Wireless smart infrared repeater
Patent Information
- Application Number
- CN202522066403.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-25
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-09-25
AI Technical Summary
[0002]目前市场上的智能无线通讯的红外控制器普遍体积较大,不便于隐藏,且酒店客房对此比较介意,故急需研发一种既能满足智能无线通讯,又能同时控制电视机、空调,且方便隐藏的控制器
[0007]采用上述技术方案后,本体外壳贴在使用者不易接触位置满足隐藏布置功能,外置红外发射头靠近被控产品的对应位置或者被控产品的红外接接收头的位置进行粘贴放置,其根据房间内电器安装进行红外发射头布置,满足不同布局房间的电器控制需求。
Smart Images

Figure CN224816774U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of wireless control, specifically to a wireless intelligent infrared repeater. Background Technology
[0002] Currently, most infrared controllers for intelligent wireless communication on the market are bulky and difficult to hide, which is a concern for hotel rooms. Therefore, there is an urgent need to develop a controller that can not only meet the requirements of intelligent wireless communication but also control televisions and air conditioners simultaneously, and is easy to hide.
[0003] Existing intelligent wireless communication infrared controllers are small cubes, typically around 55mm*55mm*15mm in size. These products have adhesive backing, and the infrared transmitters are mounted on three sides of the main body, internally integrated into the product. During use, the product is attached below the television, ensuring it doesn't protrude beyond the television's edge. This allows the product to control both the television and the air conditioning panel in hotel rooms. However, in practical applications, due to the variety of hotel room types, if the air conditioning panel and television are installed on the same wall, the existing infrared transponder, attached below the television, cannot control the air conditioning panel on the same plane. Therefore, there is an urgent need to improve the existing infrared transponder to meet the needs of televisions and air conditioners installed on the same wall. Utility Model Content
[0004] To address the aforementioned issues, this invention provides a wireless intelligent infrared repeater, which arranges infrared transmitters according to the electrical appliances installed in the room, thus meeting the electrical appliance control needs of rooms with different layouts.
[0005] A wireless intelligent infrared repeater, characterized in that it comprises: Body shell; The PCB board includes a USB power supply port, a power processing module, a wireless communication module, and an infrared processing module. And at least two infrared emitters; The PCB board is built into the inner cavity of the main body shell. The main body shell is provided with a plug interface corresponding to the position of the USB power supply port. At least one infrared transmitter is externally placed outside the main body shell to form an external infrared transmitter. The external infrared transmitter is connected to the infrared processing module inside the main body shell through a connecting cable.
[0006] Its further features are: All infrared emitters are externally mounted on the outer shell of the main body and are all external infrared emitters. Each group of infrared emitters is connected to the corresponding interface of the infrared processing module inside the outer shell of the main body via a connecting cable. All infrared emitters include at least one external infrared emitter located outside the main body housing and at least one internal infrared emitter located inside the main body housing. All internal infrared emitters are arranged at different side wall positions of the main body housing. All external infrared emitters are connected to the corresponding interface of the infrared processing module inside the main body housing via independent connecting lines. The length of the connecting cable corresponding to the external infrared transmitter is set according to the distance between the preset position of the infrared transmitter and the installation position of the main body shell; The main body shell includes an upper cover and a lower base. The PCB board is fixedly installed in the inner cavity of the main body shell. The infrared processing module of the PCB is provided with several emission ports. One end of the connecting cable is provided with a corresponding mounting plug. The other end of the connecting cable is inserted with an infrared transmitter. The mounting plug is inserted into the corresponding emission port. At least one side wall of the assembled upper cover and lower base is provided with a connecting cable through hole. The connecting cable body is set through the connecting cable through hole, which makes it convenient to replace the connecting cable after opening the upper cover. Different lengths of connecting cables can be quickly replaced to adapt to the installation of external infrared transmitters in different positions. It also includes an adapter, which is plugged into the USB power port via a cable.
[0007] After adopting the above technical solution, the outer shell of the main body is attached to a position that is not easily accessible to the user to achieve the function of hidden arrangement. The external infrared transmitter is attached and placed close to the corresponding position of the controlled product or the position of the infrared receiver of the controlled product. The infrared transmitter is arranged according to the electrical appliances installed in the room to meet the electrical control needs of different room layouts. Attached Figure Description
[0008] Figure 1 This is a structural layout diagram of a specific embodiment of the present utility model; Figure 2 This is a structural layout diagram of a specific embodiment two of the present utility model; Detailed Implementation Wireless intelligent infrared repeater, see Figures 1-2 It includes a main body shell, a PCB board, and at least two infrared transmitters; the PCB board includes a USB power supply port, a power processing module, a wireless communication module, and an infrared processing module; The PCB board is built into the inner cavity of the main body shell. The main body shell has a plug interface corresponding to the position of the USB power port. At least one infrared transmitter is externally placed outside the main body shell to form an external infrared transmitter. The external infrared transmitter is connected to the infrared processing module inside the main body shell through a connecting cable.
