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    • 5. 发明授权
    • Logical operation element field emission emitter and logical operation circuit
    • 逻辑运算元件场发射器和逻辑运算电路
    • US07432521B2
    • 2008-10-07
    • US10526471
    • 2004-03-05
    • Natsuo TatsumiYoshiki NishibayashiTakahiro ImaiTsuneo Nakahara
    • Natsuo TatsumiYoshiki NishibayashiTakahiro ImaiTsuneo Nakahara
    • H01L29/06
    • H03K19/06H01J19/24H01J21/20H03K19/08
    • A logical operation element and logical operation circuit are provided that are capable of high speed and a high degree of integration.A logical operation circuit has a construction wherein, in a logical operation element, the anodes of first and second field emission type microfabricated electron emitters are put at the same potential and two or more signal voltages are input to gate electrodes corresponding to these emitters. A NOR element so arranged that when a high potential input signal is input to either of the two lines, electron emission occurs from the emitters and the potential of said anodes is lowered, and a NAND element wherein the cathodes of the first and second field emission type microfabricated electron emitters are connected in series, two signal voltages are applied to the gate electrodes corresponding to the first and second emitter and the anode potential of the second emitter is lowered when the two input signals are high potential are employed.
    • 提供了能够高速度和高集成度的逻辑运算元件和逻辑运算电路。 逻辑运算电路具有这样的结构,其中在逻辑运算元件中,将第一和第二场致发射型微细加电子发射体的阳极置于相同的电位,并将两个或更多个信号电压输入到对应于这些发射极的栅电极。 一种NOR元件,其被布置成当高电位输入信号被输入到两条线中的任一条时,从发射极发生电子发射,并且所述阳极的电位降低;以及NAND元件,其中第一和第二场致发射的阴极 类型的微制造电子发射体串联连接时,两个信号电压施加到对应于第一和第二发射极的栅电极,并且当采用两个输入信号为高电位时,第二发射极的阳极电位降低。
    • 6. 发明授权
    • Diamond substrate having piezoelectric thin film, and method for manufacturing it
    • 具有压电薄膜的金刚石基板及其制造方法
    • US06794683B2
    • 2004-09-21
    • US10362890
    • 2003-02-23
    • Natsuo TatsumiTakahiro Imai
    • Natsuo TatsumiTakahiro Imai
    • H01L2904
    • C23C14/165C23C14/325H01L41/081H01L41/1873H01L41/316H03H3/08H03H9/02582
    • Further improvements in circuit-element performance of surface-acoustic wave devices are anticipated by being able to produce a diamond substrate on which is formed a Li(NbxTa1−x)O3 (wherein 0≦x≦1) thin film whose c-axis orientation is favorable and whose piezoelectric characteristics are satisfactory. A diamond substrate on which a highly c-axis oriented, piezoelectrically satisfactory Li(NbxTa1−x)O3 (wherein 0≦x≦1) thin film is formed can be obtained by using a laser ablation technique to form a Li(NbxTa1−x)O3 (wherein 0≦x≦1) thin film onto a (110)-oriented gas-phase synthesized polycrystalline diamond substrate, that is superficially mirror-surface processed. By utilizing a diamond substrate on which a piezoelectric-substance thin film is formed, surface-acoustic wave devices having high propagation speeds can be offered.
    • 表面声波器件的电路元件性能的进一步改进可以通过能够制造金刚石基片而形成Li(Nb x Ti a-x)O 3(其中0 <= x <= 1)薄膜,其中c- 轴方向是有利的,其压电特性令人满意。 通过使用激光烧蚀技术可以获得其上形成高度c轴取向的,压电令人满意的Li(Nb x Ti a-x)O 3(其中0 <= x <= 1))薄膜的金刚石基底,以形成Li(Nb x Ti a-x) -x)O3(其中0 <= x <= 1)薄膜到(110)取向的气相合成多晶金刚石基底上,其表面经镜面加工。 通过利用其上形成有压电物质薄膜的金刚石基板,可以提供具有高传播速度的表面声波装置。