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    • 1. 发明专利
    • Predicting sensor for collapse of slope
    • 预测倾斜倾斜传感器
    • JPS59206522A
    • 1984-11-22
    • JP8218583
    • 1983-05-11
    • Fuji Electric Co LtdFuji Electric Corp Res & Dev Ltd
    • TSUDA KIICHIROUKOBAYASHI MITSUO
    • G01L5/00E02D17/20
    • E02D17/20
    • PURPOSE:To obtain a sensor having a simple structure and excellent weather proofness by providing a detector to detect the deformation of a corrosion-resistant case capable of being deformed in response to the change of the distance between two points of slope in the inside of the case. CONSTITUTION:When the first wire 13 and the second wire 14 are pulled by the collapse of a slope, the forces are transmitted to the first band 22, the second band 23 and the third band 24 and a thermoplastic resin case 21 is deformed. When the distance between two points is further changed, the contact 28 where weak current flows is pushed by a pusher 29 and broken. If the distance S between the detector 26 and the case 21 is determined in advance, the collapse of the slope can be predicted from a change in the distance between two points of the slope surface by the distance S.
    • 目的:为了获得具有简单结构和优异耐候性的传感器,通过提供一种检测器来检测耐腐蚀壳体的变形,该耐腐蚀壳体能够响应于内侧两个倾斜点之间的距离的变化而变形 案件。 构成:当第一线13和第二线14被斜面的塌陷拉动时,力被传递到第一带22,第二带23和第三带24以及热塑性树脂壳21变形。 当两点之间的距离进一步变化时,弱电流流动的触点28被推动器29推动并破坏。 如果预先确定检测器26和壳体21之间的距离S,则可以从倾斜表面的两个点之间的距离变化距离S来预测斜率的崩溃。
    • 2. 发明专利
    • Predicting sensor for collapse of slope
    • 预测倾斜倾斜传感器
    • JPS59206523A
    • 1984-11-22
    • JP8218783
    • 1983-05-11
    • Fuji Electric Co LtdFuji Electric Corp Res & Dev Ltd
    • KOBAYASHI MITSUO
    • G01L5/00E02D17/20
    • E02D17/20
    • PURPOSE:To produce a sensor for the collapse of slope at low cost by using a protective cover of a two-layered structure composed of a hard resin and a soft resin or a synthetic rubber for protecting a detector incorporated in the sensor. CONSTITUTION:The inside of a cover 15 is made of a thermoplastic resin 151 such as rigid vinyl chloride, etc., and also the outside of the cover 15 is made of a thermoplastic resin 152 such as soft vinyl chloride. The cover 15 is molded by injection molding using the inside rigid resin 151 as a mold. Even when the inside rigid resin 151 is broken due to great deformation of the predicting sensor for collapse of slope, th scattering of the broken pieces of the inside rigid resin 151 can be prevented by selecting the materials of the outside soft resins 152, and thereby the shape of the cover can be maintained.
    • 目的:通过使用由硬树脂和软树脂或合成橡胶构成的双层结构的保护罩,以低成本的方式生产用于塌方的传感器,用于保护结合在传感器中的检测器。 构成:盖15的内部由诸如刚性氯乙烯等的热塑性树脂151制成,并且盖15的外部也由诸如软性氯乙烯的热塑性树脂152制成。 通过使用作为模具的内部刚性树脂151通过注塑成型盖15。 即使内部刚性树脂151因倾斜塌陷的预测传感器的变形大而破裂,也可以通过选择外部软质树脂152的材料来防止内部刚性树脂151的破碎片的散射,从而 可以保持盖的形状。
    • 4. 发明专利
    • Phase-angle controlling apparatus
    • 相角控制装置
    • JPS59168225A
    • 1984-09-21
    • JP4013383
    • 1983-03-11
    • Fuji Electric Co LtdFuji Electric Corp Res & Dev Ltd
    • TSUDA KIICHIROUKOBAYASHI MITSUO
    • F02D1/16F02D1/18F02D45/00
    • F02D1/183
    • PURPOSE:To manufacture a phase-angle detecting unit economically, by employing such an arrangement that movement of a plunger used in a phase-angle changing mechanism is transmitted to a phase-angle detecting means in detecting the phase angle of a driving shaft and a driven shaft used in a fuel injection timing controlling apparatus or the like. CONSTITUTION:When pressure oil is supplied from an oil supply passage 20, pressure oil is carried into a cylinder 19 via an oil passage 19 and forces a plunger 17 in the cylinder 18 outwards, so that the phase angle of a rotatable member 10 on the side of a driving shaft and a rotatable member 11 on the side of a driven shaft is changed by a projection 15 formed integrally with the rotatable member 10. At the same time, a first detector piece 27 is pushed by an inclined surface of an inclined plate 31 formed integrally with the plunger 17 and it is moved in the direction (y) shown in the drawing. Resultantly, a second detecter peice 29 is moved in the same direction by a thrust bearing 28 against the force of a spring 30, so that the change of the phase angle can be known by detecting the displacement (y) of the second detector piece 29 by means of a position detector attached to a support member 13 to which the other end of the spring 30 is fixed.
