Electrical box with internal conductive elements

The electrical box assembly with conductive panels and ports simplifies electrical connections within the box, reducing installation time and costs while enhancing safety by eliminating the need for wiring nuts and insulation stripping.

JP7843768B2Active Publication Date: 2026-04-10ライスダニエル
View PDF 6 Cites 0 Cited by

Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-11-17
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing electrical box designs require complex wiring processes, including the use of wiring nuts and insulation stripping, which can lead to errors, delays, and increased labor costs due to the need for skilled electricians to repeatedly visit construction sites, and pose risks of short circuits and open circuits.

Method used

An electrical box assembly with an outer case and insert featuring conductive panels and ports that allow for direct electrical connections between wiring and devices without the need for wiring nuts, simplifying the installation process and reducing errors.

Benefits of technology

Facilitates quick and safe installation of electrical devices by eliminating the need for wiring nuts and insulation stripping, reducing labor costs and minimizing the risk of electrical faults.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 0007843768000001
    Figure 0007843768000001
  • Figure 0007843768000002
    Figure 0007843768000002
  • Figure 0007843768000003
    Figure 0007843768000003
Patent Text Reader

Abstract

The present invention is a power distribution board assembly that can house a variety of electrical devices, such as switches, sockets, and dimmers. The power distribution board assembly includes an outer case in which input and output electrical cable wiring is held within the outer case at a set orientation and position. The power distribution board assembly further includes an insert that is positionable within the outer case. The insert includes a plurality of conductive elements arranged as panels. The conductive panels are insulated from each other and have a plurality of ports on or through both sides that allow wiring to contact the conductive panels.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] Cross - reference to Related Applications This application claims priority to and discloses common information with U.S. Provisional Patent Application No. 63 / 115,085, filed Nov. 18, 2020, titled “Electrical box with internal conductive elements” and U.S. Provisional Patent Application No. 63 / 149,559, filed Feb. 15, 2021, titled “Electrical box with internal conductive elements,” which are hereby incorporated by reference in their entirety and are made by the inventor of this application.

Background Art

[0002] 1. Field of the Invention The present invention relates to electrical boxes used in residential or commercial electrical wiring projects. Specifically, the present invention relates to an electrical box that includes conductive elements therein for interconnecting input current - carrying wiring and electrical devices (such as switches, sockets, dimmers, etc.) to eliminate the need to connect individual wiring strands within the electrical box to tape or wire nuts.

[0003] 2. Description of the Related Art The present invention generally relates to electrical circuit components, and specifically to switches, receptacles, and other junction components that can be installed quickly, easily, and safely. As a result, the time required by one or more electricians in a construction project to wire and install various electrical devices defined as switches, sockets, dimmers, etc. is reduced. This in turn reduces the overall cost of the construction project.

[0004] Building construction can be costly and time-consuming, as buildings are often large and require the completion of numerous complex tasks. Furthermore, these tasks must be performed in the correct order; otherwise, resolving discovered defects becomes more difficult, or previously completed work that was satisfactory may have to be discarded to complete previously required tasks.

[0005] One of the most expensive aspects of constructing a residential or commercial building is the work involved in installing electrical circuits. These tasks must be carried out in sets, separated by other tasks. Therefore, the electrician must complete the first task, leave the site to complete other tasks, return to complete the second task, leave the site again to complete other tasks, and repeat this process until all electrical work is completed. Consequently, the electrician must be a highly skilled worker and be adequately compensated for the work they perform, as well as be required to return to the site multiple times. If tasks to be completed are delayed while the electrician is working, the electrician may not be able to return to the site on schedule, potentially further delaying the completion of the construction project.

[0006] Typically, electricians place electrical boxes on the building's exposed frame according to a plan. These electrical boxes will eventually hold the electrical devices defined above them. Next, electricians route the wiring from the building's circuit breakers to the individual electrical boxes and between the individual electrical boxes themselves. Once the individual wires are placed inside the electrical boxes, the insulation covers are stripped from both ends, and wiring nuts are attached to the exposed ends. Once the wiring is distributed to each electrical box, the electricians must wait until government officials inspect and approve the work they have done and the drywall is installed. Openings are cut into the drywall to give the electricians access to the previously installed electrical boxes and wiring. At this point, the electricians can return to the work site and install the defined electrical devices into each electrical box by adding additional wiring to connect the electrical devices to the previously installed wiring. Finally, the drywall is painted, and cover plates are installed around the electrical devices. Government officials return again to inspect the electrical work done by the electricians, and if the inspection is successful, the electricians' work is complete.

[0007] As can be understood, there are several problems with this typical method of installing electrical boxes and their associated electrical devices. As previously mentioned, electricians must leave the work site only to return when the work in between is completed. This creates opportunities for delays in the completion of the construction project. Also, as previously mentioned, electricians are highly skilled workers and therefore highly paid.

