CN111342556A - Cloud monitoring and control method for safety electricity utilization intelligent device - Google Patents

Cloud monitoring and control method for safety electricity utilization intelligent device Download PDF

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Publication number
CN111342556A
CN111342556A CN202010165987.8A CN202010165987A CN111342556A CN 111342556 A CN111342556 A CN 111342556A CN 202010165987 A CN202010165987 A CN 202010165987A CN 111342556 A CN111342556 A CN 111342556A
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CN
China
Prior art keywords
electricity utilization
intelligent
utilization device
monitoring
cloud
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Pending
Application number
CN202010165987.8A
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Chinese (zh)
Inventor
曾肖辉
桂斌
张友华
刘震
李名银
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Huabang Chuangke Huizhou Intelligent Technology Co ltd
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Guangdong Huabang Chuangke Intelligent Technology Co ltd
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Publication date
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Priority to CN202010165987.8A priority Critical patent/CN111342556A/en
Publication of CN111342556A publication Critical patent/CN111342556A/en
Pending legal-status Critical Current

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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02HEMERGENCY PROTECTIVE CIRCUIT ARRANGEMENTS
    • H02H7/00Emergency protective circuit arrangements specially adapted for specific types of electric machines or apparatus or for sectionalised protection of cable or line systems, and effecting automatic switching in the event of an undesired change from normal working conditions
    • H02H7/26Sectionalised protection of cable or line systems, e.g. for disconnecting a section on which a short-circuit, earth fault, or arc discharge has occured
    • H02H7/261Sectionalised protection of cable or line systems, e.g. for disconnecting a section on which a short-circuit, earth fault, or arc discharge has occured involving signal transmission between at least two stations
    • H02H7/262Sectionalised protection of cable or line systems, e.g. for disconnecting a section on which a short-circuit, earth fault, or arc discharge has occured involving signal transmission between at least two stations involving transmissions of switching or blocking orders
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02HEMERGENCY PROTECTIVE CIRCUIT ARRANGEMENTS
    • H02H7/00Emergency protective circuit arrangements specially adapted for specific types of electric machines or apparatus or for sectionalised protection of cable or line systems, and effecting automatic switching in the event of an undesired change from normal working conditions
    • H02H7/26Sectionalised protection of cable or line systems, e.g. for disconnecting a section on which a short-circuit, earth fault, or arc discharge has occured
    • H02H7/261Sectionalised protection of cable or line systems, e.g. for disconnecting a section on which a short-circuit, earth fault, or arc discharge has occured involving signal transmission between at least two stations
    • H02H7/263Sectionalised protection of cable or line systems, e.g. for disconnecting a section on which a short-circuit, earth fault, or arc discharge has occured involving signal transmission between at least two stations involving transmissions of measured values
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B70/00Technologies for an efficient end-user side electric power management and consumption
    • Y02B70/30Systems integrating technologies related to power network operation and communication or information technologies for improving the carbon footprint of the management of residential or tertiary loads, i.e. smart grids as climate change mitigation technology in the buildings sector, including also the last stages of power distribution and the control, monitoring or operating management systems at local level
