Embedded smart home wireless gateway

By using an embedded housing design and an adjustable signal reflector, the problem of signal instability and mismatch with home decor caused by collisions in the smart home wireless gateway is solved, thereby enhancing signal coverage and ensuring stable operation of the device.

CN121239986AInactive Publication Date: 2025-12-30NANJING XINYINGDA ELECTRONIC TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202511488373.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-17
Publication Date
2025-12-30
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing smart home wireless gateways are mounted on walls using bolts and triangular brackets, making them susceptible to collision interference, which affects signal stability and normal device operation, and also clashes with interior decoration.

Method used

The gateway adopts an embedded housing design, embedding the main structure inside the wall. The angle and direction of the signal reflector can be adjusted by an adjustable signal reflector to enhance signal coverage. The mechanical structure is used to adjust the angle and direction of the signal reflector to enhance signal coverage.

Benefits of technology

It ensures the stability of the wireless gateway signal and the normal operation of the device in the home environment, avoids collision interference, and coordinates with the interior decoration style.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of wireless gateways, in particular to an embedded smart home wireless gateway which comprises a wireless gateway outer shell, an embedded inner shell is arranged in the wireless gateway outer shell, and embedded mounting columns are uniformly distributed on the outer side surface of the wireless gateway outer shell. The wireless gateway has the beneficial effects that the wireless gateway outer shell and the embedded shell assembly embedded in the inner shell are designed, the wireless gateway outer shell is embedded in the wall preformed groove, the shell back plate is in contact with the wall for heat dissipation, and the movable ejection block embedded in the mounting column is adjusted to abut against the wall tightly; the wireless gateway outer shell is adjusted and installed in a self-adaptive mode, wireless signals sent by the communication module antenna are reflected in a reinforced mode by installing the signal reinforcing reflecting plate above the embedded inner shell, and a user can adjust the angle and the direction of the reflecting plate according to the intelligent home layout and the building structure in a room. And the coverage intensity of the signal in a specific area is enhanced.
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Description

Technical Field

[0001] This invention belongs to the field of wireless gateway technology, and specifically relates to an embedded smart home wireless gateway. Background Technology

[0002] Smart home technology uses the residence as a platform, integrating facilities related to home life through comprehensive cabling, network communication, security, automatic control, and audio-visual technologies. This creates an efficient management system for residential facilities and smart homes, enhancing home security, convenience, comfort, and aesthetics. With the rapid development of modern computer science and network communication technologies, while continuously improving the construction level of home living environments and application facilities, we are also gradually increasing our attention to the construction status of home application network technology equipment systems. Therefore, the smart home wireless gateway is a crucial component. It is the core hub responsible for connecting the home's internal wireless sensor network (such as Wi-Fi) with external networks (such as Ethernet), handling protocol conversion, data aggregation, and remote control of the smart home. Existing smart gateways have certain drawbacks. Traditional gateways use an integrated structure, placed directly on the desktop, resulting in messy wiring connections that are easily affected by external factors. For example, the wiring can be pulled during gateway movement, causing connection problems and causing inconvenience in daily use.

[0003] A Chinese patent document with publication number CN216057330U proposes an easy-to-install embedded wireless smart home gateway. It solves the aforementioned technical problem by setting up a support plate, positioning plate, L-shaped positioning plate, first load-bearing beam, second load-bearing beam, and column. The right-angled triangular structure composed of these components has stability, allowing the gateway to be stably installed on the wall. However, in the above method, the gateway is fixed to the wall by bolts and triangular structure brackets, which is easily subject to physical collisions when people pass by. Especially in the home environment, various electrical appliances and people are frequently active, and collision interference will affect the stability of the signal and the normal operation of the equipment. In addition, direct installation on the wall is inconsistent with the interior decoration style.

[0004] Therefore, this invention proposes an embedded smart home wireless gateway to solve the problem that existing technologies using bolts and triangular brackets to install smart gateways cause bumps and knocks when family members pass through the installation area, leading to collision interference that affects signal stability and normal device operation. The invention improves the smart gateway's installation structure by using an embedded housing design to embed the main gateway structure inside the wall. Furthermore, an adjustable signal reflector is added to the gateway housing design. Through mechanical adjustments, users can adjust the angle and direction of the reflector according to the room layout and building structure, enhancing signal coverage in specific areas. Summary of the Invention

[0005] In view of the shortcomings of the existing technology, the purpose of this invention is to provide an embedded smart home wireless gateway to solve the problems mentioned in the background technology.

