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    • 1. 发明授权
    • Balanced type surface acoustic wave device
    • 平衡型声表面波装置
    • US5892418A
    • 1999-04-06
    • US898769
    • 1997-07-23
    • Keiji OnishiKazuo EdaYutaka TaguchiShunichi Seki
    • Keiji OnishiKazuo EdaYutaka TaguchiShunichi Seki
    • H03H9/25H03H9/00H03H9/64
    • H03H9/6436H03H9/0038H03H9/0042H03H9/1071H03H9/6433
    • The present invention provides surface acoustic wave devices which do not require a balanced-to-unbalanced transformer circuit regardless of the type of the peripheral circuits of the balanced type surface acoustic wave filter, i.e. a balanced type device or an unbalanced type. A transmitting interdigital transducer and a receiving interdigital transducer are formed on a substrate comprising 41.degree. Y cut-X propagation lithium niobate. A balanced type surface acoustic wave filter is formed on a substrate comprising 36.degree. Y cut-X propagation lithium tantalate. The balanced type surface acoustic wave filter comprises two series-arm surface acoustic wave resonators and two crossed-arm surface acoustic wave resonators connected in a lattice. The substrate on which the transmitting interdigital transducer and the receiving interdigital transducer are formed and the substrate on which the balanced type surface acoustic wave filter is formed are located in a ceramic package. One of the input terminals of the transmitting interdigital transducer is grounded. The output terminals of the receiving interdigital transducer are connected to the input terminals of the balanced type surface acoustic wave filter.
    • 本发明提供了不需要平衡型不平衡变压器电路的表面声波装置,而不管平衡型表面声波滤波器的外围电路的类型,即平衡型装置或不平衡型。 在包含41°Y切割X传播铌酸锂的基板上形成发射叉指式换能器和接收叉指式换能器。 在包含36°Y切割X传播的钽酸锂的基板上形成平衡型表面声波滤波器。 平衡型表面声波滤波器包括两个串联臂表面声波谐振器和两个以格子连接的交叉臂表面声波谐振器。 其上形成有发送叉指式换能器和接收叉指式换能器的基板和形成有平衡型表面声波滤波器的基板位于陶瓷封装中。 发射叉指式换能器的输入端之一接地。 接收叉指式换能器的输出端连接到平衡型声表面波滤波器的输入端。
    • 2. 发明授权
    • Surface acoustic wave device mounted module
    • 表面声波装置安装模块
    • US5459368A
    • 1995-10-17
    • US278905
    • 1994-07-22
    • Keiji OnishiShunichi SekiYutaka TaguchiKazuo Eda
    • Keiji OnishiShunichi SekiYutaka TaguchiKazuo Eda
    • H03H9/10H03H9/02H03H9/25H01L41/08
    • H03H9/1071H03H9/0542H03H9/0557H03H9/059H03H9/1085H01L2224/16225H01L2224/16235H01L2224/32225H01L2224/73203H01L2224/73204H01L2224/73253H01L2924/01046H01L2924/01079H01L2924/09701H01L2924/15192H01L2924/16152H01L2924/16195H01L2924/19105H01L2924/3011H01L2924/3025
    • This invention provides a surface acoustic wave device mounted module which is miniature, light, and highly reliable. The surface acoustic wave device mounted module also has excellent frequency characteristics. The surface acoustic wave device mounted module includes a multilayer substrate which has at least one layer of a shield pattern, input-output electrodes, grounding electrodes, through holes used for connecting electrodes, and a surface acoustic wave element. The surface acoustic wave element has metallic bumps, which are transfer-coated with a conductive resin, on electrode pads and an insulating resin around the surface acoustic wave element. The electrode pads are input-output terminals and grounding terminals formed on the surface acoustic wave element. Continuities between the input-output terminals and the input-output electrodes, and between the grounding terminals and the grounding electrodes are established by the through holes. An electrode pattern is formed on the surface of the multilayer substrate facing and surrounding the surface acoustic wave element. A metallic lid is attached to the electrode pattern by a solder or a conductive resin so that the surface acoustic wave element is sealed in an airtight condition. The electrode pattern is connected to the grounding electrodes by the through holes.
