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    • 11. 发明授权
    • Flow rate sensor, temperature sensor and flow rate detecting apparatus
    • 流量传感器,温度传感器和流量检测装置
    • US06588268B1
    • 2003-07-08
    • US09554917
    • 2000-05-22
    • Kiyoshi YamagishiToshiaki KawanishiKenji TomonariShinichi InoueAtsushi Koike
    • Kiyoshi YamagishiToshiaki KawanishiKenji TomonariShinichi InoueAtsushi Koike
    • G01F168
    • G01F1/69G01F1/68G01F1/692G01F1/699
    • A flow rate sensor for performing a flow rate detection of fluid with high accuracy without suffering adverse effect of the environmental temperature condition even when the fluid is viscous fluid having relatively high viscosity or the flow rate is relatively small is provided. The flow rate sensor includes a flow rate detector having a heating function and a temperature sensing function, and a pipe line for fluid to be detected which is formed so that heat from the flow rate detector is transferred to and absorbed by the fluid. The temperature sensing which is affected by a heat absorption effect of the fluid due to the heat is executed in the flow rate detector, and the flow rate of the fluid in the pipe line is detected on the basis of the temperature sensing result. Unit retaining portions formed on a casing in which the pipe line is formed, the unit retaining portions being disposed adjacent to the pipe line. A flow rate detecting unit comprising the flow rate detector is retained by the unit retaining portion, and a temperature detecting unit comprising a fluid temperature detector is retained by the unit retaining portion.
    • 提供了一种流量传感器,用于即使当流体是具有相对高的粘度或流量相对较小的粘性流体时,也能够高精度地进行流体的流量检测而不会受到环境温度条件的不利影响。 流量传感器包括具有加热功能和温度检测功能的流量检测器,以及形成为使得来自流量检测器的热量被传送到流体并被流体吸收的被检测流体的管线。 在流量检测器中执行受流体的热吸收效应影响的温度感测,并且基于温度感测结果来检测管路中的流体的流量。 形成在其上形成有管线的壳体上的单元保持部分,单元保持部分邻近管道设置。 包括流量检测器的流量检测单元由单元保持部保持,并且包括流体温度检测器的温度检测单元由单元保持部保持。
    • 13. 发明申请
    • Gasoline identification system and method for identifying gasoline type
    • 汽油识别系统及汽油类型识别方法
    • US20060243248A1
    • 2006-11-02
    • US10529796
    • 2003-09-30
    • Toshiaki KawanishiKiyoshi YamagishiTakayuki Takahata
    • Toshiaki KawanishiKiyoshi YamagishiTakayuki Takahata
    • F02P5/145G01N25/00G01N27/60
    • F02P5/1455F02D19/084F02D19/087F02D37/02F02D41/0025F02D2200/0611G01N25/18G01N33/2829G01N33/2852Y02T10/36Y02T10/46
    • The types of gasolines having different distillation characteristics and various compositions are identified accurately and rapidly. A pulse voltage is applied for a predetermined time to a liquid type identifying sensor heater including a heater and an identifying liquid temperature sensor provided in the vicinity of the heater and an identified gasoline is heated by the heater and the liquid type is identified with a voltage output difference V0 corresponding to a temperature difference between an initial temperature and a peak temperature in the identifying liquid temperature sensor. Furthermore, a gasoline is introduced between electrodes of an alcohol concentration detecting sensor, and a change in a specific inductive capacity of the gasoline between the electrodes is measured with an oscillation frequency thereby detecting an alcohol concentration in the gasoline. Moreover, based on the alcohol concentration detected by the alcohol concentration detecting device, correcting liquid type identification data in the identification control portion on the basis of alcohol concentration data which are prestored in the identification control portion, thereby identifying a liquid type.
