Wireless control smart home gateway

By designing the flattening mechanism and overhead radiator of the entry gateway, the problems of inconvenient installation and maintenance of smart home gateways and poor heat dissipation effects are solved, convenient installation and efficient heat dissipation are achieved, and the service life of the equipment is extended.

CN120017987APending Publication Date: 2025-05-16BEIJING CHENGGONG COMM ENG JIANLI INCORPORATE
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510145993.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2025-05-16

AI Technical Summary

Technical Problem

The existing wirelessly controlled smart home gateway is inconvenient during installation and maintenance, time-consuming and labor-intensive, and has poor heat dissipation effect, which can easily lead to equipment failure and performance degradation.

Method used

A gateway inlet gateway is designed to unfold the gateway firmware through a flattening mechanism, which is convenient for installation and maintenance; an overhead radiator and an overhead air mechanism are adopted, and the overhead bent pipe, docking flat pipe and adapter structures are used to achieve suspended fixation and efficient heat dissipation of the gateway firmware.

Benefits of technology

It realizes convenient installation and maintenance of gateway firmware, improves heat dissipation performance, and extends the service life and performance stability of the equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120017987A_ABST
    Figure CN120017987A_ABST
Patent Text Reader

Abstract

The invention discloses a wireless control smart home gateway, which comprises a home-entry gateway, the home-entry gateway comprises a mounting wall body and a storage box body, the storage box body is fixedly embedded in the mounting wall body, the left side surface of the storage box body is flush with the surface of the mounting wall body, and the bottom surface of the storage box body is fixedly communicated with a home-entry wire pipe; according to the wireless control intelligent household gateway, the overhead heat radiator can be adjusted through the adaptive retainer, the wireless control intelligent household gateway can be matched with the gateway firmware through the overhead heat radiator, the applicability is good, the installation is more convenient, and the effect of saving time and labor is improved; according to the wireless control smart home gateway, the mounting adapter is arranged on the overhead radiator, so that the mounting adapter can clamp and fix the gateway firmware in the left-right direction, and meanwhile, the mounting adapter can press the gateway firmware on the overhead radiator under manual driving, the gateway firmware is fixed, the fixing mode is simple and convenient, time and labor are saved, and the practicability of the wireless control smart home gateway is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the field of smart home, and more specifically, to a wirelessly controlled smart home gateway. Background Art

[0002] A gateway device, also known as an internetwork connector or protocol converter, is a computer system or device that provides data conversion services between multiple networks. Specifically, it is a device that must go through "negotiation" when data is transferred from one network to another. Routers, layer-3 switches, firewalls and other devices can all be used as gateways. Gateways support authentication, VPN policies, routing, log auditing and other functions, and are suitable for large, medium and small networks such as enterprises, hotels and parks. In contrast, routers are mainly used to connect small and micro networks such as homes and stores. Their main function is to transmit wireless signals to meet the daily needs of households. For ease of use, people have designed wireless control gateway devices suitable for smart homes.

[0003] The existing wirelessly controlled smart home gateway is mainly composed of a gateway device and a storage box. The gateway device is installed in the storage box, which is embedded in the wall. The storage box is provided with ventilation holes for heat dissipation. However, it is inconvenient to install the network management device in the storage box, which is time-consuming and labor-intensive, and the thermal effect is poor. The temperature of the gateway device will gradually increase, which may easily lead to failure of the gateway device and performance degradation. At the same time, dust in the air will adhere to the network management device, reducing the heat dissipation performance. Therefore, it is urgent to design a wirelessly controlled smart home gateway. Summary of the invention

[0004] 1. Technical issues to be solved

[0005] The existing wireless controlled smart home gateway in the prior art is mainly composed of a gateway device and a storage box. The gateway device is installed in the storage box, and the storage box is embedded in the wall. The storage box is provided with ventilation holes for heat dissipation. However, it is inconvenient to install the network management device in the storage box, which is time-consuming and labor-intensive, and the thermal effect is poor. The body temperature of the gateway device will gradually increase, which may easily lead to failure of the gateway device and performance degradation. At the same time, dust in the air will adhere to the network management device, reducing the heat dissipation performance. The purpose of the present invention is to provide a wireless controlled smart home gateway, which can well solve the problems raised in the background technology.

[0006] 2. Technical solution

[0007] To solve the above problems, the present invention adopts the following technical solutions.

[0008] A wirelessly controlled smart home gateway comprises a home gateway, wherein the home gateway comprises a mounting wall and a storage box, wherein the storage box is fixedly embedded in the interior of the mounting wall, the left side of the storage box is flush with the surface of the mounting wall, the bottom surface of the storage box is fixedly connected with a home line pipe, the left side of the storage box is movably connected with a sealed door body, the right side of the sealed door body is fixedly mounted with a door lock rebounder, the door lock rebounder is fixedly mounted on the inner wall of the storage box, a gateway firmware is installed inside the storage box, a power socket plate is fixedly mounted on the right side of the inner cavity of the storage box, a flattening mechanism is arranged on the end of the sealed door body, the flattening mechanism comprises a chamfered arc surface, the chamfered arc surface is arranged on the right end of the sealed door body, and an overhead loose contact device is arranged on the sealed door body. The overhead radiator comprises a butt-jointed flat tube, which is mounted on the top surface of a sealed door body; an adapter retainer is arranged on the top surface of the butt-jointed flat tube; the adapter retainer comprises an adapter column, which is fixedly connected to the top surface of the butt-jointed flat tube; a mounting adapter is arranged below the butt-jointed flat tube; the mounting adapter comprises a mounting vertical bar, which is connected to the butt-jointed flat tube; an air-passing mechanism is arranged on the top surface of the sealed door body; the air-passing mechanism comprises an air-passing convex body, which is connected to the top surface of the sealed door body; an exhaust mechanism and an air-exiting mechanism are arranged on the air-passing convex body; the exhaust mechanism comprises an exhaust chamber, which is arranged inside the air-passing convex body; the air-exiting mechanism comprises an air-exiting box body, which is fixedly plugged into the top surface of the air-exiting convex body.

[0009] Preferably, the leveling mechanism also includes a smooth leveling groove, which is arranged on the surface of the chamfered arc surface. The leveling mechanism also includes a smooth leveling rail, which is fixedly connected to the bottom surface of the inner cavity of the storage box. The left end of the smooth leveling rail is fixedly connected to a leveling joint, which is slidably inserted into the sealed door body, and a flip center axis is fixedly inserted into the leveling joint. The end of the flip center axis is movably inserted into the interior of the sealed door body. A leveling stop pin is fixedly connected to the left side surface of the smooth leveling rail, and the left end of the leveling stop pin is slidably inserted into the interior of the smooth leveling groove.

[0010] Preferably, the overhead radiator also includes an overhead bent pipe, which is connected to the top surface of the air box body, and an overhead flat box is slidably sleeved on the other end of the overhead bent pipe, and the top of the mounting vertical bar is fixedly connected to the bottom surface of the overhead flat box, and the end of the docking flat pipe is slidably inserted into the interior of the overhead flat box, and a stretching spring is movably inserted into the interior of the overhead flat box, and the stretching spring is movably sleeved on the outside of the overhead bent pipe, one end of the stretching spring is fixedly connected to the inner wall of the overhead flat box, and the other end of the stretching spring is fixedly connected to the end surface of the docking flat pipe, and heat dissipation blowing holes are provided on the bottom surfaces of the docking flat tube and the overhead flat box, and the heat dissipation blowing holes on the docking flat tube are matched with the heat dissipation blowing holes on the overhead flat box, and an elastic isolation block is fixedly connected to the bottom surface of the overhead flat box, and the bottom end of the elastic isolation block is against the top surface of the gateway firmware, and a bending baffle is fixedly connected to the back side of the docking flat tube, and the other end of the bending baffle is fixedly connected to the top surface of the sealing door body.

