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    • 1. 发明授权
    • Output ratio adjusting method for optic sensor
    • 光传感器的输出比调整方法
    • US08247774B2
    • 2012-08-21
    • US12453081
    • 2009-04-29
    • Wen-Long ChouNi-Ting Chu
    • Wen-Long ChouNi-Ting Chu
    • G01J5/02
    • G01J1/4228G01J1/02G01J1/0295G01J1/429G01J3/2803G01J3/51G01J3/513
    • A method for adjusting output ratio of an optic sensor includes the following steps: measuring and obtaining a response spectrum of the optic sensor; analyzing optic response ratios of the response spectrum at different wavelengths; designing a ratio of light reception areas of the optic sensor, the design being carried out in accordance with three aspects of “the response spectrum” “a fixed proportional relationship being present between multiplication of the optic response ratio and the light reception area and an output of light current” and “a proportional relationship being present between the light reception area and the output of the light current”; and obtaining light current outputs of identical proportions (such as 1:1:1) or in a desired ratio (meaning any arbitrary ratio other than 1:1:1, such as 1:2:1, 1:2:3, or 3:4:5) in accordance with the design of the previous step.
    • 用于调整光学传感器的输出比的方法包括以下步骤:测量并获得光学传感器的响应谱; 分析不同波长的响应光谱的光响应比; 设计光传感器的光接收面积的比例,根据“响应谱”三个方面进行设计,“光响应比与光接收区域的乘法之间存在固定的比例关系,以及输出 的光电流“和”光接收区域和光电流的输出之间存在比例关系“; 并且获得相同比例的光电流输出(例如1:1:1)或以期望的比例(即除1:1:1之外的任意比例,例如1:2:1,1:2:3或 3:4:5)按照上一步的设计。
    • 2. 发明申请
    • Output ratio adjusting method for optic sensor
    • 光传感器的输出比调整方法
    • US20100276596A1
    • 2010-11-04
    • US12453081
    • 2009-04-29
    • Wen-Long ChouNi-Ting Chu
    • Wen-Long ChouNi-Ting Chu
    • G01J5/02H01J40/14G01J1/42
    • G01J1/4228G01J1/02G01J1/0295G01J1/429G01J3/2803G01J3/51G01J3/513
    • A method for adjusting output ratio of an optic sensor includes the following steps: measuring and obtaining a response spectrum of the optic sensor; analyzing optic response ratios of the response spectrum at different wavelengths; designing a ratio of light reception areas of the optic sensor, the design being carried out in accordance with three aspects of “the response spectrum” “a fixed proportional relationship being present between multiplication of the optic response ratio and the light reception area and an output of light current” and “a proportional relationship being present between the light reception area and the output of the light current”; and obtaining light current outputs of identical proportions (such as 1:1:1) or in a desired ratio (meaning any arbitrary ratio other than 1:1:1, such as 1:2:1, 1:2:3, or 3:4:5) in accordance with the design of the previous step.
    • 用于调整光学传感器的输出比的方法包括以下步骤:测量并获得光学传感器的响应谱; 分析不同波长的响应光谱的光响应比; 设计光传感器的光接收面积的比例,根据“响应谱”三个方面进行设计,“光响应比与光接收区域的乘法之间存在固定的比例关系,以及输出 的光电流“和”光接收区域和光电流的输出之间存在比例关系“; 并且获得相同比例的光电流输出(例如1:1:1)或以期望的比例(即除1:1:1之外的任意比例,例如1:2:1,1:2:3或 3:4:5)按照上一步的设计。
    • 3. 发明申请
    • High-efficiency matrix-type LED device
    • 高效矩阵型LED器件
    • US20070090488A1
    • 2007-04-26
    • US11256070
    • 2005-10-24
    • Chi-Jen TengWen-Long ChouKuo-Jui Huang
    • Chi-Jen TengWen-Long ChouKuo-Jui Huang
    • H01L29/861
    • H01L25/167H01L27/156H01L2924/0002H01L2924/00
    • A high-efficiency matrix-type LED device comprises an epitaxial wafer on which a plurality of independently insulated LEDs are formed by a method of manufacturing integrated circuits; and a conducting line mounted on each one of the LEDs by an evaporation method for forming a large-sized matrix-type LED unit capable of increasing brightness, simplifying manufacturing procedure, and saving manufacturing cost effectively. In addition, a sub-mount having a two-way Zener diode embedded therein is applied to the matrix-type LED unit. By mounting the matrix-type LED unit on the sub-mount, the two-way Zener diode can protect the LEDs against damage from electrostatic discharge (ESD) so as to increase lifetime of LEDs.
