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Digital pulse analyzer for simultaneous measurement of pulse height, pulse width, and interval time on an optical particle counter

机译:数字脉冲分析仪,用于同时测量光学粒子计数器上的脉冲高度,脉冲宽度和间隔时间

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摘要

This study examined the development of a digital pulse analyzer (DPA) used for obtaining the pulse height distribution (PHD), pulse width distribution (PWD), and interval time distribution (ITD) simultaneously by processing output signals from an optical particle counter (OPC). The characterization was performed by testing the response of the DPA as a function of its input frequency and pulse height using dummy signals from a signal generator (model DG1022, Rigol Technologies Inc., People's Republic of China) and actual OPC signals (Model KC-03, Rion Co. Ltd, Japan). Polystyrene latex particles of various sizes yielded by a scanning mobility particle sizer were used during the calibration of the DPA. It was found that the geometric mean of the PHDs was in accordance with Mie theory and could be used for converting pulse height into data which represents the size of particles. Furthermore, by using the PWD and ITD, we could estimate the viewing volume and dead time of the OPC. The DPA could successfully discriminate particles from baseline noise or voltage spikes by applying a novel algorithm to detect pulses based on the pulse area (integral of the voltage-time curve). The results showed that the ranges of particle diameter, viewing volume, and dead time measured by the OPC-DPA system were 0.2-1 mu m, (0.78 +/- 0.09) mm(3), and (45.9 +/- 12.6) mu s, respectively. The new algorithm can be applied to pulse height analyzers in general, in the measurement of aerosol particles or scintillator-based particle detectors.
机译:本研究检测了通过处理来自光学粒子计数器的输出信号(OPC)的输出信号来获得用于获得脉冲高度分布(PHD),脉冲宽度分布(PWD)和间隔时间分布(ITD)的数字脉冲分析仪(DPA)的开发。 )。通过使用来自信号发生器的虚设信号(模型DG1022,中华人民共和国)和实际OPC信号(Model KC-)和实际OPC信号(Model KC- 03,日本河口有限公司)。在DPA的校准期间使用通过扫描迁移率颗粒Sizer产生的各种尺寸的聚苯乙烯胶乳颗粒。发现PHD的几何平均值根据MIE理论,可用于将脉冲高度转换为代表粒子尺寸的数据。此外,通过使用PWD和ITD,我们可以估计OPC的观看卷和死区时间。 DPA可以通过应用基于脉冲区域(电压 - 时曲线的积分)来检测脉冲来成功地区分从基线噪声或电压尖峰的粒子。结果表明,OPC-DPA系统测量的粒径,观察体积和死区时间为0.2-1μm,(0.78 +/- 0.09)mm(3),(45.9 +/- 12.6) Mu S分别。新算法可以应用于脉冲高度分析仪,在气溶胶颗粒或基于闪烁体的颗粒探测器的测量中。

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