Novel AI intelligent control quick-release fan
Through the male and female end connector of the switch knife and magnet suction design, combined with building block splicing and assembly, the inconvenience of fan combination during assembly and disassembly is solved, and a fast, stable and intelligent fan combination is achieved, with real-time monitoring and status display functions.
Patent Information
- Application Number
- CN202421600265.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-06
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-07-06
AI Technical Summary
When assembling and disassembling the existing fan combination, it is difficult to remove the terminal plug butt and snap-on butt, resulting in inconvenient operation and high maintenance costs.
It adopts a male and female end connector of the switch knife and magnet suction design, combined with building block splicing and assembly, and controls the sub-fan synchronous operation through the main fan to achieve rapid assembly and disassembly, and is equipped with multi-directional temperature sensing monitoring and LED light guides to display the fan status.
It realizes rapid and stable assembly and disassembly of fan combinations, reduces maintenance costs, has real-time monitoring and intelligent control functions, and improves user experience.
Smart Images

Figure CN223089594U_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of fans and relates to a new type of AI intelligent control quick-release fan. Background Art
[0002] In the electronics industry, the heat generated by electronic components during operation is immeasurable. This generated heat energy can cause serious damage to the components themselves and surrounding electrical appliances. In order to slow down the aging rate of the components and surrounding electrical appliances, heat dissipation is often carried out through a radiator. A fan is the main heat dissipation component in the radiator. Different models of radiators require different fan sizes. Currently, a combined fan is often used in the market, which can adjust the number of fans according to needs, and then adjust the size of the entire fan combination. Heat dissipation is carried out through the fan combination. When a single fan fails, it is also convenient to replace the fan, reducing the maintenance cost.
[0003] For the current fan combination, power supply lines are generally directly connected by wire terminal plugs. However, when assembling and disassembling the fan, there is often a problem that it is difficult to pull out the anti-fooling buckle of the terminal plug during docking and disassembly, which is very inconvenient. Summary of the Invention
[0004] In order to overcome the deficiencies of the prior art, the present invention provides a new type of AI intelligent control quick-release fan.
[0005] A new type of AI intelligent control quick-release fan includes a fan blade, a driving member, a fan frame, and an MCU controller. A base is provided inside the fan frame. The fan blade is installed on the base through the driving member. First connectors and second connectors are respectively provided on two opposite frame edges of the fan frame. A knife-switch male end is installed on the first connector, and a knife-switch female end is installed on the second connector. It also includes a first power cord and / or a second power cord. The output end of the first power cord is connected to another knife-switch female end through a first mounting seat, and the output end of the second power cord is connected to another knife-switch male end through a second mounting seat. Each knife-switch male end respectively matches each knife-switch female end.
[0006] As a preferred technical solution of the present invention, a first slot for inserting the knife-switch male end is provided on the first connector. One end of the knife-switch male end is fixed in the first slot, and the top surface of the knife-switch male end is in the same plane as the top surface of the first connector.
[0007] As a preferred technical solution of the present invention, the knife-type male end includes a PCB plug board, a plastic shell pressing plate and a plurality of metal PIN pins. The plurality of metal PIN pins are uniformly fixed to one end of the PCB plug board through the plastic shell pressing plate. The other end of the PCB plug board is inserted into the first slot for fixation. The end face of the plastic shell pressing plate away from the PCB plug board is on the same plane as the top face of the first connector. A plurality of PIN pin slots with bottom openings are formed on the knife-type female end. Metal terminals are arranged in the PIN pin slots. Each metal PIN pin is respectively movably connected to one of the PIN pin slots.
[0008] As a preferred technical solution of the present invention, a second slot is formed on the second connector. One end of the knife-type female end is fixed in the second slot. The other end of the knife-type female end is fixed along the edge of the second connector. A receiving groove for receiving the knife-type male end is formed between the knife-type female end and the second connector.
[0009] As a preferred technical solution of the present invention, the second connector includes a first fixing plate, a PCB board and a second fixing plate. A recessed portion is formed at one end of the first fixing plate. One end of the PCB board extends into the recessed portion. The second fixing plate is installed on the end face of the PCB board away from the first fixing plate. The second slot is formed between the first fixing plate, the PCB board and the second fixing plate. A first groove is formed between one end face of the second fixing plate and the frame edge of the fan frame. The knife-type female end is fixed along the edge of the second fixing plate in a fitting manner. The other end of the knife-type female end is fixed in the first groove.
