Folding solar power supply equipment for outdoor and curtain dual purposes
阅读说明:本技术 用于户外及窗帘的双重用途的折迭式太阳能供电设备 (Folding solar power supply equipment for outdoor and curtain dual purposes ) 是由 尼尔·阿基尔 于 2018-05-24 设计创作,主要内容包括:一种用于提供太阳能的窗帘设备包括:(a)一壳体,配置用以容纳一电池,所述壳体包括一电池充电电路;以及,(b)多个光伏面板,配置用以接收太阳辐射并将所述辐射转换成电能,每个所述光伏面板与所述电池充电电路电连通,并且每个所述光伏面板与至少一个其他面板连通,使得所述多个面板是可移动的。(A window covering apparatus for providing solar energy comprising: (a) a housing configured to receive a battery, the housing including a battery charging circuit; and, (b) a plurality of photovoltaic panels configured to receive solar radiation and convert the radiation into electrical energy, each of the photovoltaic panels in electrical communication with the battery charging circuit and each of the photovoltaic panels in communication with at least one other panel such that the plurality of panels are movable.)
1. A window covering apparatus for providing solar energy, comprising: the curtain device includes:
a housing configured to receive a battery, the housing including a battery charging circuit; and a plurality of photovoltaic panels configured to receive solar radiation and convert the radiation into electrical energy, each of the photovoltaic panels in electrical communication with the battery charging circuit and each of the photovoltaic panels in communication with at least one other panel such that the plurality of panels are movable.
2. The window covering apparatus of claim 1, wherein: the electrical communication between the battery charging circuit and each of the photovoltaic panels includes a plurality of electrically conductive wires.
3. The window covering apparatus of claim 1, wherein: each of the photovoltaic panels includes a plurality of photovoltaic cells, and each of the photovoltaic cells includes a plurality of photovoltaic cells.
4. The window covering apparatus of claim 1, wherein: the housing includes a battery power circuit.
5. The window covering apparatus of claim 4, wherein: the housing also includes a light in electrical communication with the battery power circuit.
6. The window covering apparatus of claim 5, wherein: the light fixture includes a Light Emitting Diode (LED).
7. The window covering apparatus of claim 4, wherein: the housing also includes a USB (universal serial bus) DC (direct current power) output jack in electrical communication with the battery power circuit.
8. The window covering apparatus of claim 4, wherein: the housing further includes: a DC to AC (alternating current) converter in electrical communication with the battery power circuit, and an AC output socket in electrical communication with the DC to AC converter.
9. The window covering apparatus of claim 1, wherein: the shade device also includes a plurality of legs extending from opposite sides of the housing arrangement.
10. The window covering apparatus of claim 9, wherein: the plurality of legs are movably attached at the housing.
11. The window covering apparatus of claim 10, wherein: the plurality of legs telescopically extend and retract.
12. The window covering apparatus of claim 10, wherein: the plurality of legs are foldable.
13. The window covering apparatus of claim 1, wherein: the window covering device further includes: a mechanism in communication with each of the photovoltaic panels for rotating each of the photovoltaic panels about a longitudinally extending axis.
14. The window covering apparatus of claim 1, wherein: the battery charging circuit is configured to automatically disconnect after the battery is fully charged.
15. The window covering apparatus of claim 1, wherein: the shade device also includes a plurality of attachment elements extending from the housing for attaching the shade device to a lintel of a window.
16. The window covering apparatus of claim 13, wherein: the plurality of photovoltaic panels are horizontally oriented with respect to each other, and one of the plurality of photovoltaic panels is movably attached to the housing.
17. The window covering apparatus of claim 13, wherein: the plurality of photovoltaic panels are vertically oriented with respect to each other, and all of the plurality of photovoltaic panels are movably attached to the housing.
18. The window covering apparatus of claim 4, wherein: the window covering device further includes: a battery contained in the housing and in electrical communication with: (1) the battery charging circuit, and (2) the battery power supply circuit.
Technical Field
The present invention relates to solar power plants.
Background
Photovoltaic cells (Photovoltaic cells) for storing solar energy have been widely used in domestic and industrial applications. For example, solar panels of photovoltaic cells are commonly used on roofs and exterior surfaces of buildings and houses.
Disclosure of Invention
The present invention relates to a window covering device that can be used to supply power through power outlets, USB ports and the like in outdoor and indoor environments. The window covering device is foldable, lightweight and compact.
The present invention relates to a blind device for providing solar energy, comprising: (a) a housing configured to receive a battery, the housing including a battery charging circuit; and, (b) a plurality of photovoltaic panels configured to receive solar radiation and convert the radiation into electrical energy, each of the photovoltaic panels in electrical communication with the battery charging circuit and each of the photovoltaic panels in communication with at least one other panel such that the plurality of panels are movable.
Optionally, the electrical communication between the battery charging circuit and each of the photovoltaic panels comprises a plurality of electrically conductive wires.