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B90/00Enabling technologies or technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02B90/20Smart grids as enabling technology in buildings sector
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y04INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
    • Y04SSYSTEMS INTEGRATING TECHNOLOGIES RELATED TO POWER NETWORK OPERATION, COMMUNICATION OR INFORMATION TECHNOLOGIES FOR IMPROVING THE ELECTRICAL POWER GENERATION, TRANSMISSION, DISTRIBUTION, MANAGEMENT OR USAGE, i.e. SMART GRIDS
    • Y04S10/00Systems supporting electrical power generation, transmission or distribution
    • Y04S10/40Display of information, e.g. of data or controls
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y04INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
    • Y04SSYSTEMS INTEGRATING TECHNOLOGIES RELATED TO POWER NETWORK OPERATION, COMMUNICATION OR INFORMATION TECHNOLOGIES FOR IMPROVING THE ELECTRICAL POWER GENERATION, TRANSMISSION, DISTRIBUTION, MANAGEMENT OR USAGE, i.e. SMART GRIDS
    • Y04S20/00Management or operation of end-user stationary applications or the last stages of power distribution; Controlling, monitoring or operating thereof
    • Y04S20/20End-user application control systems
    • Y04S20/242Home appliances
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y04INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
    • Y04SSYSTEMS INTEGRATING TECHNOLOGIES RELATED TO POWER NETWORK OPERATION, COMMUNICATION OR INFORMATION TECHNOLOGIES FOR IMPROVING THE ELECTRICAL POWER GENERATION, TRANSMISSION, DISTRIBUTION, MANAGEMENT OR USAGE, i.e. SMART GRIDS
    • Y04S40/00Systems for electrical power generation, transmission, distribution or end-user application management characterised by the use of communication or information technologies, or communication or information technology specific aspects supporting them
    • Y04S40/12Systems for electrical power generation, transmission, distribution or end-user application management characterised by the use of communication or information technologies, or communication or information technology specific aspects supporting them characterised by data transport means between the monitoring, controlling or managing units and monitored, controlled or operated electrical equipment
    • Y04S40/126Systems for electrical power generation, transmission, distribution or end-user application management characterised by the use of communication or information technologies, or communication or information technology specific aspects supporting them characterised by data transport means between the monitoring, controlling or managing units and monitored, controlled or operated electrical equipment using wireless data transmission
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y04INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
    • Y04SSYSTEMS INTEGRATING TECHNOLOGIES RELATED TO POWER NETWORK OPERATION, COMMUNICATION OR INFORMATION TECHNOLOGIES FOR IMPROVING THE ELECTRICAL POWER GENERATION, TRANSMISSION, DISTRIBUTION, MANAGEMENT OR USAGE, i.e. SMART GRIDS
    • Y04S40/00Systems for electrical power generation, transmission, distribution or end-user application management characterised by the use of communication or information technologies, or communication or information technology specific aspects supporting them
    • Y04S40/12Systems for electrical power generation, transmission, distribution or end-user application management characterised by the use of communication or information technologies, or communication or information technology specific aspects supporting them characterised by data transport means between the monitoring, controlling or managing units and monitored, controlled or operated electrical equipment
    • Y04S40/128Systems for electrical power generation, transmission, distribution or end-user application management characterised by the use of communication or information technologies, or communication or information technology specific aspects supporting them characterised by data transport means between the monitoring, controlling or managing units and monitored, controlled or operated electrical equipment involving the use of Internet protocol

