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    • 3. 发明授权
    • TRAY FOR GROWING ORGANIC MATERIAL AND A NURSERY ASSEMBLY
    • 巴伐利亚州楚雄齐鲁文化遗产
    • EP2134155B1
    • 2017-03-01
    • EP08737782.6
    • 2008-04-10
    • Philips Lighting Holding B.V.
    • VAN DER POEL, Lucas, L., D.RAAIJMAKERS, Antonius, H., M.
    • A01G7/04A01G9/26A01G9/04
    • A01G7/045A01G9/045A01G9/26Y02A40/274Y02P60/146
    • A tray (200) for growing organic material comprising a plurality of LEDs (204) is disclosed. The tray (200) comprises an upper side (202) and a lower side (206). The upper side (202) is arranged to carry a substrate (210) for growing organic material and the lower side (206) is arranged to radiate the light generated by the LEDs (204). The tray (200) comprises a structure which enables the tray (200) to radiate more heat, generated by the LEDs (204), at the upper side(202) than at the lower side(206) of the tray(200). The tray(200) enables to provide an improved nursery assembly (100), wherein the soil with organic material is heated up with the heat generated by the LEDs (204). In this way, the heat is not wasted to heat up the air but is used to heat up the soil such that it can have a higher average temperature than the air above the organic material.
    • 公开了一种用于生长包括多个LED(204)的有机材料的托盘(200)。 托盘(200)包括上侧(202)和下侧(206)。 上侧(202)布置成承载用于生长有机材料的基板(210),并且下侧(206)布置成辐射由LED(204)产生的光。 托盘(200)包括使得托盘(200)能够在上侧(202)处比由托盘(200)的下侧(206)辐射由LED(204)产生的更多热量的结构。 托盘(200)能够提供改进的托儿所(100),其中具有有机材料的土壤与由LED(204)产生的热量加热。 以这种方式,不会浪费热量来加热空气,而是用于加热土壤,使得其可以具有比有机材料上方的空气更高的平均温度。
    • 4. 发明公开
    • PLANT LIGHTING APPARATUS
    • PFLANZENBELEUCHTUNGSVORRICHTUNG
    • EP3039960A1
    • 2016-07-06
    • EP15165169.2
    • 2015-04-27
    • Cal-Comp Biotech Co., Ltd.
    • Chang, Ming-Hao
    • A01G9/26
    • A01G7/045A01G9/26F21V33/008F21W2131/40F21Y2115/10Y02A40/274
    • A plant light apparatus is provided. The plant light apparatus (100, 200) includes a main body (105), a planting region (130), and an emitting region (140, 240). The main body includes a first plane (110) and a second plane (120, 220). The first plane is opposite to the second plane. The planting region is located on the first plane of the main body. The emitting region is a polygon located on the second plane of the main body. The plant light apparatus further includes a plurality of sets of main light sources (152, 154, 156, 158, 252, 254, 256, 258), where the sets of the main light sources are respectively located on a plurality of corners of the emitting region, such that and an illuminance intensity of the planting region obtained from the main light sources is within a predefined luminance intensity interval.
    • 提供植物灯装置。 植物光装置(100,200)包括主体(105),种植区域(130)和发射区域(140,240)。 主体包括第一平面(110)和第二平面(120,220)。 第一个平面与第二个平面相对。 种植区域位于主体的第一平面上。 发射区域是位于主体的第二平面上的多边形。 设备光装置还包括多组主光源(152,154,156,158,252,254,256,258,258),其中主光源组分别位于多个主光源 使得从主光源获得的种植区域的照度强度在预定的亮度强度间隔内。
    • 6. 发明公开
    • A tilting horticultural light and method of plant cultivation
    • Forstwirtschaftliches Kipp-Licht und Verfahrenfürdie Pflanzenzucht
    • EP2656728A1
    • 2013-10-30
    • EP12165894.2
    • 2012-04-27
    • Valoya Oy
    • Ringbom, RabbeKivimäki, Ilkka
    • A01G7/04A01G9/20
    • A01G7/045A01G9/26F21V14/02F21V14/04Y02A40/274Y02P60/146
    • The invention is directed to providing artificial light optimally to plants during its growth cycle in a greenhouse (350) or growth chamber. This is achieved effectively by moving both the lighting device (2, 3 and 4) and its emission pattern to maximise incident light on the plants (5, 6 and 7) being cultivated.
      A horticultural lighting device of the invention illuminates plants so that said lighting device (2, 3 and 4) is moved vertically and at least one light emitter (3 and 4) and/or reflector (2) is rotated to maximize light exposure from said lighting device on said plants (5, 6 and 7). In the best mode the movable and rotatable lighting device is used to grow very high plants. The lighting device (2, 3 and 4) is moved by a motor programmed to change the position of the lighting device and the orientation of the emission pattern in accordance with the growth cycle of the plants in the greenhouse (350) to maximise incident flux on said plants (5, 6 and 7).
    • 本发明旨在在温室(350)或生长室中的植物生长周期期间最佳地提供人造光。 通过移动照明装置(2,3和4)及其发射模式来有效地实现这一点,以最大程度地使正在栽培的植物(5,6和7)上的入射光最大化。 本发明的园艺照明装置照亮植物,使得所述照明装置(2,3和4)垂直移动,并且至少一个光发射器(3和4)和/或反射器(2)旋转以使来自所述照明装置 所述植物(5,6和7)上的照明装置。 在最佳模式下,可移动和可旋转的照明装置用于生长非常高的植物。 照明装置(2,3和4)由编程为根据温室(350)中的植物的生长周期改变照明装置的位置和排放图案的取向的电动机移动,以使入射通量最大化 在所述植物(5,6和7)上。
    • 8. 发明公开
    • Lighting arrangement for light conversion and spreading
    • Beleuchtungsanordnung zur Lichtumwandlung und -verteilung
    • EP2224163A1
    • 2010-09-01
    • EP09153920.5
    • 2009-02-27
    • Reddy Solutions
    • Lommerts, Bert Jan
    • F21V9/16A01G7/04A01G9/20C09K11/00F21V11/02F21V11/06
    • F21V9/08A01G9/26F21V7/0025F21V9/30F21V11/02F21V11/06Y02A40/274
    • Lighting arrangement for operation with a light source (1) emitting energy in a spectrum of wavelengths at least in a first direction towards an area to be illuminated. The lighting arrangement comprising a wavelength shift device (2) arranged to receive light emitted from the light source (1) on a receiving side (5) of the wavelength shift device (2), and to shift a part of the energy received on the receiving side (5) into energy with a wavelength in the range of 600-660 nm. The wavelength shift device (2) is a plate of energy transforming material, comprising a directional coupling layer (2a) for emitting shifted light substantially from a second side (6) of the wavelength shift device (2), the second side (6) being opposite the receiving side (5).
    • 用于使用光源(1)操作的照明装置,其至少在朝向待照射的区域的第一方向上发射波长的光谱。 所述照明装置包括波长移位装置(2),其布置成接收从所述波长移位装置(2)的接收侧(5)发射的从所述光源(1)发射的光,并且将在所述波长移位装置 接收侧(5)变成具有在600-660nm范围内的波长的能量。 波长移位装置(2)是能量转换材料的平板,包括用于从波长移位装置(2)的第二侧(6)发射移动的光的定向耦合层(2a),第二侧(6) 与接收侧(5)相对。