Infrared control CPE wireless router

By setting up an electrical connection between the main control board and the expansion board in the CPE wireless router, and integrating an infrared repeater on the expansion board, the problem of existing CPE wireless routers being unable to remotely control home appliances is solved, enabling convenient operation and network access for infrared devices.

CN223729760UActive Publication Date: 2025-12-26SHENZHEN INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202520131835.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2025-12-26
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

Existing CPE wireless routers cannot send remote control commands via infrared transmitters, causing inconvenience for users when operating home appliances.

Method used

Design an infrared-controlled CPE wireless router. By setting a main control board inside the casing and an expansion board on the base, an electrical connection is achieved by contacting the main control probe and the expansion probe. An infrared repeater is set on the expansion board to realize remote infrared control.

Benefits of technology

It enables remote control of infrared devices, expands the functionality of routers, facilitates user operation, and integrates network access and infrared control.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223729760U_ABST
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Abstract

The utility model belongs to the technical field of wireless routers, and particularly discloses an infrared control CPE wireless router which comprises a machine shell and a base, a main control board is arranged in the machine shell and divides the interior of the machine shell into two heat dissipation cavities, a main control probe is arranged on the main control board, the main control probe penetrates through the machine shell and is exposed out of the bottom of the machine shell, and the base is arranged on the base. An expansion probe is installed at the top of the base, an expansion board is arranged in the base, an infrared transponder is arranged on the expansion board, the expansion probe is in contact with the expansion board, and when the machine shell is placed on the base, the main control probe is in contact with the expansion probe. According to the utility model, the main control board is arranged in the housing, network access and data transmission services are provided, the pedestal is arranged below the housing, the main control board is electrically connected with the expansion board in the pedestal, and the expansion board is provided with the infrared transponder, so that remote infrared control of various infrared devices is realized, and infrared control and network access functions are integrated. And users can use conveniently.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to wireless router technical field, especially relate to an infrared control CPE wireless router. BACKGROUND

[0002] With the rapid progress of information technology and the wide penetration of smart home, CPE (Customer Premises Equipment) wireless router has become an indispensable key component to connect the internal and external network of home or enterprise, and its functional requirements are increasingly diverse.

[0003] The current market CPE wireless router is mainly configured and managed through wired or wireless means, and its core function is limited to providing network access and data transmission services, and has not yet involved in the operation mode with diversity and remote control like household appliances. Especially in some specific application scenarios, such as home theater system or smart home center, users increasingly expect to control the router in a more convenient and intuitive way, and even expect the router to be like an infrared emitter to control other electronic devices. However, the reality is that the existing wireless router does not have this ability, and they cannot send remote control instructions through infrared emitters like televisions, air conditioners and other electronic devices, and the infrared receivers on the controlled devices receive and decode these instructions to perform specific operations, which brings many inconveniences to users.

[0004] Therefore, the inventor is committed to designing a CPE wireless router to solve the above problems. CONTENT OF THE UTILITY MODEL

[0005] The utility model aims at providing an infrared control CPE wireless router, which can not only provide network access and data transmission services, but also realize remote infrared control of various infrared devices, and is convenient for users to use.

[0006] In order to achieve the above purpose, a technical scheme adopted by the utility model is as follows:

[0007] An infrared control CPE wireless router comprises a casing and a base, a main control board for providing network access and data transmission services is arranged in the casing, the main control board separates the inside of the casing into two heat dissipation cavities, a main control probe is arranged on the main control board, the main control probe penetrates through the casing and is exposed at the bottom of the casing, an extension probe corresponding to the main control probe is mounted on the top of the base, an extension board is arranged in the base, an infrared repeater is arranged on the extension board, the extension probe is in contact with the extension board, when the casing is placed on the base, the main control probe is in contact with the extension probe, and the electrical connection between the main control board and the extension board is realized.

[0008] As a kind of improvement of the utility model infrared control CPE wireless router, the height direction of the shell is vertically arranged in the shell, so that two heat dissipation cavities are arranged left and right.

