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    • 1. 发明申请
    • Electrochemical measurement apparatus
    • 电化学测量仪器
    • US20060032743A1
    • 2006-02-16
    • US11196280
    • 2005-08-04
    • Shinichi Harima
    • Shinichi Harima
    • G01N27/26
    • G01N27/4168
    • Disclosed is an electrochemical measurement apparatus, which comprises an electrode group 6 for detecting a specific intra-environment substance in accordance with an electrochemical reaction caused by a working electrode 6b, a correction-equation storage part 11b storing a nonlinearity correction equation which includes an eigenvalue of an element forming a characteristic about a relationship between a detected value based on the detection by the electrode group 6 and a normal value of the specific intra-environment substance, and a nonlinearity-correction calculation part 11a for assigning the detected value based on the detection by the electrode group 6 to the nonlinearity correction equation to determine the normal value of the specific intra-environment substance.
    • 公开了一种电化学测量装置,其包括用于根据由工作电极6b引起的电化学反应检测特定环境内物质的电极组6,存储非线性校正方程的校正方程式存储部分11b,其包括 形成关于基于电极组6的检测的检测值与特定的环境内物质的正常值之间的关系的特性的特征的特征值,以及用于分配检测值的非线性校正计算部11a, 基于电极组6对非线性校正方程的检测来确定特定的环境内物质的正常值。
    • 2. 发明申请
    • Pedometer for use with pregnant woman
    • 计步器与孕妇一起使用
    • US20050020888A1
    • 2005-01-27
    • US10874376
    • 2004-06-24
    • Shinichi HarimaNoriko InoueKazumi SanoYuriko Nakayama
    • Shinichi HarimaNoriko InoueKazumi SanoYuriko Nakayama
    • G01C22/00A61B5/11A61B5/22G06M3/00G06M7/00A61B5/00
    • A61B5/1118A61B5/4866G06F19/00
    • Disclosed is a pedometer for use with a pregnant woman, comprising: a fat deposition related factor acquisition unit; a term-after-pregnancy acquisition unit; a number-of-activity step acquisition unit; an activity energy consumption calculation unit; a proper energy consumption storage unit; a comparison and assessment unit; and a comparison and assessment result output unit. According to the present invention said fat deposition related factor acquisition unit acquires a factor related to fat deposition of the pregnant woman, said term-after-pregnancy acquisition unit acquires a term that has elapsed after pregnancy, and said number-of-activity step acquisition unit acquires the number of activity steps taken by the pregnant woman. Furthermore, said activity energy consumption calculation unit calculates activity energy consumption caused by said number of activity steps acquired, and said proper energy consumption storage unit stores proper energy consumption for the pregnant woman. Moreover, said comparison and assessment unit compares the activity energy consumption calculated by said activity energy consumption calculation unit with the corresponding proper energy consumption stored in said proper energy consumption storage unit for assessing the activity energy consumption, and said comparison and assessment result output unit outputs the result of comparison and assessment for the activity energy consumption made by said comparison and assessment unit.
    • 公开了一种与孕妇一起使用的计步器,包括:脂肪沉积相关因子获取单元; 怀孕后获得单位; 多个活动步骤获取单元; 活动能量消耗计算单元; 适当的能源消耗储存单元; 比较评估单位; 以及比较和评估结果输出单位。 根据本发明,所述脂肪沉积相关因子获取单元获取与孕妇的脂肪沉积相关的因素,所述怀孕后怀孕获取单元获取怀孕后经过的术语,并且所述活动数量步骤获取 单位获得孕妇采取的活动步骤数。 此外,所述活动能量消耗计算单元计算由所获取的所述活动步骤数导致的活动能量消耗,并且所述适当的能量消耗存储单元存储适合于孕妇的能量消耗。 此外,所述比较和评估单元将由所述活动能量消耗计算单元计算的活动能量消耗与存储在所述适当能量消耗量存储单元中的相应的适当能量消耗进行比较,以评估活动能量消耗,并且所述比较和评估结果输出单元输出 比较评估单位对活动能源消耗进行比较评估的结果。
    • 3. 发明授权
    • Oxidation-reduction potentiometer
    • 氧化还原电位器
    • US07597789B2
    • 2009-10-06
    • US11133334
    • 2005-05-20
    • Shinichi Harima
    • Shinichi Harima
    • G01N27/26
    • G01N27/4168
    • An oxidation-reduction potentiometer immerses a working electrode and a reference electrode in a reference liquid, measures an interelectrode voltage between the above electrodes when an impedance reducing circuit is unconnected and an interelectrode voltage between the above electrodes when the impedance reducing circuit is connected by interelectrode voltage measuring means, computes a comparison coefficient based on the measured voltages by a comparison coefficient computing section, stores the coefficient in a comparison coefficient storing section, immerses the working electrode and the reference electrode in a test liquid, measures an interelectrode voltage between the working electrode and the reference electrode when the impedance reducing circuit is connected by the measuring means, and computes an oxidation-reduction potential by an oxidation-reduction potential computing section based on the measured voltage when the impedance reducing circuit is connected and the coefficient stored in the storing section.
