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A 640×480 Indirect Time-of-Flight CMOS Image Sensor with 4-tap 7-μm Global-Shutter Pixel and Fixed-Pattern Phase Noise Self-Compensation Scheme

机译:具有4抽头7微米全局快门像素和固定模式相位噪声自补偿方案的640×480间接飞行时间CMOS图像传感器

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A 640 × 480 indirect Time-of-Flight (ToF) CMOS image sensor has been designed with 4-tap 7-μm global-shutter pixel in 65-nm back-side illumination (BSI) process. With novel 4-tap pixel structure, we achieved motion artifact-free depth map. Column fixed-pattern phase noise (FPPN) is reduced by introducing alternative control of the clock delay propagation path in the photo-gate driver. As a result, motion artifact and column FPPN are not noticeable in the depth map. The proposed ToF sensor shows depth noise less than 0.62% with 940-nm illuminator over the working distance up to 400 cm, and consumes 197 mW for VGA, which is 0.64 pW/pixel.
机译:一个640×480间接飞行时间(TOF)CMOS图像传感器一直在65-NM背面照明(BSI)工艺中有4分接7-μm全局快门像素设计。具有新颖的4点抽像素结构,我们实现了无动伪影深度图。通过在光栅驱动器中引入时钟延迟传播路径的替代控制来减少列固定模式噪声(FPPN)。结果,在深度图中,运动伪影和柱FPPN在深度图中不明显。所提出的TOF传感器显示在高达400厘米的工作距离上的940nm照明器的深度噪声小于0.62%,并且为VGA消耗197 MW,为0.64 PW /像素。

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