Intelligent central control screen, central control screen host and power supply box module
Through the intelligent central control screen designed with magnetic steel plate and magnet, combined with hook and hook hole, the problems of low movement control efficiency and electrostatic damage of the intelligent central control screen are solved, rapid loading and unloading and anti-static protection are achieved, and home appliance control efficiency and equipment reliability are improved.
Patent Information
- Application Number
- CN202422095833.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-08-27
AI Technical Summary
When the existing smart central control screen is controlled by multiple home appliances, it needs to move frequently, resulting in low control efficiency, and there is a risk of cumbersome installation and electrostatic damage.
The magnetic steel plate and magnet design are adopted, combined with hooks and hook holes to achieve rapid loading and unloading, and anti-static devices are set up to protect the intelligent central control screen, simplifying the installation process and improving mobility convenience.
It realizes the rapid loading and unloading of the intelligent central control screen, conveniently control home appliances, improves control efficiency, and effectively prevents static damage and extends the service life of the equipment.
Smart Images

Figure CN223207341U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of intelligent central control screen design, in particular to an intelligent central control screen, a central control screen host and a power box module. Background Art
[0002] As living standards gradually improve, smart central control screens have begun to be widely used in home environments for centralized intelligent control of various household appliances.
[0003] However, when users use the same smart central control screen to control multiple home appliances, there is often a need to carry the smart central control screen around. For example, when the smart central control screen is set up in the living room, but the home appliances in the bedroom need to be controlled, the smart central control screen needs to be carried into the bedroom.
[0004] If the smart central control screen is set up in a fixed manner, it will lead to inefficient control of home appliances. Utility Model Content
[0005] An embodiment of the present utility model provides an intelligent central control screen, a central control screen host and a power box module to overcome the above problems or at least partially solve the above problems.
[0006] The embodiment of the utility model discloses an intelligent central control screen, which includes a power box module and a central control screen host;
[0007] The module housing of the power box module is provided with a magnetic steel plate on the side close to the wall; the power box module is configured as a power box embedded in the wall;
[0008] A power box hook is provided on one side of the module housing of the power box module;
[0009] A magnet is installed on the inner side of the rear shell of the central control screen host; the magnet is used to provide suction to the magnetic steel plate when the power box module and the central control screen host are connected, so that the power box module and the central control screen host fit together;
[0010] The host rear shell is provided with a hook hole corresponding to the power box hook; the hook hole is used to limit the power box module when the power box hook is inserted;
[0011] The hook hole is provided with a first anti-static device;
[0012] A second anti-static device is provided at the installation position of the magnet.
[0013] Optionally, the first anti-static device is an insulating protective wall arranged around the hook hole.
[0014] Optionally, the second anti-static device is an insulating wall arranged around the magnet.
[0015] Optionally, the power box module includes a power box control module;
[0016] The power box control module is provided with a power spring pin;
[0017] The central control screen host includes a central control screen main control module;
[0018] The central control screen main control module is provided with a spring pin female seat for the power spring pin; the spring pin female seat is used to make the power box module and the central control screen host contact with the power spring pin when connected to supply power to the central control screen host.
[0019] Optionally, the host rear shell is provided with a pin hole for the power pin; the pin socket is provided on one side of the pin hole;
[0020] The spring pin hole is used to allow the power spring pin to pass through the spring pin hole and contact the spring pin mother seat when the power box module and the central control screen host are connected.
[0021] Optionally, the central control screen host includes a host front shell; the host front shell and the host rear shell are used to encapsulate the central control screen main control module into the installation space between the host front shell and the host rear shell.
[0022] Optionally, a power box cover is provided at the center of the module housing, and the power box cover is used to encapsulate the power box control module and the power spring pin to the side of the module housing close to the wall.
[0023] Optionally, the module housing of the power box module is provided with a positioning column;
[0024] The rear shell of the host is configured with a positioning hole corresponding to the positioning column; the positioning hole is used to limit the power box module when the positioning column is inserted.
[0025] Optionally, the power box module is provided with fixing screw holes;
[0026] The power box module is configured to be fixedly connected to the power box through bolts based on the fixing screw holes.
[0027] Optionally, the central control screen host includes a screen; the screen is arranged on the outside of the front shell of the host.
[0028] The embodiment of the utility model further discloses a central control screen host, which is equipped with a corresponding power box module;
[0029] The module housing of the power box module is provided with a magnetic steel plate on the side close to the wall; the power box module is configured as a power box embedded in the wall;
[0030] A power box hook is provided on one side of the module housing of the power box module;
[0031] A magnet is installed on the inner side of the rear shell of the central control screen host; the magnet is used to provide suction to the magnetic steel plate when the power box module and the central control screen host are connected, so that the power box module and the central control screen host fit together;
[0032] The host rear shell is provided with a hook hole corresponding to the power box hook; the hook hole is used to limit the power box module when the power box hook is inserted;
[0033] The hook hole is provided with a first anti-static device;
[0034] A second anti-static device is provided at the installation position of the magnet.
[0035] The embodiment of the utility model further discloses a power box module, which is equipped with a corresponding central control screen host;
[0036] The module housing of the power box module is provided with a magnetic steel plate on the side close to the wall; the power box module is configured as a power box embedded in the wall;
[0037] A power box hook is provided on one side of the module housing of the power box module;
[0038] A magnet is installed on the inner side of the rear shell of the central control screen host; the magnet is used to provide suction to the magnetic steel plate when the power box module and the central control screen host are connected, so that the power box module and the central control screen host fit together;
[0039] The host rear shell is provided with a hook hole corresponding to the power box hook; the hook hole is used to limit the power box module when the power box hook is inserted;
[0040] The hook hole is provided with a first anti-static device;
[0041] A second anti-static device is provided at the installation position of the magnet.
[0042] The present invention has the following advantages:
[0043] The embodiment of the present utility model discloses an intelligent central control screen, which includes a power box module and a central control screen host; a magnetic steel plate is provided on the side of the module shell of the power box module against the wall; the power box module is configured as a power box embedded in the wall; a power box hook is provided on one side of the module shell of the power box module; a magnet is installed on the inner side of the rear shell of the central control screen host; the magnet is used to provide suction to the magnetic steel plate when the power box module and the central control screen host are connected, so that the power box module and the central control screen host fit together; the rear shell of the host is provided with a hook hole corresponding to the power box hook; the hook hole is used to limit the power box module when the power box hook is inserted; thereby realizing quick loading and unloading of the intelligent central control screen, further realizing that the user can carry the intelligent central control screen and move, and improving the control efficiency of smart home appliances. Furthermore, by providing a first anti-static device on the hook hole and a second anti-static device on the installation position of the magnet, anti-static protection of the intelligent central control screen is achieved. BRIEF DESCRIPTION OF THE DRAWINGS
[0044] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments of the present invention. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.
[0045] Figure 1 This is a structural diagram of an intelligent central control screen provided in an embodiment of the present utility model;
[0046] Figure 2 This is a structural diagram of a magnetic steel plate provided in an embodiment of the present utility model;
[0047] Figure 3 This is a schematic structural diagram of a power supply box provided in an embodiment of the present utility model;
[0048] Figure 4 This is a structural diagram of a power box hook provided in an embodiment of the utility model;
[0049] Figure 5 This is a schematic structural diagram of a host rear shell provided in an embodiment of the present utility model;
[0050] Figure 6 This is a schematic diagram of the installation of a hook hole and a power box hook provided in an embodiment of the utility model;
[0051] Figure 7 This is a schematic diagram of the exploded structure of a power box module provided in an embodiment of the present utility model;
[0052] Figure 8 This is a schematic diagram of the exploded structure of a central control screen host provided in an embodiment of the present utility model;
[0053] Figure 9 This is a schematic diagram of the installation structure of a power box module provided in an embodiment of the present utility model;
[0054] Figure 10 This is a schematic diagram of the installation of another hook hole and power box hook provided in an embodiment of the utility model;
[0055] Figure 11 This is a schematic diagram of the installation of a positioning hole and a positioning column provided in an embodiment of the present utility model.
