1. Field of the Invention
The invention is in the field of electrical box mounts.
2. Description of the Related Art
Electrical boxes are widely used to mount electrical components, such as switches and outlets, and to contain electrical wiring connections. Installation and alignment of such boxing can be a time-consuming process.
According to various aspects of the invention, an electrical installation bracket includes a body having rails on a back side of the body, the rails allowing an electrical box or other item to be placed at various locations along the body of the bracket. The bracket may include one or more of the following features: the body has a pair of legs that define an opening therebetween; the box protrudes through or is accessible through the opening; the rails are on the legs; the rails extend all the way along the opening; the rails extend only partway along the opening; the rails are bent portions of the body; the body telescopes to change its length; the legs have holes in them to allow mounting of the box; the holes are regularly spaced over at least part of the legs; the holes are regularly spaced over substantially all (an entire length) of the legs; the electrical box(es) is/are secured to the legs using fasteners (such as screws) that engage the holes; the legs have tabs in them that can be bent to help hold the box in place at certain locations relative to the legs; the legs have markings on them that aid in placing the box at a desired location; the bracket is a single piece of material; the bracket is multiple pieces of material; the bracket is made of metal or plastic, such as steel; the opening is a rectangular opening; the body has ears, with mounting holes for mounting the bracket to one or more studs (or other structure); the body has ears with mounting holes for mounting the bracket to the one or more studs (or other structure); one or more of the ears may include one or more tabs to aid in positioning the bracket relative to structure; the bracket has a bottom for installation in a vertical configuration; the bottom includes a bendable foot that may be deployed (bent) to stabilize the bracket, for example engaging a footer or resting on a floor; the bottom may include tabs that may be bent inward to engage a footer, and may have holes for receiving screws for mounting on a footer or other structure; the bracket may have a top; and/or the top may include an angled flange.
According to other aspects of the invention, a method of installing an electrical box may include installing the bracket having any combination of the features of the other paragraphs of this summary or the detailed description; engaging the electrical box in the rails of the bracket; and securing the box to the bracket.
According to a further aspect of the invention, an electrical installation bracket includes: a body having a front face and a back face on opposite sides; and rails on one of the faces; wherein the rails extend on opposite sides of an opening in the bracket; and wherein the rails are able to receive an electrical box that may be secured to the bracket at least one location along the bracket, when the electrical box is engaged with the rails.
According another aspect of the invention, an electrical installation bracket includes: a body having a front face and a back face on opposite sides; rails on the back face; wherein the rails extend on opposite sides of an opening in the bracket; and wherein the bracket has holes therein for securing an electrical box in place at multiple locations along the bracket.
According to yet another aspect of the invention, an electrical installation bracket includes: a body having a front face and a back face on opposite sides; rails on one of the faces; wherein the rails extend on opposite sides of an opening in the bracket; wherein the rails are folded-over parts of the body; wherein the bracket secures an electrical box in at least one location along the bracket; wherein the bracket includes a pair of bracket parts that together make up the body; wherein the bracket parts are in a telescoping relationship that allows the bracket to be selectively changed in length; wherein the body has legs on opposite sides of the opening; wherein the legs have with respective rows of the holes for securing the electrical box to the legs; and wherein the body is made of metal or plastic.
According to still another aspect of the invention, an electrical installation bracket includes: a body having a front face and a back face on opposite sides; rails on one of the faces; wherein the rails extend on opposite sides of an opening in the bracket; wherein the bracket secures an electrical box in at least one location along the bracket; wherein the body has legs on opposite sides of the opening; wherein the holes are in the legs; wherein the legs have tabs in them that facilitate positioning the electrical box within the opening; and wherein the bracket is a single-piece bracket made of a unitary, continuous single piece of metal or plastic.
To the accomplishment of the foregoing and related ends, the invention comprises the features hereinafter fully described and particularly pointed out in the claims. The following description and the annexed drawings set forth in detail certain illustrative embodiments of the invention. These embodiments are indicative, however, of but a few of the various ways in which the principles of the invention may be employed. Other objects, advantages and novel features of the invention will become apparent from the following detailed description of the invention when considered in conjunction with the drawings.