[0010] As a preferred technical solution of the present invention, a first magnet slot is formed on the first connector. A first magnet is placed in the first magnet slot. A second magnet slot is formed on the second connector. A second magnet is placed in the second magnet slot. The magnetic poles of the first magnet and the second magnet face the same direction (the N poles of the first magnet and the second magnet face the same direction, and the S poles also face the same direction), that is, the magnetic poles of the contact and docking surfaces of the first magnet and the second magnet attract each other.
[0011] As a preferred technical solution of the present invention, two of the first connectors are arranged on one frame edge of the fan frame, and two of the second connectors are arranged on the opposite frame edge. The magnetic poles of the first magnets and the magnetic poles of the second magnets at the same positions on the opposite frame edges face the same direction (the N poles of the first magnet and the second magnet face the same direction, and the S poles also face the same direction), that is, the magnetic poles of the contact and docking surfaces of the first magnet and the second magnet attract each other.
[0012] As a preferred technical solution of the present invention, it further includes a temperature detection probe, and the temperature detection probe is arranged at the connection between the driving member and the base.
[0013] As a preferred technical solution of the present invention, a first LED light guide member is arranged on the fan frame, a second LED light guide member is arranged on the end face of the driving member, and a third LED light guide member is arranged on the inner edge of the fan frame.
[0014] As a preferred technical solution of the present invention, a rotation speed prompt LED light guide member is further arranged on the fan frame.
[0015] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0016] 1. In this application, through the adoption of a building block splicing and assembly design, the fan directly connected to the power cord is the main fan, and the fan not directly connected to the power cord is the secondary fan. The main fan controls the synchronous operation of the sub-fans. With at least one power cord, the entire fan combination can be driven to work, and the rapid assembly of multiple fans can be achieved without cumbersome wire management operations and difficult-to-plug-and-unplug terminal connections, which is very convenient.
[0017] 2. In this fan, the second magnet on the second connector of fan B attracts the first magnet on the first connector of fan A, making the structure of the entire fan combination more stable.
[0018] 3. In this fan, through the adoption of a multi-directional temperature sensing real-time monitoring intelligent design, the operating condition of the fan can be monitored in real time.
[0019] 4. In this fan, a first LED light guide member is arranged on the fan frame, a second LED light guide member is arranged on the end face of the driving member, and a third LED light guide member is arranged on the inner edge of the fan frame. Under backlight conditions, the first LED light guide member, the second LED light guide member, and the third LED light guide member will present a lighting effect, making the fan more dazzling.
[0020] 5. The second LED light guide member also has the function of a fault indicator light. Through the MCU controller to control the fault indicator light (the second LED light guide member), the fault indicator light (the second LED light guide member) presents different colors under different operating conditions of the fan blades. The operating state of the fan is reflected by different lighting colors of the fault indicator light (the second LED light guide member), and abnormalities can be detected in time; and by arranging a rotation speed prompt LED light guide member on the fan frame, it is convenient to know the rotation speed of the fan blades in time. Description of the Drawings
[0021] Figure 1 It is a schematic diagram of the splicing state of the first connector, the second connector, fan A and fan B;
[0022] Figure 2Schematic diagram of the three-dimensional structure of the fan;
[0023] Figure 3 Schematic diagram of the internal structure of the fan;
[0024] Figure 4 Schematic diagram of the positional relationship among the driving member, the fan frame and the base;
[0025] Figure 5 Schematic diagram of the positional relationship between the first power cord and another knife-switch female terminal;
[0026] Figure 6 Schematic diagram of the positional relationship between the second power cord and another knife-switch male terminal;
[0027] Figure 7 Schematic diagram of the positional relationship between the second connector and the knife-switch female terminal;
[0028] Figure 8 Schematic diagram of the positional relationship between the first connector and the knife-switch male terminal;
[0029] Figure 9 Schematic diagram of the three-dimensional structure of the knife-switch male terminal;
[0030] Figure 10 Schematic diagram of the structure of the knife-switch female terminal;
[0031] In the figure: 1, fan blade; 11, digital display panel; 2, driving member; 21, second LED light guide member; 22, rotation speed prompt LED light guide member; 3, fan frame; 31, base; 32, third LED light guide member; 33, first LED light guide member; 34, anti-touch system; 4, first connector; 41, first magnet slot; 5, second connector; 51, second magnet slot; 52, receiving slot; 53, first fixing plate; 54, PCB board; 55, second fixing plate; 6, knife-switch male terminal; 61, PCB insertion board; 62, plastic shell pressing plate; 63, metal PIN pin; 7, knife-switch female terminal; 71, PIN pin slot; 8, first power cord; 81, first mounting seat; 9, second power cord; 91, second mounting seat; 10, MCU controller. Detailed implementation manners
[0032] To facilitate the understanding of the present invention, the present invention will be described more comprehensively below with reference to the relevant drawings. The preferred embodiments of the present invention are shown in the drawings. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, these embodiments are provided to make the understanding of the disclosure of the present invention more thorough and comprehensive.