[0056] Reference numerals:
[0057] Power box module 1, magnetic steel plate 11, power box hook 12, power spring pin 13, module housing 14, power box control module 15, power box cover 16;
[0058] Central control screen host 2, magnet 21, hook hole 22, second anti-static device 23, first anti-static device 24, positioning hole 25, host rear shell 26, central control screen main control module 27, spring pin female seat 28, host front shell 29, screen 210;
[0059] Power box 33, bolt 31. DETAILED DESCRIPTION
[0060] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are part of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0061] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the present invention is further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0062] The related technology is to first install the control box into the 86 base box, then install the bracket panel on the wall and lock it, and then hang the host on the bracket panel. The installation is complicated and difficult to adjust. In other designs, the magnet is fixed to the front shell of the host and glued with adhesive. Since the steel plate and the magnet are always adsorbed together, this force will always pull the magnet to separate it from the adhesive. When the adhesive fails due to age, the magnet will fall out of the front shell. When the host is removed from the wall, the magnet will fall off and be adsorbed together inside the host, causing subsequent installation failure.
[0063] A smart central control screen can be a comprehensive control device for home appliances. It integrates various smart devices in the home, such as lights, air conditioners, audio equipment, curtains, etc., on a single screen, enabling centralized control through touch and voice.
[0064] The working principle of the smart central control screen mainly involves the following aspects.
[0065] connect:
[0066] The central control screen serves as the central hub, connecting to other smart devices through wireless communications such as Wi-Fi and Bluetooth.
[0067] Smart devices can include smart bulbs, smart sockets, etc., and also have wireless connection functions, and can receive instructions from the central control screen.
[0068] protocol:
[0069] In order to enable devices of different brands and types to communicate with each other, smart central control screens usually support multiple communication protocols, such as Zigbee, Z-Wave, etc. These protocols are like a set of universal languages, allowing devices to communicate seamlessly.
[0070] Cloud Services:
[0071] Many smart central control screens use cloud services to achieve more powerful functions. For example:
[0072] Remote control: Even if you are not at home, you can control the devices at home through the mobile phone APP.
[0073] Voice Assistant: Achieve more natural human-computer interaction through the built-in voice assistant.
[0074] Scene linkage: Set various scene modes and trigger the linkage of multiple devices with one click.
[0075] user interface:
[0076] The user interface on the central control screen is usually designed to be very intuitive and user-friendly. Through touch, swipe, and other methods, users can easily control various devices.
[0077] Advantages of smart central control screen:
[0078] Centralized control: One screen controls all devices for more convenient operation.
[0079] Intelligent linkage: realize linkage of various scenarios and improve the quality of life.
[0080] Voice control: free your hands and make it more user-friendly.
[0081] Remote control: Control your home devices anytime, anywhere.
[0082] Strong scalability: new smart devices can be added continuously.
[0083] Generally speaking, the smart central control screen integrates various smart home functions into one, and realizes intelligent control of the entire home environment through a unified interface. It makes our lives more convenient, comfortable and intelligent.
[0084] refer to Figure 1 , Figure 1 It is a structural diagram of an intelligent central control screen provided in an embodiment of the present utility model.
[0085] The intelligent central control screen includes a power box module 1 and a central control screen host 2;
[0086] refer to Figure 2 , Figure 2 This is a structural diagram of a magnetic steel plate provided in an embodiment of the present utility model;
[0087] The module housing of the power box module 1 is provided with a magnetic steel plate 11 on the side close to the wall;
[0088] Magnetic steel is a type of steel with a magnetic surface. It not only has the strength and durability of steel, but also has a magnetic surface, making it a popular material in modern homes, offices, and commercial spaces.
[0089] Characteristics of magnetic steel plate:
[0090] Magnetic surface: This is the most significant feature of the magnetic steel plate, which can firmly adsorb various magnetic objects, such as magnets, magnetic hooks, magnetic whiteboards, etc.
[0091] Strong durability: As a steel plate, magnetic steel plate has extremely high wear resistance and corrosion resistance, is not easy to deform, and has a long service life.
[0092] Beautiful and diverse: The surface can be treated in a variety of ways, such as spraying, laminating, etc., with rich and diverse colors and textures, which can be matched with various decoration styles.
[0093] Easy to clean: The surface is smooth and stains are not easy to adhere, making it very convenient to clean.
[0094] The magnetic steel plate of the embodiment of the utility model can be directly fixed on the back of the module housing by means of clips and special glue during production, that is, the side close to the wall when installed on the power box, which simplifies the installation steps for the smart central control screen and reduces the installation difficulty.
[0095] The power box module 1 is configured as a power box 3 embedded in a wall;
[0096] An 86-inch power box is a square box measuring 86mm x 86mm. It's typically embedded in the wall and used to house various electrical components, such as switches, sockets, and panels. Due to its standardized size and wide compatibility, the 86-inch power box has become one of the most common power distribution products used in home renovations.
[0097] Classification of 86 type power box:
[0098] According to the different materials, installation methods and functions, the 86-type power box can be divided into several types:
[0099] By material:
[0100] PVC material is commonly found in ordinary residential houses. It is relatively cheap but has average durability.
[0101] Metal materials are mostly used in public places or places with high durability requirements, such as hotels, shopping malls, etc.
[0102] Fireproof material, suitable for places with high requirements for fire resistance, such as kitchens, bathrooms, etc.
[0103] According to the installation method:
[0104] The surface-mounted box is installed on the outside of the wall, without the need to cut grooves on the wall, and is easy to install.
[0105] The concealed box is installed on the inside of the wall. It looks neat, but the construction is more difficult.
[0106] By function:
[0107] Single-gang box, used to install a single switch or socket.
[0108] Double box, used to install two switches or sockets.
[0109] Multi-gang box, used to install multiple switches or sockets.
[0110] The specific steps for installing the 86 type power box are as follows:
[0111] Determine the installation location of the power box based on the circuit diagram and actual needs.
[0112] Cut a hole in the wall that matches the size of the power box.
[0113] Run the wires from the wall box through the hole in the power box.
[0114] Insert the power box into the hole and secure it with screws.
[0115] refer to Figure 3 , Figure 3 This is a schematic structural diagram of a power supply box provided in an embodiment of the present utility model;
[0116] After the installation of the power box is completed, the embodiment of the present invention can embed the power box module 1 into the power box 3 .
[0117] refer to Figure 4 , Figure 4 This is a structural diagram of a power box hook provided in an embodiment of the utility model;
[0118] A power box hook 12 is provided on one side of the module housing of the power box module 1;
[0119] refer to Figure 5 , Figure 5 This is a schematic structural diagram of a host rear shell provided in an embodiment of the present utility model;
[0120] A magnet 21 is installed on the inner side of the rear shell of the central control screen host 2; the magnet 21 is used to provide suction to the magnetic steel plate 11 when the power box module 1 and the central control screen host 2 are connected, so that the power box module 1 and the central control screen host 2 fit tightly together;
[0121] The rear shell of the host is provided with a hook hole 22 corresponding to the hook 12 of the power box;
[0122] refer to Figure 6 , Figure 6 This is a schematic diagram of the installation of a hook hole and a power box hook provided in an embodiment of the utility model;
[0123] The hook hole 22 is used to connect the power box hook 12 to the hook hole 22.
[0124] Limiting;
[0125] Precision electronics are extremely sensitive to static electricity. Electrostatic discharge (ESD) can damage devices, cause data loss, and even cause fires. Therefore, anti-static treatment of precision electronics is crucial.
[0126] The main purposes of anti-static are as follows:
[0127] Protective devices: The high voltage generated by electrostatic discharge can damage sensitive components such as integrated circuits and chips inside precision electrical appliances, causing device failure or performance degradation.
[0128] Ensure data security: Electrostatic discharge may cause data in the memory to be damaged or lost, resulting in irreparable damage.
[0129] Improve product reliability: Through effective anti-static measures, the reliability of precision electrical appliances can be significantly improved and their service life can be extended.
[0130] Reduce production costs: reduce device scrapping and repair costs caused by static damage, and reduce production costs.
[0131] Causes of static electricity:
[0132] Static electricity is generated mainly due to the transfer of charge caused by friction or contact between different objects. In the electronics production environment, common causes of static electricity are:
[0133] Human body activities: Friction between the human body and objects will generate static electricity.
[0134] Friction of objects: Friction between objects of different materials can also generate static electricity.
[0135] Ions in the air: Ions in the air will generate static electricity under the action of electric field.