    • 目的:为了经济地制造相位角检测单元,通过采用这样一种布置,使用在相位角改变机构中的柱塞的运动被传送到相位角检测装置,以检测驱动轴的相位角和 在燃料喷射正时控制装置等中使用的从动轴。 构成:当从供油路20供给压力油时,通过油路19将压力油输送到气缸19中,并将气缸18内的柱塞17向外推,使得可旋转构件10的相位角在 驱动轴的侧面和从动轴侧的可旋转构件11由与可旋转构件10一体形成的突起15改变。同时,第一检测器件27被倾斜的倾斜表面推动 板31与柱塞17一体地形成,并且沿图中所示的方向(y)移动。 因此,抵抗弹簧30的力,第二检测器孔29通过止推轴承28以相同的方向移动,从而可以通过检测第二检测器片29的位移(y)来知道相位角的变化 通过安装在弹簧30的另一端固定到的支撑构件13上的位置检测器。
    • 5. 发明专利
    • Secondary disposal device of dust collector of diesel engine
    • 柴油发动机集尘器二次处理装置
    • JPS5958111A
    • 1984-04-03
    • JP16682882
    • 1982-09-25
    • Fuji Electric Corp Res & Dev Ltd
    • TSUDA KIICHIROUKOBAYASHI MITSUO
    • F01N3/02F01N3/027F01N3/037
    • F01N3/037F01N3/027F01N2270/04
    • PURPOSE:To completely burn deposited soot by heating air which contain rich oxygen and blasting the air against the deposited soot. CONSTITUTION:Exhaust gas which contains the great amount of soot discharged from a Diesel engine 11 is collected by an exhaust manifold 12 and induced through the first exhaust pipe 13 and the first muffler 14 into an electric dust collector 15. Fine particulates of soot in exhaust gas grows to larger particulates in the electric dust collector 15 and the soot which is involved in exhaust gas is induced in a cyclone 16, is separated therein from exhaust gas, and sent into a dust pocket 17, in which the soot 39 is deposited on a pored metal plate 36. The deposited soot 39 is completely burnt with the aids of an electric heater 34 and air which is supplied from an air supply opening 33 and contains rich oxygen. Burnt gas which is produced by burning the soot passes through a burnt gas outlet 37 and is then released from the second exhaust pipe 18 into the atmosphere.
