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    • 1. 发明授权
    • Solid electrolyte gas concentration detector
    • 固体电解质气体浓度检测仪
    • US5985118A
    • 1999-11-16
    • US958388
    • 1997-10-27
    • Daisuke MakinoKeigo MizutaniHisayoshi OhtaYoshimasa HijikataKanehito NakamuraHiroshi Mori
    • Daisuke MakinoKeigo MizutaniHisayoshi OhtaYoshimasa HijikataKanehito NakamuraHiroshi Mori
    • G01N27/416G01N27/407G01N27/26
    • G01N27/4074
    • A gas concentration detector using solid electrolyte layers laminated measures a concentration of gas constituents in measuring gas such as exhaust gas of an internal combustion engine without being influenced by oxygen concentration in the measuring gas. The measuring gas is introduced into an inner cavity of the detector and outside air as a reference gas is introduced into an air passage in the detector. Oxygen concentration in the measuring gas in the inner cavity is maintained at a predetermined level by operation of an oxygen pumping cell constituted by an ion conductive solid electrolyte layer and a pair of electrodes formed on both surfaces of the layer. The oxygen concentration in the inner cavity is measured by an oxygen sensor cell having one electrode exposed to the inner cavity and the other electrode exposed to the reference gas. The concentration of the gas constituents in the measuring gas is measured in terms of ion current generated in a detector cell constituted by an ion conductive solid electrolyte layer and a pair of electrodes formed on both surfaces of the layer, one electrode being exposed to the measuring gas in the inner cavity and the other exposed to the reference gas in the air passage. Either one of the sensor cell and detector cell electrodes exposed to the measuring gas in the inner cavity is made of a material active to the gas constituents to be measured and the other electrode is made of a material inactive thereto.
    • 使用固体电解质层层压的气体浓度检测器不受测量气体中的氧浓度的影响而测量诸如内燃机的废气的测量气体中的气体成分的浓度。 当检测器中的空气通道中引入参考气体时,测量气体被引入到检测器和外部空气的内腔中。 通过由离子传导固体电解质层和形成在该层的两个表面上的一对电极构成的氧抽吸电池的操作将内腔中的测量气体中的氧浓度保持在预定水平。 通过具有暴露于内腔的一个电极和暴露于参考气体的另一电极的氧传感器单元来测量内腔中的氧浓度。 测量气体中气体组分的浓度以离子导电固体电解质层和形成在该层的两个表面上的一对电极构成的检测器电池中产生的离子电流来测量,一个电极暴露于测量 内腔中的气体,另一个暴露于空气通道中的参考气体。 暴露于内腔中的测量气体的传感器单元和检测器单元电极中的任何一个由对待测量的气体成分有活性的材料制成,另一个电极由对其无活性的材料制成。
    • 2. 发明授权
    • Solid electrolyte gas sensor
    • 固体电解质气体传感器
    • US6068747A
    • 2000-05-30
    • US22485
    • 1998-02-12
    • Senta TojoMakoto SaitoKeigo MizutaniHiroshi MoriYushi Fukuda
    • Senta TojoMakoto SaitoKeigo MizutaniHiroshi MoriYushi Fukuda
    • G01N27/417G01N33/00G01N27/407
    • G01N27/417G01N33/0037
    • A gas sensor using oxygen-ion-conductive solid electrolyte layers measures a concentration of a constituent gas such as NOx in a gas mixture such as an exhaust gas mixture of an internal combustion engine. The gas sensor includes a pair of oxygen pumping cells and a sensor cell. Before the constituent gas concentration is measured by the sensor cell, oxygen gas contained in the gas mixture has to be purged because the oxygen gas adversely affects the measurement of the constituent gas concentration. Two pumping cells disposed to face a chamber, into which the gas mixture is introduced, pump out the oxygen gas contained in the gas mixture so that the oxygen concentration is reduced substantially zero. Then, the gas mixture is diffused to the sensor cell where the constituent gas concentration is measured without the adverse influence of the oxygen gas. A marginal ion current which is proportional to the constituent gas concentration is measured by the sensor cell with a high accuracy and sensitivity.
