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    • 3. 发明授权
    • Dielectric slab antennas
    • 介质板天线
    • US4835543A
    • 1989-05-30
    • US801533
    • 1985-11-27
    • Hermann B. Sequeira
    • Hermann B. Sequeira
    • G02B6/12H01P1/10H01P1/32H01P1/36H01P1/38H01P3/02H01P3/08H01P3/16H01P5/08H01Q13/20H01Q13/24H01Q13/28H03C7/00
    • H01P3/082H01P1/10H01P1/32H01P3/16H01Q13/20
    • A transmission line comprising a multi-layer dielectric slab structure including: a dielectric substrate layer (30) having a thickness d.sub.s and permittivity .epsilon..sub.s ; a conductive ground plane (31) on the bottom surface of the dielectric substrate layer (30); a dielectric guiding layer (32) having a thickness h and permittivity .epsilon..sub.g, where .epsilon..sub.g >.epsilon..sub.s, attached to the top surface of dielectric substrate layer (30); at least one elongated and relatively narrow dielectric loading strip layer (33) having a width W, thickness d.sub.1, and permittivity .epsilon..sub.1, where .epsilon..sub.g >.epsilon..sub.1, attached to the top surface of the dielectric guiding layer (32); and a conductive coating (34) on the top surface of the dielectric loading strip layer (32). Such a structure permits single mode propagation over a relatively wide frequency band. Radiation losses due to coupling of the desired mode to the substrate modes and the conductors are furthermore reduced and the polarization of the dominant mode is such as to render said structure relatively insensitive to small deviations from parallelism among the different interfaces. This invention is directed to antenna structures formed from this type of multi-layer dielectric slab structure.
    • 一种包括多层电介质板结构的传输线,包括:具有厚度ds和介电常数ε的电介质基底层(30); 介电基片层(30)的底表面上的导电接地层(31); 电介质引导层(32),其具有附着到电介质基底层(30)的顶表面的厚度h和介电常数εg,其中εg>ε; 具有宽度W,厚度d1和介电常数ε1的至少一个细长且相对较窄的电介质加载带层,其中ε1>ε1附着到电介质引导层(32)的顶表面; 以及在介电加载带层(32)的顶表面上的导电涂层(34)。 这种结构允许在相对宽的频带上进行单模传播。 进一步降低了由于期望的模式与衬底模式和导体的耦合而导致的辐射损耗,并且主要模式的极化使得所述结构对于不同接口之间的平行度的小偏差相对不敏感。 本发明涉及由这种类型的多层介质板结构形成的天线结构。
    • 4. 发明授权
    • Method of fabricating electrodes with narrow gap therebetween
    • 制造间隙窄的电极的方法
    • US4275144A
    • 1981-06-23
    • US114833
    • 1980-01-24
    • Lawrence L. Buhl
    • Lawrence L. Buhl
    • G02F1/035G03F7/00H03C7/00B05D3/06
    • H03C7/00G02F1/035G03F7/0035
    • High speed, integrated optical directional coupler modulators utilize spaces of the order of one micron between waveguides. While one micron delineation of the waveguides can be readily obtained using conformable mask exposure techniques, diffraction effects become significant using thick glass masks required to delineate the electrodes. To overcome this problem, a two-process electrode fabrication procedure is employed. In accordance with the procedure a first pair of electrodes are deposited by a lithographic process. However, this yields a gap between electrodes that is wider than the desired gap. To reduce this distance, the process is repeated with the gap forming region of the mask laterally displaced. The result yields an electrode pattern with the desired spacing and thickness.