The annexed drawings, which are not necessarily to scale, show various aspects of the invention.
An electrical installation bracket includes a body that may telescope to allow the length of the bracket to be changed to accommodate installation in different configurations, for example to accommodate different spacing between mounting studs. The bracket has rails on a face that allow an electrical box to be positioned, by sliding, at any of a variety of locations along the length of the body. The body has holes in it for securing the box to the bracket at a desired location along the body, with a front of the box for example protruding through an opening in the body. The body includes ears on opposite sides of the opening, with mounting holes for mounting the bracket to studs or other structure (or other hardware or devices). The electrical installation bracket advantageously provides more flexibility in placement of electrical boxes, with pre-prepared holes available for securing boxes in any of a variety of locations.
The legs 26, 28, 36, and 38 together constitute a body 52 of the bracket 10, with the body 52 having a front face 54 and a back face 56. The rails 40, 42, 46, and 48 are on the back face 56 of the body 52. Alternatively, the rails 40, 42, 46, and 48 may be on the front face 54.
The rails 40, 42, 46, and 48 receive flange tabs of the electrical box 12. Referring to
In the illustrated embodiments various types of electrical boxes 12 are mounted in the bracket 10. The bracket 10 may be used for mounting a single electrical box 12, for example as shown in
The rails 40, 42, 46, and 48 are fold-over extensions of the legs 26, 28, 36, and 38. The rails 40, 42, 46, and 48 may be folded in any of a variety of ways. In one embodiment the rails 40, 42, 46, and 48 are curled around, as shown in
The legs 26, 28, 36, and 38 have series of holes 88 running along their lengths, spaced apart in the directions away from the ears 24 and 34. When the bracket parts 14 and 16 are fitted together, the holes 88 form two sets of holes on opposite sides of the opening 66, along the length of the bracket 10. A top set 90 of the holes 88 is at the top of the bracket 10, constituting the holes 88 in the legs 26 and 36. A bottom set 92 of the holes 88 is at the bottom of the bracket 10, constituting the holes 88 in the legs 28 and 38. The sets 90 and 92 run parallel to each other, with the holes 88 spaced so that adjacent holes are an even predetermined distance from each other, with adjacent of the holes 88 about 3.2 mm (0.125 inches) apart, for example.
The holes 88 are used for receiving screws, such as the screws 98, for securing the electrical box 12 to the bracket 10. The holes 88 may be positioned on the legs 26, 28, 36, and 38 such that the screws 98 are able to be engaged with the holes 88 without coming into contact with the extensions of the rails 40, 42, 46, and 48. In an overlap section 100 of the bracket 10, where the legs 26 and 36 overlap, and where the legs 28 and 38 overlap, the brackets 14 and 16 may be adjusted relative to one another such that the holes 88 of the bracket parts 14 and 16 align. The screws 98 may be sheet metal screws that have threads that cut to some extent into the portions that surround that holes 88 that they are screwed into, allowing the screws 98 to remain fixed in place without use of additional hardware, such as nuts. Similarly, the screws 98 may cut into holes in the flange tabs of the electrical box 12. The holes in the flange tabs may be substantially the same size as the holes 88, or may be a different size. The screws 98 may also be used for securing the bracket parts 14 and 16 together in a desired configuration, such as at a desired length. As many screws 98 may be used as necessary. As an alternative to the screws 98, other sorts of threaded fasteners may be used for a similar purpose. The screws 98 may come preinstalled in some of the holes 88, for example in holes 88 at one or both ends of the hole sets 90 and 92, which holes are unlikely to be used for mounting the electrical box 12.
The ears 24 and 34 have features to aid in mounting the bracket 10 to studs, other structure, or other devices or objects. The ear 24 has a pair of tabs 104 that can be bent down by an end user to engage a side surface of a stud or other object. The ear 24 also has a number of mounting holes 108, for receiving suitable fasteners, such as screws, for securing the bracket 10 to a stud or other object. One of the holes 108 is between the bendable tabs 104, and the other holes 108 are located further from the opening 66, near outer corners of the ear 24.