[0011] Preferably, the adapter holder also includes an adapter rotating rod, which is movably inserted on the top surface of the adapter cylinder, and a centering convex column is slidably inserted on the bottom surface of the adapter rotating rod, and the bottom end of the centering convex column is fixedly connected to the bottom surface of the inner cavity of the adapter cylinder, and a spring is provided inside the adapter rotating rod, and the spring is used to push the centering convex column out, and an adapter rotating disk is fixedly sleeved on the outside of the adapter rotating rod, and an adapter ratchet located at its bottom end is fixedly connected on the surface of the adapter rotating disk, and an engaging spring strip is fixedly connected to the inner wall of the adapter cylinder, and the engaging spring strip is fixedly connected to the inner wall of the adapter cylinder. The other end of the strip is unidirectionally meshed with the adaptation ratchet, and a locking pin located above the adaptation turntable is fixedly connected to the surface of the adaptation rotating rod, and the locking pin is pressed on the top surface of the inner cavity of the adaptation column, and the outside of the adaptation rotating rod is fixedly sleeved with an adaptation wire wheel located above the adaptation column, and two adaptation leads are wound on the adaptation wire wheel, and the other two ends of the two adaptation leads are fixedly connected to adaptation vertical plates, which are fixedly connected to the top surface of the overhead flat box and located at its end, and an adjusting turntable is fixedly connected to the top of the adaptation rotating rod.

[0012] Preferably, the mounting adapter further comprises an mounting adapter strip, the mounting adapter strip is provided with a mounting adapter hole, the mounting vertical strip is slidably plugged into the inside of the mounting adapter hole, the side of the mounting vertical strip is provided with a mounting ratchet groove, the mounting adapter strip is provided with an action conversion cavity located in the middle thereof, an action conversion rod is movably plugged into the inner wall of the action conversion cavity, an action conversion wire wheel is fixedly sleeved on the outside of the action conversion rod, an action conversion lead is wound around the outside of the action conversion wire wheel, an action conversion cavity is provided on one side of the action conversion cavity, and the action conversion lead is wound around the outside of the action conversion cavity. The inner wall of the change chamber is connected to the action conversion piston through the action conversion spring transmission, the end of the action conversion lead extends to the interior of the action conversion chamber and is fixedly connected to the side of the action conversion piston, and a snap-on ratchet head is fixedly connected to the other side of the action conversion piston, and the other end of the snap-on ratchet head extends to the interior of the mounting adapter hole and is unidirectionally meshed with the mounting ratchet groove, the end of the action conversion rod extends to the outside of the mounting adapter strip and is fixedly connected to a release ring, and a bearing cross plate is fixedly connected to the right side surface of the mounting adapter strip, and the bearing cross plate is supported on the bottom surface of the gateway firmware.

[0013] Preferably, the air passing mechanism also includes an air passing groove, the air passing groove is opened on the top surface of the air passing convex body, the bottom surface of the inner cavity of the air passing groove is fixedly connected to an air guide cone shell, the bottom surface of the inner cavity of the air guide cone shell is fixedly installed with a driving motor, the end of the output shaft on the driving motor extends from the top of the air guide cone shell and is fixedly sleeved with a driving fan blade, and an air passing hole is opened on the inner wall of the air passing groove. The air passing mechanism also includes a U-shaped snap-fit ​​cavity, the U-shaped snap-fit ​​cavity is opened inside the air passing convex body, the air passing hole is connected to the U-shaped snap-fit ​​cavity, a transfer rectangular cavity is opened inside the air passing convex body, one end of the transfer rectangular cavity is open, the transfer rectangular cavity is located on the inner side of the U-shaped snap-fit ​​cavity, the interior of the transfer rectangular cavity is filled with a filtering sponge, air passing holes are opened on the upper and lower surfaces of the inner cavity of the transfer rectangular cavity, and a sealed cover plate is movably inserted on the air passing convex body, and the sealed cover plate blocks the opening of the transfer rectangular cavity.

[0014] Preferably, the exhaust mechanism also includes an exhaust spring, which is located inside the exhaust chamber, and the top of the exhaust spring is connected to the top surface of the inner cavity of the exhaust chamber, and the bottom end of the exhaust spring is fixedly connected to an exhaust piston plate, and the exhaust piston plate is slidably inserted in the interior of the exhaust chamber, and an exhaust damper is fixedly connected to the bottom surface of the exhaust piston plate, and the bottom end of the exhaust damper extends to the inside of the air through hole and rests on the bottom surface of its inner cavity, and an exhaust rectangular frame is fixedly connected to the top surface of the exhaust piston plate, and the top end of the exhaust rectangular frame extends from the top surface of the air through convex body, and an exhaust movement square frame is slidably inserted in the interior of the exhaust rectangular frame, and the exhaust movement square frame is seated on the top surface of the air through convex body, and two exhaust movement square frames are fixedly connected to the top surface of the exhaust movement square frame A right-angled trapezoidal plate, the right-angled trapezoidal plate is adapted to the exhaust rectangular frame, a return spring is fixedly connected to the left side surface of one right-angled trapezoidal plate, the other end of the return spring is fixedly connected to the top surface of the wind-through convex body, and a locking rebounder is clamped and connected to the right side surface of the other right-angled trapezoidal plate, the locking rebounder is fixedly connected to the top surface of the wind-through convex body, an installation plate is provided on the inner side of the exhaust movement box, the installation plate is fixedly connected to the top surface of the wind-through convex body, an electromagnetic ejection rod is fixedly inserted on the installation plate, the right end of the electromagnetic ejection rod is fixedly connected to an extension adapter strip, the extension adapter strip is adapted to another right-angled trapezoidal plate, a timing controller is provided on the inner side of the exhaust movement box, and the timing controller is fixedly connected to the top surface of the wind-through convex body.

[0015] Preferably, the air outlet mechanism also includes an air outlet tapering hole, which is arranged on the bottom surface of the air outlet box body cavity, an air outlet tapering plug is movably inserted inside the air outlet tapering hole, a guide slide is fixedly connected to the top surface of the air outlet tapering plug, a lifting pin is fixedly connected to the surface of the guide slide, a guide short tube is movably sleeved on the outside of the guide slide at the top thereof, the guide short tube is fixedly connected to the top surface of the air outlet box body cavity, a spring is arranged inside the guide short tube, and the spring is used to push the guide slide out, so that the air outlet box body Guide flat tubes are fixedly connected to the left and right side surfaces of the inner cavity, and a movable slide bar is slidably inserted inside the guide flat tubes. A lifting inclined panel is fixedly connected to the top surface of the movable slide bar, and the lifting inclined panel is matched with the lifting pin. A traction spring is fixedly connected to the right side surface of the lifting inclined panel, and the right end of the traction spring is fixedly connected to the right side surface of the inner cavity of the air intake box body, and a load-bearing short column is fixedly connected to the right side surface of the movable slide bar, and the other end of the load-bearing short column extends from the right side surface of the air intake box body and is matched with the exhaust movement frame.