    • 使用氧离子传导固体电解质层的气体传感器测量诸如内燃机的排气混合物的气体混合物中的诸如NOx的组成气体的浓度。 气体传感器包括一对氧气泵浦单元和传感器单元。 在通过传感器单元测量构成气体浓度之前,由于氧气不利地影响构成气体浓度的测量,所以必须清除气体混合物中所含的氧气。 设置为面对引入气体混合物的室的两个泵送单元泵出包含在气体混合物中的氧气,使得氧浓度基本上降低为零。 然后,气体混合物扩散到测量组分气体浓度而不受氧气的不利影响的传感器单元。 与组成气体浓度成比例的边际离子电流由传感器单元以高精度和灵敏度测量。
    • 4. 发明授权
    • Two-dimensional code generating device
    • 二维码生成装置
    • US08351086B2
    • 2013-01-08
    • US12137289
    • 2008-06-11
    • Hiroshi Mori
    • Hiroshi Mori
    • H04N1/40
    • G06K17/00G06K15/02G06K15/1852
    • The present invention provides a printing device optimizing information to be embedded by merging pieces of information of respective pages into a single piece of information in N-up printing. The printing device generates the information to be embedded according to a result of analyzing print parameters in print data when performing embedding printing processing of the information to be embedded for the print data in a machine-recognizable manner. That is, in the printing device, a unit of generating information to be embedded acquires respective pieces of information of M pages (1≦M≦N), analyzes the acquired respective pieces of information to be embedded, and generates a single piece of information to be embedded merging the respective pieces of information to be embedded based on the analysis result of the respective pieces of information to be embedded, when N-up printing is designated.
    • 本发明提供一种通过在N-up打印中将各页的信息合并为单个信息来优化待嵌入信息的打印装置。 当以机器可识别的方式对打印数据嵌入的信息进行嵌入打印处理时,打印装置根据打印数据中的打印参数的分析结果生成要嵌入的信息。 也就是说,在打印装置中,生成要嵌入的信息的单元获取M页(1≦̸ M≦̸ N)的各条信息,分析所获取的各个要嵌入的信息,并生成单个信息 当指定N-up打印时,基于要嵌入的各个信息段的分析结果嵌入合并要嵌入的各个信息段。
    • 5. 发明申请
    • IMAGE FORMING APPARATUS, IMAGE FORMING METHOD, AND COMPUTER-READABLE MEDIUM
    • 图像形成装置,图像形成方法和计算机可读介质
    • US20120320390A1
    • 2012-12-20
    • US13482252
    • 2012-05-29
    • Hiroshi Mori
    • Hiroshi Mori
    • H04N1/60
    • G06K15/1851G06K15/1852
    • An image forming apparatus which divides image data into predetermined unit blocks and forms an image, the apparatus comprises: a determination unit that determines continuous block lines, that include closed regions having identical components, among a plurality of block lines included in a block; a generation unit that generates data of an intermediate language of each of the blocks using pieces of information of the plurality of block lines and the determination result obtained by the determination unit; a selection unit that selects an image forming method corresponding to the data of the intermediate language of each of the blocks, that is generated by the generation unit; and a forming unit that forms an image of the data of the intermediate language of each of the blocks, in accordance with the image forming method selected by the selection unit.
    • 一种图像形成装置,其将图像数据分割成预定的单位块并形成图像,所述装置包括:确定单元,确定包括在块中的多个块线之间的包括具有相同分量的封闭区域的连续块线; 生成单元,其使用所述多个块行的信息和由所述确定单元获得的所述确定结果生成每个所述块的中间语言的数据; 选择单元,其选择与由生成单元生成的每个块的中间语言的数据相对应的图像形成方法; 以及形成单元,其根据由选择单元选择的图像形成方法形成每个块的中间语言的数据的图像。
    • 6. 发明授权
    • Pixel data resolution-adjustment and composition in overlap area
    • 像素数据分辨率调整和重叠区域的组合
    • US08325381B2
    • 2012-12-04
    • US12273683
    • 2008-11-19
    • Hiroshi Mori
    • Hiroshi Mori
    • G06K15/02
    • H04N1/40068H04N1/3871
    • An image processing apparatus includes an input unit which inputs a plurality of image object data, an acquisition unit which acquires resolution information and area information, a generation unit which generates image data based on the resolution information and stores the image data in a memory unit, an extraction unit which extracts overlap area information and resolution information of each of the image objects, and a composition unit which reads out, from the memory unit, pixel data corresponding to a pixel position of interest in accordance with the area information, if a plurality of pixel data existing at the pixel position of interest are located in the overlap area, converts one of the plurality of pixel data in accordance with higher resolution information extracted by the extraction unit, composites the converted pixel data with the other pixel data, and outputs the pixel data.
