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Understanding of self-terminating pulse generation using silicon controlled rectifier and RC load

机译:了解使用可控硅整流器和RC负载产生自终止脉冲

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Recently a silicon controlled rectifier (SCR)-based circuit that generates self-terminating voltage pulses was employed for the detection of light and ionizing radiation in pulse mode. The circuit consisted of a SCR connected in series with a RC load and DC bias. In this paper, we report the investigation of the physics underlying the pulsing mechanism of the SCR-based. It was found that during the switching of SCR, the voltage across the capacitor increased beyond that of the DC bias, thus generating a reverse current in the circuit, which helped to turn the SCR off. The pulsing was found to be sustainable only for a specific range of RC values depending on the SCR’s intrinsic turn-on/off times. The findings of this work will help to design optimum SCR based circuits for pulse mode detection of light and ionizing radiation without external amplification circuitry.
机译:最近,产生可自终止电压脉冲的基于可控硅(SCR)的电路被用于以脉冲模式检测光和电离辐射。该电路由与RC负载和DC偏置串联的SCR组成。在本文中,我们报告了基于SCR的脉冲机制的物理学基础研究。发现在SCR切换期间,电容器两端的电压增加到超过DC偏置电压,从而在电路中产生反向电流,这有助于关闭SCR。发现该脉冲仅对于特定范围的RC值才是可持续的,具体取决于SCR的固有开启/关闭时间。这项工作的发现将有助于设计最佳的基于SCR的电路,无需外部放大电路即可对光和电离辐射进行脉冲模式检测。

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