[0008] Another issue involves the stripping of insulation at the ends of wiring placed inside electrical boxes. If stripping is done improperly, the wiring can be weakened where the insulation is stripped, and this can cause damage when various electrical devices are packed into the electrical box. In addition, electricians may not observe the portion of wiring where excess insulation has stripped from the end of the wiring, exposing the conductive leads. Therefore, improper stripping of wiring inside electrical boxes can cause short circuits in the circuit or open circuits, leading to failures in the electrical circuit.

[0009] In addition, electrical boxes must be of rated size and must accommodate not only electrical devices but also numerous wires that enter the box and exit to the next electrical box in the circuit. This problem worsens as the circuit configuration becomes more complex. As the number of wires increases, so does the opportunity for errors by electricians or the aforementioned problems when electricians cram electrical devices into electrical boxes.

[0010] What is needed is an electrical box whose design reduces the amount of wiring inside, eliminates the need for wiring nuts to connect the wiring of electrical devices to the wiring inside the electrical box, is easy to use and install, and can be used with existing electrical devices while also being adaptable to new electrical devices. [Overview of the Initiative] [Means for solving the problem]

[0011] Summary of the Invention The present invention is an electrical box assembly capable of housing any one of the various electrical devices defined above. The electrical box assembly includes an outer case in which the wiring of input and output electrical cables is held within the outer case in a set orientation and position. The assembly further includes a positionable insert within the outer case. The insert includes a plurality of conductive elements arranged as panels. The conductive panels are insulated from each other and have a plurality of ports present on both sides or penetrating both sides, allowing the wiring to come into contact with the conductive panels. The ports on the side adjacent to the wiring of input and output electrical cables provide a means to establish electrical connections between the wiring of these cables to the particular conductive panel. The ports on the side adjacent to the electrical devices provide a means to establish electrical connections between the electrical devices to the particular conductive panel. Each of the plurality of ports includes a mechanism for securing the wiring within the port to withstand accidental removal of the wiring, as well as to ensure electrical connections between the conductive panel and all wiring inserted into the port.

[0012] Another area of ​​applicability of the present invention will become apparent from the detailed description provided below. It should be understood that the detailed description and specific examples illustrate preferred embodiments of the present invention, but are for illustrative purposes only and are not intended to limit the scope of the invention.

[0013] Neither this summary nor the following detailed description defines nor limits the present invention. The present invention is defined by the claims.

[0014] Brief explanation of the drawing The present invention will be better understood from the detailed description and accompanying drawings. [Brief explanation of the drawing]

[0015] [Figure 1A] An exploded view of the first embodiment of the electrical box assembly and electrical device defined above is shown. [Figure 1B] An exploded view of a second embodiment of an electrical box assembly and electrical device is shown. [Figure 1C] An exploded view of a third embodiment of an electrical box assembly and electrical device is shown. [Figure 1D] An exploded view of a fourth embodiment of an electrical box assembly and electrical device is shown. [Figure 1E] An exploded view of a fifth embodiment of the electrical box assembly and electrical device is shown. [Figure 2] This shows an overview of an electrical box structure having input and output electrical cables running through it and individual wires connecting to multiple ports within the insert. [Figure 3A] This shows a cross-section of the first embodiment of the insert on the surface identified by A. [Figure 3B] This shows a cross-section of a second embodiment of the insert on the surface identified by A. [Figure 4] A perspective view of an insert having an internal panel identified by a dotted line is shown. [Modes for carrying out the invention]

[0016] Detailed description of the invention The following description of preferred embodiments is illustrative and is not intended in any way to limit the invention, its applications, or its use.

[0017] The present invention is an electrical box assembly that can be used with the above-defined electrical devices without the need to use wiring / nuts to electrically connect the wiring from the electrical device to the wiring found in the electrical cable which is part of the powered electrical circuit. Structurally, the electrical box assembly is similar to many existing electrical box assemblies used in the construction of commercial or residential buildings in the following respects: (i) an opening for housing an electrical cable that brings power to the electrical box assembly or for sending power to the next electrical box assembly in the circuit; (ii) means for mounting the electrical box assembly to a structural column of the building; and (iii) an electrical device that can be housed in and mounted thereto. The key difference between the electrical box assembly of the present invention and electrical boxes of the prior art is that it is provided with an insert having multiple connection points called ports, which enables electrical connections to be established between the electrical device and the electrical cable entering and leaving the electrical box without the use of wiring / nuts, soldering, taping or other such means.

