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    • 3. 发明专利
    • Cogeneration system
    • 加工系统
    • JP2009204203A
    • 2009-09-10
    • JP2008045646
    • 2008-02-27
    • Noritz CorpNoritz Electronics Technology Corpノーリツエレクトロニクステクノロジー株式会社株式会社ノーリツ
    • NAKANO KUNIHIKO
    • F24H1/00F02G5/00F02G5/04
    • Y02E20/14Y02P80/15Y02T10/166
    • PROBLEM TO BE SOLVED: To provide a cogeneration system capable of operating a power generator in safety when the heat storage amount reaches an allowable upper limit, there is no thermal demand, and there is electrical demand, and supplying hot water/water of desired temperature early when there is thermal demand after the stop of the power generator. SOLUTION: In this cogeneration system 1 in which the heat generated from a power generating section 2 is cooled by the hot water/water of a hot water storage section 3, the hot water storage section 3 includes a circulation pathway 32 for circulating the hot water/water and a hot water storage tank 31, hot water/water can be stored in the hot water storage tank 31 in a state of forming temperature stratification, and a heat exchanger, a heat source 9 and a blower 8 are disposed on the circulation pathway 32, the hot water/water in the circulation pathway 32 is cooled by the blower 8, when the power generating section 2 is operated, when there is no thermal demand, and the heat storage amount of the hot water storage tank 31 reaches an upper limit region, and the cooled hot water/water is heated by the heat source 9 when the power generating section 2 is stopped. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供一种能够在蓄热量达到允许上限时安全地操作发电机的热电联供系统,不需要热量,需要电力,并且供应热水/水 在发电机停止后有热需求时,提前达到预期的温度。 解决方案:在由发电部2产生的热量由热水储存部3的热水/水进行冷却的热电联供系统1中,热水收容部3具有循环路径32, 能够在形成温度分层的状态下将热水/水和热水储存箱31,热水/水储存在热水储存箱31中,并且设置热交换器,热源9和鼓风机8 在循环路径32上,当发电部2工作时,当不需要热量时,循环路径32中的热水/水被鼓风机8冷却,并且热水储存罐的蓄热量 31到达上限区域,当发电部2停止时,被冷却的热水/水被热源9加热。 版权所有(C)2009,JPO&INPIT
    • 4. 发明专利
    • Hot water supply system
    • 热水供应系统
    • JP2011047577A
    • 2011-03-10
    • JP2009196619
    • 2009-08-27
    • Noritz CorpNoritz Electronics Technology Corpノーリツエレクトロニクステクノロジー株式会社株式会社ノーリツ
    • NAKANO KUNIHIKOKUBOTANI MASANORITADA HIROYUKIYOSHITAKA YUTAKANARUSE YOSHINARISHIMIZU SHIROUMEHARA ATSUSHICHATANI YUKIHIRO
    • F24H1/00
    • PROBLEM TO BE SOLVED: To provide a hot water supply system determining an optimum value of voltage supplied to a terminal device in a power saving mode without receiving influence of poor communication of the terminal device. SOLUTION: In the hot water supply system including a remote control 2 receiving power supply from a water heater 1 via a communication line 6, and supplying a power saving voltage lower than in a normal mode to the remote control 2 in the power saving mode, a control part 3 of the water heater 1 stores information of a remote control 2 having past results of communication connection, and a demand voltage needed by the remote control 2 in the power saving mode in a nonvolatile storage means. The voltage to be supplied to the remote control 2 in the power saving mode is determined based on the information stored in the storage means irrespective of a circumstance of communication connection with the remote control in transition to the power saving mode. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种热水供应系统,其确定在省电模式下提供给终端设备的电压的最佳值,而不受到终端设备通信不良的影响。 解决方案:在包括遥控器2的热水供应系统中,通过通信线路6接收来自热水器1的电源,并且在电源中向遥控器2提供比正常模式低的省电电压 在非易失性存储装置中,热水器1的控制部分3存储具有通信连接的过去结果的遥控器2的信息和遥控器2在节电模式下所需的需求电压。 基于存储在存储装置中的信息来确定在省电模式下提供给遥控器2的电压,而不管与转换到省电模式的遥控器的通信连接的情况如何。 版权所有(C)2011,JPO&INPIT
    • 5. 发明专利
    • Equipment controller and cogeneration system
    • 设备控制器和加热系统
    • JP2010011678A
    • 2010-01-14
    • JP2008170034
    • 2008-06-30
    • Noritz CorpNoritz Electronics Technology Corpノーリツエレクトロニクステクノロジー株式会社株式会社ノーリツ
    • NAKAJIMA YOSHIHIDETAODA NAOKINAKANO KUNIHIKOINOUE KIYOHARUUMEHARA ATSUSHIHAMAYA YOSHIKAZU
    • H02J9/00F02G5/04H02J7/00H02J9/08H02P9/04
    • Y02E20/14Y02T10/166
