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    • 1. 发明授权
    • Device for detecting alcoholic content
    • 用于检测酒精含量的装置
    • US5074659A
    • 1991-12-24
    • US644769
    • 1991-01-23
    • Hiroyoshi SuzukiKenji OgawaHiroko Maekawa
    • Hiroyoshi SuzukiKenji OgawaHiroko Maekawa
    • G01N21/43
    • G01N21/43
    • The present invention is directed to a device for detecting alcoholic content in a fuel by finding its refractive index, which is of such a construction that a refractive interface for the fuel is formed on the half way of a light transmission body; a light emitting element is provided at one end of the light transmission body, from which incident light is introduced into said refractive interface; and a single dimensional light position sensing detector is provided at the other end of the light transmitting body, into which the light refracted at the refractive interface is introduced; or it is of such a construction that a light emitting element and a single dimensional light position sensing detector are provided at one end of a light transmission body; a refractive interface and a reflecting surface are provided at the other end of the light transmission body, wherein an incident light from the light emitting element, which has entered into the refractive interface and has been refracted there, is reflected at the reflecting surface, after which the reflected light is again caused to enter into the refractive interface, and is subsequently caused to enter into the single dimensional light position sensing detector.
    • 2. 发明授权
    • Optical transceiver apparatus for detecting distance between two cars
    • 用于检测两辆车之间距离的光收发器
    • US5039217A
    • 1991-08-13
    • US498674
    • 1990-03-26
    • Hiroko MaekawaHiroyoshi SuzukiKenji Ogawa
    • Hiroko MaekawaHiroyoshi SuzukiKenji Ogawa
    • G01C3/06G01B11/00G01B11/26G01C3/18
    • G01C3/18
    • An apparatus for detecting the distance between one's car and the car ahead, together with the angle between the axes of the two cars. The apparatus has a pair of driving optical systems disposed at a predetermined distance from each other, each driving optical system comprising an optical system having a light projector which projects pulse light having a specific code toward the car which is ahead of the one's car and a light receiver which receives the reflected pulse light from the car ahead, the light projector and receiver being disposed in so close proximity to each other that the respective optical axes can be considered to be on substantially the same axis, and a driving system for adjusting the angle of projection of the light projector on the basis of a signal from the light receiver. The apparatus further has a central processing unit which measures the angle of projection of the pulse light from the light projector when the light receiver of each of the driving optical systems detects the reflected pulse light, thereby detecting the distance between the one's car and the car ahead, together with the angle between the axes of the two cars.
    • 一种用于检测轿厢与前方轿厢之间的距离的装置,以及两车的轴线之间的角度。 该装置具有彼此隔开预定距离的一对驱动光学系统,每个驱动光学系统包括一个光学系统,该光学系统具有一个投光器,该光学系统将具有特定代码的脉冲光投射到在汽车前方的轿厢,以及 光接收器,其从前方接收反射的脉冲光,所述光投射器和接收器设置成彼此非常接近,使得各个光轴可以被认为在基本上相同的轴上;以及驱动系统,用于调整 基于来自光接收器的信号的投影仪的投影角度。 该装置还具有中央处理单元,当每个驱动光学系统的光接收器检测到反射的脉冲光时,该中央处理单元测量来自该投影仪的脉冲光的投影角度,从而检测该车辆与该车辆之间的距离 在前面,与两辆车的轴线之间的角度。
    • 3. 发明授权
    • Device for detecting alcoholic content
    • 检测酒精含量的装置
    • US5015091A
    • 1991-05-14
    • US327059
    • 1989-03-22
    • Hiroyoshi SuzukiKenji OgawaHiroko Maekawa
    • Hiroyoshi SuzukiKenji OgawaHiroko Maekawa
    • G01N21/43
    • G01N21/43
    • The present invention is directed to a device for detecting alcoholic content in a fuel by finding its refractive index, which is of such a construction that a refractive interface for the fuel is formed at an intermediate portion of a light transmission body; a light emitting element is provided at one end of the light transmission body, from which incident light is introduced into said refractive interface; and a single dimensional light position sensing detector is provided at the other end of the light transmitting body, into which the light refracted at the refractive interface is introduced. Alternatively, the device is of such a construction that a light emitting element and a single dimensional light position sensing detector are provided at one end of a light transmission body; a refractive interface and a reflecting surface are provided at the other end of the light transmission body, wherein an incident light from the light emitting element, which has entered into the refractive interface and has been refracted there, is reflected at the reflecting surface, after which the reflected light is again caused to enter into the refractive interface, and is subsequently caused to enter into the single dimensional light position sensing detector.
