IP Library Granted Patent US 10,707,807
Granted Patent B2
US 10,707,807 · App. 15/912,343 · Granted Jul 7, 2020

Pyramidal wall sections

Inventor: Jonathan Jacques (Peabody, MA)
H02S30/10B62D33/046E04B2/72E04D1/30E04F13/074F16C11/04F16C11/0619H02S20/32H02S40/22H02S40/34H02S40/38H02S99/00B60L8/003B60L2200/28B62D35/001E04D2001/308E04F13/0862E04F13/0871F16C11/06F16C11/12F16C2380/00H02S10/40H02S20/21H02S20/24Y02E10/52Y02T10/7083Y02T10/7241
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Quick Facts
Patent No.
US 10,707,807
App. No.
15/912,343
Granted
Jul 7, 2020
Kind
B2
Abstract

Solar panel assemblies and wall sections using such assemblies are described. In one solar panel assembly, there is a mounting post and three or more triangular shaped panels. Each triangular shaped panel is a solar panel responsive to a first spectrum of light and transparent to a second spectrum of light. The solar panel assembly also includes hinges which connect the triangular shaped panels to the mounting post. The at least three triangular shaped panels can move between a flat configuration and an inverted pyramid configuration. In a further embodiment of the solar panel assembly, the triangular shaped panels form a first solar panel layer, and the assembly also includes one or more additional solar panel layers. Each of the additional solar panel layers being responsive to an associated spectrum of light.

Claims (65)

1. A solar panel assembly comprising:

a mounting post;

at least three triangular shaped panels, each triangular shaped panel comprising a solar panel responsive to a first spectrum of light and transparent to a second spectrum of light; and

at least three hinges, wherein for each triangular shaped panel, an associated hinge connects the triangular shaped panel to the mounting post,

wherein the at least three triangular shaped panels are configured to move between a flat configuration and an inverted pyramid configuration.

2. The solar panel assembly of claim 1 , wherein the at least three hinges are one of:

ball and socket hinges, wherein the mounting post comprises the socket connectors,

ball and socket hinges, wherein the mounting post comprises the ball connectors, and

living hinges.

3. The solar panel assembly of claim 1 , wherein each triangular shaped panel is configured to be bonded or snap fit into a pyramidal shaped cavity.

4. The solar panel assembly of claim 1 , wherein each triangular shaped panel is one of: single sided and bifacial.

5. The solar panel assembly of claim 1 , wherein the second spectrum of light is within a visible spectrum of light.

6. The solar panel assembly of claim 1 , wherein each triangular shaped panel comprises nanowires forming contacts throughout and along edges of the triangular shaped panel.

7. The solar panel assembly of claim 6 , wherein nanowires comprise at least one of: graphene and a superconductive material.

8. The solar panel assembly of claim 6 , wherein the nanowires and the contacts are transparent.

9. The solar panel assembly of claim 1 , wherein each triangular shaped panel comprises a geometric pattern of contacts.

10. The solar panel assembly of claim 9 , wherein geometric pattern of contacts is a honeycomb pattern.

11. The solar panel assembly of claim 1 , wherein the mounting post comprises wiring layers providing a conductive path.

12. The solar panel assembly of claim 1 , wherein the at least three triangular shaped panels form a first solar panel layer, and the solar panel assembly further comprising at least one additional solar panel layer, each of the at least one additional solar panel layer being responsive to a different associated spectrum of light,

wherein the mounting post comprises a plurality of slots configured to hold individual solar panels of the at least one additional solar panel layer.

13. The solar panel assembly of claim 12 , wherein first solar panel layer and the at least one additional solar panel layer are one of: flat and curved, and

wherein first solar panel layer and the at least one additional solar panel layer are relatively parallel.

14. The solar panel assembly of claim 12 , wherein the first solar panel layer and the at least one additional solar panel layer are staggered and offset to each other.

15. The solar panel assembly of claim 1 , wherein the inverted pyramid configuration defines a footprint, wherein the footprint is one of: a regular polygon, an irregular polygon, a diamond or a rhombus.

16. The solar panel assembly of claim 1 , wherein the at least three triangular shaped panels are one of: even or uneven with respect to each other.

