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    • 8. 发明申请
    • Slot antenna having high gain in zenith direction
    • 天顶方位高增益的天线
    • US20050168389A1
    • 2005-08-04
    • US11030491
    • 2005-01-05
    • Dou YuanzhuYoshio Saito
    • Dou YuanzhuYoshio Saito
    • H01Q9/04H01Q13/10
    • H01Q9/0457H01Q13/10
    • The present invention provides a slot antenna in which the radiation toward the zenith direction is not obstructed although it is arranged on an upper side of a ground conducting plate. The antenna device 11 operates as the slot antenna by providing a slot 14 in an upper plate portion 13 of a shield case 12. The shield case 12 is provided on a ground conducting plate 20. The slot 14 is composed of a first aperture 15 extending in a straight line, a second aperture 16 communicating with one end of the longitudinal direction of the first aperture 15, and a third aperture 17 communicating with the other end of the longitudinal direction of the aperture 15. The apertures 16 and 17 have the same triangular shapes which are point-symmetrical to the center of the aperture 15. When the power is fed by a feeding pin 18 to excite the slot 14, the directions of the electric fields generated at the apertures 16 and 17 are inclined to the direction of the electric field generated at the aperture 15 and the electric fields of the apertures 16 and 17 cancel the electric field of the aperture 15.
    • 本发明提供了一种缝隙天线,其中尽管布置在接地导电板的上侧,朝向天顶方向的辐射不被阻挡。 天线装置11通过在屏蔽壳体12的上板部13中设置槽14而作为缝隙天线进行动作。 屏蔽壳体12设置在接地导电板20上。 狭槽14由沿直线延伸的第一孔15,与第一孔15的长度方向的一端连通的第二孔16和与第一孔15的长度方向另一端连通的第三孔17构成。 孔15。 孔16和17具有与孔15的中心点对称的相同的三角形形状。 当通过馈电销18馈送电力以激发槽14时,在孔16和17处产生的电场的方向相对于在孔15处产生的电场的方向倾斜,并且孔的电场 16和17消除孔15的电场。
    • 10. 发明授权
    • Single substrate hydrogen and microwave absorber for integrated microwave assembly and method of manufacturing same
    • 用于集成微波组件的单基板氢和微波吸收器及其制造方法
    • US06853062B1
    • 2005-02-08
    • US10725271
    • 2003-12-02
    • Yoshio Saito
    • Yoshio Saito
    • H01Q17/00H01L23/20
    • H01Q17/00
    • A single substrate hydrogen and microwave absorber (20) attenuates spurious microwave signals in a metal Integrated Microwave Assembly (10, 10′) and reduces hydrogen poisoning of hydrogen sensitive components implemented in the Integrated Microwave Assembly (10, 10′). The single substrate hydrogen and microwave absorber (20) includes a titanium substrate (30) with channels (32) spaced apart from one another by a predetermined distance. A layer of microwave absorbing material (34) is formed on portions (35) of the titanium substrate (30) between the channels (32), and a layer of hydrogen getting material (36) is formed in the channels (32) of the titanium substrate (30).
    • 单个衬底氢和微波吸收器(20)在金属集成微波组件(10,10')中衰减杂散微波信号,并减少在集成微波组件(10,10')中实现的氢敏感组件的氢中毒。 单个基底氢和微波吸收器(20)包括具有彼此间隔开预定距离的通道(32)的钛基底(30)。 在通道(32)之间的钛基板(30)的部分(35)上形成一层微波吸收材料(34),并且在所述通道(32)的通道(32)中形成一层氢吸附材料 钛基板(30)。