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    • 2. 发明授权
    • Combustible gas detection apparatus and combustible gas sensor control method
    • 可燃气体检测仪和可燃气体传感器控制方法
    • US08918289B2
    • 2014-12-23
    • US13086810
    • 2011-04-14
    • Masaya WatanabeRyuji Inoue
    • Masaya WatanabeRyuji Inoue
    • G01N31/00G01N7/00G01N27/12
    • G01N27/128
    • There is provided a combustible gas detection apparatus with a gas sensor and a control device. The gas sensor includes first and second heating resistors each having a resistance that changes depending on a combustible gas concentration of gas under measurement. The control device includes an energization control section that alternately energizes the first and second heating resistors, a first calculation section that calculates a first calculation value responsive to the combustible gas concentration based on a voltage across the first heating resistor during energization of the first heating resistor, a second calculation section that calculates a second calculation value responsive to the combustible gas concentration based on a voltage across the second heating resistor during energization of the second heating resistor, and an anomaly judgment section that judges the occurrence of an anomaly in the first heating resistor by comparison of the first and second calculation values.
    • 提供了具有气体传感器和控制装置的可燃气体检测装置。 气体传感器包括第一和第二加热电阻器,每个电阻器具有随测量气体的可燃气体浓度而变化的电阻。 所述控制装置包括通电控制部,所述通电控制部使所述第一和第二加热电阻交替通电;第一计算部,其基于所述第一加热电阻器的通电期间的所述第一加热电阻器的电压,计算响应于所述可燃气体浓度的第一计算值 第二计算部,其在第二加热电阻器通电期间,基于第二加热电阻器两端的电压,计算响应于可燃气体浓度的第二计算值;以及异常判定部,其判断第一加热中的异常的发生 电阻器通过比较第一和第二计算值。
    • 4. 发明授权
    • Content processing apparatus and content protection program
    • 内容处理设备和内容保护程序
    • US07487547B2
    • 2009-02-03
    • US10491963
    • 2002-10-11
    • Shinichi NakaiNaohiko NoguchiShinichi MatsuiTaihei YagawaShunji HaradaRyuji Inoue
    • Shinichi NakaiNaohiko NoguchiShinichi MatsuiTaihei YagawaShunji HaradaRyuji Inoue
    • H04L9/00
    • G06F21/10G06F2221/0711H04M1/66H04M1/72522H04M1/72558H04M2250/14
    • A contents processing device permitting, when contents are to be stored in a recording medium, only a specified device to read out the stored contents is to be provided, and a contents processing device capable, where it is a mobile telephone, of flexibly adapting to a change of a unique telephone number or a type of the mobile telephone. For the purpose, the contents processing device for inputting and outputting contents to and from a recording medium is provided with contents storage means (RAM) for storing contents, an ID storage unit (ROM) for storing an ID capable of identifying the contents processing device, a recording medium input/output unit (memory card I/F) for inputting to and outputting from the recording medium, and a ciphering unit (ciphering program) for enciphering contents within the contents storage unit by use of a ciphering key generated from the ID within the ID storage unit and storing it from the recording medium input/output unit into the recording medium.
    • 内容处理装置允许当内容被存储在记录介质中时,仅提供用于读出存储的内容的指定设备,以及能够在移动电话的位置灵活地适应于 改变唯一的电话号码或移动电话的类型。 为此,用于向记录介质输入和输出内容的内容处理装置设置有用于存储内容的内容存储装置(RAM),用于存储能够识别内容处理装置的ID的ID存储单元(ROM) ,用于输入和输出记录介质的记录介质输入/输出单元(存储卡I / F)和用于通过使用从该存储单元生成的加密密钥对内容存储单元内的内容进行加密的加密单元(加密程序) ID,并将其从记录介质输入/输出单元存储到记录介质中。
    • 5. 发明申请
    • APPARATUS AND METHOD FOR DETECTING COMBUSTIBLE GAS WITHIN ATMOSPHERE TO BE DETECTED
    • 检测大气中可燃气体的装置和方法
    • US20080282771A1
    • 2008-11-20
    • US12015699
    • 2008-01-17
    • Shogo HamataniShoji KitanoyaRyuji Inoue
    • Shogo HamataniShoji KitanoyaRyuji Inoue
    • G01N33/00G01N25/00
    • G01N27/16
    • In apparatus and method for detecting a combustible gas within an atmosphere to be detected, a calculated humidity deviation corresponding to a past gas concentration stored in a memory unit of a microcomputer is calculated on the basis of a correlation between a preset gas concentration of the combustible gas and the calculated humidity deviation, a calculated humidity of the atmosphere to be detected is corrected using the calculated humidity deviation to calculate a corrected humidity, and, when a concentration of the combustible gas is calculated on the basis of a terminal voltage, a temperature of the atmosphere to be detected, and a humidity of the atmosphere to be detected, the calculated corrected humidity is used for the humidity of the atmosphere to be detected calculated on the basis of terminal voltages across first and second heating resistors and the temperature of the detected temperature.