[0006] To achieve the above objectives, the present invention provides the following technical solution: an embedded smart home wireless gateway, comprising a wireless gateway housing, an embedded inner housing inside the wireless gateway housing, embedded mounting posts evenly distributed on the outer surface of the wireless gateway housing, a middle shell plate on one side of the embedded inner housing, a back shell plate on the other side of the embedded inner housing, and a front shell plate on one side of the middle shell plate.

[0007] Preferably, a mounting bracket is welded to one side surface of the embedded inner shell, a main control module is fixedly mounted in the middle of the mounting bracket, a power connection module and an Ethernet connection module are fixedly mounted on both sides of the mounting bracket respectively, a communication module is fixedly mounted on the top of the mounting bracket, and a control panel module is fixedly mounted on the bottom of the mounting bracket.

[0008] Preferably, an adjustment frame is rotatably mounted on the upper center of the embedded inner shell, a signal enhancement reflector is rotatably mounted on the inner side of the adjustment frame, and a microcrystalline ceramic protective plate is fixedly mounted on one side of the signal enhancement reflector.

[0009] Preferably, the middle shell plate is fixedly installed on the front side of the wireless gateway housing by bolts, the back shell plate is fixedly installed on the rear side of the wireless gateway housing, and heat sinks are evenly distributed in the middle of the back shell plate, with the side surface of the heat sinks in contact with the side surface of the inner shell.

[0010] Preferably, the inner side of the wireless gateway housing is symmetrically provided with heat dissipation grooves, the outer surface of the embedded inner housing is symmetrically provided with pulleys adapted to the heat dissipation grooves, the left and right sides of the embedded inner housing are symmetrically provided with baffles adapted to the heat dissipation grooves, the outer shell plate is fixedly installed on the front side of the middle shell plate by bolts, the side surface of the outer shell plate is in contact with the side surface of the mounting bracket, and a signal adjustment groove is provided on the top of the outer shell plate.

[0011] Preferably, a push-out spring sleeve is symmetrically fixedly installed on the side surface of the outer shell back plate near the embedded inner shell, and one end of the slide rod of the push-out spring sleeve is engaged with the inner side of the baffle embedded in the inner shell.

[0012] Preferably, heat dissipation protrusions are symmetrically fixedly installed on the upper and lower sides of the middle shell plate, the positions of the heat dissipation protrusions correspond to the positions of the heat dissipation grooves, and a decorative protective ring is fixedly installed on the outer surface of the middle shell plate.

[0013] Preferably, eight sets of the embedded mounting columns are symmetrically arranged. The bottom of the embedded mounting columns penetrates the side wall of the back plate of the outer shell. A movable ejector block is slidably installed inside the embedded mounting column, and an adjustment groove is provided on one side of the movable ejector block.

[0014] Preferably, an adjusting sleeve rod is provided on one side of the adjusting groove. The adjusting sleeve rod is slidably installed on the inner side wall of the embedded mounting column. A slanted push block adapted to the adjusting groove is rotatably installed at one end of the adjusting sleeve rod. An adjusting threaded rod is rotatably installed on the side wall of the middle shell plate. The inner surface of the adjusting sleeve rod is provided with a thread adapted to the adjusting threaded rod.

[0015] Preferably, the outer surface of the movable ejector block is uniformly distributed with anti-slip protrusions, and the sidewall of the movable ejector block is uniformly provided with heat dissipation holes.

[0016] Compared with the prior art, the beneficial effects of the present invention are: By designing a wireless gateway outer shell and an embedded inner shell assembly, the wireless gateway outer shell is embedded in a pre-reserved groove in the wall. Heat dissipation occurs through contact between the outer shell's back panel and the wall. Adjusting the movable ejector block inside the embedded mounting column ensures a tight seal against the wall, allowing for adaptive installation. The movable ejector block also forms an external heat dissipation channel between the wall and the outer shell, intermittently dissipating heat from within the outer shell. The middle shell and outer shell work together to limit the embedded inner shell, concealing it within the outer shell. Removing the outer shell allows the embedded inner shell to automatically pop out for easy maintenance. The outer shell also features a pre-reserved signal adjustment slot, and a signal enhancement reflector is installed above the embedded inner shell to amplify the wireless signal emitted by the communication module's antenna. Users can adjust the angle and direction of the reflector according to the smart home layout and building structure to enhance signal coverage in specific areas. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of one side of the overall structure of the present invention; Figure 3 This is a schematic diagram of the overall rear structure of the present invention; Figure 4 This is a schematic diagram of the comparative structure after adjustment in the up, down, left, and right directions according to the present invention; Figure 5 This is a schematic diagram of the overall structure of the cover shell after disassembly of the present invention; Figure 6 This is a schematic diagram of the adjusted embedded mounting column structure of the present invention; Figure 7This is a schematic diagram of the structure of the middle shell plate after disassembly according to the present invention; Figure 8 This is a schematic diagram of the structure on the other side after the middle shell plate of the present invention has been disassembled; Figure 9 This is a schematic diagram of the structure of the embedded inner shell of the present invention after it has been completely disassembled; Figure 10 This is a schematic diagram of the overall structure of the embedded inner shell of the present invention; Figure 11 This is a schematic diagram of the internal structure of the wireless gateway housing of the present invention; Figure 12 For the present invention Figure 11 Enlarged structural diagram at point A in the middle.