    • 5. 发明授权
    • Liquid content detecting device for alcohol regular gasoline and premium
gasoline fuel mixture
    • 液体液体检测装置,用于酒精汽油和高级汽油燃料混合物
    • US5157453A
    • 1992-10-20
    • US727682
    • 1991-07-10
    • Hiroyoshi SuzukiKenji Ogawa
    • Hiroyoshi SuzukiKenji Ogawa
    • G01N21/41G01N33/28
    • G01N21/41G01N33/2852G01N2201/1211
    • A liquid content detecting device is provided which can detect the contents of liquid components such as alcohol in a mixed fuel (both regular and premium gasolines) with a high degree of preciseness at all times over the entire operating temperature range in which the device is used. A refractive index sensor senses the refractive index of a liquid mixture which includes N kinds of liquid components. A liquid-kine identifying means identifies the kind of each of the liquid components. A temperature sensor senses the temperature of the liquid mixture. A liquid content calculator stores a temperature-dependent refractive index characteristic of various kinds of liquids including the liquid components in advance. The liquid content calculator is operable to select the temperature-dependent refractive index characteristic of each of the liquid components, and calculate the contents of the liquid components in the liquid mixture on the basis of the thus selected temperature-dependent refractive index characteristics of the liquid components and the refractive indexes of the liquid mixture, which are sensed by the refractive index sensor at (N-1) different temperatures.
    • 提供了一种液体含量检测装置,其能够在使用该装置的整个工作温度范围内始终以高精度检测混合燃料(正常和优质汽油)中的液体成分的含量 。 折射率传感器检测包括N种液体组分的液体混合物的折射率。 液体识别装置识别每种液体组分的种类。 温度传感器检测液体混合物的温度。 液体含量计算器预先存储包括液体组分的各种液体的温度依赖性折射率特性。 液体含量计算器可操作以选择每个液体组分的温度依赖性折射率特性,并且基于所选择的液体温度依赖性折射率特性来计算液体混合物中液体组分的含量 组分和液体混合物的折射率,其由折射率传感器在(N-1)不同温度下感测。
    • 6. 发明授权
    • Dielectric constant detecting apparatus
    • 介电常数检测装置
    • US5414368A
    • 1995-05-09
    • US942853
    • 1992-09-10
    • Kenji OgawaHiroyoshi Suzuki
    • Kenji OgawaHiroyoshi Suzuki
    • G01N27/22G01N33/28G01R27/26G01N33/22
    • G01R27/267G01N27/221G01N33/2852
    • A dielectric constant detecting apparatus comprises an LC circuit for shifting the phase of a high frequency voltage signal according to the dielectric constant of a liquid which passes between the coil and the electrode of the LC circuit. A resistor is connected between the LC circuit and at least one part of a phase comparator. The phase comparator detects the phase shift between high frequency signals provided at both ends of the resistor. The resistor and at least one part of the phase comparator are integrally included in an insulator. The output of the phase comparator is compared with a predetermined phase shift value. A voltage control device adjusts the high frequency voltage signal from the voltage applying device so that the phase shift detected by the phase comparator is further adjusted toward the predetermined phase shift value. At least one of the voltage applying device and the voltage control device produces a signal based on the phase shift which is representative of the dielectric constant of the liquid.
    • 介电常数检测装置包括用于根据通过LC电路的线圈和电极之间的液体的介电常数来移位高频电压信号的相位的LC电路。 电阻器连接在LC电路和相位比较器的至少一部分之间。 相位比较器检测在电阻器两端提供的高频信号之间的相移。 电阻器和相位比较器的至少一部分一体地包含在绝缘体中。 将相位比较器的输出与预定的相移值进行比较。 电压控制装置调整来自电压施加装置的高频电压信号,使得由相位比较器检测的相移进一步朝向预定的相移值进行调整。 电压施加装置和电压控制装置中的至少一个基于代表液体的介电常数的相移产生信号。
    • 7. 发明授权
    • Dielectric constant detection apparatus for fuel
    • 用于燃料的电介质恒定检测装置
    • US5225783A
    • 1993-07-06
    • US826392
    • 1992-01-27
    • Hiroyoshi SuzukiKenji OgawaAkira Okada
    • Hiroyoshi SuzukiKenji OgawaAkira Okada
    • G01N27/22G01N33/28
    • G01N33/2852G01N27/221
    • A detection apparatus for detecting a dielectric constant of fuel having an electrode disposed in a fuel passage and applied with an excitation signal, a monolayer-wound coil disposed in the vicinity of the electrode so that fuel is introduced in a space between the excitation electrode and the coil, a phase comparator which receives the signal to be applied to the excitation electrode and a signal induced in the coil to thereby compare the signals. The phase difference between both signals is detected using a low-pass filter to output the d.c. signal component of an output signal of phase comparator, a comparison integrator connected to the low-pass filter to output a controlled output signal so that the phase difference between the excitation signal and the induced signal in the coil becomes 90.degree., and a voltage controlled oscillator connected to the comparison integrator so that the frequency of a signal, to be applied to the electrode, of the voltage controlled oscillator is changed depending on the output signal of the comparison integrator. The dielectric constant of the fuel is detected on the basis of a voltage output signal from the comparison integrator, or a frequency output signal from the voltage controlled oscillator.
