Intelligent energy management and control board convenient to use

By combining wireless charging, remote intelligent control, and photovoltaic charging components, the problems of poor flexibility and uneven energy efficiency caused by the fixed installation of traditional energy management boards are solved, achieving convenient, stable, and environmentally friendly energy management.

CN224110922UActive Publication Date: 2026-04-10SHANGHAI HOUPU TECH DEV CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANGHAI HOUPU TECH DEV CO LTD
Filing Date
2025-04-22
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Traditional energy management panels are fixed in place and difficult to move, resulting in poor flexibility and adaptability of the equipment in different areas. They cannot meet the control needs of large-scale or decentralized areas, and energy efficiency management and resource allocation are uneven. In particular, scheduling and optimization work is cumbersome when energy demand is unstable.

Method used

By combining wireless charging placement components, remote intelligent control components, and photovoltaic charging components, convenient charging, precise control, and sustainable power supply are achieved. Through wireless charging, remote control, and solar power supplementation, the ease of use, reliability, and environmental performance of the equipment are enhanced.

Benefits of technology

It improves the convenience and stability of the equipment, enables precise energy control and intelligent operation, enhances the system's self-sufficiency and emergency response capabilities, and improves the efficiency and environmental friendliness of energy management.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of intelligent control equipment, and discloses an intelligent energy management and control board convenient to use, which comprises a remote intelligent control assembly used for remotely and intelligently controlling equipment. A wireless charging placing assembly used for placing the remote intelligent control assembly and completing wireless charging on the remote intelligent control assembly is arranged on the outer side of the remote intelligent control assembly, and a photovoltaic charging assembly used for completing emergency charging on the remote intelligent control assembly under the extreme condition is arranged on one side of the remote intelligent control assembly. The intelligent control assembly realizes accurate energy management and control and intelligent operation through an advanced control and data processing chip, and the photovoltaic charging assembly provides sustainable solar supplementary power for the system, so that the self-sufficient capability and the emergency capability of the system are enhanced, and the system is convenient to use. The seamless cooperation among the modules greatly improves the convenience, reliability and environmental protection performance of the equipment, and provides a more efficient and greener solution for a modern energy management system.
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Description

TECHNICAL FIELD

[0001] The utility model relates to intelligent control equipment technical field, specifically, relate to a convenient to use's intelligent energy management and control board. BACKGROUND

[0002] Energy management and control board is a kind of equipment for monitoring and managing energy system, is widely used in industry, commerce and family etc. place, it passes through the integration of various sensors, control module and display interface, real-time tracking energy use, such as electric power, heat energy, water resources etc., user can adjust, optimize energy consumption through control panel, improve energy efficiency and reduce waste, energy management and control board generally has data acquisition, analysis, alarm and remote control function, can effectively improve the precision and efficiency of energy management, help user realizes energy-saving goal, its function includes automation control, fault detection, performance monitoring and energy efficiency evaluation etc., ensure the safe and stable operation of energy system.

[0003] The conventional energy management and control board in prior art is usually fixedly installed, difficult to move, leading to inconvenience when equipment migration or adjustment is needed, this fixed installation limits the flexibility and adaptability of equipment in different areas, especially when multiple areas need independent control, single energy management and control board can only control the equipment of specified area, cannot meet the demand of large-scale or scattered area, in addition, the area limitation of traditional control board can also lead to uneven energy efficiency management and resource allocation, especially when energy demand is unstable or there are differences between multiple areas, fixed area division makes scheduling and optimization work cumbersome, therefore, the technical personnel in the technical field provide a kind of convenient to use's intelligent energy management and control board to solve the problems raised in the background art. UTILITARIAN CONTENT

[0004] The utility model aims at providing a kind of convenient to use's intelligent energy management and control board, solve the problems that the conventional energy management and control board in prior art is usually fixedly installed, difficult to move, leading to inconvenience when equipment migration or adjustment is needed, this fixed installation limits the flexibility and adaptability of equipment in different areas, especially when multiple areas need independent control, single energy management and control board can only control the equipment of specified area, cannot meet the demand of large-scale or scattered area, in addition, the area limitation of traditional control board can also lead to uneven energy efficiency management and resource allocation, especially when energy demand is unstable or there are differences between multiple areas, fixed area division makes scheduling and optimization work cumbersome.

[0005] This utility model provides the following technical solution: a convenient smart energy management board, including a remote smart control component for remote smart control of equipment, a wireless charging placement component for placing the remote smart control component and wirelessly charging the remote smart control component on the outside of the remote smart control component, and a photovoltaic charging component for emergency charging the remote smart control component in extreme situations on one side of the remote smart control component.

