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    • 2. 发明授权
    • Hydrogen generating device
    • 氢发生装置
    • US08834585B2
    • 2014-09-16
    • US13187531
    • 2011-07-21
    • Yu-Hsiang LinHsuan-Yi Lu
    • Yu-Hsiang LinHsuan-Yi Lu
    • B01J7/00
    • C01B3/065B01J7/02C01B2203/066H01M8/04208H01M8/065Y02E60/362
    • A hydrogen generating device is adapted for a fuel cell. The hydrogen generating device includes a casing, a button, a solid reactant, a bag-shaped body, and at least one flexible element. The casing has a containing space and an opening. The button is integrally formed and connected to the casing to seal the opening. The solid reactant is disposed in the casing. The bag-shaped body is disposed in the casing and contains a liquid reactant. The flexible element is connected to the casing and is located in the containing space. The flexible element includes a bending end, wherein the flexible element is aligned to the button and is located between the button and the bag-shaped body. When the button is pressed, the button pushes the flexible element so the bending end pierces the bag-shaped body, and the liquid reactant flows out and reacts with the solid reactant to generate hydrogen.
    • 氢气发生装置适用于燃料电池。 氢生成装置包括壳体,按钮,固体反应物,袋状体以及至少一个柔性元件。 壳体具有容纳空间和开口。 按钮整体形成并连接到壳体以密封开口。 固体反应物设置在壳体中。 袋形体设置在壳体中并含有液体反应物。 柔性元件连接到壳体并且位于容纳空间中。 柔性元件包括弯曲端,其中柔性元件与按钮对准并且位于按钮和袋状体之间。 当按钮被按下时,按钮推动柔性元件,使得弯曲端刺穿袋状体,并且液体反应物流出并与固体反应物反应产生氢气。
    • 5. 发明授权
    • Lamp source module and projection system
    • 灯源模块和投影系统
    • US08322861B2
    • 2012-12-04
    • US12795660
    • 2010-06-08
    • Te-Ying TsaiShang-Hsuang WuChih-Cheng ChouYi-Kuan Liao
    • Te-Ying TsaiShang-Hsuang WuChih-Cheng ChouYi-Kuan Liao
    • G03B21/18
    • F21V29/60F21V29/02F21V29/67G03B21/16G03B21/2026G03B21/2086
    • A lamp source module includes a holder having an air inlet and an air outlet, a gas discharge lamp having a lamp reflector assembled onto the holder and a burner disposed in the lamp reflector, a light cover assembled on the holder and surrounding the lamp reflector, a blower duct communicating with the air inlet and extending along the exterior of the lamp reflector to the bottom of the lamp reflector, and an airflow generator communicating with the blower duct and capable of providing a cooling airflow. The air inlet is capable of causing the cooling airflow to enter the blower duct. The blower duct is capable of directing the cooling airflow to the bottom of the lamp reflector to make the cooling airflow pass through a sandwiched space surrounded by the lamp reflector and the light cover and then discharge from the air outlet.
    • 灯源模块包括具有空气入口和空气出口的保持器,具有组装在保持器上的灯反射器的气体放电灯和设置在灯反射器中的燃烧器,组装在保持器上并围绕灯反射器的灯罩, 与空气入口连通并沿着灯反射器的外部延伸到灯反射器的底部的鼓风机管道,以及与鼓风机管道连通并能够提供冷却气流的气流发生器。 进气口能够使冷却气流进入送风管道。 鼓风机管道能够将冷却气流引导到灯反射器的底部,使得冷却气流通过由灯反射器和灯罩包围的夹层空间,然后从空气出口排出。
    • 6. 发明申请
    • FUEL CELL SYSTEM AND METHOD FOR CONTROLLING THE SAME
    • 燃料电池系统及其控制方法
    • US20120196198A1
    • 2012-08-02
    • US13354297
    • 2012-01-19
    • Kuo-Tai Hung
    • Kuo-Tai Hung
    • H01M8/04
    • H01M8/04328H01M8/04223H01M8/04228H01M8/04302H01M8/04303H01M8/04589H01M8/0488
    • A method for controlling a fuel cell system is provided, which includes following steps. It is determined whether a hydrogen flow in a fuel cell stack in the fuel cell system is sufficient, and when the hydrogen flow is determined to be sufficient, an output voltage of the fuel cell stack is gradually deceased, and an output current of the fuel cell stack is continually detected until the output current of the fuel cell stack stops increasing. When the hydrogen flow is determined to be insufficient, the output voltage of the fuel cell stack is gradually increased, and the output current of the fuel cell stack is continually detected until the output current of the fuel cell stack starts to decrease.
