Multifunctional clean energy heating control terminal

The detachable structure and magnetic protective design solve the problems of large size and insufficient protection of heating control terminals, achieving convenient portability and stable operation.

CN224215443UActive Publication Date: 2026-05-08SHANGHAI AMMONIUM ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANGHAI AMMONIUM ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
Filing Date
2025-10-16
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing heating control terminals are large and bulky, inconvenient to carry, lack sufficient protection, cannot be flexibly disassembled, and cannot meet the convenient mobility needs of modern life. Furthermore, their protection is weak in high humidity or when subjected to impacts, affecting equipment operation.

Method used

Designed as a detachable structure, the protective cover and protective cotton are connected by magnetic attachment. The protective cotton consists of vertical strips of varying heights, providing multi-layer protection. Combined with an electric telescopic rod and pressure sensor, it achieves a stable installation.

Benefits of technology

It achieves convenient portability and flexible operation, enhances the equipment's protective capabilities, prevents dust, moisture and collisions from damaging the internal components, extends the equipment's service life, and ensures the stable operation of the heating control function.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multifunctional clean energy heating control terminal, and relates to the technical field of heating control, the multifunctional clean energy heating control terminal comprises a terminal main body, the left side of the front side of the terminal main body is provided with a first magnetic sticker, and the interior of the terminal main body is provided with a control mainboard; a clamping end is arranged on the back face of the terminal body, a fixing structure is arranged on the back face of the clamping end, the fixing structure comprises a fixing base, electric telescopic rods, a pressure sensor and a bottom plate, the two electric telescopic rods are arranged in the two sides of the fixing base, the pressure sensor is arranged at the top of the fixing base, and the bottom plate is arranged on the back face of the fixing base. The heating system overcomes the defects in the prior art, a user can conveniently control the heating system in various scenes at any time, meanwhile, by means of a double-protection structure formed by the protection cover and the protection cotton, the service life of the heating system is prolonged, stable operation of the heating control function is guaranteed, and the heating system has high social use value and application prospects.
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Description

Technical Field

[0001] This utility model relates to the field of heating control technology, and in particular to a multifunctional clean energy heating control terminal. Background Technology

[0002] In modern life, heating is crucial for improving comfort, especially during the cold season. With rising living standards and a growing emphasis on clean energy, multifunctional clean energy heating control terminals have emerged. However, many modern heating control terminals still employ a bulky, integrated design, making them inconvenient to carry for on-site adjustments and relocation. This limits the flexibility of use and fails to meet the demands of modern fast-paced lifestyles for easy device movement. Furthermore, most modern heating control terminals rely on simple outer casings for protection, offering limited protection against dust and moisture, accidental impacts, and other potential threats. For instance, in high-humidity environments, moisture can easily penetrate the device, causing short circuits and disrupting normal operation.

[0003] Patent CN220381525U discloses a control terminal, which includes a main body and a handle. The outer wall of the main body is fixedly connected to the handle, and the inner wall of the main body is provided with an installation mechanism. The installation mechanism includes a connecting column, the end of which is fixedly connected to the main body. The inner wall of the connecting column is threadedly connected to a bolt, the outer wall of which abuts against a circuit board and abuts against a front cover. This device allows for internal cleaning and maintenance by tightening the bolt, which connects to the front cover and the connecting column. The main body is circular in shape, and the computer interface module, control module, power module, and network interface module are connected in a ring on the outer wall of the main body. This avoids multiple wires from coming into contact with each other, preventing tangling and short circuits and improving the service life of the control terminal. However, this device cannot flexibly disassemble the handle to reduce the overall size, making it inconvenient to operate in confined spaces or carry during mobile operations. It also has insufficient protection against various external factors such as dust, moisture, and collisions. Therefore, we propose a multifunctional clean energy heating control terminal. Utility Model Content

[0004] To improve the practicality and convenience of the product and ensure the stable operation of the heating control function, this utility model adopts the following technical solution:

[0005] A multifunctional clean energy heating control terminal includes a terminal body. A first magnetic sticker is provided on the left side of the front of the terminal body. A control motherboard is provided inside the terminal body. A snap-fit ​​end is provided on the back of the terminal body. A fixing structure is provided on the back of the snap-fit ​​end. The fixing structure includes a fixing base, an electric telescopic rod, a pressure sensor, and a base plate. Two sets of electric telescopic rods are provided inside the two sides of the fixing base. A pressure sensor is provided on the top of the fixing base. A base plate is provided on the back of the fixing base.