[0016] 3. Beneficial effects

[0017] Compared with the prior art, the advantages of the present invention are:

[0018] ① Through the home gateway, the wireless controlled smart home gateway can be unfolded, which is convenient for people to install and maintain the gateway firmware, and the operation is more time-saving and labor-saving. Through the leveling mechanism, the gateway firmware is in a horizontal state after the home gateway is unfolded, which is convenient for people to observe, and then convenient for people to install and maintain the gateway firmware, and the time-saving and labor-saving effect is better. Through the adapter holder, people can adjust the overhead radiator. Through the overhead radiator, the wireless controlled smart home gateway can be adapted to the gateway firmware, which has good applicability and is more convenient to install, which helps to increase the time-saving and labor-saving effect. The installation adapter is driven by the overhead radiator to move, so that the installation adapter can clamp and fix the gateway firmware in the left and right directions. At the same time, the installation adapter can press the gateway firmware on the overhead radiator under human drive to fix the gateway firmware. The fixing method is simple and convenient, saves time and labor, and improves the practicality of the wireless controlled smart home gateway.

[0019] ②Fix the gateway firmware on the overhead radiator by installing the adapter, so that the gateway firmware is in a suspended state, which helps to increase the heat dissipation performance. The wind-through mechanism can force the hot air around the gateway firmware to be discharged, which helps to further increase the heat dissipation performance. At the same time, the wind-through mechanism can filter the incoming air and remove dust in the air to prevent dust from affecting the heat dissipation performance of the gateway firmware, which helps to increase the heat dissipation performance again. The exhaust mechanism can drive the wind-through mechanism to change the air duct for backblowing and cleaning the dust intercepted by the wind-through mechanism to prevent dust from accumulating for a long time and affecting the permeability, which helps to increase the heat dissipation performance again. The air-through mechanism can eject new air from the top of the gateway firmware and discharge hot air from the bottom of the gateway firmware to ensure that the surface of the gateway firmware can be blown by new air, which helps to increase the heat dissipation performance. The heat dissipation performance is excellent, which improves the practicality of the wirelessly controlled smart home gateway. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a structural schematic diagram of the present invention;

[0021] Figure 2 For the present invention Figure 1 Schematic diagram of the internal structure of the middle storage box;

[0022] Figure 3 For the present invention Figure 2 Schematic diagram of the internal structure of the middle sealing door body when it is laid flat;

[0023] Figure 4 For the present invention Figure 3 Schematic diagram of the internal structure of the center leveling mechanism;

[0024] Figure 5 For the present invention Figure 3 Schematic diagram of the internal structure of the middle adapter retainer;

[0025] Figure 6 For the present invention Figure 3 Schematic diagram of the internal structure of the overhead radiator;

[0026] Figure 7 For the present invention Figure 3 Schematic diagram of the internal structure of the adapter installed in the middle;

[0027] Figure 8 For the present invention Figure 7 The left side internal structure diagram of the adapter strip installed in the middle;

[0028] Fig. 9 For the present invention Figure 3 Schematic diagram of the structure of the middle-stroke mechanism;

[0029] Fig.10 For the present invention Fig. 9 Schematic diagram of the internal structure;

[0030] Fig.11 For the present invention Fig.10 Schematic diagram of the internal structure of the central air-flow mechanism;

[0031] Fig.12 For the present invention Fig.10 Schematic diagram of the internal structure of the exhaust mechanism.

[0032] Description of the numbers in the figure:

[0033] 1. Entrance gateway; 11. Wall installation; 12. Storage box; 13. Entrance wire tube; 14. Sealed door; 15. Lock door rebounder; 16. Gateway firmware; 17. Power socket board; 2. Leveling mechanism; 21. Leveling rail; 22. Leveling joint; 23. Flipping center axis; 24. Leveling stop pin; 25. Chamfered arc surface; 26. Leveling groove; 3. Overhead radiator; 31. Overhead bent pipe; 32. Overhead flat box; 33. Docking flat pipe; 34. Open spring; 35. Heat dissipation blowing hole; 36. Elastic isolation block; 37. Bending stop bar; 4. Adapter retainer; 401. Adapter column; 402, adapter rod; 403, centering convex column; 404, adapter turntable; 405, adapter ratchet; 406, meshing spring bar; 407, anti-drop pin; 408, adapter wire wheel; 409, adapter lead; 410, adapter vertical plate; 411, adjustment turntable; 5, installation adapter; 501, installation adapter strip; 502, installation adapter hole; 503, installation vertical bar; 504, installation ratchet groove; 505, action conversion chamber; 506, action conversion rod; 507, action conversion wire wheel; 508, action conversion lead; 509, action conversion chamber; 510, Action conversion spring; 511, action conversion piston; 512, snap-on ratchet head; 513, release ring; 514, bearing cross plate; 6, air passing mechanism; 601, air passing convex body; 602, air passing groove; 603, air guide cone shell; 604, drive motor; 605, fan blade; 606, air passing hole; 607, U-shaped buckle cavity; 608, transfer rectangular cavity; 609, filter sponge; 610, air passing hole; 611, closed cover plate; 7, exhaust mechanism; 701, exhaust chamber; 702, exhaust spring; 703, exhaust piston plate; 704, exhaust gate ;705, exhaust rectangular frame; 706, exhaust movement square frame; 707, right-angle trapezoidal plate; 708, reset spring; 709, locking rebounder; 710, installation fixed plate; 711, electromagnetic ejection rod; 712, extension adapter strip; 713, timing controller; 8, air discharge mechanism; 801, air discharge box; 802, air discharge tapering hole; 803, air discharge tapering plug; 804, guide slide bar; 805, lifting pin; 806, guide short tube; 807, guide flat tube; 808, movement slide bar; 809, lifting inclined panel; 810, traction spring; 811, load-bearing short column. DETAILED DESCRIPTION

[0034] 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 described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without creative work are within the scope of protection of the present invention.

[0035] A wireless controlled smart home gateway, comprising a home gateway 1, see Figure 1 The home gateway 1 includes a mounting wall 11 and a storage box 12. The storage box 12 is fixedly embedded in the interior of the mounting wall 11. The left side of the storage box 12 is flush with the surface of the mounting wall 11. The bottom surface of the storage box 12 is fixedly connected with a home line pipe 13. Please refer to Figure 2 The left side of the storage box 12 is movably connected with a sealed door body 14, and the right side of the sealed door body 14 is fixedly installed with a door lock rebounder 15, which is fixed on the inner wall of the storage box 12. A gateway firmware 16 is installed inside the storage box 12, and a power socket board 17 is fixedly installed on the right side of the inner cavity of the storage box 12, so that the wireless controlled smart home gateway can be unfolded, which is convenient for people to install and maintain the gateway firmware 16, and the operation is more time-saving and labor-saving. Please refer to Figure 3 , a flattening mechanism 2 is provided at the end of the sealing door body 14, see Figure 4 The leveling mechanism 2 includes a chamfered arc surface 25, which is disposed on the right end of the sealing door body 14. Figure 3 The sealed door body 14 is provided with an overhead radiator 3, which includes a butt-jointed flat tube 33, which is mounted on the top surface of the sealed door body 14, and an adapter holder 4 is provided on the top surface of the butt-jointed flat tube 33, which includes an adapter cylinder 401, which is fixedly connected to the top surface of the butt-jointed flat tube 33, and a mounting adapter 5 is provided below the butt-jointed flat tube 33, please refer to Figure 7 The mounting adapter 5 includes a mounting vertical bar 503, which is connected to the butt-jointed flat tube 33. The top surface of the sealed door body 14 is provided with an air passing mechanism 6. Please refer to Fig. 9 The air passing mechanism 6 includes an air passing convex body 601, and the air passing convex body 601 is connected to the top surface of the sealing door body 14, please refer to Fig.10 The air passing convex body 601 is provided with an exhaust mechanism 7 and an air removal mechanism 8, please refer to Fig.12 The exhaust mechanism 7 includes an exhaust chamber 701, which is opened inside the wind convex body 601. Fig.11 The air outlet mechanism 8 includes an air outlet box 801 , and the air outlet box 801 is fixedly plugged on the top surface of the air passing convex body 601 .