    • 在检测到的气氛中的可燃气体的检测装置和方法中,根据存储在微型计算机的存储单元中的过去气体浓度的计算出的湿度偏差,根据可燃气体的预设气体浓度 气体和计算出的湿度偏差,使用计算出的湿度偏差校正要检测的气氛的计算湿度,以计算校正湿度,并且当基于端电压计算可燃气体的浓度时, 要检测的气氛和要检测的气氛的湿度,根据第一和第二加热电阻器上的端子电压计算出的计算出的校正湿度用于要检测的大气的湿度,并且根据 检测温度。
    • 8. 发明申请
    • DEVELOPING DEVICE, PROCESS UNIT, AND IMAGE FORMING APPARATUS
    • 开发设备,处理单元和图像形成装置
    • US20080175626A1
    • 2008-07-24
    • US11965198
    • 2007-12-27
    • Shin MurayamaShuuichi NakagawaRyuji InoueShintaro Yamada
    • Shin MurayamaShuuichi NakagawaRyuji InoueShintaro Yamada
    • G03G15/08
    • G03G15/0887G03G15/0889
    • A developing device that prevents the formation of agglomerated masses of developing agent in the bottom of the developing agent housing chamber near the developing roller and the supply roller, and that maintains the fluidity of the developing agent in the bottom of the developing agent housing chamber, while minimizing any increase in size of the developing device. The developing device includes an agitator disposed higher than the developing roller, the regulating blade, and the supply roller, and that agitates a non-magnetic one component developing agent within the developing agent housing chamber; and a developing agent ingress prevention member disposed higher than the supply roller, and lower than the agitator, and the side surface or edge portion of the developing agent ingress prevention member near the developing roller is higher than the topmost point of the supply roller, and lower than the lowermost point of the regulating nip formed by the contact of the developing roller and the regulating blade.
    • 一种显影装置,其防止在显影辊和供给辊附近的显影剂容纳室的底部形成团聚的显影剂,并且保持显影剂在显影剂容纳室底部的流动性, 同时最小化显影装置的尺寸的任何增加。 显影装置包括设置在显影辊,调节刮板和供应辊上方的搅拌器,并且搅拌显影剂容纳室内的非磁性单一成分显影剂; 以及设置在供给辊以上且低于搅拌器的显影剂入口防止部件,显影剂抵接部件的靠近显影辊的侧面或边缘部分高于供给辊的最高点,并且 低于由显影辊和调节叶片的接触形成的调节压区的最低点。
    • 10. 发明授权
    • Hydrogen gas sensor
    • 氢气传感器
    • US07276141B2
    • 2007-10-02
    • US10628400
    • 2003-07-29
    • Norihiko NadanamiNorobu IshidaTakafumi OshimaRyuji InoueTomonori Kondo
    • Norihiko NadanamiNorobu IshidaTakafumi OshimaRyuji InoueTomonori Kondo
    • G01N27/407
    • G01N27/4074G01N33/005
    • A hydrogen gas sensor capable of accurately measuring hydrogen concentration of a measurement gas atmosphere in the presence of a variety of interfering gasses such as H2O and CO. In the hydrogen gas sensor, the flow sectional area of a diffusion-rate limiting portion 6 is rendered small; the electrode surfaces of first and second electrodes 3 and 4 are rendered large; and/or a solution containing a polymer electrolyte which may be identical to that of a proton-conductive layer 2 is applied onto the surfaces of the first and second electrodes 3 and 4 to thereby form a layer containing the polymer electrolyte. Thus, the rate of conduction of protons from the first electrode 3 to the second electrode 4 becomes greater than the rate at which protons are derived from hydrogen which is introduced onto the first electrode 3 via the diffusion-rate limiting portion 6.
    • 一种氢气传感器,能够在各种干扰气体如H 2 O和CO存在下精确测量测量气体气氛的氢浓度。在氢气传感器中,流量截面积 扩散速率限制部分6变小; 第一和第二电极3和4的电极表面变大; 和/或含有与质子传导层2相同的聚合物电解质的溶液施加到第一和第二电极3和4的表面上,从而形成含有聚合物电解质的层。 因此,从第一电极3到第二电极4的质子传导速率变得比通过扩散速率限制部分6被引入到第一电极3上的氢导出质子的速率大。