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    • 43. 发明申请
    • Method and system for providing a thin film with a controlled crystal orientation using pulsed laser induced melting and nucleation-initiated crystallization
    • 使用脉冲激光诱导熔融和成核引发结晶来提供具有受控晶体取向的薄膜的方法和系统
    • US20060006464A1
    • 2006-01-12
    • US10953312
    • 2004-09-29
    • James ImJae Choi
    • James ImJae Choi
    • C30B23/00H01L21/00H01L27/01
    • H01L21/76867B23K26/066C30B13/24C30B29/02H01L21/76838
    • Method and system for generating a metal thin film with a uniform crystalline orientation and a controlled crystalline microstructure are provided. For example, a metal layer is irradicated with a pulsed laser to completely melt the film throughout its entire thickness. The metal layer can then resolidify to form grains with a substantially uniform orientation. The resolidified metal layer can be irradiated with a sequential lateral solidification technique to modify the crystalline microstructure (e.g., create larger grains, single-crystal regions, grain boundary controlled microstructures, etc.) The metal layer can be irradiated by patterning a beam using a mask which includes a first region capable of attenuating the pulsed laser and a second region allowing complete irradiation of sections of the thin film being impinged by the masked laser beam. An inverse dot-patterned mask can be used, the microstructure that may have substantially the same as the geometric pattern as that of the dots of the mask.
    • 提供了用于产生具有均匀结晶取向和受控结晶微结构的金属薄膜的方法和系统。 例如,用脉冲激光对金属层进行辐射,以使其在整个厚度上完全熔化。 然后可以将金属层重新固化以形成具有基本均匀取向的晶粒。 可以用连续的侧向固化技术照射再固化的金属层,以改变结晶微结构(例如,产生更大的晶粒,单晶区域,晶界控制的微结构等)。金属层可以通过使用 掩模,其包括能够衰减所述脉冲激光的第一区域和允许被所述被掩模的激光束照射所述薄膜的部分的完全照射的第二区域。 可以使用反点阵图案掩模,该微结构可以具有与掩模点的几何图案基本相同的微结构。
    • 45. 发明申请
    • Sectional table with gussets
    • 带角撑板的剖面表
    • US20050066862A1
    • 2005-03-31
    • US10674949
    • 2003-09-29
    • Jae ChoiChoon Choi
    • Jae ChoiChoon Choi
    • A47B3/06A47B13/02
    • A47B3/06A47B13/021
    • Disclosed is a sectional table with gussets wherein each gusset is made of a plastic material and is detachably mounted to a channel frame, thereby omitting a drawing process for the channel frame and a welding process of the gussets with the channel frame, which gives some advantages that manufacturing costs substantially decrease and workability and efficiency in assembling are substantially improved. The sectional table includes: a channel frame having a bottom portion provided with a through hole formed thereon, a pair of side walls vertically extending from both ends of the bottom portion in such a manner as to face each other to define an insertion groove therebetween, and flange portions horizontally extending outwardly from top ends of the pair of side walls so as to be coupled to the underside of a table top plate; a table leg having a predetermined length and inserted into the through hole formed on the bottom portion of the channel frame; and a gusset fitted into the insertion groove of the channel frame to be detachably mounted onto the pair of side walls, the gusset having an insertion recess formed on the underside thereof in a predetermined depth for inserting the top portion of the table leg thereto.
    • 公开了一种具有角撑板的截面图,其中每个角撑板由塑料材料制成并且可拆卸地安装到通道框架,从而省略了通道框架的拉丝工艺以及角撑板与通道框架的焊接过程,这给出了一些优点 制造成本显着降低,组装的可加工性和效率显着提高。 剖视图包括:具有设置有形成在其上的通孔的底部的通道框架,一对侧壁,其以彼此面对的方式从底部的两端垂直延伸以在其间限定插入槽, 以及凸缘部分,其水平地从所述一对侧壁的顶端向外延伸,以便联接到台面板的下侧; 具有预定长度并插入形成在通道框架的底部上的通孔中的台腿; 以及装配在通道框架的插入槽中的角撑板以可拆卸地安装在一对侧壁上,该角撑板具有形成在其下侧上的预定深度的插入凹部,用于将桌腿的顶部部分插入其中。
    • 46. 发明授权
    • Non-destructive thermal conductivity detection of solder voids
    • 焊料空隙的非破坏性热导率检测
    • US08376209B2
    • 2013-02-19
    • US12779848
    • 2010-05-13
    • Jae ChoiMark D. Woolley
    • Jae ChoiMark D. Woolley
    • B23K31/12G01N25/00G01N25/72
    • G01R31/048G01R31/311
    • Systems and methods can produce thermal images of the mounting of a thermally-enhanced integrated circuit (IC) upon a circuit board. The system includes a thermal imaging camera that is operable to image the thermal dissipation and/or conduction through the heat sink into a mounting pad on the substrate. In testing the thermally-enhanced IC, the substrate or IC is connected to a power source, and the IC is operated such that the IC begins to generate heat. As the heat is conducted or dissipated through the heat sink into the mounting pad, a thermal imaging camera can detect the heat conduction and/or dissipation through the heat sink into the substrate. If there are voids or other types of failures in the mounting of the IC, the thermal imaging camera can detect cooler or colder spots in the image.
