BRACKET FOR MOUNTING AN ELECTRICAL BOX TO THE OPEN FACE OF A METAL STUD
20220166200 · 2022-05-26
Inventors
Cpc classification
H02G3/126
ELECTRICITY
International classification
Abstract
A Z-bracket is adapted for mounting an electrical box to the open face of a metal stud. The invention has two mounting platforms with self-tapping screw holes. The flat brackets of an electrical box are secured to these mounting platforms. The invention has a retaining tab with at least one retaining indentation for screwing the retaining tab to the open face of a metal stud. A connector connects the retaining tab to the mounting platforms. The front edge of each mounting platform has a groove, which accommodates the tongue on a tab of the metal stud. Multiple triangular braces connect the mounting platforms to the connector for structural support. The invention is sized to fit a standard metal stud, providing an improved method for attaching electrical boxes to the open face of a metal stud.
Claims
1. A mounting bracket for the open face of a metal stud, comprising: a first mounting platform with a first outer edge, a first front edge, a first inner edge, and a first rear edge; a second mounting platform, coplanar with the first mounting platform, and having a second outer edge, a second front edge, a second inner edge, and a second rear edge; a connector perpendicular to the mounting platforms, having a front face and a rear face, with the first rear edge and the second rear edge both secured to the front face of the connector; a retaining tab parallel to the first and second mounting platforms and perpendicular to the connector, said retaining tab secured to the rear face of the connector.
2. The invention of claim 1, further comprising a first groove in the first front edge and a second groove in the second front edge.
3. The invention of claim 1, further comprising a first outer brace connecting the first outer edge to the connector; a first inner brace connecting the first inner edge to the connector in a plane perpendicular to the first mounting platform and to the connector; a second inner brace connecting the second inner edge to the connector in a plane perpendicular to the second mounting platform and to the connector; a second outer brace connecting the second outer edge to the connector; a first upper brace connecting the first inner edge to the connector, coplanar with the first mounting platform; a second upper brace connecting the second inner edge to the connector, coplanar with the second mounting platform.
4. The invention of claim 2, further comprising a first outer brace connecting the first outer edge to the connector; a first inner brace connecting the first inner edge to the connector in a plane perpendicular to the first mounting platform and to the connector; a second inner brace connecting the second inner edge to the connector in a plane perpendicular to the second mounting platform and to the connector; a second outer brace connecting the second outer edge to the connector; a first upper brace connecting the first inner edge to the connector, coplanar with the first mounting platform; a second upper brace connecting the second inner edge to the connector, coplanar with the second mounting platform.
Description
5. BRIEF DESCRIPTION OF THE DRAWINGS
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6. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0014] The invention 1, a mounting bracket, is shown in isolation in
[0015] A connector 13 is attached to the rear edges of both mounting platforms. The connector is a planar component perpendicular to the first mounting platform and to the second mounting platform. It has a front face and a rear face. The mounting platforms are attached to the front face of the connector.
[0016] A retaining tab 14 is connected to the rear face of the connector. The retaining tab is perpendicular to the connector and parallel to the mounting platforms. At least one retaining indentation 141 perforates the retaining tab.
[0017] The profile formed by the mounting platforms, the connector, and the retaining tab (e.g.
[0018] In particular, the invention is a Z-bracket adapted to mount an outlet box to the open face of a metal stud.
[0019] The invention 1 is designed to fit the open face 211 of a metal stud. For instance, the connector 13 is sized at the same height as a standard tab 212. Thus, when the retaining tab 14 of the mounting bracket is secured to the open face 211 of a metal stud, the mounting platforms 11 and 12 of the invention are aligned with the tongues 2121 on the stud. Further, the grooves 111 on the mounting platforms are sized to accommodate the tongues 2121 for a secure connection. The mounting platforms then occupy the plane where the fourth side of the stud would be if it were a closed shape.
[0020] An outlet box 41 is shown in
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