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    • 12. 发明申请
    • Counterflow insect trap
    • 逆流昆虫陷阱
    • US20110056118A1
    • 2011-03-10
    • US12801957
    • 2010-07-02
    • Mark H. MillerBruce E. WigtonKenneth Lonngren
    • Mark H. MillerBruce E. WigtonKenneth Lonngren
    • A01M1/10A01M1/06
    • A01M1/08A01M1/02A01M1/023A01M1/06A01M2200/012
    • A device for attracting and capturing or otherwise disabling insects includes a fan mechanism structured and arranged to provide an outflow of air out of the device to atmosphere, and to draw an inflow directed counter the outflow from atmosphere into the device, the outflow being substantially within the inflow outside of the device. The flow mechanism is also structured and arranged to provide an insect attractant in the outflow. The device can include mounting structure being adapted to position the device with the outflow directed in a substantially downward direction. The outflow attracts insects to the vicinity of the device, and the inflow urges the insects to enter the device. An insect disabling structure is arranged with the flow mechanism to capture or otherwise disable insects being urged into the device by the inflow.
    • 用于吸引和捕获或以其他方式灭虫的装置包括风扇机构,该风扇机构构造和布置成提供空气从设备流出到大气中,并且将流出的流入引导与大气进入设备相反,流出物基本上在 流入设备外部。 流动机构还构造和布置成在流出物中提供昆虫引诱剂。 该装置可以包括安装结构,适于使装置定位,其中流出物指向大致向下的方向。 流出物将昆虫吸引到装置附近,流入物质迫使昆虫进入装置。 布置了一种防虫结构,其中流动机构捕获或以其它方式阻止通过流入被推入装置的昆虫。
    • 14. 发明授权
    • Counterflow insect trap
    • 逆流昆虫陷阱
    • US07243458B2
    • 2007-07-17
    • US10806223
    • 2004-03-23
    • Mark H. MillerBruce E. WigtonKenneth Lonngren
    • Mark H. MillerBruce E. WigtonKenneth Lonngren
    • A01M1/08A01M1/06
    • A01M1/08A01M1/02A01M1/023A01M1/06A01M2200/012
    • A device for attracting and capturing or otherwise disabling insects includes a fan mechanism structured and arranged to provide an outflow of air out of the device to atmosphere, and to draw an inflow directed counter the outflow from atmosphere into the device, the outflow being substantially within the inflow outside of the device. The flow mechanism is also structured and arranged to provide an insect attractant in the outflow. The device can include mounting structure being adapted to position the device with the outflow directed in a substantially downward direction. The outflow attracts insects to the vicinity of the device, and the inflow urges the insects to enter the device. An insect disabling structure is arranged with the flow mechanism to capture or otherwise disable insects being urged into the device by the inflow.
    • 用于吸引和捕获或以其他方式灭虫的装置包括风扇机构,该风扇机构构造和布置成提供空气从设备流出到大气中,并且将流出的流入引导与大气进入设备相反,流出物基本上在 流入设备外部。 流动机构还构造和布置成在流出物中提供昆虫引诱剂。 该装置可以包括安装结构,其适于将装置定位成具有大致向下的方向的流出。 流出物将昆虫吸引到装置附近,流入物质迫使昆虫进入装置。 布置了一种防虫结构,其中流动机构捕获或以其它方式阻止通过流入被推入装置的昆虫。
    • 15. 发明授权
    • Data acquisition system using delta-sigma analog-to-digital signal converters
    • 采用delta-sigma模数转换器的数据采集系统
    • US06657571B2
    • 2003-12-02
    • US09874769
    • 2001-06-05
    • Bernard M. GordonHans WeedonLouis R. PouloMark H. Miller
    • Bernard M. GordonHans WeedonLouis R. PouloMark H. Miller
    • H03M300
    • H03M3/39H03M3/424H03M3/452
    • A delta-sigma A/D converter includes a delta-sigma modulator having an integrating amplifier dispose within the loop of the modulator so that the input of the modulator can be connected to receive relatively low level input currents, and so as to improve DC stability. The modulator is specifically adapted for IC implementation for use in a DAS of a CT scanner so that the current output of a detector of the scanner can be connected directly to the input of the modulator of the converter. The noise shaping characteristics are shaped so as to provide an improved frequency response with minimal spillover. Noise shaping of the converter is provided throughout the dynamic range of the current outputs of CT scanner detectors so as to compensate for the poorer S/N for low input currents. The preferred converter also includes a unique digital filter transfer function, with finite impulse response (FIR) filter characteristics, optimized for CT-DAS applications and having excellent characteristics in the frequency domain and the time domain.