[0006] Preferably, the top of the terminal body is provided with a handle through a groove, and the handle is made of woven material, and the two ends of the handle are connected to the groove of the terminal body through sliders.

[0007] Preferably, the control motherboard includes a data acquisition module, a storage module, an interaction module, and a diagnostic module. The data acquisition module includes a temperature acquisition unit, the storage module includes a parameter storage unit and a historical data storage unit, the interaction module includes an operation unit and a remote interaction unit, and the diagnostic module includes a fault detection unit, a fault analysis unit, and a prompting unit.

[0008] Preferably, the terminal body has a circuit box at the bottom, a circuit interface on the bottom left side of the circuit box, multiple circuit interfaces equidistantly arranged on the top right side of the circuit box, a local area network port on the right side of the terminal body, and two sets of connection ports on the top two sides of the terminal body.

[0009] Preferably, the local area network terminal is connected to the control motherboard via electrical signals, and the output of the connection port is connected to the terminal body.

[0010] Preferably, a protective cover is provided on the right side of the terminal body, a protective cotton is provided on the front of the protective cover, and a second magnetic sticker is provided on the right side of the front of the protective cover.

[0011] Preferably, the protective cotton is composed of multiple vertical strips arranged in an alternating pattern, and the second magnetic sticker and the first magnetic sticker are attracted to each other by magnetic force.

[0012] Preferably, the bottom of the snap-fit ​​end is provided with a groove in the shape of a trapezoid, and the two sides of the snap-fit ​​end are provided with two sets of inward through holes.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] 1. This utility model has a detachable feature, which greatly improves portability and operability. For example, the circuit box and mounting base are also designed to be easy to separate. Compared with the traditional integrated heating control terminal, which is bulky and inconvenient to carry, this design has significant advantages in scenarios that require on-site debugging and mobile use. It allows users to control the heating system anytime and anywhere, greatly improving the practicality and convenience of the product.

[0015] 2. The protective cover and protective cotton together form a robust protective barrier for the unit. The protective cover is tightly attached to the first magnetic sticker on the main body of the terminal via a second magnetic adhesive, making installation and removal convenient and effectively preventing external pollutants such as dust and moisture from entering the unit. The protective cotton consists of vertical strips arranged in a staggered pattern. This unique structure absorbs the impact force in stages when subjected to external impact, providing excellent cushioning and preventing damage to internal precision components due to collisions. This dual protective structure provides comprehensive and multi-layered protection for the control terminal, extending its service life and ensuring the stable operation of the heating control function.

[0016] In summary, this utility model overcomes the shortcomings of the prior art, allowing users to control the heating system at any time in various scenarios. At the same time, with the dual protective structure consisting of a protective cover and protective cotton, it provides all-round protection for the control terminal, extends its service life, and ensures the stable operation of the heating control function. It has high social use value and application prospects. Attached Figure Description

[0017] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0018] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0019] Figure 2 This is a schematic diagram of the three-dimensional unfolded structure of this utility model;

[0020] Figure 3 This is a schematic diagram of the three-dimensional rear view structure of this utility model;

[0021] Figure 4 This is a rear-view three-dimensional structural diagram of the terminal body of this utility model;

[0022] Figure 5 This is a three-dimensional structural diagram of the fixed structure of this utility model;

[0023] Figure 6 This is a three-dimensional structural diagram of the circuit box of this utility model;

[0024] Figure 7 This is a three-dimensional cross-sectional structural diagram of the terminal body of this utility model;

[0025] Figure 8 This is a three-dimensional structural diagram of the protective cover of this utility model;

[0026] Figure 9 This is an enlarged schematic diagram of point A in this utility model;

[0027] Figure 10 This is a three-dimensional structural diagram of the grip connection of this utility model.