[0009] As a kind of improvement of the utility model infrared control CPE wireless router, the top of the base is provided with a mounting hole, and the extension probe is mounted in the mounting hole and elastically pressed against the extension board at the lower end, when the shell is placed on the base, the lower end of the main control probe is inserted into the mounting hole and elastically pressed against the top of the extension probe.

[0010] As a kind of improvement of the utility model infrared control CPE wireless router, the bottom of the shell is provided with a bottom groove, the top center of the base is protrudingly arranged to form a boss and a step, the step is arranged around the boss in a circle, the boss is located in the bottom groove and forms an annular gap between the inner side wall of the bottom groove.

[0011] As a kind of improvement of the utility model infrared control CPE wireless router, a plurality of lower heat dissipation holes are provided on the inner bottom wall of the bottom groove, all the lower heat dissipation holes are arranged in a circle around the boss, and the lower ends of the two heat dissipation cavities are communicated with the annular gap through all the lower heat dissipation holes.

[0012] As a kind of improvement of the utility model infrared control CPE wireless router, a plurality of guide pieces are arranged around the boss outwardly and dispersedly on the step in a circle, two adjacent guide pieces are arranged in a gap to form a guide channel, and the annular gap is communicated with the outside through the guide channel.

[0013] As a kind of improvement of the utility model infrared control CPE wireless router, the shell comprises a shell body, a bottom cover and two inner supports, the bottom cover is arranged on the bottom of the shell body, the two inner supports are located in the shell body, and the main control board is clamped between the two inner supports.

[0014] As a kind of improvement of the utility model infrared control CPE wireless router, the bottom groove is located at the bottom of the bottom cover, the top of the shell body is provided with a plurality of upper heat dissipation holes, the upper ends of the two heat dissipation cavities are communicated with the outside through all the upper heat dissipation holes, and all the upper heat dissipation holes are arranged in a circle and spaced apart along the edge of the top of the shell body.

[0015] As a kind of improvement of the utility model infrared control CPE wireless router, all the upper heat dissipation holes penetrate the edge of the top of the shell body and form a plurality of top decorative strips at the edge of the top of the shell body.

[0016] As an improvement of the utility model discloses an infrared control CPE wireless router, the front and back of the shell are provided with a plurality of side decorative grooves along its height direction, a plurality of network interfaces and a charging interface on the main control board are exposed to the side decorative groove of the back of the shell, the side decorative groove on the front of the shell is provided with a light guide strip and a key, the main control board is provided with a plurality of LED display lamps at the position corresponding to the light guide strip, and the main control board is provided with a switch at the position corresponding to the key.

[0017] Compared with the prior art, the utility model discloses an infrared control CPE wireless router, which is provided with a main control board in the casing, provides network access and data transmission service, is provided with a base under the casing, contacts the main control probe on the main control board by the extension probe on the base, facilitates the electrical connection of the main control board and the extension board in the base, is provided with an infrared repeater on the extension board, realizes remote infrared control various infrared equipment, integrates infrared control and network access function, expands the function of the router, and is convenient for user to use. ACCREDITED DRAWINGS:

[0018] Figure 1 It is the perspective enlarged view of the infrared control CPE wireless router of the utility model,

[0019] Figure 2 It is another perspective enlarged view of the infrared control CPE wireless router of the utility model,

[0020] Figure 3 It is the sectional view enlarged view of the infrared control CPE wireless router of the utility model,

[0021] Figure 4 It is Figure 3 The enlarged view of A in,

[0022] Figure 5 It is another sectional view enlarged view of the infrared control CPE wireless router of the utility model,

[0023] Figure 6 It is the perspective exploded view of the infrared control CPE wireless router of the utility model,

[0024] Figure 7 It is Figure 6 The enlarged view of B in,

[0025] Figure 8 It is the perspective enlarged view of the bottom cover of the utility model,

[0026] Figure 9 It is the perspective enlarged view of the shell of the utility model,

[0027] Figure 10 It is the perspective exploded enlarged view of the seat body and the extension probe of the utility model,

[0028] Figure 11 is the perspective view of the base, the main control board and the two inner supports of the utility model;

[0029] Figure 12 is the perspective view of the main machine of the utility model;

[0030] Figure 13 is the perspective view of the base of the utility model.

