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Arrayable Voltage-Controlled Ring-Oscillator for Direct Time-of-Flight Image Sensors

机译:用于直接飞行时间图像传感器的可阵列压控环形振荡器

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Direct time-of-flight (d-ToF) estimation with high frame rate requires the incorporation of a time-to-digital converter (TDC) at pixel level. A feasible approach to a compact implementation of the TDC is to use the multiple phases of a voltage-controlled ring-oscillator (VCRO) for the finest bits. The VCRO becomes central in determining the performance parameters of a d-ToF image sensor. In this paper, we are covering the modeling, design, and measurement of a CMOS pseudo-differential VCRO. The oscillation frequency, the jitter due to mismatches and noise and the power consumption are analytically evaluated. This design has been incorporated into a 64×64-pixel array. It has been fabricated in a 0.18 μm standard CMOS technology. Occupation area is 28×29 μm2 and power consumption is 1.17 mW at 850 MHz. The measured gain of the VCRO is of 477 MHz/V with a frequency tuning range of 53%. Moreover, it features a linearity of 99.4% over a wide range of control frequencies, namely, from 400 to 850 MHz. The phase noise is of -102 dBc/Hz at 2 MHz offset frequency from 850 MHz. The influence of these parameters in the performance of the TDC has been measured. The minimum time bin of the TDC is 147 ps with a rms DNL/ INL of 0.13/ 1.7LSB.
机译:具有高帧速率的直接飞行时间(d-ToF)估计要求在像素级别集成一个时间数字转换器(TDC)。紧凑地实现TDC的一种可行方法是将压控环形振荡器(VCRO)的多个相位用于最精细的位。 VCRO在确定d-ToF图像传感器的性能参数方面变得至关重要。在本文中,我们将介绍CMOS伪差分VCRO的建模,设计和测量。通过分析评估振荡频率,由于失配和噪声引起的抖动以及功耗。此设计已合并到64×64像素阵列中。它采用0.18μm标准CMOS技术制造。在850 MHz时,占用面积为28×29μm 2 ,功耗为1.17 mW。 VCRO的测量增益为477 MHz / V,频率调谐范围为53%。而且,它在400至850 MHz的宽控制频率范围内具有99.4%的线性度。在850 MHz的2 MHz偏移频率处,相位噪声为-102 dBc / Hz。已经测量了这些参数对TDC性能的影响。 TDC的最小时间段为147 ps,均方根DNL / INL为0.13 / 1.7LSB。

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