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    • 1. 发明授权
    • Stacked solid-state electrolytic capacitor with multi-directional product lead frame structure
    • 堆叠式固态电解电容器具有多方向产品引线框架结构
    • US08390991B2
    • 2013-03-05
    • US12833421
    • 2010-07-09
    • Chi-Hao ChiuYui-Shin FranChing-Feng LinChun-Chia HuangChun-Hung LinWen-Yen Huang
    • Chi-Hao ChiuYui-Shin FranChing-Feng LinChun-Chia HuangChun-Hung LinWen-Yen Huang
    • H01G9/04H01G9/15H01G4/228
    • H01G9/00
    • A stacked solid state solid electrolytic capacitor includes a plurality of capacitor units, a substrate unit and a package unit. The substrate unit includes a positive guiding substrate and a negative guiding substrate. The positive guiding substrate has a positive exposed end integrally extended therefrom along a first predetermined direction. The negative guiding substrate has a first negative exposed end integrally extended therefrom along a second predetermined direction, a second negative exposed end integrally extended therefrom along a third predetermined direction, and a third negative exposed end integrally extended therefrom along a fourth predetermined direction. The first, the second, the third and the fourth predetermined directions are different. The capacitor units are stacked on top of one another and disposed on the negative guiding substrate. The package unit encloses the capacitor units, one part of the positive and one part of the negative guiding substrate.
    • 堆叠的固态固体电解电容器包括多个电容器单元,基板单元和封装单元。 基板单元包括正引导基板和负引导基板。 正引导基板具有沿着第一预定方向从其一体延伸的正露出端。 负引导基板具有沿着第二预定方向从其一体地延伸的第一负外露端,沿着第三预定方向从其一体地延伸的第二负外露端,以及沿着第四预定方向从其一体地延伸的第三负外露端。 第一,第二,第三和第四预定方向是不同的。 电容器单元堆叠在彼此的顶部并且设置在负引导基板上。 封装单元包围电容器单元,正极的一部分和负引导基板的一部分。
    • 2. 发明申请
    • STACKED SOLID-STATE ELECTROLYTIC CAPACITOR WITH MULTI-DIRECTIONAL PRODUCT LEAD FRAME STRUCTURE
    • 具有多方向产品引线框架结构的堆叠式固态电解电容器
    • US20110216475A1
    • 2011-09-08
    • US12833421
    • 2010-07-09
    • Chi-Hao ChiuYui-Shin FranChing-Feng LinChun-Chia HuangChun-Hung LinWen-Yen Huang
    • Chi-Hao ChiuYui-Shin FranChing-Feng LinChun-Chia HuangChun-Hung LinWen-Yen Huang
    • H01G9/00
    • H01G9/00
    • A stacked solid-state electrolytic capacitor with multi-directional product lead frame structure includes a plurality of capacitor units, a substrate unit and a package unit. The capacitor units are stacked onto each other. Each capacitor unit has a positive electrode and a negative electrode, the positive electrode of each capacitor unit has a positive pin extended outwards, the positive pins are electrically stacked onto each other, and the negative electrodes are electrically stacked onto each other. The substrate unit has at least one positive guiding substrate electrically connected to the positive pins of the capacitor units and a plurality of negative guiding substrates electrically connected to the negative electrodes of the capacitor units. The package unit covers the capacitor units and one part of the substrate unit in order to expose an end of the at least one positive guiding substrate and an end of each negative guiding substrate.
    • 具有多方向产品引线框架结构的堆叠式固态电解电容器包括多个电容器单元,基板单元和封装单元。 电容器单元堆叠在一起。 每个电容器单元具有正极和负极,每个电容器单元的正极具有向外延伸的正极,正极彼此电叠置,并且负极彼此电叠置。 基板单元具有电连接到电容器单元的正极销的至少一个正引导基板和电连接到电容器单元的负电极的多个负引导基板。 封装单元覆盖电容器单元和衬底单元的一部分,以暴露至少一个正引导衬底的端部和每个负引导衬底的端部。
    • 3. 发明授权
    • Method of manufacturing solar cell with two exposed surfaces of arc layer disposed at different levels
    • 制造太阳能电池的方法,其具有设置在不同水平的弧形层的两个暴露表面
    • US08927314B2
    • 2015-01-06
    • US13549814
    • 2012-07-16
    • Sheng Yung LiuChin-Tien YangChun-Hung Lin
    • Sheng Yung LiuChin-Tien YangChun-Hung Lin
    • H01L21/00H01L31/0224H01L31/0216
    • H01L31/022433H01L31/02168Y02E10/50Y02E10/52
    • A method of manufacturing a solar cell includes the steps of: providing a substrate having a front side, a back side and a doped region; forming a conductor layer on the front side; firing the conductor layer at a temperature such that the conductor layer is formed with a first portion embedded into the doped region and a second portion other than the first portion; forming an anti-reflection coating (ARC) layer on the front side and the second portion, wherein the ARC layer covers the conductor layer so that the second portion of the conductor layer is disposed in the ARC layer; and removing the ARC layer on the conductor layer so that the conductor layer has an exposed surface exposed out of the ARC layer, wherein the exposed surface of the conductor layer is substantially flush with a first exposed surface of the ARC layer.