[0018] In the diagram: 1. Wireless gateway housing; 11. Heat dissipation slot; 2. Housing back plate; 21. Heat sink; 22. Spring extension rod; 3. Embedded mounting post; 31. Movable ejector block; 311. Adjustment groove; 32. Adjustment rod; 321. Angled push block; 4. Middle shell plate; 41. Decorative protective ring; 42. Heat dissipation convex tube; 43. Mounting adjustment threaded rod; 5. Outer shell plate; 51. Signal adjustment groove; 6. Embedded inner shell; 61. Mounting bracket; 611. Main control module; 612. Power connection module; 613. Ethernet connection module; 614. Communication module; 615. Control panel module; 62. Adjustment bracket; 63. Signal enhancement reflector; 64. Microcrystalline ceramic protective plate. Detailed Implementation

[0019] To make the objectives, technical solutions, and advantages of the present invention clear and complete, the embodiments of the present invention will be further described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only some, not all, embodiments of the present invention, and are merely illustrative of the embodiments of the present invention. They are not intended to limit the embodiments of the present invention. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0020] Example 1 Please see Figures 4 to 6This invention provides a technical solution: an embedded smart home wireless gateway, including a wireless gateway housing 1, with an embedded inner housing 6 inside the housing 1. A mounting bracket 61 is welded to one side of the embedded inner housing 6, allowing the inner housing 6 to slide inside the housing 1. The mounting bracket 61 is mainly used to install various modules. A main control module 611 is fixedly installed in the middle of the mounting bracket 61, a power connection module 612 and an Ethernet connection module 613 are fixedly installed on both sides of the mounting bracket 61, a communication module 614 is fixedly installed on the top of the mounting bracket 61, and a control panel module 615 is fixedly installed on the bottom of the mounting bracket 61. The main control module 611 mainly runs the protocol stack and performs logic judgments through a processor MCU / MPU, connecting and controlling other modules, and storing data in a memory. Real-time data, firmware, and configuration; Communication module 614 mainly sends data to the cloud via the Wi-Fi module and outputs control signals to smart home devices. It receives commands from subordinate sensors via the ZigBee wireless network. Specifically, in the uplink wireless communication channel, the Wi-Fi module encapsulates local data such as ZigBee or Bluetooth into MQTT / HTTPS packets, which are then transmitted through the home router to the internet and then to the cloud. In the downlink wireless communication channel, the cloud sends commands via MQTT, which are then transmitted through the Wi-Fi module to the gateway main control module, converted into ZigBee and other protocols, and wirelessly transmitted via the antenna. The smart home devices will respond immediately. Ethernet connection module 613 mainly provides a wired path for the local network. Power connection module 612 connects to the power supply. Control panel module 615 mainly includes LED indicators, buttons, and OLED displays. The screen displays the status of the wireless gateway in real time, enabling interactive functionality. An adjustment frame 62 is rotatably mounted on the upper center of the inner housing 6. A signal enhancement reflector 63 is rotatably mounted on the inner side of the adjustment frame 62. A microcrystalline ceramic protective plate 64 is fixedly mounted on one side of the signal enhancement reflector 63. In this embodiment, the adjustment frame 62 is rotatably mounted on a horizontal plate in the upper center of the inner housing 6. A micro motor is fixedly mounted on the horizontal plate to drive the adjustment frame 62 to rotate horizontally. The signal enhancement reflector 63 is rotatably mounted on the inner side of the adjustment frame 62 and is located on the back of the wireless signal transmitting antenna of the communication module 614. A micro motor is located on the outer side of the adjustment frame 62 to drive the signal enhancement reflector 63 to tilt up and down. The microcrystalline ceramic protective plate 64 mainly serves to limit the antenna of the communication module 614 to one side of the signal enhancement reflector 63. The microcrystalline ceramic protective plate 64 uses microcrystalline ceramic, which has no shielding or obstruction effect on the signal and will not affect the signal strength. The signal enhancement reflector 63 is a thin metal plate that reflects the energy on the side of the signal divergence back, forming the main lobe only on the side of the microcrystalline ceramic protective plate 64.The user is focused on signal enhancement. Its main working principle is as follows: when the signal enhancement reflector 63 is installed parallel to the antenna, its angle is adjusted. This is achieved through interaction with the control panel module 615, inputting adjustment commands to cause either micro-motor one or micro-motor two to make the signal enhancement reflector 63 "pitch" or "horizontally deflect" around the antenna. This sweeps the main lobe direction to different areas. The pitch adjustment angle range is set to -30° to +30°, and the horizontal adjustment angle range is set to -45° to +45°. This allows users to adjust the angle of the signal enhancement reflector 63 according to the smart home layout and building structure, enhancing signal coverage in specific areas and improving the wireless gateway's control over smart home devices.