[0028] In the diagram: 1. Terminal body; 101. Handle; 102. First magnetic sticker; 103. Control motherboard; 2. Circuit box; 201. Circuit interface; 202. Line interface; 203. Local area network terminal; 204. Connection port; 3. Protective cover; 301. Protective cotton; 302. Second magnetic sticker; 4. Snap-fit ​​terminal; 5. Fixing structure; 501. Fixing base; 502. Electric telescopic rod; 503. Pressure sensor; 504. Base plate. Detailed Implementation

[0029] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0030] Example 1

[0031] Reference Figure 1 A multifunctional clean energy heating control terminal includes a terminal body 1. A first magnetic sticker 102 is provided on the left side of the front of the terminal body 1. A control motherboard 103 is provided inside the terminal body 1. A snap-fit ​​end 4 is provided on the back of the terminal body 1. A fixing structure 5 is provided on the back of the snap-fit ​​end 4. The fixing structure 5 includes a fixing base 501, an electric telescopic rod 502, a pressure sensor 503, and a base plate 504. Two sets of electric telescopic rods 502 are provided inside the two sides of the fixing base 501. A pressure sensor 503 is provided on the top of the fixing base 501. A base plate 504 is provided on the back of the fixing base 501.

[0032] Specifically, refer to Figure 1 , 10 The top of the terminal body 1 is provided with a handle 101 through a groove, and the handle 101 is made of woven material. Both ends of the handle 101 are connected to the groove of the terminal body 1 through sliders. The woven material handle has good anti-slip properties and comfort, making it convenient for users to hold and operate the terminal. It provides a stable grip experience when installing, moving or adjusting the position of the terminal. At the same time, the handle is detachable by connecting it to the groove through sliders, which makes it easy to replace the handle when it is damaged, or to select different types of handles according to user needs, thereby improving the practicality and flexibility of the product.

[0033] Specifically, refer to Figure 7 The control motherboard 103 includes a data acquisition module, a storage module, an interaction module, and a diagnostic module. The data acquisition module includes a temperature acquisition unit; the storage module includes a parameter storage unit and a historical data storage unit; the interaction module includes an operation unit and a remote interaction unit; and the diagnostic module includes a fault detection unit, a fault analysis unit, and a prompting unit. The temperature acquisition unit of the data acquisition module can accurately acquire indoor temperature data in real time, providing an accurate basis for temperature control. The parameter storage unit of the storage module can save various heating parameters set by the user, while the historical data storage unit records the operating data of the heating system for easy analysis and optimization. The operation unit of the interaction module allows users to operate the terminal locally, and the remote interaction unit enables users to remotely control the heating system, breaking through spatial limitations. The fault detection unit of the diagnostic module monitors the system's operating status in real time, the fault analysis unit accurately determines the cause of the fault, and the prompting unit promptly provides feedback on the fault information to the user, comprehensively ensuring the stable operation of the heating system and improving the system's intelligence and the user's control over the system.

[0034] Example 2

[0035] Reference Figure 2 , 4 9. The difference between this embodiment and embodiment 1 is that the bottom of the terminal body 1 is provided with a circuit box 2, the bottom left side of the circuit box 2 is provided with a circuit interface 201, the top right side of the circuit box 2 is provided with multiple sets of circuit interfaces 202 at equal intervals, the right side of the terminal body 1 is provided with a local area network terminal 203, and the top two sides of the terminal body 1 are provided with two sets of connection ports 204. The local area network terminal 203 is connected to the control motherboard 103 via electrical signals, and the output end of the connection port 204 is connected to the terminal body 1. The protective cotton 301 is composed of multiple vertical strips, which are arranged in a staggered manner. The second magnetic sticker 302 and the first magnetic sticker 102 are attracted to each other by magnetic force. The bottom of the snap-fit ​​end 4 is provided with a groove with a trapezoidal structure, and the two sides of the snap-fit ​​end 4 are provided with two sets of inward through holes. This further illustrates the structural features and functions of the protective cotton and the snap-fit ​​end.

[0036] Specifically, refer to Figure 2The terminal body 1 has a wiring box 2 at its bottom. The bottom left side of the wiring box 2 has a circuit interface 201, and the top right side of the wiring box 2 has multiple sets of wiring interfaces 202 at equal intervals. The right side of the terminal body 1 has a local area network (LAN) port 203, and the top two sides of the terminal body 1 have two sets of connection ports 204. The interface design allows the control terminal to easily connect to various external devices, such as power supplies, sensors, and other intelligent devices. The circuit interface 201 and wiring interface 202 meet the access requirements of different lines. The LAN port 203 facilitates the control terminal to access the LAN to achieve data sharing and remote control. The connection ports 204 can expand the terminal's functions, enhance the product's compatibility and expandability, and facilitate users to build personalized heating control systems according to their actual needs.

