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    • 3. 发明公开
    • Liquid sample heating vaporizer
    • Flüssigprobe-Heizungsverdampfer
    • EP2407235A1
    • 2012-01-18
    • EP11173535.3
    • 2011-07-12
    • Horiba Stec, Co., Ltd.
    • Oba, HidenoriNagano, Tadayuki
    • B01J7/02G01N30/02
    • H01L21/67109B01B1/06G01K1/18
    • The present invention is intended to improve response property and accuracy of temperature control of a liquid sample, and provided with: a vaporization tank 21 that retains the liquid sample; one or more heaters 22 that are provided in the vaporization tank 21 and respectively have heating parts 22h that come into contact with the liquid sample to heat the liquid sample; a temperature detection part that is provided with being in contact with an outer surface including the heating part 22h of any of the heaters 22 and detects a temperature of the outer surface; and a control part 25 that receives a temperature detection signal from the temperature detection part to control electric power supplied to the heaters 22.
    • 本发明旨在改善液体样品的温度控制的响应特性和精度,并具有:保持液体样品的蒸发槽21; 设置在蒸发箱21中的一个或多个加热器22分别具有与液体样品接触的加热部分22h以加热液体样品; 温度检测部,其设置成与包括任何加热器22的加热部22h的外表面接触,并检测外表面的温度; 以及控制部25,其从温度检测部接收温度检测信号,以控制供给到加热器22的电力。
    • 4. 发明公开
    • GAS ANALYZER
    • 气体分析仪
    • EP2141494A1
    • 2010-01-06
    • EP08739702.2
    • 2008-04-02
    • Horiba Stec, Co., Ltd.
    • AOKI, JunjiKITAURA, HirokazuSAID, Boumsellek
    • G01N27/62
    • H01J49/0009G01L21/30H01J41/02H01J41/10H01J49/0027
    • A gas analyzer using a quadrupole mass spectrometric method etc. is provided with an ionizer 211 to ionize a sample gas, a first ion detector 212 and a second ion detector 213 each configured to detect a respective ion from ionizer 211, and each being disposed a respective distance from the ionizer 211 on an opposite side of the ionizer 211, the respective distances being different from each other, a filter 214 interposed between the ionizer 211 and the first ion detector 212 to selectively allow ions from the ionizer 211 to pass therethrough, and an arithmetic device 3 to correct a partial pressure PP 1 of a specific component obtained from the first ion detector 212 and selected by the filter 214 by using a first total pressure TP 1 of the sample gas obtained from the first ion detector 212 and a second total pressure TP 2 of the sample gas obtained from the second ion detector 213.
    • 使用四极质量分析法等的气体分析仪设置有用于离子化样品气体的离子发生器211,第一离子检测器212和第二离子检测器213,第一离子检测器212和第二离子检测器213均被配置为检测来自离子发生器211的各个离子, 在离子发生器211的相对侧上的离子发生器211的相应距离,各个距离彼此不同;过滤器214,置于离子发生器211和第一离子检测器212之间以选择性地允许离子发生器211的离子通过, 以及运算装置3,其使用从第一离子检测器212获得的样本气体的第一总压力TP1和从第一离子检测器212获得的第二总和来校正从第一离子检测器212获得并由过滤器214选择的特定成分的分压PP1 从第二离子检测器213获得的样本气体的压力TP2。
    • 10. 发明公开
    • CAPACITIVE SENSOR
    • KAPAZITIVER传感器
    • EP3029444A1
    • 2016-06-08
    • EP15003407.2
    • 2015-11-30
    • Horiba Stec, Co., Ltd.
    • KISHIDA, SotaroNAKAYAMA, Ryota
    • G01L9/12G01L1/14
    • G01R17/02G01L1/142G01L1/144G01L9/0072G01L9/12
    • The present invention intends to not only reduce a measurement error of a capacitive sensor but improve detection sensitivity, and includes: a detecting capacitor of which the capacitance is changed depending on pressure; a fixed capacitor having reference capacitance; an initial voltage application part that applies an initial voltage having a predetermined frequency to the detecting capacitor and the fixed capacitor; a first operational amplifier that outputs an output voltage based on a partial voltage applied to at least the detecting capacitor; a reference voltage generation part that generates a reference voltage that serves as a reference for a change in the output voltage of the first operational amplifier and has the same frequency as that of the initial voltage; a second operational amplifier that outputs an output voltage based on the difference between the output voltage of the first operational amplifier and the reference voltage; and a pressure operation part that operates a pressure from the amplitude of the output voltage of the second operational amplifier.
    • 本发明不仅减少了电容传感器的测量误差,而且提高了检测灵敏度,并且包括:电容根据压力而改变的检测电容器; 具有参考电容的固定电容器; 初始电压施加部,其向所述检测电容器和所述固定电容器施加具有预定频率的初始电压; 第一运算放大器,其基于施加到至少所述检测电容器的部分电压输出输出电压; 参考电压产生部,其生成用作第一运算放大器的输出电压变化的基准的基准电压,并具有与初始电压相同的频率; 第二运算放大器,其基于所述第一运算放大器的输出电压与所述参考电压之间的差输出输出电压; 以及压力操作部,其操作来自第二运算放大器的输出电压的振幅的压力。