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Development of charge sensitive amplifiers based on various circuit board substrates and evaluation of radiation hardness characteristics

机译:基于各种电路板基板的电荷敏感放大器的开发和辐射硬度特性的评估

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摘要

Ultra-low noise charge sensitive amplifiers (CSAs) based on various types of circuit board substrates, such as FR4, Teflon, and ceramics (Al2O3) with two different designs, PA1 and PA2, have been developed. They were tested to see the noise effect from the dielectric loss of the substrate capacitance before and after irradiation. If the electronic noise from the CSAs is to be minimized and the energy resolution enhanced, the shaping time has to be optimized for the detector, and a small feedback capacitance of the CSA is favorable for a better SNR. Teflon- and ceramic-based PA1 design CSAs showed better noise performance than the FR4-based one, but the Teflon-based PA1 design showed better sensitivity than ceramic based one at a low detector capacitance (<10?pF). In the PA2 design, the equivalent noise and the sensitivity were 0.52?keV FWHM for a silicon detector and 7.2?mV/fC, respectively, with 2 μs peaking time and 0.1?pF detector capacitance. After 10, 100, 103, 104, and 105?Gy irradiation the ENC and sensitivity characteristics of the developed CSAs based on three different substrate materials are also discussed.
机译:已经开发了基于各种类型的电路板基板的超低噪声电压敏感放大器(CSA),例如具有两个不同设计,PA1和PA2的FR4,Teflon和陶瓷(Al2O3)。测试它们以在照射前后的基板电容的介电损耗中看到噪声效应。如果要最小化来自CSA的电子噪声并且能量分辨率增强,则必须针对检测器优化成形时间,并且CSA的小反馈电容对于更好的SNR是有利的。基于Teflon和陶瓷的PA1设计CSA显示出比FR4的噪声性能更好,但基于Teflon的PA1设计表现出比陶瓷基于低检测器电容(<10·PF)的陶瓷的更好的灵敏度。在PA2设计中,相同的噪声和灵敏度分别为硅检测器的0.52?KEV FWHM,分别为7.2?MV / FC,具有2μs峰值时间和0.1°PF检测器电容。在10,100,103,104和105之后,还讨论了基于三个不同的衬底材料的开发CSA的ENC和敏感性特性。

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