[0037] Specifically, refer to Figure 2 The local area network terminal 203 connects to the control motherboard 103 via electrical signals, and the output of the connection port 204 is connected to the terminal body 1, ensuring that the control terminal can stably interact with other devices in the local area network, realizing remote monitoring, control and data sharing functions. Users can remotely access the control terminal through the local area network, obtain the real-time operating status of the heating system and make adjustments. The connection between the connection port 204 and the terminal body 1 provides hardware support for the expansion of device functions, enabling the control terminal to better adapt to different application scenarios and improve the intelligence level and ease of use of the product.

[0038] Specifically, refer to Figure 8 The terminal body 1 has a protective cover 3 on its right side. The front of the protective cover 3 has a protective cotton 301, and the right side of the front of the protective cover 3 has a second magnetic adhesive 302. The protective cover 3 provides physical protection for the components on the right side of the terminal body 1, preventing dust and moisture from entering and extending the equipment's lifespan. The protective cotton 301 further cushions potential impacts from the right side, protecting internal precision components. The second magnetic adhesive 302 cooperates with the first magnetic adhesive 102 on the left side of the front of the terminal body 1, adhering to it through magnetic attraction. This allows the protective cover 3 to securely cover the right side of the terminal body 1 without the need for additional fixing devices. The operation is simple and the fixation is reliable. It also facilitates the removal and installation of the protective cover, making internal maintenance of the terminal easier.

[0039] Specifically, refer to Figure 9The protective cotton 301 consists of multiple vertical strips arranged in a staggered pattern. The second magnetic sticker 302 and the first magnetic sticker 102 are magnetically attracted to each other. The staggered arrangement of the vertical strips enhances the cushioning performance of the protective cotton 301. When subjected to external impact, the strips at different heights absorb the impact force in stages, more effectively protecting the internal components of the terminal body 1. Simultaneously, this unique arrangement increases the friction between the protective cotton 301, the protective cover 3, and the terminal body 1, making the protective cotton more stable when covered by the protective cover. The magnetic adhesion between the second magnetic sticker 302 and the first magnetic sticker 102 not only ensures the secure fixation of the protective cover 3 but also facilitates easy and convenient separation when the protective cover needs to be opened, thus improving the overall practicality of the protective structure and the user experience.

[0040] Specifically, refer to Figure 4 The bottom of the snap-fit ​​end 4 is provided with a groove with a trapezoidal structure, and there are two sets of inward through holes on both sides of the snap-fit ​​end 4. The groove with the trapezoidal structure facilitates quick and accurate snap-fit ​​positioning with components with corresponding trapezoidal protrusions, ensuring the accuracy and stability of the connection. The inward through holes on both sides can be used to insert the electric telescopic rod 502 to further fix the snap-fit ​​components and prevent loosening during use. This allows the control terminal to be firmly installed in a specific position or reliably connected with other equipment, improving the product's installation convenience and structural stability.

[0041] Other undescribed structures are described in Example 1.

[0042] Working Principle: In this invention, the control motherboard 103 serves as the core component, coordinating the work of various parts. The temperature acquisition unit of the acquisition module monitors indoor temperature data in real time, and this data is transmitted to the control motherboard 103 for analysis and processing. When the user sets heating parameters, such as target temperature and heating time, through the operation unit, the parameter storage unit saves this information. Simultaneously, the historical data storage unit continuously records the operating data of the heating system, providing a basis for system optimization. If the user chooses remote control, a part of the remote interaction unit's interaction module connects to the control motherboard 103 via the local area network terminal 203, transmitting the user's commands on the remote device to the control motherboard 103. The local area network terminal 203 enables the control terminal to access the local area network, realizing data sharing and remote control functions, allowing users to monitor and adjust the heating system anytime, anywhere.

[0043] The control motherboard 103 issues commands to control the operation of the heating equipment based on the collected temperature data and user-set parameters. For example, when the indoor temperature is lower than the set target temperature, the control motherboard 103 connects to the relevant equipment through the connection port 204 and sends a signal to start the heating equipment to raise the indoor temperature and achieve the effect of adjusting the indoor temperature to the set value. During the operation of the equipment, the diagnostic module plays a role. The fault detection unit monitors the operating status of each part of the heating system in real time and feeds the data back to the control motherboard 103. Once an abnormality occurs, the fault analysis unit quickly determines the cause of the fault, and the prompting unit informs the user of the fault information through the operation unit or remote interaction unit so as to repair it in time and ensure the stable operation of the heating system. The handle 101 is made of woven material and is connected to the terminal body 1 through the grooves of the sliders at both ends, making it convenient for users to hold and move the control terminal, providing convenience during equipment installation, debugging or position adjustment.

