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    • 1. 发明授权
    • Photoelectronic device
    • 光电器件
    • US08845143B2
    • 2014-09-30
    • US12289478
    • 2008-10-29
    • Chia-Liang HsuChien-Fu HuangChun-Yi Wu
    • Chia-Liang HsuChien-Fu HuangChun-Yi Wu
    • F21V5/00H01L33/54H01L33/48
    • H01L33/54H01L33/483Y10S362/80
    • A photoelectronic device including a carrier, a light-emitting component mounted on the carrier; a patterned structure deposited on the carrier and around the light-emitting component; and a transparent sealing structure formed above the light-emitting component. The patterned structure mentioned above can cause the transparent sealing structure to be focused above the light-emitting component, and restrained in the patterned structure. The transparent sealing structure with predetermined proportional configuration is obtained by controlling the quantity of the transparent sealing structure. Therefore light efficiency of the photoelectronic device can be greatly improved.
    • 一种光电子器件,包括载体,安装在载体上的发光部件; 沉积在载体上并围绕发光部件的图案化结构; 以及形成在发光部件上方的透明密封结构。 上述图案化结构可以使透明密封结构聚焦在发光部件的上方,并被限制在图案化结构中。 通过控制透明密封结构的数量来获得具有预定比例构型的透明密封结构。 因此,可以大大提高光电子器件的光效率。
    • 3. 发明授权
    • Optoelectronic device and the manufacturing method thereof
    • 光电子器件及其制造方法
    • US08474233B2
    • 2013-07-02
    • US13528059
    • 2012-06-20
    • Shih-I ChenChia-Liang HsuTzu-Chieh HsuChun-Yi WuChien-Fu Huang
    • Shih-I ChenChia-Liang HsuTzu-Chieh HsuChun-Yi WuChien-Fu Huang
    • H01L33/06
    • H01L33/46H01L33/22H01L33/42H01L33/44
    • An optoelectronic device has a substrate and a first window layer on the substrate with a first sheet resistance, a first thickness, and a first impurity concentration. A second window layer has a second sheet resistance, a second thickness, and a second impurity concentration. A semiconductor system is between the first window layer and the second window layer. The second window layer has a semiconductor material different from the semiconductor system, and the second sheet resistance is greater than the first sheet resistance. A method for manufacturing is provided, having the steps of providing a substrate, forming a semiconductor system on the substrate, and forming a window layer on the semiconductor system. The window layer has a semiconductor material different from the semiconductor system. Selectively removing the window layer forms a width difference greater than 1 micron between the window layer and semiconductor system.
    • 光电器件具有衬底和衬底上的第一窗口层,具有第一薄层电阻,第一厚度和第一杂质浓度。 第二窗口层具有第二薄层电阻,第二厚度和第二杂质浓度。 半导体系统在第一窗口层和第二窗口层之间。 第二窗口层具有与半导体系统不同的半导体材料,第二薄层电阻大于第一薄层电阻。 提供一种制造方法,其具有以下步骤:提供衬底,在衬底上形成半导体系统,并在半导体系统上形成窗口层。 窗口层具有与半导体系统不同的半导体材料。 选择性地去除窗口层在窗口层和半导体系统之间形成大于1微米的宽度差。
    • 10. 发明申请
    • Synthetic method and automation device for fluorine-18-ACETATE
    • 氟-18-ACETATE的合成方法和自动化装置
    • US20100310428A1
    • 2010-12-09
    • US12478787
    • 2009-06-05
    • MING-HSIN LIHSIN-EII WANGCHUN-YI WUWUU-JYH LIN
    • MING-HSIN LIHSIN-EII WANGCHUN-YI WUWUU-JYH LIN
    • G05D16/00B01J19/00G05B11/00
    • B01J19/004
    • An automatic synthesis device for fluorine-18-ACETATE ([18F]fluoroacetate) consists of a machinery housing that has multiple reactors and multiple raw material containers, and uses multiple control valves between each reactor and container, and operates the control valves through a control system to charge the raw material from each container to each reactor in an automatic and sequential fashion to execute the six procedures: fluorination, azeotropic dewatering, synthesis (reaction with precursors), purification and separation, hydrolysis and neutralization, purification and collection. The operation simply requires adding raw materials to the containers in advance, turning on power, charging reactive gases. In 50 minutes, the process to produce the product will be completed. The operation is really simple and can effectively improve production efficiency.
    • 用于氟-18-乙酸酯([18 F]氟乙酸酯)的自动合成装置由具有多个反应器和多个原料容器的机械壳体组成,并且在每个反应器和容器之间使用多个控制阀,并通过控制器操作控制阀 系统,以自动和连续的方式从每个容器向每个反应器充填原料,以执行氟化,共沸脱水,合成(与前体反应),纯化和分离,水解和中和,纯化和收集的六个步骤。 该操作只需要事先向容器中加入原料,打开电源,充入反应气体。 50分钟内,生产产品的过程即将完成。 操作非常简单,可以有效提高生产效率。