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    • 2. 发明授权
    • Ion trap mass spectrometer
    • 离子阱质谱仪
    • US6157030A
    • 2000-12-05
    • US143398
    • 1998-08-28
    • Minoru SakairiTadao MimuraToshihiro IshizukaMasaru TomiokaYasuaki TakadaTakayuki Nabeshima
    • Minoru SakairiTadao MimuraToshihiro IshizukaMasaru TomiokaYasuaki TakadaTakayuki Nabeshima
    • H01J49/42
    • H01J49/424
    • Disclosed is an ion trap mass spectrometer improved to obtain a high sensitivity without the lowering of resolution. By fitting a mesh electrode to an aperture (an ion sampling aperture or an ion extracting aperture) made in endcap electrodes constituting an ion trap mass analysis region, a radio frequency electric field in the mass analysis region is not disturbed even if the diameter of the aperture is set to a large value to heighten ion transmission efficiency. By fitting a shield electrode for preventing collision of ions with an insulated ring constituting an outer wall of the mass analysis region, charging up of the insulated ring is prevented to improve stability of detection signals. Furthermore, by arranging a shield member for shielding stray charged particles detouring through the circumference of the mass analysis region to approach an ion detector, generation of noises based on these stray charged particles is prevented.
    • 公开了一种改进的离子阱质谱仪,可以在不降低分辨率的情况下获得高灵敏度。 通过将网状电极装配到构成离子阱质量分析区域的端盖电极中的孔(离子取样孔或离子提取孔)上,即使直径为 孔径被设定为大的值以提高离子传输效率。 通过安装用于防止离子与构成质量分析区域的外壁的绝缘环碰撞的屏蔽电极,防止了绝缘环的充电以提高检测信号的稳定性。 此外,通过设置用于屏蔽通过质量分析区域的圆周去除杂散带电粒子的屏蔽构件以接近离子检测器,防止了基于这些杂散带电粒子的噪声的产生。
    • 5. 发明授权
    • Mass spectrometer and ion source
    • 质谱仪和离子源
    • US5532483A
    • 1996-07-02
    • US403980
    • 1995-03-15
    • Yoichi OseKiyomi YoshinariMasayoshi YanoTadao Mimura
    • Yoichi OseKiyomi YoshinariMasayoshi YanoTadao Mimura
    • H01J49/06H01J49/10
    • H01J49/10H01J49/06
    • An ion beam having a good converging property and a good quality is provided by satisfying the limitations controlling both angle of dispersion and the width of beam at the same time. The voltage 12d of a repeller electrode 1f in an ion source of electron bombardment type is input to an ion source state monitor 11 and the ion source state monitor 11 output a predicted value 12e of the voltage applied to an extractor electrode 1g to an extractor power source 9. As for the extractor electrode system, the width of a slit in the acceleration electrode 1b is made larger than the width of a slit of the extractor electrode 1g, and the extractor electrode 1g is set in a position apart from the acceleration electrode 1b by the distance nearly equal to the distance between the acceleration electrode 1b and the ion generating region 2a. By doing so, the electric field leaked from the slit of the acceleration electrode 1b to the inside of the ionization chamber 1a expands to the vicinity of the ion generating region. As the result, the ion beam 2 is effectively extracted to pass through the slits in the acceleration electrode 1b and the extractor 1g. The amount of the current passing through the slits is measured with an ion current monitor 8a and the voltage 12f of a converging electrode 1d is adjusted so that the value of the current becomes the maximum.