[0036] See also Figure 4The leveling mechanism 2 also includes a smooth leveling groove 26, which is arranged on the surface of the chamfered arc surface 25. The leveling mechanism 2 also includes a smooth leveling rail 21, which is fixedly connected to the bottom surface of the inner cavity of the storage box 12. The left end of the smooth leveling rail 21 is fixedly connected with a leveling joint 22, which is slidably inserted into the sealed door body 14, and a flip center axis 23 is fixedly inserted into the leveling joint 22. The end of the flip center axis 23 is movably inserted into the inside of the sealed door body 14. A leveling stop pin 24 is fixedly connected to the left side surface of the smooth leveling rail 21, and the left end of the leveling stop pin 24 is slidably inserted into the inside of the smooth leveling groove 26, so that the gateway firmware 16 is in a horizontal state after the home gateway 1 is unfolded, which is convenient for people to observe, and then convenient for people to install and maintain the gateway firmware 16, saving time and effort for better effect.

[0037] See also Figure 3 The overhead radiator 3 also includes an overhead elbow 31, which is connected to the top surface of the air box 801. The other end of the overhead elbow 31 is slidably sleeved with an overhead flat box 32. The top of the mounting vertical bar 503 is fixedly connected to the bottom surface of the overhead flat box 32, and the end of the flat pipe 33 is slidably inserted into the interior of the overhead flat box 32. Please refer to Figure 6 The overhead flat box 32 is movably connected with an expansion spring 34, which is movably sleeved on the outside of the overhead bent pipe 31, one end of the expansion spring 34 is fixedly connected to the inner wall of the overhead flat box 32, and the other end of the expansion spring 34 is fixedly connected to the end surface of the docking flat tube 33, and the bottom surfaces of the docking flat tube 33 and the overhead flat box 32 are provided with heat dissipation holes 35, and the heat dissipation holes 35 on the docking flat tube 33 are adapted to the heat dissipation holes 35 on the overhead flat box 32, and an elastic isolation block 36 is fixedly connected to the bottom surface of the overhead flat box 32, and the bottom end of the elastic isolation block 36 is against the top surface of the gateway firmware 16, and the back of the docking flat tube 33 A bending baffle 37 is fixedly connected to the top, and the other end of the bending baffle 37 is fixedly connected to the top surface of the sealed door body 14, so that the wirelessly controlled smart home gateway can be adapted to the gateway firmware 16, has good applicability, is more convenient to install, and helps to increase the time-saving and labor-saving effect. At the same time, it is used to drive the installation adapter 5 to move, so that the installation adapter 5 can clamp and fix the gateway firmware 16 in the left and right directions. At the same time, the installation adapter 5 can press the gateway firmware 16 onto the overhead radiator 3 under manual drive, thereby fixing the gateway firmware 16. The fixing method is simple and convenient, saves time and labor, and improves the practicality of the wirelessly controlled smart home gateway.

[0038] See also Figure 5The adapter holder 4 also includes an adapter rotating rod 402, which is movably inserted on the top surface of the adapter cylinder 401, and a centering protrusion 403 is slidably inserted on the bottom surface of the adapter rotating rod 402. The bottom end of the centering protrusion 403 is fixedly connected to the bottom surface of the inner cavity of the adapter cylinder 401. A spring is provided inside the adapter rotating rod 402, and the spring is used to push out the centering protrusion 403. The outside of the adapter rotating rod 402 is fixedly sleeved with an adapter rotating disk 404, and an adapter ratchet 405 located at its bottom end is fixedly connected to the surface of the adapter rotating disk 404. An engaging spring bar 406 is fixedly connected to the inner wall of the adapter cylinder 401, and the other end of the engaging spring bar 406 is unidirectionally engaged with the adapting ratchet 405. The surface of the adapter rod 402 is engaged, and a locking pin 407 located above the adapter turntable 404 is fixedly connected thereto, and the locking pin 407 is pressed on the top surface of the inner cavity of the adapter column 401. The outside of the adapter rod 402 is fixedly sleeved with an adapter wire wheel 408 located above the adapter column 401, and two adapter leads 409 are wound around the adapter wire wheel 408. The other two ends of the two adapter leads 409 are fixedly connected to an adapter vertical plate 410, and the adapter vertical plate 410 is fixedly connected to the top surface of the overhead flat box 32 and is located at its end. An adjustment turntable 411 is fixedly connected to the top of the adapter rod 402, so that people can adjust the overhead radiator 3 to change the applicable specifications.

[0039] See also Figure 8 The mounting adapter 5 also includes a mounting adapter strip 501, which is provided with a mounting adapter hole 502, a mounting vertical strip 503 is slidably inserted into the mounting adapter hole 502, and a mounting ratchet groove 504 is provided on the side of the mounting vertical strip 503. The mounting adapter strip 501 is provided with an action conversion cavity 505 located in the middle thereof, and an action conversion rod 506 is movably inserted into the inner wall of the action conversion cavity 505. An action conversion wire wheel 507 is fixedly sleeved on the outside of the action conversion rod 506, and an action conversion lead wire 508 is wound around the outside of the action conversion wire wheel 507. An action conversion chamber 509 located on one side of the action conversion chamber 505 is provided inside the installation adapter strip 501. The inner wall of the action conversion chamber 509 is connected to an action conversion piston 511 through an action conversion spring 510. The end of the action conversion lead 508 extends to the inside of the action conversion chamber 509 and is fixedly connected to the side of the action conversion piston 511. A snap-on ratchet head 512 is fixedly connected to the other side of the action conversion piston 511. The other end of the snap-on ratchet head 512 extends to the inside of the installation adapter hole 502 and is unidirectionally meshed with the installation ratchet groove 504. Please refer to Figure 7The end of the action conversion rod 506 extends to the outside of the installation adapter strip 501 and is fixedly connected to a release ring 513. A bearing cross plate 514 is fixedly connected to the right side surface of the installation adapter strip 501. The bearing cross plate 514 is supported on the bottom surface of the gateway firmware 16, and the gateway firmware 16 is fixed on the overhead radiator 3, so that the gateway firmware 16 is suspended, which helps to increase the heat dissipation performance.