    • 图像处理装置包括输入多个图像对象数据的输入单元,获取分辨率信息和区域信息的获取单元,基于分辨率信息生成图像数据的生成单元,并将图像数据存储在存储单元中, 提取单元,其提取每个图像对象的重叠区域信息和分辨率信息;以及合成单元,其从存储单元读取与所述区域信息相对应的与感兴趣的像素位置相对应的像素数据,如果多个 存在于感兴趣的像素位置的像素数据位于重叠区域中,根据由提取单元提取的较高分辨率信息,转换多个像素数据之一,将转换的像素数据与其他像素数据合成,并输出 像素数据。
    • 7. 发明申请
    • SYSTEM FOR PREVENTING ESTABLISHMENT OF UNAUTHORIZED COMMUNICATION
    • 防止未通知通信建立的系统
    • US20120139691A1
    • 2012-06-07
    • US13306324
    • 2011-11-29
    • Hiroshi Mori
    • Hiroshi Mori
    • G05B19/00
    • H04W12/08B60R25/24G07C9/00309G07C2009/00373G07C2009/00793G07C2209/63H04L63/0853
    • A system that prevents unauthorized establishment of wireless bidirectional communication between a communication master and a communication terminal. The system includes a strength measurement signal transmission circuit that transmits a received signal strength measurement signal, which is used to measure received signal strength at the communication terminal, a number of times with different transmission strengths during a single wireless bidirectional communication session. A received signal strength measurement circuit measures the received signal strength of the received signal strength measurement signal whenever the received signal strength measurement signal is received by the communication terminal. A measurement result transmission circuit transmits received signal strength measurement results as a single response signal to the communication master from the communication terminal during the single communication session. A check circuit checks whether the current bidirectional communication is authorized based on the received signal strength measurement results from the communication terminal.
    • 一种防止在通信主机和通信终端之间未经授权地建立无线双向通信的系统。 该系统包括强度测量信号发送电路,其在单个无线双向通信会话期间发送用于在通信终端测量接收信号强度的接收信号强度测量信号,具有不同传输强度的次数。 接收信号强度测量电路每当通信终端接收到接收信号强度测量信号时,测量接收信号强度测量信号的接收信号强度。 测量结果传输电路在单个通信会话期间将来自通信终端的接收信号强度测量结果作为单个响应信号发送到通信主设备。 基于来自通信终端的接收信号强度测量结果,检查电路检查当前双向通信是否被授权。
    • 8. 发明授权
    • Short circuit protection circuit
    • 短路保护电路
    • US08139333B2
    • 2012-03-20
    • US12420516
    • 2009-04-08
    • Takao ImaiHiroshi MoriJun ItoHisao Niwa
    • Takao ImaiHiroshi MoriJun ItoHisao Niwa
    • H02H3/00H02H5/00H02H3/06
    • H01H47/002H01H47/32
    • A short circuit protection circuit which readily recovers a relay drive circuit to an output operation state after a short circuit is cancelled while preventing the relay drive circuit from being damaged by a short circuit. The relay drive circuit outputs a drive current to a load in accordance with a first control signal. A short circuit detection circuit detects the occurrence of a short circuit at an output side of the relay drive circuit and suspends output operation of the relay drive circuit when a short circuit occurs. Further, the short circuit detection circuit intermittently transmits a recovery signal to the relay drive circuit in a certain time interval after a predetermined time elapses from when the short circuit occurs to recover the output operation of the relay drive circuit. The time interval is gradually increased whenever the recovery signal is transmitted.
    • 一种短路保护电路,其能够在阻止继电器驱动电路被短路损坏的同时,将继电器驱动电路容易地恢复到短路后的输出动作状态。 继电器驱动电路根据第一控制信号向负载输出驱动电流。 短路检测电路检测在继电器驱动电路的输出侧出现短路,并且在短路发生时暂停继电器驱动电路的输出动作。 此外,短路检测电路在从短路发生开始经过预定时间之后,以一定的时间间隔将恢复信号发送到继电器驱动电路,以恢复继电器驱动电路的输出操作。 每当发送恢复信号时,时间间隔逐渐增加。