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    • 1. 发明专利
    • Power generating-air conditioning system
    • 发电空调系统
    • JP2010007879A
    • 2010-01-14
    • JP2008164452
    • 2008-06-24
    • Cogene Techno Service:KkOsaka Gas Co Ltd大阪瓦斯株式会社株式会社コージェネテクノサービス
    • TOKUDA KAZUTOHAYAMA TAKEHIKONAKAJIMA TAKASHIYAMASHITA SACHIFUMI
    • F25B27/00H02P9/04
    • Y02B30/745Y02E20/14
    • PROBLEM TO BE SOLVED: To perform air-conditioning by driving an engine driven heat pump device with a power generating function even in a state that power supply from a commercial power source is stopped by power failure. SOLUTION: The engine-driven heat pump device 2 with the power generating function in which an AC generator and a compressor are linked and connected with an engine, is started by power supply from the commercial power source 10, a refrigerant from the compressor is supplied to an outdoor-side heat exchanger and an indoor-side heat exchanger, and air-conditioning is performed by supplying AC power generated by the engine-driven heat pump device 2 with the power generating function and the power from the commercial power source 10 to an air conditioner 2 and a power load. In power failure, an outside engine 30 is started to generate power by an outside generator 31, and the engine-driven heat pump device 2 with the power generating function is started by supplying the generated power to perform the air-conditioning similar as that at a normal time. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:即使在通过电力故障停止来自商用电源的电源的状态下,通过驱动具有发电功能的发动机驱动的热泵装置来进行空调。 解决方案:具有发电功能的发动机驱动的热泵装置2,其中交流发电机和压缩机与发动机连接并连接,通过来自商用电源10的电源开始,来自 将压缩机供给到室外侧热交换器和室内侧热交换器,通过将由发动机驱动的热泵装置2产生的交流电力提供给发电功能和来自商用电源的电力来进行空调 源10到空调2和电力负载。 在停电时,通过外部发电机31启动外部发动机30发电,通过供给发电电力来进行具有发电功能的发动机驱动的热泵装置2,进行与上述相同的空调 正常时间 版权所有(C)2010,JPO&INPIT
    • 2. 发明专利
    • Terminal module for detecting gas
    • 用于检测气体的终端模块
    • JP2014191788A
    • 2014-10-06
    • JP2013069396
    • 2013-03-28
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • NAKAJIMA TAKASHITAMURA ITARUKIUCHI YOSHIMICHI
    • G08B21/16G08B25/10
    • PROBLEM TO BE SOLVED: To provide a terminal module for detecting gas, which reduces power consumption of the terminal module and is operable for a long period of time even if it is a battery driven type.SOLUTION: A terminal module for detecting gas includes: a sensor module 6 for outputting a detection signal of a gas sensor which repeats operation periodically between a pause mode of small electrical power consumption and a gas detection mode of large electrical power consumption and detects a gas concentration intermittently; an external output module 8 for outputting the signal to the outside; and an interface 7 for outputting the signal from the sensor module 6 to the external output module 8. The interface 7 repeats operation periodically between a pause mode and a start mode in synchronization with the gas sensor, and outputs a trigger signal to the sensor module 6 in the start mode. The sensor module 6 outputs the detection signal of the gas sensor to the interface 7 in response to the trigger signal, and outputs it from the interface 7 to the external output module 8.
