Invention Application
US20160301367A1 Reference Signal Generation for Lock-In Amplifier in High Sensitivity Gas Sensing System 有权
高灵敏度气体传感系统中锁定放大器的参考信号产生

  • Patent Title: Reference Signal Generation for Lock-In Amplifier in High Sensitivity Gas Sensing System
  • Patent Title (中): 高灵敏度气体传感系统中锁定放大器的参考信号产生
  • Application No.: US15089987
    Application Date: 2016-04-04
  • Publication No.: US20160301367A1
    Publication Date: 2016-10-13
  • Inventor: Junqiang HuTing Wang
  • Applicant: NEC Laboratories America, Inc.
  • Main IPC: H03F1/26
  • IPC: H03F1/26 G01N21/39
Reference Signal Generation for Lock-In Amplifier in High Sensitivity Gas Sensing System
Abstract:
A gas sensing system includes a signal generator including a wavelength tunable laser, the signal generator providing a first periodic signal and a second periodic signal, wherein the first periodic signal comprises a wavelength scanning signal and the second periodic signal comprises a modulation signal; an optical signal absorption path which is wavelength selective, wherein the generated signal covers at least one of the absorbance band; a signal detector that uses lock-in detection to detect a second harmonic of the second periodic signal after absorption, the signal detector further including a local reference generator, a multiplier, and a low pass filter; a local reference includes a first path (ref1) that outputs sinusoidal signal with frequency equals to that of the second signal in signal generator, and a second path (ref2) that outputs sinusoidal signal of two times ref1 frequency; and a local reference generator having a first phase shifter that is configurable from 0 to 2π and a second phase shifter that shifts 90-degree, wherein the first phase shifter is for an alignment of ref1 with the modulation signal and the second phase shifter provides 90-degree shifts for ref2 from ref1, wherein the first and second paths (ref1 and ref2) are selected by a switch, wherein the switch uses the first path during initialization and the second path for normal operation.
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