[0044] The protective cotton 301 on the front of the protective cover 3 has vertical stripes of varying heights that absorb impact in stages when subjected to external force, protecting the internal components of the terminal body. At the same time, the increased friction between the protective cotton 301, the protective cover 3, and the terminal body 1 due to the arrangement of the vertical stripes makes the protective cotton more stable when covered by the protective cover. The protective cover 3 is magnetically attached to the first magnetic sticker 102 on the left side of the front of the terminal body 1 via the second magnetic sticker 302 on the right side of the front, achieving a stable fixation of the protective cover. It is easy and convenient to disassemble and install, facilitating maintenance of the internal components of the terminal.

[0045] The trapezoidal groove at the bottom of the snap-fit ​​end 4 precisely snaps into and positions the corresponding trapezoidal protrusion. The inward through holes on both sides allow for the insertion of connecting parts such as the electric telescopic rod 502, which securely installs the control terminal in a specific location or reliably connects it to other equipment. The electric telescopic rod 502 in the fixing structure 5 can be adjusted in extension length according to actual needs. The pressure sensor 503 monitors pressure changes to ensure a stable connection. The base plate 504 provides support for the entire fixing structure, ensuring the stability of the control terminal after installation.

[0046] The control method of this utility model is automatic control through a controller. The control circuit of the controller can be implemented by simple programming by those skilled in the art. The power supply is also common knowledge in the field. Since this utility model is mainly used to protect mechanical devices, the control method and circuit connection will not be explained in detail.

[0047] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A multifunctional clean energy heating control terminal, comprising a terminal body (1), characterized in that: The terminal body (1) has a first magnetic sticker (102) on the left side of the front. The terminal body (1) has a control motherboard (103) inside. The terminal body (1) has a snap-fit ​​end (4) on the back. The snap-fit ​​end (4) has a fixing structure (5) on the back. The fixing structure (5) includes a fixing base (501), an electric telescopic rod (502), a pressure sensor (503), and a base plate (504). The fixing base (501) has two sets of electric telescopic rods (502) inside both sides. The fixing base (501) has a pressure sensor (503) on the top. The fixing base (501) has a base plate (504) on the back.

2. The multifunctional clean energy heating control terminal according to claim 1, characterized in that: The top of the terminal body (1) is provided with a handle (101) through a groove, and the handle (101) is made of woven material. The two ends of the handle (101) are connected to the groove of the terminal body (1) through sliders.

3. The multifunctional clean energy heating control terminal according to claim 1, characterized in that: The control motherboard (103) includes a data acquisition module, a storage module, an interaction module, and a diagnostic module. The data acquisition module includes a temperature acquisition unit, the storage module includes a parameter storage unit and a historical data storage unit, the interaction module includes an operation unit and a remote interaction unit, and the diagnostic module includes a fault detection unit, a fault analysis unit, and a prompting unit.

4. A multifunctional clean energy heating control terminal according to claim 3, characterized in that: The terminal body (1) has a line box (2) at the bottom, a circuit interface (201) on the left side of the bottom of the line box (2), multiple line interfaces (202) at equal intervals on the right side of the top of the line box (2), a local area network port (203) on the right side of the terminal body (1), and two sets of connection ports (204) on both sides of the top of the terminal body (1).

5. A multifunctional clean energy heating control terminal according to claim 4, characterized in that: The local area network terminal (203) is connected to the control motherboard (103) via electrical signals, and the output of the connection port (204) is connected to the terminal body (1).

6. A multifunctional clean energy heating control terminal according to claim 5, characterized in that: The terminal body (1) has a protective cover (3) on the right side, a protective cotton (301) on the front of the protective cover (3), and a second magnetic sticker (302) on the right side of the front of the protective cover (3).

7. A multifunctional clean energy heating control terminal according to claim 6, characterized in that: The protective cotton (301) is composed of multiple vertical strips, which are arranged in a staggered manner. The second magnetic sticker (302) and the first magnetic sticker (102) are attracted to each other by magnetic force.

8. A multifunctional clean energy heating control terminal according to claim 1, characterized in that: The bottom of the snap-fit ​​end (4) is provided with a groove in the shape of a trapezoid, and the two sides of the snap-fit ​​end (4) are provided with two sets of inward through holes.

Citation Information

Patent Citations

  • Control terminal

    CN220381525U