[0136] Anti-static measures
[0137] In order to effectively prevent the harm of static electricity to precision electrical appliances, the following measures are usually taken:
[0138] Grounding: Connecting a conductor to the earth allows static charge to flow into the earth through the grounding wire, thereby eliminating static electricity.
[0139] Anti-static materials: Use anti-static materials to protect the safety of high-position precision components.
[0140] Humidity control: Control the humidity of the working environment to reduce the generation of static electricity.
[0141] The importance of anti-static for precision electrical appliances:
[0142] As electronic products become increasingly miniaturized and integrated, their sensitivity to static electricity is also increasing. Therefore, anti-static measures are particularly important during the use of electronic products. Only by taking effective anti-static measures can the normal operation of precision electrical appliances be guaranteed and their service life be extended.
[0143] Generally speaking, the purpose of anti-static treatment for precision electrical appliances is to protect devices, ensure data security, improve product reliability and reduce production costs.
[0144] The hook hole 22 of the embodiment of the utility model is provided with a first anti-static device 24;
[0145] A second anti-static device 23 is provided at the installation position of the magnet 21 .
[0146] The embodiment of the present utility model discloses an intelligent central control screen, which includes a power box module and a central control screen host; a magnetic steel plate is provided on the side of the module shell of the power box module against the wall; the power box module is configured as a power box embedded in the wall; a power box hook is provided on one side of the module shell of the power box module; a magnet is installed on the inner side of the rear shell of the central control screen host; the magnet is used to provide suction to the magnetic steel plate when the power box module and the central control screen host are connected, so that the power box module and the central control screen host fit together; the rear shell of the host is provided with a hook hole corresponding to the power box hook; the hook hole is used to limit the power box module when the power box hook is inserted; thereby realizing quick loading and unloading of the intelligent central control screen, further realizing that the user can carry the intelligent central control screen and move, and improving the control efficiency of smart home appliances. Furthermore, by providing a first anti-static device on the hook hole and a second anti-static device on the installation position of the magnet, anti-static protection of the intelligent central control screen is achieved.
[0147] Based on the above embodiment, a modified embodiment of the above embodiment is proposed. It should be noted that, in order to simplify the description, only the differences from the above embodiment are described in the modified embodiment.
[0148] In an optional embodiment of the present invention, the first anti-static device is an insulating protective wall arranged around the hook hole.
[0149] Anti-static function is particularly important for electronic devices. Static electricity discharge can damage delicate electronic components. Insulation protection walls, through special materials and design, can effectively prevent static electricity accumulation and discharge.
[0150] The anti-static effect of the insulating protective wall is mainly achieved through the following methods:
[0151] Conductive materials: The surface or interior of the baffle is made of conductive materials, such as conductive plastics, metals, etc. These materials can quickly conduct away static charges and prevent the accumulation of static electricity.
[0152] Grounding treatment: Connect the insulating protective wall to the ground to form a complete grounding loop, and conduct the generated static charge directly into the ground.
[0153] Ionized air: Generates ionized air near the insulating protective wall to neutralize static charges.
[0154] The material selection of the insulation protection wall has a great influence on the anti-static effect. Commonly used materials are:
[0155] Conductive plastic: has good insulation and conductivity properties and is easy to process and shape.
[0156] Stainless steel: corrosion-resistant and strong, but more expensive.
[0157] Organic glass: high transparency, easy to observe, but poor conductivity, often used in combination with conductive materials.
[0158] The insulation protection wall can select appropriate materials according to the use environment and anti-static requirements, select appropriate sizes according to the size of the equipment and the protection range, select appropriate thickness according to the protection strength requirements, and ensure that the baffle is well grounded to the earth.
[0159] Insulation barriers can prevent static electricity from damaging delicate electronic components. When selecting and using insulation barriers, factors such as material, size, thickness, and grounding method should be considered to achieve optimal protection.
[0160] In an optional embodiment of the present invention, the second anti-static device is an insulating wall arranged around the magnet.
[0161] The insulating wall is an anti-static wall provided around the magnet 21. In addition to achieving the anti-static function, the insulating wall can also effectively fix the magnet 21 to prevent the magnet 21 from falling during use.
[0162] refer to Figure 7-8 , Figure 7 This is a schematic diagram of the exploded structure of a power box module provided in an embodiment of the present utility model; Figure 8 This is a schematic diagram of the exploded structure of a central control screen host provided in an embodiment of the present utility model;
[0163] In an optional embodiment of the present invention, the power box module includes a power box control module 15;
[0164] The power box control module 15 is provided with a power spring pin 13;
[0165] The central control screen host includes a central control screen main control module 27;
[0166] The central control screen main control module 27 is provided with a spring pin female seat 28 for the power spring pin 13; the spring pin female seat 28 is used to make the power box module and the central control screen host contact with the power spring pin 13 when connected to supply power to the central control screen host.
[0167] Power spring pins and probe sockets are connectors in electronic devices. They are mainly used to provide power or signal transmission. The power supply methods are mainly as follows:
[0168] 1. Direct contact power supply
[0169] Principle: The spring needle makes physical contact with the pores on the probe base through elastic force, thereby achieving circuit connection.
[0170] Features: Stable and reliable connection, suitable for static or low-frequency application scenarios.
[0171] 2. Sliding contact power supply
[0172] Principle: There is relative sliding between the spring pin and the probe base, and contact is maintained by a spring or other mechanical structure to achieve dynamic power supply.
[0173] Features: Suitable for equipment that needs to be frequently plugged in or moved.
[0174] 3. Magnetic contact power supply
[0175] Principle: The spring pin and the probe base are attracted by magnetic force to achieve contactless power supply.
[0176] Features: No physical contact is required, wireless charging can be achieved, and it is suitable for special environments such as waterproof and dustproof.
[0177] 4. Inductive power supply
[0178] Principle: Energy is transferred between the spring needle and the probe base through electromagnetic induction.
[0179] Features: Requires physical contact, has a long transmission distance, and is suitable for high-frequency applications.
[0180] 5. Piezoelectric power supply
[0181] Principle: Utilize the characteristics of piezoelectric materials to convert mechanical energy into electrical energy.
[0182] Features: Simple structure, suitable for micro equipment.
[0183] In an optional embodiment of the present invention, the host rear shell 26 is provided with a pin hole for the power pin 13; the pin socket 28 is provided on one side of the pin hole;
[0184] The spring pin hole is used to allow the power spring pin 13 to pass through the spring pin hole and contact the spring pin female seat 28 when the power box module and the central control screen host are connected.
[0185] In an optional embodiment of the present invention, the central control screen host includes a host front shell 29; the host front shell 29 and the host rear shell 26 are used to encapsulate the central control screen main control module 27 into the installation space between the host front shell 29 and the host rear shell 26.
[0186] In an optional embodiment of the present invention, a power box cover 16 is provided at the center of the module housing 14 , and the power box cover 16 is used to encapsulate the power box control module 15 and the power spring pin 13 to the side of the module housing 14 close to the wall.
[0187] In an optional embodiment of the present invention, the module housing 14 of the power box module is provided with a positioning column;
[0188] The main body rear shell 26 is provided with a positioning hole 25 corresponding to the positioning post;
[0189] The positioning hole 25 is used to limit the power box module when the positioning post is inserted.
[0190] In an optional embodiment of the present invention, the power box module is provided with fixing screw holes;
[0191] The power box module is configured to be fixedly connected to the power box through bolts based on the fixing screw holes.
[0192] In an optional embodiment of the present invention, the central control screen host includes a screen 210; the screen 210 is arranged on the outside of the host front shell 29.
[0193] In order to enable those skilled in the art to better understand the embodiments of the present invention, an example is used below to illustrate the embodiments of the present invention.
[0194] The intelligent central control screen is composed of two parts: the power box module 1 and the central control screen host 2. The central control screen host 2 has a screen 21, a host front shell 29, a central control screen main control module 27, a magnet 21, and a host rear shell 26. The central control screen main control module 27 is provided with a spring pin female seat 28;
[0195] The power box module 1 is provided with a power box cover 16, a power box control module 15, a module housing 14, and a magnetic steel plate 11. The power box control module 15 is provided with a power spring pin 13;
[0196] When the power box module 1 and the central control screen host 2 are assembled together, the spring pin female seat 28 of the power spring pin 13 contacts the powered device to work.
