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Silicon microstrip electronics operating with 20 ns FWHM signals

机译:硅微带电子器件,工作于20 ns FWHM信号

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For experiment E771 at Fermilab, semicustom integrated circuit (IC) preamplifiers and discriminators have been designed to operate at near single-bucket speed, i.e. to give signals, from a silicon microstrip detector (SMD), shaped to 15 or 20 ns FWHM. Measurements of signal size, signal-to-noise ratio (SNR), and noise rate and signal efficiency versus discriminator threshold setting were made. The test setup used an SMD plane 300- mu m thick with 50- mu m strips and the prototype ICs produced for experiment E771. Signals were produced by near-relativistic beta rays. The test setup had somewhat larger detector capacitance (C/sub d/ approximately=25 pF) than the final experiment detector will have. For tracks passing through the SMD plane nearly perpendicularly, good efficiency was found at acceptable noise rates. When the signal comes almost entirely from a single strip, the SNR is about eight to one. Under these conditions, when the discriminator threshold is set to give about 0.001 to 0.002 noise hits per strip per trigger, the latching efficiency is above 95%. For tracks at an appreciable angle from perpendicular, the deposited charge is shared between strips. For tracks with 60% of the charge or more in a single strip, the efficiency is well over 90%.
机译:对于费米实验室(Fermilab)的实验E771,半定制集成电路(IC)前置放大器和鉴别器已设计为以接近单桶的速度运行,即从硅微带检测器(SMD)发出信号,成形为15或20 ns的FWHM。测量了信号大小,信噪比(SNR)以及噪声速率和信号效率与鉴别器阈值设置之间的关系。测试装置使用厚度为300μm的SMD平面和50μm的条带,以及为实验E771生​​产的原型IC。信号是由近乎相对论的β射线产生的。测试设置的探测器电容(C / sub d /大约= 25 pF)比最终实验探测器要大一些。对于几乎垂直穿过SMD平面的轨道,在可接受的噪声速率下发现了良好的效率。当信号几乎完全来自单个条带时,SNR大约为八比一。在这些条件下,如果将鉴别器阈值设置为每个触发器每个条带产生约0.001至0.002的噪声击中,则锁存效率高于95%。对于与垂直线成一定角度的轨道,沉积的电荷在条带之间共享。对于在单个条带中具有60%或更多电荷的轨道,效率要远远超过90%。

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