Personal Hygiene Inspection Device and Method
    1.
    发明申请
    Personal Hygiene Inspection Device and Method 审中-公开
    个人卫生检查装置及方法

    公开(公告)号:US20100177183A1

    公开(公告)日:2010-07-15

    申请号:US12351874

    申请日:2009-01-12

    IPC分类号: H04N7/18

    摘要: An electronic device utilized for personal inspection of areas of the body that cannot be viewed in detail utilizing mirrors. Back light and focus capabilities of the device allow for clear concise viewing of hard to view areas. A measurement component further provides a means to repeat views of a certain area accurately, and the ability to monitor changes in size of a lesion. When connected to a common desktop or laptop computer these areas can be closely inspected and recorded for comparison with future inspections by creating digital images of the area in question. Changes in size or color of moles and other common lesions can be monitored for possible association with skin cancers. The digital images can be transmitted electronically to your health care provider for a diagnosis or recommendation. This method will blend well with the current trend toward outpatient services and home health care.

    摘要翻译: 一种电子设备,用于个人检查身体的区域,不能用镜子详细观察。 设备的背光和聚焦功能允许清晰简洁的观看难以观看的区域。 测量组件进一步提供了一种能够准确地重复某一区域视图的方法,以及监视病变尺寸变化的能力。 当连接到普通台式机或笔记本电脑时,可以通过创建有关区域的数字图像,仔细检查和记录这些区域,以便与未来检查进行比较。 可以监测痣和其他常见病变的大小或颜色的变化,以便与皮肤癌有可能的关联。 数字图像可以电子传输给您的医疗保健提供者进行诊断或推荐。 这种方法将与目前的门诊服务和家庭保健趋势相融合。

    Stationary Assembly for Chemical Injection, Atomization, and Sacrificial Probe Corrosion Monitoring

    公开(公告)号:US20170261420A1

    公开(公告)日:2017-09-14

    申请号:US15067263

    申请日:2016-03-11

    IPC分类号: G01N17/04

    CPC分类号: G01N17/04

    摘要: A Stationary Assembly, for Chemical Injection, Atomization, and Sacrificial Probe Corrosion Monitoring that is configured around a main body portion, utilizing interchangeable lower end devices to perform these functions. The top inlet port of the apparatus accepts a chemical injection line for use with the injection quill or atomizer lower body portions, or a plug element for use with lower body portions that accept rod, disk, or flat type corrosion probes. Ports for equalization of pressure on the corrosion probe holder lower body portions for use with the plug element will also allow the use of a valve to allow fluid sampling at the corrosion monitoring site. Insertion depth similarities for these processes in a given high pressure vessel or flowline configuration allow the main body portion to perform the functions associated with the individual lower body portions.

    Programmable Logic Controlled Liquid Pressurization Device Incorporating Low Energy Consumption Mechanisms for the Utilization of Solar Energy
    3.
    发明申请
    Programmable Logic Controlled Liquid Pressurization Device Incorporating Low Energy Consumption Mechanisms for the Utilization of Solar Energy 有权
    可编程逻辑控制液体加压装置结合太阳能利用的低能耗机制

    公开(公告)号:US20100163124A1

    公开(公告)日:2010-07-01

    申请号:US12346594

    申请日:2008-12-30

    IPC分类号: G05D16/20

    摘要: A liquid pressurization device which is housed within a single rectangular housing that utilizes a solar panel as the front cover and the only source of energy. An interchangeable pulley mounted on a motion controlled technology motor allows for a wide range of pressure and volume scenarios common to liquid pressurization applications, and in combination with a motor controller and driver board, and programmable logic control board, these pressure and volume scenarios are further optimized for the utilization of solar energy as the sole energy source. Said programmable logic board further provides ports for firmware updates, monitoring devices, and diagnostic devices. A lever is reciprocated by an energy transfer pulley that transfers drive force to the liquid end of the apparatus, providing a low friction multiplication of available power. The liquid end of the apparatus is further designed for ease of maintenance to replaceable components with limited life spans.

    摘要翻译: 一种液体加压装置,其容纳在单个矩形壳体内,该壳体利用太阳能电池板作为前盖和唯一的能量源。 安装在运动控制技术电动机上的可互换滑轮允许液体加压应用中常见的宽范围的压力和体积情况,并结合电机控制器和驱动器板以及可编程逻辑控制板,这些压力和体积情况进一步 优化利用太阳能作为唯一能源。 所述可编程逻辑板还提供用于固件更新,监视设备和诊断设备的端口。 杠杆通过将驱动力传递到设备的液体端的能量传递滑轮往复运动,提供可用功率的低摩擦倍数。 该设备的液体端部进一步被设计成便于维护,使其具有有限寿命的可更换部件。