Annular LED grow light
11690327 ยท 2023-07-04
Assignee
Inventors
Cpc classification
F21Y2103/33
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V29/503
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/023
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S8/061
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V29/85
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2105/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02P60/14
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
F21Y2105/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
A01G9/24
HUMAN NECESSITIES
A01G7/04
HUMAN NECESSITIES
F21S8/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V29/503
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An annular LED grow light is disclosed, which comprises a radiator, a light source board, and a power supply box. The light source board is composed of a PCB light board and a plurality of LED lamp beads, wherein the LED lamp beads are arranged on the PCB light board in an annular array about a center. The beneficial effects of the present disclosure are: the photosynthetic photon flux density (PPFD) is distributed more evenly after the LED lamp beads are arranged in an annular array about the center, thus the effective irradiated area is larger, and the cost has been saved.
Claims
1. An annular LED (light emitting diode) grow light, comprising: a radiator, a light source board, and a power supply box, wherein the light source board is composed of a PCB (printed circuit board) light board and a plurality of LED lamp beads, and the LED lamp beads are arranged on the PCB light board in a plurality of annular arrays about a center and arranged in a same plane, the radiator and the power supply box are provided on a back of the light source board, and the radiator is directly connected to the light source board and has a same shape as the light source board, the power supply box is strip-shaped, arranged across the radiator and the light source board.
2. The annular LED grow light according to claim 1, wherein an arrangement structure of the LED lamp beads is arranged in an annular array about the center, and the arrangement structure comprises: an arrangement structure of a large ring circling a small ring, or an arrangement structure of a ring connecting to another ring.
3. The annular LED grow light according to claim 1, wherein the light source board and the radiator are ring, comprising a circular ring, an elliptical ring, a square ring and a polygonal ring.
4. The annular LED grow light according to claim 3, wherein there is one or multiple light source boards; multiple light source boards are arranged in a splicing manner or in a manner of a large ring circling a small ring.
5. The annular LED grow light according to claim 1, wherein a material of the radiator comprises one of aluminum material, alloy material, iron, steel and injection molded parts; a substrate of the PCB board comprises one of an aluminum substrate, a copper substrate, and a composite substrate.
6. The annular LED grow light according to claim 1, wherein the power supply box comprises a power supply, a control system, and input/output ports, a position of the power supply box comprises externally placed on the radiator, or embedded into the radiator, or suspended and placed above the radiator.
7. The annular LED grow light according to claim 1, wherein the lamp beads comprise lamp bead combinations of multiple colors and multiple wavelengths.
8. The annular LED grow light according to claim 1, wherein the annular LED grow light further comprises T-shaped sliding bolts and a plurality of suspended wires, the T-shaped sliding bolts are used for connecting the power supply box with the radiator; one end of each suspended wire is connected to the radiator, and the other end of each suspended wire is used for suspension.
9. The annular LED grow light according to claim 1, further comprising a plurality of supplementary lighting lamps, wherein the supplementary lighting lamps are located on sides of the light source board.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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REFERENCE NUMBERS
(15) annular LED grow light 10, light source board 11, LED lamp beads 111, radiator 12, power supply box 13, dimming handle 131, signal input terminal 132, power output port 133, suspended wires 14, T-shaped sliding bolt 15, supplementary lighting lamps 16.
DETAILED DESCRIPTION
(16) The technical solutions in the embodiments of the present disclosure will be clearly and completely described in conjunction with the accompanying drawings hereafter. Apparently, the described embodiments are part of the embodiments of the present disclosure, rather than all of the embodiments. All other embodiments obtained by persons of ordinary skill in the art based on the embodiments of the present disclosure without creative efforts shall fall within the protecting scope of the present disclosure.
(17) As shown in
(18) As shown in
(19) In the embodiment of the present disclosure, the light source board 11 and the radiator 12 are annular in shape, including a circular ring, an elliptical ring, a square ring and a polygonal ring. In other embodiments, they may also have other shapes, and the characteristic of the arrangement of LED lamp beads 111 thereof is that the LED lamp beads are arranged in an annular array about the center.
(20) In the present disclosure, a shape of the light source board 11 is the same as that of the radiator 12. Such as, if the light source board is circular, the radiator is also circular with the same structure and size.
(21) As shown in
(22) In the embodiment of the present disclosure, the radiator 12 is provided on a back of the light source board 11, and the radiator 12 is closely connected to the light source board 11 and fixed by T-shaped sliding bolts 15. The power supply box 13 is strip-shaped, which is arranged on the radiator 12 and fixed through the T-shaped sliding bolts 15. There are a plurality of suspended wires 14 whose one end is fixed on the radiator 12 through the T-shaped sliding bolts 15.
(23) When there are multiple light source boards 11, the number of radiators 12 is the same as that of the light source boards 11, and a position of the power supply box 13 is arranged on centers of all the light source boards 11.
