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Global shutter-mesh architecture with surround-boosted driving scheme for time-of-flight depth sensors

机译:全球快门网结构,具有飞行时间深度传感器的环绕增强驱动方案

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摘要

Presented is an architecture with mesh-structured electronic shutters and surround shutter drivers with positiveegative boosting to enhance the depth accuracy in three-dimensional (3D) depth sensors with a time-of-flight (TOF) measurement scheme. High-frequency modulation in the TOF scheme degrades the charge-transfer efficiency in high-resolution sensors because of the large parasitic resistance and the capacitance of the electronic shutters and shutter lines. This degradation suppresses modulation contrast, which induces depth errors. The global shutter-mesh architecture and surround-boosted driving scheme is implemented for high-modulation contrast in large-format depth sensors with a 1280 × 960 resolution.
机译:提出了一种具有网状结构电子快门和环绕快门驱动器的架构,该架构具有正/负增强功能,可通过飞行时间(TOF)测量方案增强三维(3D)深度传感器的深度精度。由于大的寄生电阻以及电子快门和快门线的电容,TOF方案中的高频调制会降低高分辨率传感器中的电荷传输效率。这种降级抑制了调制对比度,从而引起深度误差。在具有1280×960分辨率的大幅面深度传感器中,实现了全局快门网格结构和环绕增强驱动方案,以实现高调制对比度。

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