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    • 1. 发明授权
    • Fine particle detection system
    • 细颗粒检测系统
    • US08823384B2
    • 2014-09-02
    • US13444057
    • 2012-04-11
    • Toshiya MatsuokaMasayuki MotomuraTakeshi SugiyamaKeisuke TashimaHitoshi Yokoi
    • Toshiya MatsuokaMasayuki MotomuraTakeshi SugiyamaKeisuke TashimaHitoshi Yokoi
    • G01N27/70G01N15/06
    • G01N15/0656F01N2560/05
    • There is provided a fine particle detection system with a fine particle sensor, a cable and a sensor drive control device. The fine particle sensor has an ion source unit with first and second electrodes, a particle charging unit and inner and outer sensor casings. The cable has a power supply wiring line connected to the second electrode, an inner shield line electrically continuous with the inner sensor casing and an outer shield line electrically continuous with the outer sensor casing. The sensor drive control device has an ion-source power supply circuit, a signal current detection circuit, an inner circuit casing electrically continuous with a first output terminal of the ion-source power supply circuit and surrounding the ion-source power supply circuit and an outer circuit casing connected to the ground potential and shielding the ion-source power supply circuit, the signal current detection circuit and the inner circuit casing.
    • 提供了具有细颗粒传感器,电缆和传感器驱动控制装置的精细粒子检测系统。 微粒传感器具有带有第一和第二电极的离子源单元,粒子充电单元和内部和外部传感器外壳。 电缆具有与第二电极连接的电源配线,与内传感器外壳电连接的内屏蔽线和与外传感器外壳电气连接的外屏蔽线。 传感器驱动控制装置具有离子源电源电路,信号电流检测电路,与离子源电源电路的第一输出端子电连接并且包围离子源电源电路的内部电路壳体,以及 外部电路壳体连接到地电位并屏蔽离子源电源电路,信号电流检测电路和内部电路外壳。
    • 2. 发明授权
    • Fine particle sensor and mounting structure therefor
    • 精细粒子传感器及其安装结构
    • US08652240B2
    • 2014-02-18
    • US13422379
    • 2012-03-16
    • Takeshi SugiyamaMasayuki MotomuraToshiya MatsuokaKeisuke TashimaHitoshi Yokoi
    • Takeshi SugiyamaMasayuki MotomuraToshiya MatsuokaKeisuke TashimaHitoshi Yokoi
    • B03C3/34
    • G01N15/0656F01N13/008F01N2560/05G01N1/2252
    • There is provided a fine particle sensor for detecting fine particles in exhaust gas, including an ion generating unit for generating ions by corona discharge, a charging unit for charging the fine particles by some of the generated ions, an ion trapping unit for trapping a remainder of the generated ions and a casing for accommodating therein the charging unit and the ion trapping unit in a given arrangement direction. The casing has a gas inlet hole and a gas outlet hole formed in a circumferential wall thereof so that the exhaust gas flows in the charging unit through the gas inlet hole and flows out of the ion trapping unit through the gas outlet hole. The gas inlet hole and the gas outlet hole are arranged in such a manner as to at least partially overlap each other when viewed in the given arrangement direction.
    • 提供了一种用于检测废气中的微粒的细粒子传感器,包括用于通过电晕放电产生离子的离子产生单元,用于通过一些所产生的离子对微粒进行充电的充电单元,用于捕获剩余部分的离子捕获单元 的产生的离子,以及用于在给定的布置方向上容纳充电单元和离子捕获单元的壳体。 壳体具有形成在其周壁中的气体入口孔和气体出口孔,使得废气通过气体入口孔在充电单元中流动,并通过气体出口孔流出离子捕获单元。 气体入口孔和气体出口孔以在给定的布置方向上观察时至少部分地彼此重叠的方式布置。
    • 5. 发明授权
    • Piezoelectric vibrator, piezoelectric vibrator mounting body, and piezoelectric vibrator manufacturing method
    • 压电振动器,压电振动器安装体和压电振子的制造方法
    • US08415862B2
    • 2013-04-09
    • US13196356
    • 2011-08-02
    • Takeshi Sugiyama
    • Takeshi Sugiyama
    • H01L41/08
    • H03H9/1021Y10T29/42
    • This piezoelectric vibrator is provided with a package that is structured to include a first substrate and a second substrate that are bonded to each other such that a cavity is formed therebetween, an internal electrode portion that is formed on the first substrate and housed in the cavity, a piezoelectric vibrating reed that is sealed in the cavity and also is electrically connected to the internal electrode portion in the cavity, an external electrode portion that is formed on an external surface of the first substrate, a through electrode portion that is disposed so as not to be overlapped by the external electrode portion in a thickness direction of the first substrate, while one end of the through electrode portion is electrically connected to the internal electrode portion and another end of the through electrode portion is formed on the external surface of the first substrate while penetrating through the first substrate, and a routing wiring portion that electrically connects the through electrode portion and the external electrode portion.