    • 提供一种控制燃料电池系统的方法,包括以下步骤。 确定燃料电池系统中的燃料电池堆中的氢气流是否足够,并且当氢气流被确定为足够时,燃料电池堆的输出电压逐渐下降,并且燃料的输出电流 继续检测电池堆,直到燃料电池堆的输出电流停止增加。 当氢气流被确定为不足时,燃料电池堆的输出电压逐渐增加,并且连续检测燃料电池堆的输出电流,直到燃料电池堆的输出电流开始下降。
    • 7. 发明申请
    • APPARATUS FOR GENERATING HYDROGEN
    • 用于生成氢的装置
    • US20120171083A1
    • 2012-07-05
    • US13292098
    • 2011-11-09
    • Yu-Hsiang LinPo-Kuei ChouTsai-Hsin ChengHsuan-Yi Lu
    • Yu-Hsiang LinPo-Kuei ChouTsai-Hsin ChengHsuan-Yi Lu
    • B01J16/00
    • C01B3/065B01J7/02Y02E60/362
    • An apparatus for generating hydrogen including a housing, a reservoir, and a piston is provided. The housing has a top wall, a bottom wall, and a sidewall. The top wall has vents and a protrudent column extending to the interior of the housing. At least one vent communicates with the top wall and the protrudent column and rest of the vents surround the protrudent column. The reservoir is disposed in the housing for storing a solid state reactant and divides the housing into a first chamber and a second chamber. The first chamber is located between the top wall and the reservoir. The second chamber is located between the bottom wall and the reservoir for storing a liquid reactant. The piston is disposed on the bottom wall. The piston is used to push the liquid reactant towards the reservoir to react with the solid state reactant to generate hydrogen.
    • 提供一种用于产生包括壳体,储存器和活塞的氢的装置。 壳体具有顶壁,底壁和侧壁。 顶壁具有延伸到壳体内部的通风口和突出柱。 至少一个通风孔与顶壁和突出柱连通,其余通风口围绕突出柱。 储存器设置在壳体中用于存储固态反应物并将壳体分成第一室和第二室。 第一个室位于顶壁和储层之间。 第二室位于底壁和储存器之间,用于储存液体反应物。 活塞设置在底壁上。 活塞用于将液体反应物推向储存器以与固态反应物反应以产生氢。
    • 8. 发明申请
    • HYDROGEN GENERATING DEVICE
    • 氢气发生装置
    • US20120141335A1
    • 2012-06-07
    • US13187531
    • 2011-07-21
    • Yu-Hsiang LinHsuan-Yi Lu
    • Yu-Hsiang LinHsuan-Yi Lu
    • B01J7/02
    • C01B3/065B01J7/02C01B2203/066H01M8/04208H01M8/065Y02E60/362
    • A hydrogen generating device is adapted for a fuel cell. The hydrogen generating device includes a casing, a button, a solid reactant, a bag-shaped body, and at least one flexible element. The casing has a containing space and an opening. The button is integrally formed and connected to the casing to seal the opening. The solid reactant is disposed in the casing. The bag-shaped body is disposed in the casing and contains a liquid reactant. The flexible element is connected to the casing and is located in the containing space. The flexible element includes a bending end, wherein the flexible element is aligned to the button and is located between the button and the bag-shaped body. When the button is pressed, the button pushes the flexible element so the bending end pierces the bag-shaped body, and the liquid reactant flows out and reacts with the solid reactant to generate hydrogen.
    • 氢气发生装置适用于燃料电池。 氢生成装置包括壳体,按钮,固体反应物,袋状体以及至少一个柔性元件。 壳体具有容纳空间和开口。 按钮整体形成并连接到壳体以密封开口。 固体反应物设置在壳体中。 袋形体设置在壳体中并含有液体反应物。 柔性元件连接到壳体并且位于容纳空间中。 柔性元件包括弯曲端,其中柔性元件与按钮对准并且位于按钮和袋状体之间。 当按钮被按下时,按钮推动柔性元件,使得弯曲端刺穿袋状体,并且液体反应物流出并与固体反应物反应产生氢气。
    • 10. 发明授权
    • Illuminance device having an opening at a rear part of a gas discharge lamp and exposes the burner and projection system
    • 照明装置在气体放电灯的后部具有开口并且暴露燃烧器和投影系统
    • US08164047B2
    • 2012-04-24
    • US12619691
    • 2009-11-17
    • Chih-Cheng ChouShang-Hsuang WuKai-Lun Hou
    • Chih-Cheng ChouShang-Hsuang WuKai-Lun Hou
    • H01J5/02
    • G03B21/16H01J61/52
    • An illuminance device including a gas discharge lamp, an airflow generator, and a distributing duct is provided. The lamp has a reflector, a base connected to the reflector, a burner installed in the reflector, and the base, a first opening located at the reflector and a front part of the lamp, and a second opening located at a rear part of the lamp and exposing the burner. The distributing duct has an inlet, a first outlet, and a second outlet, and an opening area of the first outlet is larger than that of the second outlet. A cooling airflow provided by the airflow generator enters the distributing duct via the inlet, the distributing duct guides a part of the cooling airflow to the first opening via the first outlet, and the distributing duct guides another part of the cooling airflow to the second opening via the second outlet.
    • 提供了包括气体放电灯,气流发生器和分配管道的照度装置。 灯具有反射器,连接到反射器的基座,安装在反射器中的燃烧器和基座,位于反射器处的第一开口和灯的前部,以及位于灯的后部的第二开口 灯和暴露燃烧器。 分配管道具有入口,第一出口和第二出口,第一出口的开口面积大于第二出口的开口面积。 由气流发生器提供的冷却气流通过入口进入分配管道,分配管道经由第一出口将冷却气流的一部分引导到第一开口,并且分配管道将冷却气流的另一部分引导到第二开口 通过第二个出口。