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A 100 megabit nine-digit electron tube encoder

机译:100兆位九位数电子管编码器

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A beam deflection tube has been developed which will convert an amplitude modulated signal into a nine-digit binary pulse code modulated signal at sampling speeds in excess of 12 mcs/sec. The tube employs a ribbon beam which is electrostatically deflected over nine columns of apertures in a code plate. This paper describes the tube and the critical tolerances required to achieve a signal-to-noise ratio of 54 db, which is within 3 db of the theoretical limit for a nine-digit encoder. The fabrication techniques which were required to achieve these tolerances are radically different from those used in the encoding tube described at the 1960 Electron Device Meeting. Factors that degrade encoding accuracy include thin oxide films on electrodes and residual gas pressure; techniques for minimizing these effects will be discussed. A secondary emitting target comprised of gold sputtered on a molybdenum substrate, found to be very stable in accelerated aging tests, has been evolved. An output current of 5/µamps per digit is achieved with a peak cathode loading of approximately 100 ma/cm2.
机译:已经开发出一种光束偏转管,它将以超过12 mcs / sec的采样速度将调幅信号转换成9位二进制脉冲编码调制信号。该管采用带状束,该带状束在代码板上的9列孔上被静电偏转。本文描述了达到54 db信噪比(在9位数编码器的理论极限的3 db之内)所需的电子管和临界公差。实现这些公差所需的制造技术与1960年电子设备会议上描述的编码管所使用的制造技术有根本不同。降低编码精度的因素包括电极上的氧化膜和残留气压。将讨论使这些影响最小化的技术。已经开发出由溅射在钼衬底上的金构成的次级发射靶,该靶在加速老化测试中非常稳定。阴极负载峰值约为100 ma / cm 2 时,每位数字可实现5 / µamps的输出电流。

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