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    • 75. 发明申请
    • PIEZOELECTRIC PHASE SHIFTER
    • 压电相变器
    • US20100156252A1
    • 2010-06-24
    • US12342552
    • 2008-12-23
    • Jinlong DuBin Wu
    • Jinlong DuBin Wu
    • H01L41/047
    • H03H9/66
    • The disclosed is a piezoelectric phase shifter, which comprises: an input part for inputting input voltages; an output part for outputting output voltages; and a control part for tuning phase difference between the output and input voltages, which are made of a piezoelectric ceramic plate. Further, the input, output and control parts are separated by insulting gaps respectively. The wide phase shift range and good ability to manage high power and relatively high energy transmission efficiency may be obtained by the disclosure.
    • 所公开的是压电移相器,其包括:用于输入输入电压的输入部分; 用于输出输出电压的输出部分; 以及用于调整由压电陶瓷板制成的输出和输入电压之间的相位差的控制部分。 此外,输入,输出和控制部分分别由侮辱间隙分隔开。 通过公开可以获得宽的相移范围和良好的管理高功率和相对高的能量传输效率的能力。
    • 76. 发明申请
    • PACKAGE STRUCTURE AND METHOD FOR A PIEZOELECTRIC TRANSFORMER
    • 压电变压器的封装结构和方法
    • US20100156248A1
    • 2010-06-24
    • US12342525
    • 2008-12-23
    • Jinlong DuBin Wu
    • Jinlong DuBin Wu
    • H01L41/053
    • H01L41/107H01L41/053
    • The disclosed is package structure for a piezoelectric transformer, which comprises: a shell for supporting the piezoelectric transformer at its node plane; a plurality of electrical connection frames which are fixed on the shell for connecting with electrodes of the piezoelectric transformer and conducting heat from piezoelectric transformer by connection points arranging along the electrical connection frame; and a plurality of connection pins deposited on the electrical connection frames for connecting to the outside circuit. Further, the shell has a wedge structure part which fixes the piezoelectric transformer at its node plane. Correspondingly, a package method for a piezoelectric transformer is also disclosed. Thus, the structure and package method allow a piezoelectric transformer to vibrate freely and have good heat management.
    • 所公开的压电变压器的封装结构包括:用于在其节点平面处支撑压电变压器的外壳; 多个电连接框架,固定在壳体上,用于与压电变压器的电极连接,并通过沿电连接框布置的连接点从压电变压器传导热量; 以及沉积在电连接框架上用于连接到外部电路的多个连接引脚。 此外,壳体具有将压电变压器固定在其节点平面处的楔形结构部分。 相应地,还公开了一种用于压电变压器的封装方法。 因此,结构和封装方法允许压电变压器自由振动并具有良好的热管理。
    • 78. 发明申请
    • CROSS-LINKED ENCAPSULATED PHOSPHORSCENT MOLECULES
    • 交联粘附的磷光体分子
    • US20090127509A1
    • 2009-05-21
    • US11772499
    • 2007-07-02
    • Lei HuangXuedong SongBin WuRosann Marie Kaylor
    • Lei HuangXuedong SongBin WuRosann Marie Kaylor
    • C09K11/02
    • C08K5/0041C08F214/06C08K9/08C08L53/00C09K11/02C09K11/06C09K2211/185Y10T428/2998C08L2666/02
    • There is provided herein cross-linked, phosphorescent micro- and nanoparticles and applications of those particles. The invention uses halogen-containing polymers and co-polymers (HCPs) as an encapsulation matrix for organic and organometallic phosphorescent compounds to form micro- or nanoparticles. The phosphorescence of these encapsulated phosphorescent particles is substantially unaffected by phosphorescence quenchers such as oxygen and water molecules at ambient conditions. The invention provides methods of making cross-linked phosphorescent particles. HCPs may be directly cross-linked through linking moieties that are a part of the polymer, or cross-linked through other separate bridging or cross-linking materials Cross-linked particles are more stable than the non-cross-linked counterparts and more resistant to temperature, surfactants, and organic solvents.
    • 本文提供了交联的磷光微粒和纳米颗粒以及这些颗粒的应用。 本发明使用含卤聚合物和共聚物(HCP)作为有机和有机金属磷光化合物的包封基质以形成微米或纳米颗粒。 这些包封的磷光颗粒的磷光在环境条件下基本上不受磷光猝灭剂如氧和水分子的影响。 本发明提供制备交联磷光颗粒的方法。 HCP可以通过作为聚合物的一部分的连接部分直接交联,或者通过其它单独的桥连或交联材料交联。交联颗粒比非交联对应物更稳定,并且更耐抗 温度,表面活性剂和有机溶剂。