[0018] Referring now to Figure 1A, the reader is presented with an exploded view of a first embodiment of the electrical box assembly 10, along with an electrical device 22, which is an outlet in Figure 1A. The electrical box assembly 10 consists of an outer case 12 and an insert 14. The outer case 12 is rectangular and enclosed along its rear and sides. There is no front that exposes the hollow interior of the outer case 12. The rear of the outer case 12 consists of one or more openings 32, as shown in Figures 1A and 2. The openings 32 may vary to accommodate various cable types. It will be understood that the number and orientation of the openings 32 and their configurations are merely illustrative, and other numbers, orientations, and configurations may be used. For example, the openings 32 may be circular or square. In addition, the openings 32 may resemble a casing punch-out access plate 17, such that only a subset of the openings 32 need to be opened. The case punch-out access plate 17 allows the user to insert wiring cables (such as input wiring cables 28 or output wiring cables 30) into the outer case 12 if it is not possible to insert wiring cables through the rear of the outer case 12. It will be understood by those skilled in the art that the arrangement of the case punch-out access plate 17 can vary from those shown with respect to the location, size, orientation, number, and method of construction. The insert 14 is structurally similar to the outer case 12 in that it is rectangular and enclosed along its rear and sides. There is no front so as to expose the hollow interior of the insert 14. The insert 14 is dimensioned along each dimension so as to be slightly smaller than the outer case 12 so that the insert 14 can be partially inserted into the outer case 12. The insert 14 can also be fabricated together with one or more insert punch-out access plates 16, four of which are visible in Figure 1A. The insert punch-out access plates 16 are fabricated and shown on the insert 14 via small plastic tabs that can be easily broken by the application of force or by the use of a box cutter knife. It is understood that the insert punch-out access plate 16 may also be formed by other means during manufacturing.The purpose of the insert punch-out access plate 16 is to provide the user of the electrical box assembly 10 with a means of connecting the input wiring cable 28 or the output wiring cable 30 to the electrical device 22 without using one of the many ports 36 found on the rear surface of the insert 14. It will be understood that the number and orientation of the insert punch-out access plates 16 and their configuration are merely illustrative and that other numbers, orientations, and configurations may be used. Also, it will be understood by those skilled in the art that many possible means may be contemplated for securing the wiring to a particular port 36. The insert 14 also includes retaining clips 20 for attaching the insert 14 to the frame members of commercial or residential buildings. Typically, the insert 14 is secured to the frame member by driving nails through the retaining clips 20 into the frame member. The outer case 12 may also include retaining clips 20 for attaching the outer case 12 to the frame members of commercial or residential buildings. The frame members are not shown in FIG. 1A. Finally, the insert 14 includes the following attachment points 18: one attachment point 18 at the top of the front portion of the insert 14 and a second attachment point 18 at the bottom of the front portion of the insert 14. The electrical device 22 may be removably attached to the insert 14 by screws 25. The electrical device 22 may be electrically connected to the input wiring cable 28 or the output wiring cable 30 by introducing the input wiring cable 28 or the output wiring cable 30 through the rear portion of the outer case 12, appropriately attaching one of the wirings found within the input wiring cable 28 or the output wiring cable 30 to a port 36 found on the rear portion of the back panel of the insert 14, and then appropriately attaching the device wiring 23 to a port 36 found on the front portion of the back panel of the insert 14. Other attributes and features of the electrical box assembly 10 will be disclosed in the following figures.