The ear 34 has a pair of tabs 114 that are bent down, protruding from the back face 50 of the bracket part 16, that facilitate positioning of the bracket 10 by pushing the tabs 114 against a stud or other object. The tabs 114 may be bent as part of the manufacturing process. Alternatively the tabs 114 may be configured to be bent by the end user, for example by hand or using a hand tool, such as a screwdriver. The ear 34 also has a mounting hole 118 for receiving a fastener, such as a threaded fastener like a sheet metal screw, for securing the ear 34 to a stud or other object.
With reference in particular to
The electrical box 12 may then be positioned as desired between the studs 150 and 152, without a need to hold the electrical bracket 10 in place during the positioning. The close spacing of the holes 88 allows a large number of possible positions of the electrical box 12 between the studs 150 and 152. This is an advantage in installations where precise placement of the electrical box 12 may be required. For instance, in hospitals it may be required that boxes for some equipment be positioned to an accuracy of 3.2 mm (0.125 inches). Once the box 12 is positioned where desired, the screws 98 (or other fasteners) may be used to secure the box 12 to the bracket 10.
As shown in
In the illustrated embodiment of
The box 12 alternatively may have any of a variety of other suitable configurations that allow it to engage the bracket 10 for mounting. Although there are advantages to using a backless box with a built-in mud ring, arrangements with a separate mud ring may be used instead.
The bracket 10 may be made of any of a variety of suitable materials, for example sheet steel, another metal, or plastic. Suitable fabrication steps, such as stamping, cutting, and bending, may be used to manufacture the bracket 10.
The bracket 10 may be used to install the box 12 in a ceiling, between ceiling beams. The bracket 10 may be used in any of a variety of other situations or configurations, especially where the length of the bracket 10 (the dimension from the ear 24 to the ear 34) is in a primarily horizontal direction.
The electrical box 12 may be engaged with the bracket 210 by sliding the flange tabs of the box 12 into engagement with the rails 220 and 222. The flange tabs with the spacing 162 are used for engaging the rails 220 and 222. Thus the rails 220 and 222 have a different spacing than the rails 40, 42, 46, and 48 (
The bracket 210 has a bottom 310 with a number of features used for mounting and stabilizing the bracket 210. A pair of bottom flange tabs 242 are on opposite sides of the bottom 310, and may be used for securing the bracket 210 to a channel or bracket 243, as shown in
The bottom 310 also has a series of bendable tabs 250, 252, and 254. The side tabs 250 and 254 may be bent inward, toward the back face 224, in the same direction as the bottom edge flange 244. The side tabs 250 and 254 also may be used to engage the bottom of structure, such as a footer 256 (
The bracket 210 has a top 260 that also has a series of features for mounting. The top 260 has a pair of top flange tabs 262 on opposite sides of the top 260. The top flange tabs 262 may be used for securing the bracket 210 to structure or another object, for example using fasteners such as sheet metal screws to secure the bracket 210 to the channel 243, as shown in
A top flange 270 may be initially located in the opening 226 that is bordered on either side by legs 234 and 236. The top flange 270 may be an angled flange, having a pair of parts 278 and 280 that are at right angles to each other. The proximal flange part 278, which is bendable connected to a bottom edge 284 of the top 260, may have a bendable tab 288. The distal flange part 280 may have a series of openings 290, configured to receive and clamp various sizes of runs of conduit, for example. Various sized punch-out portions may surround parts of the openings, with removal of one or more of the parts increasing the size of the openings 290, allowing the openings 290 to be configured by an end user to receive different sizes of conduits, or other objects. The tab 288 may be located so that it can operate to secure the top flange 270 to the rest of the top 260, as shown in
Alternatively the top flange 270 may be bent as shown in
The legs 234 and 236 each have various holes 300, for securing the electrical box 12 when the box 12 is engaged with the rails 220 and 222. Screws, such as sheet metal screws, may be screwed into the holes 300 and/or holes in the box's flange tabs, to hold the electrical box 12 (or multiple electrical boxes) in place relative to the bracket 210. The leg 234 also has a series of bendable tabs 304 that may be bent down to hold one or more boxes in place, for example to position the box(es) temporarily before they are permanently secured using fasteners in the holes 300. The legs 234 and 236 include respective locking tabs 312 and 314, at a location just below the bottom of the rails 220 and 222. The locking tabs 312 and 314 may be bent downward by an end user to prevent the electrical box(es) 12 from sliding down and disengaging from the rails 220 and 222.
