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    • 1. 发明申请
    • SURFACE MOUNT HEATER
    • 表面加热器
    • US20080041843A1
    • 2008-02-21
    • US11925287
    • 2007-10-26
    • Michael BowerRoger Chase
    • Michael BowerRoger Chase
    • H05B3/44
    • H05B3/22F16K27/003F16K49/002H05B3/286H05B3/36H05B2203/003H05B2203/021H05B2203/022H05B2203/037
    • A heater that includes a substantially flat layer of electrical resistance material having a first end and a second end, a first electrical conductor electrically connected to the first end of the substantially flat layer of electrical resistance material, a second electrical conductor electrically connected to the second end of the substantially flat layer of electrical resistance material, and an electrically insulating material surrounding the substantially flat layer of electrical resistance material and electrically insulating the first end of the substantially flat layer of electrical resistance material from the second end of the substantially flat layer of electrical resistance material. The heater may be mounted to a surface of a fluid component and used to heat the fluid component, and where the heater includes an aperture that extends through the electrically insulating material, the heater may be placed between a fluid component and a fluid substrate and used to heat both.
    • 一种加热器,包括具有第一端和第二端的基本上平坦的电阻材料层,电连接到所述基本上平坦的电阻材料层的第一端的第一电导体,电连接到第二端的第二电导体 基本上平坦的电阻材料层的端部,以及围绕基本平坦的电阻材料层的电绝缘材料,并将基本上平坦的电阻材料层的第一端与基本上平坦的电阻材料层的第二端电绝缘 电阻材料。 加热器可以安装到流体部件的表面并且用于加热流体部件,并且其中加热器包括延伸穿过电绝缘材料的孔,加热器可以放置在流体部件和流体基板之间并且被使用 加热两者。
    • 2. 发明申请
    • Surface mount heater
    • 表面贴装加热器
    • US20070047933A1
    • 2007-03-01
    • US11580814
    • 2006-10-13
    • Michael BowerRoger Chase
    • Michael BowerRoger Chase
    • F24H1/18A47J27/00A47J31/54
    • H05B3/22F16K27/003F16K49/002H05B3/286H05B3/36H05B2203/003H05B2203/021H05B2203/022H05B2203/037
    • A heater that includes a substantially flat layer of electrical resistance material having a first end and a second end, a first electrical conductor electrically connected to the first end of the substantially flat layer of electrical resistance material, a second electrical conductor electrically connected to the second end of the substantially flat layer of electrical resistance material, and an electrically insulating material surrounding the substantially flat layer of electrical resistance material and electrically insulating the first end of the substantially flat layer of electrical resistance material from the second end of the substantially flat layer of electrical resistance material. The heater may be mounted to a surface of a fluid component and used to heat the fluid component, and where the heater includes an aperture that extends through the electrically insulating material, the heater may be placed between a fluid component and a fluid substrate and used to heat both.
    • 一种加热器,包括具有第一端和第二端的基本上平坦的电阻材料层,电连接到所述基本上平坦的电阻材料层的第一端的第一电导体,电连接到第二端的第二电导体 基本上平坦的电阻材料层的端部,以及围绕基本平坦的电阻材料层的电绝缘材料,并将基本上平坦的电阻材料层的第一端与基本上平坦的电阻材料层的第二端电绝缘 电阻材料。 加热器可以安装到流体部件的表面并且用于加热流体部件,并且其中加热器包括延伸穿过电绝缘材料的孔,加热器可以放置在流体部件和流体基板之间并且被使用 加热两者。
    • 3. 发明申请
    • Surface mount heater
    • 表面贴装加热器
    • US20050109771A1
    • 2005-05-26
    • US10981856
    • 2004-11-05
    • Michael BowerRoger Chase
    • Michael BowerRoger Chase
    • F16K27/00F16K49/00H05B3/22H05B3/28H05B3/36H05B6/10
    • H05B3/22F16K27/003F16K49/002H05B3/286H05B3/36H05B2203/003H05B2203/021H05B2203/022H05B2203/037
    • A heater that includes a substantially flat layer of electrical resistance material having a first end and a second end, a first electrical conductor electrically connected to the first end of the substantially flat layer of electrical resistance material, a second electrical conductor electrically connected to the second end of the substantially flat layer of electrical resistance material, and an electrically insulating material surrounding the substantially flat layer of electrical resistance material and electrically insulating the first end of the substantially flat layer of electrical resistance material from the second end of the substantially flat layer of electrical resistance material. The heater may be mounted to a surface of a fluid component and used to heat the fluid component, and where the heater includes an aperture that extends through the electrically insulating material, the heater may be placed between a fluid component and a fluid substrate and used to heat both.
    • 一种加热器,包括具有第一端和第二端的基本上平坦的电阻材料层,电连接到所述基本上平坦的电阻材料层的第一端的第一电导体,电连接到第二端的第二电导体 基本上平坦的电阻材料层的端部,以及围绕基本平坦的电阻材料层的电绝缘材料,并将基本上平坦的电阻材料层的第一端与基本上平坦的电阻材料层的第二端电绝缘 电阻材料。 加热器可以安装到流体部件的表面并且用于加热流体部件,并且其中加热器包括延伸穿过电绝缘材料的孔,加热器可以放置在流体部件和流体基板之间并且被使用 加热两者。
    • 4. 发明申请
    • NON-METALLIC FLOW-THROUGH ELECTRODELESS CONDUCTIVITY SENSOR WITH LEAK AND TEMPERATURE DETECTION
    • 具有漏电和温度检测的非金属流通电导率传感器
    • US20070194792A1
    • 2007-08-23
    • US11650154
    • 2007-01-05
    • John QuackenbushMichael BowerStephen TalutisDonald McKinlayDaniel Tower
    • John QuackenbushMichael BowerStephen TalutisDonald McKinlayDaniel Tower
    • G01N27/02
    • G01N27/023
    • A non metallic flow through electrodeless conductivity sensor is provided with a conduit having primary and secondary process fluid flow paths to form a fluid loop. At least one drive and one sense toroid surround the conduit on the fluid loop. Voltage supplied to the drive toroid induces a current in the sense toroid via the fluid loop to eliminate any need for metallic electrodes in contact with the process fluid. At least one additional drive and/or sense toroid is disposed on the fluid loop to enhance induction. Optionally one or more sense coils are disposed about the conduit outside of the fluid loop to cancel out stray electrical noise. An optional conductor disposed along the conduit detects any fluid leakage through changes in resistance thereof. A temperature detector is supported within an electrically non-conductive holder extending into the fluid flow path, so that the detector is free from physical contact with the fluid. An optional enclosure is provided with ports to enable a user to purge any gas permeating the conduit walls.
    • 通过无电极电导率传感器的非金属流提供有具有初级和次级过程流体流动路径以形成流体回路的导管。 至少一个驱动器和一个感测环绕环绕流体回路上的导管。 提供给驱动环形电极的电压通过流体回路在一定程度上引起电流,以消除与工艺流体接触的金属电极的任何需要。 至少一个额外的驱动和/或感测环形线圈设置在流体回路上以增强感应。 可选地,一个或多个感测线圈布置在流体回路外部的导管周围以消除杂散的电噪声。 沿着管道设置的可选导体通过其电阻的变化来检测任何流体泄漏。 温度检测器被支撑在延伸到流体流动路径内的非导电保持器内,使得检测器没有与流体的物理接触。 可选的外壳提供有端口,以使用户能够清除渗透导管壁的任何气体。