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    • 1. 发明授权
    • Devices for detecting accumulation amount of particulates
    • 用于检测颗粒堆积量的装置
    • US08161807B2
    • 2012-04-24
    • US12721826
    • 2010-03-11
    • Jungo KondoKeiji MatsuhiroKenji AokiAtsuo Kondo
    • Jungo KondoKeiji MatsuhiroKenji AokiAtsuo Kondo
    • G01M15/10
    • F01N11/00Y02T10/47
    • A device for detecting particulates includes: a filter; a filter container; an upstream pipe; a downstream pipe; an upstream detecting unit; and a downstream detecting unit. The upstream detecting unit has a branch flow route for receiving gas from the upstream pipe, a trapping portion, a transmitting portion for transmitting an electromagnetic wave to the trapping portion, and a receiving portion for receiving an electromagnetic wave from the trapping portion. The downstream detecting unit has a branch flow route for receiving gas from the downstream pipe, a trapping portion, a transmitting portion for transmitting an electromagnetic wave to the trapping portion, and a receiving portion for receiving an electromagnetic wave from the trapping portion. The amount of the particulates trapped in the filter is detected based on a difference between detection values of the mass of the particulates trapped in the upstream and downstream trapping portions.
    • 用于检测微粒的装置包括:过滤器; 过滤容器; 上游管道 下游管道 上游检测单元; 和下游检测单元。 上游检测单元具有用于从上游管接收气体的分支流动路径,捕获部分,用于将电磁波发送到捕获部分的发送部分和用于从捕获部分接收电磁波的接收部分。 下游检测单元具有用于从下游管接收气体的分支流动路径,捕获部分,用于将电磁波发送到捕获部分的发送部分和用于从捕获部分接收电磁波的接收部分。 基于捕集在上游捕集部和下游捕获部中的微粒的质量的检测值之差来检测捕集在过滤器中的微粒的量。
    • 2. 发明授权
    • Devices for detecting accumulation amount of particulates
    • 用于检测颗粒堆积量的装置
    • US08210033B2
    • 2012-07-03
    • US12721797
    • 2010-03-11
    • Jungo KondoKeiji MatsuhiroKenji AokiAtsuo Kondo
    • Jungo KondoKeiji MatsuhiroKenji AokiAtsuo Kondo
    • G01M15/10
    • F01N9/002F01N2560/05F01N2560/12Y02T10/47
    • A device for detecting an accumulation amount of particulates is provided. The device has a filter for trapping particulates from a gas containing the particulates, a container for containing the filter, an upstream pipe provided on the upstream side of the container to lead the gas into the container, a downstream pipe provided on the downstream side of the container to lead the gas after passed through the filter, a transmitting antenna provided within the downstream pipe to transmit an electromagnetic wave having a frequency of 30 GHz or more but not exceeding 10 THz, and a receiving antenna provided within the upstream pipe to receive the electromagnetic wave. An amount of the particulates trapped in the filter is detected based on an intensity of the electromagnetic wave received by the receiving antenna.
    • 提供了一种用于检测微粒堆积量的装置。 该装置具有用于捕集来自含有微粒的气体的微粒的过滤器,容纳过滤器的容器,设置在容器的上游侧的上游管,将气体导入容器内,下游管 在通过过滤器之后引导气体的容器,设置在下游管道内的发射天线,以传输频率为30GHz以上但不超过10THz的电磁波,以及设置在上游管内的接收天线,以接收 电磁波。 基于由接收天线接收的电磁波的强度来检测捕获在滤波器中的微粒量。
    • 7. 发明授权
    • Optical waveguide device
    • 光波导器件
    • US07319800B2
    • 2008-01-15
    • US11560144
    • 2006-11-15
    • Kenji AokiJungo KondoAtsuo KondoOsamu Mitomi
    • Kenji AokiJungo KondoAtsuo KondoOsamu Mitomi
    • G02F1/035
    • G02F1/2255G02F1/0356G02F2203/25
    • A voltage is applied on a first branch 3a by a first ground electrode 10 and a signal electrode 11, and a voltage is applied on a second branch 3b by a second ground electrode 12A and the signal electrode 11. A first gap 13 is formed between the first ground electrode 10 and the signal electrode 11, and a second gap 14 is formed between the second ground electrode 12A and the signal electrode 11. The first gap 13 and the second gap 14 are divided into voltage applying portions 13a, 14a, feed-through portions and connection portions 13b, 14b therebetween, respectively, and satisfy the formula: G12/G11≦G22/G21
    • 第一接地电极10和信号电极11对第一分支3a施加电压,并且通过第二接地电极12A和信号电极11将电压施加在第二分支3b上。第一间隙13 形成在第一接地电极10和信号电极11之间,并且在第二接地电极12A和信号电极11之间形成第二间隙14.第一间隙13和第二间隙14被分成电压施加部分13 a,14a,馈通部分和连接部分13b,14b,分别满足下列公式:G 12 / G 11 <= G 21 表示连接部分侧的端部13c处的第一间隙13的宽度,G 22表示在第二间隙14的端部14c处的第二间隙14的宽度 连接部分侧面14c,G31表示电压施加部分13a处的第一间隙13的宽度,G 32表示第二间隙14的宽度 电压施加部分14a。
    • 10. 发明授权
    • Optical waveguide devices and traveling wave type optical modulators
    • 光波导器件和行波型光学调制器
    • US07502530B2
    • 2009-03-10
    • US10568888
    • 2004-08-19
    • Jungo KondoAtsuo KondoKenji AokiOsamu Mitomi
    • Jungo KondoAtsuo KondoKenji AokiOsamu Mitomi
    • G02F1/035
    • G02F1/0356G02F1/2255G02F2203/21
    • A device 4 has a substrate 5, an optical waveguide 2 and modulation electrodes 1A, 1B, 1C. The substrate 5 is made of an electro-optic material and has a thickness of ≦30 μm at least in a region where the modulation electrode applies an electric field. The device has a ridge generated when the optical waveguide is formed, and the ridge has a height H (angstrom) and a width “W” (μm) whose product (H×W) is 7150 angstrom·μm or smaller to realize single mode propagation of light in the optical waveguide. The wave guide has branched parts in the region where the modulation electrode applied an electric field. The deviation of positions of peaks and bottoms in the extinction ratio curve can be reduced, by increasing the distance of the branched parts of the optical waveguide to ≧46 μm.
    • 器件4具有基板5,光波导2和调制电极1A,1B,1C。 基板5由电光材料制成,至少在调制电极施加电场的区域中具有<=30μm的厚度。 该器件具有在形成光波导时产生的脊,脊的高度为H(埃),宽度“W”(母),其乘积(H×W)为7150埃或更小,以实现单模传播 在光波导中的光。 波导在调制电极施加电场的区域中具有分支部分。 通过将光波导的分支部分的距离增加到> =46μm,可以减少消光比曲线中的峰值和底部位置的偏差。