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    • 1. 发明授权
    • Hot-water supply system
    • 热水供水系统
    • US09010280B2
    • 2015-04-21
    • US13254472
    • 2010-03-10
    • Ikuro AdachiTakeshi Kato
    • Ikuro AdachiTakeshi Kato
    • F24H3/00F24D17/02F24D17/00F24D19/10F24H1/52
    • F24D17/02F24D17/0031F24D17/0073F24D19/1051F24D19/1054F24H1/523Y02B30/12
    • When a detection temperature by a hot-water tank thermister (42) has been equal to or lower than a re-heating determination temperature over at least a re-heating determination time, a tank controller (50) performs a sterilization process by heating hot water within a hot-water tank (31) by means of a heat pump unit (60); and when the detection temperature by the hot-water tank thermister (42) has been equal to or lower than a determination temperature for prohibiting the use of stored hot water over at least a determination time for prohibiting the use of stored hot water, the tank controller (50) performs only a temperature regulation control via heating while keeping a hot-water flow regulation valve (34) in a closed state.
    • 在热水箱热敏电阻(42)的检测温度至少在再加热判定时间以上时,再次确定温度以下的情况下,罐控制器(50)通过加热热进行灭菌处理 通过热泵单元(60)在热水箱(31)内的水; 并且当热水箱热敏电阻(42)的检测温度等于或低于用于禁止使用储存的热水的确定温度至少在禁止使用储存的热水的确定时间时,罐 控制器(50)在将热水调节阀(34)保持在关闭状态的同时仅通过加热进行温度调节控制。
    • 2. 发明申请
    • HOT-WATER SUPPLY SYSTEM
    • 热水供应系统
    • US20110315091A1
    • 2011-12-29
    • US13254472
    • 2010-03-10
    • Ikuro AdachiTakeshi Kato
    • Ikuro AdachiTakeshi Kato
    • F24H3/00
    • F24D17/02F24D17/0031F24D17/0073F24D19/1051F24D19/1054F24H1/523Y02B30/12
    • When a detection temperature by a hot-water tank thermister (42) has been equal to or lower than a re-heating determination temperature over at least a re-heating determination time, a tank controller (50) performs a sterilization process by heating hot water within a hot-water tank (31) by means of a heat pump unit (60); and when the detection temperature by the hot-water tank thermister (42) has been equal to or lower than a determination temperature for prohibiting the use of stored hot water over at least a determination time for prohibiting the use of stored hot water, the tank controller (50) performs only a temperature regulation control via heating while keeping a hot-water flow regulation valve (34) in a closed state.
    • 在热水箱热敏电阻(42)的检测温度至少在再加热判定时间以上时,再次确定温度以下的情况下,罐控制器(50)通过加热热进行灭菌处理 通过热泵单元(60)在热水箱(31)内的水; 并且当热水箱热敏电阻(42)的检测温度等于或低于用于禁止使用储存的热水的确定温度至少在禁止使用储存的热水的确定时间时,罐 控制器(50)在将热水调节阀(34)保持在关闭状态的同时仅通过加热进行温度调节控制。
    • 3. 发明申请
    • HOT-WATER SUPPLY SYSTEM
    • 热水供应系统
    • US20110303165A1
    • 2011-12-15
    • US13203568
    • 2010-03-10
    • Ikuro Adachi
    • Ikuro Adachi
    • F24H1/00
    • F24D17/0073F24D17/0031F24D17/02F24D19/1051F24D19/1054F24H1/523Y02B30/12
    • When a detection temperature by a hot-water tank thermister (42) has been equal to or lower than a re-heating determination temperature over at least a re-heating determination time, a tank controller (50) performs a sterilization process by heating hot water within a hot-water tank (30) by means of a heat pump unit (60); and when the detection temperature by the hot-water tank thermister (42) has been equal to or lower than a determination temperature for prohibiting the use of hot water in the hot-water tank over at least a determination time for prohibiting the use of hot water in the hot-water tank, the tank controller (50) performs only a temperature regulation control via heating while keeping a hot-water flow regulation valve (34) in a closed state.