[0006] As a preferred embodiment of the above technical solution, the wireless charging placement component includes a first mounting plate, a bottom support strip is fixedly connected to the lower side of one side of the first mounting plate, side limiting strips are fixedly connected to both ends of the bottom support strip, and a first mounting slot is opened in the upper part of the bottom support strip.

[0007] As a preferred embodiment of the above technical solution, a first PCB board is provided inside the first mounting slot. Multiple first metal contacts are arranged and fixedly connected at the center of the upper end of the first PCB board. A charging wire is fixedly connected to one side of the lower end of the first PCB board. The input end of the charging wire passes through the lower inner wall of the first mounting slot and leads to the lower end of the bottom support strip. An anti-tipping frame is fixedly connected to the bottom support strip and the two side limit strips on the side away from the first mounting plate.

[0008] As a preferred embodiment of the above technical solution, the remote intelligent control component includes a stainless steel frame, which is placed between the upper end of the bottom support strip and the two side limiting strips. The stainless steel frame is detachably connected to the bottom support strip and the two side limiting strips. An aluminum alloy support plate is fixedly fitted inside the center of the stainless steel frame. Multiple weight-reducing slots are arranged and opened through the aluminum alloy support plate. Four positioning posts are fixedly connected in a rectangular arrangement on one side of the stainless steel frame. A touch display panel is provided on one side of the stainless steel frame.

[0009] As a preferred embodiment of the above technical solution, a first plastic positioning frame is connected to the center of the touch display panel near the stainless steel frame edge by an adhesive process. The first plastic positioning frame is snapped into the inside of the stainless steel frame. A second PCB board is fixedly sleeved inside the stainless steel frame at the lower part. Multiple first flexible flat cables are arranged and fixedly connected to one side of the upper part of the second PCB board. Multiple second metal contacts are arranged and fixedly connected to the center of the lower end of the second PCB board. The multiple second metal contacts are in contact with the multiple first metal contacts. A main control PCB board is fixedly connected to the end of the four positioning posts away from the aluminum alloy support plate by bolts. The end of the first flexible flat cable away from the second PCB board is fixedly welded to the main control PCB board.

[0010] As the preferred technical scheme of the above, the WiFi receiving chip, the first data transmission chip, the power management chip, the terminal data processing chip and the second data transmission chip are fixedly welded on one side of the main control PCB board, the gel storage battery is fixedly connected to the aluminum alloy support plate away from the touch display panel and close to one end, the second soft wire is fixedly connected to the output end of the gel storage battery, and the second soft wire is fixedly welded between the output end and the main control PCB board.

[0011] As the preferred technical scheme of the above, the photovoltaic charging assembly comprises a second mounting plate, the second mounting plate is hingedly connected to the upper side of the rear protective cover plate, and the photovoltaic panel is fixedly installed in the second mounting plate.

[0012] Compared with the prior art, the intelligent energy management and control board has the following beneficial effects:

[0013] The intelligent energy management and control board cooperates with the wireless charging and placing assembly, the remote intelligent control assembly and the photovoltaic charging assembly to form an efficient, stable and environmentally friendly energy management system, the wireless charging and placing assembly realizes a convenient charging process and improves the ease of use of the device, the remote intelligent control assembly realizes precise energy management and control and intelligent operation through advanced control and data processing chips, and the photovoltaic charging assembly provides sustainable solar power for the system, thereby enhancing the self-sufficiency and emergency capabilities of the system. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a three-dimensional structure schematic diagram of the intelligent energy management and control board convenient to use;

[0015] Figure 2 It is a three-dimensional structure schematic diagram of the intelligent energy management and control board convenient to use from another perspective;

[0016] Figure 3 It is a three-dimensional structure schematic diagram of the photovoltaic charging assembly of the intelligent energy management and control board convenient to use;

[0017] Figure 4 It is a three-dimensional split structure schematic diagram of the wireless charging and placing assembly;

[0018] Figure 5 It is a three-dimensional split structure schematic diagram of the remote intelligent control assembly;

[0019] Figure 6 The perspective exploded view of another view of the remote intelligent control assembly;

[0020] Figure 7 The perspective view of the stainless steel frame;

[0021] Figure 8 The perspective exploded view of the photovoltaic charging assembly.