[0019] Referring now to Figure 1B, the reader is presented with an exploded view of a second embodiment of the electrical box assembly 10, along with an electrical device 22, which is an outlet in Figure 1B. The electrical box assembly 10 consists of an outer case 12 and an insert 14. The outer case 12 is rectangular and enclosed along its rear and sides. There is no front so as to expose the hollow interior of the outer case 12. The rear of the outer case 12 consists of one or more openings 32, as shown in Figures 1B and 2. The openings 32 may vary to accommodate various cable types. It will be understood that the number and orientation of the openings 32 and their configurations are merely illustrative, and other numbers, orientations, and configurations may be used. For example, the openings 32 may be circular or square. In addition, the openings 32 may resemble a case punch-out access plate 17 so that only a subset of the openings 32 needs to be opened. The case punch-out access plate 17 allows the user to insert wiring cables (such as input wiring cables 28 or output wiring cables 30) into the outer case 12 if it is not possible to insert wiring cables through the rear of the outer case 12. It will be understood by those skilled in the art that the arrangement of the case punch-out access plate 17 can vary from those shown with respect to the location, size, orientation, number, and method of construction. The insert 14 is structurally similar to the outer case 12 in that it is rectangular and enclosed along its rear and sides. There is no front so as to expose the hollow interior of the insert 14. The insert 14 is dimensioned along each dimension so as to be slightly smaller than the outer case 12 so that the insert 14 can be partially inserted into the outer case 12. The insert 14 can also be fabricated with one or more insert punch-out access plates 16, four of which are visible in Figure 1B. The insert punch-out access plates 16 are shown fabricated on the insert 14 via small plastic tabs that can be easily broken by the application of force or by the use of a box cutter knife. It is understood that the insert punch-out access plate 16 may also be formed by other means during manufacturing.The purpose of the insert punch-out access plate 16 is to provide the user of the electrical box assembly 10 with a means of connecting an input wiring cable 28 or an output wiring cable 30 to an electrical device 22 without using one of the many ports 36 found on the rear surface of the insert 14. The number and orientation of the insert punch-out access plates 16 and their configurations are merely illustrative and it will be understood that other numbers, orientations, and configurations may be used. It will also be understood by those skilled in the art that many possible means can be conceived for securing wiring to specific ports 36. The insert 14 also includes retaining clips 20 for attaching the insert 14 to a frame member of a commercial or residential building. Typically, the insert 14 is secured to the frame member by driving nails into the frame member through the retaining clips 20. The outer case 12 may also include retaining clips 20 for attaching the outer case 12 to a frame member of a commercial or residential building. The frame member is not shown in Figure 1B. Finally, the insert 14 has the following mounting points 18: one mounting point 18 on the top of the front of the insert 14, and a second mounting point 18 on the bottom of the front of the insert 14. The electrical device 22 can be detachably attached to the insert 14 by screws 25. The electrical device 22 can be electrically connected to the input wiring cable 28 or output wiring cable 30 by introducing the input wiring cable 28 or output wiring cable 30 through the rear of the outer case 12, by properly attaching one of the wires found in the input wiring cable 28 or output wiring cable 30 to a port 36 found on the rear of the back panel of the insert 14, and then by properly attaching the rod 21 to the port 36 found on the front of the back panel of the insert 14. The rod 21 can be attached to the electrical device 22 by small screws or other means known in the art so that existing electrical fixtures 22 can be used by the electrical box assembly 10. In addition, the rod 21 is aligned with port 36 so that the electrical device 22 can be easily embedded in the insert 14 without requiring an installer to manually insert the device wiring 23 into port 36, as shown in Figure 1A.Other attributes and features of the electrical box assembly 10 will be disclosed in the following figure.

[0020] Referring now to Figure 1C, the reader is presented with an exploded view of a third embodiment of the electrical box assembly 10, along with an electrical device 22, which is an outlet in Figure 1C. The electrical box assembly 10 consists of an outer case 12 and an insert 14. The outer case 12 is rectangular and enclosed along its rear and sides. There is no front so as to expose the hollow interior of the outer case 12. The rear of the outer case 12 consists of one or more openings 32, as shown in Figures 1C and 2. The openings 32 may vary to accommodate various cable types. It will be understood that the number and orientation of the openings 32 and their configurations are merely illustrative, and other numbers, orientations, and configurations may be used. For example, the openings 32 may be circular or square. In addition, the openings 32 may resemble a case punch-out access plate 17 so that only a subset of the openings 32 needs to be opened. The case punch-out access plate 17 allows the user to insert wiring cables (such as input wiring cables 28 or output wiring cables 30) into the outer case 12 if it is not possible to insert wiring cables through the rear of the outer case 12. It will be understood by those skilled in the art that the arrangement of the case punch-out access plate 17 may vary from those shown with respect to the location, size, orientation, number, and method of construction. The insert 14 is structurally similar to the outer case 12 in that it is rectangular and enclosed along its rear and sides. There is no front so as to expose the hollow interior of the insert 14. The insert 14 is dimensioned along each dimension so as to be slightly smaller than the outer case 12 so that the insert 14 can be partially inserted into the outer case 12. The insert 14 may also be fabricated with one or more insert punch-out access plates 16, four of which are visible in Figure 1C. The insert punch-out access plates 16 are shown fabricated on the insert 14 via small plastic tabs that can be easily broken by the application of force or by the use of a box cutter knife. It is understood that the insert punch-out access plate 16 may also be formed by other means during manufacturing.The purpose of the insert punch-out access board 16 is to provide the user of the electrical box assembly 10 with a means of connecting the input wiring cable 28 or the output wiring cable 30 to the electrical device 22 without using one of the many ports 36 found on the rear surface of the insert 14. It will be understood that the number and orientation of the insert punch-out access boards 16, as well as their configuration, are merely illustrative, and that other numbers, orientations, and configurations may be used. Also, it will be understood by those skilled in the art that many possible means may be considered for securing the wiring to a particular port 36. The insert 14 also includes retention clips 20 for attaching the insert 14 to a frame member of a commercial or residential building. Typically, the insert 14 is secured to the frame member by driving nails through the retention clips 20 into the frame member. The outer case 12 may also include retention clips 20 for attaching the outer case 12 to a frame member of a commercial or residential building. The frame member is not shown in FIG. 1C. Finally, the insert 14 includes the following attachment points 18: one attachment point 18 at the top of the front portion of the insert 14, and a second attachment point 18 at the bottom of the front portion of the insert 14. The electrical device 22 may be removably attached to the insert 14 by screws 25. The electrical device 22 is electrically connected to the input wiring cable 28 or the output wiring cable 30 by introducing the input wiring cable 28 or the output wiring cable 30 through the rear portion of the outer case 12, appropriately attaching one of the wirings found within the input wiring cable 28 or the output wiring cable 30 to a port 36 found on the rear of the back panel of the insert 14, and then appropriately attaching a bar 21 to the port 36 found on the front of the back panel of the insert 14. The bar 21 is permanently attached to the electrical device 22 along the side surface of the electrical device 22. Additionally, the bar 21 is aligned with the port 36 so that the electrical device 22 can be easily recessed into the insert 14 without the need for an installer to manually insert the device wiring 23 into the port 36 as shown in FIG. 1A. Other attributes and features of the electrical box assembly 10 will be disclosed in the following figures.