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  • Remote Monitoring And Control Of Power-Distribution Networks (AREA)

Abstract

The invention discloses a method for monitoring and controlling a cloud of a safety electricity utilization intelligent device, which comprises the following steps: s1: starting; opening a switch of the intelligent safety electricity utilization device, and electrifying and starting the switch of the intelligent safety electricity utilization device; s2: a network is distributed; pressing a WIFI configuration button of a display screen on the intelligent safety electricity utilization device, and configuring a WIFI account and a password; s3: logging in; opening a special Web monitoring page of the intelligent safety electricity utilization device, and logging in a management account and a password; s4: controlling; carrying out control operation and parameter setting through a special Web monitoring page; s5: outputting; and viewing the display screen of the safe power utilization device after control operation is carried out through the Web monitoring page. The intelligent safety power utilization device is connected with the cloud server through the WIFI to achieve real-time monitoring, normal use of local monitoring and control can be guaranteed when a network is disconnected, reliability and applicability are improved, power can be timely cut off under emergency conditions through real-time monitoring of line parameters, and safety is improved.

Description

Cloud monitoring and control method for safety electricity utilization intelligent device
Technical Field
The invention relates to the field of safety electricity utilization, in particular to a cloud monitoring and controlling method for a safety electricity utilization intelligent device.
Background
With the progress of science and technology, more and more people are aware of the importance of safe power utilization, more and more power utilization equipment needs a safe power supply, and the monitoring of the safe power utilization equipment can be used for the management of family residences, schools, hospitals and other important places to play a great role.
The traditional electric device is a direct connection wire, which can not detect the problem of circuit in real time and can not control the circuit, thus easily causing potential safety hazard.
Disclosure of Invention
The invention aims to solve the defects in the prior art, and provides a cloud monitoring and controlling method for a safety electricity utilization intelligent device.
In order to achieve the purpose, the invention adopts the following technical scheme:
the method for monitoring and controlling the cloud of the intelligent safety electricity utilization device comprises the following steps:
s1: starting; turning on a switch of the intelligent safety electricity utilization device, electrifying and starting the intelligent safety electricity utilization device, and initializing the mainboard and each module on the mainboard;
s2: a network is distributed; pressing a WIFI configuration button of a display screen on the safety electricity utilization intelligent device, configuring a WIFI account and a password, logging in and connecting to a network after the WIFI account and the password are configured, and lighting an indicator lamp after the WIFI account and the password are successfully connected to a cloud server through the network;
s3: logging in; opening a special Web monitoring page of the intelligent safety electricity utilization device, logging in a management account and a password, and checking real-time data acquired by the intelligent safety electricity utilization device and transmitted through a network;
s4: controlling; the method comprises the steps that control operation and parameter setting are carried out through a special Web monitoring page, control operation commands and parameter setting commands are sent to a safety electricity utilization intelligent device through a network, the safety electricity utilization intelligent device receives and analyzes the commands, and corresponding actions are executed according to the commands;
s5: outputting; and after the control operation is carried out through the Web monitoring page, the display screen of the safe power utilization device is checked, and the power on/off state and the parameter value after the command is executed are displayed by the intelligent safe power utilization device after the command is executed.
Preferably, in step S1, the WIFI module initializes and selects an MQTT protocol to connect with the cloud server, so as to implement uploading and issuing;
the WIFI module forms data transmission after being connected with the cloud server, so that the confidentiality and the safety of data transmission can be improved, and the normal use of local monitoring and control can be ensured during network disconnection.
Preferably, in step S2, the indicator light shows blue after the network connection is successful, the indicator light shows red after the network connection is failed, and the indicator light shows yellow and flashes when the device fails;
the different colours of pilot lamp convenient to use person discerns the running state of safe power consumption intelligent device fast.
Preferably, in step S3, the motherboard transmits the read signal to the cloud server, where the signal includes, but is not limited to, a voltage value, a current value, a temperature value, and an insulation value, and the cloud server displays the read signal on the Web monitoring page in real time according to the obtained data.
Preferably, in step S4, the motherboard receives a command and parameter settings from the cloud server to adjust parameters of the motherboard, and the cloud server logs in and checks and operates through the computer device and the mobile communication device.
Preferably, in step S5, the cloud server does not send a control command to power off, and the secure power utilization intelligent device outputs secure power.
The invention has the following beneficial effects:
1. the safety power utilization intelligent device is connected with the cloud server through the WIFI to form wireless transmission data, real-time monitoring and control over the safety power utilization intelligent device are achieved, local detection and normal use of control of the system can be guaranteed when a network is disconnected, and the safety power utilization intelligent device can be matched with the cloud server together to achieve many-to-one monitoring and control.