[0033] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly on the other element or there can also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only.
[0034] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the technical field to which this invention belongs. The terms used in the description of the present invention herein are for the purpose of describing specific embodiments only and are not intended to limit the present invention. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.
[0035] Embodiment 1: Refer to the attached Figures 1-6 , a new type of AI intelligent control quick-release fan, including a fan blade 1, a driving member 2, a fan frame 3 and an MCU controller 10. A through installation cavity is opened in the fan frame 3, and a base 31 is arranged in the installation cavity. The edge of the base 31 is fixed on the inner wall of the fan frame 3. The fan blade 1 is installed on the base 31 through the driving member 2, and the fan blade 1 is completely placed in the placement cavity. The MCU controller 10 is fixed on the base 31, and the driving member 2 is controlled by the MCU controller 10. A first connector 4 and a second connector 5 are respectively arranged on two opposite frame edges of the fan frame 3. A knife-switch male end 6 is installed on the first connector 4, and a knife-switch female end 7 is installed on the second connector 5. It also includes a first power cord 8 and / or a second power cord 9. The output end of the first power cord 8 is connected with another knife-switch female end 7 through a first mounting seat 81, and the output end of the second power cord 9 is connected with another knife-switch male end 6 through a second mounting seat 91. Each knife-switch male end 6 is respectively matched with each knife-switch female end 7.
[0036] As Figure 1 shown, this solution can realize the free combination of multiple fans. For the convenience of discussion, they are denoted as fan A, fan B, fan C... Fans A, B and C are exactly the same. The number of fans to be spliced can be selected according to the actual situation. The splicing of two fans, fan A and fan B, is taken as an example for illustration below.
[0037] During splicing, align the second connector 5 of fan B with the first connector 4 of fan A, and then snap the port of the knife-switch female terminal 7 on the second connector 5 into the port of the knife-switch male terminal 6 on the first connector 4 to achieve electrical connection between the knife-switch female terminal 7 and the knife-switch male terminal 6; then snap the knife-switch female terminal 7 on the first power cord 8 into the knife-switch male terminal 6 on the first connector 4 of fan B, and / or snap the knife-switch male terminal 6 on the second power cord 9 into the knife-switch female terminal 7 on the second connector 5 of fan A. The first power cord 8 and the second power cord 9 are respectively externally connected to a power source, and each fan combination ensures that at least one first power cord 8 or one second power cord 9 exists to achieve control of the entire fan combination.
[0038] In this solution, through the adoption of a building block splicing and assembly design, the fan directly connected to the power cord is the main fan, and the fan not directly connected to the power cord is the secondary fan. The main fan controls the synchronous operation of the sub-fans. With at least one power cord, the entire fan combination can be driven to work. Multiple fans can be quickly assembled without cumbersome wire management actions and difficult-to-plug-and-unplug terminal connections, which is very convenient.
[0039] Preferably, in the embodiment, as Figure 8 shown, the first connector 4 is provided with a first slot for inserting the knife-switch male terminal 6. One end of the knife-switch male terminal 6 is fixed in the first slot, and the top surface of the knife-switch male terminal 6 is in the same plane as the top surface of the first connector 4.
[0040] As Figure 9 shown, the knife-switch male terminal 6 includes a PCB plug board 61, a plastic shell pressing plate 62, and several metal PIN pins 63. The several metal PIN pins 63 are evenly fixed to one end of the PCB plug board 61 through the plastic shell pressing plate 62. The other end of the PCB plug board 61 is inserted into the first slot and fixed. The end surface of the plastic shell pressing plate 62 away from the PCB plug board 61 is in the same plane as the top surface of the first connector 4. As Figure 10 shown, the knife-switch female terminal 7 is provided with several PIN pin slots 71 with open bottoms. Metal terminals are arranged in the PIN pin slots 71, and each metal PIN pin 63 is respectively movably connected to one of the PIN pin slots 71.