[0022] Legend:

[0023] 1, wireless charging placement assembly; 101, first mounting plate; 102, bottom support bar; 103, side limiting bar; 104, first mounting notch; 105, first PCB; 106, first metal contact; 107, charging wire; 108, anti-toppling frame; 2, remote intelligent control assembly; 201, stainless steel frame; 202, aluminum alloy support plate; 203, weight-reducing hole; 204, positioning column; 205, touch display panel; 206, first plastic positioning frame; 207, second PCB; 208, first flexible flat cable; 209, second metal contact; 2010, main control PCB; 2011, WiFi receiving chip; 2012, first data transmission chip; 2013, power management chip; 2014, terminal data processing chip; 2015, second data transmission chip; 2016, gel storage battery; 2017, second flexible flat cable; 2018, rear protective cover plate; 2019, second plastic positioning frame; 3, photovoltaic charging assembly; 301, second mounting plate; 302, photovoltaic panel. DETAILED DESCRIPTION

[0024] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application.

[0025] Please refer to Figures 1-3 The present application provides a technical solution: an intelligent energy management and control board for easy use, which comprises a remote intelligent control assembly for remotely and intelligently controlling devices, a wireless charging placement assembly arranged outside the remote intelligent control assembly and used for placing the remote intelligent control assembly and completing wireless charging of the remote intelligent control assembly, and a photovoltaic charging assembly arranged on one side of the remote intelligent control assembly and used for completing emergency charging of the remote intelligent control assembly in extreme conditions.

[0026] The intelligent energy management and control board forms an efficient, stable and environmentally friendly energy management system through the cooperative work of the three core modules of the wireless charging placement component, the remote intelligent control component and the photovoltaic charging component. The wireless charging placement component realizes a convenient charging process and improves the ease of use of the device. The remote intelligent control component realizes precise energy management and intelligent operation through advanced control and data processing chips. The photovoltaic charging component provides sustainable solar power for the system, enhancing the self-sufficiency and emergency capabilities of the system. The seamless cooperation between the above modules greatly improves the convenience, reliability and environmental performance of the device, providing a more efficient and greener solution for modern energy management systems.

[0027] As an embodiment in the present embodiment, please refer to Figure 4 As shown in the figure, the wireless charging placement component includes a first mounting plate, a bottom support bar is fixedly connected to the lower side of the first mounting plate, side limiting bars are fixedly connected to both ends of the bottom support bar, a first installation slot is formed in the upper part of the inside of the bottom support bar, a first PCB board is arranged inside the first installation slot, a plurality of first metal contacts are arranged and fixedly connected to the upper end center of the first PCB board, a charging wire is fixedly connected to the side of the lower end of the first PCB board, the input end of the charging wire penetrates through the lower inner wall of the first installation slot to the lower end of the bottom support bar, and an anti-toppling frame is fixedly connected to the side away from the first mounting plate of the bottom support bar and the two side limiting bars.

[0028] The wireless charging placement component provides a stable placement platform to ensure that the remote intelligent control component can efficiently and safely complete the charging process when performing wireless charging. The first PCB board in the component contacts the second metal contacts in the remote intelligent control component through a plurality of first metal contacts to realize wireless energy transmission. The charging wire ensures that the power is transmitted from the first installation slot to the bottom support bar, thereby providing continuous energy support for the intelligent control component. The beneficial effects of this design are that the user can easily place the remote intelligent control component in the wireless charging area without plugging in the charger, avoiding the inconvenience in the traditional charging process and improving the convenience and stability of the device. At the same time, the bottom support bar and the side limiting bars increase the stability of the placement component, effectively preventing tilting or accidental falling and ensuring the safety of device use.

[0029] As an embodiment in the present embodiment, please refer to Figures 5-7As shown, the remote intelligent control assembly includes a stainless steel frame placed between the bottom support bar and the two side limiting bars, and the stainless steel frame is detachably connected with the bottom support bar and the two side limiting bars. An aluminum alloy support plate is fixedly sleeved in the center of the stainless steel frame, a plurality of lightening grooves are arranged and penetrated in the aluminum alloy support plate, four positioning columns are fixedly connected in a rectangular array at one end of one side of the stainless steel frame, a touch display panel is arranged on one side of the stainless steel frame, a first plastic positioning frame is connected by adhesive process at the edge of the center of one side of the touch display panel close to the stainless steel frame, the first plastic positioning frame is clamped in the stainless steel frame, a second PCB is fixedly sleeved at the lower part of the stainless steel frame, a plurality of first flexible wires are fixedly connected in an array at one side of the upper end of the second PCB, a plurality of second metal contacts are fixedly connected in an array at the center of the lower end of the second PCB, the plurality of second metal contacts are in contact with the plurality of first metal contacts respectively, a main control PCB is fixedly connected by bolts at one end of the aluminum alloy support plate away from the four positioning columns, the first flexible wires are fixedly welded at one end away from the second PCB and the main control PCB, a WiFi receiving chip, a first data transmission chip, a power management chip, a terminal data processing chip and a second data transmission chip are fixedly welded on one side of the main control PCB, a gel storage battery is fixedly connected at one end of one side of the aluminum alloy support plate away from the touch display panel, a second flexible wire is fixedly connected at the output end of the gel storage battery, and the second flexible wire is fixedly welded at the output end and the main control PCB. A rear protective cover plate is arranged at one side of the stainless steel frame away from the touch display panel, a second plastic positioning frame is connected by adhesive process at one side of the rear protective cover plate close to the stainless steel frame, and the second plastic positioning frame is fixedly sleeved in the stainless steel frame.

