The present application relates to the technical field of socket structure, and more particularly to a pass-through plug.
The American standard plugs are generally active, which means that they always provide power to the contacts in the electrical socket. Therefore, children and even some elderly people are prone to electric shock when a conductive object is inserted into the socket hole of the plug. The conductive objects may include knives, paper clips, screwdrivers, or similar objects that a person can insert into the socket holes. Most existing sockets do not provide such a device for reducing the potential risk of a person accidentally inserting a conductive object into the socket holes.
An object of the present application is to provide a pass-through plug, to provide an additional socket once the pass-through plug is plugged into a socket, and can also reduce the potential risk of people accidentally inserting conductive objects into the socket holes.
In the present application, a pass-through plug is provided, which includes: a first housing including a plurality of sockets; a second housing, configured to be connected with the first housing; and a tamper resistant assembly, trapped between the first housing and the second housing and configured to selectively block the plurality of sockets when the plurality of sockets are not simultaneously operated. With the first housing and the second housing are connected through a one-time snap feature, such that the manufacturing assembly process of the plug is more convenient, and the tamper resistant assembly is trapped between the first housing and the second housing.
In an embodiment of the present application, the first housing includes a plate portion, the second housing includes a frame portion with an end providing an opening, and the plate portion closing the opening when the first housing is connected with the second housing.
In an embodiment of the present application, the plate portion is configured for the plurality of sockets to pass through, and comprises a first surface and a second surface opposite to the first surface; and the first housing further includes: a first connecting plate extending outwardly perpendicular to the second surface, and an extending end of the first connecting plate is provided with a first engagement portion. The first housing further includes: a second connecting plate, extending outwardly perpendicular to the second surface, and an extending end of the second connecting plate is provided with a second engagement portion. The first engagement portion and the second engagement portion are engaged onto the second housing when the first housing is connected with the second housing.
In an embodiment of the present application, the second housing includes: a frame portion including a first side plate and a second side plate that are perpendicular to each other. The first side plate being provided with a first connection groove configured for connecting the first connecting plate, and the second side plate being provided with a second connection groove configured for connecting the second connecting plate. A bottom of the first connection groove is further provided with a first groove configured for the first engagement portion to be engaged, and a bottom of the second connection groove is further provided with a second groove configured for the second engagement portion to be engaged.
In an embodiment of the present application, the tamper resistant assembly includes: a supporting member, providing with a receiving groove, and a bottom of the receiving groove being provided with at least a first insertion slot and a second insertion slot that are in parallel. the tamper resistant assembly includes a shutter assembly limited into the receiving groove and configured to rotate relative to the receiving groove to block the plurality of sockets, or to slide such that the plurality of sockets communicate with the first insertion slot and the second insertion slot respectively.
In an embodiment of the present application, the shutter assembly includes an upper arch portion and a lower arch portion, a top of the upper arch portion being movably in contact with the plate portion, and a top of the lower arch portion being movably in contact with a bottom of the receiving groove.
In an embodiment of the present application, the upper arch portion is configured to be able to slide at the plate portion when the plurality of sockets are not simultaneously operated, and to rotate relative to the plate portion when the plurality of sockets are simultaneously operated; and the lower arch portion is configured to be able to slide on the bottom of the receiving groove when the plurality of sockets are not simultaneously operated, and to rotate relative to the bottom of the receiving groove when the plurality of sockets are simultaneously operated.
In an embodiment of the present application, the pass-through plug further includes a prong assembly trapped between the tamper resistant assembly and the second housing.
In an embodiment of the present application, the prong assembly includes: a pin part extending out of the second housing; a prong part configured to be abutted against the tamper resistant assembly; and a wiring part, configure to connect cables.
In an embodiment of the present application, the wiring part includes a first connection portion configured to fixedly connect at least one first cable, and second connection portion configured to fixedly connect at least one second cable, wherein the first connection portion and the second connection portion are limited and abutted against at an inner wall of the frame portion when the pin part is extended outside of the second housing.
In an embodiment of the present application, the frame portion includes a third side plate opposite to the opening, and the third side plate being provided with a plurality of slots configured for the pin part to be passed through the second housing, wherein a plurality of flanges corresponding to the plurality of slots are formed along the inner wall of the third side plate and extending perpendicularly to an inside of the frame portion, and the flanges being configured for the wiring part to be correspondingly connected thereon.