    • 氧化还原电位器将工作电极和参考电极浸入参考液中,当阻抗降低电路未连接时测量上述电极之间的电极间电压,并且当阻抗降低电路通过电极间连接时,测量上述电极之间的电极间电压 电压测量装置,通过比较系数计算部分计算基于测量电压的比较系数,将系数存储在比较系数存储部分中,将工作电极和参考电极浸入测试液中,测量工作电极和参比电极之间的电极间电压 当阻抗降低电路由测量装置连接时,电极和参考电极,并且当阻抗减小电路连接时,基于测量的电压,通过氧化还原电位计算部分计算氧化还原电位,并且系数 t存储在存储部分中。
    • 4. 发明授权
    • Health care apparatus
    • 保健器具
    • US07134602B2
    • 2006-11-14
    • US10854234
    • 2004-05-27
    • Shinichi Harima
    • Shinichi Harima
    • G06K7/10
    • A61B5/00A61B5/01A61B5/145G01N27/3271G06F19/00G16H50/30
    • Disclosed is a health care apparatus, comprising: a measurement unit; an input unit; and a health index calculation unit. According to the present invention said measurement unit measures an oxidation/reduction potential of a body of a person, and said input unit enters at least one of living body information other than said oxidation/reduction potential of the body. Furthermore, said health index calculation unit calculates a health index for judging a health condition, based on said oxidation/reduction potential of the body and said living body information.
    • 公开了一种保健装置,包括:测量单元; 一个输入单元; 和健康指标计算单元。 根据本发明,所述测量单元测量人体的氧化/还原电位,并且所述输入单元进入除了身体的所述氧化/还原电位以外的生物体信息中的至少一个。 此外,所述健康指标计算单元基于身体的所述氧化/还原电位和所述生物体信息来计算用于判断健康状况的健康指数。
    • 5. 发明授权
    • Polarographic densitometer
    • 极谱密度计
    • US07123019B2
    • 2006-10-17
    • US11136576
    • 2005-05-25
    • Shinichi Harima
    • Shinichi Harima
    • G01N27/62G01R27/08
    • G01N27/4045
    • A polarographic densitometer has a voltage applying circuit, a sensor unit, an impedance reduction circuit, and a current/density conversion unit. The voltage applying circuit applies specified voltage, and the sensor unit includes a group of electrodes to produce a current output in response to any reaction caused in a specimen when the specified voltage is applied by the voltage applying circuit. Furthermore, the impedance reduction circuit reduces impedance of the specimen between the electrodes of the group, and the current/density conversion unit converts the current output of the sensor unit when the impedance is reduced by the impedance reduction circuit into the density of specific material in the specimen.
    • 极谱密度计具有电压施加电路,传感器单元,阻抗降低电路和电流/密度转换单元。 电压施加电路施加指定电压,并且传感器单元包括一组电极,以在由施加电压施加指定电压时响应于样品中引起的任何反应而产生电流输出。 此外,阻抗降低电路减小了组中电极之间的样本的阻抗,并且当阻抗降低电路将阻抗降低到特定材料的密度时,电流/密度转换单元将传感器单元的电流输出转换为 标本。
    • 6. 发明申请
    • Water quality analyzer
    • 水质分析仪
    • US20070084722A1
    • 2007-04-19
    • US10578442
    • 2004-11-10
    • Kiyoshi SagawaShinichi HarimaKazuo OnagaJunko YanagitaniOsamu Inazawa
    • Kiyoshi SagawaShinichi HarimaKazuo OnagaJunko YanagitaniOsamu Inazawa
    • G01N33/487
    • G01N27/4168Y10T436/193333
    • A water quality analyzer comprises: sensor electrodes 1a, 1b made of different metals from each other, the electrodes in a liquid of inspecting object generating a sense voltage in proportion to the liquid's impurities concentration; an operational amplifier OP1 amplifying the sense voltage without inverting to provide for a CPU 3; a resistor R0 whose one end is connected to the electrode 1a; and a voltage divider 2 applying a voltage obtained by dividing the sense voltage by a prescribed division ratio to R0's another end. The CPU 3 calculates input signal from OP1 to obtain chlorine concentration and displays the calculated result on a LCD 4 in a measurement mode, and sets the division ratio of the divider 2 so that sense voltage across electrodes 1a, 1b soaked in a liquid including prescribed concentration chloride approximately agrees with a reference voltage of prescribed concentration in a sense-voltage calibration mode.