[0021] Referring now to Figure 1D, the reader is presented with an exploded view of a fourth embodiment of the electrical box assembly 10, along with an electrical device 22, which is an outlet in Figure 1D. The electrical box assembly 10 consists of an outer case 12 and an insert 14. The outer case 12 is rectangular and enclosed along its rear and sides. There is no front so as to expose the hollow interior of the outer case 12. The rear of the outer case 12 consists of one or more openings 32, as shown in Figures 1D and 2. The openings 32 may vary to accommodate various cable types. It will be understood that the number and orientation of the openings 32 and their configurations are merely illustrative, and other numbers, orientations, and configurations may be used. For example, the openings 32 may be circular or square. In addition, the openings 32 may resemble a case punch-out access plate 17 so that only a subset of the openings 32 needs to be opened. The case punch-out access plate 17 allows the user to insert wiring cables (such as input wiring cables 28 or output wiring cables 30) into the outer case 12 if it is not possible to insert wiring cables through the rear of the outer case 12. It will be understood by those skilled in the art that the arrangement of the case punch-out access plate 17 may vary from that shown in terms of its location, size, orientation, number, and method of construction. The insert 14 is structurally similar to the outer case 12 in that it is rectangular and enclosed along its rear and sides. There is no front so as to expose the hollow interior of the insert 14. The insert 14 is dimensioned along each dimension so as to be slightly smaller than the outer case 12 so that the insert 14 can be partially inserted into the outer case 12. The insert 14 may also be fabricated with one or more insert punch-out access plates 16, four of which are visible in Figure 1D. The insert punch-out access plates 16 are shown fabricated on the insert 14 via small plastic tabs that can be easily broken by the application of force or by the use of a box cutter knife. It is understood that the insert punch-out access plate 16 may also be formed by other means during manufacturing.The purpose of the insert punch-out access plate 16 is to provide the user of the electrical box assembly 10 with a means of connecting an input wiring cable 28 or an output wiring cable 30 to an electrical device 22 without using one of the many ports 36 found on the rear surface of the insert 14. The number and orientation of the insert punch-out access plates 16 and their configurations are merely illustrative and it will be understood that other numbers, orientations, and configurations may be used. It will also be understood by those skilled in the art that many possible means can be conceived for securing wiring to specific ports 36. The insert 14 also includes retaining clips 20 for attaching the insert 14 to a frame member of a commercial or residential building. Typically, the insert 14 is secured to the frame member by driving nails into the frame member through the retaining clips 20. The outer case 12 may also include retaining clips 20 for attaching the outer case 12 to a frame member of a commercial or residential building. The frame member is not shown in Figure 1D. Finally, the insert 14 has the following mounting points 18: one mounting point 18 on the top of the front of the insert 14, and a second mounting point 18 on the bottom of the front of the insert 14. The electrical device 22 can be detachably attached to the insert 14 by screws 25. The electrical device 22 can be electrically connected to the input wiring cable 28 or output wiring cable 30 by introducing the input wiring cable 28 or output wiring cable 30 through the rear of the outer case 12, by properly attaching one of the wires found in the input wiring cable 28 or output wiring cable 30 to a port 36 found on the rear of the back panel of the insert 14, and then by properly attaching the rod 21 to the port 36 found on the front of the back panel of the insert 14. The rod 21 is permanently attached to the electrical device 22 along the rear of the electrical device 22. In addition, the rod 21 is aligned with port 36 so that the electrical device 22 can be easily embedded in the insert 14 without requiring an installer to manually insert the insert fixing wiring 23 into port 36, as shown in Figure 1A. Other attributes and features of the electrical box assembly 10 will be disclosed in the following figures.