[0041] Preferably, in the embodiment, as Figure 7 shown, the second connector 5 is provided with a second slot. One end of the knife-switch female terminal 7 is fixed in the second slot, and the other end of the knife-switch female terminal 7 is fixed along the edge of the second connector 5. A receiving groove 52 for receiving the knife-switch male terminal 6 is formed between the knife-switch female terminal 7 and the second connector 5.
[0042] As Figure 7As shown, the second connector 5 includes a first fixing plate 53, a PCB board 54, and a second fixing plate 55. One end of the first fixing plate 53 is provided with a recess, one end of the PCB board 54 extends into the recess, and the second fixing plate 55 is installed on the end face of the PCB board 54 away from the first fixing plate 53. A second slot is formed between the first fixing plate 53, the PCB board 54, and the second fixing plate 55. One end face of the second fixing plate 55 and the frame edge of the fan frame 3 form a first groove. The knife-switch female terminal 7 is fixed along the edge of the second fixing plate 55, and the other end of the knife-switch female terminal 7 is fixed in the first groove.
[0043] Preferably, in the embodiment, as Figure 8 As shown, a first magnet slot 41 is formed on the first connector 4, and a first magnet is placed in the first magnet slot 41. A second magnet slot 51 is formed on the second connector 5, and a second magnet is placed in the second magnet slot 51. The magnetic poles of the first magnet and the second magnet face the same direction (the N poles of the first magnet and the second magnet face the same direction, and the S poles also face the same direction), that is, the magnetic poles of the contact and docking surfaces of the first magnet and the second magnet attract each other.
[0044] When assembling the fan, still taking the splicing of fan A and fan B as an example for illustration. Align the second connector 5 of fan B with the first connector 4 of fan A, and then snap the port of the knife-switch female terminal 7 on the second connector 5 into the port of the knife-switch male terminal 6 on the first connector 4 to realize the electrical connection between the knife-switch female terminal 7 and the knife-switch male terminal 6. At the same time, the second magnet on the second connector 5 of fan B and the first magnet on the first connector 4 of fan A attract each other, making the structure of the entire fan combination more stable.
[0045] Preferably, in the embodiment, as Figure 2 As shown, two first connectors 4 are provided on one frame edge of the fan frame 3, and two second connectors 5 are provided on the opposite frame edge. The magnetic poles of the first magnets and the second magnets at the same position on the opposite frame edges face the same direction (the N poles of the first magnet and the second magnet face the same direction, and the S poles also face the same direction), that is, the magnetic poles of the contact and docking surfaces of the first magnet and the second magnet attract each other. By providing two first connectors 4 and two second connectors 5, the structure of the entire fan combination is more stable than that with one first connector 4 and one second connector 5.
[0046] As Figures 5-6As shown, the first power cord 8 and the second power cord 9 are each provided with two output terminals. Each output terminal of the first power cord 8 is connected to a knife-type female terminal 7 through a first mounting base 81, and each output terminal of the second power cord 9 is connected to a knife-type male terminal 6 through a second mounting base 91. The two knife-type female terminals 7 of the first power cord 8 are respectively connected to one of the knife-type male terminals 6 on the fan B, and the two knife-type male terminals 6 of the second power cord 9 are respectively connected to one of the knife-type female terminals 7 on the fan A.
[0047] This fan also adopts a multi-directional temperature sensing real-time monitoring intelligent design to monitor the operating conditions of the fan in real time:
[0048] At least one ambient temperature detection probe is provided on the fan frame 3, at least one coil temperature detection probe is provided on the coil of the driving member 2, at least one MCU controller temperature detection probe is provided on the MCU controller 10, and additional functions are set for the PIN pin slots 71 of the knife-type female terminals 7 on the fan, such as Figure 10 As shown, an additional MCU controller temperature detection function is set for 7.11, an additional coil temperature detection function is set for 7.12, and an additional ambient temperature detection function is set for 7.13. The MCU controller 10 sets and controls the above additional functions. When the additional functions need to be detected, the corresponding detection functions are turned on, and when the additional functions do not need to be detected, the corresponding detection functions are turned off.