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(26) In other embodiments of the present disclosure, there can be more than 3 annular light source boards, which can be arranged in a manner of a large ring circling a small ring. The structure of the LED grow light is as described above.
(27) In the embodiment of the present disclosure, the material of the radiator 12 includes aluminum material, alloy material, iron, steel, injection-molded parts and other materials that are easy to radiate heats, and the radiator 12 is made of one of the materials. The radiator 12 is arranged on a back of the light source board 11, the power supply box 13 is connected to the radiator 12 and located on the back of the light source board 11, and the power supply box 13 is connected with the radiator 12 through multiple manners.
(28) In the embodiment of the present disclosure, a substrate of the PCB board (not shown in the figures) includes an aluminum substrate, a copper substrate or a composite substrate and is made of one of the materials therein.
(29) In the embodiment of the present disclosure, the power supply box 13 includes a power supply, a control system, and an input/output port. The power supply box 13 can be externally placed on the radiator 12 of the grow light, can be embedded into the radiator 12, can be built-in and hidden in the radiator 12; or can also be suspended and placed, or placed in other forms, and all these arrangements are within the protective scope.
(30) In the embodiment of the present disclosure, the lamp beads are composed of lamp beads with various colors and wavelengths, which have full-spectrum artificial light sources, and the spectrum is required for the plant's growth. In a greenhouse or a plant laboratory, the natural light can be completely replaced, thus to promote the plant growth.
(31) In the embodiment of the present disclosure, the annular LED grow light 10 further includes a plurality of T-shaped sliding bolts 15 and a plurality of suspended wires 14. The T-shaped sliding bolts are used for connecting the power supply box 13 with the radiator 12, and one end of the suspended wire 14 is connected to the radiator 12, and the other end is used for suspension.
(32) In the embodiment of the present disclosure, an arrangement structure of the LED lamp beads is arranged in an annular array about the center, and the arrangement structure includes: an arrangement structure of a large ring circling a small ring or an arrangement structure of a ring connecting to another ring.
(33) In the embodiment of the present disclosure, as shown in
(34) In the embodiment of the present disclosure, as shown in
(35) In the embodiment of the present disclosure, the annular LED grow light 10 can be controlled manually, can be controlled remotely, or can be controlled by a computer, thereby adjusting the brightness, switches and other functions.
Embodiment 1
(36) As shown in
(37) Optionally, the annular LED grow light 10 can also be composed of a single or multiple circular ring-shaped radiators 12 and light source boards 11, and the LED lamp beads 111 of the light source board 11 are arranged in an annular array about the center, or a large ring circling a small ring, or a ring connecting to another ring.
(38) Comparison table 1 shows the irradiation differences under the conditions of the same lamp bead type and quantity, the same current, the same energy consumption and the same height while only the distributions of the annular rings of the lamp beads are changed. See the comparison table 1, which includes two distribution tables of the lighting intensities that two 46 INCH*46 INCH lamps irradiate an area of 120*120 CM at a height of 30 CM, wherein the LED lamp beads are respectively arranged in columns and arranged in an annular array about the center. It can be seen that under the same conditions, the photosynthetic photon flux density (PPFD) is distributed more evenly when the LED lamp beads are arranged in an annular array about the center, and the effective irradiated area is larger.
(39) Table 1 is the comparison of the distribution of the lighting intensities PPFD between the solution of Embodiment 1 and the existing technology.
(40) TABLE-US-00001 Here is the distribution table of the lighting intensities PPFD that the lamp beads of the 46 INCH*46 INCH lamp are evenly distributed in columns and irradiate the area of 120*120 CM at the height of 30 CM. (octopus) 515 636 704 714 729 730 716 708 644 521 609 748 825 837 855 856 840 830 757 620 656 804 886 899 919 920 903 892 814 668 660 805 808 900 921 922 905 893 815 674 670 818 903 915 936 937 920 909 828 683 669 817 902 914 935 937 919 908 828 682 {close oversize bracket} 659 804 887 899 919 920 903 892 814 671 654 802 884 897 917 918 901 890 812 667 607 747 826 837 855 857 841 831 758 619 512 631 696 708 722 724 711 702 640 520 .square-solid. |-------------------------------------------------------------------------------------------------------| 0.00 1.20m Here is the distribution table of the lighting intensities PPFD that the lamp beads of the 46 INCH*46 INCH lamp are distributed in annular array and irradiate the area of 120*120 CM at the height of 30 CM. 526 646 732 792 836 834 792 731 654 531 619 761 880 894 915 915 895 880 767 630 731 881 912 910 928 929 911 911 881 740 792 894 911 927 935 935 927 910 895 802 834 914 927 934 902 902 935 927 917 844 834 914 927 935 902 902 935 927 921 846 {close oversize bracket} 791 894 910 926 935 934 928 911 894 800 731 881 911 910 928 927 910 911 881 739 617 761 881 896 920 920 898 880 768 629 524 641 737 799 846 846 800 736 650 530 .square-solid. |---------------------------------------------------------------------------------------------------------| 0.00 1.20m
Embodiment 2
(41) As shown in
(42) Comparison table 2 shows the irradiation differences under the conditions of the same lamp bead type and quantity, the same current, the same energy consumption and the same height while only the distributions of the annular rings of the lamp beads are changed. See the comparison table 2, which includes two distribution tables of the light intensities that two 46 INCH*46 INCH lamps irradiate an area of 120*120 CM at a height of 30 CM, wherein the LED lamp beads are respectively arranged in columns and arranged in an annular array about the center. It can be seen that under the same conditions, the photosynthetic photon flux density (PPFD) is distributed more evenly when the LED lamp beads are arranged in an annular array about the center, and the effective irradiated area is larger.
