductive contact pin is inserted in the socket shell and is not in contact with the first input conductive contact pin, the first output conductive contact pin and the second output conductive contact pin, the other end of the second input conductive contact pin is exposed out of the socket shell.
2. An electrical outlet according to claim 1, wherein: the socket is characterized in that a first wiring portion, a second wiring portion and a third wiring portion are respectively arranged on the inserting end of the second input conductive contact pin, the first output conductive contact pin and the second output conductive contact pin, a wire fixing portion is arranged on one side of the outer portion of the socket shell, and the first wiring portion, the second wiring portion and the third wiring portion all stretch into the wire fixing portion.
3. An electrical outlet according to claim 2, wherein: the socket shell comprises an insulating outer shell, an insulating inner shell and an insulating fixing plate, wherein the insulating inner shell comprises an inner shell upper section and an inner shell lower section, a first input conductive contact pin and a second input conductive contact pin are fixed on the lower side of the insulating fixing plate, a first output conductive contact pin and a second output conductive contact pin are fixed on the upper side of the insulating fixing plate, the lower end of the inner shell upper section is sleeved on the upper portion of the insulating fixing plate, the upper end of the inner shell lower section is sleeved on the lower portion of the insulating fixing plate and is in butt joint with the lower end of the inner shell upper section, and the insulating outer shell is sleeved on the inner shell upper section and the inner shell lower section.
4. An electrical outlet according to claim 3, wherein: the utility model discloses an insulating casing, including inner shell upper segment, first get electric socket and second get electric socket and be equipped with the first opening that is used for supplying first get electric socket and second get electric socket and expose, insulating casing's bottom surface is equipped with and is used for supplying first input electrically conductive contact pin and the second input electrically conductive contact pin second opening that exposes, solidus portion sets up insulating casing's surface one side.
5. An electrical outlet according to claim 3, wherein: the center of the lower section of the inner shell is provided with a first screw fixing hole, the center of the insulating fixing plate is provided with a second screw fixing hole, the center of the upper section of the inner shell is provided with a third screw fixing hole, and the first screw fixing hole, the second screw fixing hole and the third screw fixing hole are connected through screws so as to fix the lower section of the inner shell, the insulating fixing plate and the upper section of the inner shell together.
6. An electrical outlet according to claim 1, 2 or 3, wherein: the first input conductive contact pin and the second input conductive contact pin are conductive metal sheets of a male plug structure, and the first output conductive contact pin and the second output conductive contact pin are conductive metal sheets of a female plug structure.
7. The utility model provides a switch linkage structure, includes main equipment, auxiliary assembly, switch and supply socket supporting with main equipment, its characterized in that: the power socket is as claimed in any one of claims 1 to 6, the second input conductive contact pin is electrically connected to one end of the switch through a wire, the second output conductive contact pin and one power input end of the main device are both electrically connected to the other end of the switch through a wire, the first output conductive contact pin is electrically connected to the other power input end of the main device through a wire, and the auxiliary device is electrically connected to the first output conductive contact pin and the second output conductive contact pin.
8. A switch linkage according to claim 7, wherein: the switch is disposed on the master device.
9. A switch linkage according to claim 7 or 8, wherein: when the auxiliary device is one, the auxiliary device is electrically connected with the first output conductive contact pin and the second output conductive contact pin through a two-pin power plug.
10. A switch linkage according to claim 7 or 8, wherein: when the number of the auxiliary devices is two or more, the two or more auxiliary devices are electrically connected with the first output conductive contact pin and the second output conductive contact pin through a multi-plug socket with a double-pin power plug.
CN202021840767.2U 2020-08-28 2020-08-28 Power socket and switch linkage structure Active CN212968393U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021840767.2U CN212968393U (en) 2020-08-28 2020-08-28 Power socket and switch linkage structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021840767.2U CN212968393U (en) 2020-08-28 2020-08-28 Power socket and switch linkage structure

Publications (1)

Publication Number Publication Date
CN212968393U true CN212968393U (en) 2021-04-13

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021840767.2U Active CN212968393U (en) 2020-08-28 2020-08-28 Power socket and switch linkage structure

Country Status (1)

Country Link
CN (1) CN212968393U (en)

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