首页> 外文期刊>IEEE Journal of Solid-State Circuits >A VGA Indirect Time-of-Flight CMOS Image Sensor With 4-Tap 7- mu m Global-Shutter Pixel and Fixed-Pattern Phase Noise Self-Compensation
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A VGA Indirect Time-of-Flight CMOS Image Sensor With 4-Tap 7- mu m Global-Shutter Pixel and Fixed-Pattern Phase Noise Self-Compensation

机译:VGA间接飞行时间CMOS图像传感器,带有4分拍7- MU M全球快门像素和固定模式噪声自补偿

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摘要

A video graphics array (VGA) (640 $imes $ 480) indirect time-of-flight (ToF) CMOS image sensor has been designed with 4-tap 7- $mu ext{m}$ global-shutter pixel in 65-nm back-side illumination (BSI) process. With a 4-tap pixel structure, we achieved motion artifact-free depth map. Peak current during exposure time has been reduced by current spreading with constant delay chain in the photo-gate driver. Column fixed-pattern phase noise (FPPN) from the constant delay chain is self-compensated by the proposed time-interleaving technique with the two inversely directional clock chains in the photo-gate driver. Quantum efficiency (QE) and demodulation contrast (DC) have been optimized by using appropriate optical engineering techniques with an optimal silicon thickness. As a result, QE of 34% at 940-nm near-infrared and high DC of 86% at 100-MHz modulation frequency have been achieved. In addition, motion artifact and column FPPN are successfully removed in the depth map. The proposed ToF sensor shows depth noise less than 0.57% with 940-nm illuminator over the working distance up to 4 m, and consumes only 160 mW for VGA output at 60 frames/s.
机译:视频图形阵列(VGA)(640 $ times $ 480)间接飞行时间(TOF)CMOS图像传感器已经设计为4-Tap 7- $ Mu Text {M} $ Global-Shutter像素65nm后侧照明(BSI)过程。通过4点抽头像素结构,我们实现了自由伪影的深度图。通过在光栅驱动器中的恒定延迟链的电流扩展,曝光时间期间的峰值电流已经减少。来自恒定延迟链的列固定图案相位噪声(FPPN)通过所提出的时间交织技术自补偿,该技术在光栅驱动器中具有两个反向定向时钟链。通过使用具有最佳硅厚度的适当光学工程技术,已经优化了量子效率(QE)和解调对比度(DC)。结果,已经实现了在940纳米近红外线和高达86%的高达86%的34%的QE,在100MHz调制频率下。此外,在深度图中成功地移除了运动伪影和柱FPPN。所提出的TOF传感器在工作距离高达4米的工作距离上显示小于0.57%的深度噪声,高达4米,并且仅在60帧/秒钟内消耗160 mW的VGA输出。

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