[0031] Illustration:

[0032] 1, shell; 11, light guide strip; 12, button; 13, side decorative groove; 14, top decorative strip; 15, upper heat dissipation hole; 16, top plate; 2, inner support; 21, casing; 22, heat dissipation cavity; 3, main control board; 31, LED display lamp; 32, switch; 33, network interface; 34, main control probe; 35, charging interface; 36, SIM card slot; 4, seat body; 41, guide piece; 42, mounting hole; 43, extension probe; 44, boss; 5, bottom cover; 51, lower heat dissipation hole; 52, jack; 521, bottom groove; 6, bottom shell; 61, foot pad; 7, extension board; 71, base. DETAILED DESCRIPTION

[0033] The embodiment of the utility model will be specifically illustrated below in conjunction with the drawings, the drawings are only for reference and illustration, and do not constitute the limitation of the patent protection scope of the utility model.

[0034] Referring to Figures 1 to 13 , an infrared control CPE wireless router includes a casing 21, a main control board 3, a base 71 and an extension board 7, the main control board 3 is used to provide network access and data transmission service, the main control board 3 is located in the casing 21, the main control board 3 separates the inside of the casing 21 to form two heat dissipation cavities 22, the main control board 3 is provided with a main control probe 34, the main control probe 34 passes through the casing 21 and is exposed at the bottom of the casing 21, the top of the base 71 is provided with an extension probe 43 corresponding to the main control probe 34, the extension board 7 is arranged in the base 71, the extension board 7 is provided with an infrared repeater, the extension probe 43 contacts with the extension board 7, when the casing 21 is placed on the base 71, the main control probe 34 contacts with the extension probe 43, realizing the electrical connection between the main control board 3 and the extension board 7.

[0035] Referring to Figure 3 , Figure 4 , Figure 6 , Figure 10 and Figure 13The base 71 comprises a bottom shell 6 and a seat body 4. The bottom of the seat body 4 is open. The top of the seat body 4 is centrally protruded to form a boss 44 and a step. The top of the boss 44 is penetrated by a plurality of mounting holes 42. The step is annular and arranged around the boss 44. A plurality of guide fins 41 are arranged around the boss 44 outwardly and dispersedly. Two adjacent guide fins 41 are arranged to form a guide channel. The height of the guide fin 41 is lower than that of the boss 44. The bottom shell 6 is arranged on the bottom of the seat body 4. The bottom of the bottom shell 6 is provided with L-shaped foot pads 61 at four corners.

[0036] With reference to Figure 3 , Figure 4 , Figure 10 and Figure 13 The expansion board 7 is horizontally arranged in the base 71. The number of the expansion probes 43 is preferably multiple and arranged above the expansion board 7. All the expansion probes 43 are one-to-one corresponding to the mounting holes 42 and the lower end of each expansion probe 43 is elastically pressed against the expansion board 7, so that all the expansion probes 43 are electrically connected with the expansion board 7.