[0197] At least two front shell hanging platforms and two first anti-static devices are provided on the upper inner portion of the main body front shell 29;
[0198] A hook hole 22 and a first anti-static device 24 are provided on the upper inner portion of the rear shell 26 of the host, corresponding to the position of the front shell hanging platform. At least two second anti-static devices 23 are provided inside the rear shell 26 of the host. The second anti-static device 23 can be a perimeter bone, and a magnet 11 is installed inside the perimeter bone.
[0199] Two positioning holes 25 are provided in the rear shell 26 of the host corresponding to the positioning posts of the 86 power supply box housing;
[0200] At least two power box hooks 12 are provided on the upper part of the module housing 14, and at least two positioning columns are provided on the lower part, and the positioning columns are provided with inclined surfaces;
[0201] A magnetic steel plate 11 is fixedly mounted on the back of the module housing 14 .
[0202] refer to Figure 9 , Figure 9 This is a schematic diagram of the installation structure of a power box module provided in an embodiment of the present utility model.
[0203] The power box 3 is pre-buried in the wall. First, install the power box module 1 in the power box 3, adjust the horizontal state, and lock it with bolts 31; align the two hook holes on the central control screen host 2 with the hooks on the power box module 1 and hang it up, slowly release the central control screen host 2, and the central control screen host 2 is adsorbed on the power box module 1 under the suction force of the magnet 21. Figure 10 , Figure 10 This is a schematic diagram of the installation of another hook hole and power box hook provided in an embodiment of the utility model; Figure 10 It shows the status of the hook hole and the power box hook when the central control screen host 2 is installed on the power box module 1.
[0204] Since the power box module 1 has a positioning column, the host rear shell 26 has a hook hole, and the host front shell has a hook hole 22, the host can be firmly hung on the wall and accurately positioned. Figure 11 , Figure 11 This is a schematic diagram of the installation of a positioning hole and a positioning column provided in an embodiment of the present utility model; Figure 10 It shows the status of the positioning holes and positioning columns when the central control screen host 2 is installed on the power box module 1.
[0205] How to remove the host: first push the central control screen host 2 upwards, then use force to pull out the lower part of the central control screen host 2 to separate it from the wall and break away from the suction of the magnet 21, and then you can successfully remove the central control screen host.
[0206] In the embodiment of the present utility model, a first anti-static device 2 is added at the position of the hook hole 22, and a second anti-static device 23 is provided at the installation position of the magnet 21. The two work together to seal the hook hole so that external static electricity cannot penetrate the casing and affect the internal main control module.
[0207] By setting the power box hook 12 and the positioning column on the outer shell of the power box module 1, setting the magnet 21 on the rear shell 26 of the host, and setting the magnetic steel plate 11 behind the outer shell of the power box module 1, the problem of cumbersome installation of the smart central control screen in the related technology, the problem of inaccurate positioning of the bracket panel, the problem of electrostatic breakdown of the host hanging hole, and the problem of aging and falling of the back glue of the magnet installation front shell solution are solved.
[0208] refer to Figure 1 , Figure 1 It is a structural diagram of an intelligent central control screen provided in an embodiment of the present utility model.
[0209] The embodiment of the utility model further discloses a central control screen host, wherein the central control screen host 2 is configured with a corresponding power box module 1;
[0210] refer to Figure 2 , Figure 2 This is a structural diagram of a magnetic steel plate provided in an embodiment of the present utility model;
[0211] The module housing of the power box module 1 is provided with a magnetic steel plate 11 on the side close to the wall;
[0212] Magnetic steel is a type of steel with a magnetic surface. It not only has the strength and durability of steel, but also has a magnetic surface, making it a popular material in modern homes, offices, and commercial spaces.
[0213] Characteristics of magnetic steel plate:
[0214] Magnetic surface: This is the most significant feature of the magnetic steel plate, which can firmly adsorb various magnetic objects, such as magnets, magnetic hooks, magnetic whiteboards, etc.
[0215] Strong durability: As a steel plate, magnetic steel plate has extremely high wear resistance and corrosion resistance, is not easy to deform, and has a long service life.
[0216] Beautiful and diverse: The surface can be treated in a variety of ways, such as spraying, laminating, etc., with rich and diverse colors and textures, which can be matched with various decoration styles.
[0217] Easy to clean: The surface is smooth and stains are not easy to adhere, making it very convenient to clean.
[0218] The magnetic steel plate of the embodiment of the utility model can be directly fixed on the back of the module housing by means of clips and special glue during production, that is, the side close to the wall when installed on the power box, which simplifies the installation steps for the smart central control screen and reduces the installation difficulty.
[0219] The power box module 1 is configured as a power box 3 embedded in a wall;
[0220] An 86-inch power box is a square box measuring 86mm x 86mm. It's typically embedded in the wall and used to house various electrical components, such as switches, sockets, and panels. Due to its standardized size and wide compatibility, the 86-inch power box has become one of the most common power distribution products used in home renovations.
[0221] Classification of 86 type power box:
[0222] According to the different materials, installation methods and functions, the 86-type power box can be divided into several types:
[0223] By material:
[0224] PVC material is commonly found in ordinary residential houses. It is relatively cheap but has average durability.
[0225] Metal materials are mostly used in public places or places with high durability requirements, such as hotels, shopping malls, etc.
[0226] Fireproof material, suitable for places with high requirements for fire resistance, such as kitchens, bathrooms, etc.
[0227] According to the installation method:
[0228] The surface-mounted box is installed on the outside of the wall, without the need to cut grooves on the wall, and is easy to install.
[0229] The concealed box is installed on the inside of the wall. It looks neat, but the construction is more difficult.
[0230] By function:
[0231] Single-gang box, used to install a single switch or socket.
[0232] Double box, used to install two switches or sockets.
[0233] Multi-gang box, used to install multiple switches or sockets.
[0234] The specific steps for installing the 86 type power box are as follows:
[0235] Determine the installation location of the power box based on the circuit diagram and actual needs.
[0236] Cut a hole in the wall that matches the size of the power box.
[0237] Run the wires from the wall box through the hole in the power box.
[0238] Insert the power box into the hole and secure it with screws.
[0239] refer to Figure 3 , Figure 3 This is a schematic structural diagram of a power supply box provided in an embodiment of the present utility model;
[0240] After the installation of the power box is completed, the embodiment of the present invention can embed the power box module 1 into the power box 3 .
[0241] refer to Figure 4 , Figure 4 This is a structural diagram of a power box hook provided in an embodiment of the utility model;
[0242] A power box hook 12 is provided on one side of the module housing of the power box module 1;
[0243] refer to Figure 5 , Figure 5 This is a schematic structural diagram of a host rear shell provided in an embodiment of the present utility model;
[0244] A magnet 21 is installed on the inner side of the rear shell of the central control screen host 2; the magnet 21 is used to provide suction to the magnetic steel plate 11 when the power box module 1 and the central control screen host 2 are connected, so that the power box module 1 and the central control screen host 2 fit tightly together;
[0245] The rear shell of the host is provided with a hook hole 22 corresponding to the hook 12 of the power box;
[0246] refer to Figure 6 , Figure 6 This is a schematic diagram of the installation of a hook hole and a power box hook provided in an embodiment of the utility model;
[0247] The hook hole 22 is used to connect the power box hook 12 to the hook hole 22.
[0248] Limiting;
[0249] Precision electronics are extremely sensitive to static electricity. Electrostatic discharge (ESD) can damage devices, cause data loss, and even cause fires. Therefore, anti-static treatment of precision electronics is crucial.
[0250] The main purposes of anti-static are as follows:
[0251] Protective devices: The high voltage generated by electrostatic discharge can damage sensitive components such as integrated circuits and chips inside precision electrical appliances, causing device failure or performance degradation.
[0252] Ensure data security: Electrostatic discharge may cause data in the memory to be damaged or lost, resulting in irreparable damage.
[0253] Improve product reliability: Through effective anti-static measures, the reliability of precision electrical appliances can be significantly improved and their service life can be extended.
[0254] Reduce production costs: reduce device scrapping and repair costs caused by static damage, and reduce production costs.