    • 水质分析仪包括:由不同金属制成的传感器电极1a,1b,检测对象液体中的电极与液体的杂质浓度成比例地产生检测电压; 运算放大器OP 1放大感测电压而不反相以提供CPU 3; 电阻器R0的一端连接到电极1a; 以及分压器2将通过将感测电压除以指定的分频比获得的电压与R0的另一端相加。 CPU3计算来自OP1的输入信号以获得氯浓度,并将测量模式中的计算结果显示在LCD 4上,并且将分频器2的分频比设置为使得浸没在电极1a中的电极1a,1b上的感测电压 包括规定浓度的氯化物的液体在感测电压校准模式中大致与规定浓度的参考电压一致。
    • 7. 发明申请
    • Oxidation-reduction potentiometer
    • 氧化还原电位器
    • US20050258038A1
    • 2005-11-24
    • US11133334
    • 2005-05-20
    • Shinichi Harima
    • Shinichi Harima
    • G01N27/26G01N27/416
    • G01N27/4168
    • An oxidation-reduction potentiometer immerses a working electrode and a reference electrode in a reference liquid, measures an interelectrode voltage between the above electrodes when an impedance reducing circuit is unconnected and an interelectrode voltage between the above electrodes when the impedance reducing circuit is connected by interelectrode voltage measuring means, computes a comparison coefficient based on the measured voltages by a comparison coefficient computing section, stores the coefficient in a comparison coefficient storing section, immerses the working electrode and the reference electrode in a test liquid, measures an interelectrode voltage between the working electrode and the reference electrode when the impedance reducing circuit is connected by the measuring means, and computes an oxidation-reduction potential by an oxidation-reduction potential computing section based on the measured voltage when the impedance reducing circuit is connected and the coefficient stored in the storing section.
    • 氧化还原电位器将工作电极和参考电极浸入参考液中,当阻抗降低电路未连接时测量上述电极之间的电极间电压,并且当阻抗降低电路通过电极间连接时,测量上述电极之间的电极间电压 电压测量装置,通过比较系数计算部分计算基于测量电压的比较系数,将系数存储在比较系数存储部分中,将工作电极和参考电极浸入测试液中,测量工作电极和参比电极之间的电极间电压 当阻抗降低电路由测量装置连接时,电极和参考电极,并且当阻抗减小电路连接时,基于测量的电压,通过氧化还原电位计算部分计算氧化还原电位,并且系数 t存储在存储部分中。
    • 8. 发明申请
    • Residual chlorine meter
    • 残余氯计
    • US20050103626A1
    • 2005-05-19
    • US10968165
    • 2004-10-20
    • Shinichi HarimaKiyoshi Sagawa
    • Shinichi HarimaKiyoshi Sagawa
    • G01N31/00G01N27/06G01N27/26G01N27/416G01N33/18
    • G01N27/4163G01N27/06G01N33/18
    • A residual chlorine meter detects a pre-calibration residual chlorine reaction amount of sample water in a detection section, inputs a calibration standard residual chlorine standard concentration of the sample water in an input section, determines calibration factors from data for computing the calibration factors based on the amount and the concentration stored in a calibration factor computation data storage section in a calibration factor computation section, and stores the calibration factors in a calibration factor storage section. Then, the meter detects an on-measurement residual chlorine reaction amount of the sample water in the detection section and determines a post-calibration residual chlorine concentration of the sample water from data for computing the post-calibration residual chlorine concentration based on the on-measurement residual chlorine reaction amount and the calibration factor stored in a residual chlorine concentration computation data storage section in a residual chlorine concentration computation section.