[0021] Example 2 Please see Figures 8 to 12 Based on Embodiment 1, in order to facilitate the installation of the smart wireless gateway, this embodiment further proposes that the outer surface of the wireless gateway housing 1 is evenly distributed with embedded mounting posts 3, and eight sets of embedded mounting posts 3 are symmetrically arranged. The bottom of the embedded mounting posts 3 penetrates the side wall of the back plate 2 of the housing. A movable ejector block 31 is slidably installed inside the embedded mounting post 3. An adjustment groove 311 is provided on one side of the movable ejector block 31, and an adjustment sleeve rod 32 is provided on one side of the adjustment groove 311. The adjustment sleeve rod 32 is slidably installed on the inner side wall of the embedded mounting post 3. A slanted push block 321 adapted to the adjustment groove 311 is rotatably installed at one end of the adjustment sleeve rod 32. An installation adjustment thread rod 43 is rotatably installed on the side wall of the middle shell plate 4. The inner surface of the adjustment sleeve rod 32 is provided with a thread adapted to the installation adjustment thread rod 43. Anti-slip protrusions are evenly distributed on the outer surface of the movable ejector block 31, and heat dissipation holes are evenly opened on the side wall of the movable ejector block 31. In this embodiment, firstly, a gateway embedding installation slot slightly larger than the size of the wireless gateway housing 1 needs to be reserved on the wall. In the initial state, the movable ejector block 31 is inside the embedding installation post 3 and flush with the embedding installation post 3, and the adjusting sleeve 32 is in the extended state. Then, the entire wireless gateway housing 1 is installed into the installation slot, and the cover plate 5 is removed. Using a screwdriver, the installation adjusting thread rod 43 is rotated. When the installation adjusting thread rod 43 is rotated, the adjusting sleeve 32 will move inward under the limit of the embedding installation post 3. At this time, the inclined push block 321 will move along the side of the movable ejector block 31. The adjustable groove 311 slides, pushing out the movable ejector block 31 until the anti-slip protrusion on the movable ejector block 31 is in close contact with the inner side of the wall, realizing the self-adaptive fixed installation of the wireless gateway housing 1. At this time, the heat dissipation holes on the side of the movable ejector block 31 are exposed, forming an external heat dissipation channel between the wall and the wireless gateway housing 1. The heat generated inside the wireless gateway housing 1 due to the operation of the components is intermittently dissipated through the wall. That is, by adjusting the movable ejector block 31 and the embedded mounting column 3, not only can the wireless gateway housing 1 be conveniently installed, but a heat dissipation channel can also be established.