    • 要解决的问题:提供一种用于检测气体的终端模块,其降低了终端模块的功耗,并且即使是电池驱动型也可长时间操作。解决方案:用于检测气体的端子模块包括: 传感器模块6,用于输出气体传感器的检测信号,该气体传感器的检测信号在小功率消耗的暂停模式和大功耗的气体检测模式之间周期性地重复操作,并间歇地检测气体浓度; 用于将信号输出到外部的外部输出模块8; 以及用于将来自传感器模块6的信号输出到外部输出模块8的接口7.接口7与气体传感器同步地在暂停模式和启动模式之间周期性地重复操作,并将触发信号输出到传感器模块 6在启动模式。 传感器模块6响应于触发信号将气体传感器的检测信号输出到接口7,并将其从接口7输出到外部输出模块8。
    • 3. 发明专利
    • Thin film type gas sensor, and checkup method for the same
    • 薄膜式气体传感器及其检测方法
    • JP2014178199A
    • 2014-09-25
    • JP2013052228
    • 2013-03-14
    • Fuji Electric Co Ltd富士電機株式会社Osaka Gas Co Ltd大阪瓦斯株式会社
    • KOBAYASHI MAKOTOSUZUKI TAKUYAOKAMURA MAKOTONAKAJIMA TAKASHINONAKA ATSUSHIONISHI HISAONAKAYAMA TOSHIROSUEMITSU MASAHIRO
    • G01N27/12
    • PROBLEM TO BE SOLVED: To provide a thin film type gas sensor that can maintain its detecting performance level for the gas to be checked over a long period and a checkup method enabling such a thin film type gas sensor to be selected in an early stage of the product.SOLUTION: A thin film type gas sensor that is equipped with a sensor element having a gas detecting layer whose electric characteristics change when coming into contact with gas to be detected and a heater layer that can heat the gas detecting layer, and makes the gas to be detected be detected on the basis of the resistance level of the gas detection layer heated by the heater layer and whose prescribed indicator value calculated by using the resistance level R of the gas detecting layer and the concentration X of the gas to be detected measured with the thin film type gas sensor in its initial state satisfies a preset standard; and a thin film type gas sensor checkup method by which whether or not the gas sensor is satisfactory on the basis of this standard.
    • 要解决的问题:提供能够长时间保持对待检查气体的检测性能水平的薄膜型气体传感器,以及能够在早期阶段选择这种薄膜型气体传感器的检查方法 该产品。一种薄膜式气体传感器,其配备有具有气体检测层的传感器元件,该气体检测层的电特性在与要检测的气体接触时变化,加热层可加热气体检测层,并且 基于由加热器层加热的气体检测层的电阻等级来检测要检测的气体,并且通过使用气体检测层的电阻水平R和气体浓度X计算出的规定指标值 在初始状态下用薄膜型气体传感器测量的检测满足预设标准; 以及基于该标准的气体传感器是否令人满意的薄膜式气体传感器检查方法。
    • 5. 发明专利
    • Gas detection apparatus
    • 气体检测装置
    • JP2012167954A
    • 2012-09-06
    • JP2011027489
    • 2011-02-10
    • Fuji Electric Co LtdOsaka Gas Co Ltd大阪瓦斯株式会社富士電機株式会社
    • OKAMURA MAKOTOSUZUKI TAKUYANARITA MASATAKAFURUTA TOSHITAKANONAKA ATSUSHIONISHI HISAONAKAYAMA TOSHIRONAKAJIMA TAKASHI
    • G01N27/12
    • PROBLEM TO BE SOLVED: To provide a gas detection apparatus for achieving low power consumption while maintaining detection performance by improving gas type determination logic.SOLUTION: The gas detection apparatus usually heats a gas sensing layer to a temperature required for detecting existence of interference gas or detection target gas, determines whether the interference gas or the detection target gas is included or not based on the electric resistance characteristic of the gas sensing layer, and when the interference gas or the detection target gas is included, heats the gas sensing layer to a temperature required for burning the interference gas and a temperature required for the gas sensing layer to detect only the detection target gas, and determines the existence or concentration of the detection target gas based on the electric resistance characteristic of the gas sensing layer.
