IP Library Granted Patent US 11,258,397
Granted Patent B2
US 11,258,397 · App. 16/787,307 · Granted Feb 22, 2022

Solar module mounting system

Inventor: Josh Von Deylen (Bryan, OH)
Assignee: AP ALTERNATIVES, LLC
H02S20/10F16B5/0635F16B5/0685H02S20/20
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Quick Facts
Patent No.
US 11,258,397
App. No.
16/787,307
Granted
Feb 22, 2022
Kind
B2
Abstract

A mounting system for a solar module that uses a resilient clip to locate and secure the solar module in a desired location.

Claims (24)

1. A mounting system for solar module comprising:

a mounting rack, having a mounting plate to support a solar module, positioned on a structure;

a clamp secured to the mounting rack, the clamp having a top bracket for positioning on an upper surface of the solar module and a resilient clip for positioning on a lower surface of the solar module, the resilient clip being operatively connected to the top bracket, the clip having a center portion and resilient legs that extend from each side of the center portion, at least one barb being positioned on each resilient leg, the at least one barb designed to engage a shoulder on the lower surface of the solar module to maintain the solar module in the desired position with respect to the clamp, the top bracket having an aperture and the resilient clip having an opening, a bolt passes through the aperture in the top bracket and the opening in the clip to connect the top bracket and the clip of the clamp, and a spring is positioned around a portion of the bolt that is located between the top bracket and the clip, the spring resiliently biasing the top bracket and the clip in a desired spaced apart position.

2. The mounting system of claim 1 wherein the clip is made from spring steel and the resilient legs extend from the center portion in a direction towards the top bracket.

3. The mounting system of claim 2 wherein the resilient legs are disposed at an angle from about 20 degrees to about 30 degrees with respect to the center portion.

4. The mounting system of claim 1 wherein the spring provides a resilient biasing force that separates the top bracket and the clip.

5. The mounting system of claim 4 wherein the top bracket has flanges that extend from two sides of the top bracket, the flanges disposed for engaging a surface of the solar module.

6. The mounting system of claim 5 wherein a nut is positioned on the end of the bolt that extends beyond the resilient clip.

7. The mounting system of claim 6 wherein the resilient clip has at least one grounding tab, the at least one grounding tab being disposed to engage the mounting plate.

8. The mounting system of claim 7 wherein the mounting plate has at least one alignment slot disposed for receiving the at least one grounding tab.

9. The mounting system of claim 8 wherein the mounting plate has at least one keyhole-shaped opening, the at least one keyhole-shaped opening having a circular section with a slot extending from the circular section, the circular section being configured to accept the nut on the end of the bolt and the slot being configured to accept the bolt, the slot having a width that is less than the diameter of the nut.

10. The mounting system of claim 9 wherein the top bracket has a hollow portion and the bolt has a head, the head of the bolt disposed to engage an upper surface of the top bracket.

11. The mounting system of claim 10 wherein a safety spring is positioned on the top bracket, the safety spring having a U-shaped portion and a resilient flange that extends from the U-shaped portion, the resilient flange extending over an upper surface of the top bracket.

12. The mounting system of claim 11 wherein a leg of the U-shaped portion extends into the hollow portion of the top bracket to position the safety spring with respect to the top bracket.

13. The mounting system of claim 12 wherein the resilient flange extends from a leg of the U-shaped portion that is not positioned in the hollow portion of the top bracket.

14. The mounting system of claim 13 wherein the resilient flange has an opening, the opening disposed to be positioned around the head of the bolt, the resilient flange can be displaced in a direction towards the top bracket to provide access to the head of the bolt.

15. The mounting system of claim 14 wherein the opening in the resilient flange has opposed sides, the opposed sides disposed for engaging the head of the bolt to prevent the bolt from being rotated when the resilient flange is in an undisplaced position.

16. The mounting system of claim 1 wherein the at least one barb is in the shape of a hook that extends in a direction towards the center portion of the resilient clip.

17. The mounting system of claim 1 wherein a plurality of barbs are positioned on each resilient leg.

18. The mounting system of claim 17 wherein the plurality of barbs extend from the resilient clip in a direction towards the top bracket.

19. The mounting system of claim 18 wherein the plurality of barbs extend from the resilient clip from a distance from about 0.25 of an inch to about 0.75 of an inch.

20. A mounting system for a solar module comprising:

a mounting rack, having a mounting plate to support a solar module, positioned on a structure;

a clamp secured to the mounting rack, the clamp having a top bracket for positioning on an upper surface of the solar module and a resilient clip for positioning on a lower surface of the solar module, the resilient clip being operatively connected to the top bracket, the clip having a center portion and resilient legs that extend from each side of the center portion; the resilient legs of the clip are projections that extend from the center portion in a direction towards the top bracket, the resilient legs being disposed to be substantially perpendicular to the center portion; at least one bar being positioned on each resilient leg, the at least one barb extends from an end of the resilient legs that is spaced apart from the center portion; the resilient legs are positioned in opposed parallel relationship from each end of the center portion; the at least one barb extends from the resilient leg in a direction towards the opposed resilient leg; and the at least one barb designed to engage a shoulder on the lower surface of the solar module to maintain the solar module in the desired position with respect to the clamp.

Assignments (3)
PATENT SECURITY AGREEMENT Recorded Oct 14, 2025
From: APA SOLAR, LLC
To: GOLDMAN SACHS BANK USA, AS COLLATERAL AGENT
Reel/Frame 073067/0849 →
CHANGE OF NAME Recorded Dec 28, 2022
From: AP-ALTERNATIVES, LLC
To: APA SOLAR, LLC
Reel/Frame 062231/0589 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2022
From: DEYLEN, JOSH VON
To: AP ALTERNATIVES, LLC
Reel/Frame 058570/0471 →
Continuity (1)
Related Publication 20210249986A1 · Aug 12, 2021
Cited By (2)
US 12,281,750 US 12,292,075