In an embodiment of the present application, the flange is formed by extending around outer circumference of the slots, and extending ends of the flanges are further provided with connecting grooves for limiting the wiring part.
In an embodiment of the present application, the prong part includes at least a first prong connection member abutted the first insertion slot and a second prong connection member abutted the second insertion slot, and the first prong connection member and the second prong connection member being configured to in contact with external pins passing through the first insertion slot and the second insertion slot when the plurality of sockets are simultaneously operated.
In an embodiment of the present application, the first prong connection member and the second prong connection member have the same structure; and the first prong connection member includes a first portion having a funnel-shaped and located at a front end; a flat second portion connected with the first portion and configured to in contact with the external pins; and a third portion connected with the second portion and expanded to strengthen the strength of the first prong connection member.
In an embodiment of the present application, the frame portion further includes a fourth side plate provided with a slot configured for the cables to pass through.
In an embodiment of the present application, the frame portion further includes a fourth side plate provided with a sliding groove, and an end of the sliding groove facing the opening, and the other end of the sliding groove forming an arc-shaped end. The plate portion is configured for the plurality of sockets to pass through, and includes a first surface and a second surface opposite to the first surface; the plate portion further includes a third connection plate extended outwardly perpendicular to the second surface, to slidably connect to the sliding groove, and wherein an extending end of the third connection plate is concavely provided with an arc-shaped inner arch, and the inner arch and the arc-shaped end of the sliding groove forming a channel for the cables to pass through.
In an embodiment of the present application, the pass-through plug further includes a protective cover molded outside the first housing and the second housing.
In an embodiment of the present application, the pass-through plug further includes a protective cover molded outside the first housing and the second housing, and an outer surface of the plate portion further provided with a connection step to which the protective cover is able to be attached. The protective cover encases the entire assembly and prevents disassembly or tampering.
In an embodiment of the present application, an outer surface of the second housing further includes a plurality of recesses configured to enhance adhesion strength of the protective cover to the second housing.
In an embodiment of the present application, the protective cover further includes an auxiliary handle configured to facilitate pulling out the pass-through plug.
In the present application, the pass-through plug includes the first housing and the second housing, and the first housing and the second housing are connected, and optionally through a one-time snap feature, such that the assembling process is achieved through a one-time snap feature in place of using screws to fasten the assembly together. In addition, the tamper resistant assembly is fixedly or movably connected between the first housing and the second housing, and the tamper resistant assembly is able to block the plurality of sockets when the plurality of sockets are not simultaneously operated (e g. when one of the sockets is inserted by a metal member), thereby providing a pass-through plug with a simple structure, and the pass-through plug provides an additional socket once the pass-through plug is plugged into a socket and able to avoid accidental touch.
In order to explain the embodiments of the present application more clearly, a brief introduction regarding the accompanying drawings that need to be used for describing the embodiments of the present application or the prior art is given below; it is obvious that the accompanying drawings described as follows are only some embodiments of the present application, for those skilled in the art, other drawings can also be obtained according to the current drawings on the premise of paying no creative labor.
In order to make the purpose, the technical solution and the advantages of the present application be clearer and more understandable, the present application will be further described in detail below with reference to accompanying figures and embodiments. It should be understood that the specific embodiments described herein are merely intended to illustrate but not to limit the present application.
It is noted that when a component is referred to as being “fixed to” or “disposed on” another component, it can be directly or indirectly on another component. When a component is referred to as being “connected to” another component, it can be directly or indirectly connected to another component.
In the description of the present application, it needs to be understood that, directions or location relationships indicated by terms such as “length”, “width”, “up”, “down”, “front”, “rear”, “left”, “right”, “vertical”, “horizontal”, “top”, “bottom”, “inside”, “outside”, and so on are the directions or location relationships shown in the accompanying figures, which are only intended to describe the present application conveniently and simplify the description, but not to indicate or imply that an indicated device or component must have specific locations or be constructed and manipulated according to specific locations; therefore, these terms shouldn't be considered as any limitation to the present application.
