Multi-input multi-output audio processor

By introducing heat dissipation slots, heat dissipation fans and dustproof network structures into the audio processor, the problem of insufficient heat dissipation of the audio processor is solved, rapid heat dissipation and convenient installation are achieved, and the stability and service life of the equipment are improved.

CN223067184UActive Publication Date: 2025-07-04GUANGZHOU HONGYITAI TECH DEV CO LTD
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Patent Information

Application Number
CN202421891035.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-06
Publication Date
2025-07-04
Estimated Expiration
2034-08-06

AI Technical Summary

Technical Problem

Existing audio processors cannot effectively dissipate heat when processing audio, resulting in long-term high-temperature operation of internal electrical components, affecting their service life.

Method used

The heat dissipation tank, heat dissipation fan, dustproof net and trough structure are designed to lead the internal hot air through the heat dissipation fan and prevent dust from entering. It combines the installation board, reinforcement board and fixed pin and other structures to achieve convenient installation and disassembly.

Benefits of technology

It realizes rapid heat dissipation of the audio processor, prevents dust from entering, and is easy to install and disassemble, improving the stability and service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multi-input multi-output audio processor, which comprises a processor main body, one end of the processor main body is fixedly connected with a wiring panel, the other end of the processor main body is provided with a groove, and the inside of the groove is fixedly connected with a display adjusting panel. Heat dissipation structures used for cooling the interior are arranged on the two sides of the interior of the processor body. According to the multi-input multi-output audio processor, the heat dissipation grooves are formed, when the audio processor runs, heat generated by working of electrical elements in the processor body can cause the temperature in the processor body to rise, and a heat dissipation fan is started to guide out air in the processor body through the through grooves; heat in the processor main body can be continuously taken away while air circulates, so that the temperature in the processor main body is effectively reduced, dust screens in the heat dissipation grooves can effectively prevent dust from entering, and the problem that heat cannot be rapidly dissipated is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of audio processors, and particularly relates to a multi-input multi-output audio processor. Background Art

[0002] An audio processor is a device dedicated to processing various types of music. In some electronic products, an audio processor is installed to control the music output effect. There are also stand-alone audio processors. Such audio processors are generally connected to a control electronic device and then connected to output devices such as speakers. They can receive commands from the control device, process the audio, and then transmit the audio to the output device. They can also be connected to multiple groups of control and output devices to process audio simultaneously, with the characteristics of high processing efficiency and convenient use.

[0003] However, there are still some defects in the current audio processors used for audio processing. When processing audio, they cannot effectively dissipate heat inside, resulting in the heat generated by the internal electrical components being difficult to discharge. They are in a high-temperature operation state for a long time, thus affecting the service life of the processor.

[0004] Now a new type of multi-input multi-output audio processor is proposed to solve the above problems. Summary of the Utility Model

[0005] The purpose of the utility model is to provide a multi-input multi-output audio processor to solve the problem of inability to quickly dissipate heat proposed in the above background art.

[0006] To achieve the above purpose, the utility model provides the following technical solution: A multi-input multi-output audio processor, including a processor main body. One end of the processor main body is fixedly connected with a wiring panel. The other end of the processor main body is provided with a groove. Inside the groove, a display and adjustment panel is fixedly connected. On both sides inside the processor main body, a heat dissipation structure for cooling the inside is provided.

[0007] The heat dissipation structure includes heat dissipation grooves. Heat dissipation grooves are provided on both sides of the processor main body. A through groove is provided on one side inside the heat dissipation groove. Positioning plates are fixedly connected to both ends inside the heat dissipation groove. A heat dissipation fan is fixedly connected to one side of the positioning plate. A dust-proof net is fixedly connected to the other side inside the heat dissipation groove.

[0008] Preferably, the through groove is communicated with the inside of the processor main body. The center line of the heat dissipation groove and the center line of the dust-proof net are on the same horizontal plane.

[0009] Preferably, mounting plates are fixedly connected to the same ends on both sides of the processor body. Two reinforcing plates are fixedly connected to one end of the mounting plate. Two mounting sleeves are fixedly connected to one end of the mounting plate. One end of the mounting plate is movably connected to a fixing plate. Two fixing pins are fixedly connected to one end of the fixing plate. The fixing pins extend into the interior of the mounting sleeves and are fixedly connected to metal elastic pieces. One end of the metal elastic piece is fixedly connected to a positioning block.