[0030] The remote intelligent control assembly as a core control unit has a solid shell formed by the stainless steel frame to protect the internal circuit from external interference. The lightening grooves in the aluminum alloy support plate not only reduce the overall weight of the assembly but also enhance the heat dissipation performance to ensure stable operation of the device under high load. The touch display panel provides an intuitive operation interface for users to monitor and control the device status in real time. Through the connection of the first flexible wire with the second PCB and the main control PCB, the remote intelligent control assembly can perform real-time data transmission and energy management. The gel storage battery provides a backup power supply for the system to ensure normal operation in case of power failure or insufficient energy. The overall design improves the intelligent operation and efficient management of energy, making energy control more accurate and flexible.

[0031] As an embodiment in the present embodiment, please refer to Figure 8 As shown, the photovoltaic charging assembly includes a second mounting plate hingedly connected at the upper side of one side of the rear protective cover plate, and a photovoltaic panel is fixedly installed in the second mounting plate. The photovoltaic panel charges the gel storage battery through electrical connection with the main control PCB.

[0032] The photovoltaic charging assembly is hinged on one side of the rear protective cover plate through the second mounting plate and is provided with a photovoltaic panel. When the light condition is suitable, the photovoltaic panel converts solar energy into electric energy and charges the gel storage battery through the main control PCB. This charging mode enables the system to be self-sufficient relying on solar energy without external power supply. The addition of the photovoltaic charging assembly significantly improves the independence and green environmental protection of the energy management system, reduces the dependence on traditional power supply, and has great advantages especially when used outdoors or in remote areas. It can provide emergency power support in extreme conditions and ensure that the equipment can work normally when it is not connected to the power grid for a long time, improving the reliability and sustainability of the system.

[0033] Working principle: The wireless charging placement assembly provides a stable placement platform to ensure that the remote intelligent control assembly can efficiently and safely complete the charging process when performing wireless charging. The first PCB in the assembly contacts the second metal contact in the remote intelligent control assembly through multiple first metal contacts to achieve wireless energy transmission. The charging wire ensures that the power is transmitted from the first mounting slot to the bottom support bar, thereby providing continuous energy support for the intelligent control assembly. The beneficial effects of this design are that users can easily place the remote intelligent control assembly in the wireless charging area without plugging in the charger, avoiding the inconvenience of traditional charging and improving the convenience and stability of the device. At the same time, the bottom support bar and the side limiting bar increase the stability of the placement assembly, effectively preventing tilting or accidental falling and ensuring the safety of device use. The remote intelligent control assembly, as the core control unit, is composed of a stainless steel frame to form a sturdy shell that protects the internal circuit from external interference. The weight-reducing slots in the aluminum alloy support plate not only reduce the overall weight of the assembly but also enhance the heat dissipation performance, ensuring that the device remains stable under high load. The touch display panel provides an intuitive operation interface for users, facilitating real-time monitoring and control of device status. Through the connection of the first flexible wire, the second PCB, and the main control PCB, the remote intelligent control assembly can perform real-time data transmission and energy management. The gel storage battery provides backup power for the system, ensuring normal operation in the event of power failure or energy shortage. The overall design improves the intelligent operation and efficient management of energy, making energy management more precise and flexible.

[0034] The photovoltaic charging assembly is hinged on one side of the rear protective cover plate through the second mounting plate and is provided with a photovoltaic panel, when the light condition is suitable, the photovoltaic panel converts solar energy into electric energy and charges the gel storage battery through the main control PCB, this charging mode enables the system to be self-sufficient by relying on solar energy without external power supply, the addition of the photovoltaic charging assembly significantly improves the independence and green environmental protection of the energy management system, reduces the dependence on traditional power supply, especially when used outdoors or in remote areas, it has great advantages, it can provide emergency power support in extreme conditions, ensures that the equipment can work normally when it is not connected to the power grid for a long time, improves the reliability and persistence of the system.