    • 本发明提供一种微型,轻型,高可靠性的表面声波装置安装模块。 表面声波装置安装模块也具有优异的频率特性。 表面声波装置安装模块包括具有至少一层屏蔽图案,输入输出电极,接地电极,用于连接电极的通孔和表面声波元件的多层基板。 表面声波元件具有金属凸块,其在电极焊盘上传导涂覆有导电树脂,并在表面声波元件周围具有绝缘树脂。 电极焊盘是形成在声表面波元件上的输入输出端子和接地端子。 输入输出端子与输入输出电极之间以及接地端子与接地电极之间的连续性由通孔构成。 在面对并围绕声表面波元件的多层基板的表面上形成电极图案。 通过焊料或导电树脂将金属盖附接到电极图案,使得表面声波元件在气密状态下被密封。 电极图案通过通孔与接地电极连接。
    • 9. 发明授权
    • Organic electroluminescent device
    • 有机电致发光器件
    • US07990052B2
    • 2011-08-02
    • US12542332
    • 2009-08-17
    • Shunichi SekiKatsuyuki Morii
    • Shunichi SekiKatsuyuki Morii
    • H01J1/62H01J63/04
    • H01L51/5012H01L27/3223H01L27/3246H01L51/0005H01L51/0011H01L2251/105
    • An organic electroluminescent device that includes an effectively optical area including display pixels for display and a dummy area surrounding the effectively optical area, the dummy area including dummy pixels not for display. The device includes a first composite material on the first portion in the effectively optical area, the first portion corresponding to one of the display pixels, and a second composite material separate from the first composite material, the second composite material being coated on a second portion of the dummy area, the second portion corresponding to one of the dummy pixels, the first composite material including a first organic electroluminescent material that is dissolved or dispersed in a solvent and the second composite material including a second organic electroluminescent material that is dissolved or dispersed in a solvent.
    • 一种有机电致发光器件,其包括有效的光学区域,包括用于显示的显示像素和围绕有效光学区域的虚拟区域,所述虚拟区域包括不用于显示的虚拟像素。 该装置包括在有效光学区域中的第一部分上的第一复合材料,第一部分对应于一个显示像素,以及与第一复合材料分离的第二复合材料,第二复合材料涂覆在第二部分 所述第二部分对应于所述虚拟像素之一,所述第一复合材料包括溶解或分散在溶剂中的第一有机电致发光材料,所述第二复合材料包括溶解或分散的第二有机电致发光材料 在溶剂中。
    • 10. 发明授权
    • Method of manufacturing an organic electroluminescence device using a liquid droplet ejection method
    • 使用液滴喷射方法制造有机电致发光器件的方法
    • US07896721B2
    • 2011-03-01
    • US12392661
    • 2009-02-25
    • Shuichi TakeiMasaki ItoShunichi Seki
    • Shuichi TakeiMasaki ItoShunichi Seki
    • H01J9/00B05D1/06
    • H01L27/3246H01L51/0003H01L51/5228H01L51/5234
    • There is provided a method of manufacturing an organic electroluminescence device including a plurality of light-emitting elements. The organic electroluminescence device includes a partition wall layer having a first partition wall layer with openings corresponding to the light-emitting elements and a second partition wall layer which is disposed on the first partition wall layer, the partition wall layer extends so as to follow the gap of the light-emitting elements, and has a groove on the top. The method of manufacturing includes forming the partition wall layer by forming the first partition wall layer and forming the second partition wall layer on the first partition wall layer such that the first partition wall layer is exposed at the bottom of the groove. The first partition wall layer is composed of an inorganic material, and the second partition wall layer is composed of an organic material.
    • 提供了一种制造包括多个发光元件的有机电致发光器件的方法。 有机电致发光元件具有分隔壁层,具有与发光元件对应的开口部的第一分隔壁层和配置在第一分隔壁层上的第二分隔壁层,隔壁层延伸, 发光元件的间隙,并且在顶部具有凹槽。 制造方法包括通过形成第一分隔壁层并在第一分隔壁层上形成第二分隔壁层,使得第一分隔壁层在凹槽的底部露出来形成分隔壁层。 第一分隔壁层由无机材料构成,第二分隔壁层由有机材料构成。