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    • 32. 发明申请
    • Rechargeable Food Chilling Device
    • 充电食品冷冻装置
    • US20080282907A1
    • 2008-11-20
    • US12105167
    • 2008-04-17
    • Jason Ernest BeginRobert Grant McRorie, III
    • Jason Ernest BeginRobert Grant McRorie, III
    • A47J43/00B65D8/00B65D25/28B65D41/04
    • F25D3/08F25D2331/805
    • A food chilling device has a generally cylindrical elongate body with an outer wall, a closed end, an open end, a reservoir within the outer wall between the open and closed ends, and a reference axis oriented lengthwise between the open and closed ends. A closure assembly is removably installed on the device to close off the open end of the body and to seal the reservoir. In one example, a first handle extends outward in a radial direction relative to the reference axis of the body and has a first grip spaced outward beyond the outer wall. A second handle extends in a lengthwise direction and has a second grip spaced from the open end of the body. In another example, the closure assembly has an annular collar surrounding the open end of the body and with an inward extending circumferential shoulder. A cap with a stopper section engages the collar to close off the open end of the body. A seal is compressed against the step such that the step and seal are sandwiched between the shoulder of the collar and a surface on the stopper section to seal the reservoir.
    • 食品冷藏装置具有大致圆柱形的细长主体,其具有外壁,封闭端,开口端,开口端和封闭端之间的外壁内的储存器以及在开口端和封闭端之间纵向定向的参考轴。 闭合组件可拆卸地安装在该装置上以封闭主体的开口端并密封储存器。 在一个示例中,第一手柄相对于主体的参考轴线在径向方向上向外延伸,并且具有向外延伸超出外壁的第一手柄。 第二手柄在长度方向上延伸并且具有与主体的开口端间隔开的第二把手。 在另一个示例中,闭合组件具有围绕主体的开口端并具有向内延伸的周向肩部的环形套环。 具有止动器部分的帽接合套环以封闭身体的开口端。 密封件被压靠在台阶上,使得台阶和密封件被夹在套环的肩部和塞子部分的表面之间以密封储存器。
    • 33. 发明授权
    • Selective etching of oxides from substrates
    • 从基底中选择性地蚀刻氧化物
    • US07431853B2
    • 2008-10-07
    • US11370541
    • 2006-03-08
    • Paul D. MumbauerPaul RomanRobert Grant
    • Paul D. MumbauerPaul RomanRobert Grant
    • C23F1/00
    • H01L21/31116B81C1/00595B81C1/0092B81C1/00928
    • A method and system for release etching a micro-electrical-mechanical-systems (MEMS) device from a substrate. In one aspect, the invention is a method comprising (a) supporting at least one substrate having a sacrificial oxide and a non-sacrificial material in a process chamber at a pressure and at a temperature; (b) introducing a gas phase mixture comprising a halide-containing species and an alcohol vapor selected from a group consisting of ethanol, 1-propanol, and an aliphatic alcohol having four carbon groups into the process chamber, the gas phase mixture having a volumetric ratio of the halide-containing species to the alcohol vapor of approximately 2 or less; and (c) etching the sacrificial oxide with the gas phase mixture. In another aspect, the invention is a system for carrying out the method.
    • 一种用于从基板释放蚀刻微电子机械系统(MEMS)器件的方法和系统。 在一个方面,本发明是一种方法,其包括(a)在压力和温度下在处理室中支撑具有牺牲氧化物和非牺牲材料的至少一个衬底; (b)将含有卤化物的物质和选自乙醇,1-丙醇和具有四个碳原子的脂族醇的醇蒸气的气相混合物引入处理室,气相混合物具有体积 含卤素物质与醇蒸气的比例约为2或更小; 和(c)用气相混合物蚀刻牺牲氧化物。 另一方面,本发明是一种执行该方法的系统。
    • 36. 发明申请
    • Electrochemical sensor
    • US20070039821A1
    • 2007-02-22
    • US10574640
    • 2004-09-23
    • Robert Grant
    • Robert Grant
    • G01N27/26
    • G01N27/4074G01N33/0047
    • An organic contaminant molecule sensor is described for use in a low oxygen concentration monitored environment. The sensor comprises an electrochemical call comprising a solid state oxygen anion conductor (14) in which oxygen anion conduction occurs at or above a critical temperature Tc, an active measurement electrode (10) formed on a first surface (12) of the conductor for exposure to the monitored environment, the measurement electrode comprising material for catalysing the oxidation of an organic contaminant molecule to carbon dioxide and water, an inert measurement electrode (18), formed on the first surface (12) of the conductor adjacent to and independent from the active measurement electrode, for exposure to the monitored environment, the inert measurement electrode comprising material that is catalytically inert to the oxidation of an organic contaminant molecule, and a reference electrode (20) formed on a second surface (22) of the conductor for exposure to a reference environment, the reference electrode comprising material for catalysing the dissociative adsorption of oxygen. Means (30, 32) are provided for controlling and monitoring the temperature of the cell. Means (34) are also provided for controlling the electrical current Ia flowing between the reference electrode and the active measurement electrode and the electrical current Ii flowing between the reference electrode and the inert measurement electrode, thereby to control the flux of oxygen anions flowing between the reference electrode and the active and inert measurement electrodes respectively. The potential difference between the active measurement electrode and the inert electrode is monitored (36), whereby in the absence of organic contaminant molecules the potential difference Vsense between the active and inert measurement electrodes assumes a base value Vb and in the presence of organic contaminant molecules the potential difference Vsense between the active and inert measurement electrodes assumes a measurement value Vm, the value Vm-Vb being indicative of the concentration of organic contaminant molecules present in the monitored environment.