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一种用于单片有源像素传感器的新型列并行闪存模数转换器设计。

A Design of a New Column-Parallel Analog-to-Digital Converter Flash for Monolithic Active Pixel Sensor.

作者信息

Chakir Mostafa, Akhamal Hicham, Qjidaa Hassan

机构信息

CED-ST, LESSI, Faculty of Sciences Dhar el Mehraz, Sidi Mohamed Ben Abdellah University, BP 1796, Fez-Atlas, 30003 Fez, Morocco.

出版信息

ScientificWorldJournal. 2017;2017:8418042. doi: 10.1155/2017/8418042. Epub 2017 Jan 24.

Abstract

The CMOS Monolithic Active Pixel Sensor (MAPS) for the International Linear Collider (ILC) vertex detector (VXD) expresses stringent requirements on their analog readout electronics, specifically on the analog-to-digital converter (ADC). This paper concerns designing and optimizing a new architecture of a low power, high speed, and small-area 4-bit column-parallel ADC Flash. Later in this study, we propose to interpose an S/H block in the converter. This integration of S/H block increases the sensitiveness of the converter to the very small amplitude of the input signal from the sensor and provides a sufficient time to the converter to be able to code the input signal. This ADC is developed in 0.18 m CMOS process with a pixel pitch of 35 m. The proposed ADC responds to the constraints of power dissipation, size, and speed for the MAPS composed of a matrix of 64 rows and 48 columns where each column ADC covers a small area of 35 × 336.76 m. The proposed ADC consumes low power at a 1.8 V supply and 100 MS/s sampling rate with dynamic range of 125 mV. Its DNL and INL are 0.0812/-0.0787 LSB and 0.0811/-0.0787 LSB, respectively. Furthermore, this ADC achieves a high speed more than 5 GHz.

摘要

用于国际直线对撞机(ILC)顶点探测器(VXD)的互补金属氧化物半导体单片有源像素传感器(MAPS)对其模拟读出电子设备,特别是对模数转换器(ADC)提出了严格要求。本文关注设计和优化一种低功耗、高速且小面积的4位列并行ADC闪存的新架构。在本研究的后续部分,我们提议在转换器中插入一个采样保持(S/H)模块。S/H模块的这种集成提高了转换器对来自传感器的非常小幅度输入信号的敏感度,并为转换器提供了足够的时间来对输入信号进行编码。该ADC采用0.18μm CMOS工艺开发,像素间距为35μm。所提出的ADC满足了由64行48列矩阵组成的MAPS在功耗、尺寸和速度方面的要求,其中每列ADC覆盖35×336.76μm的小面积。所提出的ADC在1.8V电源和100MS/s采样率下功耗较低,动态范围为125mV。其微分非线性(DNL)和积分非线性(INL)分别为0.0812/-0.0787 LSB和0.0811/-0.0787 LSB。此外,该ADC实现了超过5GHz的高速。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c5b/5294760/b0747afa1f27/TSWJ2017-8418042.001.jpg

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