[0035] The above examples are only used to illustrate the technical solutions of the present application, but not to limit them.

Claims

1. A smart energy management board for convenient use, characterized in that: Including remote intelligent control assembly (2) for remote intelligent control of equipment, the remote intelligent control assembly (2) outside is provided with wireless charging placement assembly (1) for placing remote intelligent control assembly (2) and completing wireless charging of remote intelligent control assembly (2), one side of the remote intelligent control assembly (2) is provided with photovoltaic charging assembly (3) for completing emergency charging of remote intelligent control assembly (2) in extreme case.

2. The smart energy management board for easy use as claimed in claim 1, wherein: The wireless charging placement assembly (1) includes a first mounting plate (101), a bottom support bar (102) is fixedly connected to the lower side of the first mounting plate (101), and side limiting bars (103) are fixedly connected to the two ends of the bottom support bar (102). A first installation slot (104) is formed in the upper part of the bottom support bar (102).

3. The smart energy management board for easy use according to claim 2, characterized in that: The first installation slot (104) is provided with a first PCB (105), a plurality of first metal contacts (106) are arranged and fixedly connected to the upper end of the first PCB (105), a charging wire (107) is fixedly connected to the side of the lower end of the first PCB (105), the input end of the charging wire (107) penetrates through the lower inner wall of the first installation slot (104) and extends to the lower end of the bottom support bar (102), and an anti-toppling frame (108) is fixedly connected to the side, away from the first mounting plate (101), of the bottom support bar (102) and the two side limiting bars (103).

4. The smart energy management board for easy use according to claim 3, characterized in that: The remote intelligent control assembly (2) includes a stainless steel frame (201), which is placed between the upper end of the bottom support bar (102) and the two side limiting bars (103). The stainless steel frame (201) is detachably connected with the bottom support bar (102) and the two side limiting bars (103). An aluminum alloy support plate (202) is fixedly sleeved in the center of the stainless steel frame (201), a plurality of lightening grooves (203) are arranged and formed in the aluminum alloy support plate (202), four positioning columns (204) are arranged and fixedly connected to the one end of the side of the stainless steel frame (201), and a touch display panel (205) is arranged on the side of the stainless steel frame (201).

5. The smart energy management board for easy use as claimed in claim 4, wherein: The touch display panel (205) is connected with the first plastic positioning frame (206) through the adhesive process near the edge of the center of one side of the stainless steel frame (201), the first plastic positioning frame (206) is clamped in the stainless steel frame (201), the second PCB (207) is fixedly sleeved on the lower side of the stainless steel frame (201), a plurality of first flexible wires (208) are arranged and fixedly connected on the upper end of the second PCB (207), a plurality of second metal contacts (209) are arranged and fixedly connected at the center of the lower end of the second PCB (207), the plurality of second metal contacts (209) are respectively in contact with the plurality of first metal contacts (106), the four positioning columns (204) are fixedly connected with the main control PCB (2010) through bolts at the end away from the aluminum alloy support plate (202), and the first flexible wire (208) is fixedly welded between the end away from the second PCB (207) and the main control PCB (2010).

6. A smart energy management board for easy use as claimed in claim 5, wherein: The main control PCB (2010) is fixedly welded with a WiFi receiving chip (2011), a first data transmission chip (2012), a power management chip (2013), a terminal data processing chip (2014) and a second data transmission chip (2015) on one side, the aluminum alloy support plate (202) is fixedly connected with a gel storage battery (2016) at one end away from the touch display panel (205) on one side, the gel storage battery (2016) is fixedly connected with a second flexible wire (2017), and the second flexible wire (2017) is fixedly welded between the output end and the main control PCB (2010). The rear protection cover plate (2018) is arranged on the side away from the touch display panel (205) of the stainless steel frame (201), the rear protection cover plate (2018) is connected with a second plastic positioning frame (2019) through the adhesive process on the side close to the stainless steel frame (201), and the second plastic positioning frame (2019) is fixedly sleeved in the stainless steel frame (201).

7. The smart energy management board for easy use as claimed in claim 6, wherein: The photovoltaic charging assembly (3) comprises a second mounting plate (301), the second mounting plate (301) is hinged on one side of the rear protection cover plate (2018) and is arranged on the upper side, and the photovoltaic panel (302) is fixedly installed in the second mounting plate (301), and the photovoltaic panel (302) is charged for the gel storage battery (2016) through electrical connection with the main control PCB (2010).