    • 剩余氯量计检测检测部分中样品水的预校准残留氯反应量,在输入部分输入样品水的校准标准残留氯标准浓度,根据数据计算校准因子确定校准因子,基于 存储在校准因子计算部分中的校准因子计算数据存储部分中的量和浓度,并将校准因子存储在校准因子存储部分中。 然后,该仪表检测检测部中的样本水的测量残留氯反应量,根据在校准后的残留氯浓度计算出的数据,根据数据确定样品水的后校准残留氯浓度, 测量残留氯反应量和存储在残留氯浓度计算数据存储部中的残留氯浓度计算部中的校准因子。
    • 9. 发明授权
    • Water quality analyzer
    • 水质分析仪
    • US08025779B2
    • 2011-09-27
    • US10578442
    • 2004-11-10
    • Kiyoshi SagawaShinichi HarimaKazuo OnagaJunko YanagitaniOsamu Inazawa
    • Kiyoshi SagawaShinichi HarimaKazuo OnagaJunko YanagitaniOsamu Inazawa
    • G01N33/487G01N27/26
    • G01N27/4168Y10T436/193333
    • A water quality analyzer comprises: sensor electrodes 1a, 1b made of different metals from each other, the electrodes in a liquid of inspecting object generating a sense voltage in proportion to the liquid's impurities concentration; an operational amplifier OP1 amplifying the sense voltage without inverting to provide for a CPU 3; a resistor R0 whose one end is connected to the electrode 1a; and a voltage divider 2 applying a voltage obtained by dividing the sense voltage by a prescribed division ratio to R0's another end. The CPU 3 calculates input signal from OP1 to obtain chlorine concentration and displays the calculated result on a LCD 4 in a measurement mode, and sets the division ratio of the divider 2 so that sense voltage across electrodes 1a, 1b soaked in a liquid including prescribed concentration chloride approximately agrees with a reference voltage of prescribed concentration in a sense-voltage calibration mode.
    • 水质分析仪包括:由不同金属制成的传感器电极1a,1b,检测对象液体中的电极与液体的杂质浓度成比例地产生检测电压; 运算放大器OP1放大感测电压而不反相以提供CPU 3; 电阻器R0,其一端连接到电极1a; 以及分压器2将通过将感测电压除以指定的分频比获得的电压与R0的另一端相加。 CPU3计算来自OP1的输入信号以获得氯浓度,并在测量模式中将计算结果显示在LCD 4上,并且将分频器2的分频比设置为使得浸泡在包括规定的液体中的电极1a,1b两端的感测电压 浓度氯化物在感测电压校准模式下大致与规定浓度的参考电压一致。
    • 10. 发明授权
    • Residual chlorine meter
    • 残余氯计
    • US07110887B2
    • 2006-09-19
    • US10968165
    • 2004-10-20
    • Shinichi HarimaKiyoshi Sagawa
    • Shinichi HarimaKiyoshi Sagawa
    • G01N31/00
    • G01N27/4163G01N27/06G01N33/18
    • A residual chlorine meter detects a pre-calibration residual chlorine reaction amount of sample water in a detection section, inputs a calibration standard residual chlorine standard concentration of the sample water in an input section, determines calibration factors from data for computing the calibration factors based on the amount and the concentration stored in a calibration factor computation data storage section in a calibration factor computation section, and stores the calibration factors in a calibration factor storage section. Then, the meter detects an on-measurement residual chlorine reaction amount of the sample water in the detection section and determines a post-calibration residual chlorine concentration of the sample water from data for computing the post-calibration residual chlorine concentration based on the on-measurement residual chlorine reaction amount and the calibration factor stored in a residual chlorine concentration computation data storage section in a residual chlorine concentration computation section.
    • 剩余氯量计检测检测部分中样品水的预校准残留氯反应量,在输入部分输入样品水的校准标准残留氯标准浓度,根据数据计算校准因子确定校准因子,基于 存储在校准因子计算部分中的校准因子计算数据存储部分中的量和浓度,并将校准因子存储在校准因子存储部分中。 然后,该仪表检测检测部中的样本水的测量残留氯反应量,并根据上述校准后残留氯浓度的数据,根据数据确定样品水的后校准残留氯浓度, 测量残留氯反应量和存储在残留氯浓度计算数据存储部中的残留氯浓度计算部中的校准因子。