2. The device passes through the mainboard and gathers in real time and transmit to high in the clouds server the grid voltage of circuit, consumer electric current, safe power consumption intelligent device's temperature, circuit insulation value for the user can observe safe power consumption intelligent device's user state at any time, can in time control the power failure of safe power consumption intelligent device taking place the unexpected condition, increases the security.
In summary, the intelligent device for safe power utilization is connected with the cloud server through the WIFI to achieve real-time monitoring, normal use of local monitoring and control can be guaranteed when a network is disconnected, reliability and applicability are improved, power can be timely cut off under emergency conditions through real-time monitoring of line parameters, and safety is improved.
Drawings
Fig. 1 is a flowchart of a method for cloud monitoring and control of an intelligent device for safe power utilization according to the present invention;
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Referring to fig. 1, a method for cloud monitoring and control of a secure power utilization intelligent device includes the following steps:
s1: starting; turning on a switch of the intelligent safety electricity utilization device, electrifying and starting the intelligent safety electricity utilization device, and initializing the mainboard and each module on the mainboard;
s2: a network is distributed; pressing a WIFI configuration button of a display screen on the safety electricity utilization intelligent device, configuring a WIFI account and a password, logging in and connecting to a network after the WIFI account and the password are configured, and lighting an indicator lamp after the WIFI account and the password are successfully connected to a cloud server through the network;
s3: logging in; opening a special Web monitoring page of the intelligent safety electricity utilization device, logging in a management account and a password, and checking real-time data acquired by the intelligent safety electricity utilization device and transmitted through a network;
s4: controlling; the method comprises the steps that control operation and parameter setting are carried out through a special Web monitoring page, control operation commands and parameter setting commands are sent to a safety electricity utilization intelligent device through a network, the safety electricity utilization intelligent device receives and analyzes the commands, and corresponding actions are executed according to the commands;
s5: outputting; and after the control operation is carried out through the Web monitoring page, the display screen of the safe power utilization device is checked, and the power on/off state and the parameter value after the command is executed are displayed by the intelligent safe power utilization device after the command is executed.
In step S1, the WIFI module initializes and selects an MQTT protocol to connect with the cloud server, so as to implement uploading and issuing;
the WIFI module forms data transmission after being connected with the cloud server, so that the confidentiality and the safety of data transmission can be improved, and the normal use of local monitoring and control can be ensured during network disconnection.
In step S2, the indicator light shows blue after the network connection is successful, the indicator light shows red after the network connection is failed, and the indicator light shows yellow and flashes when the device fails;
the different colours of pilot lamp convenient to use person discerns the running state of safe power consumption intelligent device fast.
In step S3, the motherboard transmits the read signal to the cloud server, where the signal includes, but is not limited to, a voltage value, a current value, a temperature value, and an insulation value, and the cloud server displays the data on the Web monitoring page in real time according to the obtained data.
In step S4, the motherboard receives the command and parameter setting of the cloud server to adjust the parameters of the motherboard, and the cloud server logs in and checks and operates through the computer device and the mobile communication device.
In step S5, the cloud server does not send a control command to power off, and the secure power consumption intelligent device outputs secure power.
When the intelligent safety power utilization device is used, a switch of the intelligent safety power utilization device is turned on, the switch of the intelligent safety power utilization device is powered on and started, the main board and each module on the main board are initialized, a main interface is displayed on a display screen after initialization is finished, a WIFI configuration button on the display screen is pressed to configure a WIFI account and a password, a cloud server is connected according to the configured WIFI account and the password, an indicator lamp is turned on blue after the intelligent safety power utilization device is connected to the cloud server, a Web monitoring page is opened, an account and the password are logged in and managed, signal data which are collected by the intelligent safety power utilization device in real time and transmitted to the cloud server through a WIFI module are checked, the signal comprises a voltage value, a current value, a temperature value and an insulation value, the using state of a circuit and the operating state of the intelligent safety power utilization device can be known, then safe power consumption intelligent device receives control command through the WIFI module and cuts off the circuit, then the circuit disconnection, when safe power consumption intelligent device opened, the output was safe electricity.
Initializing a mainboard; the mainboard obtains the actual value after calculating through reading voltage acquisition unit, current acquisition unit, temperature acquisition unit, insulation value acquisition unit's data, controls the circular telegram. After the WIFI account and the password are configured, the account and the password are verified through MQTT, the server is automatically connected, data are uploaded to the cloud, and when the cloud sends a control command to control power failure, the intelligent safety power utilization device performs power failure operation.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and the technical solutions and the inventive concepts thereof according to the present invention should be equivalent or changed within the scope of the present invention.