[0010] Preferably, the positioning block is movably connected to the mounting sleeve, and the reinforcing plate is fixedly connected to the processor body.

[0011] Preferably, the fixing pin is movably connected to the mounting sleeve, and the mounting plates on both sides of the processor body are arranged symmetrically.

[0012] Preferably, a first protective groove is formed at one end of the processor body, and a second protective groove is formed at one end of the top of the processor body. One end inside the second protective groove is movably hinged with a protective plate. Second magnetic blocks are embedded on both sides of the protective plate. First magnetic blocks are embedded on both sides inside the first protective groove.

[0013] Preferably, the protective plate is movably connected to the first protective groove, and the center line of the first protective groove and the center line of the second protective groove are on the same vertical plane.

[0014] Preferably, the first magnetic block is movably connected to the second magnetic block, and the interiors of the first protective groove and the second protective groove are connected and communicated.

[0015] Compared with the prior art, the beneficial effects of the present utility model are as follows: This multi-in and multi-out audio processor not only realizes rapid heat dissipation, convenient disassembly and assembly, but also realizes protection for the display component;

[0016] (1) By providing a heat dissipation groove, a heat dissipation fan, a dust-proof net, a positioning plate and a through groove, when the audio processor is running, the heat generated by the operation of the electrical components inside the processor body will cause the temperature inside the processor body to rise. Start the heat dissipation fan to export the air inside the processor body through the through groove. While the air circulates, it can continuously take away the heat inside the processor body, thereby effectively reducing the temperature inside the processor body. And the dust-proof net inside the heat dissipation groove can effectively prevent dust from entering, realizing rapid heat dissipation during operation;

[0017] (2) By providing an installation plate, a reinforcing plate, a fixing pin, an installation sleeve, a positioning block, a metal elastic sheet and a fixing plate, before installation, the fixing plate is fixed at the designated installation position. Then, during installation, the processor main body is placed at one end of the fixing plate and the processor main body is pushed so that the fixing pin is inserted into the interior of the installation sleeve. After the metal elastic sheet at one end of the fixing pin passes through the interior of the installation sleeve, the metal elastic sheet can quickly eject the positioning block and make the positioning block fit against one end of the installation sleeve. Thus, the processor main body is positioned through the installation sleeve, and the fixing pin fitting inside the installation sleeve can support the processor main body, ensuring the stability of the processor main body after installation and realizing convenient disassembly and assembly of the device.

[0018] (3) By providing a groove, a first protective groove, a first magnet, a second protective groove, a protective plate and a second magnet, when the device is in use, the protective plate is flipped to fit inside the second protective groove, making the interior of the groove open for convenient operation. After use, the protective plate is flipped again to fit inside the first protective groove, and the second magnets on both sides of the protective plate are adsorbed to the first magnet to position the protective plate. The protective plate blocking one end of the display adjustment panel can protect the display adjustment panel, realizing effective protection of the display adjustment panel after closing. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 is a front cross-sectional structural view of the present utility model;

[0020] Figure 2 is of the present utility model Figure 1 enlarged structural view at A in;

[0021] Figure 3 is a rear cross-sectional structural view of the groove of the present utility model;

[0022] Figure 4 is a side cross-sectional structural view of the installation plate of the present utility model.

[0023] In the figure: 1, processor main body; 2, wiring panel; 3, installation plate; 4, reinforcing plate; 5, heat dissipation slot; 6, heat dissipation fan; 7, fixing pin; 8, installation sleeve; 9, positioning block; 10, metal elastic sheet; 11, dust-proof net; 12, positioning plate; 13, through slot; 14, groove; 15, display adjustment panel; 16, first protective groove; 17, first magnet; 18, second protective groove; 19, protective plate; 20, second magnet; 21, fixing plate. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0024] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0025] Embodiment 1: Please refer to Figures 1-4 , a multi-input multi-output audio processor, including a processor main body 1. One end of the processor main body 1 is fixedly connected with a wiring panel 2, and the other end of the processor main body 1 is provided with a groove 14. Inside the groove 14, a display adjustment panel 15 is fixedly connected. On both sides inside the processor main body 1, a heat dissipation structure for cooling the inside is provided;