The legs 234 and 236 may have markings 330 on them. The markings 330 may be etched lines, and may indicate where electrical boxes or other equipment are to be positioned in order to have the boxes at specified heights above the footer 256 (or the floor).
As noted above, the brackets 10 and 210 have many advantages over prior devices for mounting electrical boxes. The brackets 10 and 210 allow flexibility and accuracy in mounting any of a variety of electrical boxes in any of a variety of positions or configurations. Installations with the brackets 10 and 210 may also be performed efficiently, saving time in installation processes, and allowing installation with a minimum of separate parts to be manipulated.
Although the invention has been shown and described with respect to a certain preferred embodiment or embodiments, it is obvious that equivalent alterations and modifications will occur to others skilled in the art upon the reading and understanding of this specification and the annexed drawings. In particular regard to the various functions performed by the above described elements (components, assemblies, devices, compositions, etc.), the terms (including a reference to a “means”) used to describe such elements are intended to correspond, unless otherwise indicated, to any element which performs the specified function of the described element (i.e., that is functionally equivalent), even though not structurally equivalent to the disclosed structure which performs the function in the herein illustrated exemplary embodiment or embodiments of the invention. In addition, while a particular feature of the invention may have been described above with respect to only one or more of several illustrated embodiments, such feature may be combined with one or more other features of the other embodiments, as may be desired and advantageous for any given or particular application.
Number | Name | Date | Kind |
---|---|---|---|
740663 | Krantz | Oct 1903 | A |
1211182 | Kruse | Jan 1917 | A |
1786004 | Clayton | Dec 1930 | A |
1790031 | Vaughn | Jan 1931 | A |
1898282 | Almcrantz | Feb 1933 | A |
2023083 | Knell | Dec 1935 | A |
2378861 | Peevey | Jun 1945 | A |
2707221 | Frank | Apr 1955 | A |
2881924 | Kruse et al. | Apr 1959 | A |
2989206 | McAfee | Jun 1961 | A |
3365156 | Beck | Jan 1968 | A |
3424332 | Pimentel | Jan 1969 | A |
3424333 | Pimentel | Jan 1969 | A |
3575313 | Trachtenberg et al. | Apr 1971 | A |
3676571 | Rubinstein | Jul 1972 | A |
3952475 | Paskert | Apr 1976 | A |
4019647 | Arnold | Apr 1977 | A |
4165443 | Figart et al. | Aug 1979 | A |
4612412 | Johnston | Sep 1986 | A |
4634015 | Taylor | Jan 1987 | A |
4757967 | Delmore | Jul 1988 | A |
4842551 | Heimann | Jun 1989 | A |
5012043 | Seymour | Apr 1991 | A |
5025944 | Rodick | Jun 1991 | A |
5042673 | McShane | Aug 1991 | A |
5098046 | Webb | Mar 1992 | A |
5114105 | Young | May 1992 | A |
5293003 | Prairie, Jr. | Mar 1994 | A |
RE35075 | Lammens, Jr. | Oct 1995 | E |
5595362 | Rinderer et al. | Jan 1997 | A |