[0040] See also Fig.10 The wind passing mechanism 6 also includes a wind passing groove 602, which is provided on the top surface of the wind passing convex body 601, and a wind guide cone shell 603 is fixedly connected to the bottom surface of the inner cavity of the wind passing groove 602, and a driving motor 604 is fixedly installed on the bottom surface of the inner cavity of the wind guide cone shell 603, and the end of the output shaft on the driving motor 604 extends from the top of the wind guide cone shell 603 and is fixedly sleeved with a driving fan blade 605, and a wind passing hole 606 is provided on the inner wall of the wind passing groove 602, and the wind passing mechanism 6 also includes The U-shaped buckle cavity 607 is provided inside the air-passing convex body 601, and the air-passing hole 606 is connected with the U-shaped buckle cavity 607. A transfer rectangular cavity 608 is provided inside the air-passing convex body 601, and one end of the transfer rectangular cavity 608 is open. The transfer rectangular cavity 608 is located on the inner side of the U-shaped buckle cavity 607. The interior of the transfer rectangular cavity 608 is filled with a filter sponge 609. The upper and lower surfaces of the inner cavity of the transfer rectangular cavity 608 are provided with air-passing holes 610. Please refer to Fig. 9 A sealed cover 611 is movably connected to the air-passing convex body 601, and the sealed cover 611 blocks the opening of the transfer rectangular cavity 608, forcing the hot air around the gateway firmware 16 to be discharged, which helps to further increase the heat dissipation performance. At the same time, the air-passing mechanism 6 can filter the incoming air and remove dust in the air to prevent dust from affecting the heat dissipation performance of the gateway firmware 16, which helps to increase the heat dissipation performance again.

[0041] See also Fig.12The exhaust mechanism 7 also includes an exhaust spring 702, which is located inside the exhaust chamber 701. The top of the exhaust spring 702 is connected to the top surface of the inner cavity of the exhaust chamber 701. The bottom end of the exhaust spring 702 is fixedly connected to an exhaust piston plate 703, which is slidably inserted into the exhaust chamber 701. The bottom surface of the exhaust piston plate 703 is fixedly connected to an exhaust damper 704, and the bottom end of the exhaust damper 704 extends to the inside of the air through hole 606 and abuts against the exhaust valve 704. On the bottom surface of the inner cavity, an exhaust rectangular frame 705 is fixedly connected to the top surface of the exhaust piston plate 703. The top of the exhaust rectangular frame 705 extends from the top surface of the wind-passing convex body 601. An exhaust movable frame 706 is slidably inserted into the interior of the exhaust rectangular frame 705. The exhaust movable frame 706 is located on the top surface of the wind-passing convex body 601. Two right-angled trapezoidal plates 707 are fixedly connected to the top surface of the exhaust movable frame 706. The right-angled trapezoidal plates 707 are adapted to the exhaust rectangular frame 705. Please refer to Fig. 9 A return spring 708 is fixedly connected to the left side of a right-angled trapezoidal plate 707, and the other end of the return spring 708 is fixedly connected to the top surface of the wind-through convex body 601. A locking rebounder 709 is clamped and connected to the right side of the other right-angled trapezoidal plate 707, and the locking rebounder 709 is fixedly connected to the top surface of the wind-through convex body 601. A mounting plate 710 is provided on the inner side of the exhaust movement frame 706, and the mounting plate 710 is fixedly connected to the top surface of the wind-through convex body 601. An electric A magnetic ejection rod 711, the right end of the electromagnetic ejection rod 711 is fixedly connected with an extended adapter strip 712, the extended adapter strip 712 is adapted to another right-angled trapezoidal plate 707, a timing controller 713 is provided on the inner side of the exhaust movement box 706, the timing controller 713 is fixedly connected to the top surface of the wind-passing convex body 601, drives the wind-passing mechanism 6 to operate, so that the wind-passing mechanism 6 changes the air duct, which is used for backblowing and cleaning the dust intercepted by the wind-passing mechanism 6, avoiding the long-term accumulation of dust and affecting the permeability, which helps to increase the heat dissipation performance again.

[0042] See also Fig.11The gas-exiting mechanism 8 also includes a gas-exiting tapered hole 802, which is arranged on the bottom surface of the inner cavity of the gas-exiting box 801, and a gas-exiting tapered plug 803 is movably inserted inside the gas-exiting tapered hole 802, and a guide slide 804 is fixedly connected to the top surface of the gas-exiting tapered plug 803, and a lifting pin 805 is fixedly connected to the surface of the guide slide 804, and a guide short tube 806 located at the top of the guide slide 804 is movably sleeved outside the guide slide 804, and the guide short tube 806 is fixedly connected to the top of the inner cavity of the gas-exiting box 801. On the surface, a spring is arranged inside the guide short tube 806, and the spring is used to push out the guide slide bar 804. The left and right side surfaces of the inner cavity of the air box body 801 are fixedly connected with guide flat tubes 807. The inside of the guide flat tube 807 is slidably inserted with a moving slide bar 808. The top surface of the moving slide bar 808 is fixedly connected with a lifting inclined panel 809. The lifting inclined panel 809 is adapted to the lifting pin 805. The right side surface of the lifting inclined panel 809 is fixedly connected with a traction spring 810. The right end of the traction spring 810 is fixedly connected to On the right side surface of the inner cavity of the air outlet box 801, a load-bearing short column 811 is fixedly connected to the right side surface of the sliding strip 808, and the other end of the load-bearing short column 811 extends from the right side surface of the air outlet box 801 and is adapted to the exhaust moving box 706, so that new air is ejected from the top of the gateway firmware 16 and hot air is discharged from the bottom of the gateway firmware 16, ensuring that the surface of the gateway firmware 16 can be blown by the new air, which helps to increase the heat dissipation performance. The heat dissipation performance is excellent, which improves the practicality of the wirelessly controlled smart home gateway. The release ring 513 is then released, and the release ring 513 rotates with the action conversion rod 506, and then the action conversion rod 506 rotates with the action conversion wheel 507, and then the action conversion lead 508 is wound around the outside of the action conversion wheel 507 and pulls the action conversion piston 511, and then the action conversion piston 511 squeezes the action conversion spring 510 and pulls the engaging ratchet head 512 out of the corresponding installation ratchet groove 504, so that the installation adapter strip 501 can move downward, which is convenient for the disassembly of the gateway firmware 16.

[0043] Working principle:

