Solar testing device
10461691 ยท 2019-10-29
Assignee
Inventors
Cpc classification
F21V14/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/50
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F21S8/006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2105/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21S8/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention refers to a solar testing device (11) for testing a solar module (6). The solar testing device (11) comprises a test area (12) for the solar module (6) to be tested, a light emitting area (16) comprising an array of LED-modules (17, 17A) arranged opposite to the test area (12) and arranged in a pitch (P) to each other. Further the solar testing device (11) comprises sidewall mirrors (21) extending in the direction from the light emitting area (16) to the test area (12). Guides (26) are provided having each an abutting surface (27) for supporting the solar module (6) whereby the abutting surfaces (27) of the guides (26) lie in the plane (A) of the test area (12).
Claims
1. A solar testing device for testing a solar cell or a solar module comprising: a test area for at least one solar cell or solar module to be tested, a light emitting area, arranged opposite to the test area, comprising: an array of LED-modules arranged with a pitch (P) to each other, and sidewall mirrors, extending in a direction from the light emitting area to the test area, the reflecting surface of said sidewall mirrors being inclined at an obtuse angle relative to a planar surface of the light emitting area, wherein a ratio between the distance (H) between the light emitting area and the test area and the pitch (P) of the LED-modules lies in a range of 1.5 to 3.5.
2. The solar testing device according to claim 1, wherein the obtuse angle is 91 to 95.
3. The solar testing device according to claim 2, wherein the sidewall mirrors are pivoted around a pivot or rotation axis, and arranged at a distance (h) corresponding to a half of the distance (H) between the light emitting area and the test area.
4. The solar testing device according to claim 2, wherein a distance (B) between a center of the LED-module arranged adjacent to the sidewall mirrors and the rotation axis of the mirrors lies in a range between 24% to 40% of the pitch (P) between the LED-modules.
5. The solar testing device according claim 2, wherein the distance (H) between the light emitting area and the test area lies between 300 mm to 500 mm.
6. The solar testing device according to claim 2, wherein the pitch (P) between the LED-modules lies between 148 mm to 168 mm.
7. The solar testing device according to claim 2, wherein the obtuse angle is 92 to 94.
8. The solar testing device according to claim 1, wherein the sidewall mirrors are pivoted around a pivot or rotation axis, and arranged at a distance (h) corresponding to a half of the distance (H) between the light emitting area and the test area.
9. The solar testing device according to claim 8, wherein a distance (B) between a center of the LED-module arranged adjacent to the sidewall mirrors and the rotation axis of the mirrors lies in a range between 24% to 40% of the pitch (P) between the LED-modules.
10. The solar testing device according claim 8, wherein the distance (H) between the light emitting area and the test area lies between 300 mm to 500 mm.
11. The solar testing device according to claim 8, wherein the pitch (P) between the LED-modules lies between 148 mm to 168 mm.
12. The solar testing device according to claim 1, wherein a distance (B) between a center of the LED-module arranged adjacent to the sidewall mirrors and a rotation axis of the mirrors lies in a range between 24% to 40% of the pitch (P) between the LED-modules.
13. The solar testing device according claim 12, wherein the distance (H) between the light emitting area and the test area lies between 300 mm to 500 mm.
14. The solar testing device according to claim 12, wherein the pitch (P) between the LED-modules lies between 148 mm to 168 mm.
15. The solar testing device according claim 1, wherein the distance (H) between the light emitting area and the test area lies between 300 mm to 500 mm.
16. The solar testing device according to claim 15, wherein the pitch (P) between the LED-modules lies between 148 mm to 168 mm.
17. The solar testing device according to claim 1, wherein the pitch (P) between the LED-modules lies between 148 mm to 168 mm.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) Further embodiments of the invention are indicated in the figures and in the dependent claims. The list of reference numerals forms part of the disclosure. The invention will now be explained in detail with respect to the drawings. In the drawings:
(2)
(3)
(4)
(5)
(6)
(7)
DESCRIPTION OF PREFERRED EMBODIMENTS
(8) The present invention will be described with reference to exemplary embodiments and is not limited to particular interconnectors, devices, use or methods, except as defined in the appended claims. Embodiments of the present invention may be used with a variety of methods and systems. It will be apparent to one skilled in the art that the present invention may be practiced in a variety of ways within the scope of the claims. All features shown in relation to the figures may be applied mutatis mutandis to the invention as described in the claims and the claim description.