    • 要解决的问题:提供一种气体检测装置,用于通过改进气体类型确定逻辑来保持检测性能,从而实现低功耗。 气体检测装置通常将气体感测层加热到检测干燥气体或检测目标气体的存在所需的温度,基于电阻特性确定是否包含干扰气体或检测目标气体 的气体检测层,并且当包含干扰气体或检测目标气体时,将气体感测层加热到燃烧干扰气体所需的温度和气体感测层所需的温度仅仅检测检测目标气体, 并且基于气体感测层的电阻特性来确定检测目标气体的存在或集中。 版权所有(C)2012,JPO&INPIT
    • 6. 发明专利
    • Gas alarm, and heater temperature control method of gas sensor in gas alarm
    • 燃气报警气体报警和加热器温度控制方法
    • JP2012164095A
    • 2012-08-30
    • JP2011023323
    • 2011-02-04
    • Fuji Electric Co LtdOsaka Gas Co Ltd大阪瓦斯株式会社富士電機株式会社
    • KAMIOKA TAKESHISASAKI SHOJIWATANABE TADASHIONISHI HISAONAKAYAMA TOSHIRONONAKA ATSUSHINAKAJIMA TAKASHI
    • G08B21/16G01N27/12
    • PROBLEM TO BE SOLVED: To achieve control of keeping a heater temperature constant regarding a heater temperature control technique in a gas alarm, thereby improving detection accuracy of gas leakage.SOLUTION: At each time of sensor drive, the following processing is performed. From a control circuit section 104 to a heater resistance 103 in a gas sensor 101, heater voltage is applied for heating. Then, based on data value of ambient temperature from an ambient temperature detection section 117, a heater electric power quantity given to the heater resistance 103 is corrected, while a voltage value and a current value at both ends of the heater resistance 103 are calculated to obtain a heater resistance value. Then, based on the heater resistance value and the corrected heater electric power quantity, a heater voltage to be applied to the heater resistance 103 at next time of sensor drive is calculated.
    • 要解决的问题:为了实现对气体报警器中的加热器温度控制技术保持加热器温度恒定的控制,从而提高气体泄漏的检测精度。

      解决方案:在每次传感器驱动时,执行以下处理。 从气体传感器101的控制电路部104到加热电阻103,加热加热。 然后,根据来自环境温度检测部117的环境温度的数据值,校正给予加热电阻103的加热器电力量,同时将加热器电阻103的两端的电压值和电流值计算为 获得加热器电阻值。 然后,基于加热器电阻值和校正加热器电力量,计算在下一次传感器驱动时施加到加热器电阻103的加热器电压。 版权所有(C)2012,JPO&INPIT

    • 7. 发明专利
    • Thin film gas sensor
    • 薄膜气体传感器
    • JP2012163437A
    • 2012-08-30
    • JP2011024068
    • 2011-02-07
    • Fuji Electric Co LtdOsaka Gas Co Ltd大阪瓦斯株式会社富士電機株式会社
    • SUZUKI TAKUYANARITA MASATAKAKOBAYASHI MAKOTOISHIKAWA NORIAKIONISHI HISAONAKAYAMA TOSHIRONONAKA ATSUSHINAKAJIMA TAKASHI
    • G01N27/12
    • PROBLEM TO BE SOLVED: To provide a thin film gas sensor which comprises a sufficient mechanical strength and is stable and highly reliable.SOLUTION: A thin film gas sensor is provided which includes a gas sensing layer formed on an electric insulating layer. The gas sensing layer includes a pair of sensing electrode layers formed on the electric insulating layer, a sensing layer which is formed to partially cover the pair of sensing electrode layers while being spread over both the pair of sensing electrode layers, and a selective combustion layer which is formed to cover the sensing electrode layers and the sensing layer. A particle size of binders contained in the selective combustion layer is smaller than that of SnOconstituting the sensing layer and that of a metal oxide constituting the selective combustion layer.