[0044] First, press the sealed door body 14, and then the door lock rebounder 15 releases the sealed door body 14 and applies a rebound force to it, and then the sealed door body 14 flips counterclockwise with the flip center axis 23 as the center axis, and then the leveling stop pin 24 slides inside the leveling smooth groove 26, and then the leveling stop pin 24 slides to the extreme position inside the leveling smooth groove 26, at this time, the sealed door body 14 is in a horizontal state, and then a pulling force to the left is applied to the sealed door body 14, and then the sealed door body 14 pulls the leveling rail 21 through the flip center axis 23 and the leveling joint 22, and then the leveling rail 21 is extended, and then the sealed door body 14 is appropriately away from the storage box 12, so that the distance between the overhead radiator 3 and the storage box 12 is large enough, which is convenient for the subsequent installation of the gateway firmware 16 and wiring, and then the adjustment knob is turned. The adapter plate 411 is then adjusted, and the adapter plate 411 rotates with the adapter rod 402, and then the adapter rod 402 rotates with the adapter plate 404 and the anti-slip pin 407, and then the adapter plate 404 rotates with the adapter ratchet 405, and then the meshing spring bar 406 is unidirectionally meshed with the adapter ratchet 405, so that the adapter plate 404 cannot rotate in the opposite direction by itself, and then the adapter rod 402 rotates with the adapter wire wheel 408, and then the adapter lead wire 409 is wound around the outside of the adapter wire wheel 408, and then the adapter lead wire 409 pulls the adapter vertical plate 410, and then the adapter vertical plate 410 pulls the overhead flat box 32 to move in the direction of the docking flat tube 33, and the overhead flat box 32 slides on the outside of the overhead bent tube 31, and then the overhead flat box 32 squeezes the open spring 34, and then opens. The spring 34 is elastically compressed, and the elastic potential energy increases. Then, the overhead flat box 32 moves synchronously with the installation adapter 5. Then, the distance between the two installation adapters 5 gradually decreases until the distance between the two installation adapters 5 matches the size of the gateway firmware 16. Then, the adjustment dial 411 is stopped, and then the adaptation ratchet 405 is unidirectionally engaged with the meshing spring bar 406 to fix the adaptation rotating rod 402. At this time, the heat dissipation blowing hole 35 on the docking flat tube 33 is aligned with the heat dissipation blowing hole 35 on the overhead flat box 32 and connected. Then, the adaptation rotating rod 402 fixes the position of the installation adapter 5 through the adaptation wire wheel 408, the adaptation lead 409, the adaptation vertical plate 410, and the overhead flat box 32, and then the gateway firmware 16 is erected on the top surface of the bearing cross plate 514. And push inward until the gateway firmware 16 contacts the bent baffle 37, then apply an upward thrust to the installation adapter strip 501, and then the installation adapter strip 501 moves upward with the bearing cross plate 514, and then the action conversion piston 511 applies force to the snap-on ratchet head 512 under the action of the elastic force of the action conversion spring 510, and then the snap-on ratchet head 512 slides on the inner wall of the installation ratchet groove 504 and the surface of the installation vertical bar 503, and then the bearing cross plate 514 moves upward with the gateway firmware 16, and then the elastic isolation block 36 rests on the top surface of the gateway firmware 16, and then the action conversion piston 511 inserts the snap-on ratchet head 512 into the corresponding installation ratchet groove 504 under the action of the elastic force of the action conversion spring 510 to fix the installation adapter strip 501,At this point, the gateway firmware 16 is clamped and fixed, and then the wiring work is carried out. After the wiring work is completed, an upward turning force is applied to the sealed door body 14, and then the sealed door body 14 is turned upward with the turning center axis 23 as the center axis, and then the leveling stop pin 24 slides to another extreme position inside the leveling smooth groove 26. At this time, the sealed door body 14 is perpendicular to the lowering smooth rail 21, and then a rightward thrust is applied to the sealed door body 14, and then the sealed door body 14 moves to the right, and then the sealed door body 14 squeezes the lowering smooth rail 21 through the turning center axis 23 and the leveling joint 22, and then the lowering smooth rail 21 is gradually shortened, and then the sealed door body 14 covers the opening at the left end of the storage box 12, and at the same time the door lock rebounder 15 fixes the sealed door body 14, and then power is turned on, and then The gateway firmware 16, the drive motor 604, and the timing controller 713 work, and then the gateway firmware 16 works and generates heat, and then the drive motor 604 drives the fan blades 605 to rotate, and then the hot air inside the storage box 12 is driven by the fan blades 605 through the air passage composed of the wind groove 602 and the wind through hole 606 on the left side of the wind guide cone shell 603 to enter the U-shaped buckled cavity 607, and then the hot air passes through the corresponding transfer rectangular cavity 608, the filter sponge 609, and the air passage composed of the air hole 610 under the action of the pressure difference to be discharged, and then the dust intercepted on the filter sponge 609 is blown away by the air flow, and then the air pressure inside the storage box 12 is reduced, and then the new air passes through the wind through hole 610 on the right side of the wind guide cone shell 603, the transfer The air passage composed of the rectangular cavity 608, the filter sponge 609, the U-shaped buckled cavity 607, the air-contracting hole 802 at the right end of the air-passing convex body 601, the air-passing box body 801, and the overhead curved pipe 31 enters the interior of the overhead flat box 32 and the docking flat tube 33. The filter sponge 609 here plays the role of filtering the new air and removing the dust in the air. Then the new air inside the overhead flat box 32 and the docking flat tube 33 is sprayed toward the gateway firmware 16 through the heat dissipation blowing hole 35. After that, the new air flows downward from the periphery of the gateway firmware 16 under the action of pressure, and then converges to the air-passing groove 602 from the bottom of the gateway firmware 16. In this process, the new air absorbs the heat generated by the gateway firmware 16 to form hot air, thereby realizing the internal air of the storage box 12 and the external fresh air. The air circulates continuously, and then the timing controller 713 times the airway usage time. When the airway working time reaches the preset value inside the timing controller 713, the timing controller 713 controls the electromagnetic ejection rod 711 to extend, and then the electromagnetic ejection rod 711 applies a rightward thrust to the first right-angled trapezoidal plate 707 through the extended adapter strip 712, and then the first right-angled trapezoidal plate 707 slides to the right with the exhaust movement box 706, and then the exhaust movement box 706 moves the second right-angled trapezoidal plate 707 to the right, and then the second right-angled trapezoidal plate 707 squeezes the locking rebounder 709, and then the locking rebounder 709 releases the second right-angled trapezoidal plate 707, and then the electromagnetic ejection rod 711 shortens and moves to the left with the extended adapter strip 712.Afterwards, the first right-angled trapezoidal plate 707 slides to the left with the exhaust movement frame 706 under the action of the elastic tension of the return spring 708, and then the corresponding exhaust rectangular frame 705 slides from the top surface of the first right-angled trapezoidal plate 707 to the inclined surface and slides downward along this inclined surface, and then the exhaust piston plate 703 moves downward with the exhaust damper 704 under the action of the elastic force of the exhaust spring 702, and then the exhaust damper 704 blocks the air through hole 606 on the left side of the air guide cone shell 603. At the same time, the exhaust movement frame 706 moves to the left with the second right-angled trapezoidal plate 707, and then the inclined surface of the second right-angled trapezoidal plate 707 applies an upward lifting force to the exhaust rectangular frame 705, and then the exhaust The air rectangular frame 705 pulls the exhaust piston plate 703 to move upward, and the exhaust piston plate 703 squeezes the exhaust spring 702. The exhaust spring 702 is elastically compressed, and the elastic potential energy increases. Then the exhaust piston plate 703 moves the exhaust damper plate 704 upward, and then the exhaust damper plate 704 opens the air through hole 606 on the right side of the air guide cone shell 603. At the same time, the exhaust movement box 706 releases the load-bearing short column 811 at its right end, and then the lifting inclined panel 809 moves outward with the movement slide bar 808 and the load-bearing short column 811 under the action of the elastic force of the traction spring 810, and then the lifting pin 805 is released, and then the guide slide bar 804 and the air-conducting tapered plug 803 are moved under the gravity and spring elastic force. The exhaust movement box 706 applies a thrust to the load-bearing short column 811 at its left end, and then the load-bearing short column 811 moves the movement slide bar 808 to the left, and then the movement slide bar 808 moves the lifting inclined panel 809 upward and leftward, and then the lifting inclined panel 809 applies an upward lifting force to the lifting pin 805, and then the lifting pin 805 moves upward with the air-flowing gradually shrinking plug 803 through the guide slide bar 804, and then the air-flowing gradually shrinking hole 802 is opened, and at the same time, the lifting inclined panel 809 pulls the traction spring 810, and then the traction spring 810 elastically stretches, and the elastic potential energy increases, and then The sliding bar 808 moves to the left to the extreme position, and then the exhaust moving box 706 moves to the left to the extreme position, and the corresponding exhaust rectangular box 705 slides to the top surface of the second right-angled trapezoidal plate 707. Then, the hot air inside the storage box 12 enters the corresponding U-shaped buckled cavity 607 through the air passage composed of the wind groove 602 and the wind through hole 606 on the right side of the wind guide cone shell 603 under the drive of the fan blade 605. Then, the hot air passes through the corresponding transfer rectangular cavity 608, the filter sponge 609, and the air passage composed of the wind hole 610 under the action of the pressure difference and is discharged. Then, the dust intercepted on the filter sponge 609 is blown away by the airflow, and then the air pressure inside the storage box 12 is reduced.Then the new air passes through the air hole 610 on the left side of the air guide cone shell 603, the transfer rectangular cavity 608, the filter sponge 609, the U-shaped buckle cavity 607, the air outlet tapered hole 802 on the left end of the air outlet convex body 601, the air outlet box 801, and the air passage composed of the overhead elbow 31 to enter the interior of the overhead flat box 32 and the docking flat tube 33. The filter sponge 609 here plays a role in filtering the new air and removing dust in the air. Then the new air inside the overhead flat box 32 and the docking flat tube 33 is sprayed to the gateway firmware 16 through the heat dissipation blowing hole 35 to achieve the purpose of heat dissipation. Then repeat the above work.

