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    • 2. 发明授权
    • Package substrate having embedded capacitor
    • 封装衬底具有嵌入式电容器
    • US08289725B2
    • 2012-10-16
    • US12851795
    • 2010-08-06
    • Chih-Peng Fan
    • Chih-Peng Fan
    • H05K7/00
    • H05K1/162H05K3/4602H05K3/4623H05K3/4644H05K2201/0355H05K2201/09536H05K2201/09763
    • A package substrate having embedded capacitor is provided. The package substrate includes a core circuit board, at least one dielectric layer, at least one embedded capacitor, and at least one metal layer. The core circuit board has at least one wiring layer, and the core circuit board has at least one conductive through hole connected to the wiring layer. At least one dielectric layer covers the wiring layer, and the dielectric layer has at least one conductive through hole. At least one embedded capacitor is embedded in the dielectric layer. At least one metal layer covers the dielectric layer and connected to the embedded capacitor, wherein the metal layer is connected to the wiring layer through the conductive through hole.
    • 提供具有嵌入式电容器的封装基板。 封装衬底包括芯电路板,至少一个电介质层,至少一个嵌入式电容器和至少一个金属层。 核心电路板具有至少一个布线层,并且核心电路板具有连接到布线层的至少一个导电通孔。 至少一个电介质层覆盖布线层,电介质层具有至少一个导电通孔。 至少一个嵌入式电容器嵌入电介质层。 至少一个金属层覆盖电介质层并连接到嵌入式电容器,其中金属层通过导电通孔连接到布线层。
    • 3. 发明授权
    • Method of making a circuit structure
    • 制作电路结构的方法
    • US08186049B2
    • 2012-05-29
    • US12181556
    • 2008-07-29
    • Chih-Peng FanYen-Ti Chia
    • Chih-Peng FanYen-Ti Chia
    • H05K3/02
    • H05K1/111H01L2224/16225H05K3/108H05K3/243H05K3/3452H05K3/4007H05K2201/0367H05K2201/0989H05K2201/10674H05K2203/0574Y02P70/611Y10T29/49126Y10T29/4913Y10T29/49155Y10T29/49165
    • A manufacturing method of a circuit structure is provided as follows. Firstly, a base conductive layer is formed on the carrier board and a first patterned plating-resistant layer having at least one trench for exposing a part of the base conductive layer is formed on the base conductive layer. A first patterned conductive layer is then formed in the trench and a second patterned plating-resistant layer is formed which covers a part of the first patterned conductive layer and a part of the first patterned plating-resistant layer. A second patterned conductive layer is formed on the exposed first patterned conductive layer. The first and the second patterned plating-resistant layers and the base conductive layer exposed by the first patterned conductive layer are removed. Then, a patterned solder mask is formed for covering a part of the first patterned conductive layer.
    • 电路结构的制造方法如下所述。 首先,在载体板上形成基底导电层,在基底导电层上形成具有至少一个露出基底导电层的一部分的沟槽的第一图案化电镀层。 然后在沟槽中形成第一图案化导电层,并且形成覆盖第一图案化导电层的一部分和第一图案化电镀层的一部分的第二图案化电镀层。 在暴露的第一图案化导电层上形成第二图案化导电层。 去除第一和第二图案化电镀层和由第一图案化导电层暴露的基底导电层。 然后,形成图案化的焊料掩模以覆盖第一图案化导电层的一部分。
    • 8. 发明申请
    • PROJECTION SYSTEM
    • 投影系统
    • US20100002196A1
    • 2010-01-07
    • US12271366
    • 2008-11-14
    • Ho LuShih-Po YehTsung-Hsien WuPeng-Fan Chen
    • Ho LuShih-Po YehTsung-Hsien WuPeng-Fan Chen
    • G03B21/14
    • G03B21/14G02B27/1053G02B27/1086G02B27/123G02B27/145G02B27/149G03B21/005G03B21/2033G03B33/14H04N9/3161
    • A projection system includes a multi-laser beam generator, a beam switching device, a split beam projecting device and a transmissive light valve. The multi-laser beam generator selectively generates a red beam, a green beam and a blue beam. The beam switching device receives the red, green and blue beams, splits the red, green and blue beams into a plurality of light beams of different angles, and directs the red, green and blue beams of the different angles into a common optical path. The split beam projecting device includes a plurality of micro-lenses. The transmissive light valve has a plurality of pixels for receiving the red, green and blue beams that are guided by the split beam projecting device. The red, green and blue beams of the different angles are received by the micro-lenses and guided onto the pixels of the transmissive light valve for imagining on the pixels.
    • 投影系统包括多激光束发生器,光束切换装置,分束投射装置和透射光阀。 多激光束发生器选择性地产生红色光束,绿色光束和蓝色光束。 光束切换装置接收红色,绿色和蓝色光束,将红色,绿色和蓝色光束分成多个不同角度的光束,并将不同角度的红色,绿色和蓝色光束引导到公共光路中。 分束投影装置包括多个微透镜。 透射光阀具有用于接收由分束投影装置引导的红色,绿色和蓝色光束的多个像素。 不同角度的红色,绿色和蓝色光束由微透镜接收并被引导到透射光阀的像素上,用于想象像素。