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    • 31. 发明授权
    • Optical cavity structure of LED lighting apparatus
    • LED照明装置的光腔结构
    • US08899778B2
    • 2014-12-02
    • US13550622
    • 2012-07-17
    • Mei-Ling YangChin-Chia Chang
    • Mei-Ling YangChin-Chia Chang
    • F21V1/00F21V5/00F21V7/00
    • F21V29/507F21V13/00F21V15/013F21V17/164F21V29/505F21Y2115/10
    • The present invention provides an optical cavity structure of an LED lighting apparatus comprising a base, a light reflector, LED module, and a light cover. The light reflector can be integrally formed with the base or an independent unit. An optical cavity is constructed by the base, light reflector and light cover altogether, and the LED module is attached to the base received within the optical cavity. The light reflector can be symmetrical with inclined angle or as a conical shape provided on two sides opposing to the direction of light from the LED module. The inner surface of the light reflector is a light reflecting surface. The light cover is attached to the light reflector. As a result, the light from the LED is gathered and reflected by the light reflecting surface via the angle and shape of the light reflector to achieve an enhanced luminance range and illumination.
    • 本发明提供一种LED照明装置的光腔结构,其包括基座,光反射器,LED模块和灯罩。 光反射器可以与基座或独立单元一体形成。 光腔由基座,光反射器和灯罩构成,LED模块连接到光腔内的基座上。 光反射器可以倾斜对称,或者与设置在与LED模块的光的方向相反的两侧上的锥形形状。 光反射器的内表面是光反射表面。 灯罩连接到光反射器。 结果,来自LED的光通过光反射器的角度和形状被光反射表面聚集和反射,以实现增强的亮度范围和照明。
    • 38. 发明申请
    • LED LAMP AND MANUFACTURE METHOD THEREOF
    • LED灯及其制造方法
    • US20140048842A1
    • 2014-02-20
    • US14114149
    • 2012-05-11
    • Zhaopeng YuFangyi Xiao
    • Zhaopeng YuFangyi Xiao
    • H01L33/64
    • H01L33/642F21K9/233F21K9/90F21V29/505F21Y2115/10H01L2924/0002H01L2924/00
    • An LED lamp comprises an LED light source (1), a cup-shaped radiator (2) and a power supply (3), electrodes (1a) and a heat sink (1b) are provided at the back side of the LED light source (1). The LED light source (1) is provided at the inner side of the bottom of the cup-shaped radiator (2), electrodes (7) are provided at the bottom of the cup-shaped radiator (2). The power supply (3) is provided at the outer side of the bottom of the cup-shaped radiator (2). The electrodes (1a) of the LED light source (1) and the power supply (3) are directly connected with two ends of the electrodes (7) of the cup-shaped radiator (2) respectively. A manufacture method of the LED lamp is also provided. The heat-conduction efficiency of the LED lamp is high, and the heat-dissipation structure of the whole lamp is effectively improved. And heat is dissipated by radiating, and therefore the stability in the indoor illumination environment is high. The manufacture process has high automation degree.
    • LED灯包括LED光源(1),杯形散热器(2)和电源(3),电极(1a)和散热片(1b)设置在LED光源的背面 (1)。 LED光源(1)设置在杯状散热器(2)的底部的内侧,电极(7)设置在杯状散热器(2)的底部。 电源(3)设置在杯状散热器(2)的底部的外侧。 LED光源(1)的电极(1a)和电源(3)分别与杯形散热器(2)的电极(7)的两端直接连接。 还提供了一种LED灯的制造方法。 LED灯的热传导效率高,整个灯的散热结构得到有效提高。 散热散热,室内照明环境的稳定性高。 制造工艺自动化程度高。
    • 39. 发明申请
    • OPTICAL CAVITY STRUCTURE OF LED LIGHTING APPARATUS
    • LED照明设备的光学结构
    • US20140022781A1
    • 2014-01-23
    • US13550622
    • 2012-07-17
    • Mei-Ling YANGChin-Chia CHANG
    • Mei-Ling YANGChin-Chia CHANG
    • F21V7/00
    • F21V29/507F21V13/00F21V15/013F21V17/164F21V29/505F21Y2115/10
    • The present invention provides an optical cavity structure of an LED lighting apparatus comprising a base, a light reflector, LED module, and a light cover. The light reflector can be integrally formed with the base or an independent unit. An optical cavity is constructed by the base, light reflector and light cover altogether, and the LED module is attached to the base received within the optical cavity. The light reflector can be symmetrical with inclined angle or as a conical shape provided on two sides opposing to the direction of light from the LED module. The inner surface of the light reflector is a light reflecting surface. The light cover is attached to the light reflector. As a result, the light from the LED is gathered and reflected by the light reflecting surface via the angle and shape of the light reflector to achieve an enhanced luminance range and illumination.
    • 本发明提供一种LED照明装置的光腔结构,其包括基座,光反射器,LED模块和灯罩。 光反射器可以与基座或独立单元一体形成。 光腔由基座,光反射器和灯罩构成,LED模块连接到光腔内的基座上。 光反射器可以倾斜对称,或者与设置在与LED模块的光的方向相反的两侧上的锥形形状。 光反射器的内表面是光反射表面。 灯罩连接到光反射器。 结果,来自LED的光通过光反射器的角度和形状被光反射表面聚集和反射,以实现增强的亮度范围和照明。
    • 40. 发明申请
    • LIGHT-EMITTING DIODE FIXTURE WITH AN IMPROVED THERMAL CONTROL SYSTEM
    • 具有改进的热控制系统的发光二极管配件
    • US20140009064A1
    • 2014-01-09
    • US13544798
    • 2012-07-09
    • Alexander KornitzMirek Pospisil
    • Alexander KornitzMirek Pospisil
    • H01J7/26H01J7/44
    • H05B33/0803F21V29/02F21V29/505F21V29/507F21V29/71F21V29/763F21V29/83F21Y2105/10F21Y2115/10
    • A light-emitting diode fixture comprises spaced-apart first and second housing portions. There is a cooling device disposed within the first housing portion. The cooling device is in fluid communication with the second housing portion. First and second printed circuit boards are disposed within the second housing portion. A light-emitting diode and a negative coefficient thermistor array are mounted on the first printed circuit board. The light-emitting diode and the negative coefficient thermistor array are each thermally coupled to a heat sink. A rectifier is mounted on the second printed circuit board. The rectifier is electrically connected in series with the negative coefficient thermistor array and the cooling device. Current used to power the cooling device flows from the rectifier through the negative coefficient thermistor array to the cooling device.
    • 发光二极管夹具包括间隔开的第一和第二壳体部分。 存在设置在第一壳体部分内的冷却装置。 冷却装置与第二壳体部分流体连通。 第一和第二印刷电路板设置在第二壳体部分内。 发光二极管和负系数热敏电阻阵列安装在第一印刷电路板上。 发光二极管和负系数热敏电阻阵列各自热耦合到散热器。 整流器安装在第二印刷电路板上。 整流器与负系数热敏电阻阵列和冷却装置串联电连接。 用于为冷却装置供电的电流从整流器通过负系数热敏电阻阵列流向冷却装置。