电子管放大器的开发说明:它使用60个周期的交流电为灯丝和极板供电

P. D. Lowell
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引用次数: 0

摘要

电子管放大器现在几乎是所有无线电接收机的重要组成部分,除了最简单的类型。存储单元,迄今为止通常需要操作放大器,需要不断的关注,体积庞大,沉重,并有其他严重的缺点。干电池通常用作极板电压源,其寿命相对较短,价格昂贵且不方便。如果用100伏60周期的电源供电的放大器就方便多了。本文介绍了一种五级放大器,它在灯丝和极板的60周供电下都能令人满意地工作。这个放大器有三个射频级和两个音频级,并使用一个晶体探测器。使用一种特殊的变压器,有五个绕组,一次供电110伏交流电。当在普通放大器电路中使用60周电流时,会产生强烈的60周音符,从而产生严重的干扰。通过平衡电阻、栅极电容器和电阻相对较低的特殊栅极漏电、输出电路中的电话变压器以及用晶体检测器代替电子管检测器,实际上已经消除了这一问题。在放大器的最终形式中,只有轻微的残余嗡嗡声,这是不令人反感的。用ac -c得到的放大。供应与使用直流放大器的相同放大器获得的一样好。供应。整套设备轻巧、紧凑、便携。对于阻尼波的接收,所构造的放大器在波长200 ~ 750米范围内工作最令人满意。这个范围是由所用射频变压器的工作范围决定的。通过使用合适的射频变压器,预计放大器将有效接收长达10,000米的阻尼波和无阻尼波。对于无阻尼波的接收,应采用单独的外差。本文给出了电路图,并说明了所使用的电容器、电阻和电感的值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Note on the development of an electron tube amplifier: Which uses 60-cycle alternating current to supply power for the filaments and plates
Electron tube amplifiers now form an important part of practically all radio receiving sets except the most simple types. Storage cells, which have heretofore usually been required for operating amplifiers, require constant attention, are bulky and heavy, and have other serious disadvantages. The dry cells, which are often used as a source of plate voltage, have a comparatively short life and are expensive and inconvenient. It would be much more convenient to use an amplifier which could be supplied with power from 100-volt, 60-cycle mains. This paper describes a five-stage amplifier which operates satisfactorily on 60-cycle supply for both filaments and plates. This amplifier has three radio-frequency stages and two audio-frequency stages, and uses a crystal detector. A special transformer with five windings is used, the primary being supplied with 110-volts a-c. The 60-cycle current when used in an ordinary amplifier circuit introduces a strong 60-cycle note which offers serious interference. This has been practically eliminated by balancing resistances, grid condensers and special grid leaks of comparatively low resistance, telephone transformer in the output circuit, and crystal detector instead of electron tube detector. In the final form of the amplifier, there is only a slight residual hum which is not objectionable. The amplification obtained with a-c. supply was as good as that obtained with the same amplifier used with d-c. supply. The complete unit is light, compact, and portable. For the reception of damped waves, the amplifier as constructed operated most satisfactorily for wave lengths from 200 to 750 meters. This range was determined by the working range of the radio-frequency transformers used. By using suitable radio-frequency transformers, it is expected that the amplifier will be effective for the reception of damped waves and undamped waves as long as 10,000 meters. For the reception of undamped waves, a separate heterodyne should be employed. The paper gives circuit diagrams, and states the values of the condensers, resistors and inductors used.
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