[0255] Causes of static electricity:
[0256] Static electricity is generated mainly due to the transfer of charge caused by friction or contact between different objects. In the electronics production environment, common causes of static electricity are:
[0257] Human body activities: Friction between the human body and objects will generate static electricity.
[0258] Friction of objects: Friction between objects of different materials can also generate static electricity.
[0259] Ions in the air: Ions in the air will generate static electricity under the action of electric field.
[0260] Anti-static measures
[0261] In order to effectively prevent the harm of static electricity to precision electrical appliances, the following measures are usually taken:
[0262] Grounding: Connecting a conductor to the earth allows static charge to flow into the earth through the grounding wire, thereby eliminating static electricity.
[0263] Anti-static materials: Use anti-static materials to protect the safety of high-position precision components.
[0264] Humidity control: Control the humidity of the working environment to reduce the generation of static electricity.
[0265] The importance of anti-static for precision electrical appliances:
[0266] As electronic products become increasingly miniaturized and integrated, their sensitivity to static electricity is also increasing. Therefore, anti-static measures are particularly important during the use of electronic products. Only by taking effective anti-static measures can the normal operation of precision electrical appliances be guaranteed and their service life be extended.
[0267] Generally speaking, the purpose of anti-static treatment for precision electrical appliances is to protect devices, ensure data security, improve product reliability and reduce production costs.
[0268] The hook hole 22 of the embodiment of the utility model is provided with a first anti-static device 24;
[0269] A second anti-static device 23 is provided at the installation position of the magnet 21 .
[0270] The embodiment of the present utility model discloses an intelligent central control screen, which includes a power box module and a central control screen host; a magnetic steel plate is provided on the side of the module shell of the power box module against the wall; the power box module is configured as a power box embedded in the wall; a power box hook is provided on one side of the module shell of the power box module; a magnet is installed on the inner side of the rear shell of the central control screen host; the magnet is used to provide suction to the magnetic steel plate when the power box module and the central control screen host are connected, so that the power box module and the central control screen host fit together; the rear shell of the host is provided with a hook hole corresponding to the power box hook; the hook hole is used to limit the power box module when the power box hook is inserted; thereby realizing quick loading and unloading of the intelligent central control screen, further realizing that the user can carry the intelligent central control screen and move, and improving the control efficiency of smart home appliances. Furthermore, by providing a first anti-static device on the hook hole and a second anti-static device on the installation position of the magnet, anti-static protection of the intelligent central control screen is achieved.
[0271] Based on the above embodiment, a modified embodiment of the above embodiment is proposed. It should be noted that, in order to simplify the description, only the differences from the above embodiment are described in the modified embodiment.
[0272] In an optional embodiment of the present invention, the first anti-static device is an insulating protective wall arranged around the hook hole.
[0273] Anti-static function is particularly important for electronic devices. Static electricity discharge can damage delicate electronic components. Insulation protection walls, through special materials and design, can effectively prevent static electricity accumulation and discharge.
[0274] The anti-static effect of the insulating protective wall is mainly achieved through the following methods:
[0275] Conductive materials: The surface or interior of the baffle is made of conductive materials, such as conductive plastics, metals, etc. These materials can quickly conduct away static charges and prevent the accumulation of static electricity.
[0276] Grounding treatment: Connect the insulating protective wall to the ground to form a complete grounding loop, and conduct the generated static charge directly into the ground.
[0277] Ionized air: Generates ionized air near the insulating protective wall to neutralize static charges.
[0278] The material selection of the insulation protection wall has a great influence on the anti-static effect. Commonly used materials are:
[0279] Conductive plastic: has good insulation and conductivity properties and is easy to process and shape.
[0280] Stainless steel: corrosion-resistant and strong, but more expensive.
[0281] Organic glass: high transparency, easy to observe, but poor conductivity, often used in combination with conductive materials.
[0282] The insulation protection wall can select appropriate materials according to the use environment and anti-static requirements, select appropriate sizes according to the size of the equipment and the protection range, select appropriate thickness according to the protection strength requirements, and ensure that the baffle is well grounded to the earth.
[0283] Insulation barriers can prevent static electricity from damaging delicate electronic components. When selecting and using insulation barriers, factors such as material, size, thickness, and grounding method should be considered to achieve optimal protection.
[0284] In an optional embodiment of the present invention, the second anti-static device is an insulating wall arranged around the magnet.
[0285] The insulating wall is an anti-static wall provided around the magnet 21. In addition to achieving the anti-static function, the insulating wall can also effectively fix the magnet 21 to prevent the magnet 21 from falling during use.
[0286] refer to Figure 7-8 , Figure 7 This is a schematic diagram of the exploded structure of a power box module provided in an embodiment of the present utility model; Figure 8 This is a schematic diagram of the exploded structure of a central control screen host provided in an embodiment of the present utility model;
[0287] In an optional embodiment of the present invention, the power box module includes a power box control module 15;
[0288] The power box control module 15 is provided with a power spring pin 13;
[0289] The central control screen host includes a central control screen main control module 27;
[0290] The central control screen main control module 27 is provided with a spring pin female seat 28 for the power spring pin 13; the spring pin female seat 28 is used to make the power box module and the central control screen host contact with the power spring pin 13 when connected to supply power to the central control screen host.
[0291] Power spring pins and probe sockets are connectors in electronic devices. They are mainly used to provide power or signal transmission. The power supply methods are mainly as follows:
[0292] 1. Direct contact power supply
[0293] Principle: The spring needle makes physical contact with the pores on the probe base through elastic force, thereby achieving circuit connection.
[0294] Features: Stable and reliable connection, suitable for static or low-frequency application scenarios.
[0295] 2. Sliding contact power supply
[0296] Principle: There is relative sliding between the spring pin and the probe base, and contact is maintained by a spring or other mechanical structure to achieve dynamic power supply.
[0297] Features: Suitable for equipment that needs to be frequently plugged in or moved.
[0298] 3. Magnetic contact power supply
[0299] Principle: The spring pin and the probe base are attracted by magnetic force to achieve contactless power supply.
[0300] Features: No physical contact is required, wireless charging can be achieved, and it is suitable for special environments such as waterproof and dustproof.
[0301] 4. Inductive power supply
[0302] Principle: Energy is transferred between the spring needle and the probe base through electromagnetic induction.
[0303] Features: Requires physical contact, has a long transmission distance, and is suitable for high-frequency applications.
[0304] 5. Piezoelectric power supply
[0305] Principle: Utilize the characteristics of piezoelectric materials to convert mechanical energy into electrical energy.
[0306] Features: Simple structure, suitable for micro equipment.
[0307] In an optional embodiment of the present invention, the host rear shell 26 is provided with a pin hole for the power pin 13; the pin socket 28 is provided on one side of the pin hole;
[0308] The spring pin hole is used to allow the power spring pin 13 to pass through the spring pin hole and contact the spring pin female seat 28 when the power box module and the central control screen host are connected.
[0309] In an optional embodiment of the present invention, the central control screen host includes a host front shell 29; the host front shell 29 and the host rear shell 26 are used to encapsulate the central control screen main control module 27 into the installation space between the host front shell 29 and the host rear shell 26.
[0310] In an optional embodiment of the present invention, a power box cover 16 is provided at the center of the module housing 14 , and the power box cover 16 is used to encapsulate the power box control module 15 and the power spring pin 13 to the side of the module housing 14 close to the wall.
[0311] In an optional embodiment of the present invention, the module housing 14 of the power box module is provided with a positioning column;
[0312] The main body rear shell 26 is provided with a positioning hole 25 corresponding to the positioning post;
[0313] The positioning hole 25 is used to limit the power box module when the positioning post is inserted.
[0314] In an optional embodiment of the present invention, the power box module is provided with fixing screw holes;
[0315] The power box module is configured to be fixedly connected to the power box through bolts based on the fixing screw holes.
[0316] In an optional embodiment of the present invention, the central control screen host includes a screen 210; the screen 210 is arranged on the outside of the host front shell 29.
[0317] In order to enable those skilled in the art to better understand the embodiments of the present invention, an example is used below to illustrate the embodiments of the present invention.
