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    • 51. 发明授权
    • Structure of solid-state image sensing devices
    • 固态摄像装置的结构
    • US5194751A
    • 1993-03-16
    • US825333
    • 1992-01-27
    • Kazuya YonemotoTetsuya IizukaKazushi WadaKoichi HaradaMichio Yamamura
    • Kazuya YonemotoTetsuya IizukaKazushi WadaKoichi HaradaMichio Yamamura
    • H01L27/148
    • H01L27/14831
    • A structure of a solid-state image sensing device applicable to an HDVS is disclosed in which at least one of the transmission paths for the drive pulses used for driving vertical registers and horizontal registers can achieve reduced propagation delays and signal distortions of the drive pulses. In the first preferred embodiment, a control gate for controlling the transfer of signal charges between the horizontal registers is constituted by a first polycrystalline silicon layer, a metal wiring layer is formed and is connected to the first polycrystalline silicon layer via contact regions and transfer electrodes provided for driving the horizontal registers are constituted by second and third semiconductor layers placed between the first polycrystalline silicon layer and the metal wiring layer without contacting the contact regions. In the second preferred embodiment, the control gate is formed of a wiring layer placed above the semiconductor layers constituting the transfer electrodes of the horizontal registers. In the third preferred embodiment, shunt wiring films are formed independently on the transfer electrodes for the vertical registers of an image portion and on the transfer electrodes for those of a storage portion.
    • 公开了适用于HDVS的固体摄像装置的结构,其中用于驱动垂直寄存器和水平寄存器的驱动脉冲的传输路径中的至少一个可以实现减小的传播延迟和驱动脉冲的信号失真。 在第一优选实施例中,用于控制水平寄存器之间的信号电荷传送的控制栅极由第一多晶硅层构成,形成金属布线层,并且经由接触区域和转移电极连接到第一多晶硅层 提供用于驱动水平寄存器的第二和第三半导体层由位于第一多晶硅层和金属布线层之间的第二和第三半导体层构成,而不与接触区接触。 在第二优选实施例中,控制栅由形成在构成水平寄存器的转移电极的半导体层之上的布线层形成。 在第三优选实施例中,在用于图像部分的垂直寄存器的转印电极和用于存储部分的转印电极上的独立形成分流布线膜。
    • 52. 发明授权
    • Radiowave absorber
    • 无线电波吸收器
    • US09225072B2
    • 2015-12-29
    • US13681713
    • 2012-11-20
    • Toshihide TakahashiTomohiro SuetsunaKoichi HaradaSeiichi Suenaga
    • Toshihide TakahashiTomohiro SuetsunaKoichi HaradaSeiichi Suenaga
    • H01Q17/00
    • H01Q17/00H01Q17/004
    • A radiowave absorber of an embodiment includes: core-shell particles each including: a core portion that contains at least one magnetic metal element selected from a first group including Fe, Co, and Ni, and at least one metal element selected from a second group including Mg, Al, Si, Ca, Zr, Ti, Hf, Zn, Mn, rare-earth elements, Ba, and Sr; and a shell layer that coats at least part of the core portion, and includes an oxide layer containing at least one metal element selected from the second group and contained in the core portion; and a binding layer that binds the core-shell particles, and has a higher resistance than the resistance of the core-shell particles. The volume filling rate of the core-shell particles in the radiowave absorber is not lower than 10% and not higher than 55%.
    • 一个实施方案的无线电波吸收器包括:核 - 壳颗粒,每个核 - 壳颗粒包括:芯部,其包含选自包含Fe,Co和Ni的第一组中的至少一种磁性金属元素,以及选自第二组的至少一种金属元素 包括Mg,Al,Si,Ca,Zr,Ti,Hf,Zn,Mn,稀土元素,Ba和Sr; 以及壳层,其涂覆至少部分芯部,并且包括含有选自第二组并且包含在芯部中的至少一种金属元素的氧化物层; 和结合层,其结合核 - 壳颗粒,并且具有比核 - 壳颗粒的电阻更高的电阻。 无线电波吸收体中核 - 壳颗粒的体积填充率不低于10%且不高于55%。