IP Library Granted Patent US 12712487
Granted Patent B2
US 12712487 · App. 18/661,563 · Granted Aug 18, 2026

Photovoltaic assembly

Inventor: Walter Brunhart (La Paz, BO)
H02S30/20H02S20/30H02S30/10H02S40/30
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Quick Facts
Patent No.
US 12712487
App. No.
18/661,563
Granted
Aug 18, 2026
Kind
B2
Abstract

A photovoltaic system has photovoltaic modules which can be arranged in a row and are mounted on a support frame. Adjacent photovoltaic modules with their support frames are connected to one another in an articulated manner by joints or hinges and can be transferred via a drive unit from a substantially extended and flat state into a pushed-together, compact state and vice versa. The support structure comprises a first pair of guide rails comprised of two guide rails arranged at a distance from one another. Arranged laterally on the photovoltaic modules and on the support frames, respectively, are freely rotatable impellers, the mutual spacing of which corresponds to the spacing of the mutually opposite guide rails, so that the photovoltaic modules with low rolling resistance in the direction of the guide rails can be spread out or moved together.

Claims (24)

1 . A photovoltaic system, comprising:

a plurality of support frames, each having a plurality of photovoltaic modules arranged in a row and mounted thereto,

wherein adjacent photovoltaic modules with their respective support frames are configured to be articulated relative to one another by joints and can be moved from an extended state to a retracted state and vice versa,

a support structure for supporting the plurality of support frames, and

a drive unit configured to move the photovoltaic modules from the extended state to the retracted state and vice versa,

wherein the support structure comprises a first pair of guide rails consisting of two guide rails

arranged at a distance from one another, and is laterally connected to the photovoltaic modules or guide elements on the support frame,

wherein the guide rails are U-shaped profiles, each having an opening, with the openings being oriented toward one another providing two separate and vertically spaced tracks arranged one from the other,

wherein mutual spacing from one another corresponds to a spacing of the mutually opposite guide rails, a turning section and a bearing section on the guide rails connecting, the bearing section being dimensioned such that the

photovoltaic modules can be arranged vertically next to one another, and the turning section is designed to transfer a support frame with the photovoltaic modules arranged thereon from the vertical to a substantially horizontal or slightly inclined position, and vice versa, characterized in that the support frames of the photovoltaic modules are arranged in a storage section in a freely suspended manner on the guide rails, and the guide elements are freely rotatable impellers having an axis of rotation, which runs horizontally to and in a plane of the guide rails and at least one freely rotatable roller having an axis of rotation, which runs perpendicular to a plane passing through the guide rails for lateral guidance of multiple carriages, so that the photovoltaic modules can be spread out or retracted in the direction of the guide rails with low rolling resistance.

2 . The photovoltaic system according to claim 1 , wherein two adjacent support frames are each connected via two lateral carriages connected to each other in an articulated manner.

3 . The photovoltaic system according to claim 2 , wherein the carriage comprises a support body and at least one or more, wheels arranged on the support body, the axis of rotation of which runs parallel to one another through a plane passing through the guide rails.

4 . The photovoltaic system according to claim 1 , wherein the at least one freely rotatable roller comprises two freely rotatable rollers.

5 . The photovoltaic system according to claim 1 , wherein pivot axes of the photovoltaic modules are located parallel at a distance from the axis of rotation of the impeller.

6 . The photovoltaic system according to claim 1 , wherein the guide rails are U-shaped profiles, legs of the U-shaped profiles form first and second tracks for the impellers, wherein in operation the legs of the U-profile interact with the rollers of the carriage.

7 . The photovoltaic system according to claim 1 , wherein in a direction of the guide rails, the carriages are arranged alternately on the first and second tracks one above the other.

8 . The photovoltaic system according to claim 1 , wherein a track of the turning section ends before the storage section, and is at least partially exposed in a region of a switch.

9 . The photovoltaic system according to claim 6 , wherein at least an inlet into the turning section guides the first or second track or away from or towards the other track.

10 . The photovoltaic system according to claim 1 , further comprising a transport container having at least a length of a necessary storage section for a vertical arrangement of the plurality of photovoltaic modules.

11 . The photovoltaic system according to claim 1 , wherein the guide rails are mounted on spaced-apart supports.

12 . The photovoltaic system according to claim 1 , wherein the guide rails are arranged on the ground and a switch runs obliquely upward.

13 . The photovoltaic system according to claim 1 , wherein the drive unit acts on a foremost photovoltaic module, the foremost photovoltaic module being connected via an electric motor, a rechargeable, mains-dependent or mains-independent battery, a transmission and drive wheels, wherein the electric motor drives the drive wheels via the transmission.

14 . The photovoltaic system according to claim 6 , wherein the drive unit is arranged such that a leg of the U-shaped profile is received between running surfaces of the impellers and a pressure roller and presses the drive wheels against the running surface by a spring element.

15 . The photovoltaic system according to claim 1 , wherein a transmission of the drive unit is also configured to be moved via a hand crank.