In addition, terms “the first” and “the second” are only used in describe purposes, and should not be considered as indicating or implying any relative importance, or impliedly indicating the number of indicated technical features. As such, technical feature(s) restricted by “the first” or “the second” can explicitly or impliedly comprise one or more such technical feature(s). In the description of the present application, “a plurality of” means two or more, unless there is additional explicit and specific limitation.
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Furthermore, when assembling the first housing 10 and the second housing 20, the first connecting plate 13 is moved along the direction of the first connection groove 211, and the second connecting plate 14 is moved along the direction of the second connection groove 221, such that the first engagement portion 131 at the end of the first connecting plate 13 is engaged into the first groove 212, and the second engagement portion 141 at the end of the second connecting plate 14 is engaged into the second groove 222; thereby achieving a fixed connection between the first housing 10 and the second housing 20. such that first housing 10 and the second housing 20 are fixedly connected through a one-time snap feature in place of using screws to fasten the assembly together.
In the present embodiment, the first connection groove 211 may be provided on the inner surface or the outer surface of the first side plate 21. The second connection groove 221 may be provided on the inner surface or the outer surface of the second side plate 22.
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Based on the above-mentioned structural arrangement, the shutter member 32 can be limited in the receiving groove 311, and can rotate relative to the receiving groove 311 to block the plurality of sockets 11 or slide in the receiving groove 311 so that the plurality of sockets 11 and the first insertion slot 314 and the second insertion slot 315 correspondingly communicate with each other.
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The first prong connection member 41a further includes a flat second portion 412 connected to the first portion 411 to contact the external pin. The second portion 412 includes two metal sheets parallel to each other, and there is a gap between the two metal sheets. The gap is used to allow the pins of the external plug to pass between the two metal sheets and maintain close contact with the metal sheets.
The first prong connection member 41a further includes a third portion 413 connected to the second portion 412 and expanded to strengthen the strength of the first prong connection member 41a. The arrangement of the third part 413 can strengthen the strength of the second part 412 so that the second portion 412 is in close contact with the pins of the external plug.
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The aforementioned embodiments are only preferred embodiments of the present application, and should not be regarded as being limitation to the present application. Any modification, equivalent replacement, improvement, and so on, which are made within the spirit and the principle of the present application, should be included in the protection scope of the present application.
Aspect:
Aspect 1, A pass-through plug, comprising:
a first housing, comprising a plurality of sockets;
a second housing, configured to be connected with the first housing; and
a tamper resistant assembly, trapped between the first housing and the second housing and configured to selectively block the plurality of sockets when the plurality of sockets are not simultaneously operated.
Aspect 2. The pass-through plug of aspect 1, wherein the first housing comprises a plate portion, the second housing comprises a frame portion with an end providing an opening, and the plate portion closing the opening when the first housing is connected with the second housing.
Aspect 3. The pass-through plug any one of preceding aspects, wherein the plate portion is configured for the plurality of sockets to pass through, and comprises a first surface and a second surface opposite to the first surface; and the first housing further comprises:
a first connecting plate, extending outwardly perpendicular to the second surface, and an extending end of the first connecting plate is provided with a first engagement portion; and
a second connecting plate, extending outwardly perpendicular to the second surface, and an extending end of the second connecting plate is provided with a second engagement portion;
wherein the first engagement portion and the second engagement portion are engaged onto the second housing when the first housing is connected with the second housing.
Aspect 4. The pass-through plug any one of preceding aspects, wherein the second housing comprises:
a frame portion, comprising a first side plate and a second side plate that are perpendicular to each other, the first side plate being provided with a first connection groove configured for connecting the first connecting plate, and the second side plate being provided with a second connection groove configured for connecting the second connecting plate; and
wherein a bottom of the first connection groove is further provided with a first groove configured for the first engagement portion to be engaged, and a bottom of the second connection groove is further provided with a second groove configured for the second engagement portion to be engaged.
Aspect 5. The pass-through plug any one of preceding aspects, wherein the tamper resistant assembly comprises:
a supporting member, providing with a receiving groove, and a bottom of the receiving groove being provided with at least a first insertion slot and a second insertion slot that are in parallel; and
a shutter assembly, limited into the receiving groove and configured to rotate relative to the receiving groove to block the plurality of sockets, or to slide such that the plurality of sockets communicate with the first insertion slot and the second insertion slot respectively.
