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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A 128 × 128 SPAD Motion-Triggered Time-of-Flight Image Sensor With In-Pixel Histogram and Column-Parallel Vision Processor
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A 128 × 128 SPAD Motion-Triggered Time-of-Flight Image Sensor With In-Pixel Histogram and Column-Parallel Vision Processor

机译:一个128×128 Spad运动触发的飞行时间图像传感器,具有像素直方图和列并行视觉处理器

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A 128 x 128 single-photon avalanche diode (SPAD) motion detection-triggered time-of-flight (ToF) sensor is implemented in STMicroelectronics 40 nm CMOS SPAD foundry process. The sensor combines vision and ToF ranging functions to acquire depth frames only when inter-frame intensity changes are detected. The 40 mu m x 20 mu m pixels integrate two 16-bit time-gated counters to acquire ToF histograms and repurpose them to compare two vision frames without the requirement for additional out-of-pixel frame memory resources. An embedded column-parallel ToF and vision processor performs on-chip vision frame comparison and binary frame output compression as well as controlling the time-resolved histogram sampling. The sensor achieves a maximum 32.5 kframes/s in vision modality and 500 frames/s in motion detection-triggered ToF over a measured 3.5 m distance with 1.5 cm accuracy. The vision function reduces the sensor power consumption by 70% over continuous ToF operation and allows the sensor to gate the ToF laser emitter to reduce the system power when no motion activity is observed.
机译:128 x 128单光子雪崩二极管(Spad)运动检测触发飞行时间(TOF)传感器在STMicroelectronics 40 nm CMOS Spad铸造工艺中实现。传感器将视觉和TOF测距功能组合起来,仅在检测到帧间强度变化时才能获取深度帧。 40μmx 20 mu m像素集成了两个16位时间门控计数器以获取ToF直方图并将它们重新回发,以比较两个视觉帧而不需要额外的像素帧存储器资源。嵌入式列并行TOF和视觉处理器执行片上视觉帧比较和二进制帧输出压缩,以及控制时间分辨的直方图采样。传感器在视觉模型中实现最大32.5 kFrames / s,在测量的3.5米距离高精度的3.5米距离中,在vision模态中获得最大32.5 kframes / s。视觉功能通过连续TOF操作减少70%的传感器功耗,并允许传感器栅极栅极栅极,当没有观察到运动活动时,将TOF激光发射器栅极降低系统功率。

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