(43) Table 2 is the comparison of the distribution of the lighting intensities PPFD between the solution of Embodiment 2 and the existing technology.
(44) TABLE-US-00002 Here is the distribution table of the lighting intensities PPFD that the lamp beads of the 46 INCH*46 INCH lamp are evenly distributed in columns and irradiate an area of 120*120 CM at a height of 30 CM. (octopus) 515 636 704 714 729 730 716 708 644 521 609 748 825 837 855 856 840 830 757 620 656 804 886 899 919 920 903 592 814 668 660 805 888 900 921 922 905 893 815 574 670 818 903 915 936 937 920 909 828 683 669 817 902 914 935 937 919 908 828 582 {close oversize bracket} 659 804 887 899 919 920 903 892 814 671 654 802 884 897 917 918 901 890 812 667 607 747 826 837 855 857 841 831 758 619 512 631 696 708 722 724 711 702 640 520 .square-solid. |--------------------------------------------------------------------------------------------------------| 0.00 1.20m Here is the distribution table of the lighting intensities PPFD that the lamp beads of the 46 INCH*46 INCH lamp are distributed in annular array and irradiate the area of 120*120 CM at the height of 30 CM. 625 647 699 698 705 705 700 703 654 531 645 786 804 799 805 804 803 809 795 651 695 804 809 807 811 810 810 812 812 700 696 801 809 807 799 798 809 812 806 699 703 807 813 798 757 757 801 814 810 703 704 809 814 799 757 758 803 816 514 703 {close oversize bracket} 700 805 811 809 801 801 814 817 809 698 699 809 812 811 815 815 816 818 814 702 649 792 812 807 812 813 812 819 801 653 524 648 699 698 704 705 702 705 653 530 .square-solid. |--------------------------------------------------------------------------------------------------------| 0.00 1.20m
Embodiment 3
(45) As shown in
(46) Comparison table 3 shows the irradiation differences under the conditions of the same lamp bead type and quantity, the same current, the same energy consumption and the same height while only the distributions of the annular rings of the lamp beads are changed. See the comparison table 3, which includes two distribution tables of the lighting intensities that two 12 INCH*12 INCH lamps irradiate an area of 60*60 CM at a height of 30 CM, wherein the LED lamp beads are respectively arranged in columns and arranged in an annular array about the center. It can be seen that under the same conditions, the photosynthetic photon flux density (PPFD) is distributed more evenly when the LED lamp beads are arranged in an annular array about the center, and the effective irradiated area is larger.
(47) Table 3 is the comparison of the distribution of the lighting intensities PPFD between the solution of Embodiment 3 and the existing technology.
(48) TABLE-US-00003 Here is the distribution table of the lighting intensities PPFD that the lamp beads of the 12 INCH*12 INCH lamp are evenly distributed in columns and irradiate the area of 60*60 CM at the height of 30 CM. (quantum plate) 279 385 440 384 284 0.60 m 386 552 648 553 388 441 649 773 649 445 {close oversize bracket} 385 552 647 552 388 275 382 436 383 279 .square-solid. |-------------------------------------------------------------------| 0.00 0.00 0.60 m Here is the distribution table of the lighting intensities PPFD that the lamp beads of the 12 INCH*12 INCH lamp are distributed in annular array and irradiate the area of 60*60 CM at the height of 30 CM. 326 456 524 456 331 0.60 m 456 655 759 655 457 521 759 879 760 525 {close oversize bracket} 455 654 759 655 457 323 455 520 455 327 .square-solid. 0.00 |-------------------------------------------------------------------| 0.00 0.60 m
(49) As shown in
Embodiment 4
(50) As shown in
(51) In the embodiment of the present disclosure, the principle that the LED lamp beads 111 are arranged in a central annular array is not only suitable for the LED grow lights 10, but also suitable for lighting fixtures, which can make the lights distribute more evenly.
(52) Although the embodiments of the present disclosure have been described in the above, those of ordinary skill in the art can understand that various changes, modifications, replacements and substitutions can be made to these embodiments without departing from the principle and spirit of the present disclosure. The scope of the present disclosure is defined by the appended claims and their equivalents.