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    • 1. 发明专利
    • 給湯システム
    • 热水供应系统
    • JP2015004502A
    • 2015-01-08
    • JP2013131607
    • 2013-06-24
    • 株式会社ノーリツNoritz Corp
    • ATOBE YOSHIFUMIINOUE HARUKIKUBO TAKASHIYONETA ERINAKANO TOMOYANAGANO KATSUNORITANABE KENJIYAMAGUCHI DAISUKE
    • F24H1/00
    • 【課題】給湯用熱交換器および追焚用熱交換器の両方によって加熱することによって給湯能力を向上する際の、給湯システムの出湯温度の制御精度を高める。【解決手段】給湯システム1は、浴槽8内の循環アダプタ81に設けられた吸込口85および吐出口86の間に、追焚用熱交換器11および循環ポンプ33を介装接続して構成される追焚循環経路100を有する。給湯用熱交換器10および追焚用熱交換器11の両方によって加熱された湯を浴槽8へ供給する動作モードでは、開閉弁37が閉止される。これにより、給湯用熱交換器10によって加熱された湯は、全量が追焚用熱交換器11によって再加熱されてから、浴槽8へ供給される。【選択図】図1
    • 要解决的问题:通过加热热水供应用热交换器和再热用热交换器来提高热水供给性能的情况下,提高热水供给系统的热水出水温度的控制精度。解决方案: 热水供应系统1包括通过连接用于再加热的热交换器11和插入在设置在浴缸8中的循环适配器81中的吸入口85和排出口86之间的循环泵33而构成的再加热循环路径100.在 将热水供给用热交换器10和再热用热交换器11加热的热水供给到浴缸8的运转模式,关闭开闭阀37。 因此,用于热水供给的热交换器10加热的热水通过热交换器11再次加热再供热至再加热。
    • 2. 发明专利
    • Cooker
    • 烹饪师
    • JP2009264706A
    • 2009-11-12
    • JP2008118060
    • 2008-04-30
    • Harman Pro:KkNoritz 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株式会社ハーマンプロ
    • YASUDA AKIHIKOYOKOYAMA YASUSHIIWATANI YOSHINORITANABE KENJIMOTOSHITA HIROSUKEMIYAZAKI MAMORUONISHI IKUO
    • F24C3/12
    • PROBLEM TO BE SOLVED: To provide a cooker capable of preventing unnecessary abnormality measure processing when no abnormality occurs while permitting suppression of electric power consumption.
      SOLUTION: The cooker is provided with: a placement state detection means D for detecting whether a heated object is placed; a heating control means 100 for controlling heating operation of a heating means; and a power source control means PK for cutting off electric power supply. In the state where it is detected that a heated object is placed, the heating control means 100 executes the abnormality measure processing when an integrated value obtained by integrating an index for determining passage of the placement state which appears irregularly over time reaches a reference value for abnormality determination, and when it is detected that no heated object is placed, the heating control means 100 resets the integrated value. The heating cooker is further provided with an integrated value reset means SR1 for placement detection for resetting the integrated value when switching to the state where a heated object is placed is performed during cut-off of the electric power supply.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种能够在允许抑制电力消耗的同时不发生异常的情况下防止不必要的异常测量处理的炊具。 解决方案:炊具设有:放置状态检测装置D,用于检测被加热物体是否放置; 用于控制加热装置的加热操作的加热控制装置100; 以及用于切断电源的电源控制装置PK。 在检测到被加热物体被放置的状态下,加热控制装置100执行异常测量处理,当通过积分用于确定随时间不规则地出现的放置状态的通过的指标而获得的积分值达到 异常判定,并且当检测到没有加热物体被放置时,加热控制装置100重置积分值。 加热烹调器还设置有积分值复位装置SR1,用于放电检测,用于当切换到在电源切断期间执行放置加热物体的状态时复位积分值。 版权所有(C)2010,JPO&INPIT
    • 3. 发明专利
    • Heating cooker
    • 加热烹饪机
    • JP2013156015A
    • 2013-08-15
    • JP2013100846
    • 2013-05-13
    • Noritz Corp株式会社ノーリツHarman Co Ltd株式会社ハーマン
    • ONISHI IKUOMOTOSHITA HIROSUKEMIYAZAKI MAMORUIWATANI YOSHINORIYOKOYAMA YASUSHITANABE KENJIKITAO JUNICHI
    • F24C3/12F24C15/00H05B6/12
    • PROBLEM TO BE SOLVED: To provide a heating cooker which requires only one cooking setting part and allows simultaneous and automatic cooking by use of a plurality of heating parts.SOLUTION: One cooking setting part 5 is provided for automatic cooking by use of a plurality of heating parts 2. The cooking setting part 5 includes a heating part selection input part 6 for selecting the heating part 2 for automatic cooking, a heating part selection display part 63 for displaying the selected heating part 2, and a pair of cooking input part 7 and cooking display part 8 for automatic cooking in the selected heating part 2. One heating part 2 for automatic cooking is selected, automatic cooking is executed on the basis of an input of the cooking input part 7, and information is displayed on the heating part selection display part 63 of the one heating part 2 and on the cooking display parts 8 corresponding to the executed automatic cooking, synchronously. The other heating part 2 for automatic cooking is selected, the automatic cooking is executed on the basis of the input of the cooking input part 7, an information is displayed on the heating part selection display part 63 of the other heating part 2 and on the cooking display part 8 corresponding to the executed automatic cooking, synchronously. Synchronization periods thereof are shifted.
