Pilot assemblies for heating devices
    85.
    发明授权
    Pilot assemblies for heating devices 有权
    用于加热设备的先导组件

    公开(公告)号:US08297968B2

    公开(公告)日:2012-10-30

    申请号:US12581758

    申请日:2009-10-19

    Applicant: David Deng

    Inventor: David Deng

    Abstract: In certain embodiments, an apparatus can comprise a dual fuel pilot assembly. The pilot assembly can comprise a first fuel dispenser, a second fuel dispenser, an igniter and at least one of a thermocouple, and a thermopile. The pilot assembly can be configured to direct heat from combustion of one of either a first fuel or a second fuel to the at least one of the thermocouple and the thermopile.

    Abstract translation: 在某些实施例中,装置可以包括双燃料导向组件。 导向组件可以包括第一燃料分配器,第二燃料分配器,点火器和热电偶和热电堆中的至少一个。 导向组件可以被配置为将热量从第一燃料或第二燃料中的一种燃烧引导到热电偶和热电堆中的至少一个。

    Dual fuel heater
    86.
    发明授权
    Dual fuel heater 有权
    双燃料加热器

    公开(公告)号:US08281781B2

    公开(公告)日:2012-10-09

    申请号:US13169963

    申请日:2011-06-27

    Applicant: David Deng

    Inventor: David Deng

    Abstract: A dual fuel heater can couple with one of two fuel sources operating at different pressures. The dual fuel heater can have a first fuel line, a second fuel line, a fluid flow controller, and a combustion chamber. The fluid flow controller can selectively permit flow of a first fuel to either the first fuel line or flow of a second fuel to the second fuel line. The first fuel line can be in communication with a first oxygen depletion sensor orifice and the second fuel line can be in communication with a second oxygen depletion sensor orifice.

    Abstract translation: 双燃料加热器可以具有调节器单元,主控制阀,第一氧耗耗传感器孔和第二氧耗耗传感器孔。 主控制阀可用于控制从调节器单元接收的燃料流量。 来自第一氧耗尽传感器孔口的第一燃料或来自第二氧耗尽传感器孔口的第二燃料的燃烧产生的热量可以产生电流,以将主控制阀保持在打开位置,以允许通过主控制阀 第一燃料或第二燃料。 当来自第一氧耗尽传感器孔口的第一燃料或来自第二氧耗尽传感器孔口的第二燃料的燃烧终止时,主控制阀可以关闭,从而防止第一或第二燃料通过。

    DUAL FUEL HEATER
    87.
    发明申请
    DUAL FUEL HEATER 有权
    双燃料加热器

    公开(公告)号:US20120132189A1

    公开(公告)日:2012-05-31

    申请号:US13169963

    申请日:2011-06-27

    Applicant: David Deng

    Inventor: David Deng

    Abstract: A dual fuel heater can couple with one of two fuel sources operating at different pressures. The dual fuel heater can have a first fuel line, a second fuel line, a fluid flow controller, and a combustion chamber. The fluid flow controller can selectively permit flow of a first fuel to either the first fuel line or flow of a second fuel to the second fuel line. The first fuel line can be in communication with a first oxygen depletion sensor orifice and the second fuel line can be in communication with a second oxygen depletion sensor orifice.

    Abstract translation: 双燃料加热器可以与在不同压力下操作的两种燃料源中的一种耦合。 双燃料加热器可以具有第一燃料管线,第二燃料管线,流体流量控制器和燃烧室。 流体流量控制器可以选择性地允许第一燃料流动到第一燃料管线或第二燃料的流动到第二燃料管线。 第一燃料管线可以与第一氧耗耗传感器孔口连通,并且第二燃料管线可以与第二氧气耗尽传感器孔口连通。

    HEATER CONFIGURED TO OPERATE WITH A FIRST OR SECOND FUEL
    88.
    发明申请
    HEATER CONFIGURED TO OPERATE WITH A FIRST OR SECOND FUEL 有权
    加热器配置为运行第一或第二燃料

    公开(公告)号:US20120080024A1

    公开(公告)日:2012-04-05

    申请号:US13169823

    申请日:2011-06-27

    Applicant: David Deng

    Inventor: David Deng

    Abstract: A heater can be configured to operate with either a first fuel at a first pressure or a second fuel at a second pressure and can include a fluid flow controller. In some embodiments, the fluid flow controller is configured to permit flow of fuel to a first passageway and to direct a first fuel to a first oxygen depletion sensor line when the controller is in a first position and permit the flow of fuel to a second passageway and to direct a second fuel to a second oxygen depletion sensor line when the controller is in a second position.

    Abstract translation: 加热器可以被配置为与第一压力下的第一燃料或第二压力的第二燃料一起操作,并且可以包括流体流量控制器。 在一些实施例中,流体流量控制器被配置为当控制器处于第一位置时允许燃料流动到第一通道并且将第一燃料引导到第一氧气耗尽传感器线路并且允许燃料流动到第二通道 并且当所述控制器处于第二位置时,将第二燃料引导到第二氧耗尽传感器线。

    Biosensor manufacturing method
    89.
    发明授权
    Biosensor manufacturing method 有权
    生物传感器制造方法

    公开(公告)号:US08128981B2

    公开(公告)日:2012-03-06

    申请号:US11783568

    申请日:2007-04-10

    CPC classification number: G01N27/3272

    Abstract: A biosensor having a first conductive component is described, wherein the first conductive component includes at least one boundary formed by a first processing technique and at least one boundary formed by a second processing technique not the same as the first processing technique. The biosensor can also have a second conductive component including at least one boundary formed by the first processing technique and at least one boundary formed by a third processing technique not the same as the first processing technique. Further, the biosensor has a third conductive component including at least one boundary formed by the second processing technique and at least one boundary formed by the third processing technique not the same as the second processing technique.

    Abstract translation: 描述具有第一导电部件的生物传感器,其中第一导电部件包括由第一处理技术形成的至少一个边界和由与第一处理技术不相同的第二处理技术形成的至少一个边界。 生物传感器还可以具有包括由第一处理技术形成的至少一个边界和由与第一处理技术不相同的第三处理技术形成的至少一个边界的第二导电部件。 此外,生物传感器具有包括由第二处理技术形成的至少一个边界和由与第二处理技术不相同的第三处理技术形成的至少一个边界的第三导电成分。

    System and methods for determination of analyte concentration using time resolved amperometry
    90.
    发明授权
    System and methods for determination of analyte concentration using time resolved amperometry 有权
    使用时间分辨安培法测定分析物浓度的系统和方法

    公开(公告)号:US08101062B2

    公开(公告)日:2012-01-24

    申请号:US12410048

    申请日:2009-03-24

    Applicant: David Deng

    Inventor: David Deng

    Abstract: A method for determining a concentration of an analyte is disclosed. The method includes applying a potential excitation to a fluid sample containing an analyte and determining if a current decay curve associated with the fluid sample has entered an analyte depletion stage. The method also includes measuring a plurality of current values associated with the fluid sample during the analyte depletion stage and calculating an analyte concentration based on at least one of the plurality of current values.

    Abstract translation: 公开了一种用于测定分析物浓度的方法。 该方法包括对含有分析物的流体样品施加势能激励,并确定与流体样品相关联的电流衰减曲线是否已进入分析物耗尽阶段。 该方法还包括在分析物耗尽阶段期间测量与流体样品相关联的多个电流值,并且基于多个电流值中的至少一个来计算分析物浓度。

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