    • 通过满足同时控制分散角和宽度的限制来提供具有良好的会聚特性和良好质量的离子束。 电子轰击型离子源中的斥极电极1f的电压12d被输入到离子源状态监视器11,离子源状态监视器11将施加到抽出电极1g的电压的预测值12e输出到提取电力 对于提取器电极系统,使加速电极1b中的狭缝的宽度大于提取电极1g的狭缝的宽度,并且将提取电极1g设置在离开加速电极1的位置 1b的距离几乎等于加速电极1b和离子产生区域2a之间的距离。 通过这样做,从加速电极1b的狭缝向电离室1a的内部泄漏的电场扩大到离子产生区域附近。 结果,有效地提取离子束2以通过加速电极1b和提取器1g中的狭缝。 通过离子电流监视器8a测量通过狭缝的电流量,调节会聚电极1d的电压12f,使得电流值变为最大值。
    • 7. 发明授权
    • Liquid chromatograph mass spectrometry and liquid chromatograph mass
spectrometer
    • 液相色谱质谱和液相色谱质谱仪
    • US5789746A
    • 1998-08-04
    • US886465
    • 1997-07-01
    • Yoshiaki KatoTadao Mimura
    • Yoshiaki KatoTadao Mimura
    • G01N27/62G01N30/62G01N30/72G01N30/74G01N30/78G01N30/86H01J49/04H01J49/26H01J49/00
    • G01N30/7233G01N2030/625G01N30/74
    • An eluant is supplied to an analyzer column, a sample solution is supplied through a sample inlet. The analyzer column separates the components of the sample solution. The separated components are eluted by the analyzer column, the eluted components are detected by an eluted component detector, the results of detection provided by the eluted component detector is processed by a data processor to produce a liquid chromatogram having peaks indicating the components of the sample. The components of the sample is supplied through a capillary pipe to an ion source and the ion source ionizes the components of the sample. A mass spectrometer subjects the ions produced by the ion source to mass analysis, an ion detector detects the ions included in a mass spectrum to produce an ion chromatogram having peaks. A time difference between the chromatograms is determined beforehand through an experiment using a standard sample, and the liquid chromatogram is shifted on its time axis by the time difference.
    • 将洗脱液供应到分析器柱,通过样品入口提供样品溶液。 分析仪柱分离样品溶液的组分。 分离的组分被分析器柱洗脱,洗脱组分由洗脱组分检测器检测,由洗脱组分检测器提供的检测结果由数据处理器处理,以产生具有表示样品成分的峰的液相色谱图 。 样品的组分通过毛细管供给到离子源,离子源将样品的组分电离。 质谱仪将由离子源产生的离子进行质量分析,离子检测器检测质谱中包含的离子,产生具有峰值的离子色谱图。 通过使用标准样品的实验预先确定色谱图之间的时间差,并且液相色谱在其时间轴上偏移时间差。
    • 10. 发明授权
    • Atmospheric pressure ionization mass spectrometer
    • 大气压电离质谱仪
    • US5612534A
    • 1997-03-18
    • US689952
    • 1996-08-16
    • Tadao MimuraMasayoshi Yano
    • Tadao MimuraMasayoshi Yano
    • G01N27/62H01J49/04H01J49/10
    • H01J49/0422
    • An atmospheric pressure ionization spectrometer capable for continuously detecting impurities included in air or gas can be realized. The air or gas is stored in a daily storage such as a bag, a package, a pocket or the like. An air suction probe is connected to an ion source through an insulation pipe, and the ion source is connected to an air exhaust pump through an exhaust port and an insulation pipe. The ion source has a needle electrode, a first small hole electrode, an intermediate pressure portion and a second small hole electrode, and the needle electrode is connected to a power source, and the first and second small hole electrodes are connected to an ion accelerating power source. The intermediate pressure portion is connected to a vacuum pump through the exhaust port. An electrostatic lens is disposed in the stage following the intermediate pressure portion, and a mass spectrometric portion and a detector are disposed in the stage following the electrostatic lens. A detection signal from the detector is supplied to a data processing portion through an amplifier. The data processing portion determines a plurality of M/Z values indicating a special drug to thereby determine whether or not the special drug is included in the sample gas.
    • 可以实现能够连续检测包含在空气或气体中的杂质的大气压电离光谱仪。 空气或气体储存在诸如袋子,包装,口袋等的日常存储器中。 吸气探头通过绝缘管连接到离子源,离子源通过排气口和绝缘管连接到排气泵。 离子源具有针状电极,第一小孔电极,中间压力部和第二小孔电极,针状电极与电源连接,第一和第二小孔电极与加速离子 能量源。 中间压力部分通过排气口连接到真空泵。 静电透镜设置在跟随中间压力部分的阶段中,并且质谱部分和检测器设置在跟随静电透镜的阶段中。 来自检测器的检测信号通过放大器提供给数据处理部分。 数据处理部分确定指示特殊药物的多个M / Z值,从而确定样品气体中是否包含特殊药物。