Claims (6)

1. The method for monitoring and controlling the cloud of the intelligent safety electricity utilization device is characterized by comprising the following steps of:
s1: starting; turning on a switch of the intelligent safety electricity utilization device, electrifying and starting the intelligent safety electricity utilization device, and initializing the mainboard and each module on the mainboard;
s2: a network is distributed; pressing a WIFI configuration button of a display screen on the safety electricity utilization intelligent device, configuring a WIFI account and a password, logging in and connecting to a network after the WIFI account and the password are configured, and lighting an indicator lamp after the WIFI account and the password are successfully connected to a cloud server through the network;
s3: logging in; opening a special Web monitoring page of the intelligent safety electricity utilization device, logging in a management account and a password, and checking real-time data acquired by the intelligent safety electricity utilization device and transmitted through a network;
s4: controlling; the method comprises the steps that control operation and parameter setting are carried out through a special Web monitoring page, control operation commands and parameter setting commands are sent to a safety electricity utilization intelligent device through a network, the safety electricity utilization intelligent device receives and analyzes the commands, and corresponding actions are executed according to the commands;
s5: outputting; and after the control operation is carried out through the Web monitoring page, the display screen of the safe power utilization device is checked, and the power on/off state and the parameter value after the command is executed are displayed by the intelligent safe power utilization device after the command is executed.
2. The cloud monitoring and control method for the intelligent security electricity utilization device according to claim 1, wherein in step S1, the WIFI module initializes and selects MQTT protocol to connect with the cloud server for uploading and issuing.
3. The cloud monitoring and control method for the intelligent security electricity utilization device according to claim 2, wherein in step S2, the indicator light shows blue after the network connection is successful, the indicator light shows red after the network connection is failed, and the indicator light shows yellow and flashes when the equipment fails.
4. The cloud monitoring and control method for the intelligent security electricity utilization device according to claim 3, wherein in step S3, the main board transmits the read signals to the cloud server, the signals include but are not limited to voltage values, current values, temperature values, and insulation values, and the cloud server displays the obtained data on a Web monitoring page in real time.
5. The method for cloud monitoring and control of an intelligent security electricity utilization device according to claim 4, wherein in step S4, the main board receives commands and parameter settings from the cloud server to adjust parameters of the main board, and the cloud server logs in and checks and operates through the computer device and the mobile communication device.
6. The cloud monitoring and control method for the intelligent security electricity utilization device according to claim 5, wherein in step S5, the cloud server does not send the control command to power off, and the intelligent security electricity utilization device outputs safe electricity.
CN202010165987.8A 2020-03-11 2020-03-11 Cloud monitoring and control method for safety electricity utilization intelligent device Pending CN111342556A (en)

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CN202010165987.8A CN111342556A (en) 2020-03-11 2020-03-11 Cloud monitoring and control method for safety electricity utilization intelligent device

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Application Number Priority Date Filing Date Title
CN202010165987.8A CN111342556A (en) 2020-03-11 2020-03-11 Cloud monitoring and control method for safety electricity utilization intelligent device

Publications (1)

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CN111342556A true CN111342556A (en) 2020-06-26

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105471100A (en) * 2015-12-01 2016-04-06 国网上海市电力公司 Intelligent power utilization management unit
CN109038808A (en) * 2018-06-07 2018-12-18 武汉阿迪克电子股份有限公司 A kind of home safety electricity consumption intelligent monitor and WiFi communication monitoring method
CN208623390U (en) * 2018-06-07 2019-03-19 武汉阿迪克电子股份有限公司 A kind of home safety electricity consumption intelligent monitor

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105471100A (en) * 2015-12-01 2016-04-06 国网上海市电力公司 Intelligent power utilization management unit
CN109038808A (en) * 2018-06-07 2018-12-18 武汉阿迪克电子股份有限公司 A kind of home safety electricity consumption intelligent monitor and WiFi communication monitoring method
CN208623390U (en) * 2018-06-07 2019-03-19 武汉阿迪克电子股份有限公司 A kind of home safety electricity consumption intelligent monitor

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Effective date of registration: 20220913

Address after: No. 12, Huifeng East 3rd Road, Zhongkai High-tech Zone, Huizhou City, Guangdong Province, 516000

Applicant after: Huabang Chuangke (Huizhou) Intelligent Technology Co.,Ltd.

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Application publication date: 20200626