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    • 5. 发明申请
    • APPARATUS FOR MASS ANALYSIS OF ANALYTES BY SIMULTANEOUS POSITIVE AND NEGATIVE IONIZATION
    • 通过同时积极和负离子对分析物进行质量分析的装置
    • WO2016160835A1
    • 2016-10-06
    • PCT/US2016/024757
    • 2016-03-29
    • MERIDION, LLC
    • WILTON, Nicholas
    • H01J49/14H01J49/00
    • H01J49/286H01J49/0027H01J49/0422H01J49/147H01J49/22H01J49/328
    • Among other things, we describe methods and apparatus for the ionization of target molecular analytes of interest, e.g., for use in mass spectrometry. In some implementations, a thin molecular stream is emitted in either single or a split mode and encounters both an electron-impact ion source and trochoidal electron monochromator placed sequentially or coincidently. The first ion source emits high-energy electrons (~70 eV) to generate characteristic positively-charged mass fragment spectra while the second source emits low-energy electrons in a narrow bandwidth to generate negative molecular ions or other ions via electron capture ionization. The dual ion source may be coupled to analytical instruments such as a gas chromatograph and to any number of mass analyzers such as a polarity switching quadrupole mass analyzer or to multiple mass analyzers.
    • 除其他之外,我们描述了用于目标分子分析物的电离的方法和装置,例如用于质谱法。 在一些实施方案中,薄分子流以单一或分裂模式发射,并且遇到依次或重合放置的电子碰撞离子源和摆线电子单色仪。 第一离子源发射高能电子(〜70eV)以产生特征带正电的质谱碎片,而第二源发射窄带内的低能电子,通过电子俘获电离产生负分子离子或其他离子。 双离子源可以耦合到分析仪器,例如气相色谱仪和任何数量的质量分析仪,例如极性开关四极杆质谱仪或多个质量分析仪。
    • 7. 发明申请
    • REDUCING DECOMPRESSION TIME WITHOUT IMPACTING COMPRESSION RATIO
    • 降低压缩时间,不会影响压缩比
    • WO2016069110A1
    • 2016-05-06
    • PCT/US2015/048330
    • 2015-09-03
    • QUALCOMM INCORPORATED
    • OPORTUS VALENZUELA, Andres AlejandroSENIOR, RichardRAGHAVENDRA, RaghuveerGENG, NieyanCHHABRA, Gurvinder Singh
    • H03M7/30G06F12/08
    • G06F12/12G06F12/08G06F12/1009G06F2212/401H03M7/30H03M7/6017H03M7/6023H03M7/702
    • Aspects include computing devices, systems, and methods for implementing executing decompression of a compressed page. A computing device may determine a decompression block of a compressed page that contains a code instruction requested in a memory access request. Decompression blocks, other than the decompression block containing the requested code instruction, may be selected for decompression based on being situated between an end of the compressed page and the decompression block containing the requested code instruction. Decompression blocks not identified for decompression may be substituted for a fault or exception code. The computing device may decompress decompression blocks identified for decompression, starting at the end of the compressed page and terminating the decompression of the compressed page upon filling all blocks with decompressed blocks, faults, or exception code. The remaining decompression blocks of the compressed page may be decompressed after or concurrently with the execution of the requested code instruction.
    • 方面包括用于实现压缩页面的执行解压缩的计算设备,系统和方法。 计算设备可以确定包含在存储器访问请求中请求的代码指令的压缩页面的解压缩块。 可以基于位于压缩页面的末端和包含所请求的代码指令的解压缩块之间来选择解压缩块(除了包含所请求的代码指令的解压缩块)以用于解压缩。 未被解压缩的解压缩块可以替代故障或异常代码。 计算设备可以解压缩被解压缩的解压缩块,从压缩页的末尾开始,并且在用解压块,故障或异常代码填充所有块时终止压缩页的解压缩。 压缩页面的剩余解压缩块可以在执行所请求的代码指令之后或同时执行解压缩。