    • 一种制造太阳能电池的方法包括以下步骤:提供具有正面,背面和掺杂区域的基板; 在前侧形成导体层; 在使得导体层形成有嵌入掺杂区域的第一部分和除了第一部分之外的第二部分的温度下烧制导体层; 在前侧和第二部分形成防反射涂层(ARC)层,其中ARC层覆盖导体层,使得导体层的第二部分设置在ARC层中; 以及去除所述导体层上的所述ARC层,使得所述导体层具有暴露在所述ARC层外部的暴露表面,其中所述导体层的所述暴露表面基本上与所述ARC层的第一暴露表面齐平。
    • 4. 发明授权
    • Method of manufacturing solar cell with upper and lower conductor layers stacked together
    • 具有层叠在一起的上下导体层的太阳能电池的制造方法
    • US08728851B2
    • 2014-05-20
    • US13549877
    • 2012-07-16
    • Sheng Yung LiuChin-Tien YangChun-Hung Lin
    • Sheng Yung LiuChin-Tien YangChun-Hung Lin
    • H01L31/18
    • H01L31/022433H01L31/02168Y02E10/50Y02E10/52
    • A method of manufacturing a solar cell comprises the steps of: forming a lower conductor layer on a front side of a substrate; firing the lower conductor layer at a first temperature to form a first portion embedded into a doped region of the substrate and a second portion; forming an anti-reflection coating (ARC) layer on the front side and the second portion, wherein the ARC layer covers the lower conductor layer such that the second portion is disposed in the ARC layer; forming an upper conductor layer, corresponding to the lower conductor layer and electrically connected to the lower conductor layer, on the ARC layer; and firing the upper conductor layer at a second temperature to form a first portion embedded into the ARC layer and a second portion, which is exposed out of the ARC layer.
    • 一种制造太阳能电池的方法包括以下步骤:在基板的正面形成下导体层; 在第一温度下焙烧下导体层以形成嵌入衬底的掺杂区域中的第一部分和第二部分; 在前侧和第二部分形成防反射涂层(ARC)层,其中ARC层覆盖下导体层,使得第二部分设置在ARC层中; 在ARC层上形成对应于下导体层并电连接到下导体层的上导体层; 以及在第二温度下烧制所述上导体层以形成嵌入到所述ARC层中的第一部分和暴露在所述ARC层外的第二部分。
    • 6. 发明申请
    • HEAT DISSIPATING DEVICE
    • 热灭火装置
    • US20130206369A1
    • 2013-08-15
    • US13371480
    • 2012-02-13
    • Wei-I LinChien-Chih YehWen-Shiang ChenChun-Hung Lin
    • Wei-I LinChien-Chih YehWen-Shiang ChenChun-Hung Lin
    • F28D15/04
    • F28D15/043
    • A heat dissipating device includes a chamber body, a heat sink, a pipe, a first capillary structure and N vapor channels. The chamber body has an evaporation chamber and a compensation chamber, wherein the evaporation chamber has a vapor outlet and the compensation chamber has a liquid inlet. The heat sink is disposed on an outer wall of a first side of the chamber body and at least covers the compensation chamber. The pipe is installed within the heat sink, wherein a first end of the pipe is connected to the vapor outlet and a second end of the pipe is connected to the liquid inlet. The first capillary structure is formed in the evaporation chamber. The N vapor channels are formed in the first capillary structure. The N vapor channels and the compensation chamber are isolated by the first capillary structure.
    • 散热装置包括室主体,散热器,管,第一毛细管结构和N个蒸气通道。 腔体具有蒸发室和补偿室,其中蒸发室具有蒸汽出口,并且补偿室具有液体入口。 散热器设置在室主体的第一侧的外壁上,并且至少覆盖补偿室。 管道安装在散热器内,其中管道的第一端连接到蒸汽出口,并且管道的第二端连接到液体入口。 第一毛细结构形成在蒸发室中。 N蒸汽通道形成在第一毛细管结构中。 N蒸气通道和补偿室由第一毛细管结构隔离。