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    • 1. 发明授权
    • Radiation patternable functional materials, methods of their use, and structures formed therefrom
    • 可辐射图案化功能材料,其使用方法和由其形成的结构
    • US07294449B1
    • 2007-11-13
    • US10749876
    • 2003-12-31
    • Christopher GudemanJoerg RockenbergerBrian HubertCriswell ChoiAlfred Renaldo
    • Christopher GudemanJoerg RockenbergerBrian HubertCriswell ChoiAlfred Renaldo
    • G03F7/00G03F7/004
    • G03F7/0047C23C18/06C23C18/14H05K3/02H05K2201/0257H05K2203/0514H05K2203/121
    • Materials, compounds and compositions for radiation patternable functional thin films, methods of synthesizing such materials and compounds, and methods for forming an electronically functional thin film and structures including such a film. The compounds and compositions generally include (a) nanoparticles of an electronically functional material or substance and (b) ligands containing a (photo)reactive group. The method generally includes the steps of (1) irradiating the compound and/or composition, and (2) curing the irradiated compound and/or composition, generally to form an electronically functional film. The functional thin film includes a sintered mixture of nanoparticles. The thin film exhibits improved morphology and/or resolution relative to an otherwise identical structure made by an identical process, but without the (photo)functional group on the ligand, and/or relative to an otherwise identical material patterned by a conventional graphics art-based printing process. The present process also exhibits improved throughput relative to conventional photolithographic processing, by eliminating a metal deposition step. The present invention advantageously provides functional thin film structures having qualities suitable for use in electronics applications, such as display devices or RF ID tags, while enabling elimination of a number of conventional photolithographic processing steps (e.g., functional material sputtering, PECVD, etc.).
    • 用于辐射可图形功能薄膜的材料,化合物和组合物,合成这种材料和化合物的方法,以及形成电子功能薄膜的方法和包括这种膜的结构。 化合物和组合物通常包括(a)电子功能材料或物质的纳米颗粒和(b)含有(光)反应性基团的配体。 该方法通常包括以下步骤:(1)照射化合物和/或组合物,和(2)固化照射的化合物和/或组合物,通常形成电子功能膜。 功能性薄膜包括纳米颗粒的烧结混合物。 相对于通过相同方法制备的其它相同的结构,但是没有配体上的(光)官能团,和/或相对于通过常规图形艺术图案化的其它相同材料,薄膜表现出改善的形态和/或分辨率。 基于打印过程。 通过消除金属沉积步骤,本方法还显示相对于常规光刻处理的改善的生产量。 本发明有利地提供具有适合用于电子应用(例如显示装置或RF ID标签)的质量的功能薄膜结构,同时能够消除许多常规光刻处理步骤(例如,功能材料溅射,PECVD等) 。
    • 3. 发明授权
    • MOS transistor with laser-patterned metal gate, and method for making the same
    • 具有激光图案化金属栅极的MOS晶体管及其制造方法
    • US08461628B2
    • 2013-06-11
    • US11203563
    • 2005-08-11
    • Criswell ChoiJoerg RockenbergerJ. Devin MacKenzieChristopher Gudeman
    • Criswell ChoiJoerg RockenbergerJ. Devin MacKenzieChristopher Gudeman
    • H01L29/66H01L21/336H01L21/8234H01L29/772
    • H01L21/32131H01L21/28123H01L21/84H01L27/1292H01L29/66757
    • A MOS transistor with a laser-patterned metal gate, and methods for its manufacture. The method generally includes forming a layer of metal-containing material on a dielectric film, wherein the dielectric film is on an electrically functional substrate comprising an inorganic semiconductor; laser patterning a metal gate from the metal-containing material layer; and forming source and drain terminals in the inorganic semiconductor in locations adjacent to the metal gate. The transistor generally includes an electrically functional substrate; a dielectric film on at least portions of the electrically functional substrate; a laser patterned metal gate on the dielectric film; and source and drain terminals comprising a doped inorganic semiconductor layer adjacent to the metal gate. The present invention advantageously provides MOS thin film transistors having reliable electrical characteristics quickly, efficiently, and/or at a low cost by eliminating one or more conventional photolithographic steps.
