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Study of Power Consumption of Timepix3 Detector

机译:TimePix3检测器的功耗研究

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The Timepix3 readout chip- the latest member of the Medipix family of hybrid pixel detectors - brought several new functionalities in comparison with the older Timepix, i.e. a high hit-rate, a time granularity of 1.5625 ns, a data-driven readout scheme (with a per pixel dead time of approximately 475 ns), and the capability of measuring Time-over-Threshold (ToT) and Time-of- Arrival (ToA) in each pixel at the same time. However, the high power consumption of the Timepix3 in the standard setting prevents its use in applications with limited power budget. Moreover, the high power consumption poses the risk of overheating the sensor so that proper cooling is crucial. The presented work investigates the effect of different settings in the analogue and a digital part of the Timepix3 detector on its power consumption. Measurements were performed with the Timepix3 chipboard. The firmware of the Katherine readout was modified so that the user can monitor the power consumptions of analogue and digital part "on-line" (directly in the control software). In standard settings, a power consumption of approximately 1.3W was found. By changes of internal DACs, the consumption could be reduced to 650mW. Further reduction was achieved by the change of the clock management in the digital part of the Timepix3. In result, a power consumption of 216mA could be achieved. In these low power settings, the ToA clock was reduced to 10MHz and thus the time binning was 100 ns. The energy resolution was not affected significantly. The pixel dead time is also negatively affected when the matrix clock is reduced. In the case of 10 MHz, the minimal per pixel dead time is 1.9 s.
机译:TimePix3读数芯片 - 混合像素探测器的Medipix家族的最新成员 - 与较旧的TimePix相比,还带来了几个新功能,即高命中率,是1.5625 ns的时间粒度,是数据驱动的读取方案(具有数据驱动的读取方案(使用每个像素的死时间约为475 ns),并且在每个像素同时测量阈值(TOT)和到达时间(TOA)的能力。但是,标准设置中TimePix3的高功耗可阻止其在功率预算有限的应用中使用。此外,高功耗会带来过热传感器的风险,因此适当的冷却至关重要。提出的工作调查了模拟中不同设置的影响以及TimePix3检测器的数字部分对其功耗。使用TimePix3芯片板进行测量。修改了凯瑟琳读数的固件,以便用户可以监视模拟和数字部分“在线”(直接在控制软件中)的功耗。在标准设置中,发现大约1.3W的功耗。通过内部DAC的变化,可以将消费减少到650MW。在TimePix3的数字部分中,时钟管理的变化可以进一步减少。结果,可以实现216MA的功耗。在这些低功率设置中,TOA时钟减小到10MHz,因此时间箱为100 ns。能源分辨率没有显着影响。减少矩阵时钟时,像素的死时间也会受到负面影响。在10 MHz的情况下,每个像素死亡时间最小为1.9 s。

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