[0318] The intelligent central control screen is composed of two parts: the power box module 1 and the central control screen host 2. The central control screen host 2 has a screen 21, a host front shell 29, a central control screen main control module 27, a magnet 21, and a host rear shell 26. The central control screen main control module 27 is provided with a spring pin female seat 28;
[0319] The power box module 1 is provided with a power box cover 16, a power box control module 15, a module housing 14, and a magnetic steel plate 11. The power box control module 15 is provided with a power spring pin 13;
[0320] When the power box module 1 and the central control screen host 2 are assembled together, the spring pin female seat 28 of the power spring pin 13 contacts the powered device to work.
[0321] At least two front shell hanging platforms and two first anti-static devices are provided on the upper inner portion of the main body front shell 29;
[0322] A hook hole 22 and a first anti-static device 24 are provided on the upper inner portion of the rear shell 26 of the host, corresponding to the position of the front shell hanging platform. At least two second anti-static devices 23 are provided inside the rear shell 26 of the host. The second anti-static device 23 can be a perimeter bone, and a magnet 11 is installed inside the perimeter bone.
[0323] Two positioning holes 25 are provided in the rear shell 26 of the host corresponding to the positioning posts of the 86 power supply box housing;
[0324] At least two power box hooks 12 are provided on the upper part of the module housing 14, and at least two positioning columns are provided on the lower part, and the positioning columns are provided with inclined surfaces;
[0325] A magnetic steel plate 11 is fixedly mounted on the back of the module housing 14 .
[0326] refer to Figure 9 , Figure 9 This is a schematic diagram of the installation structure of a power box module provided in an embodiment of the present utility model.
[0327] The power box 3 is pre-buried in the wall. First, install the power box module 1 in the power box 3, adjust the horizontal state, and lock it with bolts 31; align the two hook holes on the central control screen host 2 with the hooks on the power box module 1 and hang it up, slowly release the central control screen host 2, and the central control screen host 2 is adsorbed on the power box module 1 under the suction force of the magnet 21. Figure 10 , Figure 10 This is a schematic diagram of the installation of another hook hole and power box hook provided in an embodiment of the utility model; Figure 10 It shows the status of the hook hole and the power box hook when the central control screen host 2 is installed on the power box module 1.
[0328] Since the power box module 1 has a positioning column, the host rear shell 26 has a hook hole, and the host front shell has a hook hole 22, the host can be firmly hung on the wall and accurately positioned. Figure 11 , Figure 11 This is a schematic diagram of the installation of a positioning hole and a positioning column provided in an embodiment of the present utility model; Figure 10 It shows the status of the positioning holes and positioning columns when the central control screen host 2 is installed on the power box module 1.
[0329] How to remove the host: first push the central control screen host 2 upwards, then use force to pull out the lower part of the central control screen host 2 to separate it from the wall and break away from the suction of the magnet 21, and then you can successfully remove the central control screen host.
[0330] In the embodiment of the present utility model, a first anti-static device 2 is added at the position of the hook hole 22, and a second anti-static device 23 is provided at the installation position of the magnet 21. The two work together to seal the hook hole so that external static electricity cannot penetrate the casing and affect the internal main control module.
[0331] By setting the power box hook 12 and the positioning column on the outer shell of the power box module 1, setting the magnet 21 on the rear shell 26 of the host, and setting the magnetic steel plate 11 behind the outer shell of the power box module 1, the problem of cumbersome installation of the smart central control screen in the related technology, the problem of inaccurate positioning of the bracket panel, the problem of electrostatic breakdown of the host hanging hole, and the problem of aging and falling of the back glue of the magnet installation front shell solution are solved.
[0332] refer to Figure 1 , Figure 1 It is a structural diagram of an intelligent central control screen provided in an embodiment of the present utility model.
[0333] The embodiment of the present utility model further discloses a power box module, wherein the power box module 1 is configured with a corresponding central control screen host 2;
[0334] refer to Figure 2 , Figure 2 This is a structural diagram of a magnetic steel plate provided in an embodiment of the present utility model;
[0335] The module housing of the power box module 1 is provided with a magnetic steel plate 11 on the side close to the wall;
[0336] Magnetic steel is a type of steel with a magnetic surface. It not only has the strength and durability of steel, but also has a magnetic surface, making it a popular material in modern homes, offices, and commercial spaces.
[0337] Characteristics of magnetic steel plate:
[0338] Magnetic surface: This is the most significant feature of the magnetic steel plate, which can firmly adsorb various magnetic objects, such as magnets, magnetic hooks, magnetic whiteboards, etc.
[0339] Strong durability: As a steel plate, magnetic steel plate has extremely high wear resistance and corrosion resistance, is not easy to deform, and has a long service life.
[0340] Beautiful and diverse: The surface can be treated in a variety of ways, such as spraying, laminating, etc., with rich and diverse colors and textures, which can be matched with various decoration styles.
[0341] Easy to clean: The surface is smooth and stains are not easy to adhere, making it very convenient to clean.
[0342] The magnetic steel plate of the embodiment of the utility model can be directly fixed on the back of the module housing by means of clips and special glue during production, that is, the side close to the wall when installed on the power box, which simplifies the installation steps for the smart central control screen and reduces the installation difficulty.
[0343] The power box module 1 is configured as a power box 3 embedded in a wall;
[0344] An 86-inch power box is a square box measuring 86mm x 86mm. It's typically embedded in the wall and used to house various electrical components, such as switches, sockets, and panels. Due to its standardized size and wide compatibility, the 86-inch power box has become one of the most common power distribution products used in home renovations.
[0345] Classification of 86 type power box:
[0346] According to the different materials, installation methods and functions, the 86-type power box can be divided into several types:
[0347] By material:
[0348] PVC material is commonly found in ordinary residential houses. It is relatively cheap but has average durability.
[0349] Metal materials are mostly used in public places or places with high durability requirements, such as hotels, shopping malls, etc.
[0350] Fireproof material, suitable for places with high requirements for fire resistance, such as kitchens, bathrooms, etc.
[0351] According to the installation method:
[0352] The surface-mounted box is installed on the outside of the wall, without the need to cut grooves on the wall, and is easy to install.
[0353] The concealed box is installed on the inside of the wall. It looks neat, but the construction is more difficult.
[0354] By function:
[0355] Single-gang box, used to install a single switch or socket.
[0356] Double box, used to install two switches or sockets.
[0357] Multi-gang box, used to install multiple switches or sockets.
[0358] The specific steps for installing the 86 type power box are as follows:
[0359] Determine the installation location of the power box based on the circuit diagram and actual needs.
[0360] Cut a hole in the wall that matches the size of the power box.
[0361] Run the wires from the wall box through the hole in the power box.
[0362] Insert the power box into the hole and secure it with screws.
[0363] refer to Figure 3 , Figure 3 This is a schematic structural diagram of a power supply box provided in an embodiment of the present utility model;
[0364] After the installation of the power box is completed, the embodiment of the present invention can embed the power box module 1 into the power box 3 .
[0365] refer to Figure 4 , Figure 4 This is a structural diagram of a power box hook provided in an embodiment of the utility model;
[0366] A power box hook 12 is provided on one side of the module housing of the power box module 1;
[0367] refer to Figure 5 , Figure 5 This is a schematic structural diagram of a host rear shell provided in an embodiment of the present utility model;
[0368] A magnet 21 is installed on the inner side of the rear shell of the central control screen host 2; the magnet 21 is used to provide suction to the magnetic steel plate 11 when the power box module 1 and the central control screen host 2 are connected, so that the power box module 1 and the central control screen host 2 fit tightly together;
[0369] The rear shell of the host is provided with a hook hole 22 corresponding to the hook 12 of the power box;
[0370] refer to Figure 6 , Figure 6 This is a schematic diagram of the installation of a hook hole and a power box hook provided in an embodiment of the utility model;
[0371] The hook hole 22 is used to connect the power box hook 12 to the hook hole 22.
[0372] Limiting;
[0373] Precision electronics are extremely sensitive to static electricity. Electrostatic discharge (ESD) can damage devices, cause data loss, and even cause fires. Therefore, anti-static treatment of precision electronics is crucial.
[0374] The main purposes of anti-static are as follows:
[0375] Protective devices: The high voltage generated by electrostatic discharge can damage sensitive components such as integrated circuits and chips inside precision electrical appliances, causing device failure or performance degradation.
