Surface mount assemblies for a solar panel system
11695369 · 2023-07-04
Assignee
Inventors
Cpc classification
F16B19/008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24S2025/6005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24S2025/021
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24S25/61
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/47
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H02S30/00
ELECTRICITY
F24S25/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16B19/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24S25/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24S25/61
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Surface mount assembly for mounting to a solar panel frame to an installation surface is disclosed. In some embodiments, a surface mount assembly includes a base and an enclosure. The base includes a lower member and an upper member. The lower member could include a brace, a center aperture extending through the lower and upper members for receiving a fastener to facilitate the mounting to a solar panel frame; the upper member could include a hub from which a plurality of arms may extend. The mount enclosure could include a chamber with a chamber aperture for receiving a fastener from the surface mount, a post support extending upward from the chamber and forming a post aperture for receiving a post, and a horizontal member with one or more sealant grooves extending horizontal outward from the chamber.
Claims
1. A surface mount, comprising: a base comprised of a lower member and an upper member, where the lower member is comprised of: a first aperture extending from a bottom surface of the lower member to an upper surface of a hub of the upper member, where the first aperture is configured to receive a fastener extending upwardly from the bottom surface and through the first aperture, a plurality of second apertures encompassing the first aperture, where each one of the second apertures extends between an upper surface of the lower member and the bottom surface, and a brace extending outwardly from one side of the lower member, and the upper member is comprised of: the hub to which the first aperture extends, and a plurality of first arms and a plurality of second arms, where each one of the plurality of first arms extends outwardly from the hub to an upper surface of the brace, and each one of the plurality of second arms extends outwardly from the hub to the upper surface of the lower member.
2. The surface mount of claim 1, wherein the fastener and the first aperture are threaded.
3. The surface mount of claim 1, wherein the fastener is a flush fastener pressed against the bottom surface when the base is mounted to an installation surface.
4. The surface mount of claim 1, wherein the bottom surface includes a cavity at the first aperture configured to receive the fastener prior to being received by the first aperture.
5. The surface mount of claim 1, wherein a distal end of the fastener is configured to engage a post received by a post aperture of a surface mount enclosure after extending upwardly through both the first aperture and a chamber aperture of the surface mount enclosure.
6. The surface mount of claim 5, wherein the engagement of the distal end of the fastener to the post facilitates a mounting of the surface mount enclosure to an installation surface when the base is mounted to the installation surface.
7. A surface mount enclosure, comprising: a chamber comprised of a perimeter, an inner surface, an outer surface, and a chamber aperture extending between the inner and outer surfaces; a post support extending upwardly from the chamber and forming a post aperture; and a horizontal member extending horizontally and outwardly from the perimeter, where the chamber aperture is configured to receive a distal end of a fastener extending upwardly from the inner surface and through the outer surface, the post aperture is configured to receive a post configured to engage the distal end of the fastener, and the horizontal member includes a plurality of grooves parallel to each other, where the fastener couples a base to the surface mount enclosure, and the fastener is a flush fastener pressed against a bottom surface of the base when the base is mounted to an installation surface.
8. The surface mount enclosure of claim 7, wherein the plurality of grooves is configured to receive sealant prior to the surface mount enclosure being mounted to the installation surface.
9. The surface mount enclosure of claim 7, wherein the fastener and the post are threaded.
10. The surface mount enclosure of claim 7, wherein a hub of an upper surface of the base engages a lower portion of the inner surface of the chamber when the base is coupled to the surface mount enclosure.
11. The surface mount enclosure of claim 7, wherein the distal end of the fastener extends upwardly through an aperture of the base prior to being received by the chamber aperture and prior to the base being coupled to the surface mount enclosure.
12. A surface mount assembly, comprising: a fastener and a post; a surface mount comprised of: a base comprised of a lower member and an upper member, where the lower member is comprised of: a base aperture extending from a bottom surface of the lower member to an upper surface of a hub of the upper member and configured to receive the fastener; a surface mount enclosure comprised of: a chamber comprised of a perimeter, an inner surface, an outer surface, and a chamber aperture extending from the inner surface to the outer surface and configured to receive the fastener; and a post aperture configured to receive the post, where the fastener is received by the base aperture prior to the base being mounted to an installation surface, the fastener is received by the chamber aperture and the post aperture after the base is mounted to the installation surface.
13. The surface mount assembly of claim 12, wherein the post aperture is formed from a post support extending upwardly from the chamber.
14. The surface mount assembly of claim 12, wherein the fastener is a flush fastener pressed against the bottom surface when the base is mounted to the installation surface.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) For a fuller understanding of the inventive embodiments, reference is made to the following description taken in connection with the accompanying drawings in which:
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DETAILED DESCRIPTION
(11) In the following description, several specific details are presented to provide a thorough understanding of embodiments of the inventive concepts disclosed herein. One skilled in the relevant art will recognize, however, that the inventive concepts disclosed herein can be practiced without one or more of the specific details or in combination with other components. In other instances, well-known implementations or operations are not shown or described in detail to avoid obscuring aspects of various embodiments of the inventive concepts disclosed herein.