Aspect 6. The pass-through plug any one of preceding aspects, wherein the shutter assembly comprises an upper arch portion and a lower arch portion, a top of the upper arch portion being movably in contact with the plate portion, and a top of the lower arch portion being movably in contact with a bottom of the receiving groove.
Aspect 7. The pass-through plug any one of preceding aspects, wherein the upper arch portion is configured to be able to slide at the plate portion when the plurality of sockets are not simultaneously operated, and to rotate relative to the plate portion when the plurality of sockets are simultaneously operated; and
the lower arch portion is configured to be able to slide on the bottom of the receiving groove when the plurality of sockets are not simultaneously operated, and to rotate relative to the bottom of the receiving groove when the plurality of sockets are simultaneously operated.
Aspect 8. The pass-through plug any one of preceding aspects, wherein the pass-through plug further comprises a prong assembly trapped between the tamper resistant assembly and the second housing.
Aspect 9. The pass-through plug any one of preceding aspects, wherein the prong assembly comprises:
a pin part, extending out of the second housing;
a prong part, configured to be abutted against the tamper resistant assembly; and
a wiring part, configure to connect cables.
Aspect 10. The pass-through plug any one of preceding aspects, wherein the wiring part comprises a first connection portion configured to fixedly connect at least one first cable, and second connection portion configured to fixedly connect at least one second cable, wherein the first connection portion and the second connection portion are limited and abutted against at an inner wall of the frame portion when the pin part is extended outside of the second housing.
Aspect 11. The pass-through plug any one of preceding aspects, wherein the frame portion comprises a third side plate opposite to the opening, and the third side plate being provided with a plurality of slots configured for the pin part to be passed through the second housing, wherein a plurality of flanges corresponding to the plurality of slots are formed along the inner wall of the third side plate and extending perpendicularly to an inside of the frame portion, and the flanges being configured for the wiring part to be correspondingly connected thereon.
Aspect 12. The pass-through plug any one of preceding aspects, wherein the flange is formed by extending around outer circumference of the slots, and extending ends of the flanges are further provided with connecting grooves for limiting the wiring part.
Aspect 13. The pass-through plug any one of preceding aspects, wherein the prong part comprises at least a first prong connection member abutted the first insertion slot and a second prong connection member abutted the second insertion slot, and the first prong connection member and the second prong connection member being configured to in contact with external pins passing through the first insertion slot and the second insertion slot when the plurality of sockets are simultaneously operated.
Aspect 14. The pass-through plug any one of preceding aspects, wherein the first prong connection member and the second prong connection member have the same structure; and the first prong connection member comprises a first portion having a funnel-shaped and located at a front end; a flat second portion connected with the first portion and configured to in contact with the external pins; and a third portion connected with the second portion and expanded to strengthen the strength of the first prong connection member.
Aspect 15. The pass-through plug any one of preceding aspects, wherein the frame portion further comprises a fourth side plate provided with a slot configured for the cables to pass through.
Aspect 16. The pass-through plug any one of preceding aspects, wherein the frame portion further comprises a fourth side plate provided with a sliding groove, and an end of the sliding groove facing the opening, and the other end of the sliding groove forming an arc-shaped end;
the plate portion is configured for the plurality of sockets to pass through, and comprises a first surface and a second surface opposite to the first surface; the plate portion further comprises a third connection plate extended outwardly perpendicular to the second surface, to slidably connect to the sliding groove, and wherein an extending end of the third connection plate is concavely provided with an arc-shaped inner arch, and the inner arch and the arc-shaped end of the sliding groove forming a channel for the cables to pass through.
Aspect 17. The pass-through plug any one of preceding aspects, wherein the pass-through plug further comprises a protective cover molded outside the first housing and the second housing.
Aspect 18. The pass-through plug any one of preceding aspects, wherein the pass-through plug further comprises a protective cover molded outside the first housing and the second housing, and an outer surface of the plate portion further provided with a connection step to which the protective cover is able to be attached.
Aspect 19. The pass-through plug any one of preceding aspects, wherein an outer surface of the second housing further comprises a plurality of recesses configured to enhance adhesion strength of the protective cover to the second housing.
Aspect 20. The pass-through plug any one of preceding aspects, wherein the protective cover further comprises an auxiliary handle configured to facilitate pulling out the pass-through plug.