[0026] The heat dissipation structure includes heat dissipation grooves 5. Heat dissipation grooves 5 are provided on both sides of the processor main body 1. On one side inside the heat dissipation grooves 5, a through groove 13 is provided. At both ends inside the heat dissipation grooves 5, positioning plates 12 are fixedly connected. On one side of the positioning plates 12, heat dissipation fans 6 are fixedly connected. On the other side inside the heat dissipation grooves 5, dust-proof nets 11 are fixedly connected;

[0027] The through groove 13 is communicated with the inside of the processor main body 1, and the center line of the heat dissipation groove 5 and the center line of the dust-proof net 11 are on the same horizontal plane;

[0028] Specifically, as shown in Figure 1 and Figure 2 , when the audio processor is running, the heat generated by the electrical components inside the processor main body 1 will cause the temperature inside the processor main body 1 to rise. Start the heat dissipation fan 6 to export the air inside the processor main body 1 through the through groove 13. While the air circulates, it can continuously take away the heat inside the processor main body 1, thereby effectively reducing the temperature inside the processor main body 1. And the dust-proof net 11 inside the heat dissipation groove 5 can effectively prevent dust from entering, realizing rapid heat dissipation during operation.

[0029] Embodiment 2: On the same end of both sides of the processor main body 1, mounting plates 3 are fixedly connected. At one end of the mounting plates 3, two groups of reinforcing plates 4 are fixedly connected. At one end of the mounting plates 3, two groups of mounting sleeves 8 are fixedly connected. One end of the mounting plates 3 is movably connected with a fixing plate 21. At one end of the fixing plate 21, two groups of fixing pins 7 are fixedly connected. The fixing pins 7 extend into the inside of the mounting sleeves 8 and are fixedly connected with metal elastic pieces 10. At one end of the metal elastic pieces 10, positioning blocks 9 are fixedly connected;

[0030] The positioning blocks 9 are movably connected with the mounting sleeves 8, and the reinforcing plates 4 are fixedly connected with the processor main body 1;

[0031] The fixing pin 7 is movably connected to the mounting sleeve 8, and the mounting plates 3 on both sides of the processor main body 1 are symmetrically arranged;

[0032] Specifically, as Figure 1 , Figure 2 , Figure 3 and Figure 4 shown, before installation, the fixing plate 21 is fixed at the designated installation position. Then, during installation, the processor main body 1 is placed at one end of the fixing plate 21 and the processor main body 1 is pushed so that the fixing pin 7 is inserted into the interior of the mounting sleeve 8. After the metal elastic piece 10 at one end of the fixing pin 7 passes through the interior of the mounting sleeve 8, the metal elastic piece 10 can quickly push out the positioning block 9 and make the positioning block 9 fit against one end of the mounting sleeve 8. Thus, the processor main body 1 is positioned through the mounting sleeve 8, and the fixing pin 7 fitting inside the mounting sleeve 8 can support the processor main body 1, ensuring the stability of the processor main body 1 after installation, and facilitating the disassembly and assembly of the device.

[0033] Embodiment 3: A first protective groove 16 is opened at one end of the processor main body 1, a second protective groove 18 is opened at one end of the top of the processor main body 1, one end inside the second protective groove 18 is movably hinged with a protective plate 19, second magnetic blocks 20 are inlaid on both sides of the protective plate 19, and first magnetic blocks 17 are inlaid on both sides inside the first protective groove 16;

[0034] The protective plate 19 is movably connected to the first protective groove 16, and the center line of the first protective groove 16 and the center line of the second protective groove 18 are in the same vertical plane;

[0035] The first magnetic block 17 is movably connected to the second magnetic block 20, and the interiors of the first protective groove 16 and the second protective groove 18 are connected and communicated;

[0036] Specifically, as Figure 3 and Figure 4 shown, when the device is in use, the protective plate 19 is flipped so that it fits inside the second protective groove 18, making the interior of the groove 14 open for convenient operation. After use, the protective plate 19 is flipped again so that it fits inside the first protective groove 16, and the second magnetic blocks 20 on both sides of the protective plate 19 are adsorbed to the first magnetic blocks 17 to position the protective plate 19. The protective plate 19 blocking one end of the display adjustment panel 15 can protect the display adjustment panel 15, achieving effective protection for the display adjustment panel 15 after closing.