    • 要解决的问题:提供一种薄膜气体传感器,其包括足够的机械强度并且是稳定和高度可靠的。 解决方案:提供一种薄膜气体传感器,其包括形成在电绝缘层上的气体感测层。 气体感测层包括形成在电绝缘层上的一对感测电极层,感测层,其形成为部分地覆盖一对感测电极层,同时分布在一对感测电极层上,以及选择性燃烧层 其形成为覆盖感测电极层和感测层。 包含在选择性燃烧层中的粘合剂的粒度小于构成感测层的SnO 2 和构成选择性燃烧层的金属氧化物的粒度。 版权所有(C)2012,JPO&INPIT
    • 9. 发明专利
    • Heat pump system
    • 热泵系统
    • JP2011043268A
    • 2011-03-03
    • JP2009190404
    • 2009-08-19
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • TOKUDA KAZUTONAKAJIMA TAKASHI
    • F25B27/00F03G6/00H02J3/38
    • Y02A30/272Y02B10/20Y02B10/24Y02E10/46
    • PROBLEM TO BE SOLVED: To provide a heat pump system which does not require change in generated electric power by a generator even when total generated electric power by the generator and a photovoltaic power generating device is larger than set electric power. SOLUTION: The heat pump system S includes a plurality of heat pump devices 10, 20, 30 and a control part C for controlling operation. Direct current parts on input sides of inverters 15, 25, 35 of the respective heat pump devices 10, 20, 30 are electrically interconnected. The control part C controls operation of the inverters 15, 25, 35 so that the inverter of the heat pump device having individual excess electric power out of the plurality of heat pump devices 10, 20, 30 converts individual set electric power of the inverter into A.C. electric power and outputs it and so that the inverter of the heat pump device having individual allowance electric power converts electric power of the inverter which is a sum of generated electric power by the photovoltaic power generating device, generated electric power by the generator and allocated and distributed electric power into A.C. electric power and outputs it. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种即使在发电机和太阳能发电装置的总发电量大于设定电力的情况下也不需要发电机发电变化的热泵系统。 解决方案:热泵系统S包括多个热泵装置10,20,30和用于控制操作的控制部分C. 各个热泵装置10,20,30的逆变器15,25,35的输入侧的直流部件电连接。 控制部分C控制逆变器15,25,35的操作,使得具有多个热泵装置10,20,30的具有多余电力的热泵装置的逆变器将逆变器的单独设定电力转换为 AC电力输出,并且输出具有单独容许电力的热泵装置的逆变器,将由该光电发电装置产生的电力的和的逆变器的电力转换为发电机产生的电力并分配 并将电力分配到交流电源并输出。 版权所有(C)2011,JPO&INPIT
    • 10. 发明专利
    • ガス検知装置及びガス検知方法
    • 气体检测器和气体检测方法
    • JP2015045546A
    • 2015-03-12
    • JP2013176219
    • 2013-08-28
    • 富士電機株式会社Fuji Electric Co Ltd大阪瓦斯株式会社Osaka Gas Co Ltd
    • OKAMURA MAKOTOSUZUKI TAKUYAKOBAYASHI MAKOTONAKAJIMA TAKASHINONAKA ATSUSHIONISHI HISAO
    • G01N27/12
    • 【課題】温度や湿度による影響を排除し、より高精度な検知を実現するガス検知装置、および、ガス検知方法を提供する。【解決手段】ヒータ層駆動部22を駆動してヒータ層がガス感知層を加熱して検出可能状態とし、ガス検知部23からの出力に基づいてガス濃度を検知し、ヒータ層抵抗検知部24からのヒータ層抵抗値を読み込んでガス感知層周囲の温度を検知し、ヒータ層抵抗検知部24からのヒータ層抵抗値を読み込んでヒータオン後のヒータ層抵抗値の昇温特性の変化に基づいてガス感知層周囲の湿度を算出し、算出した温度および湿度に基づいて補正値を算出し、ガス濃度に対して補正値を用いて補正し、補正されたガス濃度によりガスの有無を判定するガス検知装置またはガス検知方法とした。【選択図】図1
    • 要解决的问题:提供一种用于消除由于温度和湿度引起的影响的气体检测器和气体检测方法,并且以更高的精度实现检测。解决方案:提供一种气体检测器或气体检测方法,包括以下步骤: 加热器层驱动单元22,使得加热器层加热气体感测层以将其置于可检测状态,并且基于来自气体检测单元23的输出检测气体浓度; 从加热器层电阻检测单元24读取加热器层电阻值,并检测气体感测层周围的温度; 从加热器层电阻检测单元24读取加热器层电阻值,并基于加热器加电后的加热器层电阻值的升温特性的变化计算气体感测层周围的湿度; 基于所计算的温度和湿度计算校正值; 使用校正值校正气体浓度; 以及从校正的气体浓度确定气体的存在。