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(13) Base 110 may be divided into forward and aft portions 112 and 114, respectively, and comprised of a lower member 120 and an upper member 150. In some embodiments, lower member 120 and upper member 150 are integral with one another. Lower member 120 may include an upper surface 122 and a lower surface 124. In some embodiments, lower surface 124 could include a center cavity 126. In some embodiments, lower surface 124 could include a plurality of cavities 128a through 128f, inclusive.
(14) Base 110 includes an aperture 130 extending between an upper surface 152 of upper member 150 and cavity 126, and a plurality of apertures 132a through 132f, extending between upper surface 122 and cavities 128a through 128f, respectively. In some embodiments, sealant could be applied to cavity 126 and cavities 128a through 128f prior to base 110 being mounted to installation surface 10 to prevent moisture incursion. Aperture 130 may be threaded to receive complementary threads of fastener 350 extending upwardly from cavity 126 prior to base 110 being mounted to installation surface 10 until lower surface 352 of fastener 350 engages a flat upper surface 134 of cavity 126 and distal end 354 of fastener 350 completes its travel through aperture 130.
(15) Although the preceding discussion includes cavity 126 and aperture 130 that is threaded, the embodiments herein are not limited to these. For example, a flush fastener, such as but not limited to a persert flush fastener, may be pressed against lower surface 124 and inserted or pressed into aperture 130 such that a distal end of the flush fastener extends beyond upper surface 152 of upper member 150 and a portion 220 of outer surface 218 of chamber 250 to engage post 400 as discussed below.
(16) Forward portion 112 of lower member 120 includes a brace 140 extending outwardly from lower member 120. In some embodiments, brace 140 will enable the ability for an installer to mount base 110 to installation surface 10 using one fastener only inserted into aperture 132a as discussed below for
(17) Upper member 150 may include upper surface 152 having a hub 154 that includes aperture 130 and from which a plurality of arms 156a through 156f, inclusive. Upper surface 152 may include upper surfaces 158a through 158f, respectively, extend outwardly and downwardly from hub 154 until upper surfaces 156a and 156f reach the edge of upper surface 144 of brace 142, as shown, and upper surfaces 158b through 158e reach the of upper surface 122 of lower member 120, as shown. As observed, the individual extended lengths of arms 156a and 156f extending from hub 152 are greater the individual extended lengths of arms 156b through 156e, inclusive.
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(19) Vertical post support 216 forms a post aperture 206 for receiving post 400 when mounting enclosure 200 to installation surface 10 once base 110 has been mounted to installation surface 10. Post aperture 206 includes an inner surface 224 extending upwardly from portion 220 of outer surface 218 of chamber 250 until reaching a lip 226 at upper surface 204. In some embodiments, portion 220 is configured with a flat surface to engage a flat surface of post 400.
(20) Lower surface of horizontal lower member 214 includes outwardly extending parallel walls 252, 254, 256, and 258 forming parallel grooves 260, 262, and 264, as shown, for receiving sealant upon the mounting of enclosure 200 to installation surface 10.
(21) Inner surface of chamber 250 includes a lower portion 270 with an aperture 222 extending to portion 220 of outer surface 218 of chamber 250. Lower portion 270 may be configured or designed with a surface to engage the surface of hub 152 of base 110 when enclosure 200 is mounted to installation surface 10 above base 110. In some embodiments, the surface of lower portion 270 and the surface of hub 152 are flat surfaces.
(22) Distal end 354 of fastener 350 extends upwardly through aperture 222 to engage internal threads of post 400. To mount enclosure 200 to installation surface 10, post 400 engages distal end 354 of aperture 250 and tightened to drive post 400 downward until reaching horizontal inner surface 220 of post aperture 206 and a desired compressive force between post 400 and horizontal inner surface 220 of post aperture 206 and between lower portion 270 of inner surface of chamber 250 and hub 152 of base 110 are reached. Upon installation of enclosure 200, an installer could apply sealant to assist in the prevention of water incursion into chamber 250.
(23) Inner surface of chamber 250 includes a portion 272 extending upwardly from lower portion 270 until reaching an upper portion 274. Also, inner surface of chamber 250 includes a portion 276 extending downwardly from upper portion 274 until reaching wall 252.
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(34) It should be understood that the aspects, features and advantages made apparent from the foregoing are efficiently attained and, since certain changes may be made in the disclosed inventive embodiments without departing from the spirit and scope of the invention, it is intended that all matter contained herein shall be interpreted as illustrative and not in a limiting sense.