(9) As used herein, the indefinite article (a, an) denotes the presence of at least one of the referenced item, and the term a plurality or multiple denotes the presence of more than one.
(10) In the figures only parts essential for the current invention are shown schematically, for better understanding the invention.
(11) The inventive solar testing device 11 shown in
(12) Guides 26 are provided having each an abutting surface 27 for supporting the solar cell or solar module 6. The abutting surfaces 27 of the guides 26 lie in the plane A of the test area 12. The plane A of the test area 12 extends parallel to the plane of the light emitting area 16.
(13) The guides 26 have each a triangular cross section with a reflecting surface 28 or a reflecting surface portion inclined to the light emitting area 16 at an angle lower than 45. The reflecting surface 28 corresponds to surface of the longest side of the triangular cross section. The reflecting surface 28 is an inclined angular area which is inclined in respect to the abutting surfaces 27 of the respective guide 26.
(14) Projections 29 extend from the abutting surface 27 of the guides 26 for guiding the solar cell or the solar module 6 between them.
(15) The ratio between the distance H between the light emitting area 16 and the test area 12 and the pitch P of the LED-modules 17, 17A lies in a range of 1.5 to 3.5, preferably in a range of 2.3 to 2.7.
(16) The distance B between the center of the LED-module 17A arranged adjacent to the sidewall mirrors 21 and the respective sidewall mirror 21 lies in a range between 24% to 40%, preferably between 28% to 36% of the pitch P between the LED-modules 17, 17A. The pitch P between the LED-modules 17, 17A lies between 148 mm to 168 mm, preferably between 153 mm to 163 mm.
(17) All four sidewall mirrors 21 are arranged angular to light emitting area 16. The angle between the plane provided by the light emitting area 16 and the sidewall mirrors 21 lies in the range of 91 to 95.
(18) The angularities of opposing the sidewall mirrors 21 are in opposite directions. Therefore the distance between the sidewall mirrors 21 adjacent the test area 12 is greater than the distance between the sidewall mirrors 21 adjacent the light emitting area 16.
(19) The sidewall mirrors 21 are shown to be pivoted around pivot or rotation axis 22. The pivot or rotation axis 22 is arranged at a distance h from the light emitting area 16 which corresponds to the half distance H between the light emitting area 16 and the test area 12. The distance H between the light emitting area 16 and the test area 12 lies between 300 mm to 500 mm, preferably between 350 mm to 450 mm.
(20) The distance B of the center of the LED-modules 17A arranged adjacent to the sidewall mirrors 21 and the rotation axis 22 of the respective sidewall mirror 21 lies in a range between 24% to 40% of the pitch P between the LED-modules 17, 17A.
(21) In an alternative embodiment the sidewall mirrors 21 are pivotable around pivot or rotation axis 22 and the guides 26 are moveable along the plane A of the test area 12. Such a solar testing device is adjustable and solar cells or solar modules 6 with different dimensions, e.g. width, can be tested with the one and the same solar testing device.
(22) After positioning a solar cell or solar module 6 on the solar testing device 11 a closed box is formed. Therefore, when testing the solar cell or solar module 6 no incidence of ambient light influences the test results.
(23) In the embodiment of the inventive solar testing device 31 shown in
(24) The guide 46 has a reflecting surface 48 facing the light emitting area and making an angle with that light emitting area. The angle of the reflecting surface 48 to the light emitting area, whereby this angle has the same value as the angle between the reflecting surface 48 and the abutting surface 47, is equal or lower than 45, preferably lower than 25.
(25) In this embodiment the projection 59 are made from strand casting profiles, e.g. aluminum strand casting profiles.
(26) In the embodiment of the inventive solar testing device 61 shown in
(27) TABLE-US-00001 List of Reference Marks 6 solar module 11 solar testing device 12 test area 16 light emitting area 17, 17A LED-module 21 sidewall mirror 22 rotation axis 26 guide 27 abutting surface 28 reflecting surface 29 projection 31 solar testing device 46 guide 47 abutting surface 48 reflecting surface 51 rollers 52 outer circumferential surface A test area plane B distance between 17A and 21 or 67A and 71 H distance between 16 and 12 or 76 and 62 h half distance H P pitch between 17A and 17 or 67A and 67 59 projection 61 solar testing device 62 test area 66 light emitting area 67, 67a LED-module 71 sidewall mirror 76 guide 78 reflecting surface