[0022] Referring now to Figure 1E, the reader is presented with an exploded view of a fifth embodiment of the electrical box assembly 10, along with an electrical device 22, which is an outlet in Figure 1E. The electrical box assembly 10 consists of an outer case 12 and an insert 14. The outer case 12 is rectangular and enclosed along its rear and sides. There is no front so as to expose the hollow interior of the outer case 12. The rear of the outer case 12 consists of one or more openings 32, as shown in Figures 1E and 2. The openings 32 may vary to accommodate various cable types. It will be understood that the number and orientation of the openings 32 and their configurations are merely illustrative, and other numbers, orientations, and configurations may be used. For example, the openings 32 may be circular or square. In addition, the openings 32 may resemble a case punch-out access plate 17 so that only a subset of the openings 32 needs to be opened. The case punch-out access plate 17 allows the user to insert wiring cables (such as input wiring cables 28 or output wiring cables 30) into the outer case 12 if it is not possible to insert wiring cables through the rear of the outer case 12. It will be understood by those skilled in the art that the arrangement of the case punch-out access plate 17 may vary from those shown with respect to the location, size, orientation, number, and method of construction. The insert 14 is structurally similar to the outer case 12 in that it is rectangular and enclosed along its rear and sides. There is no front so as to expose the hollow interior of the insert 14. The insert 14 is dimensioned along each dimension so as to be slightly smaller than the outer case 12 so that the insert 14 can be partially inserted into the outer case 12. The insert 14 may also be fabricated with one or more insert punch-out access plates 16, four of which are visible in Figure 1E. The insert punch-out access plates 16 are shown fabricated on the insert 14 via small plastic tabs that can be easily broken by the application of force or by the use of a box cutter knife. It is understood that the insert punch-out access plate 16 may also be formed by other means during manufacturing.The purpose of the insert punch-out access plate 16 is to provide the user of the electrical box assembly 10 with a means of connecting an input wiring cable 28 or an output wiring cable 30 to an electrical device 22 without using one of the many ports 36 found on the rear surface of the insert 14. The number and orientation of the insert punch-out access plates 16 and their configurations are merely illustrative and it will be understood that other numbers, orientations, and configurations may be used. It will also be understood by those skilled in the art that many possible means can be conceived for securing wiring to specific ports 36. The insert 14 also includes retaining clips 20 for attaching the insert 14 to a frame member of a commercial or residential building. Typically, the insert 14 is secured to the frame member by driving nails into the frame member through the retaining clips 20. The outer case 12 may also include retaining clips 20 for attaching the outer case 12 to a frame member of a commercial or residential building. The frame member is not shown in Figure 1E. Finally, the insert 14 has the following mounting points 18: one mounting point 18 on the top of the front of the insert 14, and a second mounting point 18 on the bottom of the front of the insert 14. The electrical device 22 can be detachably attached to the insert 14 by screws 25. The electrical device 22 can be electrically connected to the input wiring cable 28 or output wiring cable 30 by introducing the input wiring cable 28 or output wiring cable 30 through the rear of the outer case 12, by properly attaching one of the wires found in the input wiring cable 28 or output wiring cable 30 to a port 36 found on the rear of the back panel of the insert 14, and then by properly attaching the tab 27 to the port 36 configured to accommodate the tab 27. The port 36 configured to accommodate the tab 27 has a different configuration from the port 36 configured to accommodate the wires. The tab 27 is permanently or detachably attached to the electrical device 22 along the rear of the electrical device 22.In addition, the tab 27 is aligned with the port 36 configured to accommodate the tab 27, so that the electrical device 22 can be easily embedded in the insert 14 without requiring an installer to manually insert the insert fixing wiring 23 into the port 36, as shown in Figure 1A. Other attributes and features of the electrical box assembly 10 will be disclosed in the following figures.