[0045] The above is only a preferred specific implementation manner of the present invention; but the protection scope of the present invention is not limited thereto; any technician familiar with the technical field within the technical scope disclosed by the present invention; any equivalent replacement or change based on the technical solution and improved concept of the present invention shall be covered by the protection scope of the present invention.

Claims

1. A wirelessly controlled smart home gateway, comprising a home gateway (1), characterized in that: The home gateway (1) comprises a mounting wall (11) and a storage box (12); the storage box (12) is fixedly embedded in the interior of the mounting wall (11); the left side of the storage box (12) is flush with the surface of the mounting wall (11); the bottom surface of the storage box (12) is fixedly connected to a home line pipe (13); the left side of the storage box (12) is movably connected to a sealed door body (14); the right side of the sealed door body (14) is fixedly installed with a door lock rebounder (15); the door lock rebounder (15) is fixed to the storage box. On the inner wall of the storage box (12), a gateway firmware (16) is installed inside the storage box (12), and a power socket board (17) is fixedly installed on the right side surface of the inner cavity of the storage box (12). A flattening mechanism (2) is provided on the end of the sealed door body (14), and the flattening mechanism (2) includes a chamfered arc surface (25), and the chamfered arc surface (25) is arranged on the right end of the sealed door body (14). An overhead radiator (3) is provided on the sealed door body (14), and the overhead radiator (3) includes a butt-jointed flat tube (33), and the butt-jointed flat tube (33) is provided on the sealed door body (14). The flat tube (33) is mounted on the top surface of the sealing door body (14); an adapter holder (4) is provided on the top surface of the flat tube (33); the adapter holder (4) comprises an adapter cylinder (401); the adapter cylinder (401) is fixedly connected to the top surface of the flat tube (33); a mounting adapter (5) is provided below the flat tube (33); the mounting adapter (5) comprises a mounting vertical bar (503); the mounting vertical bar (503) is connected to the flat tube (33); and a mounting adapter (5) is provided on the top surface of the sealing door body (14). The wind mechanism (6) comprises a wind passage protrusion (601), the wind passage protrusion (601) is connected to the top surface of the sealing door body (14), and an exhaust mechanism (7) and an air outlet mechanism (8) are provided on the wind passage protrusion (601), the exhaust mechanism (7) comprises an exhaust chamber (701), and the exhaust chamber (701) is opened inside the wind passage protrusion (601), and the air outlet mechanism (8) comprises an air outlet box (801), and the air outlet box (801) is fixedly plugged on the top surface of the wind passage protrusion (601).

2. A wirelessly controlled smart home gateway according to claim 1, characterized in that: The flattening mechanism (2) further comprises a leveling groove (26), the leveling groove (26) being arranged on the surface of the chamfered arc surface (25), the leveling mechanism (2) further comprises a leveling rail (21), the leveling rail (21) being fixedly connected to the bottom surface of the inner cavity of the storage box (12), the left end of the leveling rail (21) being fixedly connected to a leveling joint (22), the leveling joint (22) being slidably plugged into the sealed door body (14), the leveling joint (22) being fixedly plugged with a flip center axis (23), the end of the flip center axis (23) being movably plugged into the inside of the sealed door body (14), the left side surface of the leveling rail (21) being fixedly connected to a leveling stop pin (24), the left end of the leveling stop pin (24) being slidably plugged into the inside of the leveling groove (26).

3. A wirelessly controlled smart home gateway according to claim 1, characterized in that: The overhead radiator (3) further comprises an overhead bent pipe (31), the overhead bent pipe (31) being connected to the top surface of the air box (801), an overhead flat box (32) being slidably sleeved on the other end of the overhead bent pipe (31), the top end of the mounting vertical bar (503) being fixedly connected to the bottom surface of the overhead flat box (32), the end of the docking flat pipe (33) being slidably inserted into the interior of the overhead flat box (32), an opening spring (34) being movably inserted into the interior of the overhead flat box (32), the opening spring (34) being movably sleeved on the outside of the overhead bent pipe (31), one end of the opening spring (34) being fixedly connected to the inner wall of the overhead flat box (32), and the opening spring (34) being movably sleeved on the outside of the overhead bent pipe (31), and the opening spring (34) being fixedly connected to the inner wall of the overhead flat box (32) to open the air. The other end of the spring (34) is fixedly connected to the end surface of the docking flat tube (33). The docking flat tube (33) and the bottom surface of the overhead flat box (32) are both provided with heat dissipation holes (35). The heat dissipation holes (35) on the docking flat tube (33) are matched with the heat dissipation holes (35) on the overhead flat box (32). An elastic isolation block (36) is fixedly connected to the bottom surface of the overhead flat box (32). The bottom end of the elastic isolation block (36) abuts against the top surface of the gateway firmware (16). A bending baffle (37) is fixedly connected to the back surface of the docking flat tube (33). The other end of the bending baffle (37) is fixedly connected to the top surface of the sealing door body (14).

4. A wirelessly controlled smart home gateway according to claim 3, characterized in that: The adapter holder (4) further comprises an adapter rotating rod (402), which is movably plugged into the top surface of the adapter cylinder (401), and a centering convex column (403) is slidably plugged into the bottom surface of the adapter rotating rod (402), and the bottom end of the centering convex column (403) is fixedly connected to the bottom surface of the inner cavity of the adapter cylinder (401), and a spring is provided inside the adapter rotating rod (402), and the spring is used to push out the centering convex column (403), and the outside of the adapter rotating rod (402) is fixedly sleeved with an adapter rotating disk (404), and the surface of the adapter rotating disk (404) is fixedly connected with an adapter ratchet (405) located at its bottom end, and the inner wall of the adapter cylinder (401) is fixedly connected with an engaging spring bar (406), and the engaging spring bar (406) is fixedly connected to the inner wall of the adapter cylinder (401). The other end is unidirectionally meshed with the adapting ratchet (405); a locking pin (407) located above the adapting turntable (404) is fixedly connected on the surface of the adapting rotating rod (402); the locking pin (407) is pressed on the top surface of the inner cavity of the adapting column (401); an adapting wire wheel (408) located above the adapting column (401) is fixedly sleeved on the outside of the adapting rotating rod (402); two adapting leads (409) are wound around the adapting wire wheel (408); the other two ends of the two adapting leads (409) are fixedly connected to an adapting vertical plate (410); the adapting vertical plate (410) is fixedly connected to the top surface of the overhead flat box (32) and is located at its end; an adjusting turntable (411) is fixedly connected to the top of the adapting rotating rod (402).

