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    • 1. 发明申请
    • MOUNTING MECHANISM AND LIGHTING APPARATUS HAVING THE MOUNTING MECHANISM
    • 具有安装机构的安装机构和照明设备
    • WO2012079922A2
    • 2012-06-21
    • PCT/EP2011/070656
    • 2011-11-22
    • OSRAM AGDAI, ChenglongHUANG, HaoQIN, TengzhiWANG, Xuefeng
    • DAI, ChenglongHUANG, HaoQIN, TengzhiWANG, Xuefeng
    • F21S8/026F21S8/02F21V21/04
    • The present invention relates to a mounting mechanism used for a lighting apparatus, having a base (1) to be fixed on a mounting surface, wherein the base (1) is provided with at least two notches (2), each of the notches (2) is provided with a slide bar (3) connected between two opposite side surfaces of the notch (2), each slide bar (3) is sleeved with a locking member (4) capable of sliding thereon, and wherein the base (1) is provided with a first locating member (5a) and a second locating member (5b), and wherein the first locating member (5a) is used to limit the locking member (4) in a locked mounting state, and the second locating member (5b) is used to limit the locking member (4) in an inserted state. With the mounting mechanism of this type, the lighting apparatus can be simply installed into the mounting surface, and the mounting edge of the mounting surface will not be damaged when the lighting apparatus is mounted and demounted. The present invention further relates to a lighting apparatus having the mounting mechanism of the above type.
    • 本发明涉及一种用于照明设备的安装机构,该安装机构具有待固定在安装表面上的基座(1),其中基座(1)设置有至少两个凹口( (如图2所示),每个切口(2)上设置有连接在切口(2)的两个相对侧面之间的滑杆(3),每个滑杆(3)套设有可滑动的锁定件 并且其中所述基座(1)设置有第一定位构件(5a)和第二定位构件(5b),并且其中所述第一定位构件(5a)用于将所述锁定构件(4)限制在锁定位置 并且第二定位构件(5b)用于将锁定构件(4)限制在插入状态中。 利用这种安装机构,照明装置可以简单地安装到安装表面中,并且当照明装置被安装和拆卸时安装表面的安装边缘不会被损坏。 本发明还涉及具有上述类型的安装机构的照明设备。
    • 3. 发明申请
    • LIGHTING DEVICE AND METHOD OF AUTOMATICALLY CONTROLLING COLOR TEMPERATURE
    • 照明装置和自动控制彩色温度的方法
    • WO2012116904A1
    • 2012-09-07
    • PCT/EP2012/052869
    • 2012-02-20
    • OSRAM AGDAI, ChenglongFENG, YaojunKU, NimchungYANG, Canbang
    • DAI, ChenglongFENG, YaojunKU, NimchungYANG, Canbang
    • H05B33/08
    • H05B33/0872
    • The present invention relates to a lighting device, comprising at least one first LED lighting assembly (2) and at least one second LED lighting assembly (3), the light output ratios of the first LED lighting assembly (2) and the second LED lighting assembly (3) being related to a color temperature of a mixed light of the two, wherein the lighting device further comprises a controlling unit (4) and an environ- mental temperature sensor (5), and wherein the controlling unit (4) receives an environmental temperature detected by the environmental temperature sensor (5) and outputs a controlling signal according to the environmental temperature to control the light output ratios of the first and second LED lighting assemblies (2, 3), thereby automatically adjusting the color temperature of the mixed light. The lighting device according to the present invention can automatically adjust the color temperature of the emitted light according to the change of the environmental temperature; moreover, the light emitted from such lighting device has the advantages of good color rendering index and high light efficacy. In addition, the present invention further relates to a method of automatically adjusting a color temperature of light emitted from the lighting device of such type.
    • 本发明涉及一种照明装置,包括至少一个第一LED照明组件(2)和至少一个第二LED照明组件(3),第一LED照明组件(2)和第二LED照明组件 组件(3)与两者的混合光的色温相关,其中所述照明装置还包括控制单元(4)和环境温度传感器(5),并且其中所述控制单元(4)接收 由环境温度传感器(5)检测到的环境温度,并根据环境温度输出控制信号,以控制第一和第二LED照明组件(2,3)的光输出比,由此自动调节色温 混合光。 根据本发明的照明装置可以根据环境温度的变化自动调节发射光的色温; 此外,从这种照明装置发射的光具有良好的显色指数和高光效的优点。 此外,本发明还涉及一种自动调节从这种类型的照明装置发射的光的色温的方法。
    • 5. 发明申请
    • COOLING DEVICE AND LED LIGHTING DEVICE COMPRISING THE SAME
    • 冷却装置和包含该装置的LED照明装置
    • WO2012013605A2
    • 2012-02-02
    • PCT/EP2011/062676
    • 2011-07-22
    • OSRAM AGDAI, ChenglongYUAN, Haiping
    • DAI, ChenglongYUAN, Haiping
    • F21V29/00F21Y101/02
    • F21V29/58F21V29/006F21V29/51F21V29/80F21Y2115/10F28D15/0241F28D15/0275F28F9/013
    • The present invention relates to a cooling device, comprising: at least one cooling body (1) each of which is provided with a vacuum sealing chamber (3) therein; and a cooling medium filled in the vacuum sealing chamber (3), wherein the cooling medium has a high heat capacity. The cooling device according to the present invention can provide a high heat capacity, satisfactorily overcome thermal shock, and also has fine thermal conductivity and then can effectively cool devices such as an LED lighting apparatus. Another aspect of the present invention also relates to a cooling device, comprising: at least one cooling body (1), wherein the at least one cooling body comprises an elongated bendable member. The cooling device has fine thermal conductivity and heat dissipation property, and is lighter in weight and more flexible in design. In addition, the present invention also relates to an LED lighting apparatus comprising the above types of cooling devices.
