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    • 31. 发明授权
    • Gas sensor and method for manufacturing same
    • 气体传感器及其制造方法
    • US09091646B2
    • 2015-07-28
    • US13013094
    • 2011-01-25
    • Sumiko HorisakaHiroki FujitaMika MurakamiTakashi Ito
    • Sumiko HorisakaHiroki FujitaMika MurakamiTakashi Ito
    • G01N27/26G01N27/407G01N33/00
    • G01N27/4077G01N27/4075G01N33/0037Y02A50/245
    • A NOx sensor 100 includes a sensor device 110 and a heater 70 capable of heating the sensor device 110. The sensor device 110 includes an inner pump electrode 22 and an outer pump electrode 23 disposed respectively on the inner side and the outer side of a solid electrolyte layer 6. The sensor device 110 detects the concentration of NOx by introducing a gas to be measured into a first inner vacancy 20, pumping out oxygen in the gas to be measured from the inner pump electrode 22 to the outer pump electrode 23, introducing the gas to be measured, from which the oxygen has been pumped out, into a second inner vacancy 40, reducing the NOx in the gas to be measured, to thereby generate oxygen, and detecting the generated oxygen. A characteristic stabilizing layer 24 covers the outer pump electrode 23 and is made of a porous body with a thickness of 10 to 200 μm and a thickness variation of 20% or less.
    • NOx传感器100包括能够加热传感器装置110的传感器装置110和加热器70.传感器装置110包括分别设置在固体的内侧和外侧的内泵电极22和外泵电极23 电解质层6.传感器装置110通过将待测量的气体引入第一内部空间20来检测NOx的浓度,从内部泵电极22向外部泵电极23抽出待测量的气体中的氧气,引入 待被测量的气体已被排出氧气,进入第二内部空位40,减少要测量的气体中的NOx,从而产生氧气,并检测所产生的氧气。 特性稳定层24覆盖外泵电极23,由厚度为10〜200μm,厚度变化为20%以下的多孔体构成。
    • 32. 发明申请
    • GAS SENSOR
    • 气体传感器
    • US20110233060A1
    • 2011-09-29
    • US13053605
    • 2011-03-22
    • Sumiko HORISAKAHiroki FujitaMika MurakamiTakashi Ito
    • Sumiko HORISAKAHiroki FujitaMika MurakamiTakashi Ito
    • G01N27/407
    • G01N27/409G01N27/4071G01N27/4072G01N27/4074G01N27/417G01N27/419
    • A gas sensor including a sensor element constituted by an oxygen-ion conductive solid electrolyte as a main component and detecting a predetermined gas component in a measurement gas includes: an external communication part having an opening opened to the outside, and introducing the measurement gas from the outside under a predetermined diffusion resistance; an internal space communicating with the external communication part; a first electrode formed on a surface of the internal space; a second electrode formed in a space different from the internal space; and a pumping cell operable to pump out oxygen existing in the internal space when a predetermined voltage is applied between the first electrode and the second electrode. The thickness of the external communication part is 50% or more and 100% or less of the thickness of the internal space.
    • 一种气体传感器,包括由氧离子传导性固体电解质作为主要成分构成的检测测定气体中的规定气体成分的传感器元件,具有:外部连通部,具有向外部开放的开口,将测定气体从 外部在预定的扩散阻力下; 与外部通信部分通信的内部空间; 形成在所述内部空间的表面上的第一电极; 形成在与所述内部空间不同的空间中的第二电极; 以及当在第一电极和第二电极之间施加预定电压时,可操作地泵送存在于内部空间中的氧气的泵送单元。 外部连通部的厚度为内部空间的厚度的50%以上且100%以下。
    • 33. 发明申请
    • MOBILE COMMUNICATION SYSTEM, BASE STATION DEVICE, AND HANDOVER METHOD
    • 移动通信系统,基站设备和切换方法
    • US20100290428A1
    • 2010-11-18
    • US12680533
    • 2008-09-10
    • Hiroki Fujita
    • Hiroki Fujita
    • H04W36/00
    • H04W36/02
    • A communication path between base stations is switched so as to prevent data transmitted from a mobile station undergoing handover from being lost. A base station (12) which is a handover destination includes an RTP communication control unit (34) for receiving an RTP packet corresponding to a radio signal transmitted from a first mobile station from a base station which is a handover source and transferring the received RTP packet to another base station which performs a radio communication, with a second mobile station which makes a call connection with the first mobile station with a handover start of the first mobile station, a voice comparison unit (40) for determining the identity of voice information included in the received RTP packet and voice information included in a radio signal received from the first mobile station, and a transmit data switching unit (42) for switching the RTP packet transmitted by the RTP communication control unit (34) to the another base station from the RTP packet received from the handover source base station to the RTP packet corresponding to the radio signal received from the first mobile station at a timing when the identity of the voice information is confirmed.
