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    • 1. 发明申请
    • Integrated Embedded Processor Based Laser Spectroscopic Sensor
    • 基于集成嵌入式处理器的激光光谱传感器
    • US20120081708A1
    • 2012-04-05
    • US13325568
    • 2011-12-14
    • Stephen SOGerard WYSOCKIJ. Patrick FRANTZFrank K. TITTEL
    • Stephen SOGerard WYSOCKIJ. Patrick FRANTZFrank K. TITTEL
    • G01N21/00
    • G01N21/39G01N21/1702G01N21/274G01N2021/1708
    • A novel low-power and compact laser spectroscopic sensor is described herein. Embodiments of the disclosed sensor utilize state-of-the-art microprocessors and digital processing techniques to reduce power consumption and integrate functions into a small device. In particular, novel software methods are disclosed which allow the use of low-power microprocessors which draw no more than about 0.02 W of power. Such low-power enables long battery life and allows embodiments of the sensor to be used in portable applications. In addition, the system architecture and methods described in this disclosure allow a single integrated embedded processor to control all the subsystems necessary for a laser spectroscopic sensor further reducing sensor size and power consumption. In addition, a power efficient method of calibrating a photoacoustic laser spectroscopic sensor is disclosed.
    • 这里描述了一种新颖的低功率和紧凑的激光光谱传感器。 所公开的传感器的实施例利用最先进的微处理器和数字处理技术来降低功耗并将功能集成到小型设备中。 特别地,公开了允许使用不超过约0.02W功率的低功率微处理器的新型软件方法。 这种低功率使得电池寿命长,并允许传感器的实施例在便携式应用中使用。 此外,本公开中描述的系统架构和方法允许单个集成嵌入式处理器控制激光光谱传感器所需的所有子系统,进一步降低传感器尺寸和功耗。 另外,公开了一种校正光声激光光谱传感器的功率有效的方法。
    • 2. 发明授权
    • Integrated embedded processor based laser spectroscopic sensor
    • 基于集成嵌入式处理器的激光光谱传感器
    • US08098376B2
    • 2012-01-17
    • US12440373
    • 2006-10-06
    • Stephen SoGerard WysockiJ. Patrick FrantzFrank K. Tittel
    • Stephen SoGerard WysockiJ. Patrick FrantzFrank K. Tittel
    • G01N21/00
    • G01N21/39G01N21/1702G01N21/274G01N2021/1708
    • A novel low-power and compact laser spectroscopic sensor is described herein. Embodiments of the disclosed sensor utilize state-of-the-art microprocessors and digital processing techniques to reduce power consumption and integrate functions into a small device. In particular, novel software methods are disclosed which allow the use of low-power microprocessors which draw no more than about 0.02 W of power. Such low-power enables long battery life and allows embodiments of the sensor to be used in portable applications. In addition, the system architecture and methods described in this disclosure allow a single integrated embedded processor to control all the subsystems necessary for a laser spectroscopic sensor further reducing sensor size and power consumption. In addition, a power efficient method of calibrating a photoacoustic laser spectroscopic sensor is disclosed.
    • 这里描述了一种新颖的低功率和紧凑的激光光谱传感器。 所公开的传感器的实施例利用最先进的微处理器和数字处理技术来降低功耗并将功能集成到小型设备中。 特别地,公开了允许使用不超过约0.02W功率的低功率微处理器的新型软件方法。 这种低功率使得电池寿命长,并允许传感器的实施例在便携式应用中使用。 此外,本公开中描述的系统架构和方法允许单个集成嵌入式处理器控制激光光谱传感器所需的所有子系统,进一步降低传感器尺寸和功耗。 另外,公开了一种校正光声激光光谱传感器的功率有效的方法。
    • 3. 发明申请
    • Integrated Embedded Processor Based Laser Spectroscopic Sensor
    • 基于集成嵌入式处理器的激光光谱传感器
    • US20100177316A1
    • 2010-07-15
    • US12440373
    • 2006-10-06
    • Stephen SoGerard WysockiJ. Patrick FrantzFrank K. Tittel
    • Stephen SoGerard WysockiJ. Patrick FrantzFrank K. Tittel
    • G01N21/00
    • G01N21/39G01N21/1702G01N21/274G01N2021/1708
    • A novel low-power and compact laser spectroscopic sensor is described herein. Embodiments of the disclosed sensor utilize state-of-the-art microprocessors and digital processing techniques to reduce power consumption and integrate functions into a small device. In particular, novel software methods are disclosed which allow the use of low-power microprocessors which draw no more than about 0.02 W of power. Such low-power enables long battery life and allows embodiments of the sensor to be used in portable applications. In addition, the system architecture and methods described in this disclosure allow a single integrated embedded processor to control all the subsystems necessary for a laser spectroscopic sensor further reducing sensor size and power consumption. In addition, a power efficient method of calibrating a photoacoustic laser spectroscopic sensor is disclosed.
    • 这里描述了一种新颖的低功率和紧凑的激光光谱传感器。 所公开的传感器的实施例利用最先进的微处理器和数字处理技术来降低功耗并将功能集成到小型设备中。 特别地,公开了允许使用不超过约0.02W功率的低功率微处理器的新型软件方法。 这种低功率使得电池寿命长,并允许传感器的实施例在便携式应用中使用。 此外,本公开中描述的系统架构和方法允许单个集成嵌入式处理器控制激光光谱传感器所需的所有子系统,进一步降低传感器尺寸和功耗。 另外,公开了一种校正光声激光光谱传感器的功率有效的方法。