[0023] Referring now to Figure 2, the reader is presented with an overview similar to Figures 1E-1A, except that the insert 14 has been rotated 90 degrees to expose the rear of the insert 14. Here, it may be noticed that the rear of the insert 14 contains many ports 36 organized as a matrix, and the entire matrix is ​​further grouped into smaller sub-matrices. Each sub-matrix contains one or more ports 36 that are electrically connected together such that inserting a wire into one port 36 of the sub-matrix electrically connects this wire to any other wire inserted into a port 36 of the same sub-matrix. The rear of the insert 14 is shown with six sub-matrices; the six sub-matrices shown in Figure 2 are identified as white (twice), black (twice), 3-wire, and ground. When in use, the input wiring cable 28 or the output wiring cable 30 can be passed through one of the openings 32 found inside the outer case 12. The individual wires contained within the input wiring cable 28 or the output wiring cable 30 can be inserted into the ports 36 after any insulation at their ends has been stripped. Wires belonging to input wiring cable 28 or output wiring cable 30, which have similar electrical functions, are inserted into ports 36 belonging to the same submatrix. Therefore, all white wires will be inserted into ports 36 belonging to the submatrix labeled WHITE. All black wires will be inserted into ports 36 belonging to the submatrix labeled BLACK. All three-wire wires will be inserted into ports 36 belonging to the submatrix labeled 3-WIRE. Finally, all green wires will be inserted into ports 36 belonging to the submatrix labeled GROUND. The number and orientation of the submatrices and their configurations are merely illustrative, and it should be understood that other numbers, orientations, and configurations may be used. On the opposite side of the back of insert 14, there is a similar arrangement of ports 36 that allows wiring from electrical devices 22 to be connected to submatrices having common electrical functionality.This is shown in Figures 1A to 1D, where four wires (two black and two white) from the electrical device 22 are inserted into appropriate ports on the rear front of the insert 14 to establish electrical connections with the white and black wires contained within the input wiring cable 28 and the output wiring cable 30. Also shown in Figure 2 is a bump 24 on the outer case 12 designed to fit into a recess 26 on the insert 14. When placed inside the outer case 12, the insert 14 is positioned sufficiently deep inside the outer case 12 so that the bump 24 fits into the recess 26. This mating of the bump 24 and the recess 26 allows the insert 14 to be detachably engaged with the outer case 12.

[0024] Figure 3A shows a first embodiment of insert 14 in plane A. Plane A is identified in Figures 2 and 4. Insert 14 includes a dielectric shell 38 generally made of plastic. Ports 36 may be found on both sides of the rear of insert 14. The ports 36 are located on both sides of the rear of insert 14 to provide electrical connections from the wiring coming from the electrical device 22 to the wiring coming from the input wiring cable 28 and the output wiring cable 30. Also shown are conductive panels 34a, 34c, 34e, and 34f. Conductive panel 34a electrically connects all of the ports 36 found in the submatrix labeled BLACK in the upper left corner of insert 14 as shown in Figure 2. Conductive panel 34c electrically connects all of the ports 36 found in the submatrix labeled BLACK in the central left side of insert 14 as shown in Figure 2. Conductive panel 34e electrically connects all of the ports 36 found in the submatrix labeled 3-WIRE on the lower side of insert 14 as shown in Figure 2. The conductive panel 34f electrically connects all of the ports 36 found in the submatrix labeled GROUND on the lower side of the insert 14 shown in Figure 2. Inserting a wire into a port associated with one conductive panel makes this wire electrically connected to any other wires inserted into ports associated with the same conductive panel. Those skilled in the art will understand that there are many mechanical means for securing the wires within the ports.

[0025] Figure 3B shows a second embodiment of the insert 14 on surface A. Surface A is identified in Figures 2 and 4. The insert 14 includes a dielectric shell 38, generally made of plastic. On both sides of the rear of the insert 14, ports 36 can be found, providing a passage from the front of the insert 14 back panel to the rear of the insert 14 back panel. In other words, wiring inserted into the ports 36 can penetrate the back panel of the insert 14 completely. Also found within the back panel of the insert 14 is a screw shaft 37, which has a mating thread and allows a screw to make electrical contact with the panel 34, and when screwed in fully, enters the port 36 to clamp the wiring inside the port 36. Thus, wiring with its insulation stripped and tip inserted into the port 36 can be secured inside the port 36 by a screw passing through the screw shaft 37, and additionally, can make electrical contact with the conductive panel 34 surrounding both the port 36 and the screw shaft 37. Those skilled in the art will understand that, in addition to what is described in Figure 3B, there are other mechanical means for securing the wiring within the port 36.

[0026] Figure 4 shows the insert 14 shown in Figure 2, with electrical wiring terminating to connect the insert 14 to the input wiring cable 28 and the output wiring cable 30. The dotted lines indicate submatrices, also described in this disclosure as conductive panels 34, as discussed in Figures 2, 3A, and 3B. The submatrices are contained within the dielectric shell 38, as shown in Figures 3A and 3B. The number and orientation of the conductive panels 34 and their configurations are merely illustrative, and it will be understood that other numbers, orientations, and configurations may be used. In Figure 4, six conductive panels 34a, 34b, 34c, 34d, 34e, and 34f are shown. Each conductive panel 34 electrically connects all wiring inserted into one of the ports 36 covered by the conductive panel 34, regardless of whether the wiring is inserted into a port located on the rear of the insert 14 or on the side opposite the rear of the insert 14.