Optionally, each of the photovoltaic panels comprises a plurality of photovoltaic cells, and each of the photovoltaic cells comprises a plurality of photovoltaic cells.
Optionally, the housing includes a battery power circuit.
Optionally, the housing further comprises a light in electrical communication with the battery power circuit.
Optionally, the light fixture includes a Light Emitting Diode (LED).
Optionally, the housing further comprises a USB (universal serial bus) DC (direct current power) output jack in electrical communication with the battery power circuit.
Optionally, the housing further comprises: a DC to AC (alternating current) converter in electrical communication with the battery power circuit, and an AC output socket in electrical communication with the DC to AC converter.
Optionally, the blind apparatus further comprises a plurality of feet extending from opposite sides of the housing arrangement.
Optionally, the plurality of legs are movably attached at the housing.
Optionally, the plurality of legs telescopically extend and retract.
Optionally, the plurality of legs are foldable.
Optionally, the window covering device further comprises: a mechanism in communication with each of the photovoltaic panels for rotating each of the photovoltaic panels about a longitudinally extending axis.
Optionally, the battery charging circuit is configured to automatically disconnect after the battery is fully charged.
Optionally, the window covering apparatus further comprises a plurality of attachment elements extending from the housing for attaching the window covering apparatus to a beam of a window.
Optionally, the plurality of photovoltaic panels are oriented horizontally with respect to each other, and one of the plurality of photovoltaic panels is movably attached to the housing.
Optionally, the plurality of photovoltaic panels are vertically oriented with respect to each other, and all of the plurality of photovoltaic panels are movably attached to the housing.
Optionally, the window covering device further comprises: a battery contained in the housing and in electrical communication with: (1) the battery charging circuit, and (2) the battery power supply circuit.
Unless defined otherwise herein, all technical and/or scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. Although methods and materials similar or equivalent to those described herein can be used in the practice or testing of embodiments of the present invention, exemplary methods and/or materials are described below. In case of conflict, the patent specification, including definitions, will control. In addition, the materials, methods, and examples are illustrative only and not intended to be necessarily limiting of the invention.
Description of the drawings
Some embodiments of the invention are described herein, by way of example only, with reference to the accompanying drawings. With specific reference to the various figures, it is understood that the details shown are by way of example and for purposes of illustrative discussion of embodiments of the invention. Therefore, it will be apparent to one skilled in the art in view of the drawings and description how to practice the various embodiments of the invention.
Reference is now made to the drawings, wherein like reference numerals or characters designate corresponding or identical elements. In the plurality of drawings:
FIG. 1 is a perspective view of the apparatus of the present invention in outdoor use;
FIG. 2A is a front view of the apparatus of the present invention in a folded (packaged) state;
FIG. 2B is a perspective view of the apparatus of the present invention in a folded (packaged) state;
FIGS. 3A and 3B are perspective views of the interior light fixture of the device;
FIG. 4 is a perspective view of the apparatus of the present invention in the form of a curtain;
FIG. 5 is a schematic view of the structure of the plurality of solar panels of the apparatus;
FIG. 6A is an exploded view of the apparatus of FIG. 1;
fig. 6B schematically shows the structure of the control circuit of the apparatus; and
fig. 7 shows in a perspective view the elements for attaching the device to side beams of the window frame.
Detailed Description
The invention provides a folding solar device which can be used outdoors for supplying electric energy or used indoors as a curtain with electric energy supply capability. For example, the device is used as a window covering.
Fig. 1 shows an
The plurality of
The
In one option, the plurality of connectors are removable with their respective feet. In another option, only the plurality of
To enable use in an interior, the
Preferably, the
The
Fig. 2A and 2B show front and perspective views of the
As shown in fig. 3A and 3B, the light 12 is preferably connected into the
Fig. 4 shows the
Fig. 5 shows, in a schematic form, the structure of the photovoltaic panels of the
Fig. 6 shows the structure of the
The
Between these extremes, the rotation may be varied to create different degrees of separation between the
As schematically shown in fig. 6B, the
In one embodiment, the
The
The
As shown in fig. 1, the apparatus may include two looped wires (or similar solid structure) 14 for suspending the
The apparatus provided in this specification is for illustration only, as the apparatus may have various configurations within the scope of the present invention. For example, although the above-described exemplary apparatus includes a plurality of horizontal panels, the plurality of photovoltaic panels may also be vertically oriented with respect to the housing, and the plurality of panels may be controlled by mechanisms similar to those described in detail above for the plurality of horizontal photovoltaic panels. All of the photovoltaic panels are movably attached to the housing when the plurality of photovoltaic panels are vertically oriented with respect to each other.
It will be appreciated by persons skilled in the art that the present invention is not limited to what has been particularly shown and described hereinabove. Rather, the scope of the present invention is defined by the appended claims, and includes both combinations and sub-combinations of the various features described hereinabove, as well as variations and modifications thereof which would occur to persons skilled in the art upon reading the foregoing description.
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