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    • 1. 发明授权
    • System and method for providing access to OMA DRM protected files from java application
    • 从Java应用程序提供对OMA DRM保护文件的访问的系统和方法
    • US08739291B2
    • 2014-05-27
    • US11045200
    • 2005-01-27
    • Alexander DavydovMichael RhodesJason Sharpe
    • Alexander DavydovMichael RhodesJason Sharpe
    • G06F7/04G06F17/30H04N7/16
    • G06F21/62G06F21/10H04L63/10H04L63/168H04N7/1675H04N7/17318H04N21/47202H04N21/6581H04N21/6587
    • A system and method for accessing content on an electronic device in an encrypted mode, a decrypted mode or a default mode. A request is transmitted to an application program interface to permit a requesting program to access at least one file. The request specifically identifies whether the requesting program wishes to access the file in an encrypted mode, a decrypted mode or a default mode. It is determined whether the specific form is supported by the application program interface being used by the system, whether the at least one file is protected; and whether the requesting program is permitted to access the at least one file. If the specific form is supported by the application program interface, if the at least one file is protected, and if the requesting program is permitted to access the at least one file, the at least one file is opened in the specific form for use by the requesting program.
    • 一种用于以加密模式,解密模式或默认模式访问电子设备上的内容的系统和方法。 请求被发送到应用程序接口以允许请求程序访问至少一个文件。 该请求专门识别请求程序是希望以加密模式,解密模式还是默认模式访问该文件。 确定该系统使用的应用程序接口是否支持该特定形式,该至少一个文件是否被保护; 以及是否允许所述请求程序访问所述至少一个文件。 如果特定表单被应用程序接口支持,如果至少一个文件被保护,并且如果请求程序被允许访问至少一个文件,则至少一个文件以特定形式打开以供 请求程序。
    • 2. 发明授权
    • Photocurable compositions
    • 可光固化组合物
    • US08097399B2
    • 2012-01-17
    • US10593746
    • 2005-03-21
    • Ranjana PatelMichael RhodesYong Zhao
    • Ranjana PatelMichael RhodesYong Zhao
    • G03F7/027B29C67/00
    • G03F7/038B29C2035/0827B29K2033/00B33Y70/00G03F7/0037
    • An optical moulding process is disclosed comprising the sequential steps of: (a)(y) forming a layer of a photocurable composition; and (bXz) irradiating selected areas of the composition in the layer with radiation from a radiation source, thereby curing the composition in said selected areas and repeating the steps a) and b) on top of an earlier cured layer to form a three dimensional structure, wherein the radiation source used in step b) is a non-coherent source of radiation and wherein the photocurable composition comprises at least two curable components: (i) 45%-95% (and preferably at least 50%, more preferably at least 60%, e.g. at least 70%) by weight of the total curable components in the composition is a first component that is photocurable and that is such that, when cured in the presence of a photocuring initiator by exposure to UV radiation having an energy of 30 mJ/cm2, at least 90% of the component is cured within 50 milliseconds; and (ii) 5% to 55% (and preferably 10-40%, more preferably 15 to 30%, e.g. about 20%) by weight of the total curable components in the composition is a second component that results in the composition, on curing, shrinking, in a linear direction, by less than 3% and preferably that results in the composition having, after cure, a Tg of greater than 50° C., preferably at least 100° C. and more preferably at least 120° C.
    • 公开了一种光学模制方法,其包括以下顺序步骤:(a)(y)形成光固化组合物层; 和(bXz)用来自辐射源的辐射照射该组合物中的组合物的所选区域,从而固化所述选定区域中的组合物,并在较早固化层的顶部重复步骤a)和b),以形成三维结构 其中步骤b)中使用的辐射源是非相干辐射源,并且其中所述可光固化组合物包含至少两种可固化组分:(i)45%-95%(优选至少50%,更优选至少为 组合物中总可固化组分的60重量%,例如至少70重量%)是可光固化的第一组分,并且使得当在光固化引发剂存在下通过暴露于具有 30mJ / cm 2,至少90%的组分在50毫秒内固化; 和(ii)组合物中总可固化组分的5重量%至55重量%(优选10-40重量%,更优选15至30重量%,例如约20重量%)是导致组合物的第二组分, 在线性方向上固化,收缩小于3%,优选地导致组合物在固化后具有大于50℃,优选至少100℃,更优选至少120℃的Tg C。
    • 4. 发明申请
    • OXIDES OF NITROGEN GAS SENSORS AND METHODS
    • 氮气传感器和方法的氧化
    • US20070051641A1
    • 2007-03-08
    • US11162251
    • 2005-09-02
    • Peter KrootMichael Rhodes
    • Peter KrootMichael Rhodes
    • G01F1/64G01N27/26
    • G01N33/0024G01N27/417G01N33/0037Y02A50/245
    • Apparatus and methods for measuring NOx concentrations are disclosed. One method includes the steps of providing a gas stream having a NO concentration and a NO2 concentration, wherein a sum of the NO concentration and the NO2 concentration is a total NOx concentration; contacting the gas stream with a first zirconium oxide based oxygen sensor at a first temperature to achieve a first NO:NO2 equilibrium at the first temperature; contacting the gas stream with a second zirconium oxide based oxygen sensor at a second temperature to achieve a second NO:NO2 equilibrium at the second temperature; and determining the total NOx concentration by measuring a response of the first zirconium oxide based oxygen sensor to achieve the first NO:NO2 equilibrium and a response of the second zirconium oxide based oxygen sensor to achieve the second NO:NO2 equilibrium. The second temperature is different than the first temperature.
    • 公开了用于测量NO x x浓度的装置和方法。 一种方法包括提供具有NO浓度和NO 2 2浓度的气流的步骤,其中NO浓度和NO 2 2浓度之和为总NO 浓度 在第一温度下使气体流与第一氧化锆基氧传感器接触,以在第一温度下实现第一NO:NO 2 H 2平衡; 在第二温度下使气流与第二氧化锆基氧传感器接触,以在第二温度下实现第二NO:NO 2 NO 2平衡; 以及通过测量第一氧化锆基氧传感器以实现第一NO:NO 2 2平衡的响应和第二氧化锆的响应来确定总NO x 2浓度 基于氧传感器实现第二NO:NO 2 2平衡。 第二个温度不同于第一个温度。