首页> 外文期刊>IEEE Journal of Solid-State Circuits >A 30-frames/s, $252imes144$ SPAD Flash LiDAR With 1728 Dual-Clock 48.8-ps TDCs, and Pixel-Wise Integrated Histogramming
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A 30-frames/s, $252imes144$ SPAD Flash LiDAR With 1728 Dual-Clock 48.8-ps TDCs, and Pixel-Wise Integrated Histogramming

机译:一个30帧,<内联公式> $ 252 time144 $ spad flash lidar,带1728双时钟48.8-ps tdcs和像素 - 明智的集成直方图

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摘要

A 252 x 144 single-photon avalanche diode (SPAD) pixel sensor, called Ocelot, is reported for light detection and ranging (LiDAR). The sensor, fabricated in the 180-nm CMOS technology, features 1728 12-bit time-to-digital converters (TDCs) with 48.8-ps resolution (LSB). Each 126 pixels in a half-column are connected to six TDCs through a collision detection bus, which enables effective sharing of resources, and consequently a fill factor of 28% with a pixel pitch of 28.5 mu m. The column-parallel TDCs, based on dual-clock architecture, exhibit a DNL of +0.48/-0.48 LSB and an INL of +0.89/-1.67 LSB; they are dynamically reallocated in a scalable daisy chain approach that enables a maximum of five photon detections per illumination cycle per half-column. The sensor can operate in time-correlated single-photon counting (TCSPC) and single-photon counting (SPC) modes, while peak detection (PD) and partial histogramming (PH) are included in the operation of the sensor. The PD and PH modes are enabled by the first implementation of integrated histogramming for a full array via 3.32-Mb SRAM-based PH readout (PHR) scheme providing a 14.9-to-1 compression. Telemetry measurements up to 50 m achieve an accuracy of 8.8 cm and worst-case precision of 1.4 mm (sigma). A flash LiDAR using direct time of flight (dTOF) and based on Ocelot is demonstrated, achieving depth imaging at short distances with a frame rate of 30 frames/s, employing an ultra-low power laser with an average power of 2 mW and peak power of 0.5 W.
机译:报告了252 x 144单光子雪崩二极管(Spad)像素传感器,称为Ocelot,用于光检测和测距(LIDAR)。在180nm CMOS技术中制造的传感器,具有1728个12位时间转换器(TDC),具有48.8-PS分辨率(LSB)。半色谱柱中的每个126像素通过碰撞检测总线连接到六个TDC,这使得能够有效地共享资源,因此填充因子为28.5μm的像素间距。基于双时钟架构的列并行TDCS表现出+ 0.48 / -0.48 LSB的DNL和INL,+ 0.89 / -1.67 LSB;它们以可伸缩的菊花链方法动态重新分配,使得每半柱的每个照明周期最多可实现五个光子检测。传感器可以以时间相关的单光子计数(TCSPC)和单光子计数(SPC)模式操作,而峰值检测(PD)和部分直方图(pH)包括在传感器的操作中。通过基于3.32-MB SRAM的pH读数(PHR)方案的完整阵列的集成直方图,通过提供14.9到1的pH值,通过3.32-MB SRAM的pH读数(PHR)方案来实现PD和PH模式。遥测测量可达50米,可实现8.8厘米,最差的精度为1.4毫米(Sigma)。演示使用直接飞行时间(DTOF)和基于OCELOT的闪光激光雷达,在短距离下实现深度成像,帧速率为30帧/秒,采用超低功率激光器,平均功率为2 MW和峰值功率为0.5 W.

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