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Detection-gap-independent optical sensor design using divergence-beam-controlled slit lasers for wearable devices

机译:使用发散光束控制的缝隙激光器为可穿戴设备设计与检测间隙无关的光学传感器

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摘要

Wearable devices often employ optical sensors, such as photoplethysmography sensors, for detecting heart rates or other biochemical factors. Pulse waveforms, rather than simply detecting heartbeats, can clarify arterial conditions. However, most optical sensor designs require close skin contact to reduce power consumption while obtaining good quality signals without distortion. We have designed a detection-gap-independent optical sensor array using divergence-beam-controlled slit lasers and distributed photodiodes in a pulse-detection device wearable over the wrist's radial artery. It achieves high biosignal quality and low power consumption. The top surface of a vertical-cavity surface-emitting laser of 850 nm wavelength was covered by Au film with an open slit of width between 500 nm and 1500 nm, which generated laser emissions across a large divergence angle along an axis orthogonal to the slit direction. The sensing coverage of the slit laser diode (LD) marks a 50% improvement over nonslit LD sensor coverage. The slit LD sensor consumes 100% more input power than the nonslit LD sensor to obtain similar optical output power. The slit laser sensor showed intermediate performance between LD and light-emitting diode sensors. Thus, designing sensors with multiple-slit LD arrays can provide useful and convenient ways for incorporating optical sensors in wrist-wearable devices.
机译:可穿戴设备通常采用光学传感器(例如光电容积描记术传感器)来检测心率或其他生化因素。脉搏波形,而不是简单地检测心跳,可以阐明动脉状况。但是,大多数光学传感器设计都需要与皮肤紧密接触,以减少功耗,同时获得高质量的信号而不会失真。我们设计了一种与检测间隙无关的光学传感器阵列,该传感器阵列采用发散束控制的狭缝激光器和可佩戴在手腕s动脉上方的脉冲检测设备中的分布式光电二极管。它实现了高生物信号质量和低功耗。波长为850 nm的垂直腔表面发射激光器的顶表面覆盖有宽度为500 nm至1500 nm的开口狭缝的Au膜,其沿垂直于狭缝的轴在较大的发散角上产生激光发射方向。狭缝激光二极管(LD)的感应范围比非狭缝LD传感器覆盖范围提高了50%。狭缝LD传感器比非狭缝LD传感器消耗的输入功率多100%,以获得相似的光输出功率。狭缝激光传感器在LD和发光二极管传感器之间表现出中间性能。因此,设计具有多狭缝LD阵列的传感器可以提供有用且方便的方式,将光学传感器并入腕戴式设备中。

著录项

  • 来源
    《Infrared sensors, devices, and applications VI》|2016年|997411.1-997411.19|共19页
  • 会议地点 San Diego CA(US)
  • 作者单位

    Samsung Advanced Institute of Technology (SAIT), Device Lab, Suwon, Republic of Korea, 16678;

    Samsung Advanced Institute of Technology (SAIT), Device Lab, Suwon, Republic of Korea, 16678;

    Samsung Advanced Institute of Technology (SAIT), Device Lab, Suwon, Republic of Korea, 16678;

    Samsung Advanced Institute of Technology (SAIT), Device Lab, Suwon, Republic of Korea, 16678;

    Samsung Advanced Institute of Technology (SAIT), Device Lab, Suwon, Republic of Korea, 16678;

    Samsung Advanced Institute of Technology (SAIT), Device Lab, Suwon, Republic of Korea, 16678;

    Samsung Advanced Institute of Technology (SAIT), Device Lab, Suwon, Republic of Korea, 16678;

    Samsung Advanced Institute of Technology (SAIT), Device Lab, Suwon, Republic of Korea, 16678;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    optical sensor; photoplethysmography; lasers; slit lasers; wrist-wearable devices; detection gap;

    机译:光学传感器光体积描记法激光裂隙激光器腕戴式设备;检测间隙;

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