    • 要解决的问题:提供一种仅需要一个烹饪设置部件并且允许通过使用多个加热部件同时进行自动烹饪的加热烹调器。解决方案:一个烹饪设置部件5用于通过使用多个加热部件进行自动烹饪 加热部件2.烹调设定部件5包括用于选择用于自动烹饪的加热部分2的加热部分选择输入部分6,用于显示所选择的加热部分2的加热部分选择显示部分63和一对烹饪输入部分7 以及用于在所选择的加热部分2中自动烹饪的烹饪显示部分8.选择一个用于自动烹饪的加热部分2,基于烹饪输入部分7的输入执行自动烹饪,并且在加热部分上显示信息 一个加热部2的选择显示部63和与执行的自动烹调对应的烹调显示部8同步。 选择用于自动烹饪的另一个加热部分2,基于烹调输入部分7的输入执行自动烹饪,在另一个加热部分2的加热部分选择显示部分63上显示信息,并且在 与执行的自动烹调相对应的烹饪显示部8同步。 其同步周期被移位。
    • 4. 发明专利
    • Hot water supply system
    • 热水供应系统
    • JP2014122727A
    • 2014-07-03
    • JP2012278119
    • 2012-12-20
    • Noritz Corp株式会社ノーリツ
    • TANABE KENJINAKANO TOMOYANAGANO KATSUNORIYAMAGUCHI DAISUKEINOUE HARUKIATOBE YOSHIFUMIKUBO TAKASHI
    • F24H1/10
    • PROBLEM TO BE SOLVED: To alleviate discomfort imparted to a user when increasing the number of operating units of hot water supply devices without involving increase in gas consumption, in a configuration in which a plurality of hot water supply devices are connected in parallel with respect to a common hot water supply passage.SOLUTION: Hot water supply devices 100-1 and 100-2 are connected in parallel with respect to a common hot water supply passage 200. When a hot water supply load increases from a state in which only the hot water supply device 100-1 is supplying hot water, an operation of the hot water supply device 100-2 is started. At the time of the operation start of the newly operated hot water supply device 100-2, a controller 300-2 limits the amount of hot water tapping from the hot water supply device 100-2 corresponding to a period in which a hot water tapping temperature from the hot water supply device 100-2 drops.
    • 要解决的问题:为了减轻在不增加气体消耗量的情况下增加热水供应装置的操作单元的数量而给用户带来的不适,在多个热水供应装置相对于 一个常见的热水供应通道。解决方案:热水供应装置100-1和100-2相对于公共的热水供应通道200并联连接。当热水供应负载从只有热的供应通道的状态增加时 供水装置100-1供给热水,开始热水供给装置100-2的动作。 在新操作的热水供给装置100-2的操作开始时,控制器300-2限制与热水供给装置100-2对应的热水排出量 来自热水供给装置100-2的温度下降。
    • 5. 发明专利
    • Disconnection detection device for abnormal temperature detection sensor and hot water supply device
    • 用于异常温度检测传感器和热水供应装置的断开检测装置
    • JP2014106219A
    • 2014-06-09
    • JP2012262006
    • 2012-11-30
    • Noritz Corp株式会社ノーリツ
    • NAKANO TOMOYATAKABAYASHI AKIRATANABE KENJIHANATANI KAZUYA
    • G01R31/02F23N5/04F23N5/24F24H1/10
    • PROBLEM TO BE SOLVED: To provide a disconnection detection device capable of discriminating the disconnection of an abnormal temperature detection sensor from a circuit failure with inexpensive circuit configurations and a hot water supply device for reducing a workload in a repair work.SOLUTION: In a circuit in which an abnormal temperature detection sensor (temperature detection switch 11, temperature fuse 12) which is disconnected at a temperature which is a fixed value or more is serially inserted into a power supply line 13 to which a predetermined voltage is applied, the voltages at the respective ground sides of the temperature detection switch 11 and the temperature fuse 12 are divided by a resistance, and directly input to the A/D input port of a microcomputer 16. The microcomputer 16 compares the input voltage with a predetermined threshold, and determines the presence/absence of the disconnection of the abnormal temperature detection sensor and the presence/absence of the circuit abnormality of a voltage-dividing circuit.