[0009] Specific Implementation Example 1, see Figure 1All infrared transmitters are externally mounted on the main body shell and are specifically designated as a first external infrared transmitter and a second external infrared transmitter. Each set of infrared transmitters is connected to the corresponding interface of the infrared processing module inside the main body shell via a connecting cable.
[0010] See Specific Implementation Example 2 Figure 2 The infrared transmitter includes two external infrared transmitters located outside the main body shell and one internal infrared transmitter located inside the main body shell. The two external infrared transmitters are specifically a first external infrared transmitter and a second external infrared transmitter. The internal infrared transmitter is arranged corresponding to the side wall position of the main body shell. Both external infrared transmitters are connected to the corresponding interface of the infrared processing module inside the main body shell through independent connecting lines.
[0011] In practice, the length of the connecting line corresponding to the external infrared transmitter is set according to the distance between the preset position of the infrared transmitter and the installation position of the main body shell.
[0012] In practice, the main body shell includes an upper cover and a lower base. The PCB board is fixed in the inner cavity of the main body shell. The infrared processing module of the PCB is provided with a corresponding number of emission ports. One end of the connecting cable is provided with a corresponding installation plug, and the other end of the connecting cable is inserted into the infrared transmitter. The installation plug is inserted into the corresponding emission port. At least one side wall of the assembled upper cover and lower base is provided with a connecting cable through hole. The connecting cable body is set through the connecting cable through hole, which makes it convenient to replace the connecting cable after opening the upper cover. Connecting cables of different lengths can be quickly replaced to adapt to the installation of external infrared transmitters in different positions.
[0013] In a specific embodiment, an adapter is also included, which is plugged into the USB power port via a wire.
[0014] How to use the wireless intelligent infrared repeater: Lead the external infrared transmitter out of the main body shell through the connecting cable. The external infrared transmitter has self-adhesive backing, which makes it easy to stick and fix the infrared transmitter. The main body shell is attached to a place that is not easily accessible to the user to achieve the function of hidden placement. The external infrared transmitter is attached to the corresponding position of the controlled product or the infrared receiver of the controlled product.
[0015] In practice: hard-to-reach locations include the back of the TV, the bottom of the TV, the sides of the TV, inside cabinets, and inside drawers; The external infrared transmitter extends to different areas of the room via connecting cables, allowing the operator to control the entire room and ensuring comprehensive coverage of the intelligent infrared remote-controlled appliances. The connecting cables can be beautified or concealed depending on the actual situation of the room. When concealed, the connecting cables are usually installed through concealed pipes or channels. When beautified, the color of the connecting cables is coordinated with the color of the walls or floors.
[0016] The outer casing of the main body is attached to a location that is not easily accessible to the user to achieve a concealed placement function. The external infrared transmitter is attached and placed near the corresponding position of the controlled product or the position of the infrared receiver of the controlled product. The infrared transmitter is arranged according to the electrical appliances installed in the room to meet the electrical control needs of different room layouts.
[0017] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0018] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A wireless intelligent infrared repeater, characterized in that, It includes: Body shell; The PCB board includes a USB power supply port, a power processing module, a wireless communication module, and an infrared processing module. And at least two infrared emitters; The PCB board is built into the inner cavity of the main body shell. The main body shell is provided with a plug interface corresponding to the position of the USB power supply port. At least one infrared transmitter is externally placed outside the main body shell to form an external infrared transmitter. The external infrared transmitter is connected to the infrared processing module inside the main body shell through a connecting cable.
2. The wireless intelligent infrared repeater according to claim 1, characterized in that: All infrared emitters are externally mounted on the outer casing of the main body and are all external infrared emitters. Each set of infrared emitters is connected to the corresponding interface of the infrared processing module inside the outer casing of the main body via a connecting cable.
3. The wireless intelligent infrared repeater according to claim 1, characterized in that: All infrared emitters include at least one external infrared emitter located outside the main body housing and at least one internal infrared emitter located inside the main body housing. All internal infrared emitters are arranged at different side wall positions corresponding to the main body housing. All external infrared emitters are connected to the corresponding interface of the infrared processing module inside the main body housing via independent connecting lines.
4. The wireless intelligent infrared repeater according to claim 1, characterized in that: The length of the connecting cable corresponding to the external infrared transmitter is set according to the distance between the preset position of the infrared transmitter and the installation position of the main body shell.
5. The wireless intelligent infrared repeater according to claim 1, characterized in that: The main body shell includes an upper cover and a lower base. The PCB board is fixedly installed in the inner cavity of the main body shell. The infrared processing module of the PCB is provided with several emission ports. One end of the connecting wire is provided with a corresponding mounting plug. The other end of the connecting wire is inserted with an infrared transmitter. The mounting plug is inserted into the corresponding emission port. At least one side wall of the assembled upper cover and lower base is provided with a connecting wire through hole. The connecting wire body is disposed through the connecting wire through hole.
6. The wireless intelligent infrared repeater according to claim 1, characterized in that: It also includes an adapter, which is plugged into the USB power port via a cable.