    • Δ-ΣA / D转换器包括具有集成放大器的Δ-Σ调制器,其布置在调制器的环路内,使得调制器的输入可以被连接以接收相对低电平的输入电流,并且从而提高DC稳定性 。 该调制器特别适用于CT实施用于CT扫描器的DAS,使得扫描仪的检测器的电流输出可以直接连接到转换器的调制器的输入端。 噪声整形特性的形状使得以最小的溢出提供改进的频率响应。 在CT扫描仪检测器的电流输出的动态范围内提供转换器的噪声整形,以补偿低输入电流的较差的S / N。 优化的转换器还包括独特的数字滤波器传递功能,具有有限脉冲响应(FIR)滤波器特性,针对CT-DAS应用优化,并且在频域和时域中具有优异的特性。
    • 16. 发明授权
    • Data acquisition system using delta-sigma analog-to-digital signal converters
    • 采用delta-sigma模数转换器的数据采集系统
    • US06252531B1
    • 2001-06-26
    • US09243708
    • 1999-02-03
    • Bernard M. GordonHans WeedonLouis R. PouloMark H. Miller
    • Bernard M. GordonHans WeedonLouis R. PouloMark H. Miller
    • H03M300
    • H03M3/39H03M3/424H03M3/452
    • A delta-sigma A/D converter includes a delta-sigma modulator having an integrating amplifier dispose within the loop of the modulator so that the input of the modulator can be connected to receive relatively low level input currents, and so as to improve DC stability. The modulator is specifically adapted for IC implementation for use in a DAS of a CT scanner so that the current output of a detector of the scanner can be connected directly to the input of the modulator of the converter. The noise shaping characteristics are shaped so as to provide an improved frequency response with minimal spillover. Noise shaping of the converter is provided throughout the dynamic range of the current outputs of CT scanner detectors so as to compensate for the poorer S/N for low input currents. The preferred converter also includes a unique digital filter transfer function, with finite impulse response (FIR) filter characteristics, optimized for CT-DAS applications and having excellent characteristics in the frequency domain and the time domain.
    • Δ-ΣA / D转换器包括具有集成放大器的Δ-Σ调制器,其布置在调制器的环路内,使得调制器的输入可以被连接以接收相对低电平的输入电流,并且从而提高DC稳定性 。 该调制器特别适用于CT实施用于CT扫描器的DAS,使得扫描仪的检测器的电流输出可以直接连接到转换器的调制器的输入端。 噪声整形特性的形状使得以最小的溢出提供改进的频率响应。 在CT扫描仪检测器的电流输出的动态范围内提供转换器的噪声整形,以补偿低输入电流的较差的S / N。 优化的转换器还包括独特的数字滤波器传递功能,具有有限脉冲响应(FIR)滤波器特性,针对CT-DAS应用优化,并且在频域和时域中具有优异的特性。
    • 17. 发明授权
    • Method and device producing CO.sub.2 gas for trapping insects
    • 产生二氧化碳气体捕获昆虫的方法和装置
    • US6145243A
    • 2000-11-14
    • US9950
    • 1998-01-21
    • Bruce E. WigtonMark H. Miller
    • Bruce E. WigtonMark H. Miller
    • A01M1/02A01M1/06A01M1/08A01M5/08
    • A01M1/02A01M1/023A01M1/06A01M1/08A01M2200/012
    • An insect trapping device generates its own insect attractants of carbon dioxide (CO.sub.2), heat and water vapor through catalytic conversion of a hydrocarbon fuel in a combustion chamber. The hot insect attractants generated in the combustion chamber are diluted and cooled to a temperature above ambient temperature and below about 115.degree. F. by mixing with air, and then the mixture is exhausted downward through the exhaust tube. A counterflow of outside air is drawn into the trap though the suction tube that concentrically surrounds the exhaust tube. Biting insects are captured in a porous, disposable bag connected to the other end of the suction tube. A thermoelectric generator, including thermoelectric modules coupled to the combustion chamber generate power for fans that provide the exhaust flow and the suction flow. Additional chemical attractants may be used with the device to make the trap even more effective. The trap may be adapted for trapping different types of insects by adjusting airflow velocities and attractants.
    • 昆虫捕集装置通过燃烧室中的烃燃料的催化转化而产生其自身的二氧化碳(CO2),热和水蒸汽的引诱剂。 在燃烧室中产生的热昆虫引诱剂通过与空气混合而稀释并冷却到高于环境温度和低于约115°F的温度,然后混合物通过排气管向下排出。 外部空气的逆流通过同心地围绕排气管的吸入管被吸入陷阱。 叮咬的昆虫被捕获在连接到吸管的另一端的多孔的一次性袋中。 包括耦合到燃烧室的热电模块的热电发电机为提供排气流和吸入流的风扇产生功率。 附加的化学引诱剂可以与该装置一起使用以使捕集器更有效。 捕集器可以适应于通过调节气流速度和引诱剂捕获不同类型的昆虫。
    • 18. 发明授权
    • Insect trap including methanol fuel cell for generating carbon dioxide
and water vapor as attractants
    • 昆虫陷阱包括用于产生二氧化碳和水蒸气作为引诱剂的甲醇燃料电池
    • US5669176A
    • 1997-09-23
    • US559284
    • 1995-11-15
    • Mark H. Miller
    • Mark H. Miller
    • A01M1/02A01M1/06
    • A01M1/06A01M1/023
    • An insect trap for trapping hematophagous insects utilizes a methanol fuel cell to provide carbon dioxide, water vapor, and heat as attractive agents, and further utilizes electricity generated by the fuel cell to power the electrical components of the trap, thus eliminating the need for an external power source. The fuel cell is mounted in a tubular housing having inlet and outlet ends. The inlet end of a second tubular housing is mounted in spaced adjacent relation to the outlet end of the fuel cell housing. A fan, powered by the fuel cell, is mounted in the second housing for creating an air flow through the fuel cell housing and the second housing. The carbon dioxide and water vapor generated by the fuel cell are drawn through the fuel cell housing and into the inlet end of the trap housing by the air flow, while insects attracted to the device are also drawn into the inlet end of the trap housing by the air flow. A mesh bag is secured around the outlet end of the second housing for trapping insects drawn into the trap housing.