    • 一种高效率矩阵式LED器件,包括通过制造集成电路的方法形成多个独立绝缘的LED的外延晶片; 以及通过用于形成能够增加亮度的大型矩阵型LED单元的蒸发方法安装在每个LED上的导线,并且简化了制造步骤,并且有效地节省了制造成本。 此外,嵌入其中的具有双向齐纳二极管的子座被施加到矩阵型LED单元。 通过将矩阵型LED单元安装在子座上,双向齐纳二极管可以保护LED免受静电放电(ESD)的损害,从而增加LED的寿命。
    • 6. 发明申请
    • Photo detection device
    • 照片检测装置
    • US20100116970A1
    • 2010-05-13
    • US12292060
    • 2008-11-12
    • Wen-Long ChouNi-Ting Chu
    • Wen-Long ChouNi-Ting Chu
    • H01J40/14
    • H01L31/0203H01L31/02002H01L31/0216H01L2224/48091H01L2924/3025H01L2924/00014H01L2924/00
    • A photo detection device includes a first lead frame, a second lead frame, a photo detection die having a coating layer, and an enclosure. The first lead frame forms a carriage section. The coating layer is formed on the photo detection die. The photo detection die is mounted on the carriage section of the first lead frame and forms electrical connection with the second lead frame through a conductor. The enclosure is a non-light-transmittable member forming therein a receiving space. The enclosure is mounted on the first and second lead frames and receives the photo detection die in the receiving space thereof. The enclosure forms an opening for light detection by the photo detection die. As such, detection of a long wavelength invisible light, such as an infrared light, by the photo detection die can be prevented to thereby provide a photo detection device with increased reliability of detection.
    • 光检测装置包括第一引线框,第二引线框,具有涂层的光检测模和外壳。 第一个引线框架形成一个托架部分。 在光检测模具上形成涂层。 光检测模具安装在第一引线框架的托架部分上,并通过导体与第二引线框架形成电连接。 外壳是在其中形成容纳空间的不透光构件。 外壳安装在第一和第二引线框架上,并在其接收空间中接收光检测管芯。 外壳形成用于光检测模具的光检测的开口。 因此,可以防止通过光检测裸片检测长波长不可见光(例如红外光),从而提供具有增加的检测可靠性的光检测装置。
    • 7. 发明授权
    • Light emitting device having integrated rectifier circuit in substrate
    • 在衬底中具有集成整流电路的发光器件
    • US07148515B1
    • 2006-12-12
    • US11326706
    • 2006-01-07
    • Kuo-Jui HuangWen-Long ChouChia-Pin Sung
    • Kuo-Jui HuangWen-Long ChouChia-Pin Sung
    • H01L27/15
    • H01L27/156H01L25/167H01L2924/0002H01L2924/00
    • A LED-based light emitting device having integrated rectifier circuit driven directly by an AC voltage and a related fabrication method is provided herein. The light emitting mainly contains a lower substrate and an upper substrate. The lower substrate has a built-in rectifier circuit and appropriate electrical contacts of the rectifier circuit are exposed on the top surface of the lower substrate. The upper substrate contains multiple LEDs arranged in an N×M array and the LEDs are all electrically insulated from each other. Metallic plating techniques are applied to establish electrical connection between these LEDs so that they jointly form a circuit matching the rectifier circuit on the lower substrate. The two substrates are faced towards each other and metallic bumps are applied to connect the LED circuit on the upper substrate to the rectifier circuit on the lower substrate, completing a fully function light emitting device.
    • 本发明提供了一种具有由AC电压直接驱动的集成整流电路和相关制造方法的LED基发光器件。 发光主要包含下基板和上基板。 下基板具有内置的整流电路,并且整流电路的合适的电触点暴露在下基板的顶表面上。 上基板包含布置在N×M阵列中的多个LED,并且LED彼此都是电绝缘的。 应用金属电镀技术来建立这些LED之间的电连接,使得它们共同形成与下基板上的整流电路匹配的电路。 两个基板彼此面对,并且施加金属凸块以将上基板上的LED电路连接到下基板上的整流电路,从而完成功能完整的发光器件。