[0037] With reference to Figure 6 , Figure 7 , Figure 8 , Figure 9 and Figure 12 The shell 21 comprises a shell body 1, a bottom cover 5 and two inner supports 2. The bottom of the shell body 1 is open. The top of the shell body 1 is provided with a plurality of upper heat dissipation holes 15. All the upper heat dissipation holes 15 are arranged in a circle along the top edge of the shell body 1. All the upper heat dissipation holes 15 penetrate the top edge of the shell body 1 and form a plurality of top decorative strips 14 at the top edge of the shell body 1. A top plate 16 is arranged on the top of the shell body 1. All the top decorative strips 14 and all the upper heat dissipation holes 15 are arranged around the top plate 16. The front and back of the shell body 1 are provided with a plurality of side decorative grooves 13 along the height direction. The side decorative grooves 13 on the front of the shell body 1 are provided with a long strip-shaped light guide strip 11 and a circular button 12. The bottom cover 5 is arranged on the bottom of the shell body 1. The bottom of the bottom cover 5 is provided with a bottom groove 521. The inner bottom wall of the bottom groove 521 is provided with a plurality of lower heat dissipation holes 51 and a plurality of jacks 52. All the jacks 52 are coaxially arranged with all the mounting holes 42. The two inner supports 2 are arranged in the shell body 1. Each inner support 2 is U-shaped and the top, bottom and cover surfaces of the side of each inner support 2 are open. The main control board 3 is vertically arranged between the two inner supports 2 along the height direction of the shell 21, so that the two heat dissipation cavities 22 are arranged left and right. The upper ends of the two heat dissipation cavities 22 are communicated with the outside through all the upper heat dissipation holes 15 to dissipate heat from the upper ends of the two heat dissipation cavities 22.

[0038] With reference to Figure 3 , Figure 4 , Figure 5 and Figure 6The side of the main control board 3 is provided with a plurality of network connectors and a charging connector, the network interfaces 33 of the network connectors and the charging interfaces 35 of the charging connectors are exposed to the side decoration groove 13 on the back of the shell 1, the other side of the main control board 3 is provided with a plurality of LED display lamps 31 and a switch 32, the positions of all the LED display lamps 31 correspond to the positions of the light guide strips 11, the position of the switch 32 corresponds to the position of the key 12, the number of the main control probes 34 is a plurality, the lower ends of all the main control probes 34 are fixed to the lower end of the main control board 3, the lower ends of all the main control probes 34 correspondingly pass through all the jack holes 52 and extend into the bottom groove 521,

[0039] When the shell 21 is placed on the base 71, the boss 44 is located in the bottom groove 521 and forms an annular gap between the inner side wall of the bottom groove 521, all the lower heat dissipation holes 51 are arranged in a circle around the boss 44, the lower ends of the two heat dissipation cavities 22 are connected with the annular gap through all the lower heat dissipation holes 51, the annular gap is connected with the outside through the guide channel, and the lower ends of the two heat dissipation cavities 22 are cooled, at the same time, the lower ends of all the main control probes 34 are inserted into the mounting holes 42 one by one and elastically abut against the top of the extension probe 43, so that the main control board 3 is electrically connected with the extension board 7, and the SIM card slot 36 at the lower end of the main control board 3 is exposed to the bottom groove 521.

[0040] In the infrared control CPE wireless router, the shell 21 and the main control board 3 jointly constitute the host of the wireless router, the host can receive wireless signals from a mobile communication network (such as 4G / 5G), and then convert the received wireless signals into Wi-Fi signals, so that other devices can access the network through Wi-Fi. In addition to converting into Wi-Fi signals, the CPE wireless router also supports converting the received signals into wired signals and transmitting them to computers or other wired devices through network cables. The extension board 7 realizes the infrared control function through an infrared repeater, and the infrared repeater usually includes an infrared transmitter, an infrared receiver and a circuit connection between them. Specifically, the working principle of the infrared repeater is to receive infrared signals from other devices (such as remote controllers or smart home hubs), and then convert these signals into electrical signals for processing. The processed electrical signals are converted into infrared signals and emitted by the infrared transmitter, thereby controlling other infrared devices. In this process, the infrared repeater plays the role of a "bridge", enabling different devices to communicate and control through infrared signals.

[0041] The utility model discloses a host computer combines infrared repeater and wireless router to realize the process of function extension involves the receiving, conversion, processing and retransmission of signal multiple steps, and the user can realize remote infrared control function. Even not at home, the user can also control the infrared equipment of home through the terminal such as smart mobile phone remotely. As a part of smart home system, infrared repeater receives the instruction from smart mobile phone or smart home hub, and converts these instructions into infrared signal to control the infrared equipment of home. In addition, infrared repeater can also be linked with other smart devices, realize more complex scene control and automation operation.