5736674 | Gretz | Apr 1998 | A |
5833110 | Chandler et al. | Nov 1998 | A |
5921737 | Ibey | Jul 1999 | A |
5931325 | Filipov | Aug 1999 | A |
5931425 | Oliva | Aug 1999 | A |
5959246 | Gretz | Sep 1999 | A |
6147304 | Doherty | Nov 2000 | A |
6204447 | Gretz | Mar 2001 | B1 |
6209836 | Swanson | Apr 2001 | B1 |
6307154 | Gretz | Oct 2001 | B1 |
6369322 | Gretz | Apr 2002 | B1 |
6384334 | Webb | May 2002 | B1 |
6533225 | Berges et al. | Mar 2003 | B1 |
6573449 | Vrame | Jun 2003 | B2 |
6576837 | Pimentel | Jun 2003 | B1 |
6590155 | Vrame et al. | Jul 2003 | B2 |
6666419 | Vrame | Dec 2003 | B1 |
6737576 | Dinh | May 2004 | B1 |
6749162 | Nicolides et al. | Jun 2004 | B2 |
6765146 | Gerardo | Jul 2004 | B1 |
6803521 | Vrame | Oct 2004 | B2 |
6820760 | Wegner et al. | Nov 2004 | B2 |
6870101 | Hull et al. | Mar 2005 | B1 |
6875922 | Petak et al. | Apr 2005 | B1 |
6956172 | Dinh | Oct 2005 | B2 |
6996943 | Denier et al. | Feb 2006 | B2 |
7036782 | Cheatham et al. | May 2006 | B2 |
7038131 | Gretz | May 2006 | B1 |
7053300 | Denier et al. | May 2006 | B2 |
7087837 | Gretz | Aug 2006 | B1 |
7151218 | Dinh | Dec 2006 | B2 |
7173184 | Hull et al. | Feb 2007 | B2 |
7189928 | Denier | Mar 2007 | B2 |
7214876 | Haberek et al. | May 2007 | B1 |
7259328 | Gretz | Aug 2007 | B1 |
7259337 | Gretz | Aug 2007 | B1 |
7273982 | Lalancette | Sep 2007 | B1 |
7276661 | Wegner et al. | Oct 2007 | B2 |
7300025 | Korcz | Nov 2007 | B2 |
7301099 | Korcz | Nov 2007 | B1 |
7306482 | Kidman | Dec 2007 | B1 |
7312396 | Gorman | Dec 2007 | B1 |
7410072 | Wegner et al. | Aug 2008 | B2 |
7439443 | Dinh | Oct 2008 | B2 |
7468486 | Yan | Dec 2008 | B2 |
7472875 | Rinderer | Jan 2009 | B2 |
7495170 | Dinh et al. | Feb 2009 | B2 |
7521631 | Dinh | Apr 2009 | B2 |
7531743 | Johnson et al. | May 2009 | B2 |
7572977 | Gorman | Aug 2009 | B2 |
7637385 | Wegner et al. | Dec 2009 | B2 |
7645936 | Magno, Jr. | Jan 2010 | B2 |
7718893 | Purves et al. | May 2010 | B2 |
7757875 | Lalancette et al. | Jul 2010 | B2 |
RE41661 | Dinh | Sep 2010 | E |
7798458 | Borbolla et al. | Sep 2010 | B2 |
7935886 | Jafari | May 2011 | B2 |
7956285 | Tally et al. | Jun 2011 | B2 |
8168887 | Phillips | May 2012 | B2 |
8210198 | Majocka | Jul 2012 | B1 |
8424827 | Dinh | Apr 2013 | B2 |
8455772 | Phillips | Jun 2013 | B2 |
8598454 | Laughlin | Dec 2013 | B2 |
9040848 | Phillips | May 2015 | B2 |
20050067546 | Dinh | Mar 2005 | A1 |
20080020632 | Gorman | Jan 2008 | A1 |
20080047729 | Wegner et al. | Feb 2008 | A1 |
20080053698 | Purves et al. | Mar 2008 | A1 |
20100084184 | Phillips | Apr 2010 | A1 |
Entry |
---|
“TSRBS1625 Telescoping Box Mount for single and multiple gang boxes”, Instruction Sheet, 2009, ERICO International Corporation, 3 pgs. |
Floor-Mount Box Support (FMBS1824) marketing brochure; © 2011 ERICO International Corporation. All rights reserved; retrieved from the Internet; <URL:http://www.erico.com/catalog/literature/F1080S-NAEN.pdf>. |
Number | Date | Country | |
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20140103180 A1 | Apr 2014 | US |