[0049] This fan can support multi-data transmission. Detection probes such as the ambient temperature detection probe, the coil temperature detection probe, and the MCU controller temperature detection probe transmit the monitored data to the MCU controller 10, and through the PIN pin slot 71 and the power cord, the data is transmitted to the control system on the computer motherboard or the GPU (display) card. The control system sends instructions, and through the power cord and the PIN pin slot 71, the control instructions are sent to the MCU controller 10. The MCU controller 10 issues the next instruction according to the received system instructions. This fan can also be remotely controlled wirelessly via an APP. By scanning the ID number with the APP for connection, it supports Bluetooth or WIFI connection. Users can directly download the APP for use, which is very convenient.
[0050] This fan supports the intelligent voice wake-up function. The MCU control board integrates a voice wake-up chip to ensure that the CPU continues to work during sleep; the wake-up event is notified to the Framework layer to wake up the CPU to work and trigger the wake-up process. The fan can be woken up at any time through voice dialogue to execute voice commands, for the opening and stopping of the fan, real-time speed adjustment of the fan, and reporting of the current operating status; "turn on the fan", "turn off the fan", "increase the speed to *** revolutions", "decrease the speed to *** revolutions", "current operating status", etc. It gives users a unique intelligent experience. In a preferred embodiment, such asFigures 2-3 As shown, a first LED light guide member 33 is provided on the fan frame 3, a second LED light guide member 21 is provided on the end face of the driving member 2, and a third LED light guide member 32 is provided on the inner edge of the fan frame 3. Under backlight conditions, the first LED light guide member 33, the second LED light guide member 21, and the third LED light guide member 32 will present a lighting effect, making the fan more dazzling. On the edge of the end face of the second LED light guide member 21, a light-shielding pattern effect can also be printed or engraved to improve the aesthetics of the fan.
[0051] As Figures 2-3 shown, the second LED light guide member 21 also has the function of a fault indicator light. The MCU controller 10 controls the fault indicator light (the second LED light guide member 21). When the fan blade 1 is operating under different conditions, the fault indicator light (the second LED light guide member 21) presents different colors. The operating state of the fan is reflected by the different lighting colors of the fault indicator light (the second LED light guide member 21), and abnormalities can be detected in a timely manner.
[0052] For example: it can be set according to the following rules:
[0053] When the fault indicator light (the second LED light guide member 21) emits green light, it indicates normal operation;
[0054] When the fault indicator light (the second LED light guide member 21) emits blue light, it indicates that the rotational speed of the fan blade 1 is on the high side;
[0055] When the fault indicator light (the second LED light guide member 21) emits purple light, it indicates that the rotational speed of the fan blade 1 is on the low side;
[0056] When the fault indicator light (the second LED light guide member 21) emits red light, it indicates that the fan blade 1 is not rotating or there is an open circuit;
[0057] When the fault indicator light (the second LED light guide member 21) emits yellow light, it indicates a short circuit;
[0058] Of course, it can also be set according to other rules.
[0059] As Figure 2 shown, a rotational speed indication LED light guide member is also provided on the fan frame 3. A rotational speed indication LED light guide member can be provided at each corner of the fan frame 3. The MCU controller 10 controls the rotational speed indication LED light guide member to facilitate timely awareness of the operating speed of the fan blade 1.
[0060] For example: it can be set according to the following rules:
[0061] The rotational speed is divided into L gear, M gear, and H gear. The corresponding colors of the flashing rotational speed indication LED light guide members are green, blue, and white; among them,
[0062] The L gear corresponds to 500 - 1500 RPM, and the color of the LED light guide component for speed indication is green;
[0063] The M gear corresponds to 1500 - 2500 RPM, and the color of the LED light guide component for speed indication is blue;
[0064] The H gear corresponds to 2500 - 3500 RPM, and the color of the LED light guide component for speed indication is white;
[0065] The higher the speed, the faster the LED light guide component for speed indication blinks;
[0066] Of course, it can also be set according to other rules.
[0067] Preferably, in the embodiment, as Figure 2 shown, a digital display panel 11 is provided on one of the frame edges of the fan frame 3 where the first connector 4 and the second connector 5 are not provided. The digital display panel 11 can be one of an LCD liquid crystal screen, a TFT color screen, an OLED display screen, or a TFT color screen. The digital display panel 11 is connected to the MCU controller 10, and the temperature, speed, and operating status of the fan are displayed in real time through the digital display panel 11.
