IP Library Granted Patent US 10,700,633
Granted Patent B2
US 10,700,633 · App. 15/721,585 · Granted Jun 30, 2020

Protection of electrical components in solar energy shade structure

Inventors: Jack DeBartolo, III (Phoenix, AZ); Robert Boscamp (Tempe, AZ); Thomas Headley (Scottsdale, AZ); Michael Nothum, Jr. (Tempe, AZ)
Assignee: Strategic Solar Energy, LLC
H02S20/23E04F10/08E04H6/025F24S20/67F24S25/00F24S25/13G06Q30/00G06Q30/0241G06Q90/00G06Q99/00H02S20/10H02S20/26H02S40/32Y02B10/12Y02B10/14Y02B10/20Y02E10/44Y02E10/47Y02E10/50Y04S10/58Y10S136/291
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Quick Facts
Patent No.
US 10,700,633
App. No.
15/721,585
Granted
Jun 30, 2020
Kind
B2
Abstract

In accordance with various exemplary embodiments, solar energy shade structures and support systems are disclosed that have electrical components concealed or screened within columns located under the structure. For example, a solar energy structure may comprise: a solar panel support structure, a plurality of solar panels supported by the solar panel support structure, a plurality of vertical supports connected to the solar panel support structure for supporting the solar panel support structure elevated above a surface, and a column, located under the solar panel support structure. The column comprises an electrical component mounted to the column in a screened manner, wherein the electrical component comprises at least one of a string inverter, a combiner, and a battery.

Claims (20)

1. A force lateral brace-frame for supporting a solar panel holding structure comprising:

a first height in a direction parallel to a vertical direction, a first long axis parallel to an X direction and perpendicular to the vertical direction, a first width along the first long axis, and a first thickness parallel to a Y direction, wherein the Y direction is perpendicular to both the vertical direction and the X direction, wherein the first width is greater than the first thickness, the force lateral brace-frame for counteracting lateral forces parallel to the X direction to create lateral stability,

wherein the force lateral brace-frame further comprises:

a first vertical support of the force lateral brace-frame,

a second vertical support spaced apart from the first vertical support,

a front cladding support coupled to the first vertical support and the second vertical support,

a rear cladding support coupled to the first vertical support and the second vertical support,

a first cladding coupled to the front cladding support and a second cladding coupled to the rear cladding support,

a first side enclosure panel adjacent to and positioned between the front cladding support and the rear cladding support,

a second side enclosure panel adjacent to and positioned between the front cladding support and the rear cladding support and positioned opposite the first side enclosure panel, and

an electrical component disposed between the first vertical support and the second vertical support, and the electrical component disposed between the first side enclosure panel and the second side enclosure panel.

2. The force lateral brace-frame of claim 1 , wherein the first cladding comprises a perforated metal, a metal mesh, or a woven fabric, and further comprising an attachment mechanism for at least one of the front cladding support and the rear cladding support, the attachment mechanism configured for lockably accessing the electrical component.

3. The force lateral brace-frame of claim 1 , further comprising a component mounting frame for mounting the electrical component to the force lateral brace-frame, wherein the component mounting frame is disposed between the first vertical support and the second vertical support.

4. The force lateral brace-frame of claim 1 , wherein the electrical component is a string inverter.

5. The force lateral brace-frame of claim 1 , further comprising an opening in the force lateral brace-frame suitable for allowing air to flow up from the electrical component and out to an environment surrounding the force lateral brace-frame.

6. The force lateral brace-frame of claim 1 , further comprising a top opening for allowing air to pass from an interior portion of the force lateral brace-frame, wherein the interior portion is at least partially located between the first side enclosure panel, the second side enclosure panel, the first cladding and the second cladding.

7. The force lateral brace-frame of claim 1 , wherein the force lateral brace-frame has a width, a depth, a height, and a space within the force lateral brace-frame, wherein the electrical component is mounted to the force lateral brace-frame by locating the electrical component within the space within the force lateral brace-frame.

8. The force lateral brace-frame of claim 1 , wherein the electrical component is mounted to the force lateral brace-frame and configured to be screened from view by at least one of a sign, a lighting element, a decorative panel, and an advertising panel.

9. The force lateral brace-frame of claim 1 , wherein the electrical component is screened from view with a panel comprising a breathable mesh cloth.

10. The force lateral brace-frame of claim 1 , wherein the electrical component is mounted to the force lateral brace-frame by locating the electrical component within an outermost portion of the force lateral brace-frame.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 14, 2017
From: DEBARTOLO, JACK, III; BOSCAMP, ROBERT; HEADLEY, THOMAS; NOTHUM, MICHAEL
To: STRATEGIC SOLAR ENERGY, LLC
Reel/Frame 044399/0375 →
Continuity (6)
Continuation In Part 15094760 · Apr 8, 2016
Continuation 14472876 · Aug 29, 2014
Continuation 13185190 · Jul 18, 2011
Provisional Application 62401735 · Sep 29, 2016
Provisional Application 61399728 · Jul 16, 2010
Related Publication 20180041159A1 · Feb 8, 2018
Cited By (2)
US 1,148,180 US 12,325,999