[0037] Working principle: When the utility model is in use, before installation, the fixing plate 21 is fixed at the designated installation position. During installation, the processor main body 1 is placed at one end of the fixing plate 21 and the processor main body 1 is pushed so that the fixing pin 7 is inserted into the interior of the installation sleeve 8. After the metal elastic sheet 10 at one end of the fixing pin 7 passes through the interior of the installation sleeve 8, the metal elastic sheet 10 can quickly eject the positioning block 9 and make the positioning block 9 fit against one end of the installation sleeve 8, thereby positioning the processor main body 1 through the installation sleeve 8. Moreover, the fixing pin 7 fitting in the interior of the installation sleeve 8 can support the processor main body 1 to ensure the stability of the processor main body 1 after installation. When the device is in use, the protection plate 19 is flipped to fit inside the second protection groove 18. When the audio processor is running, the heat generated by the operation of the electrical components inside the processor main body 1 will cause the temperature inside the processor main body 1 to rise. The cooling fan 6 is started to export the air inside the processor main body 1 through the through groove 13. While the air circulates, it can continuously take away the heat inside the processor main body 1, thereby effectively reducing the temperature inside the processor main body 1. And the dust-proof net 11 inside the heat dissipation groove 5 can effectively prevent dust from entering. After use, the protection plate 19 is flipped again to fit inside the first protection groove 16, and the second magnetic blocks 20 on both sides of the protection plate 19 are adsorbed to the first magnetic blocks 17 to position the protection plate 19. The protection plate 19 blocking one end of the display adjustment panel 15 can protect the display adjustment panel 15.

Claims

1. A multi-input multi-output audio processor, comprising a processor main body (1), characterized in that: One end of the processor main body (1) is fixedly connected with a wiring panel (2). A groove (14) is opened at the other end of the processor main body (1). A display adjustment panel (15) is fixedly connected inside the groove (14). Heat dissipation structures for cooling the interior are arranged on both sides inside the processor main body (1). The heat dissipation structure includes heat dissipation grooves (5). Heat dissipation grooves (5) are opened on both sides of the processor main body (1). A through groove (13) is opened on one side inside the heat dissipation groove (5). Positioning plates (12) are fixedly connected to both ends inside the heat dissipation groove (5). A heat dissipation fan (6) is fixedly connected to one side of the positioning plate (12). A dust-proof net (11) is fixedly connected to the other side inside the heat dissipation groove (5).

2. The multi-input multi-output audio processor according to claim 1, characterized in that: The through groove (13) is communicated with the inside of the processor main body (1). The center line of the heat dissipation groove (5) and the center line of the dust-proof net (11) are on the same horizontal plane.

3. The multi-input and multi-output audio processor according to claim 1, wherein: Mounting plates (3) are fixedly connected to the same ends of both sides of the processor main body (1). Two groups of reinforcing plates (4) are fixedly connected to one end of the mounting plate (3). Two groups of mounting sleeves (8) are fixedly connected to one end of the mounting plate (3). One end of the mounting plate (3) is movably connected with a fixing plate (21). Two groups of fixing pins (7) are fixedly connected to one end of the fixing plate (21). The fixing pins (7) extend into the inside of the mounting sleeves (8) and are fixedly connected with metal elastic pieces (10). A positioning block (9) is fixedly connected to one end of the metal elastic piece (10).

4. The multi-input multi-output audio processor according to claim 3, wherein: The positioning block (9) is movably connected with the mounting sleeve (8). The reinforcing plate (4) is fixedly connected with the processor main body (1).

5. The multi-input and multi-output audio processor according to claim 3, characterized in that: The fixing pin (7) is movably connected with the mounting sleeve (8). The mounting plates (3) on both sides of the processor main body (1) are arranged symmetrically.

6. The multi-input multi-output audio processor according to claim 1, wherein: A first protection groove (16) is opened at one end of the processor main body (1). A second protection groove (18) is opened at one end of the top of the processor main body (1). A protection plate (19) is movably hinged to one end inside the second protection groove (18). Second magnetic blocks (20) are inlaid on both sides of the protection plate (19). First magnetic blocks (17) are inlaid on both sides inside the first protection groove (16).

7. The multi-input and multi-output audio processor according to claim 6, characterized in that: The protection plate (19) is movably connected with the first protection groove (16). The center line of the first protection groove (16) and the center line of the second protection groove (18) are on the same vertical plane.

8. The multi-input and multi-output audio processor according to claim 6, wherein: The first magnetic block (17) is movably connected with the second magnetic block (20). The inside of the first protection groove (16) is communicated with the inside of the second protection groove (18).