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Low-noise, high-bandwidth amplification of prebreakdown current pulses in liquid dielectrics

机译:低噪声,高带宽放大液体电介质中的预爆发电流脉冲

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Results of prebreakdown current measurements made with a low-noise, high-bandwidth preamplifier (0.4- mu A minimum detectable current and 58-MHz bandwidth) are summarized. These waveforms demonstrate that low-noise, high-bandwidth preamplifiers are needed in order to observe the shape of prebreakdown current pulses, including the earliest pulses which are extremely small and fast. These and other factors influencing the design of an improved preamplifier are considered. Data collected indicate that at least a 50-MHz bandwidth is desirable to see the higher frequency components of the current pulses and that the noise level should be as low as possible so very small currents will be detectable. A major constraint on the design is the need to protect the preamplifier from a complete breakdown of the test sample while still maintaining bandwidth and noise performance. Another important consideration is the tradeoff between bandwidth and noise level. In general an increased bandwidth implies higher noise levels and, hence, higher minimum detectable currents. In light of these considerations, the relative merits of current-sensitive (transimpedance) preamplifiers and voltage-sensitive preamplifiers (where current develops a voltage across the input impedance) are examined, and the possibility of greater current sensitivity is considered.
机译:总结了用低噪声,高带宽前置放大器(0.4余最小可检测电流和58-MHz带宽)进行的预爆发电流测量结果。这些波形表明需要低噪声,高带宽前置放大器,以便观察预爆发电流脉冲的形状,包括最小且快速的最早脉冲。考虑了影响改进的前置放大器设计的这些和其他因素。收集的数据表明,至少一个50MHz带宽是希望看到电流脉冲的较高频率分量,并且噪声水平应尽可能低,因此将可检测到非常小的电流。对设计的主要限制是需要保护前置放大器免受测试样本的完全崩溃,同时保持带宽和噪声性能。另一个重要的考虑因素是带宽和噪声水平之间的权衡。通常,增加的带宽暗示噪声水平更高,因此,更高的最小可检测电流。鉴于这些考虑,研究了电流敏感(跨阻抗)前置放大器和电压敏感前置放大器的相对优点(其中电流发生在输入阻抗两端的电压),并且考虑了更大电流灵敏度的可能性。

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