17. The solar panel assembly of claim 1 , wherein the at least three triangular shaped panels comprise four triangular shaped panels, and the inverted pyramid configuration defines one of: a square footprint and a diamond shaped footprint.

18. The solar panel assembly of claim 1 , wherein the mounting post comprises a reflective cap.

19. The solar panel assembly of claim 1 , further comprising at least one light-emitting diode (LED).

20. The solar panel assembly of claim 19 , wherein the at least one LED is powered by the solar panel assembly.

21. A solar panel assembly comprising:

at least three triangular shaped panels, each triangular shaped panel comprising a solar panel responsive to a first spectrum of light and

an energy storage component,

wherein the energy storage component and the at least three triangular shaped panels define an inverted pyramid configuration, the energy storage component in a first portion of the inverted pyramid configuration and the at least three triangular shaped panels in a second, exterior facing portion of the inverted pyramid configuration,

wherein the at least three triangular shaped panels are configured to provide energy to the energy storage component.

22. The solar panel assembly of claim 21 , wherein the energy storage component comprises at least one of: a super-capacitor, a capacitor and a battery.

23. The solar panel assembly of claim 21 , further comprising at least one light-emitting diode (LED).

24. The solar panel assembly of claim 23 , wherein the at least one LED is powered by the energy storage component.

25. A solar panel assembly comprising:

a first layer comprising at least three first-layer panels, each first-layer panel comprising a triangular-shaped solar panel responsive to a first spectrum of light;

a second layer comprising at least three second-layer panels, each second-layer panel comprising a triangular-shaped solar panel responsive to a second spectrum of light and transparent to a third spectrum of light;

wherein the third spectrum of light includes at least a portion of the first spectrum of light,

wherein the first layer and the second layer are disposed in an inverted pyramid configuration, and

wherein the second layer at least partially overlaps the first layer.

26. The solar panel assembly of claim 25 , further comprising a mounting post, wherein the first layer is arrayed around the mounting post at a first length from an apex of the inverted pyramid configuration and the second layer is arrayed around the mounting post at a second length from the apex of the inverted pyramid configuration, the first length being shorter than the second length.

27. The solar panel assembly of claim 25 , wherein the solar panel assembly has a plurality of layers comprising at least the first layer and the second layer, wherein each layer in the plurality of layers is at least one of:

independently oriented,

independently angled,

concentrically nested,

parallel to a footprint of the inverted pyramid configuration.

28. The solar panel assembly of claim 25 , further comprising at least one light-emitting diode (LED).

29. The solar panel assembly of claim 28 , wherein the at least one LED is powered by the solar panel assembly.

30. A solar panel assembly comprising:

a mounting post;

at least three triangular shaped panels disposed in an inverted pyramid configuration around the mounting post, each triangular shaped panel comprising a solar panel responsive to a first spectrum of light; and

at least one energy storage component,

wherein each of the at least three triangular shaped panels is disposed at an angle between 5° and 85° with respect to the horizontal and

wherein at least one of the at least three triangular shaped panels is configured to provide energy to the at least one energy storage component.

31. The solar panel assembly of claim 30 , wherein the inverted pyramid configuration defines a footprint, wherein the footprint is one of: a regular polygon, an irregular polygon, a diamond or a rhombus.

32. The solar panel assembly of claim 30 , wherein the at least three triangular shaped panels are one of: even or uneven with respect to each other.

33. The solar panel assembly of claim 30 , wherein the at least three triangular shaped panels are curved.

34. The solar panel assembly of claim 33 , wherein the at least three triangular shaped panels are one of: convex or concave.

35. The solar panel assembly of claim 30 , wherein the mounting post comprises a reflective surface.

36. The solar panel assembly of claim 30 , wherein the at least three triangular shaped panels are photovoltaic solar panels.

37. The solar panel assembly of claim 30 , further comprising at least one light-emitting diode (LED).

38. The solar panel assembly of claim 37 , wherein the at least one LED is powered by the at least one energy storage component.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 30, 2024
From: JACQUES, JONATHAN
To: 4D VISION CORP
Reel/Frame 068739/0128 →
Continuity (3)
Continuation In Part 15484762 · Apr 11, 2017
Provisional Application 62321287 · Apr 12, 2016
Related Publication 20180226917A1 · Aug 9, 2018
Cited By (2)
US 12,302,740 US 12,456,943