An asynchronous data-driven readout prototype for CEPC vertex detector

An asynchronous data-driven readout prototype for CEPC vertex detector
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CEPC 顶点检测器的异步数据驱动读出原型

DOI:
10.1142/s0217751x17460125
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发表时间:
2017-12
影响因子:
1.6
通讯作者:
Zhang Li
Zhang Li
中科院分区:
物理与天体物理4区
文献类型:
--
作者:
Yang Ping;Sun Xiangming;Huang Guangming;Xiao Le;Gao Chaosong;Huang Xing;Zhou Wei;Ren Weiping;Li Yashu;Liu Jianchao;You Bihui;Zhang Li

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环形正负电子对撞机(CEPC)被提议作为希格斯玻色子和/或Z玻色子工厂,用于对希格斯玻色子进行高精度测量。二次顶点影响参数的精度在这种通常依赖于风味标记的测量中起着重要的作用。因此,硅CMOS像素传感器(CPS)是CEPC顶点检测器最有前途的技术候选者,它最有可能同时具有高位置分辨率,低功耗和快速读出。为了研发CEPC顶点探测器,我们在Towerjazz 180 nm CMOS图像传感器(CIS)工艺中开发了一个原型MIC4。我们已经提出并实现了一种新的架构的异步零抑制数据驱动读出内的矩阵结合一个二进制前端内的像素。该矩阵由128行64列组成,像素间距为25 μ m。读出结构实现了传统的或门链内的一个超级像素结合优先级的arb。
The Circular Electron Positron Collider (CEPC) is proposed as a Higgs boson and/or Z boson factory for high-precision measurements on the Higgs boson. The precision of secondary vertex impact parameter plays an important role in such measurements which typically rely on flavor-tagging. Thus silicon CMOS Pixel Sensors (CPS) are the most promising technology candidate for a CEPC vertex detector, which can most likely feature a high position resolution, a low power consumption and a fast readout simultaneously. For the R&D of the CEPC vertex detector, we have developed a prototype MIC4 in the Towerjazz 180 nm CMOS Image Sensor (CIS) process. We have proposed and implemented a new architecture of asynchronous zero-suppression data-driven readout inside the matrix combined with a binary front-end inside the pixel. The matrix contains 128 rows and 64 columns with a small pixel pitch of 25 μm. The readout architecture has implemented the traditional OR-gate chain inside a super pixel combined with a priority arb...
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