    • 具有激光图案化金属栅极的MOS晶体管及其制造方法。 该方法通常包括在电介质膜上形成含金属材料层,其中电介质膜位于包含无机半导体的电功能基底上; 激光从含金属材料层图案化金属栅极; 以及在与金属栅极相邻的位置的无机半导体中形成源极和漏极端子。 晶体管通常包括电功能基板; 在所述电功能基板的至少一部分上的介电膜; 电介质膜上的激光图案化金属栅极; 源极和漏极端子包括与金属栅极相邻的掺杂的无机半导体层。 本发明有利地通过消除一个或多个常规光刻步骤来快速,有效地和/或以低成本提供具有可靠电特性的MOS薄膜晶体管。
    • 5. 发明申请
    • Printed Antennas, Methods of Printing an Antenna, and Devices Including the Printed Antenna
    • 印刷天线,打印天线的方法以及包括印刷天线的设备
    • US20100127084A1
    • 2010-05-27
    • US12625439
    • 2009-11-24
    • Vikram PAVATECriswell Choi
    • Vikram PAVATECriswell Choi
    • G06K19/067H01Q17/00
    • G06K19/07783G06K19/07749H01Q1/2208H01Q1/2225H01Q7/00H01Q23/00Y10T29/49018
    • Wireless devices such as sensors, interactive displays and electronic article surveillance (EAS) and/or radio frequency identification (RFID) tags including integrated circuitry and an antenna and/or inductor printed thereon, and methods for making and using the same, are disclosed. The device generally includes an integrated circuit on a substrate and an antenna, directly on the substrate and/or the integrated circuit, in electrical communication with the integrated circuit. The method of making a wireless device generally includes forming an integrated circuit on the substrate and printing at least part of an antenna or antenna precursor layer on the integrated circuit and/or substrate. The present invention advantageously provides a low cost wireless device capable of operating at MHz frequencies that can be manufactured in a shorter time period than conventional devices.
    • 公开了诸如传感器,交互式显示器和电子物品监视(EAS)和/或射频识别(RFID)标签的无线设备,包括集成电路和印刷在其上的天线和/或电感器,以及用于制造和使用它们的方法。 该装置通常包括基板上的集成电路和直接在基板和/或集成电路上与集成电路电连通的天线。 制造无线设备的方法通常包括在基板上形成集成电路并且在集成电路和/或基板上印刷天线或天线前体层的至少一部分。 本发明有利地提供了能够以比常规设备更短的时间周期制造的MHz频率的低成本无线设备。
    • 7. 发明申请
    • Desoldering sheath
    • 脱焊鞘
    • US20050205643A1
    • 2005-09-22
    • US10802065
    • 2004-03-16
    • Moon ChoiCriswell Choi
    • Moon ChoiCriswell Choi
    • B23K1/00B23K1/018B23K3/00B23K3/08B23K31/00
    • B23K1/018B23K3/026
    • A desoldering sheath that comprises at least one hollow metal wire molded to conform to the tip of a desoldering tool. In one implementation, the desoldering sheath is formed using a hollow metal wire that is coiled around a male cone-shaped mold. The coiled, hollow metal wire is then compressed between the male cone-shaped mold and a female cone-shaped mold to cause the hollow wire to retain the coiled shape. In use, the desoldering sheath is placed on the tip of a desoldering gun or iron and then heated. The heated desoldering sheath, while still on the tip of the desoldering gun or iron, is then placed into contact with solder. This causes the solder to melt and the desoldering sheath captures the molten solder by using capillary action to draw the molten solder into the hollow metal wire.
    • 一种脱焊护套,其包括至少一个模制成符合拆焊工具的尖端的中空金属丝。 在一个实施方案中,使用围绕阳锥形模具盘绕的中空金属线形成脱焊护套。 螺旋的中空金属丝然后在阳锥形模具和阴锥形模具之间被压缩,以使中空丝线保持卷绕形状。 在使用中,将脱焊护套放置在拆焊枪或铁的尖端上,然后加热。 然后将仍然在脱焊枪或铁的尖端上的加热的脱焊护套放置成与焊料接触。 这导致焊料熔化,并且脱焊护套通过使用毛细管作用将熔融焊料拉入中空金属丝而捕获熔融焊料。
    • 8. 发明授权
    • Printed antennas, methods of printing an antenna, and devices including the printed antenna
    • 印刷天线,打印天线的方法以及包括印刷天线的设备
    • US09016585B2
    • 2015-04-28
    • US12625439
    • 2009-11-24
    • Vikram PavateCriswell Choi
    • Vikram PavateCriswell Choi
    • G06K19/06H01Q7/00G06K19/077H01Q1/22H01Q23/00
    • G06K19/07783G06K19/07749H01Q1/2208H01Q1/2225H01Q7/00H01Q23/00Y10T29/49018
    • Wireless devices such as sensors, interactive displays and electronic article surveillance (EAS) and/or radio frequency identification (RFID) tags including integrated circuitry and an antenna and/or inductor printed thereon, and methods for making and using the same, are disclosed. The device generally includes an integrated circuit on a substrate and an antenna, directly on the substrate and/or the integrated circuit, in electrical communication with the integrated circuit. The method of making a wireless device generally includes forming an integrated circuit on the substrate and printing at least part of an antenna or antenna precursor layer on the integrated circuit and/or substrate. The present invention advantageously provides a low cost wireless device capable of operating at MHz frequencies that can be manufactured in a shorter time period than conventional devices.
    • 公开了诸如传感器,交互式显示器和电子物品监视(EAS)和/或射频识别(RFID)标签的无线设备,包括集成电路和印刷在其上的天线和/或电感器,以及用于制造和使用它们的方法。 该装置通常包括基板上的集成电路和直接在基板和/或集成电路上与集成电路电连通的天线。 制造无线设备的方法通常包括在基板上形成集成电路并且在集成电路和/或基板上印刷天线或天线前体层的至少一部分。 本发明有利地提供了能够以比常规设备更短的时间周期制造的MHz频率的低成本无线设备。