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High Inverse Voltage Germanium Rectifiers

机译:高反电压锗整流器

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摘要

Rectifying current‐voltage characteristics going up to several hundred volts inverse have been observed in metal‐germanium point contact rectifiers. A reproducible negative differential resistance region occurs in the inverse characteristic. Certain impurities are desirable in producing high voltage material. Surface treatment, e.g., by etching, is very important. The metal used as a whisker has little effect. Increasing the force of contact increases greatly the current of low voltages but has less effect on the high voltage curve. Pronounced improvement of rectification can be effected by treatment of the contact with large currents. Variation with temperature is very marked, especially for crystals of large inverse resistance; the variation of the inverse peak with temperature indicates that contact heating is responsible for the negative resistance. Time lags in the inverse negative resistance region of the order of 10-5 second occur. When contact is made between two Ge crystals, typical inverse characteristics are observed in both directions. Photoelectric effects are observed and indicate that the barrier thickness is greater the higher the inverse peak voltage.
机译:在金属锗点接触式整流器中观察到的整流电流-电压特性逆向上升了几百伏。可逆的负差分电阻区域出现在反向特性中。在生产高压材料中需要某些杂质。例如通过蚀刻的表面处理非常重要。用作晶须的金属几乎没有作用。增大接触力会大大增加低压电流,但对高压曲线的影响较小。可以通过用大电流处理接触来显着改善整流效果。随温度的变化非常明显,特别是对于大反电阻的晶体而言。反峰随温度的变化表明,接触加热是负电阻的原因。在10-5秒量级的反向负电阻区域中出现时间滞后。当两个Ge晶体之间接触时,在两个方向上都观察到典型的逆特性。观察到光电效应并表明势垒厚度越大,反峰值电压越高。

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  • 来源
    《Journal of Applied Physics 》 |1949年第8期| 共12页
  • 作者

    Benzer S.;

  • 作者单位

    Department of Physics, Purdue University, Lafayette, Indiana;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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