[0376] Ensure data security: Electrostatic discharge may cause data in the memory to be damaged or lost, resulting in irreparable damage.
[0377] Improve product reliability: Through effective anti-static measures, the reliability of precision electrical appliances can be significantly improved and their service life can be extended.
[0378] Reduce production costs: reduce device scrapping and repair costs caused by static damage, and reduce production costs.
[0379] Causes of static electricity:
[0380] Static electricity is generated mainly due to the transfer of charge caused by friction or contact between different objects. In the electronics production environment, common causes of static electricity are:
[0381] Human body activities: Friction between the human body and objects will generate static electricity.
[0382] Friction of objects: Friction between objects of different materials can also generate static electricity.
[0383] Ions in the air: Ions in the air will generate static electricity under the action of electric field.
[0384] Anti-static measures
[0385] In order to effectively prevent the harm of static electricity to precision electrical appliances, the following measures are usually taken:
[0386] Grounding: Connecting a conductor to the earth allows static charge to flow into the earth through the grounding wire, thereby eliminating static electricity.
[0387] Anti-static materials: Use anti-static materials to protect the safety of high-position precision components.
[0388] Humidity control: Control the humidity of the working environment to reduce the generation of static electricity.
[0389] The importance of anti-static for precision electrical appliances:
[0390] As electronic products become increasingly miniaturized and integrated, their sensitivity to static electricity is also increasing. Therefore, anti-static measures are particularly important during the use of electronic products. Only by taking effective anti-static measures can the normal operation of precision electrical appliances be guaranteed and their service life be extended.
[0391] Generally speaking, the purpose of anti-static treatment for precision electrical appliances is to protect devices, ensure data security, improve product reliability and reduce production costs.
[0392] The hook hole 22 of the embodiment of the utility model is provided with a first anti-static device 24;
[0393] A second anti-static device 23 is provided at the installation position of the magnet 21 .
[0394] The embodiment of the present utility model discloses an intelligent central control screen, which includes a power box module and a central control screen host; a magnetic steel plate is provided on the side of the module shell of the power box module against the wall; the power box module is configured as a power box embedded in the wall; a power box hook is provided on one side of the module shell of the power box module; a magnet is installed on the inner side of the rear shell of the central control screen host; the magnet is used to provide suction to the magnetic steel plate when the power box module and the central control screen host are connected, so that the power box module and the central control screen host fit together; the rear shell of the host is provided with a hook hole corresponding to the power box hook; the hook hole is used to limit the power box module when the power box hook is inserted; thereby realizing quick loading and unloading of the intelligent central control screen, further realizing that the user can carry the intelligent central control screen and move, and improving the control efficiency of smart home appliances. Furthermore, by providing a first anti-static device on the hook hole and a second anti-static device on the installation position of the magnet, anti-static protection of the intelligent central control screen is achieved.
[0395] Based on the above embodiment, a modified embodiment of the above embodiment is proposed. It should be noted that, in order to simplify the description, only the differences from the above embodiment are described in the modified embodiment.
[0396] In an optional embodiment of the present invention, the first anti-static device is an insulating protective wall arranged around the hook hole.
[0397] Anti-static function is particularly important for electronic devices. Static electricity discharge can damage delicate electronic components. Insulation protection walls, through special materials and design, can effectively prevent static electricity accumulation and discharge.
[0398] The anti-static effect of the insulating protective wall is mainly achieved through the following methods:
[0399] Conductive materials: The surface or interior of the baffle is made of conductive materials, such as conductive plastics, metals, etc. These materials can quickly conduct away static charges and prevent the accumulation of static electricity.
[0400] Grounding treatment: Connect the insulating protective wall to the ground to form a complete grounding loop, and conduct the generated static charge directly into the ground.
[0401] Ionized air: Generates ionized air near the insulating protective wall to neutralize static charges.
[0402] The material selection of the insulation protection wall has a great influence on the anti-static effect. Commonly used materials are:
[0403] Conductive plastic: has good insulation and conductivity properties and is easy to process and shape.
[0404] Stainless steel: corrosion-resistant and strong, but more expensive.
[0405] Organic glass: high transparency, easy to observe, but poor conductivity, often used in combination with conductive materials.
[0406] The insulation protection wall can select appropriate materials according to the use environment and anti-static requirements, select appropriate sizes according to the size of the equipment and the protection range, select appropriate thickness according to the protection strength requirements, and ensure that the baffle is well grounded to the earth.
[0407] Insulation barriers can prevent static electricity from damaging delicate electronic components. When selecting and using insulation barriers, factors such as material, size, thickness, and grounding method should be considered to achieve optimal protection.
[0408] In an optional embodiment of the present invention, the second anti-static device is an insulating wall arranged around the magnet.
[0409] The insulating wall is an anti-static wall provided around the magnet 21. In addition to achieving the anti-static function, the insulating wall can also effectively fix the magnet 21 to prevent the magnet 21 from falling during use.
[0410] refer to Figure 7-8 , Figure 7 This is a schematic diagram of the exploded structure of a power box module provided in an embodiment of the present utility model; Figure 8 This is a schematic diagram of the exploded structure of a central control screen host provided in an embodiment of the present utility model;
[0411] In an optional embodiment of the present invention, the power box module includes a power box control module 15;
[0412] The power box control module 15 is provided with a power spring pin 13;
[0413] The central control screen host includes a central control screen main control module 27;
[0414] The central control screen main control module 27 is provided with a spring pin female seat 28 for the power spring pin 13; the spring pin female seat 28 is used to make the power box module and the central control screen host contact with the power spring pin 13 when connected to supply power to the central control screen host.
[0415] Power spring pins and probe sockets are connectors in electronic devices. They are mainly used to provide power or signal transmission. The power supply methods are mainly as follows:
[0416] 1. Direct contact power supply
[0417] Principle: The spring needle makes physical contact with the pores on the probe base through elastic force, thereby achieving circuit connection.
[0418] Features: Stable and reliable connection, suitable for static or low-frequency application scenarios.
[0419] 2. Sliding contact power supply
[0420] Principle: There is relative sliding between the spring pin and the probe base, and contact is maintained by a spring or other mechanical structure to achieve dynamic power supply.
[0421] Features: Suitable for equipment that needs to be frequently plugged in or moved.
[0422] 3. Magnetic contact power supply
[0423] Principle: The spring pin and the probe base are attracted by magnetic force to achieve contactless power supply.
[0424] Features: No physical contact is required, wireless charging can be achieved, and it is suitable for special environments such as waterproof and dustproof.
[0425] 4. Inductive power supply
[0426] Principle: Energy is transferred between the spring needle and the probe base through electromagnetic induction.
[0427] Features: Requires physical contact, has a long transmission distance, and is suitable for high-frequency applications.
[0428] 5. Piezoelectric power supply
[0429] Principle: Utilize the characteristics of piezoelectric materials to convert mechanical energy into electrical energy.
[0430] Features: Simple structure, suitable for micro equipment.
[0431] In an optional embodiment of the present invention, the host rear shell 26 is provided with a pin hole for the power pin 13; the pin socket 28 is provided on one side of the pin hole;
[0432] The spring pin hole is used to allow the power spring pin 13 to pass through the spring pin hole and contact the spring pin female seat 28 when the power box module and the central control screen host are connected.
[0433] In an optional embodiment of the present invention, the central control screen host includes a host front shell 29; the host front shell 29 and the host rear shell 26 are used to encapsulate the central control screen main control module 27 into the installation space between the host front shell 29 and the host rear shell 26.
[0434] In an optional embodiment of the present invention, a power box cover 16 is provided at the center of the module housing 14 , and the power box cover 16 is used to encapsulate the power box control module 15 and the power spring pin 13 to the side of the module housing 14 close to the wall.
[0435] In an optional embodiment of the present invention, the module housing 14 of the power box module is provided with a positioning column;
[0436] The main body rear shell 26 is provided with a positioning hole 25 corresponding to the positioning post;
[0437] The positioning hole 25 is used to limit the power box module when the positioning post is inserted.
[0438] In an optional embodiment of the present invention, the power box module is provided with fixing screw holes;
[0439] The power box module is configured to be fixedly connected to the power box through bolts based on the fixing screw holes.
[0440] In an optional embodiment of the present invention, the central control screen host includes a screen 210; the screen 210 is arranged on the outside of the host front shell 29.
