Surface renewable iridium oxide-glass or ceramic composite hydrogen ion electrode
    1.
    发明授权
    Surface renewable iridium oxide-glass or ceramic composite hydrogen ion electrode 失效
    表面可再生氧化铱玻璃或陶瓷复合氢离子电极

    公开(公告)号:US08486238B2

    公开(公告)日:2013-07-16

    申请号:US12846791

    申请日:2010-07-29

    IPC分类号: C25B11/04 H01B1/02

    摘要: Disclosed herein is a surface renewable iridium oxide-glass or ceramic composite hydrogen ion electrode and, more particularly, a surface renewable iridium oxide-glass or ceramic composite hydrogen ion electrode, which has a long life due to its excellent physical strength, pH dependency approximate to a theoretical value (59 mV/pH unit), and high surface renewability, and a method of manufacturing the same. The iridium oxide composite hydrogen ion electrode according to the present invention is effective in that, when the electrode is contaminated or inactivated, the surface of the electrode can be regenerated through a simple grinding process because the electrode has high surface renewability, unlike conventional electrodes. The iridium oxide composite electrode according to the present invention can be usefully used in a water-quality monitoring system for monitoring the hydrogen ion concentration of a solution for a long period, an online pH measurement system, and pH measurement for samples, which causes serious contamination of the surface of a sensor.

    摘要翻译: 本文公开了一种表面可再生的氧化铱玻璃或陶瓷复合氢离子电极,更具体地说,是由于其优异的物理强度,pH依赖性近似而具有长寿命的表面可再生氧化铱玻璃或陶瓷复合氢离子电极 达到理论值(59mV / pH单位)和高表面可再生性,以及其制造方法。 根据本发明的氧化铱复合氢离子电极是有效的,因为当电极被污染或不活化时,与常规电极不同,电极的表面可以通过简单的研磨工艺再生,因为电极具有高表面可更新性。 根据本发明的氧化铱复合电极可以有效地用于长时间监测溶液的氢离子浓度,在线pH测量系统和样品的pH测量的水质监测系统,这导致严重的 传感器表面污染。

    Forced evaporative humidifier using nano-vapor
    2.
    发明授权
    Forced evaporative humidifier using nano-vapor 有权
    强制蒸发加湿器采用纳米蒸气

    公开(公告)号:US09518749B2

    公开(公告)日:2016-12-13

    申请号:US14345011

    申请日:2012-09-13

    摘要: Provided is a forced evaporative humidifier using nano-vapor, which includes: a housing having an exhaust port formed in an upper surface thereof and a suction port formed at one side of a front surface thereof; a water tank located below the suction port to store water; an injection unit having an injection nozzle located above the suction port, a pump for pulling up the water in the water tank to the injection nozzle, and a transfer tube for transferring the water pulled by the pump; a blowing fan located above the injection nozzle to carry air toward the exhaust port of the housing; a humidifying unit located below the injection nozzle so that films, each having a body surface formed to allow the water injected from the injection nozzle to flow and a plurality of tube-type spacers protruding on the body surface, are stacked in a lateral direction therein; and an eliminator located between the blowing fan and the injection nozzle to prevent water drops included in a humid air humidified by the humidifying unit from being scattered.

    摘要翻译: 本发明提供一种使用纳米蒸汽的强制蒸发加湿器,其包括:壳体,其具有形成在其上表面中的排气口和形成在其前表面的一侧的吸入口; 位于吸入口下方的水箱以储存水; 具有位于吸入口上方的喷射喷嘴的喷射单元,将水箱内的水拉入喷嘴的泵,以及用于输送由泵吸引的水的输送管; 位于注射喷嘴上方的吹风扇,用于将空气朝向壳体的排气口携带; 位于注射喷嘴下方的加湿单元,使得具有形成为允许从喷嘴喷射的水流动的主体表面和突出在体表上的多个管状间隔件的膜沿其横向方向堆叠在其中 ; 以及位于吹风扇和喷嘴之间的消除器,用于防止由加湿单元加湿的潮湿空气中包含的水滴散落。

    CONTROL OF ROBOT HAND TO CONTACT AN OBJECT
    3.
    发明申请
    CONTROL OF ROBOT HAND TO CONTACT AN OBJECT 有权
    机器人的控制手机接触对象

    公开(公告)号:US20120123589A1

    公开(公告)日:2012-05-17

    申请号:US13275856

    申请日:2011-10-18

    IPC分类号: B25J13/08

    摘要: A robot control method and apparatus estimates an error based on information of an object obtained using a motor drive current sensor, a force sensor or a tactile sensor mounted at a robot hand and information of the object obtained using an optical sensor and compensates for the error. The robot control method and apparatus includes measuring information of an object using an optical sensor or calculating information of the object input by a user, moving a robot hand to the object based on the information of the object, controlling the thumb and fingers of the robot hand to contact the object based on the information of the object, determining whether the thumb and fingers have contacted the object through a motor drive current sensor, a force sensor or a tactile sensor, and grasping the object depending upon whether the thumb and the fingers have contacted the object.

