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Near-infrared time-of-flight remote sensing

机译:近红外飞行时间遥感

摘要

A smart phone or tablet includes laser diodes configured to be pulsed and generate near-infrared light between 700-2500 nanometers. Lenses direct the light to a sample. A detection system includes a photodiode array with pixels coupled to CMOS transistors, and is configured to receive light reflected from the sample, to be synchronized to the light from the laser diodes, and to perform a time-of-flight measurement of a time difference between light from the laser diodes and light reflected from the sample. The detection system is configured to convert light received while the laser diodes are off into a first signal, and light received while at least one laser diodes is on, which includes light reflected from the sample, into a second signal. The smart phone or tablet is configured to difference the first signal and the second signal and to generate a two-dimensional or three-dimensional image using the time-of-flight measurement.
机译:智能电话或平板电脑包括配置为脉冲并产生700-2500纳米之间的近红外光的激光二极管。镜片将光导向样品。一种检测系统,包括具有耦合至CMOS晶体管的像素的光电二极管阵列,并配置为接收从样品反射的光,以与来自激光二极管的光同步,并执行时间差的飞行时间测量在激光二极管发出的光和样品反射的光之间。所述检测系统被配置为将在所述激光二极管关闭时接收的光转换为第一信号,并且在至少一个激光二极管开启时接收的光转换为第二信号,所述光包括从所述样品反射的光。智能电话或平板电脑被配置为使用飞行时间测量来使第一信号和第二信号相差并生成二维或三维图像。

著录项

  • 公开/公告号US10386230B1

    专利类型

  • 公开/公告日2019-08-20

    原文格式PDF

  • 申请/专利权人 OMNI MEDSCI INC.;

    申请/专利号US201816188194

  • 发明设计人 MOHAMMED N. ISLAM;

    申请日2018-11-12

  • 分类号G01J3;G01J3/02;G01J3/28;G01J3/42;

  • 国家 US

  • 入库时间 2022-08-21 12:15:52

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