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    • 1. 发明申请
    • GAS EXCHANGE SYSTEM FLOW CONFIGURATION
    • 气体交换系统流量配置
    • WO2012040439A3
    • 2012-06-14
    • PCT/US2011052724
    • 2011-09-22
    • LI COR INCJOHNSON MARK APARR ANDREW SECKLES ROBERT D
    • JOHNSON MARK APARR ANDREW SECKLES ROBERT D
    • G01N21/37G01N33/00G01N33/24
    • G01N33/0009B33Y70/00B33Y80/00G01N21/05G01N21/3504G01N33/004G01N33/0098G01N2021/8466
    • System flow path designs that minimize the impact of gas diffusion sources and sinks. By reducing the magnitude of parasitic sources and sinks, lower rates of photosynthesis and transpiration can be more accurately measured, e.g., without the need for extensive empirical compensation. According to one aspect, a gas exchange analysis system includes a sample chamber defining a measurement volume for analysis of a sample, the sample chamber having an inlet and an outlet, and a flow splitting mechanism located proximal to the sample chamber, the mechanism configured to split a gas flow received at an input port from a remote source to a first output port and to a second output port, wherein the first output port is coupled with the inlet of the sample chamber. The internal surface(s) of the chamber defining the measurement volume can be metal plated. The system also can include a source of gas coupled with the inlet of the sample chamber and a gas analyzer coupled with the outlet of the sample chamber and configured to measure a concentration of one or more gases exiting the chamber, whereby metal plated internal surface(s) of the chamber can reduce sorption of the one or more gases within the chamber, and a second gas analyzer coupled with the second output port of the flow splitting mechanism and configured to measure a concentration of the one or more gases. Advantageously, gas diffusion sources and sinks are reduced due to the proximity of the flow splitting mechanism with the sample chamber and gas analyzers as well as the metal plating.
    • 系统流路设计,尽量减少气体扩散源和水槽的影响。 通过减少寄生源和汇的幅度,可以更准确地测量较低的光合作用和蒸腾速率,例如,不需要广泛的经验补偿。 根据一个方面,一种气体交换分析系统包括:样本室,其限定用于分析样品的测量体积,所述样品室具有入口和出口;以及位于所述样品室附近的分流机构,所述机构被配置为 将从输入端口接收的气流从远程源分解到第一输出端口和第二输出端口,其中第一输出端口与样品室的入口耦合。 限定测量体积的室的内表面可以是金属镀覆的。 该系统还可以包括与样品室的入口耦合的气体源和与样品室的出口耦合的气体分析器,并且被配置为测量离开室的一种或多种气体的浓度,由此金属镀覆的内表面 s)可以减少腔室内的一种或多种气体的吸附,以及与分流机构的第二输出端口耦合并被配置成测量一种或多种气体的浓度的第二气体分析器。 有利的是,由于流动分离机构与样品室和气体分析仪以及金属镀层的接近,气体扩散源和水槽被减少。
    • 4. 发明申请
    • METHOD OF DETECTING AND CORRECTING RELAY TACK WELD FAILURES
    • 检测和校正继电器接头焊接故障的方法
    • WO2006060264A2
    • 2006-06-08
    • PCT/US2005042563
    • 2005-11-22
    • ROBERTSHAW CONTROLS COLAURENT TIM MJOHNSON MARK ADEGENHART THOMAS W
    • LAURENT TIM MJOHNSON MARK ADEGENHART THOMAS W
    • H01H47/00
    • H01H47/002H01H2047/003
    • A method of detecting and attempting to correct a relay tack weld failure of its contacts is presented. This method senses the failure of a relay's contacts to open once it has been commanded to trip. This sensing may directly sense relay conditions, or may indirectly determine the failure by sensing a system parameter that shows the effects of the failure. Once the failure of the relay to open has been determined, the relay is again energized in an attempt to break loose the relay tack weld. If the relay fails to open after this first attempt, the relay may again be repulsed. Preferably a relay check timer is utilized to ensure that the system has stabilized before a repulse is attempted. A relay pulse timer may be used to control the pulse duration during these attempts. The number of attempts may also be limited.
    • 提出了一种检测并尝试校正其触点的继电器定位焊接故障的方法。 该方法检测到继电器的触点在命令跳闸之后不能打开。 该感测可以直接感测继电器条件,或者可以通过感测显示故障的影响的系统参数间接地确定故障。 一旦确定继电器断开故障,继电器再次通电,试图破坏继电器定位焊缝。 如果继电器在第一次尝试后无法打开,继电器可能会再次被击退。 优选地,使用继电器检查计时器来确保系统在尝试再次脉冲之前已经稳定。 在这些尝试期间,可以使用中继脉冲定时器来控制脉冲持续时间。 尝试次数也可能受到限制。
    • 7. 发明申请
    • PORTABLE COOLER
    • 便携式冷却器
    • WO2008006120A3
    • 2008-11-20
    • PCT/US2007077747
    • 2007-09-06
    • JOHNSON MARK A
    • JOHNSON MARK A
    • F25D3/08
    • F25D31/006F25D2331/802F25D2400/38
    • The portable cooler is a portable refrigeration system for selectively and adjustably cooling a removable container, such as a beer keg, foR example. The portable cooler includes a housing that defines an open interior region for removably receiving the keg. A door is pivotally mounted to the housing, providing the user with selective access to the open interior region. A refrigeration device is mounted within the housing, adjacent the container, and may be powered by an external power supply or by rechargeable batteries, also received within the housing. Wheels are pivotally mounted to a lower end of the housing, and a handle is mounted to an upper end of the housing, allowing the user to selectively transport the housing and keg.
    • 便携式冷却器是便携式制冷系统,用于选择性地且可调节地冷却例如啤酒桶的可移除容器。 便携式冷藏箱包括限定用于可移除地接收小桶的敞开的内部区域的壳体。 门枢转地安装到壳体上,为使用者提供通向开放内部区域的选择性入口。 制冷装置安装在外壳内,与容器相邻,并且可以由外部电源或可充电电池供电,所述外部电源或外壳还容纳在外壳内。 车轮可枢转地安装到壳体的下端,并且把手安装到壳体的上端,允许使用者选择性地运输壳体和小桶。