    摘要翻译: 机器人控制方法和装置基于使用安装在机器人手上的电动机驱动电流传感器,力传感器或触觉传感器获得的对象的信息和使用光学传感器获得的对象的信息来估计误差,并补偿错误 。 机器人控制方法和装置包括使用光学传感器测量对象的信息或计算用户输入的对象的信息,基于对象的信息将机器人手移动到对象,控制机器人的拇指和手指 根据物体的信息接触物体,确定拇指和手指是否通过马达驱动电流传感器,力传感器或触觉传感器接触物体,并且根据拇指和手指来抓住物体 已经联系对象。

    APPARATUS AND METHOD FOR GENERATING PATTERNS, AND APPARATUS AND METHOD FOR MASS-PRODUCING ORDER BASED CUSTOM-MADE GLOVES
    4.
    发明申请
    APPARATUS AND METHOD FOR GENERATING PATTERNS, AND APPARATUS AND METHOD FOR MASS-PRODUCING ORDER BASED CUSTOM-MADE GLOVES 审中-公开
    用于生成图案的装置和方法,以及用于基于质量生产订单的自定义手套的装置和方法

    公开(公告)号:US20120030928A1

    公开(公告)日:2012-02-09

    申请号:US13145017

    申请日:2010-01-15

    IPC分类号: B23P17/04 G06K9/00

    摘要: The present invention relates to a method and apparatus for producing custom-made gloves. In the present invention, an order management server receives customer information and hand scan data from a measurement and order processing apparatus, generates pattern information to be used for glove production using a pattern generation apparatus, and requests a leather processing apparatus to produce a glove according to the pattern information. According to the present invention, it is possible to realize an online ordering and production process involving size measurement and manufacturing procedures in the production process for leather gloves. In addition, as body scan data is obtained by a low-cost 2D body scanner instead of a high-cost 3D body scanner, it is possible to produce precise custom-made leather gloves at reduced cost.

    摘要翻译: 本发明涉及用于生产定制手套的方法和装置。 在本发明中,订单管理服务器从测量和订单处理装置接收客户信息和手扫描数据,使用图案生成装置生成用于手套生产的图案信息,并请求皮革处理装置产生手套 到模式信息。 根据本发明,可以实现在皮革手套的生产过程中涉及尺寸测量和制造程序的在线订购和生产过程。 另外,由于通过低成本的2D身体扫描器而不是高成本的3D身体扫描仪获得身体扫描数据,所以可以以降低的成本生产精确的定制皮手套。

    DISPLAY FILTER
    6.
    发明申请
    DISPLAY FILTER 审中-公开
    显示过滤器

    公开(公告)号:US20100328797A1

    公开(公告)日:2010-12-30

    申请号:US12822604

    申请日:2010-06-24

    IPC分类号: G02B5/20 H05K9/00

    摘要: A display filter includes a base substrate disposed in front of a display module, an optical film laminated on the surface of the base substrate that faces a user, and a hard coating layer formed on the surface of the base substrate that faces the display module. The hard coating layer prevents the base substrate from being deformed.

    摘要翻译: 显示器滤光器包括设置在显示模块前面的基底基板,层叠在基板上面向使用者的表面上的光学膜以及形成在基板的面向显示模块的表面上的硬涂层。 硬涂层防止基底基体变形。

    Memory devices and methods of fabricating the same

    公开(公告)号:US09666592B2

    公开(公告)日:2017-05-30

    申请号:US14861262

    申请日:2015-09-22

    摘要: A memory device includes a substrate having common source regions thereon, common source lines extending along a surface of the substrate and contacting the common source regions, respectively, and channel structures extending away from the surface of the substrate between the common source lines. The common source lines define a unit cell of the memory device therebetween. The memory device further includes an electrode stack structure having interlayer insulating layers and conductive electrode layers that are alternately stacked along sidewalls of the channel structures. The conductive electrode layers define respective gates of selection transistors and memory cell transistors of the memory device. An isolation insulating layer, which includes a portion of a sacrificial layer, is disposed between adjacent ones of the interlayer insulating layers in the stack structure. The isolation insulating layer divides at least one of the conductive electrode layers in the stack structure into electrically separate portions.

    Method and system for monitoring quality of food
    9.
    发明授权
    Method and system for monitoring quality of food 有权
    监测食品质量的方法和系统

    公开(公告)号:US09087333B2

    公开(公告)日:2015-07-21

    申请号:US13877612

    申请日:2011-10-06

    摘要: Disclosed is a method of monitoring food quality including (a) receiving an environmental factor value sensed during transporting by a moving sensor tag attached to a container or palette on which a plurality of food is stacked, a time value sensing the environmental factor, and food information from a distribution company server; (b) receiving an environmental factor value sensed by a fixed sale sensor tag which matches the food information stored in the moving sensor tag, a time value sensing the environmental factor, and food information from the distribution company server; (c) measuring a current quality index for each individual quality analysis item and a total quality index based on the food information sensed by the moving sensor tag and the fixed sale sensor tag, the environmental factor values, and the time values sensing the environmental factors; (d) setting price of the food based on the measured quality index for each individual quality analysis item and total quality index; and (e) transmitting bar code information or electronic tag information (food information) corresponding to a plurality of food which matches inherent IDs of the fixed sale sensor tags, the quality index for each individual analysis item of the food, the total quality index, and the price of the food to the distribution company server.

    摘要翻译: 本发明公开了一种监测食品质量的方法,其包括:(a)通过附着在其上堆叠有多个食物的容器或调色板上的移动传感器标签,感测环境因素的时间值和食物接收在运送期间感测到的环境因子值 来自分销公司服务器的信息; (b)接收由固定销售传感器标签检测到的环境因素值,该固定销售传感器标签与存储在移动传感器标签中的食物信息,感测环境因素的时间值和来自分发公司服务器的食物信息相匹配; (c)基于由移动传感器标签和固定销售传感器标签感测到的食物信息,环境因子值和感测环境因素的时间值来测量每个单独质量分析项目的当前质量指数和总质量指数 ; (d)根据每个品质分析项目的质量指标和总质量指标,确定食品的价格; 和(e)发送与多个食品相对应的条形码信息或电子标签信息(食品信息),该多个食品与固定销售传感器标签的固有ID匹配,食品的每个分析项目的质量指标,总质量指数, 并将食品的价格送到分销公司的服务器。