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JSSC 2019第8期Clocking & PLLs0.11 µm CMOSCMOS Image Sensor

A Sub-100 μm-Range-Resolution Time-of-Flight Range Image Sensor With Three-Tap Lock-In Pixels, Non-Overlapping Gate Clock, and Reference

提出一种亚100微米分辨率的时间飞行测距图像传感器,采用三抽头锁定像素和列并行数字延迟锁定环技术。
64 µm rms范围分辨率,430-fs时间分辨率,25-mm范围
时间飞行测距高分辨率锁定像素延迟锁定环参考平面采样
使用基于横向电场调制的三抽头锁定像素技术
采用列并行数字延迟锁定环(DLL)减少时钟偏差
引入参考平面采样(RPS)技术降低低频抖动
Abstract
This paper aims to propose a time-of-flight (TOF) range imager with high range resolution in the sub-100µm range. The range imager employs a TOF measurement technique that uses an impulse photocurrent response and a three-tap lock-in pixel based on the lateral electric field modulation. To reduce the clock skew of the gating clocks, a column-parallel digital delay- locked loop (DLL) with a dual clock tree is implemented with a short calibration time of approximately 42 µs. A non-overlapping gate clock generation included in the skew calibration circuit effectively suppresses the photogenerated-charge partitioning for reduced nonlinearity for distance measurements. Reference plane sampling (RPS) is proposed to reduce low-frequency jitter that limits the range resolution in the light-pulse trigger. In this technique, a reference pixel array is embedded in the same focal plane of the main pixel array to sample and cancel the correlated jitter in the light trigger. The prototype range imager with 192 × 4 effective pixels is implemented in a 0.11- µmC M O S image sensor technology. Using the RPS, a range resolution of 64 µm rms has been achieved, corresponding to a 430-fs time resolution with a 25-mm range. The range resolution has a large column-to-column deviation due to the jitter induced by the column-parallel gating buffers. In noisy columns, jitter that acts as random telegraph noise (RTN) is observed.