    • 目的:通过加热含有富氧的空气并将空气喷射到沉积的烟灰上来完全燃烧沉积的烟灰。 构成:含有从柴​​油发动机11排出的大量烟灰的废气由排气歧管12收集,并通过第一排气管13和第一消声器14被引入电集尘器15.废气中的烟尘微粒 气体在电除尘器15中生长到较大的颗粒物,并且在旋风分离器16中引起排气中涉及的烟灰与废气分离,并且被送入灰尘袋17中,其中沉积有烟灰39 沉积的烟灰39被电加热器34的辅助物和从空气供应开口33供应并且含有富氧的空气完全燃烧。 通过燃烧烟灰产生的燃烧气体通过燃烧气体出口37,然后从第二排气管18释放到大气中。
    • 6. 发明专利
    • Carbon monoxide gas sensor
    • 一氧化碳气体传感器
    • JP2003279518A
    • 2003-10-02
    • JP2002085081
    • 2002-03-26
    • Fuji Electric Co LtdOsaka Gas Co Ltd大阪瓦斯株式会社富士電機株式会社
    • HIGAKI KATSUMITABATA SOICHISASAKI HIROICHIONISHI HISAOOGINO SHINJISUZUKI TAKUYAMATSUBARA TAKESHIKUNIHARA KENJIKOBAYASHI MITSUONAGASE NORIYOSHI
    • G01N27/12
    • PROBLEM TO BE SOLVED: To provide a CO sensor which saves electricity and which enhances a quantitative determination property with reference to CO. SOLUTION: The sensor detects carbon monoxide gas on the basis of a resistance value of a filmlike oxide in a detection voltage application mode. The sensor is constituted in such a way that a purge application mode is composed of a first purge mode and a second purge mode, that the first-purge-mode ON time is in a range of 50 to 200 msec, that the second-purge-mode ON time is set to be larger than 100 msec and longer than the first-purge-mode ON time, that an electrical resistance value used to change over the first purge mode to the second purge mode is recognized in advance as a set value, and that the second purge mode is set when the electrical resistance value measured in the detection voltage application mode exceeds the set value. The gas sensor is constituted in such a way that the electrical resistance value is measured again in the second purge mode so as to decide whether the electrical resistance value exceeds the set value. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种CO传感器,其可以节省电力,并且提高相对于CO的定量确定性。解决方案:传感器基于膜状氧化物的电阻值来检测一氧化碳气体 在检测电压应用模式下。 该传感器构成为使得清洗施加模式由第一吹扫模式和第二吹扫模式组成,第一吹扫模式接通时间在50至200毫秒的范围内,第二吹扫 模式ON时间被设置为大于100msec并且比第一次清除模式ON时间长,用于将第一吹扫模式切换到第二吹扫模式的电阻值被预先识别为设定值 并且当在检测电压施加模式中测量的电阻值超过设定值时,第二吹扫模式被设定。 气体传感器以这样的方式构成,即在第二吹扫模式中再次测量电阻值,以便确定电阻值是否超过设定值。 版权所有(C)2004,JPO
    • 9. 发明专利
    • MEDIUM SUBSTRATE
    • JP2000285444A
    • 2000-10-13
    • JP8791299
    • 1999-03-30
    • FUJI ELECTRIC CO LTD
    • KOBAYASHI MITSUO
    • G11B5/73G11B5/82
    • PROBLEM TO BE SOLVED: To prevent the collision of a slider and contamination concentration, and obtain a superior cost efficiency and a superior reliability, by irregularly arranging bump distances of a wide distance of a specific range and a narrow distance of a specific range when an average distance of a plurality of bumps disposed on a circumference of a constant radius is specified. SOLUTION: When an average distance of a plurality of bumps disposed on a circumference of a constant radius is 100%, a bump distance of the circumference of the constant radius is made irregular to be a wide distance in a range of 100-150% and a narrow distance of 50-100%. Bumps are irregularly arranged on an inner circumferential side and an outer circumferential side to a reference circle concentric with a center hole of the medium substrate. When a distance from a center point of the bump to the reference circle in a radial direction is (d) and a virtual bump distance on the reference circle is (p), a relationship of d
    • 10. 发明专利
    • TOUCH SENSOR
    • JPH07128163A
    • 1995-05-19
    • JP27719493
    • 1993-11-08
    • FUJI ELECTRIC CO LTD
    • OOKA MASAHIROKOBAYASHI MITSUO
    • G01L1/00B25J19/02G01L5/00G01L5/16
    • PURPOSE:To detect a force in a sliding direction by a method wherein a force is not applied to the surface protrusion of a touch-sensing part which is installed on the back of the surface protrusion, the touch sensor comes into slight contact and a pressure which is generated at a time when the force is applied to the surface protrusion is detected. CONSTITUTION:When a force F1 is applied in an oblique direction to the surface protrusion 11 of a touch-sensing part 1, the surface protrusion part 11 is bent, rear protrusions 12A to 12D are pressed to an acrylic plate 2, and pressure- contact parts S-12A to S-12D are produced. According to the position, the magnitude and the direction of the force F1 applied to the touch-sensing part 1, nearly circular images which correspond nearly to the position, the magnitude and the direction of the force F1 appear in parts of the rear protrusions 12 of the touch-sensing part 1 on the acrylic plate 2 as viewed from the lower part. The images are imaged by a CCD camera, the position and the size of every image is stored in a frame memory, data which has been stored is operated by a microcomputer, a force which is applied in a direction perpendicular to a touch- sensing face and a force in a sliding direction are detected, and the forces are displayed on a display device.