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A High Precision Programmable Reference Generator for Monolithic Active Pixel Sensor Using 3D Integrated Technology

机译:采用3D集成技术的单片有源像素传感器的高精度可编程参考发生器

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Monolithic active pixel sensors (MAPS) are promoted to high performance on particle tracking in high energy physics experiment by using three-dimensional integrated technology (3DIT). During the development of MAPS architectures from 2D to 3D, the discriminators for digitizing the detected signal are moved from column level to pixel level. The programmable reference generator (PRG) providing the threshold voltage for the discriminators needs drive load capacitance varying from hundreds of Pico farads to tens of nanofarads. In addition, high precision is still required for evaluating the noise and detection efficiency. This paper presents a design of a 10-bit PRG for 3D MAPS. The architecture of a voltage-scaling network combined with a voltage reference is proposed in order to obtain good stability in a large range of the load capacitance. A resistor-scaling network and a band gap voltage reference are carefully designed due to the absence of output operational amplifier. The proposed PRG is implemented in a 0.13 µm process. The simulation results indicate that the proposed PRG performs good differential non-linearity (INL) and integrated non-linearity (DNL), and the equivalent output noise is less than 200 µV. The voltage resolution of the PRG is about 500 µV. The PSSR of the PRG is about-65 DB in low frequency and is lower than-43 DB during the whole frequency domain. In addition, the PRG performs good tolerance to the variation of temperature and power supply voltage. Therefore, the PRG in this work is suitable for 3D MAPS and the other applications that require high precision and low noise with large load capacitance but ignorable load current.
机译:通过使用三维集成技术(3DIT),在高能物理实验中,单片有源像素传感器(MAPS)在粒子跟踪方面被提升为高性能。在从2D到3D的MAPS体系结构发展期间,用于数字化检测到的信号的鉴别器从列级移动到像素级。为鉴别器提供阈值电压的可编程参考发生器(PRG)需要驱动负载电容,其电容范围从数百Pico法拉到几十毫微法拉。另外,仍然需要高精度来评估噪声和检测效率。本文提出了一种用于3D MAPS的10位PRG的设计。为了在较大的负载电容范围内获得良好的稳定性,提出了与电压基准相结合的电压缩放网络的架构。由于没有输出运算放大器,因此精心设计了电阻缩放网络和带隙基准电压源。拟议的PRG以0.13 µm的工艺实现。仿真结果表明,所提出的PRG具有良好的差分非线性(INL)和积分非线性(DNL),等效输出噪声小于200 µV。 PRG的电压分辨率约为500 µV。 PRG的PSSR在低频时约为65 DB,而在整个频域中均低于-43 DB。另外,PRG对温度和电源电压的变化具有良好的耐受性。因此,这项工作中的PRG适用于3D MAPS以及要求高精度和低噪声,大负载电容但负载电流可忽略的其他应用。

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