    • 切换基站之间的通信路径,以防止正在进行切换的移动台发送的数据丢失。 作为切换目的地的基站(12)包括RTP通信控制单元(34),用于从作为切换源的基站接收与从第一移动站发送的无线电信号相对应的RTP分组,并且将所接收的RTP 分组到执行无线电通信的另一个基站,与第一移动台进行与第一移动台的切换开始进行呼叫连接的第二移动台,用于确定语音信息的身份的语音比较单元(40) 包括在从第一移动站接收的无线电信号中包括的接收的RTP分组和语音信息中的一个以及由RTP通信控制单元(34)发送的RTP分组切换到另一基站的发送数据切换单元(42) 从从切换源基站接收到的RTP分组到与从第一移动统计信号接收的无线电信号对应的RTP分组 在确认了语音信息的身份的时刻。
    • 34. 发明申请
    • COMMUNICATION DEVICE AND RADIO COMMUNICATION METHOD
    • 通信设备和无线电通信方法
    • US20100177734A1
    • 2010-07-15
    • US12602061
    • 2008-05-13
    • Hiroki Fujita
    • Hiroki Fujita
    • H04W36/00
    • H04W36/02
    • The communication device according to the present invention comprises a packet reception unit 220 for receiving packets from an opponent communication device connected to said communication device, a jitter buffer 228 for storing the packets received by said packet reception unit 220, and a continuity recognition unit 230 for causing said communication device to recognize, when handover takes place to an original opponent communication device, that packets from the original opponent communication device stored in said jitter buffer 228 and packets received from a new opponent communication device after the handover are continuous packets in the same session (FIG. 2).
    • 根据本发明的通信设备包括:分组接收单元220,用于从连接到所述通信设备的对手通信设备接收分组;抖动缓冲器228,用于存储由所述分组接收单元220接收的分组;以及连续性识别单元230 用于使所述通信装置识别当对原始对手通信装置进行切换时,存储在所述抖动缓冲器228中的原始对手通信装置的分组和在切换之后从新的对手通信装置接收的分组是 相同的会话(图2)。
    • 38. 发明授权
    • Gas sensor
    • 气体传感器
    • US08623187B2
    • 2014-01-07
    • US13053605
    • 2011-03-22
    • Sumiko HorisakaHiroki FujitaMika MurakamiTakashi Ito
    • Sumiko HorisakaHiroki FujitaMika MurakamiTakashi Ito
    • G01N27/417
    • G01N27/409G01N27/4071G01N27/4072G01N27/4074G01N27/417G01N27/419
    • A gas sensor including a sensor element constituted by an oxygen-ion conductive solid electrolyte as a main component and detecting a predetermined gas component in a measurement gas includes: an external communication part having an opening opened to the outside, and introducing the measurement gas from the outside under a predetermined diffusion resistance; an internal space communicating with the external communication part; a first electrode formed on a surface of the internal space; a second electrode formed in a space different from the internal space; and a pumping cell operable to pump out oxygen existing in the internal space when a predetermined voltage is applied between the first electrode and the second electrode. The thickness of the external communication part is 50% or more and 100% or less of the thickness of the internal space.