    • 本发明涉及一种冷却装置,包括:至少一个冷却体(1),每个冷却体在其中设有真空密封室(3) 以及填充在真空密封室(3)中的冷却介质,其中冷却介质具有高的热容量。 根据本发明的冷却装置可以提供高热容量,令人满意地克服热冲击,并且还具有良好的导热性,然后可以有效地冷却诸如LED照明装置的装置。 本发明的另一方面还涉及一种冷却装置,其包括:至少一个冷却体(1),其中所述至少一个冷却体包括细长的可弯曲构件。 冷却装置具有良好的导热性和散热性,重量更轻,设计更灵活。 此外,本发明还涉及包括上述类型的冷却装置的LED照明装置。
    • 6. 发明申请
    • LENS AND ILLUMINATION APPARATUS HAVING THE SAME
    • 镜头和照明设备
    • WO2012084543A1
    • 2012-06-28
    • PCT/EP2011/072264
    • 2011-12-09
    • OSRAM AGDAI, ChenglongHE, YubaoLUO, YabinWU, Hui
    • DAI, ChenglongHE, YubaoLUO, YabinWU, Hui
    • G02B17/08G02B27/09F21V5/04
    • F21V13/04F21V5/04F21V7/0091F21Y2101/00F21Y2115/10G02B19/0028G02B19/0061
    • The present invention relates to a lens having a first surface (1) and a second surface (2), wherein the first surface (1) and the second surface (2) are mirror symmetric to a first symmetric plane (A) passing through an optical axis (Y) of said lens and extend in a first direction (X) perpendicular to the optical axis (Y), wherein the curve profiles of the first surface (1) and the second surface (2) on the cross sections perpendicular to the first direction (X) are configured in such a way that light emitting from a light source (3) arranged at a predetermined position of a second surface side is refracted by the first surface (1) and the second surface (2) to be emitted in a direction which is offset from the optical axis (Y) by more than a predetermined angle. In addition, the present invention also relates to an illumination apparatus having the above type of lens.
    • 本发明涉及具有第一表面(1)和第二表面(2)的透镜,其中第一表面(1)和第二表面(2)与通过第一表面(1)和第二表面(2)的第一对称平面 所述透镜的光轴(Y)在垂直于所述光轴(Y)的第一方向(X)上延伸,其中所述第一表面(1)和所述第二表面(2) 第一方向(X)被配置为使得从布置在第二表面侧的预定位置的光源(3)发出的光被第一表面(1)和第二表面(2)折射成为 在从光轴(Y)偏移大于预定角度的方向上发射。 此外,本发明还涉及具有上述类型的透镜的照明装置。
    • 8. 发明申请
    • REFLECTOR, LIGHTING DEVICE COMPRISING THE REFLECTOR AND METHOD FOR MAKING THE REFLECTOR
    • 反射器,包括反射器的照明装置和用于制造反射器的方法
    • WO2012028423A1
    • 2012-03-08
    • PCT/EP2011/063637
    • 2011-08-08
    • OSRAM AGWU, HuiDAI, ChenglongKU, NimchungYUAN, Haiping
    • WU, HuiDAI, ChenglongKU, NimchungYUAN, Haiping
    • F21V7/10
    • F21V7/10F21Y2115/10
    • The present invention relates to a reflector for a lighting device, comprising a base body (1) and at least one reflecting hole (2) provided in the base body (1), wherein the base body (1) comprises multiple sub-base bodies (A, B) each of which is provided with at least one sub-reflecting hole (2A, 2B) therein, and the multiple sub-base bodies (A, B) can be stacked on top of each other so that the sub-reflecting holes (2A, 2B) of the sub-base bodies (A, B) are aligned to form the reflecting hole (2). The reflector according to the present invention can obtain a coating with a uniform thickness when vacuum coating is performed, thereby obtaining a relatively high reflectivity and a fine optical efficiency. In addition, the present invention also designs a lighting device comprising the above reflector and a method for making the reflector.
    • 本发明涉及一种用于照明装置的反射器,包括基体(1)和设置在基体(1)中的至少一个反射孔(2),其中基体(1)包括多个子基体 (A,B),其中至少设置有一个副反射孔(2A,2B),并且可以将多个子基体(A,B)堆叠在彼此的顶部, 副基体(A,B)的反射孔(2A,2B)排列成反射孔(2)。 根据本发明的反射体可以在进行真空镀膜时获得具有均匀厚度的涂层,从而获得较高的反射率和良好的光学效率。 此外,本发明还设计包括上述反射器的照明装置和制造反射器的方法。