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3D Sensor for indirect ranging with pulsed laser source

机译:3D传感器用于间接测距脉冲激光源

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The growing interest for fast, compact and cost-effective 3D ranging imagers for automotive applications has prompted to explore many different techniques for 3D imaging and to develop new system for this propose. CMOS imagers that exploit phase-resolved techniques provide accurate 3D ranging with no complex optics and are rugged and cost-effective. Phase-resolved techniques indirectly measure the round-trip return of the light emitted by a laser and back-scattered from a distant target, computing the phase delay between the modulated light and the detected signal. Single-photon detectors, with their high sensitivity, allow to actively illuminate the scene with a low power excitation (less than 10W with diffused daylight illumination). We report on a 4×4 array of CMOS SPAD (Single Photon Avalanche Diodes) designed in a high-voltage 0.35 μm CMOS technology, for pulsed modulation, in which each pixel computes the phase difference between the laser and the reflected pulse. Each pixel comprises a high-performance 30 μm diameter SPAD, an analog quenching circuit, two 9 bit up-down counters and memories to store data during the readout. The first counter counts the photons detected by the SPAD in a time window synchronous with the laser pulse and integrates the whole echoed signal. The second counter accumulates the number of photon detected in a window shifted with respect to the laser pulse, and acquires only a portion of the reflected signal. The array is readout with a global shutter architecture, using a 100 MHz clock; the maximal frame rate is 3 Mframe/s.
机译:为汽车应用程序的快速,紧凑型和经济高效的3D测距图像越来越感兴趣,提示探讨了许多不同的3D成像技术,并为此提出开发新系统。利用阶段解决技术的CMOS成像仪提供精确的3D,无复杂光学器件,并且具有坚固耐用性和经济效益。相位分辨的技术间接测量由激光发射的光的往返返回,并从远处目标散射,计算调制光和检测到的信号之间的相位延迟。单光子探测器具有高灵敏度,允许主动照亮具有低功率激励的场景(小于10W,扩散日光照明)。我们在高压0.35μmCMOS技术中报告设计在高压0.35μmCMOS技术中的4×4阵列(单光子雪崩二极管),用于脉冲调制,其中每个像素计算激光和反射脉冲之间的相位差。每个像素包括高性能30μm直径Spad,模拟淬火电路,两个9位上下计数器和存储器存储在读出期间存储数据。第一计数器在与激光脉冲同步的时间窗口中通过SPAD检测到的光子,并集成整个回声信号。第二计数器累积在相对于激光脉冲移位的窗口中检测到的光子的数量,并且仅获取反射信号的一部分。数组使用100 MHz时钟使用全局快门架构读出;最大帧速率为3 mframe / s。

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