    • 该压电振动器设置有包括被构造成包括第一基板和第二基板的封装,第一基板和第二基板彼此接合以形成空腔,内部电极部分形成在第一基板上并容纳在空腔中 ,密封在所述空腔中并且还与所述空腔中的内部电极部分电连接的压电振动片,形成在所述第一基板的外表面上的外部电极部分,所述通孔电极部分设置为 在第一基板的厚度方向上不与外部电极部分重叠,而通孔电极部分的一端电连接到内部电极部分,并且通孔电极部分的另一端形成在第二基板的外表面上 第一基板,以及电连接的布线布线部 贯通电极部和外部电极部。
    • 6. 发明授权
    • Piezoelectric vibrating piece having arm ends with excitation electrodes of opposite polarity and piezoelectric vibrator, oscillatory, electronic apparatus and radio wave timepiece having same
    • 压电振动片具有具有相反极性的激励电极的臂端和具有相同极性的压电振动器,振荡器,电子设备和无线电波表
    • US08053957B2
    • 2011-11-08
    • US12372264
    • 2009-02-17
    • Takeshi Sugiyama
    • Takeshi Sugiyama
    • H03H9/19
    • H03H9/21H03H3/02H03H9/1021H03H2003/026Y10T29/42
    • To achieve small-sized formation by shortening a total length after ensuring a length of a base portion capable of sufficiently reducing vibration leakage, there is provided a piezoelectric vibrating piece 2 including a piezoelectric plate 10 including a pair of vibrating arm portions 11, 12 arranged in parallel with each other in a state of being extended in one direction from base ends to front ends, and a base portion 13 having connecting portions 13a respectively connected to the pair of vibrating arm portions at middle positions from the base ends to the front ends for integrally supporting the pair of vibrating arm portions by way of the connecting portions, exciting electrodes 20, 21 respectively formed on outer surfaces of the pair of vibrating arm portions for vibrating the pair of vibrating arm portions when a drive voltage is applied thereto, a pair of mount electrodes 22, 23 formed on an outer surface of the base portion and electrically connected respectively to the pair of exciting electrodes, in which at least a portion of the base portion is arranged to be interposed between the pair of vibrating arm portions.
