IP Library › Granted Patent US 12,202,441
Granted Patent B2
US 12,202,441 · App. 18/107,394 · Granted Jan 21, 2025

Solar panel and articulating cargo carrier

Inventor: George Van Straten (Chassell, MI)
Assignee: Van Straten Enterprises, Inc.
B60R9/045B60R9/055B60R9/06B60R9/10B60R16/033H02S10/40H02S30/20H02S40/38H02S40/12
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Quick Facts
Patent No.
US 12,202,441
App. No.
18/107,394
Granted
Jan 21, 2025
Kind
B2
Abstract

A vehicle bed deployable solar power unit and cargo hauler assembly includes an articulating platform frame, a solar panel and a cargo carrier. The solar panel is carried by the articulating frame moveable between a stowed position and a deployed position. The cargo carrier is supported by the articulating platform frame movable relative to the solar panel to prevent operational interference between the solar panel in articulated positions and the cargo carrier. A method is also provided.

Claims (30)

1. A vehicle deployable solar power unit and cargo carrier assembly, comprising:

an articulating frame;

a solar panel carried by the articulating frame moveable between a stowed position and a deployed position; and

a cargo carrier supported by the articulating frame movable relative to the solar panel to prevent access interference between the cargo carrier and the solar panel in the deployed position.

2. The vehicle deployable solar power unit and cargo carrier assembly of claim 1 , further comprising a heater provided on the solar panel configured to mitigate condensate occlusion on a receiving surface of the solar panel.

3. The vehicle deployable solar power unit and cargo carrier assembly of claim 1 , further comprising a storage battery configured to receive and store electricity collected from the solar panel.

4. The vehicle deployable solar power unit and cargo carrier assembly of claim 1 , wherein the cargo carrier is a cargo box.

5. The vehicle deployable solar power unit and cargo carrier assembly of claim 1 , wherein the articulating frame comprises a slider frame configured to slide apart a plurality of stacked solar panels into a deployed unstacked adjacent array of individual solar panels.

6. The vehicle deployable solar power unit and cargo carrier assembly of claim 5 , wherein the articulating frame further comprises a pair of spaced apart and parallel substantially horizontal expansible frame assemblies and a pair of spaced apart and parallel substantially vertical expansible frame assemblies each having a substantially horizontal shelf tube member configured to carry a cargo box.

7. The vehicle deployable solar power unit and cargo carrier assembly of claim 1 , wherein the articulating frame comprises at least one of: movement in a substantially horizontal direction; and movement in a substantially vertical direction configured to provided access room to the cargo carrier relative to the solar panel when in a deployed position.

8. The vehicle deployable solar power unit and cargo carrier assembly of claim 1 wherein the cargo carrier articulates between an open position and a closed position necessitating movement of the cargo carrier relative to the solar panel when deployed to provide greater access room to the open cargo carrier.

9. The vehicle deployable solar power unit and cargo carrier assembly of claim 8 , wherein the cargo carrier is a cargo box articulated between closed and open positions to facilitate access to items stored therein.

10. The vehicle deployable solar power unit and cargo carrier assembly of claim 9 , wherein the cargo carrier is configured to retain cargo and is articulated to facilitate access to the cargo relative to the solar panel when in a deployed position.

11. A vehicle deployable solar power unit and cargo carrier assembly, comprising:

an articulating frame;

a solar panel carried on and deployed by the articulating frame between a stowed position and a deployed position; and

a cargo carrier supported by the articulating frame movable relative to the solar panel to enable access to the cargo carrier when the solar panel is in the deployed position.

12. The vehicle deployable solar power unit and cargo carrier assembly of claim 11 , wherein the solar panel is an array of nested solar panels movable relative to one another from a stowed position having a minimal solar panel collection surface to a deployed position having an enlarged solar panel collection surface.

13. The vehicle deployable solar power unit and cargo carrier assembly of claim 11 , further comprising an elongate heater provided in heat transfer relation with a top surface of the solar panel configured to mitigate condensate occlusion from the top surface of the solar panel.

14. The vehicle deployable solar power unit and cargo carrier assembly of claim 13 , further comprising a battery coupled with the heater and the solar panel and configured to deliver power to the heater.

15. The vehicle deployable solar power unit and cargo carrier assembly of claim 14 , wherein the cargo carrier is a cargo box.

16. The vehicle deployable solar power unit and cargo carrier assembly of claim 11 , wherein the articulating frame comprises a slider frame and a plurality of solar panels are stacked within the slider frame configured to deploy the solar panels into an unstacked position having an enlarged solar collection surface over the stacked position.

17. The vehicle deployable solar power unit and cargo carrier assembly of claim 16 , wherein the slider frame comprises a substantially horizontal expansible frame assembly and a substantially vertical expansible frame.

18. A method of deploying a solar panel array with a cargo carrier, comprising:

providing an articulating platform frame, a solar panel carried by the platform frame, and a cargo carrier carried by the platform frame;

articulating the platform frame to deploy the solar panel from a stowed position to a deployed position;

articulating the cargo carrier to a deployed position relative to the solar panel to provide access to the cargo carrier; and

presenting the solar panel to receive solar energy.

19. The method of claim 18 , wherein the solar panel is one of a plurality of nested solar panels, and wherein articulating the platform frame to deploy the solar panel comprises sliding apart a plurality of nested solar panels to expose each solar panel top surface to receive solar energy.

20. The method of claim 19 , further comprising heating the solar panel top surface to mitigate condensation occlusion on the top surface of the solar panel.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 8, 2023
From: VAN STRATEN, GEORGE A
To: VAN STRATEN ENTERPRISES, INC.
Reel/Frame 062632/0538 →
Continuity (3)
Provisional Application 63342080 · May 14, 2022
Provisional Application 63308194 · Feb 9, 2022
Related Publication 20230249625A1 · Aug 10, 2023
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