    • 9. 发明授权
    • Apparatus for detecting alcohol concentration
    • 检测酒精浓度的装置
    • US5110205A
    • 1992-05-05
    • US651080
    • 1991-02-06
    • Hiroyoshi SuzukiKenji OgawaToru Yamamoto
    • Hiroyoshi SuzukiKenji OgawaToru Yamamoto
    • G01N21/41G01N33/28
    • G01N33/2852G01N21/4133
    • An alcohol concentration detecting apparatus comprising a transparent body (1,1a,1b,1c,1d) transparent to light and having a refraction surface (9) disposed, when in use, in contact with liquid fuel (12) to define an interface between the transparent body and the fuel, the transparent body (1) defining a light path (7,16) for allowing the light to pass through the refraction surface (9) for refracting the light (7). A light-emitting element (4) is disposed on one end of the light path and emitting a light beam (7,16) along the light path, and a position detector element (8) disposed at the other end of the light path for receiving a refracted light beam refracted at the refraction surface (9) and generating an output indicative of the amount of alcohol contained in the fuel. The sensor also comprises an optical lens (6;13,13a,13b,14,14a,14b) for directing and focusing the light beam (7,16) from the light-emitting element (4) onto the optical position detector element ( 8). The optical lens may include a collimator lens (13) for converting the light beam into a substantially parallel light beam (16), and a condenser lens (14) for focusing the parallel light beam on the position detector element (8).
    • 一种酒精浓度检测装置,包括对光透明的透明体(1,1a,1b,1c,1d),并且具有折射表面(9),所述折射表面在使用时与液体燃料(12)接触以限定在液体燃料 所述透明体和所述燃料,所述透明体(1)限定用于允许所述光通过所述折射表面(9)以折射光(7)的光路(7,16)。 发光元件(4)设置在光路的一端并沿光路发射光束(7,16),以及位于光路另一端的位置检测元件(8),用于 接收在折射表面(9)处折射的折射光束并产生指示燃料中包含的醇的量的输出。 传感器还包括用于将光束(7,16)从发光元件(4)引导和聚焦到光学位置检测器元件(6,13,13a,13b,14,14a,14b) 8)。 光学透镜可以包括用于将光束转换成基本上平行的光束(16)的准直透镜(13)和用于将平行光束聚焦在位置检测器元件(8)上的聚光透镜(14)。
    • 10. 发明授权
    • Vehicle body floor structure
    • 车体地板结构
    • US08118125B2
    • 2012-02-21
    • US12705717
    • 2010-02-15
    • Hiroyoshi SuzukiSayaka Okuzaki
    • Hiroyoshi SuzukiSayaka Okuzaki
    • B60R16/04
    • B62D25/20B60K1/04B60K15/063B60N2/4235B62D25/025B62D25/2036
    • Vehicle body floor structure has a floor tunnel provided on a laterally central portion of a vehicle body floor panel and extending in a front-rear direction of a vehicle body, a desired stored component being stored in the floor tunnel. The stored component has a passageway formed therein to extend in a width direction of the vehicle body. The floor structure also has a cross member passed through the passageway of the stored component, the stored component is supported on the cross member via a resilient member, and the cross member is fixedly fastened at its opposite ends to the inner surfaces of opposed side walls of the floor tunnel.
    • 车体地板结构具有设置在车体地板面板的横向中央部并且沿车体的前后方向延伸的地板通道,所希望的存储部件被存储在地板隧道中。 所存储的部件具有形成在其中的通道,以在车体的宽度方向上延伸。 地板结构还具有穿过所存储的部件的通道的横向构件,所存储的部件经由弹性构件支撑在横梁上,并且横向构件在其相对端部固定地紧固到相对的侧壁的内表面 的地板隧道。