    • 要解决的问题:提供一种断开检测装置,其能够识别异常温度检测传感器的断开与具有廉价电路配置的电路故障和用于减少维修工作的工作量的热水供应装置。解决方案:在电路 其中在固定值以上的温度下断开的异常温度检测传感器(温度检测开关11,温度保险丝12)被串联插入到施加了预定电压的电源线13中,电压在 温度检测开关11和温度保险丝12的各个侧面被电阻分压,并直接输入到微型计算机16的A / D输入端口。微型计算机16将输入电压与预定阈值进行比较,并确定 异常温度检测传感器断开的存在/不存在以及ci的存在/不存在 分压电路的电路异常。
    • 6. 发明专利
    • Heat source machine
    • 热源机
    • JP2013242085A
    • 2013-12-05
    • JP2012115579
    • 2012-05-21
    • Noritz Corp株式会社ノーリツ
    • INOUE HARUKIATOBE YOSHIFUMIKUBO TAKASHIYONEDA ERINAKANO TOMOYANAGANO KATSUNORITANABE KENJIYAMAGUCHI DAISUKE
    • F24H1/10
    • PROBLEM TO BE SOLVED: To provide a heat source machine capable of preventing overshooting where hot water much higher in temperature than a target temperature is supplied during the switching operation of a combustion region.SOLUTION: A heat source machine has a plurality of combustion regions where flames can be individually formed and is capable of performing switching between the increase and the decrease of combustion regions by appropriately switching the state of forming a flame in each combustion region and the state of forming no flame. An operation between switchings is executed when the combustion region is switched. The operation between switchings is executed on condition that switching from a state where no flame is formed in a downstream side combustion region located on the entire liquid flowing direction downstream side of a heat exchanger to a state where a flame is formed in the downstream side combustion region, and a stare where no flame is formed temporarily in the downstream side combustion region.
    • 要解决的问题:提供一种能够防止在燃烧区域的切换操作期间在供给温度高于目标温度的热水的过热的热源机。解决方案:热源机具有多个燃烧区域, 可以单独形成火焰,并且通过适当地切换在每个燃烧区域中形成火焰的状态和不形成火焰的状态,能够在燃烧区域的增加和减少之间进行切换。 当切换燃烧区域时,执行切换之间的操作。 在从位于热交换器的下游侧下游侧的下游侧燃烧区域中不形成火焰的状态切换到在下游侧燃烧中形成火焰的状态的条件下,执行切换操作 区域,并且在下游侧燃烧区域暂时形成火焰的盯着。
    • 7. 发明专利
    • 給湯装置
    • 热水设备
    • JP2015059714A
    • 2015-03-30
    • JP2013194265
    • 2013-09-19
    • 株式会社ノーリツNoritz Corp
    • YONETA ERIATOBE YOSHIFUMIINOUE HARUKINAKANO TOMOYATANABE KENJIHANATANI KAZUYA
    • F24H1/10
    • 【課題】給湯装置への入水圧が低い場合においても、運転オン状態での出湯停止後における再出湯時に、給湯動作の再開遅れ抑制と、出湯温度の低下抑制とを両立する。【解決手段】給湯装置が運転オン状態のまま出湯停止されると、水量調整弁の開度は、待機開度P1に設定される。ユーザのカラン操作等による再出湯時には、流量Qが最小作動流量MOQに達すると、給湯動作が開始される。流量QがMOQよりも低い場合、流量Qが低流量の検出閾値Q*(Q*
    • 要解决的问题为了达到抑制热水供应运转重新启动延迟和抑制热水排水温度劣化的目的,在运行ON状态下停止热水攻丝后的热水再分配时,均匀 当热水供应装置的流入水压低时。解决方案:当热水供应装置处于操作接通状态时,当热水出水停止时,将水量调节阀的开度设定在待机开度P1。 在通过使用者的水龙头操作等进行热水再次攻丝时,当流量Q达到最小操作流量MOQ时,开始热水供给操作。 在流量Q低于MOQ的情况下,当流量Q超过低流量Q *(Q *
    • 8. 发明专利
    • Heat source machine
    • 热源机
    • JP2013242086A
    • 2013-12-05
    • JP2012115580
    • 2012-05-21
    • Noritz Corp株式会社ノーリツ
    • INOUE HARUKIATOBE YOSHIFUMIKUBO TAKASHIYONEDA ERINAKANO TOMOYANAGANO KATSUNORITANABE KENJIYAMAGUCHI DAISUKE
    • F24H1/10