    • 在热水箱热敏电阻(42)的检测温度至少在再加热判定时间以上时,再次确定温度以下的情况下,罐控制器(50)通过加热热进行灭菌处理 通过热泵单元(60)在热水箱(30)内的水; 并且当热水箱热敏电阻(42)的检测温度等于或低于用于禁止在热水箱中使用热水的确定温度至少在禁止使用热水的确定时间 在热水箱内的水箱中,油箱控制器(50)在保持热水调节阀(34)处于关闭状态的同时仅通过加热进行温度调节控制。
    • 4. 发明申请
    • HOT WATER SUPPLY SYSTEM
    • 热水供应系统
    • US20070067047A1
    • 2007-03-22
    • US11531514
    • 2006-09-13
    • Hideki KitagawaKumiko YasutaniIkuro Adachi
    • Hideki KitagawaKumiko YasutaniIkuro Adachi
    • G05B19/18
    • G05B15/00F24D19/1006F24D2200/043
    • A hot water supply system which allows two hot water supply apparatuses to operate cooperatively and which can avoid degrading a hot water supply capability when one of the two hot water supply apparatuses cannot perform as a master or slave. The two hot water supply apparatuses each have a connection communication terminal, a master controller, an external communication terminal, and a slave controller. The hot water supply system includes a communication cable via which the connection communication terminal of one of the two hot water supply apparatuses is connected to the external communication terminal of the other hot water supply apparatus, and a failure reporting device for reporting a failure in the master controller provided in the hot water supply apparatus operating as the master and a failure in the slave controller provided in the hot water supply apparatus operating as the slave.
    • 一种热水供应系统,其允许两个热水供应装置协同工作,并且当两个热水供应装置中的一个不能作为主机或从机时,可以避免降低热水供应能力。 两个热水供给装置各自具有连接通信终端,主控制器,外部通信终端和从属控制器。 热水供给系统包括通信电缆,两个热水供给装置中的一个的连接通信端子通过该通信电缆连接到另一个热水供给装置的外部通信终端,以及报告故障的故障报告装置 设置在作为主机的热水供给装置中设置的主控制器和设置在作为从动装置的热水供给装置中的从动控制装置的故障。
    • 6. 发明授权
    • Hot-water supply system
    • 热水供水系统
    • US08985063B2
    • 2015-03-24
    • US13203568
    • 2010-03-10
    • Ikuro Adachi
    • Ikuro Adachi
    • F22B27/00F24D17/00F24D17/02F24D19/10F24H1/52
    • F24D17/0073F24D17/0031F24D17/02F24D19/1051F24D19/1054F24H1/523Y02B30/12
    • When a detection temperature by a hot-water tank thermister (42) has been equal to or lower than a re-heating determination temperature over at least a re-heating determination time, a tank controller (50) performs a sterilization process by heating hot water within a hot-water tank (30) by means of a heat pump unit (60); and when the detection temperature by the hot-water tank thermister (42) has been equal to or lower than a determination temperature for prohibiting the use of hot water in the hot-water tank over at least a determination time for prohibiting the use of hot water in the hot-water tank, the tank controller (50) performs only a temperature regulation control via heating while keeping a hot-water flow regulation valve (34) in a closed state.
    • 在热水箱热敏电阻(42)的检测温度至少在再加热判定时间以上时,再次确定温度以下的情况下,罐控制器(50)通过加热热进行灭菌处理 通过热泵单元(60)在热水箱(30)内的水; 并且当热水箱热敏电阻(42)的检测温度等于或低于用于禁止在热水箱中使用热水的确定温度至少在禁止使用热水的确定时间 在热水箱内的水箱中,油箱控制器(50)在保持热水调节阀(34)处于关闭状态的同时仅通过加热进行温度调节控制。
    • 8. 发明授权
    • Hot water supply system
    • 热水供应系统
    • US07529593B2
    • 2009-05-05
    • US11531514
    • 2006-09-13
    • Hideki KitagawaKumiko YasutaniIkuro Adachi
    • Hideki KitagawaKumiko YasutaniIkuro Adachi
    • G06F19/00
    • G05B15/00F24D19/1006F24D2200/043
    • A hot water supply system which allows two hot water supply apparatuses to operate cooperatively and which can avoid degrading a hot water supply capability when one of the two hot water supply apparatuses cannot perform as a master or slave. The two hot water supply apparatuses each have a connection communication terminal, a master controller, an external communication terminal, and a slave controller. The hot water supply system includes a communication cable via which the connection communication terminal of one of the two hot water supply apparatuses is connected to the external communication terminal of the other hot water supply apparatus, and a failure reporting device for reporting a failure in the master controller provided in the hot water supply apparatus operating as the master and a failure in the slave controller provided in the hot water supply apparatus operating as the slave.