[0042] In the infrared control CPE wireless router of the utility model, the host computer can be used as a wireless router alone, when the infrared control function is needed, the user only needs to place the host computer on the base 71, and the host control probe 34 in the bottom groove 521 of the host computer is inserted into the mounting hole 42, so that the host control board 3 and the extension board 7 are electrically connected.

[0043] The above disclosed is only the preferred embodiment of the utility model, and cannot be used to limit the right protection scope of the utility model, so equivalent changes made in the patent application scope of the utility model still belong to the range covered by the utility model.

Claims

1. An infrared controlled CPE wireless router, characterized by, The utility model provides a network access and data transmission service providing device, which comprises a casing and a base, a main control board is arranged in the casing, the main control board divides the inside of the casing into two heat dissipation cavities, a main control probe is arranged on the main control board, the main control probe penetrates through the casing and is exposed on the bottom of the casing, an extension probe corresponding to the main control probe is arranged on the top of the base, an extension board is arranged in the base, an infrared repeater is arranged on the extension board, the extension probe is in contact with the extension board, when the casing is placed on the base, the main control probe is in contact with the extension probe, and the main control board and the extension board are electrically connected.

2. The infrared control CPE wireless router of claim 1, wherein, The main control board is vertically arranged in the casing along the height direction of the casing, so that the two heat dissipation cavities are arranged on the left and right sides.

3. The infrared control CPE wireless router of claim 1, wherein, The top of the base is provided with a mounting hole, the extension probe is mounted in the mounting hole, and the lower end of the extension probe elastically abuts against the extension board, when the casing is placed on the base, the lower end of the main control probe is inserted into the mounting hole and elastically abuts against the top of the extension probe.

4. The infrared control CPE wireless router of claim 1, wherein, The bottom of the casing is provided with a bottom groove, the top center of the base is protruded to form a boss and a step, the step is arranged around the boss to form a circle, the boss is located in the bottom groove and forms an annular gap between the inner side wall of the bottom groove.

5. The infrared control CPE wireless router of claim 4, wherein, A plurality of lower heat dissipation holes are arranged on the inner bottom wall of the bottom groove, all the lower heat dissipation holes are arranged around the boss to form a circle, and the lower ends of the two heat dissipation cavities are communicated with the annular gap through all the lower heat dissipation holes.

6. The infrared control CPE wireless router of claim 5, wherein, A plurality of guide pieces are arranged around the boss outwardly on the step, and adjacent two guide pieces are arranged to form a guide channel, and the annular gap is communicated with the outside through the guide channel.

7. The infrared control CPE wireless router of claim 4, wherein, The casing comprises a shell, a bottom cover and two inner supports, the bottom cover is arranged on the bottom of the shell, the two inner supports are arranged in the shell, and the main control board is arranged between the two inner supports.

8. The infrared control CPE wireless router of claim 7, wherein, The bottom groove is arranged at the bottom of the bottom cover, a plurality of upper heat dissipation holes are arranged on the top of the shell, the upper ends of the two heat dissipation cavities are communicated with the outside through all the upper heat dissipation holes, and all the upper heat dissipation holes are arranged around the edge of the top of the shell to form a circle.

9. The infrared control CPE wireless router of claim 8, wherein, All the upper heat dissipation holes penetrate through the edge of the top of the shell and form a plurality of top decorative strips on the edge of the top of the shell.

10. The infrared control CPE wireless router of claim 8, wherein, A plurality of side decorative grooves are arranged on the front and back of the shell along the height direction, a plurality of network interfaces and a charging interface on the main control board are exposed in the side decorative grooves on the back of the shell, a light guide strip and a key are arranged on the side decorative grooves on the front of the shell, a plurality of LED display lamps are arranged on the main control board corresponding to the position of the light guide strip, and a switch is arranged on the main control board corresponding to the position of the key.