5. The wireless controlled smart home gateway according to claim 1, characterized in that: The mounting adapter (5) further comprises a mounting adapter strip (501), the mounting adapter strip (501) is provided with a mounting adapter hole (502), a mounting vertical strip (503) is slidably inserted into the mounting adapter hole (502), a mounting ratchet groove (504) is provided on the side of the mounting vertical strip (503), an action conversion cavity (505) is provided in the middle of the mounting adapter strip (501), an action conversion rod (506) is movably inserted into the inner wall of the action conversion cavity (505), an action conversion wire wheel (507) is fixedly sleeved on the outside of the action conversion rod (506), an action conversion lead wire (508) is wound around the outside of the action conversion wire wheel (507), an action conversion chamber (509) is provided on the inside of the mounting adapter strip (501) and is located on one side of the action conversion cavity (505), and the action conversion chamber (509) is provided on the inside of the mounting adapter strip (501), and the action conversion chamber (509) is provided on the inner wall of the action conversion cavity (505). The inner wall of the change chamber (509) is connected to the action conversion piston (511) through the action conversion spring (510), the end of the action conversion lead (508) extends to the inside of the action conversion chamber (509) and is fixedly connected to the side of the action conversion piston (511), the other side of the action conversion piston (511) is fixedly connected to a snap-fit ​​ratchet head (512), the other end of the snap-fit ​​ratchet head (512) extends to the inside of the mounting adapter hole (502) and is unidirectionally meshed with the mounting ratchet groove (504), the end of the action conversion rod (506) extends to the outside of the mounting adapter strip (501) and is fixedly connected to a release ring (513), the right side of the mounting adapter strip (501) is fixedly connected to a bearing cross plate (514), and the bearing cross plate (514) is supported on the bottom surface of the gateway firmware (16).

6. A wirelessly controlled smart home gateway according to any one of claims 1 to 5, characterized in that: The wind passing mechanism (6) further comprises a wind passing groove (602), the wind passing groove (602) being provided on the top surface of the wind passing convex body (601), a wind guide cone shell (603) being fixedly connected to the bottom surface of the inner cavity of the wind passing groove (602), a driving motor (604) being fixedly installed on the bottom surface of the inner cavity of the wind guide cone shell (603), an end of an output shaft on the driving motor (604) extending from the top of the wind guide cone shell (603) and being fixedly sleeved with a driving fan blade (605), a wind passing hole (606) being provided on the inner wall of the wind passing groove (602), and the wind passing mechanism (6) further comprises a U-shaped buckle cavity (607), the U-shaped buckle cavity (607) being opened. The air-through hole (606) is arranged inside the air-through convex body (601), and is connected to the U-shaped buckled cavity (607). A transfer rectangular cavity (608) is provided inside the air-through convex body (601). One end of the transfer rectangular cavity (608) is open. The transfer rectangular cavity (608) is located on the inner side of the U-shaped buckled cavity (607). The interior of the transfer rectangular cavity (608) is filled with a filter sponge (609). Air-through holes (610) are provided on the upper and lower surfaces of the inner cavity of the transfer rectangular cavity (608). A sealed cover plate (611) is movably inserted on the air-through convex body (601), and the sealed cover plate (611) blocks the opening of the transfer rectangular cavity (608).

7. A wirelessly controlled smart home gateway according to claim 6, characterized in that: The exhaust mechanism (7) further comprises an exhaust spring (702), the exhaust spring (702) being located inside the exhaust chamber (701), the top end of the exhaust spring (702) being connected to the top surface of the inner cavity of the exhaust chamber (701), the bottom end of the exhaust spring (702) being fixedly connected to an exhaust piston plate (703), the exhaust piston plate (703) being slidably inserted inside the exhaust chamber (701), the bottom surface of the exhaust piston plate (703) being fixedly connected to an exhaust damper plate (704), the bottom end of the exhaust damper plate (704) The exhaust piston plate (703) is provided with an exhaust rectangular frame (705) which is fixedly connected to the top surface of the exhaust piston plate (703). The top of the exhaust rectangular frame (705) extends from the top surface of the exhaust convex body (601). An exhaust movable frame (706) is slidably inserted into the interior of the exhaust rectangular frame (705). The exhaust movable frame (706) is located on the top surface of the exhaust convex body (601). Two right-angled trapezoidal plates (706) are fixedly connected to the top surface of the exhaust movable frame (706). 07), the right-angled trapezoidal plate (707) is matched with the exhaust rectangular frame (705), a return spring (708) is fixedly connected to the left side of one right-angled trapezoidal plate (707), the other end of the return spring (708) is fixedly connected to the top surface of the wind-passing convex body (601), and a locking rebounder (709) is clamped and connected to the right side of the other right-angled trapezoidal plate (707), and the locking rebounder (709) is fixedly connected to the top surface of the wind-passing convex body (601). The inner side of the exhaust moving frame (706) is provided with a mounting A fixed plate (710) is installed and fixedly connected to the top surface of the wind-passing convex body (601); an electromagnetic ejection rod (711) is fixedly plugged on the installed fixed plate (710); an extension adapter strip (712) is fixedly connected to the right end of the electromagnetic ejection rod (711); the extension adapter strip (712) is adapted to another right-angle trapezoidal plate (707); a timing controller (713) is provided on the inner side of the exhaust movement box (706); and the timing controller (713) is fixedly connected to the top surface of the wind-passing convex body (601).

8. A wirelessly controlled smart home gateway according to claim 7, characterized in that: The air discharge mechanism (8) further comprises an air discharge gradually contracting hole (802), which is arranged on the bottom surface of the inner cavity of the air discharge box (801), and an air discharge gradually contracting plug (803) is movably inserted inside the air discharge gradually contracting hole (802), and a guide slide bar (804) is fixedly connected to the top surface of the air discharge gradually contracting plug (803), and a lifting pin (805) is fixedly connected to the surface of the guide slide bar (804), and a guide short tube (806) located at the top thereof is movably sleeved outside the guide slide bar (804), and the guide short tube (806) is fixedly connected to the top surface of the inner cavity of the air discharge box (801), and a spring is arranged inside the guide short tube (806), and the spring is used to push the guide slide bar (804) out, and the air discharge box (801) is provided with a spring. A guide flat tube (807) is fixedly connected to both left and right side surfaces of the cavity, a movable slide bar (808) is slidably inserted inside the guide flat tube (807), a lifting inclined panel (809) is fixedly connected to the top surface of the movable slide bar (808), the lifting inclined panel (809) is matched with the lifting pin (805), a traction spring (810) is fixedly connected to the right side surface of the lifting inclined panel (809), the right end of the traction spring (810) is fixedly connected to the right side surface of the inner cavity of the air outlet box (801), a load-bearing short column (811) is fixedly connected to the right side surface of the movable slide bar (808), and the other end of the load-bearing short column (811) extends from the right side surface of the air outlet box (801) and is matched with the exhaust movable box (706).