[0022] Example 3 Please see Figures 5 to 8 Based on Embodiment 2, to facilitate easy removal and maintenance after the embedded inner shell 6 is installed, this embodiment further proposes that a middle shell plate 4 be provided on one side of the embedded inner shell 6, and an outer shell back plate 2 be provided on the other side of the embedded inner shell 6. A front shell plate 5 is provided on one side of the middle shell plate 4. The middle shell plate 4 is fixedly installed on the front side of the wireless gateway outer shell 1 by bolts, and the outer shell back plate 2 is fixedly installed on the rear side of the wireless gateway outer shell 1. Heat sinks 21 are evenly distributed in the middle of the outer shell back plate 2, and the side surfaces of the heat sinks 21 are in contact with the side surfaces of the embedded inner shell 6. Heat dissipation grooves 11 are symmetrically arranged on the inner side of the wireless gateway outer shell 1, and heat dissipation grooves 11 are symmetrically installed on the outer surface of the embedded inner shell 6. A pulley is adapted to the inner shell 6. Baffles adapted to the heat dissipation groove 11 are symmetrically installed on the left and right sides of the inner shell 6. The outer shell 5 is fixedly installed on the front side of the middle shell 4 by bolts. The side surface of the outer shell 5 is in contact with the side surface of the mounting bracket 61. A signal adjustment groove 51 is opened on the top of the outer shell 5. A push-out spring sleeve 22 is symmetrically fixedly installed on the side surface of the outer shell back plate 2 near the inner shell 6. One end of the slide rod of the push-out spring sleeve 22 is engaged with the inner side of the baffle of the inner shell 6. Heat dissipation protrusions 42 are symmetrically fixedly installed on the upper and lower sides of the middle shell 4. The position of the heat dissipation protrusions 42 corresponds to the position of the heat dissipation groove 11. A decorative protective ring 41 is fixedly installed on the outer surface of the middle shell 4. In this embodiment, four sets of heat dissipation slots 11 are symmetrically arranged vertically. In the initial state, the middle shell plate 4 is fixedly installed on the front end of the wireless gateway outer shell 1 by bolts. At this time, the upper and lower sets of heat dissipation slots 11 correspond to the heat dissipation protrusions 42 respectively, forming an internal heat dissipation channel. The decorative protective ring 41 not only seals the gap between the wall and the wireless gateway outer shell 1 for decoration, but also has a slanted groove to facilitate heat dissipation through the wall gap. The embedded inner shell 6 is slidably installed inside the wireless gateway outer shell 1 by pulleys. The outer shell back plate 2 contacts the back of the embedded inner shell 6 through the heat dissipation fins 21, which also serves to dissipate heat. The back of the outer shell back plate 2 can also be fitted with short metal columns. The grounding function extends the spring sleeve 22 to contact the baffles on the left and right sides of the embedded inner housing 6. When the cover shell 5 is removed, it pushes the embedded inner housing 6 to pop out and slide to the front end of the wireless gateway outer shell 1, facilitating the maintenance of internal components. After the cover shell 5 is installed and fixed, the cover shell 5 limits the embedded inner housing 6 and the mounting bracket 61, so that the embedded inner housing 6 is completely embedded inside the wireless gateway outer shell 1, achieving a fully embedded installation. Even in a home environment, people walking back and forth will not cause collisions and affect the use of the wireless smart gateway. Furthermore, through the reasonable layout of each component, the connection ports are tilted at 30° on both sides of the cover shell 5, which facilitates the connection of lines.

[0023] Example 4 Please see Figures 1 to 12 Based on Embodiment 3, this embodiment also proposes a method for using an embedded smart home wireless gateway, including the following steps: Step 1: Installation. First, a mounting slot slightly larger than the wireless gateway housing 1 needs to be reserved on the wall. Then, the entire wireless gateway housing 1 is installed into the mounting slot, and the cover plate 5 is removed. Using a screwdriver, the installation adjustment thread rod 43 is rotated. When the installation adjustment thread rod 43 is rotated, the adjustment sleeve rod 32 will move into the movable ejector block 31 under the limit of the embedded mounting post 3. At this time, the inclined push block 321 will slide along the adjustment inclined groove 311 on the side of the movable ejector block 31, pushing the movable ejector block 31 out until the anti-slip protrusion on the movable ejector block 31 is in close contact with the inner side of the wall, realizing the self-adaptive fixed installation of the wireless gateway housing 1. Finally, the cover plate 5 is reinstalled so that the embedded inner housing 6 is entirely inside the wireless gateway housing 1. Step two: Connect the lines for use. After ensuring the power connection module 612 is stable, connect the communication module via the mobile cloud to ensure smooth uplink and downlink wireless communication channels. Finally, send commands to the cloud via the mobile phone. The cloud sends commands via MQTT to the gateway main control module through the Wi-Fi module, which converts them into ZigBee and other protocols and transmits them wirelessly via the antenna. The smart home will respond immediately, realizing wireless control of the smart home. Step 3: Signal enhancement adjustment. By adjusting the pitch or horizontal deflection of the signal enhancement reflector 63, the main lobe of the wireless signal can be swept to different areas. Users can adjust the angle and direction of the signal enhancement reflector 63 according to the smart home layout and building structure of the room to enhance the signal coverage in specific areas and strengthen the control effect of the wireless gateway on the smart home.

