会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 11. 发明授权
    • Exhaust gas sensor
    • 废气传感器
    • US5993625A
    • 1999-11-30
    • US820522
    • 1997-03-19
    • Ryuji InoueYumi KurokiTomohiro FumaShoji KitanoyaSatoshi SugayaTakafumi Oshima
    • Ryuji InoueYumi KurokiTomohiro FumaShoji KitanoyaSatoshi SugayaTakafumi Oshima
    • G01N27/41G01N27/12G01N27/407G01N27/416G01N27/419
    • G01N27/4074G01N27/419
    • In accordance with the present invention, there is provided an exhaust gas sensor which comprises an oxygen pump cell made of solid electrolyte having an oxygen ion conductivity, an oxygen sensor cell made of solid electrolyte having an oxygen ion conductivity and disposed in opposition to the pump cell in such a manner as to define therebetween a detection space, and a semiconductor detection element made of oxide semiconductor and disposed in the detection space for detecting a predetermined detected substance in the exhaust gas introduced to the detection space. The concentration of oxygen in the detection space is regulated so as to be included within a predetermined range through control of charge or discharge of oxygen into or from the detection space by means of the oxygen pump cell on the basis of the concentration of oxygen in the exhaust gas, which is detected by the oxygen sensor cell.
    • 根据本发明,提供了一种废气传感器,其包括由具有氧离子传导性的固体电解质制成的氧气泵电池,由具有氧离子传导性的固体电解质制成的氧传感器电池并且与泵 以在其间限定检测空间的方式,以及由氧化物半导体制成的半导体检测元件,并设置在检测空间中,用于检测引入检测空间的排气中的预定检测物质。 调节检测空间中的氧浓度以便通过基于氧泵的浓度通过氧泵电池的控制将氧气进入或从检测空间排出来进入到预定范围内 废气,其由氧传感器单元检测。
    • 12. 发明授权
    • Humidity sensor
    • 湿度传感器
    • US06883371B2
    • 2005-04-26
    • US09971711
    • 2001-10-09
    • Satoshi SugayaTetsuo YamadaNoboru Ishida
    • Satoshi SugayaTetsuo YamadaNoboru Ishida
    • G01N27/04G01N27/12G01N7/00
    • G01N27/121
    • A humidity sensor including an insulating substrate, and a lower electrode formed from a noble metal, a moisture sensitive layer formed of a porous body predominantly containing alumina and containing predetermined amounts of TiO2 and SnO2 and an upper electrode formed of a noble metal porous body successively formed on the insulating substrate. The upper electrode is connected to the moisture sensitive layer and a portion of the insulating substrate. Preferably, the lower electrode is formed of a porous body. More preferably, the lower and upper electrodes are formed from Pt. Furthermore, preferably, a heater and a temperature measurement resistor are provided in the insulating substrate and are located directly below the moisture sensitive layer.
    • 一种湿度传感器,包括绝缘基板和由贵金属形成的下电极,由主要含有氧化铝并含有预定量的TiO 2和SnO 2的多孔体形成的湿度敏感层 和由绝缘基板上依次形成的贵金属多孔体形成的上电极。 上电极连接到湿敏层和绝缘基板的一部分。 优选地,下电极由多孔体形成。 更优选地,下电极和上电极由Pt形成。 此外,优选地,在绝缘基板中设置加热器和温度测量电阻器,并且位于湿敏层的正下方。
    • 13. 发明授权
    • Humidity sensor and method of using the humidity sensor
    • 湿度传感器和使用湿度传感器的方法
    • US07210333B2
    • 2007-05-01
    • US10857495
    • 2004-06-01
    • Hiroki FujitaKoichi FujitaSatoshi SugayaKenji KatoRyuji InoueNoboru Ishida
    • Hiroki FujitaKoichi FujitaSatoshi SugayaKenji KatoRyuji InoueNoboru Ishida
    • G01N7/00
    • G01N27/121
    • A humidity-sensitive porous layer (13) of a humidity-sensitive element section (3) of a humidity sensor (1) is formed of a crystalline phase oxide grains such as Al2O3—SnO2—TiO2 and of a glass phase such as silicate glass covering the crystalline phase. The glass phase contains an alkali metal oxide and/or alkaline earth metal oxide such as Li2O. The humidity sensitive porous layer (13) assumes a skeletal structure that is formed of crystalline phase oxide grains covered or coated with the glass phase. A heater (17) of the humidity sensor is controlled to heat the humidity-sensitive element section (3) at a temperature ranging from 500° C. to 800° C. so as to clean off the humidity-sensitive element section while an internal combustion engine is running and exhausting fouling substances. Measurement of Humidity in an exhaust gas exhausted from an exhaust gas purifying apparatus of an internal combustion engine is carried out by using the humidity sensor (1), so long as the exhaust gas temperature does not exceed 100° C. regardless of whether or not the engine is running.