    • 具有不同蒸馏特性和各种组成的汽油的类型被准确而快速地识别。 将脉冲电压施加到包括加热器的液体型识别传感器加热器和设置在加热器附近的识别液体温度传感器的液体型识别传感器加热器,并且所识别的汽油由加热器加热,并且液体类型用电压 输出差V 0对应于识别液体温度传感器中的初始温度和峰值温度之间的温度差。 此外,在醇浓度检测传感器的电极之间引入汽油,并以振荡频率测量电极之间的汽油的比感应能力的变化,从而检测汽油中的醇浓度。 此外,基于由醇浓度检测装置检测的醇浓度,基于预先存储在识别控制部分中的酒精浓度数据来校正识别控制部分中的液体类型识别数据,从而识别液体类型。
    • 14. 发明申请
    • Alcohol concentration detector, method of detecting alcohol concentration therewith and process for producing alcohol concentration detection sensor
    • 酒精浓度检测器,检测酒精浓度的方法和产生酒精浓度检测传感器的方法
    • US20060042940A1
    • 2006-03-02
    • US10529709
    • 2003-09-30
    • Toshiaki KawanishiKiyoshi YamagishiTakayuki Takahata
    • Toshiaki KawanishiKiyoshi YamagishiTakayuki Takahata
    • G01N33/487
    • G01N27/226G01N33/2852
    • It is an object to provide an alcohol concentration detecting apparatus which is small-sized and compact, can be installed everywhere and can have the degree of freedom of a design, has an excellent insulation between electrodes and is not influenced by a moisture, can carry out shielding in order not to be influenced by an electromagnetic wave generated from a body of a car or the like, and furthermore, can execute an accurate measurement for an alcohol concentration. Furthermore, it is an object to provide an alcohol concentration detecting method using the same apparatus, and an alcohol concentration detecting sensor manufacturing method. In an alcohol concentration detecting apparatus in which an alcohol concentration in the liquid to be inspected is detected by introducing a liquid to be inspected between electrodes of an alcohol concentration detecting sensor and by measuring a change in a specific inductive capacity of the liquid to be inspected between the electrodes with an oscillation frequency, the alcohol concentration detecting sensor comprises an alcohol concentration detecting sensor body including a base material resin film, an electrode wiring pattern formed on the base material resin film, and an insulating resin covering a surface of the electrode wiring pattern.
    • 本发明的目的是提供一种小型紧凑的酒精浓度检测装置,可以安装在任何地方,并且可以具有设计自由度,具有优异的电极之间的绝缘性,不受水分的影响,可以携带 为了不受到车体等产生的电磁波的影响而进行屏蔽,此外,能够精确地测定酒精浓度。 此外,其目的是提供使用相同装置的酒精浓度检测方法和酒精浓度检测传感器制造方法。 在酒精浓度检测装置中,通过在酒精浓度检测传感器的电极之间引入待检查的液体,并通过测量被检液体的比容电容的变化来检测被检液体中的酒精浓度 在具有振荡频率的电极之间,醇浓度检测传感器包括醇浓度检测传感器本体,其包括基材树脂膜,形成在基材树脂膜上的电极布线图案和覆盖电极布线表面的绝缘树脂 模式。
    • 19. 发明申请
    • Liquid type identification device
    • 液体型识别装置
    • US20070151331A1
    • 2007-07-05
    • US10586920
    • 2005-01-25
    • Toshiaki KawanishiTakayuki TakahataKiyoshi Yamagishi
    • Toshiaki KawanishiTakayuki TakahataKiyoshi Yamagishi
    • G01N25/00
    • G01N27/18G01N33/28
    • There is provided an identification device capable of accurately, rapidly, and easily identifying a hydrocarbon-based liquid and alcohol-based liquid. An identification sensor unit (2) is arranged to face a flow passage (20) of a liquid to be measured and includes a liquid type detection unit with indirect heating (21) having a heating body and a temperature-sensitive body, and a liquid temperature detecting unit (22) for detecting the temperature of the liquid to be measured. The identification device further includes an identification calculation unit for applying a single pulse voltage to the heating body of the liquid type detection unit (21) so as to generate heat and identifying the liquid to be measured according to an output of a liquid type detection circuit formed by the temperature-sensitive body of the liquid type detecting unit (21) and the liquid temperature detection unit. The identification calculation unit identifies the liquid to be measured according to a liquid-type-corresponding first voltage value corresponding to a difference between the initial temperature of the temperature-sensitive body when the heating body generates heat and a first temperature at the moment when the a first time has elapsed from the start of application of the single pulse and a liquid-type-corresponding second voltage value corresponding to a difference between the initial temperature of the temperature-sensitive body and a second temperature at the moment when a second time longer than the first time has elapsed from the start of application of the single pulse.
    • 提供了能够准确,快速,容易地识别烃类液体和醇类液体的识别装置。 识别传感器单元(2)布置成面对要测量的液体的流动通道(20),并且包括具有间接加热的液体型检测单元(21),其具有加热体和温度敏感体,以及液体 温度检测单元(22),用于检测待测液体的温度。 识别装置还包括:识别计算单元,用于向液体型检测单元(21)的加热体施加单个脉冲电压,以产生热量,并根据液体类型检测电路的输出识别待测量的液体 由液体型检测单元(21)的温度敏感体和液体温度检测单元形成。 识别计算单元根据与加热体产生热量时的感温体的初始温度与第一温度之间的差对应的液体型对应的第一电压值来识别待测量的液体, 从开始施加单个脉冲开始第一次和对应于温度敏感体的初始温度与第二时间之后的第二温度之间的差异的液体型对应的第二电压值 比第一次从单脉冲应用开始就已经过去了。