    • 为了在确保能够充分减少振动泄漏的基部的长度之后缩短总长度来实现小型化,提供了一种压电振动片2,其包括压电板10,压电板10包括一对振动臂部11,12, 在从基端到前端的一个方向上延伸的状态彼此平行,以及在从基端到前端的中间位置分别连接有一对振动臂部的连接部13a的基部13 用于通过连接部分一体地支撑一对振动臂部分,分别形成在一对振动臂部分的外表面上的激励电极20,21,用于当施加驱动电压时振动一对振动臂部分, 一对安装电极22,23形成在基部的外表面上并分别电连接到对o f激励电极,其中所述基部的至少一部分布置成插入在所述一对振动臂部之间。
    • 9. 发明申请
    • METHOD FOR MANUFACTURING PACKAGE, METHOD OF MANUFACTURING PIEZOELECTRIC VIBRATOR, OSCILLATOR, ELECTRONIC DEVICE, AND RADIO-CONTROLLED TIMEPIECE
    • 制造包装的方法,制造压电振动器的方法,振荡器,电子装置和无线电控制时序
    • US20110050043A1
    • 2011-03-03
    • US12868062
    • 2010-08-25
    • Takeshi Sugiyama
    • Takeshi Sugiyama
    • H01L41/053H01L41/22
    • H03H9/21G04R20/10H03H3/02H03H9/1021H03H2003/022Y10T29/42Y10T29/49005Y10T29/49126Y10T29/49574
    • Providing a method for manufacturing a package capable of achieving reliable anodic bonding between the bonding material 35 and a base board wafer 40 even when the bonding material 35 having a large resistance value is used. Providing a method for manufacturing a package by anodically bonding a bonding material 35, which is fixed in advance to an inner surface of a lid board wafer 50 made of an insulator, to an inner surface of a base board wafer 40 made of an insulator, the method including an anodic bonding step where an auxiliary bonding material 72 serving as an anode is disposed on an outer surface of the lid board wafer 50, a cathode 71 is disposed on an outer surface of the base board wafer 40, and a voltage is applied between the auxiliary bonding material 72 and the cathode 71, wherein the auxiliary bonding material 72 is made of a material that causes an anodic bonding reaction between the auxiliary bonding material 72 and the lid board wafer 50 in the anodic bonding step.
    • 即使使用具有大电阻值的接合材料35,也提供一种制造能够实现接合材料35和基板晶片40之间的可靠的阳极接合的封装的方法。 提供一种通过将预先固定在由绝缘体制成的盖板晶片50的内表面固定的接合材料35阳极接合到由绝缘体制成的基板晶片40的内表面上来制造封装的方法, 该方法包括阳极结合步骤,其中作为阳极的辅助接合材料72设置在盖板晶片50的外表面上,阴极71设置在基板晶片40的外表面上,电压为 施加在辅助接合材料72和阴极71之间,其中辅助接合材料72由在阳极接合步骤中引起辅助接合材料72和盖板晶片50之间的阳极接合反应的材料制成。
    • 10. 发明申请
    • Tire Holding Unit, Molding Dies Having the Same, and Tire Vulcanization Method Using the Same
    • 轮胎保持单元,成型模具相同,轮胎硫化方法使用相同
    • US20080054534A1
    • 2008-03-06
    • US11631491
    • 2005-07-06
    • Takeshi Sugiyama
    • Takeshi Sugiyama
    • B29D30/28
    • B29D30/0662B29D30/0016
    • The purpose is to provide a convenient-to-use tire holding unit which allows vulcanization molding to be efficiently carried out, and prevents a green tire from being deformed, molding dies having the same, and a tire vulcanization method using the same. Molding dies 12 have a tire holding unit 14 for holding a green tire 30; a lower die main body 28; and an upper die main body 22. The tire holding unit 14 includes a center post 16 which is freely mountable to and dismountable from the molding dies 12; a bladder 18 mounted to the center post 16; and a central upper die part 24 and a central lower die part 26 mounted to the center post 16 at either end side of the bladder, respectively. The central upper die part 24 is freely mountable to and dismountable from the center post 16. In addition, the die-radial outside edge 26E of the central lower die part 26 is located at an outer side in a die radial direction of a location which corresponds to half the tire section height H of the molding dies 12. The upper die main body 22 and the central upper die part 24 constitute an upper die 21, and the lower die main body 28 and the central lower die part 26 constitute a lower die 29.
    • 其目的是提供一种便于使用的轮胎保持单元,其能够有效地进行硫化成型,并且防止生胎发生变形,使其成型模具和使用该轮胎硫化的轮胎硫化方法。 成型模具12具有用于保持生轮胎30的轮胎保持单元14; 下模主体28; 和上模主体22.轮胎保持单元14包括可自由安装到成型模具12上并可拆卸的中心柱16; 安装到中心柱16的囊18; 以及分别在气囊的任一端侧安装到中心柱16的中央上模部24和中央下模部26。 中心上模部件24可自由地安装到中心柱16上并且可拆卸。另外,中心下模具部分26的模具 - 径向外边缘26E位于模具径向方向外侧 对应于成型模具12的轮胎截面高度H的一半。上模主体22和中央上模部24构成上模21,下模主体28和中央下模部26构成 下模29。