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Performance of a Fast Binary Readout CMOS Active Pixel Sensor Chip Designed for Charged Particle Detection

机译:设计用于带电粒子检测的快速二进制读出CMOS有源像素传感器芯片的性能

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摘要

We report on the performance of the MIMOSA8 (HiMAPS1) chip. The chip is a 128$, times ,$32 pixels array where 24 columns have discriminated binary outputs and eight columns analog test outputs. Offset correction techniques are used extensively in this chip to overcome process related mismatches. The array is divided in four blocks of pixels with different conversion factors and is controlled by a serially programmable sequencer. MIMOSA8 is a representative of the CMOS sensors development option considered as a promising candidate for the Vertex Detector of the future International Linear Collider (ILC). The readout technique, implemented on the chip, combines high spatial resolution capabilities with high processing readout speed. Data acquisition, providing control of the chip and signal buffering and linked to a VME system, was made on the eight analog outputs. Analog data, without and with a $^{55}$Fe X-ray source, were acquired and processed using off-line analysis software. From the reconstruction of pixel clusters, built around a central pixel, we deduce that the charge spread is limited to the closest 25 pixels and almost all the available charge is collected. The position of the total charge collection peak (and subsequently the charge-to-voltage conversion factor) stays unaffected when the clock frequency is increased even up to 150 MHz (13.6 $mu$s readout time per frame). The discriminators, placed in the readout chain, have proved to be fully functional. Beam tests have been made with high energy electrons at DESY (Germany) to study detection efficiency. The results prove that MIMOSA8 is the first and fastest successful monolithic active pixel sensor with on-chip signal discrimination for detection of MIPs.
机译:我们报告了MIMOSA8(HiMAPS1)芯片的性能。该芯片是一个128乘以32像素的阵列,其中24列具有区分二进制输出和8列模拟测试输出。偏移校正技术广泛用于该芯片中,以克服与工艺有关的失配。该阵列分为具有不同转换因子的四个像素块,并由串行可编程定序器控制。 MIMOSA8是CMOS传感器开发选项的代表,被认为是未来国际线性对撞机(ILC)的顶点检测器的有希望的候选者。芯片上实现的读取技术将高空间分辨率功能与高处理读取速度结合在一起。在八个模拟输出上进行了数据采集,提供了芯片控制和信号缓冲功能,并链接到VME系统。使用脱机分析软件,可以获取和处理具有和不具有$ ^ {55} $ Fe X射线源的模拟数据。通过围绕中心像素构建的像素簇的重构,我们可以得出结论,电荷散布仅限于最接近的25个像素,并且几乎收集了所有可用电荷。当时钟频率甚至提高到150 MHz时(每帧13.6μs的读取时间),总电荷收集峰值的位置(以及随后的电荷电压转换因子)不会受到影响。事实证明,放在读出链中的鉴别器是完全起作用的。在DESY(德国)已经用高能电子对电子束进行了测试,以研究检测效率。结果证明,MIMOSA8是第一款且最快的成功单片有源像素传感器,具有片上信号识别功能,可检测MIP。

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