    • 高速集成的光学定向耦合器调制器利用波导之间的一微米级的空间。 虽然可以使用适形的掩模曝光技术容易地获得波导的一微米描绘,但是使用描绘电极所需的厚玻璃掩模,衍射效应变得显着。 为了克服这个问题,采用了双过程电极的制造方法。 根据该程序,通过光刻工艺沉积第一对电极。 然而,这产生比期望的间隙宽的电极之间的间隙。 为了减小该距离,在掩模的间隙形成区域横向移位的情况下重复该过程。 结果产生具有所需间隔和厚度的电极图案。
    • 5. 发明授权
    • Reflection type phase modulator having reduced temperature sensitivity
and reduced distortion
    • 反射型相位调制器具有降低的温度灵敏度和减少的失真
    • US3961286A
    • 1976-06-01
    • US557197
    • 1975-03-10
    • Young Dae Kim
    • Young Dae Kim
    • H03C3/00H03C3/20H03C3/22H03C7/00H03C7/02H04L27/20
    • H03C3/20H03C7/027
    • An improved reflection type phase modulator having reduced temperature sensitivity and reduced distortion includes two three-port circulators coupled to form a four-port circulator. A first port is connected to a first phase modulator and a second port is coupled by means of a quarter wavelength transmission line to a second phase modulator, the transmission line being resonant at an applied unmodulated carrier frequency. The first and second phase modulators are coupled to receive a modulation signal. A third port of the circulator is coupled to receive the applied unmodulated carrier frequency and the fourth port provides a signal at the unmodulated carrier frequency which is phase modulated in response to the modulation signal.
    • 具有降低的温度灵敏度和减小的失真的改进的反射型相位调制器包括耦合以形成四端口循环器的两个三端口循环器。 第一端口连接到第一相位调制器,并且第二端口通过四分之一波长传输线耦合到第二相位调制器,所述传输线在施加的未调制载波频率下谐振。 第一和第二相位调制器被耦合以接收调制信号。 耦合循环器的第三端口以接收施加的未调制载波频率,并且第四端口提供响应于调制信号相位调制的未调制载波频率的信号。
    • 6. 发明授权
    • Multiple de-Q-ing circuit for a moving target indicator radar system
    • 用于移动目标指示器雷达系统的多个去Q电路
    • US3955106A
    • 1976-05-04
    • US421298
    • 1973-12-03
    • Johnny L. Berry
    • Johnny L. Berry
    • G01S7/282H03C7/00H03K3/57H03K5/01
    • H03C7/00G01S7/282H03K3/57
    • The specification discloses a semiconductor magnetic modulator for use with a moving target indicator radar transmitter and which utilizes a plurality of charging capacitors for receiving charging current from a direct current power source and discharging in parallel. Silicon controlled rectifiers are connected to each of the charging capacitors and are operable to triggering signals to cause said capacitors to discharge at a predetermined time. A de-Q-ing circuit is connected to each of the charging capacitors in order to sense the voltage level across the capacitors and to dissipate voltage above a predetermined threshold level. The charging capacitors discharge through a hold-off inductor and through a switching transformer to a pulse forming network including a second charging capacitor. Compression occurs in the pulse charging network and a resulting high power modulator pulse is applied from the network to a klystron power tube in a moving target indicator radar transmitter. The power supply for the modulator utilizes an SCR bridge A.C. to D.C. convertor. An automatic delay circuit is also provided in order to provide a stable radar modulator trigger signal to the modulator circuit.
    • 本说明书公开了一种与移动目标指示器雷达发射机一起使用的半导体磁调制器,其利用多个充电电容器来接收来自直流电源的充电电流并且并联放电。 可控硅整流器连接到每个充电电容器,并且可操作以触发信号以使所述电容器在预定时间内放电。 一个去Q电路连接到每个充电电容器,以便感测电容器两端的电压电平并消耗高于预定阈值电平的电压。 充电电容器通过保持电感器并通过开关变压器放电到包括第二充电电容器的脉冲形成网络。 压缩发生在脉冲充电网络中,并且所产生的高功率调制器脉冲从网络施加到移动目标指示器雷达发射机中的速调管功率管。 调制器的电源使用SCR桥式交流直流转换器。 还提供自动延迟电路以便向调制器电路提供稳定的雷达调制器触发信号。