[0441] In order to enable those skilled in the art to better understand the embodiments of the present invention, an example is used below to illustrate the embodiments of the present invention.
[0442] The intelligent central control screen is composed of two parts: the power box module 1 and the central control screen host 2. The central control screen host 2 has a screen 21, a host front shell 29, a central control screen main control module 27, a magnet 21, and a host rear shell 26. The central control screen main control module 27 is provided with a spring pin female seat 28;
[0443] The power box module 1 is provided with a power box cover 16, a power box control module 15, a module housing 14, and a magnetic steel plate 11. The power box control module 15 is provided with a power spring pin 13;
[0444] When the power box module 1 and the central control screen host 2 are assembled together, the spring pin female seat 28 of the power spring pin 13 contacts the powered device to work.
[0445] At least two front shell hanging platforms and two first anti-static devices are provided on the upper inner portion of the main body front shell 29;
[0446] A hook hole 22 and a first anti-static device 24 are provided on the upper inner portion of the rear shell 26 of the host, corresponding to the position of the front shell hanging platform. At least two second anti-static devices 23 are provided inside the rear shell 26 of the host. The second anti-static device 23 can be a perimeter bone, and a magnet 11 is installed inside the perimeter bone.
[0447] Two positioning holes 25 are provided in the rear shell 26 of the host corresponding to the positioning posts of the 86 power supply box housing;
[0448] At least two power box hooks 12 are provided on the upper part of the module housing 14, and at least two positioning columns are provided on the lower part, and the positioning columns are provided with inclined surfaces;
[0449] A magnetic steel plate 11 is fixedly mounted on the back of the module housing 14 .
[0450] refer to Figure 9 , Figure 9 This is a schematic diagram of the installation structure of a power box module provided in an embodiment of the present utility model.
[0451] The power box 3 is pre-buried in the wall. First, install the power box module 1 in the power box 3, adjust the horizontal state, and lock it with bolts 31; align the two hook holes on the central control screen host 2 with the hooks on the power box module 1 and hang it up, slowly release the central control screen host 2, and the central control screen host 2 is adsorbed on the power box module 1 under the suction force of the magnet 21. Figure 10 , Figure 10 This is a schematic diagram of the installation of another hook hole and power box hook provided in an embodiment of the utility model; Figure 10 It shows the status of the hook hole and the power box hook when the central control screen host 2 is installed on the power box module 1.
[0452] Since the power box module 1 has a positioning column, the host rear shell 26 has a hook hole, and the host front shell has a hook hole 22, the host can be firmly hung on the wall and accurately positioned. Figure 11 , Figure 11 This is a schematic diagram of the installation of a positioning hole and a positioning column provided in an embodiment of the present utility model; Figure 11 It shows the status of the positioning holes and positioning columns when the central control screen host 2 is installed on the power box module 1.
[0453] How to remove the host: first push the central control screen host 2 upwards, then use force to pull out the lower part of the central control screen host 2 to separate it from the wall and break away from the suction of the magnet 21, and then you can successfully remove the central control screen host.
[0454] In the embodiment of the present utility model, a first anti-static device 2 is added at the position of the hook hole 22, and a second anti-static device 23 is provided at the installation position of the magnet 21. The two work together to seal the hook hole so that external static electricity cannot penetrate the casing and affect the internal main control module.
[0455] By setting the power box hook 12 and the positioning column on the outer shell of the power box module 1, setting the magnet 21 on the rear shell 26 of the host, and setting the magnetic steel plate 11 behind the outer shell of the power box module 1, the problem of cumbersome installation of the smart central control screen in the related technology, the problem of inaccurate positioning of the bracket panel, the problem of electrostatic breakdown of the host hanging hole, and the problem of aging and falling of the back glue of the magnet installation front shell solution are solved.
[0456] Although the preferred embodiments of the present invention have been described, those skilled in the art may make additional changes and modifications to these embodiments once they are aware of the basic creative concepts. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications that fall within the scope of the present invention.
[0457] Finally, it should be noted that, in this document, the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or terminal device that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or terminal device. In the absence of further limitations, an element defined by the phrase "comprises a..." does not preclude the presence of additional identical elements in the process, method, article, or terminal device that includes the element.
[0458] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any modifications or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be based on the scope of protection of the claims.
Claims
1. A smart central control screen, characterized in that: The intelligent central control screen includes a power box module and a central control screen host; The module housing of the power box module is provided with a magnetic steel plate on the side close to the wall; the power box module is configured as a power box embedded in the wall; A power box hook is provided on one side of the module housing of the power box module; A magnet is installed on the inner side of the rear shell of the central control screen host; the magnet is used to provide suction to the magnetic steel plate when the power box module and the central control screen host are connected, so that the power box module and the central control screen host fit together; The host rear shell is provided with a hook hole corresponding to the power box hook; the hook hole is used to limit the power box module when the power box hook is inserted; The hook hole is provided with a first anti-static device; A second anti-static device is provided at the installation position of the magnet.
2. The intelligent central control screen according to claim 1, characterized in that: The first anti-static device is an insulating protective wall arranged around the hook hole.
3. The intelligent central control screen according to claim 1, characterized in that: The second anti-static device is an insulating wall arranged around the magnet.
4. The intelligent central control screen according to claim 1, characterized in that: The power box module includes a power box control module; The power box control module is provided with a power spring pin; The central control screen host includes a central control screen main control module; The central control screen main control module is provided with a spring pin female seat for the power spring pin; the spring pin female seat is used to make the power box module and the central control screen host contact with the power spring pin when connected to supply power to the central control screen host.
5. The intelligent central control screen according to claim 4, characterized in that: The rear shell of the host is provided with a pin hole for the power pin; the pin socket is provided on one side of the pin hole; The spring pin hole is used to allow the power spring pin to pass through the spring pin hole and contact the spring pin mother seat when the power box module and the central control screen host are connected.
6. The intelligent central control screen according to claim 5, characterized in that: The central control screen host includes a host front shell; the host front shell and the host rear shell are used to encapsulate the central control screen main control module into the installation space between the host front shell and the host rear shell.
7. The intelligent central control screen according to claim 4, characterized in that: A power box cover is provided at the center of the module housing, and the power box cover is used to encapsulate the power box control module and the power spring pin to the side of the module housing close to the wall.
8. The intelligent central control screen according to any one of claims 1 to 7, characterized in that: The module housing of the power box module is provided with a positioning column; The rear shell of the host is configured with a positioning hole corresponding to the positioning column; the positioning hole is used to limit the power box module when the positioning column is inserted.
9. The intelligent central control screen according to claim 1, characterized in that: The power box module is provided with fixing screw holes; The power box module is configured to be fixedly connected to the power box through bolts based on the fixing screw holes.
10. The intelligent central control screen according to claim 6, characterized in that: The central control screen host includes a screen; the screen is arranged on the outside of the front shell of the host.
11. A central control screen host, characterized in that: Equipped with corresponding power box module; The module housing of the power box module is provided with a magnetic steel plate on the side close to the wall; the power box module is configured as a power box embedded in the wall; A power box hook is provided on one side of the module housing of the power box module; A magnet is installed on the inner side of the rear shell of the central control screen host; the magnet is used to provide suction to the magnetic steel plate when the power box module and the central control screen host are connected, so that the power box module and the central control screen host fit together; The host rear shell is provided with a hook hole corresponding to the power box hook; the hook hole is used to limit the power box module when the power box hook is inserted; The hook hole is provided with a first anti-static device; A second anti-static device is provided at the installation position of the magnet.
12. A power box module, characterized in that: Equipped with a corresponding central control screen host; The module housing of the power box module is provided with a magnetic steel plate on the side close to the wall; the power box module is configured as a power box embedded in the wall; A power box hook is provided on one side of the module housing of the power box module; A magnet is installed on the inner side of the rear shell of the central control screen host; the magnet is used to provide suction to the magnetic steel plate when the power box module and the central control screen host are connected, so that the power box module and the central control screen host fit together; The host rear shell is provided with a hook hole corresponding to the power box hook; the hook hole is used to limit the power box module when the power box hook is inserted; The hook hole is provided with a first anti-static device; A second anti-static device is provided at the installation position of the magnet.