    • 湿度传感器(1)的湿度敏感元件部分(3)的湿度敏感多孔层(13)由诸如Al 2 O 3的结晶相氧化物晶粒形成 和玻璃相如覆盖结晶相的硅酸盐玻璃。 玻璃相含有碱金属氧化物和/或碱土金属氧化物如Li 2 O。 湿度敏感多孔层(13)呈现由覆盖或涂覆有玻璃相的结晶相氧化物颗粒形成的骨架结构。 控制湿度传感器的加热器(17),以在500℃至800℃的温度范围内加热湿度敏感元件部分(3),从而清洁湿度敏感元件部分,同时内部 内燃机正在运行并排出污垢物质。 通过使用湿度传感器(1)进行从内燃机的排气净化装置排出的废气中的湿度的测定,只要排气温度不超过100℃即可 发动机正在运行。
    • 15. 发明授权
    • Optical device
    • 光学装置
    • US06181850B2
    • 2001-01-30
    • US09102761
    • 1998-06-23
    • Noriyuki NakamuraYuzo OchiSatoshi SugayaYasuko Kawasaki
    • Noriyuki NakamuraYuzo OchiSatoshi SugayaYasuko Kawasaki
    • G02B632
    • G02B6/2937G02B6/2817G02B6/2938G02B6/4206
    • An optical device incorporating an incident-side optical waveguide portion having an incident terminal port and an outgoing terminal port which are connected with a fiber array, and an outgoing-side optical waveguide portion having another outgoing terminal port. Between the incident-side and outgoing-side optical waveguide portions, there is disposed a wavelength division multiplexer for sending back an incident beam from the incident-side optical waveguide portion to the incident-side optical waveguide portion and permitting a part of the incident beam to pass therethrough. Between the wavelength division multiplexer and the outgoing-side optical waveguide portion, a polarization-independent type optical isolator is disposed. Between the wavelength division multiplexer and the incident-side optical waveguide portion, a first lens is disposed, and between the wavelength division multiplexer and the polarization-independent type optical isolator, a second lens is disposed.
    • 一种具有入射端光端口和与光纤阵列连接的输出端口的入射侧光波导部分和具有另一出射端口的出射侧光波导部分的光学装置。 在入射侧光波导部分和出射侧光波导部分之间设置有波分复用器,用于将入射光束从入射侧光波导部分发送回入射侧光波导部分,并允许入射光束的一部分 通过。 在波分复用器和出射侧光波导部分之间,设置偏振无关型光隔离器。 在波分多路复用器和入射侧光波导部分之间,设置第一透镜,并且在波分复用器和偏振无关型光隔离器之间设置第二透镜。
    • 16. 发明授权
    • Ammonium gas sensor
    • 铵气传感器
    • US08465636B2
    • 2013-06-18
    • US12390567
    • 2009-02-23
    • Satoshi SugayaShiro KakimotoHiroyuki NishiyamaWataru Matsutani
    • Satoshi SugayaShiro KakimotoHiroyuki NishiyamaWataru Matsutani
    • G01N27/407
    • G01N27/4077G01N27/4075G01N33/0054Y02A50/246
    • An ammonium gas sensor is provided. The ammonium gas sensor includes: a solid electrolyte layer having oxygen ion conductivity; a detection electrode formed on one surface of the solid electrolyte layer; a reference electrode that is a counter electrode of the detection electrode; a selective reaction layer covering the detection electrode; and a protection layer covering the selective reaction layer and made from a porous material; wherein the detection electrode includes a noble metal as a main component; the selective reaction layer includes oxide represented by AxMyOz as a main component, where A is one or more kind(s) of metal, M is vanadium, tungsten, or molybdenum and x, y, z are atomic ratios; and the protection layer includes the oxide that is in an amount smaller than a content of the oxide included in the selective reaction layer.
    • 提供了一种铵气体传感器。 铵气体传感器包括:具有氧离子传导性的固体电解质层; 形成在所述固体电解质层的一个表面上的检测电极; 作为检测电极的对电极的参考电极; 覆盖检测电极的选择性反应层; 以及覆盖选择性反应层并由多孔材料制成的保护层; 其中所述检测电极包括贵金属作为主要成分; 选择性反应层包括由AxMyOz表示的氧化物作为主要成分,其中A是一种或多种金属,M是钒,钨或钼,x,y,z是原子比; 并且保护层包括的量小于选择性反应层中包含的氧化物的含量的氧化物。