    • PROBLEM TO BE SOLVED: To provide a heat source machine capable of preventing large undershooting where hot water much lower in temperature than a target temperature is supplied during the switching operation of a combustion region.SOLUTION: A heat source machine has a plurality of combustion regions where flames can be individually formed and is capable of switching between the increase and the decrease of combustion regions by appropriately switching the state of forming a flame in each combustion region and the state of forming no flame. An operation between switchings is executed when the combustion region is switched. The operation between switchings is executed on condition that switching from a state where a flame is formed in a downstream side combustion region located on the entire liquid flowing direction downstream side of a heat exchanger to a state where no flame is formed in the downstream side combustion region, and a stare where a flame is formed temporarily in the downstream side combustion region.
    • 要解决的问题:提供一种能够防止在燃烧区域的切换操作期间供应温度低于目标温度的热水的大量下冲的热源机。解决方案:热源机具有多个燃烧区域 其中可以单独形成火焰,并且通过适当地切换在每个燃烧区域中形成火焰的状态和不形成火焰的状态,能够在燃烧区域的增加和减少之间切换。 当切换燃烧区域时,执行切换之间的操作。 切换之间的操作是在从位于热交换器的下游侧的下游侧燃烧区域中形成火焰的状态切换到在下游侧燃烧中不形成火焰的状态的条件下执行的 区域,并且在下游侧燃烧区域暂时形成火焰的盯着。
    • 10. 发明专利
    • Hot-water supply system
    • 热水供应系统
    • JP2014159888A
    • 2014-09-04
    • JP2013029983
    • 2013-02-19
    • Noritz Corp株式会社ノーリツ
    • ATOBE YOSHIFUMIINOUE HARUKIKUBO TAKASHINAKANO TOMOYANAGANO KATSUNORITANABE KENJIYAMAGUCHI DAISUKE
    • F24D17/00F24H1/10
    • PROBLEM TO BE SOLVED: To suppress temporary drop of hot water temperature in a hot water supply passage in a hot water supply system in which a plurality of hot water suppliers are connected in parallel with respect to a common hot water supply passage.SOLUTION: At the time of execution of heat insulation control by a hot water supplier 100-1, a controller 170-1 acquires a detection value of tapping temperature of a hot water supplier 100-2 from a controller 170-2 of the hot water supplier 100-2. During the execution of the heat insulation control, when the tapping temperature of the hot water supplier 100-2 in non-operation (in standby) becomes a predetermined temperature or less, the controller 170-1 increases tapping target temperature of the hot water supplier 100-1 by a predetermined amount. When hot water whose temperature is increased reaches a connection part 250, the controller 170-1 transmits a driving command of a circulation pump 110-2 of the hot water supplier 100-2 to the controller 170-2.
    • 要解决的问题:为了抑制热水供应系统中的热水供应通道中的热水温度的暂时下降,其中多个热水供应器相对于公共热水供应通道并联连接。解决方案:在 由热水供应器100-1执行隔热控制的时间,控制器170-1从热水供应器100-1的控制器170-2获取热水供应器100-2的出口温度的检测值, 2。 在绝热控制的执行中,当不工作(待机)的热水供给器100-2的出口温度变为预定温度以下时,控制器170-1增加热水供给器的出钢目标温度 100-1预定量。 当温度升高的热水到达连接部250时,控制器170-1将热水供给器100-2的循环泵110-2的驱动指令传递到控制器170-2。