    • 一种气体传感器,包括由氧离子传导性固体电解质作为主要成分构成的检测测定气体中的规定气体成分的传感器元件,具有:外部连通部,具有向外部开放的开口,将测定气体从 外部在预定的扩散阻力下; 与外部通信部分通信的内部空间; 形成在所述内部空间的表面上的第一电极; 形成在与所述内部空间不同的空间中的第二电极; 以及当在第一电极和第二电极之间施加预定电压时,可操作地泵送存在于内部空间中的氧气的泵送单元。 外部连通部的厚度为内部空间的厚度的50%以上且100%以下。
    • 39. 发明授权
    • Gas sensor
    • 气体传感器
    • US08506780B2
    • 2013-08-13
    • US12902458
    • 2010-10-12
    • Mika MurakamiHiroki FujitaSumiko HorisakaTakashi ItoSang Jae Lee
    • Mika MurakamiHiroki FujitaSumiko HorisakaTakashi ItoSang Jae Lee
    • G01N27/26
    • G01N27/419G01N27/4071
    • A gas sensor includes an internal space, diffusion control part, pumping cell, and measuring cell. The diffusion control part communicates with the internal space and has a slit-like shape with a smaller thickness than that of the internal space. The pumping cell pumps out oxygen from the internal space when voltage is applied between a first electrode fowled on a surface of the internal space and a second electrode formed outside the internal space. The measuring cell measures a current flowing between a third and fourth electrodes when a voltage is applied between the third and fourth electrodes. The third electrode is formed in the diffusion control part, and can reduce an oxide gas component in a predetermined gas component to which a predetermined diffusion resistance has been applied by the diffusion control part. The fourth electrode is formed in a part different from the diffusion control part.
    • 气体传感器包括内部空间,扩散控制部分,泵浦单元和测量单元。 扩散控制部与内部空间连通,具有比内部空间小的狭缝形状。 当在内部空间的表面上浮动的第一电极和形成在内部空间外部的第二电极之间施加电压时,泵送单元从内部空间泵出氧气。 当在第三和第四电极之间施加电压时,测量单元测量在第三和第四电极之间流动的电流。 第三电极形成在扩散控制部分中,并且可以通过扩散控制部分减少已经施加预定扩散电阻的预定气体成分中的氧化物气体成分。 第四电极形成在与扩散控制部分不同的部分中。
    • 40. 发明申请
    • WIRELESS COMMUNICATION SYSTEM, MASTER COMMUNICATION DEVICE, SLAVE COMMUNICATION DEVICE, AND CHANNEL ALLOCATION INFORMATION NOTIFICATION METHOD
    • 无线通信系统,主通信设备,从站通信设备和信道分配信息通知方法
    • US20120307769A1
    • 2012-12-06
    • US13577206
    • 2011-02-02
    • Hiroki Fujita
    • Hiroki Fujita
    • H04W72/04
    • H04W72/042H04L5/0094H04L27/2602H04W72/0453
    • A base station allocates at least one of a plurality of wireless channels included in a used frequency hand to a mobile station. The base station includes: a used frequency hand determination unit for determining at least a part of a predetermined frequency band as the used frequency band; a message generation unit for generating a control message including used frequency band information which is placed in a predetermined position and which indicates the determined used frequency hand, and channel allocation information which has a size corresponding to a bandwidth of the used frequency band and which indicates the wireless channel to be allocated to the mobile station; and a modem and a wireless communication unit for transmitting the generated control message to the mobile station.
    • 基站将包括在所使用的频率手中的多个无线信道中的至少一个分配给移动台。 基站包括:用于将预定频带的至少一部分确定为使用频带的使用频率指示确定单元; 消息产生单元,用于生成包括使用的频带信息的控制消息,所述频带信息被放置在预定位置并且指示所确定的所使用的频率手,以及信道分配信息,其具有与所使用的频带的带宽相对应的大小,并且指示 要分配给移动台的无线信道; 以及用于将生成的控制消息发送到移动台的调制解调器和无线通信单元。