    • 系统和方法可以产生在电路板上安装热增强集成电路(IC)的热图像。 该系统包括热成像相机,其可操作以将通过散热器的散热和/或传导成像到基板上的安装焊盘。 在测试热增强IC时,衬底或IC连接到电源,并且IC被操作以使得IC开始发热。 当热量通过散热器传导或散发到安装垫中时,热成像相机可以检测通过散热器进入基板的热传导和/或耗散。 如果安装IC有空隙或其他类型的故障,则热成像相机可以检测到图像中较冷或较冷的斑点。
    • 47. 发明授权
    • Apparatus for attaching a device to a circular structure
    • 用于将装置附接到圆形结构的装置
    • US08186643B2
    • 2012-05-29
    • US12731309
    • 2010-03-25
    • Wei LuoTounine MayerJae Choi
    • Wei LuoTounine MayerJae Choi
    • F16M11/00
    • F16L41/008G01N29/223G01N2291/044G01N2291/2634
    • An apparatus for attaching a device to a circular structure is disclosed. In one embodiment, the apparatus includes a clamp body attached to the outer surface of the circular structure using a strap, which can be attached to the clamp body using a spring that maintains an attachment force to prevent movement of the clamp body over a wide range of temperatures and temperature cycling of the circular structure and the strap. In one embodiment, the device can be installed in the clamp body and coupled to the outer surface of the circular structure using one or more spring washers that maintain an attachment force between the device and the outer surface of the circular structure to prevent detachment of the device from the outer surface of the circular structure over a wide range of temperatures and temperature cycling of the circular structure.
    • 公开了一种用于将装置附接到圆形结构的装置。 在一个实施例中,该装置包括使用带子连接到圆形结构的外表面的夹具主体,该带可以使用保持附接力的弹簧附接到夹具主体,以防止夹具主体在较宽的范围内移动 的圆形结构和带子的温度和温度循环。 在一个实施例中,该装置可以安装在夹具主体中并且使用一个或多个弹簧垫圈联接到圆形结构的外表面,弹簧垫圈在装置与圆形结构的外表面之间保持附着力,以防止 器件从圆形结构的外表面在圆形结构的宽温度和温度循环范围内。
    • 49. 发明申请
    • Support structure for a planar cooling device
    • 平面冷却装置的支撑结构
    • US20070240860A1
    • 2007-10-18
    • US11410772
    • 2006-04-24
    • George MeyerKi-Bu NamSung KwackJae Choi
    • George MeyerKi-Bu NamSung KwackJae Choi
    • F28D15/04
    • F28D15/046F28D15/0233G06F1/20H01L23/427H01L2924/0002Y10T29/49353H01L2924/00
    • A support structure for a compact planar cooling device is presented. The support structure allows the cooling device to be made with a simpler structure than most conventional cooling devices. The cooling device includes a planar casing, a wick layer, and the support structure. The support structure includes a flat plate with a portion cut out to form an opening and a spacer on the flat plate. The spacer is made by bending or folding the cut-out portion of the plate. The spacer enhances coolant circulation inside the cooling device by pushing the wick layer against the inner surface of the casing and maintaining a set distance between the support structure and the casing to allow unimpeded coolant movement. The cooling device can be made cost-effectively without compromising heat transfer efficiency.
    • 提出了一种紧凑型平面冷却装置的支撑结构。 支撑结构允许制冷装置的结构比大多数传统的冷却装置简单。 冷却装置包括平面壳体,芯吸层和支撑结构。 支撑结构包括平板,其中切出一部分以在平板上形成开口和间隔件。 间隔件通过弯曲或折叠板的切口部分而制成。 间隔板通过将油芯层推靠在壳体的内表面上并且保持支撑结构和壳体之间的设定距离以允许不受阻碍的冷却剂移动来增强冷却装置内部的冷却剂循环。 冷却装置可以经济地制造而不损害传热效率。