    • 用于捕集血液昆虫的昆虫捕获阱利用甲醇燃料电池提供二氧化碳,水蒸气和热作为吸引剂,并且进一步利用燃料电池产生的电力来为陷阱的电气部件供电,因此不需要 外部电源。 燃料电池安装在具有入口端和出口端的管状壳体中。 第二管状壳体的入口端以与燃料电池壳体的出口端间隔开的相邻关系安装。 由燃料电池驱动的风扇安装在第二壳体中,用于产生通过燃料电池壳体和第二壳体的空气流。 由燃料电池产生的二氧化碳和水蒸汽被空气流吸入燃料电池壳体并进入陷阱壳体的入口端,同时吸引到设备的昆虫也被吸入陷阱壳体的入口端, 气流。 网袋围绕第二壳体的出口端固定,用于捕获吸入陷阱壳体中的昆虫。
    • 19. 发明授权
    • Pocket surface roughness gage
    • 口袋表面粗糙度计
    • US4776212A
    • 1988-10-11
    • US63667
    • 1987-06-19
    • Frederick G. ParsonsMark H. MillerEugene F. Cote
    • Frederick G. ParsonsMark H. MillerEugene F. Cote
    • G01B5/28G01B7/34
    • G01B7/34G01B5/28
    • A compact, efficient, self-contained dynamic surface roughness gage includes a staging frame that supports a reciprocatable arm that can be pivoted about an axis perpendicular to a V-shaped working surface at the underside of the frame between releasably fixed positions located 90.degree. apart to facilitate staging the gage on different workpiece configurations. The arm supports a probe comprising a skid and a stylus which is coupled by way of a special flexure to a stereo phonograph cartridge so that only the vibratory motions of the stylus in a direction perpendicular to the nominal plane of the frame working surface are coupled to the transducer. As the probe scans over a workpiece surface with the skid following the same track as the stylus, the two outputs from the transducer are summed to produce a single electrical analog of the vibratory motion of the stylus in that favored direction. That signal is coupled to a control circuit which processes the signal and applies an instruction to a display which thereupon shows a number correspnding to the surface roughness of the workpiece as measured by the gage.
    • 紧凑,高效,独立的动态表面粗糙度计包括支撑可往复运动的臂的分段架,所述可往复运动的臂可围绕框架下侧垂直于V形工作表面的轴线枢转,位于距离90°的可释放固定位置 以便于在不同的工件配置上分级。 臂支撑包括滑块和触笔的探针,该触针通过特殊的挠曲联接到立体声留声机盒,使得只有在与框架工作表面的标称平面垂直的方向上触针的振动运动被耦合到 传感器。 当探头在工件表面上扫描时,滑块与触针相同的轨迹,来自传感器的两个输出相加,以产生触控笔在该有利方向上的振动运动的单个电气模拟。 该信号耦合到控制电路,该控制电路处理信号并向显示器施加指令,随后显示与由量具测量的与工件的表面粗糙度相对应的数字。
    • 20. 发明授权
    • Prescription pill vial with ratcheting dosage indexer
    • 处方药丸与棘轮剂量指数
    • US09259375B2
    • 2016-02-16
    • US14083717
    • 2013-11-19
    • Mark H. Miller
    • Mark H. Miller
    • A61J1/03
    • A61J1/03A61J2205/30
    • A prescription pill vial with dosage indexer is disclosed. The prescription pill vial includes a body having a sidewall and bottom forming an enclosure for prescription medications. The sidewall extends below the bottom forming a cavity beneath the enclosure. A rosette is on the bottom of the body. The rosette has a plurality of detents thereon. An indexer is configured to fit into the cavity and rotate therewithin. The indexer has a spring-biased pawl that engages the detents on the rosette, limiting the rotation of the indexer to a number of predefined positions corresponding to the detents on the rosette.
    • 公开了一种带有剂量指数的处方药丸。 处方药丸包括具有侧壁和底部的主体,形成处方药物的外壳。 侧壁在底部下方延伸,形成在外壳下面的空腔。 玫瑰花瓣在身体的底部。 莲座具有多个棘爪。 分度器构造成适合于空腔并在其中旋转。 分度器具有弹簧偏置棘爪,其接合玫瑰花柱上的棘爪,将分度器的旋转限制到对应于玫瑰花瓣上的棘爪的多个预定位置。