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    • 1. 发明授权
    • Hermetic light-emitting device
    • 密封发光装置
    • US08075152B2
    • 2011-12-13
    • US12762461
    • 2010-04-19
    • Yao Shun ChenRa Min Tain
    • Yao Shun ChenRa Min Tain
    • F21S4/00
    • F21V29/004F21V5/007F21V29/763F21V31/005F21Y2105/10F21Y2115/10Y10S362/80
    • A hermetic light-emitting device includes a heat dissipation member including a first surface, a second surface and a first through-hole formed between the first and second surfaces. A circuit substrate has a plurality of conductive traces and a second through-hole disposed corresponding to the first through-hole. A light-emitting element is disposed on the circuit substrate and electrically connected to the plurality of conductive traces. A plurality of electrical wires pass through the first and second through-holes and connect to the plurality of conductive traces to externally supply electrical power to the light-emitting element. A sealing material fills the first and second through-holes. A seal pad member includes a pad opening and is disposed on the first surface of the heat dissipation member and surrounding the circuit substrate. A cover member is disposed over the light-emitting element and against the seal pad member.
    • 封闭式发光装置包括散热构件,该散热构件包括形成在第一表面和第二表面之间的第一表面,第二表面和第一通孔。 电路基板具有多个导电迹线和对应于第一通孔设置的第二通孔。 发光元件设置在电路基板上并电连接到多个导电迹线。 多根电线穿过第一和第二通孔并连接到多个导电迹线以从外部向发光元件提供电力。 密封材料填充第一和第二通孔。 密封垫构件包括衬垫开口,并且设置在散热构件的第一表面上并且围绕电路衬底。 盖构件设置在发光元件上并抵靠密封垫构件。
    • 2. 发明申请
    • HERMETIC LIGHT-EMITTING DEVICE
    • 雾化发光装置
    • US20110103059A1
    • 2011-05-05
    • US12762461
    • 2010-04-19
    • Yao Shun CHENRa Min Tain
    • Yao Shun CHENRa Min Tain
    • F21S4/00
    • F21V29/004F21V5/007F21V29/763F21V31/005F21Y2105/10F21Y2115/10Y10S362/80
    • A hermetic light-emitting device includes a heat dissipation member including a first surface, a second surface and a first through-hole formed between the first and second surfaces. A circuit substrate has a plurality of conductive traces and a second through-hole disposed corresponding to the first through-hole. A light-emitting element is disposed on the circuit substrate and electrically connected to the plurality of conductive traces. A plurality of electrical wires pass through the first and second through-holes and connect to the plurality of conductive traces to externally supply electrical power to the light-emitting element. A sealing material fills the first and second through-holes. A seal pad member includes a pad opening and is disposed on the first surface of the heat dissipation member and surrounding the circuit substrate. A cover member is disposed over the light-emitting element and against the seal pad member.
    • 封闭式发光装置包括散热构件,该散热构件包括形成在第一表面和第二表面之间的第一表面,第二表面和第一通孔。 电路基板具有多个导电迹线和对应于第一通孔设置的第二通孔。 发光元件设置在电路基板上并电连接到多个导电迹线。 多根电线穿过第一和第二通孔并连接到多个导电迹线以从外部向发光元件提供电力。 密封材料填充第一和第二通孔。 密封垫构件包括衬垫开口,并且设置在散热构件的第一表面上并且围绕电路衬底。 盖构件设置在发光元件上并抵靠密封垫构件。
    • 3. 发明授权
    • Ultrasonic atomizing cooling apparatus
    • 超声波雾化冷却装置
    • US07610769B2
    • 2009-11-03
    • US11128349
    • 2005-05-13
    • Ra Min TainShu Jung Yang
    • Ra Min TainShu Jung Yang
    • F25D23/12
    • F25B39/02B05B17/0615F25B19/02F25B2339/021F28F13/02H01L23/4735H01L2924/0002H01L2924/00
    • An ultrasonic atomizing cooling apparatus is provided. The ultrasonic atomizing cooling apparatus includes a container having working fluid contained therein, an ultrasonic vibration device, a heat-exchange chamber and an atomized droplet passage and a vapor passage made of flexible tubes. By ultrasonically vibrating the working fluid in the container, atomized droplets are generated. The atomized droplets, driven by a fan or a propeller, cause a pressure difference between the atomized droplet passage and the container. The pressure difference propels the atomized droplets to the atomized droplet passage, and sprays the droplets onto a wall surface of the heat-exchange chamber that is in contact with a heat-producing body. The heat-producing body is cooled down. Depending on the position orientation of the heat-producing body, the spraying direction of the present apparatus can be changed. The flexibility of use of the present apparatus is increased.
    • 提供超声波雾化冷却装置。 超声波雾化冷却装置包括容纳有工作流体的容器,超声波振动装置,热交换室和雾化液滴通道以及由柔性管构成的蒸气通路。 通过对容器中的工作流体进行超声波振动,产生雾化液滴。 由风扇或螺旋桨驱动的雾化液滴在雾化液滴通道和容器之间产生压力差。 压力差将雾化液滴推到雾化液滴通道,并将液滴喷射到与发热体接触的热交换室的壁面上。 发热体被冷却。 根据制热体的位置取向,能够改变本装置的喷射方向。 本装置的灵活性增加。
    • 4. 发明申请
    • Light Emitting Diode Lighting Module with Improved Heat Dissipation Structure
    • 具有改进的散热结构的发光二极管照明模块
    • US20080023720A1
    • 2008-01-31
    • US11531234
    • 2006-09-12
    • Shu Jung YangRa Min Tain
    • Shu Jung YangRa Min Tain
    • H01L33/00
    • H01L25/0753G02F1/133603G02F2001/133628H01L33/648H01L2924/0002H01L2924/00
    • A light emitting diode (LED) lighting module with an improved heat dissipative structure comprises a plurality of the LEDs and a heat pipe apparatus on which at least a circuit layer is provided. The circuit layer is directly formed on an electrical insulation layer with superior heat conductivity on a surface of the heat pipe apparatus. The LEDs are electrically connected to the circuit layer. Furthermore, the heat pipe apparatus can be a flat heat pipe or the combination of plate-shaped heat pipes, heat sinks and a fan. Because the LEDs are directly mounted on the surface of the heat pipe apparatus, the heat generated by the lighting LEDs is effectively delivered to the atmosphere due to the reaction of latent heat phase transformation in the heat pipe apparatus. Moreover, the heat is delivered to the heat sinks at far sides for heat exchange so that improved heat dissipation and a space saving result are achieved.
    • 具有改善的散热结构的发光二极管(LED)照明模块包括多个LED和至少设置有电路层的热管装置。 电路层直接形成在热管装置的表面上具有优良导热性的电绝缘层上。 LED电连接到电路层。 此外,热管装置可以是平坦的热管或板状热管,散热器和风扇的组合。 由于LED直接安装在热管装置的表面上,所以由于在热管装置中的潜热相变的反应,照明用LED产生的热量被有效地输送到大气中。 此外,热量被输送到远侧的散热器进行热交换,从而实现了改善的散热和节省空间的结果。