    • 一种热水供应系统,其允许两个热水供应装置协同工作,并且当两个热水供应装置中的一个不能作为主机或从机时,可以避免降低热水供应能力。 两个热水供给装置各自具有连接通信终端,主控制器,外部通信终端和从属控制器。 热水供给系统包括通信电缆,两个热水供给装置中的一个的连接通信端子通过该通信电缆连接到另一个热水供给装置的外部通信终端,以及报告故障的故障报告装置 设置在作为主机的热水供给装置中设置的主控制器和设置在作为从动装置的热水供给装置中的从动控制装置的故障。
    • 9. 发明申请
    • Radio communication system
    • 无线通信系统
    • US20050255831A1
    • 2005-11-17
    • US11122672
    • 2005-05-05
    • Keiji KatoIkuro Adachi
    • Keiji KatoIkuro Adachi
    • F24H1/00H04B7/14H04L9/12H04M1/66H04M1/68H04M3/16H04Q9/00H04W12/00H04W12/08H04W76/02H04W84/10
    • H04W12/08H04W12/003H04W84/20
    • A radio communication system for registering an ID code of a communication partner in a transceiver easily and surely. In a first step, a slave set transmits “pairing application data” including a slave set ID to a master set. In a second step, the master set transmits “pairing reception data” including a master set ID and the slave set ID to the slave set. In a third step, the slave set transmits “first pairing selection data” including the slave set ID and the master set ID to the master set. In a fourth step, the master set transmits “second pairing selection data” including the master set ID and the slave set ID to the slave set. After the master set and the slave set recognize that processing for selecting communication partners is performed between the master set and the slave set according to the first to the fourth steps, in a fifth step, the slave set registers the master set ID of the master set and transmits “pairing completion data” to the master set. In a sixth step, the master set, which has received the “pairing completion data”, registers the slave set ID of the slave set.
    • 一种无线电通信系统,用于在收发机中容易且可靠地注册通信伙伴的ID码。 在第一步骤中,从设备将包含从设备ID的“配对应用数据”发送到主设备。 在第二步骤中,主设备将包括主设备ID和从设备ID的“配对接收数据”发送到从设备。 在第三步骤中,从设备向主设备发送包括从设备ID和主设备ID的“第一配对选择数据”。 在第四步骤中,主设备将包括主设备ID和从设备ID的“第二配对选择数据”发送到从设备。 在主设备和从设备识别出根据第一到第四步骤在主设备和从设备之间执行用于选择通信伙伴的处理时,在第五步骤中,从设备登记主设备的主设备ID 设置并发送“配对完成数据”到主设备。 在第六步骤中,已经接收到“配对完成数据”的主设备登记从设备的从设备ID。
    • 10. 发明授权
    • Radio remote control system
    • 无线遥控系统
    • US07471186B2
    • 2008-12-30
    • US11127740
    • 2005-05-12
    • Keiji KatoIkuro Adachi
    • Keiji KatoIkuro Adachi
    • G05B23/02
    • G05B19/042G05B2219/25289
    • It is an object of the invention to provide a radio remote controller system that, when power saving for a radio remote controller is realized by intermittently setting a data receivable period in the radio remote controller, can easily and flexibly change a length of a period for making it impossible to receive the radio data and reduce power consumption of the radio remote controller. A master set connected to a water heater main body by wire transmits monitor data G(G1, G2, G3) indicating an operation state of the water heater main body, which include transmission time information indicating the next time (t14 at G1, and t17 at G2) of transmission of the monitor data G, to a slave set serving as a radio remote controller. The slave set, which has received the monitor data G, comes into a “standby state” (slave set Rx and slave set Tx are OFF), in which power consumption is smaller than “data receivable state” (a slave set Rx is ON) and transmission and reception of radio data are impossible, until the next time of transmission of the monitor data G acquired from the monitor data (Toff1, Toff2, Toff3). When start time (t13, t16) for reception of monitor data has come, the slave set is switched from the “standby state” to the “data receivable state” to receive the monitor data G.
    • 本发明的目的是提供一种无线电遥控器系统,其通过在无线电遥控器中间歇地设置数据可接收周期来实现无线电遥控器的省电时,可以容易且灵活地改变用于 使得无法接收无线电数据并降低无线电遥控器的功耗。 通过电线连接到热水器主体的主设备传送指示热水器主体的操作状态的监视数据G(G1,G2,G3),其包括指示下一次的传输时间信息(G1处的t14和t17 在G2)将监视数据G发送到作为无线电遥控器的从设备。 已经接收到监视数据G的从设备进入“待机状态”(从设备Rx,从设备Tx为OFF),其中功耗小于“数据可接收状态”(从设备Rx为ON ),并且直到从监视数据(Toff1,Toff2,Toff3)获取的监视数据G的下次发送为止,才能发送和接收无线电数据。 当接收监视数据的开始时间(t13,t16)到来时,从设备从“待机状态”切换到“数据可接收状态”,以接收监视数据G.