[0027] While the described embodiments of the present invention are considered to represent the best mode of the invention, it should be understood that many of the described components of the present invention have known functional equivalents. In addition, the orientations, proportions, and shapes used herein can be modified by those skilled in the art. Specifically, the present invention shows a single square wiring box, but many other configurations can be used, and the present invention can be carried out in that manner. All such modifications and deviations are intended to be covered within the scope of the present invention.

Claims

1. An outer case having a back panel including one or more openings, and one or more side panels that enclose the back panel and are perpendicular to the back panel, so as to form a hollow container having an opening surface; An insert having a back panel and one or more side panels, wherein the one or more side panels are perpendicular to the back panel of the insert and enclose the back panel of the insert so as to form a hollow container having an opening that can be inserted into the outer case, and the back panel of the insert further includes: a plurality of conductive panels, each located in the front and rear portions of the back panel of the insert; a plurality of front ports on the front portion of the back panel of the insert that are electrically in communication with the conductive panels; and a plurality of back ports on the rear portion of the back panel of the insert that are electrically in communication with the conductive panels.

2. The electrical box assembly according to claim 1, wherein the opening in the back panel of the outer case is covered by a tab that can be opened by applying pressure or by a suitable cutting blade.

3. The electrical box assembly according to claim 1, wherein the side panel, which encloses the back panel of the outer case and is perpendicular to the back panel, has one or more openings covered by tabs that can be opened by the application of pressure or by a suitable cutting blade.

4. The electrical box assembly according to claim 1, wherein the wall of the side panel, which encloses the back panel of the outer case and is perpendicular to the back panel, is thicker where the end of the side panel intersects with the end of the back panel and thinner at the opposite end.

5. The electrical box assembly according to claim 1, wherein the side panel, which encloses the back panel of the outer case and is perpendicular to the back panel, has one or more retaining clips for securing the outer case to a frame member of a commercial or residential building.

6. The electrical box assembly according to claim 1, wherein the side panel of the insert includes a recess for engaging with a corresponding bump found on the side panel of the outer case.

7. The electrical box assembly according to claim 1, wherein the side panel, which encloses the back panel of the insert and is perpendicular to the back panel, has one or more retaining clips for securing the outer case to a frame member of a commercial or residential building.

8. An electrical device placed inside the insert; Multiple conductors that penetrate the opening of the outer case and enter a port that makes electrical contact with one of the conductive panels; and The electrical box assembly according to claim 1, comprising a plurality of conductors connecting the electrical device to one of the conductive panels through a port.

9. The electrical box assembly according to claim 8, wherein the plurality of front ports of the back panel of the insert have corresponding screw shafts that allow screws to enter the conductive panel and clamp one of the conductors in the port in order to ensure an electrical connection between one of the conductors and the conductive panel.

10. The electrical box assembly according to claim 8, wherein the insert further includes mounting holes for securing the electrical device to the insert by one or more screws.

11. The electrical box assembly according to claim 8, wherein the conductor is a conductive wire.

12. The electrical box assembly according to claim 8, wherein the conductor is a conductive rod that is detachably attached to the electrical device.

13. The electrical box assembly according to claim 8, wherein the conductor is a conductive rod that is permanently attached to the electrical device.

14. The electrical box assembly according to claim 8, wherein the conductor is a conductive tab that is detachably attached to the electrical device.

15. The electrical box assembly according to claim 8, wherein the conductor is a conductive tab that is permanently attached to the electrical device.

16. An outer case having a back panel including one or more openings, and one or more side panels that enclose the back panel and are perpendicular to the back panel, so as to form a hollow container having an opening surface; An insert having a back panel and one or more side panels, wherein the one or more side panels enclose the back panel of the insert and are perpendicular to the back panel of the insert so as to form a hollow container having an opening that can be inserted into the outer case, and the back panel of the insert further includes: a plurality of conductive panels, each located in the front and rear of the back panel of the insert; a plurality of front ports on the front of the back panel of the insert that are electrically in communication with the conductive panels; and a plurality of back ports on the rear of the back panel of the insert that are electrically in communication with the conductive panels. The front port consists of a screw shaft comprising a part of a dielectric and a part of a conductive panel sandwiched between the dielectric parts, and the screw shaft is configured to receive a screw; An electrical device placed inside the insert; Multiple conductors that penetrate the opening of the outer case and enter a port that makes electrical contact with one of the conductive panels; and An electrical box assembly including a plurality of conductors connecting the electrical device to one of the conductive panels via a port.

Citation Information

Patent Citations

  • Wire splicing connector

    JP1992079172A

  • Airtight box

    JP2017034771A

  • Screwless quick receptacle system and method

    US20120094511A1

  • Power control system

    US20160233605A1

  • Electrical outlet

    US2908743A