    • PROBLEM TO BE SOLVED: To provide a cogeneration system which quickly finds the failure of a storage battery capacity monitoring unit to stably carry out stand-by power-saving control. SOLUTION: In the cogeneration system, power supply from a commercial power supply 1 is cut off to supply power from a storage battery 6 to a control microcomputer 10 under stand-by power-saving control. When the control microcomputer 10 is reset because of power shortage, a power supply supplying power to the control microcomputer 10 is automatically switched to the commercial power supply 1. Under stand-by power-saving control by power supply from the storage battery 6, if the control microcomputer 10 is repeatedly reset a prescribed number of times despite a fact that the storage battery capacity monitoring unit 7 monitoring stored power of the storage battery 6 detects a stored power at a given level or higher in the storage battery 6, the control microcomputer 10 detects the repeated resetting and determines the failure of the storage battery capacity monitoring unit 7. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种快速发现蓄电池容量监测单元故障的热电联产系统,以稳定地执行待机省电控制。 解决方案:在热电联产系统中,在待机省电控制下,从商用电源1的电源切断,从蓄电池6向控制微型计算机10供电。 当控制微计算机10由于电力不足而复位时,向控制微机10供电的电源自动切换到商用电源1.在通过来自蓄电池6的电力供给的待机省电控制下,如果 控制微型计算机10重复复位规定次数,尽管监视蓄电池6的存储电力的蓄电池容量监视单元7检测到蓄电池6中的给定电平或更高的存储电力,控制微计算机 10检测重复重置,并确定蓄电池容量监控单元7的故障。版权所有(C)2010,JPO&INPIT
    • 8. 发明专利
    • Hot water supply system
    • 热水供应系统
    • JP2011047576A
    • 2011-03-10
    • JP2009196546
    • 2009-08-27
    • Noritz CorpNoritz Electronics Technology Corpノーリツエレクトロニクステクノロジー株式会社株式会社ノーリツ
    • NAKANO KUNIHIKOKUBOTANI MASANORITADA HIROYUKIYOSHITAKA YUTAKANARUSE YOSHINARISHIMIZU SHIROUMEHARA ATSUSHICHATANI YUKIHIRO
    • F24H1/00H04Q9/00
    • PROBLEM TO BE SOLVED: To provide a hot water supply system optimizing a voltage supplied from a water heater to a terminal device in a power saving mode. SOLUTION: In the hot water supply system including a remote control 2 receiving power supply from the water heater 1 via a communication line 6, and supplying a power saving voltage lower than in a normal mode to the remote control 2 in the power saving mode, a power supply part 4 of the water heater is composed of a power source part outputting a plurality of voltage values as a voltage value for the power saving mode other than a voltage value of a normal voltage during the normal mode as voltage output with respect to the remote control 2, and in a control part of the remote control 2, information of a demand voltage needed by the remote control during the power saving mode is received from each remote control 2a-2x, and the voltage supplied to the remote control 2 by the power source part 4 in the power saving mode is determined based on the highest demand voltage of the demand voltages. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种在省电模式下优化从热水器提供给终端设备的电压的热水供应系统。 解决方案:在包括远程控制器2的热水供应系统中,通过通信线路6接收来自热水器1的电源,并且在功率方面向遥控器2提供比正常模式低的省电电压 节电模式下,热水器的电源部分4由在正常模式期间输出多个电压值作为除了正常模式下的正常电压的电压值之外的省电模式的电压值的电源部分组成,作为电压输出 对于遥控器2,在遥控器2的控制部分中,从各遥控器2a-2x接收在省电模式期间遥控器所需的需求电压的信息,并且提供给 基于需求电压的最高需求电压来确定由省电模式的电源部分4的遥控器2。 版权所有(C)2011,JPO&INPIT
    • 10. 发明专利
    • Hot water supply device
    • 热水设备
    • JP2011007460A
    • 2011-01-13
    • JP2009153758
    • 2009-06-29
    • Noritz CorpNoritz Electronics Technology Corpノーリツエレクトロニクステクノロジー株式会社株式会社ノーリツ
    • CHATANI YUKIHIROUMEHARA ATSUSHINARUSE YOSHINARITADA HIROYUKIYOSHITAKA YUTAKANAKANO KUNIHIKOSHIMIZU SHIROKUBOTANI MASANORI
    • F24H1/10
    • PROBLEM TO BE SOLVED: To provide a hot water supply device capable of operating a control microcomputer of the hot water supply device while saving power consumption without impairing a role of a sensor.SOLUTION: The hot water supply device includes: a first input circuit for inputting a partial pressure value Vx of a thermistor 20 and a pull-up resistance 21 to an A/D input port of the control microcomputer 10a as a signal input circuit of a temperature sensor for freezing prevention; and a second input circuit capable of giving an interruption request signal to a key interruption input terminal of the control microcomputer 10a when a comparator 22 compares the partial pressure value Vx with a reference voltage Vref set based on a freezing prevention temperature, and when the partial pressure value Vx exceeds the reference voltage Vref. When the hot water supply device is shifted to a power-saving mode, the control microcomputer 10a is brought into a sleep mode. If the interruption request signal comes from the second input circuit, the control microcomputer 10a is returned to an active mode.
    • 要解决的问题:提供一种能够在不损害传感器的作用的同时节省电力消耗的同时操作热水供应装置的控制微型计算机的热水供应装置。热水供应装置包括:第一输入电路, 将热敏电阻20的分压值Vx和上拉电阻21输入到控制微计算机10a的A / D输入端口,作为防止冷冻的温度传感器的信号输入电路; 以及第二输入电路,当比较器22将分压值Vx与基于防冻温度设定的参考电压Vref进行比较时,能够向控制微计算机10a的键中断输入端发出中断请求信号,当部分 压力值Vx超过参考电压Vref。 当热水供应装置转换到省电模式时,控制微计算机10a进入睡眠模式。 如果中断请求信号来自第二输入电路,则控制微计算机10a返回到活动模式。