基于元件共享的动态范围可调激光测距芯片设计

IF 2.3 4区 计算机科学 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Xuanke Tong, Chongzhuo Zhao, Zhiwei Huang, Chuanxin Teng, Shijie Deng
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引用次数: 0

摘要

本文提出了一种基于元件共享的动态范围可调激光测距芯片的设计,该芯片将单光子雪崩二极管与直接飞行时间(dToF)相结合,以解决激光测距技术在不同使用场景下探测距离的不确定性。为实现芯片动态范围的可调,设计并集成了基于外部控制信号的元件共享控制逻辑电路,通过外部控制信号调节芯片的测量动态范围,使其适合不同的使用场景。此外,当芯片的动态范围发生变化时,芯片中的时间-数字转换器(TDC)的测量分辨率保持不变。通过仿真结果分析,发现本文设计的激光测距芯片可以在参考时钟信号输入频率为20 MHz的情况下,以125 ps的分辨率,根据外部控制信号调节动态范围从3 ns到4.29 s。TDC的微分非线性(DNL)误差为- 0.22 ~ 0.19 LSB,积分非线性(INL)误差为- 0.82 ~ 0.52 LSB。本文设计的基于元件共享的动态范围可调激光测距芯片为解决激光测距技术中探测距离的不确定性提供了一种可行的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Design of dynamic range adjustable laser ranging chip based on element sharing

Design of dynamic range adjustable laser ranging chip based on element sharing

This work proposes a design of a dynamic range adjustable laser ranging chip based on element sharing, which combines single photon avalanche diodes and direct time-of-flight (dToF) to address the uncertainty of detection distance in different usage scenarios of laser ranging technology. To achieve adjustable dynamic range of the chip, an element shared control logic circuit based on external control signals is designed and integrated, which can adjust the measurement dynamic range of the chip through external control signals, making it suitable for different usage scenarios. Moreover, when the dynamic range of the chip changes, the measurement resolution of the time-to-digital converter (TDC) in the chip can remain unchanged. Through the analysis of simulation results, it is found that the laser ranging chip designed in this work can adjust the dynamic range from 3 ns to 4.29 s based on external control signals at a resolution of 125 ps, with a reference clock signal input frequency of 20 MHz. The differential non-linearity (DNL) error of TDC is −0.22 LSB to 0.19 LSB, and the integral non-linearity (INL) error is −0.82 LSB to 0.52 LSB. The dynamic range adjustable laser ranging chip based on element sharing designed in this work provides a feasible solution to address the uncertainty of detection distance in laser ranging technology.

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来源期刊
Iet Optoelectronics
Iet Optoelectronics 工程技术-电信学
CiteScore
4.50
自引率
0.00%
发文量
26
审稿时长
6 months
期刊介绍: IET Optoelectronics publishes state of the art research papers in the field of optoelectronics and photonics. The topics that are covered by the journal include optical and optoelectronic materials, nanophotonics, metamaterials and photonic crystals, light sources (e.g. LEDs, lasers and devices for lighting), optical modulation and multiplexing, optical fibres, cables and connectors, optical amplifiers, photodetectors and optical receivers, photonic integrated circuits, photonic systems, optical signal processing and holography and displays. Most of the papers published describe original research from universities and industrial and government laboratories. However correspondence suggesting review papers and tutorials is welcomed, as are suggestions for special issues. IET Optoelectronics covers but is not limited to the following topics: Optical and optoelectronic materials Light sources, including LEDs, lasers and devices for lighting Optical modulation and multiplexing Optical fibres, cables and connectors Optical amplifiers Photodetectors and optical receivers Photonic integrated circuits Nanophotonics and photonic crystals Optical signal processing Holography Displays
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