[0024] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An embedded smart home wireless gateway comprising a wireless gateway outer housing (1), characterized in that: The inside of the wireless gateway shell body (1) is provided with an embedded inner shell (6), the outer surface of the wireless gateway shell body (1) is uniformly distributed with embedded installation columns (3), one side of the embedded inner shell (6) is provided with a middle shell plate (4), the other side of the embedded inner shell (6) is provided with an outer shell back plate (2), one side of the middle shell plate (4) is provided with a cover shell plate (5).

2. The embedded smart home wireless gateway of claim 1, wherein: The side surface of the embedded inner shell (6) is welded with a mounting frame (61), the middle part of the mounting frame (61) is fixedly installed with a main control module (611), the two sides of the mounting frame (61) are respectively fixedly installed with a power supply connection module (612) and an Ethernet connection module (613), the top of the mounting frame (61) is fixedly installed with a communication module (614), and the bottom of the mounting frame (61) is fixedly installed with a control panel module (615).

3. The embedded smart home wireless gateway of claim 1, wherein: The upper middle part of the embedded inner shell (6) is rotatably installed with an adjusting frame (62), the inner side of the adjusting frame (62) is rotatably installed with a signal strengthening reflection plate (63), and one side of the signal strengthening reflection plate (63) is fixedly installed with a microcrystalline ceramic protection plate (64).

4. The embedded smart home wireless gateway of claim 1, wherein: The middle shell plate (4) is fixedly installed on the front side of the wireless gateway shell body (1) through bolts, the outer shell back plate (2) is fixedly installed on the rear side of the wireless gateway shell body (1), the middle part of the outer shell back plate (2) is uniformly distributed with heat dissipation fins (21), and the side surface of the heat dissipation fin (21) is in contact with the side surface of the embedded inner shell (6).

5. The embedded smart home wireless gateway of claim 1, wherein: The inner side of the wireless gateway shell body (1) is symmetrically provided with a heat dissipation groove (11), the outer side surface of the embedded inner shell (6) is symmetrically installed with a pulley matched with the heat dissipation groove (11) upward and downward, and the left and right sides of the embedded inner shell (6) are symmetrically installed with a baffle matched with the heat dissipation groove (11). The front side of the middle shell plate (4) is fixedly installed with the cover shell plate (5) through bolts, the side surface of the cover shell plate (5) is in contact with the side surface of the mounting frame (61), and the upper side of the cover shell plate (5) is provided with a signal adjusting groove (51).

6. The embedded smart home wireless gateway of claim 1, wherein: The outer shell back plate (2) is symmetrically fixedly installed with a push spring sleeve rod (22) on the side surface close to the embedded inner shell (6), and one end of the sliding rod of the push spring sleeve rod (22) is clamped with the inner side of the baffle of the embedded inner shell (6).

7. The embedded smart home wireless gateway of claim 1, wherein: The upper and lower sides of the middle shell plate (4) are symmetrically fixedly installed with heat dissipation convex pipes (42), the positions of the heat dissipation convex pipes (42) correspond to the positions of the heat dissipation grooves (11), and the outer side surface of the middle shell plate (4) is fixedly installed with a decorative protection ring (41).

8. The embedded smart home wireless gateway of claim 1, wherein: Eight groups of the embedded installation columns (3) are symmetrically arranged, the bottoms of the embedded installation columns (3) penetrate the side walls of the outer shell back plate (2), and the embedded installation columns (3) are slidably installed with movable ejection blocks (31), and one side of the movable ejection block (31) is provided with an adjusting inclined groove (311).

9. The embedded smart home wireless gateway of claim 8, wherein: One side of the adjusting chute (311) is provided with an adjusting sleeve rod (32), the adjusting sleeve rod (32) is slidingly installed on the inner side wall of the embedded installation column (3), one end of the adjusting sleeve rod (32) is rotatably installed with a slanted pushing block (321) matched with the adjusting chute (311), a mounting adjusting screw rod (43) is rotatably installed on the side wall of the middle shell plate (4), and the inner surface of the adjusting sleeve rod (32) is provided with threads matched with the mounting adjusting screw rod (43).

10. The embedded smart home wireless gateway of claim 8, wherein: The outer side surface of the movable ejection block (31) is uniformly provided with anti-skid protrusions, and the side wall of the movable ejection block (31) is uniformly provided with heat dissipation holes.

Citation Information

Patent Citations

  • Embedded wireless smart home gateway convenient to install

    CN216057330U