[0068] Preferably, in the embodiment, as Figure 2 shown, a capacitive or infrared anti-touch system 34 is further provided inside the fan frame 3. The anti-touch system 34 is connected to the MCU controller 10. When a human body or an animal touches the operating area of the fan blade 1 during use, the fan immediately locks to stop to avoid injury.
[0069] The above are only the embodiments of the present invention, and thus do not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of the present invention, or directly or indirectly applied in other related technical fields, shall be equally included in the patent protection scope of the present invention.
Claims
1. A new type of AI intelligent control quick-release fan, comprising a fan blade, a driving member, a fan frame and an MCU controller. A base is arranged inside the fan frame, and the fan blade is installed on the base through the driving member, characterized in that, On two opposite frame edges of the fan frame, a first connector and a second connector are respectively arranged. A knife-type male terminal is installed on the first connector, and a knife-type female terminal is installed on the second connector. It further includes a first power line and / or a second power line. The output end of the first power line is connected to another knife-type female terminal through a first mounting seat, and the output end of the second power line is connected to another knife-type male terminal through a second mounting seat. Each knife-type male terminal respectively matches each knife-type female terminal.
2. The novel AI intelligent control quick-release fan according to claim 1, wherein, A first slot for inserting the knife-type male terminal is opened on the first connector. One end of the knife-type male terminal is fixed in the first slot, and the top surface of the knife-type male terminal is in the same plane as the top surface of the first connector.
3. The novel AI intelligent control quick-release fan according to claim 2, wherein, The knife-type male terminal includes a PCB plug board, a plastic shell pressing plate, and a plurality of metal PIN pins. The plurality of metal PIN pins are uniformly fixed to one end of the PCB plug board through the plastic shell pressing plate. The other end of the PCB plug board is inserted into the first slot for fixation. The end surface of the plastic shell pressing plate away from the PCB plug board is in the same plane as the top surface of the first connector. A plurality of PIN pin slots with open bottoms are opened on the knife-type female terminal, and metal terminals are arranged in the PIN pin slots. Each metal PIN pin is respectively movably connected to one of the PIN pin slots.
4. A novel AI intelligent control quick-release fan as claimed in claim 1, wherein, A second slot is opened on the second connector. One end of the knife-type female terminal is fixed in the second slot, and the other end of the knife-type female terminal is fixed along the edge of the second connector. A receiving groove for receiving the knife-type male terminal is formed between the knife-type female terminal and the second connector.
5. The novel AI intelligent control quick-release fan according to claim 4, characterized in that, The second connector includes a first fixing plate, a PCB board, and a second fixing plate. A recessed portion is opened at one end of the first fixing plate, and one end of the PCB board extends into the recessed portion. The second fixing plate is installed on the end surface of the PCB board away from the first fixing plate. The second slot is formed among the first fixing plate, the PCB board, and the second fixing plate. One end surface of the second fixing plate and the frame edge of the fan frame form a first groove. The knife-type female terminal is fixed by fitting along the edge of the second fixing plate, and the other end of the knife-type female terminal is fixed in the first groove.
6. The novel AI intelligent control quick-release fan according to claim 1, wherein A first magnet slot is opened on the first connector, and a first magnet is placed in the first magnet slot. A second magnet slot is opened on the second connector, and a second magnet is placed in the second magnet slot. The magnetic poles of the first magnet and the second magnet face the same direction.
7. The novel AI intelligent control quick-release fan according to claim 6, wherein, Two first connectors are arranged on one frame edge of the fan frame, and two second connectors are arranged on the opposite frame edge. The magnetic poles of the first magnet and the second magnet at the same position on the opposite frame edges face the same direction.
8. The novel AI intelligent control quick-release fan according to claim 1, characterized in that, It further includes a temperature detection probe, and the temperature detection probe is arranged at the connection part between the driving member and the base.
9. The novel AI intelligent control quick-release fan according to claim 1, characterized in that, A first LED light guide member is provided on the fan frame, a second LED light guide member is provided on the end face of the driving member, and a third LED light guide member is provided on the inner edge of the fan frame.
10. A novel AI intelligent control quick-release fan as claimed in claim 1, wherein, A rotation speed reminder LED light guide member is further provided on the fan frame.