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    • 2. 外观设计
    • Box lid stand
    • USD1022049S1
    • 2024-04-09
    • US29831471
    • 2022-03-21
    • Bruce Johnson
    • Bruce Johnson
    • FIG. 1 is a front perspective view of the box lid stand in an assembled state, showing my design;
      FIG. 2 is a front view thereof;
      FIG. 3 is a rear view thereof;
      FIG. 4 is a top view thereof;
      FIG. 5 is bottom view thereof;
      FIG. 6 is a left-side view thereof;
      FIG. 7 is a right-side view thereof;
      FIG. 8 is a front view thereof in a disassembled state; and,
      FIG. 9 is a front perspective view thereof, in an environment of use.
      The dash-dash broken lines showing a box lid in FIG. 9 depict environmental subject matter and form no part of the claimed design. The appearance of any portion of the box lid stand shown between break lines forms no part of the claimed design. The dot-dash-dot broken lines depicting the boundary of the box lid stand form no part of the claimed design. All other dash-dash broken lines show portions of the box lid stand that form no part of the claimed design.
    • 3. 发明申请
    • SAMPLE ENCAPSULATION SYSTEM
    • US20230049174A1
    • 2023-02-16
    • US17889150
    • 2022-08-16
    • Bruce Johnson
    • Bruce Johnson
    • A61B10/00
    • A method for sample encapsulation. A first sampling swab is provided that includes an absorbent portion and a fluid control portion that extends from the absorbent portion. The absorbent portion is proximate a proximal end of the first sampling swab. The fluid control portion is proximate a distal end of the first sampling swab. A sample is collected with the absorbent portion. At least a portion of the sample is liquid. An encapsulation material is provided that includes a first web and a second web. The first sampling swab is positioned between the first web and the second web. The first web is urged into contact with the second web proximate the absorbent portion. The urging of the first web into contact with the second web proximate the absorbent portion causes liquid to move from the absorbent portion towards the fluid control portion. The urging of the first web into contact with the second web proximate the absorbent portion is discontinued which causes the liquid to be drawn into the absorbent portion. The first web is urged into contact with the second web proximate the distal end of the first sampling swab to encapsulate the liquid in the encapsulation material.
    • 6. 发明授权
    • pH balancing system
    • pH平衡系统
    • US09416034B2
    • 2016-08-16
    • US12320526
    • 2009-01-28
    • Bruce JohnsonKevin DoyleKeith Schulte
    • Bruce JohnsonKevin DoyleKeith Schulte
    • C02F1/66C02F1/00C02F1/76C02F103/42
    • C02F1/66C02F1/008C02F1/4674C02F1/76C02F2103/42C02F2209/06
    • A method and an apparatus for dispensing a pH balancing solution are provided. The apparatus includes a system having a chlorine generator with a power supply coupled to the chlorine generator, the chlorine generator servicing a body of water and chlorinating it. A pH monitoring and balancing unit is provided. The pH monitoring and balancing unit monitors and measures when power is supplied from the power supply to the chlorine generator to produce chlorine and thereby calculates an operational time for the chlorine generator. A pH monitoring and balancing unit controller is also provided, the pH monitoring and balancing unit controller computing an estimated pH level based on the production of the chlorine generator from the operational time measured and then determining if the estimated pH is outside of a desired range, and, if it is outside of the desired range, metering a discrete amount of pH balancing solution based on this estimated pH level to return the pH of the body of water to within the desired range.
    • 提供了一种用于分配pH平衡溶液的方法和装置。 该装置包括具有氯发生器的系统,其具有耦合到氯发生器的电源,氯发生器服务于水体并对其进行氯化。 提供pH监测和平衡单元。 pH监测和平衡单元监测和测量从电源向氯气发生器供电以产生氯气,从而计算氯气发生器的运行时间。 还提供pH监测和平衡单元控制器,pH监测和平衡单元控制器根据测量的操作时间计算基于氯发生器的产生的估计的pH水平,然后确定估计的pH是否在期望的范围之外, 并且如果超出所需范围,则基于该估计的pH值计量离散量的pH平衡溶液,以将水体的pH值返回到所需范围内。
    • 8. 发明申请
    • CHEMICAL SENSING APPARATUS HAVING MULTIPLE IMMOBILIZED REAGENTS
    • 具有多种固定化试剂的化学传感装置
    • US20140273052A1
    • 2014-09-18
    • US13844665
    • 2013-03-15
    • Rakesh ReddyBruce JohnsonKevin Doyle
    • Rakesh ReddyBruce JohnsonKevin Doyle
    • G01N33/18C12Q1/04G01N21/77
    • G01N33/1893G01N21/77G01N33/1813G01N33/1826
    • A sensor system in a water treatment system has a housing, controller, one or more light sources, one or more sensors and one or more targets having an immobilized reagent thereon. Light source emits light energy into the housing that is incident upon the target with the immobilized reagent and the reagent being in contact with water from the system. The immobilized reagent interacts with a reactant in the water such that the interaction changes the state of the reagent. When energy from the light source is incident on the target with the immobilized reagent the energy shows a change detectable by the sensor such that the changed energy is detectable by and collected at the sensor and data on the energy is communicated to the controller. The data is then correlated as a representation of a desired variable to be measured for the water in the water treatment system.
    • 水处理系统中的传感器系统具有壳体,控制器,一个或多个光源,一个或多个传感器和一个或多个在其上具有固定化试剂的靶。 光源通过固定的试剂和试剂与来自系统的水接触而将光能发射到入射到靶上的壳体中。 固定化试剂与水中的反应物相互作用,使得相互作用改变了试剂的状态。 当来自光源的能量被固定的试剂入射到目标上时,能量显示出可被传感器检测到的变化,使得改变的能量可由传感器检测并收集在传感器上,数据上的能量被传送到控制器。 然后将数据作为水处理系统中的水测量的期望变量的表示相关联。
    • 10. 发明授权
    • Laminar flow water jet with illumination enhancer
    • 带照明增强剂的层流水喷射器
    • US08636227B2
    • 2014-01-28
    • US13493947
    • 2012-06-11
    • Bruce Johnson
    • Bruce Johnson
    • F21S8/00
    • F21S8/00B05B1/3402B05B17/06B05B17/08F21W2121/02F21W2131/401
    • A laminar flow water jet having a housing with a water channel flowing therethrough. A water input admits water into the housing and the water channel. One or more filter member(s) is provided along the water channel. One or more jetting element in communication with the housing jets a laminar flow tube or segment from the jet. One or more lighting element(s) emits light and communicates with the laminar flow tube or segment. An additive supply element communicates with the laminar flow tube or segment, where a laminar water flow is jetted through the jetting element to form the laminar flow tube or segment which is lit by the light emitted by the lighting element and receives an additive stream from the additive supply element to produce wave effects within the laminar flow tube or segment.
    • 层流水喷射器具有壳体,水槽通过其中。 水输入承认水进入房屋和水道。 一个或多个过滤器构件沿着水通道设置。 与壳体连通的一个或多个喷射元件从射流喷射层流管或段。 一个或多个照明元件发射光并与层流管或段连通。 添加剂供应元件与层流管或段连通,其中层流水通过喷射元件喷射,以形成由照明元件发射的光照亮的层流管或段,并接收来自 添加剂供应元件在层流管或段内产生波浪效应。