Sound box support and sound box suite
By designing a switchable trigger on the speaker bracket, the problem of existing speakers being unable to automatically turn off the equalizer optimization function has been solved, enabling users to control the sound effects of the speakers themselves.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-07
- Publication Date
- 2026-03-24
AI Technical Summary
Existing audio systems cannot automatically disable the equalizer optimization function, limiting users' control over sound effects adjustments.
Design a speaker stand that includes a switchable trigger for triggering or deactivating the equalizer optimization function, controlling the equalizer optimization function of the speaker by detecting the direction of the magnetic field through a magnet or Hall effect sensor.
Users can choose whether to enable the equalizer optimization function according to their personal needs, achieving greater freedom of use and personalized customization of the audio experience.
Smart Images

Figure CN224037469U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the field of sound equipment, and more particularly relates to a sound equipment support and a sound equipment set. BACKGROUND
[0002] Sound equipment is a device for playing sound, which can convert electrical signals into sound signals to emit sound. Currently, part of the sound equipment has an equalizer optimization function, which can automatically adjust the equalizer settings according to the actual environment of the sound equipment, so as to make the sound equipment present better effects.
[0003] However, the current equalizer optimization function is usually an automatic function, and if the user does not want to trigger the equalizer optimization function of the sound equipment, the equalizer optimization function cannot be manually turned off. SUMMARY
[0004] The purpose of the embodiment of the application is to provide a sound equipment support and a sound equipment set to solve the technical problem that the equalizer optimization function cannot be manually turned off in the prior art.
[0005] To achieve the above purpose, the technical scheme adopted by the application is to provide a sound equipment support, which comprises:
[0006] A support body, which is used for mounting sound equipment with an equalizer optimization function;
[0007] A trigger piece, which is arranged on the support body and has a first position and a second position that can be switched relative to the support body;
[0008] In a state where the trigger piece is in the first position, the trigger piece can trigger the sound equipment arranged on the support body to start the equalizer optimization function;
[0009] In a state where the trigger piece is in the second position, the trigger piece cannot trigger the sound equipment arranged on the support body to start the equalizer optimization function.
[0010] Optionally, the trigger piece comprises a magnet, and the magnet has a first magnetic pole that triggers the sound equipment to start the equalizer optimization function;
[0011] In the state where the trigger piece is in the first position, the first magnetic pole faces the sound equipment mounting side of the support body;
[0012] In the state where the trigger piece is in the second position, the first magnetic pole faces away from the sound equipment mounting side.
[0013] Optionally, the trigger piece further comprises a flexible piece, the magnet is arranged in the flexible piece, and the support body has a first slot body with an opening facing the sound equipment mounting side;
[0014] The flexible piece has a first side and a second side, the first side is opposite to the second side, and the first magnetic pole faces the first side;
[0015] In the state that the trigger is in the first position, the second side of the flexible piece is embedded in the first slot body, so that the first magnetic pole faces the sound installation side of the frame body;
[0016] In the state that the trigger is in the second position, the first side of the flexible piece is embedded in the first slot body, so that the first magnetic pole faces away from the sound installation side.
[0017] Optionally, the flexible piece comprises a main body part, a handle part and a first connecting part, the first connecting part is connected between the main body part and the handle part, the first connecting part has a first limiting slot on the first side, and the first connecting part has a second limiting slot on the second side;
[0018] The main body part is embedded in the first slot body, and the frame body has a limiting part located on one side of the first slot body;
[0019] In the state that the trigger is in the first position, the limiting part is embedded in the second limiting slot;
[0020] In the state that the trigger is in the second position, the limiting part is embedded in the first limiting slot.
[0021] Optionally, the flexible piece is provided with a first mark on the first side, and the first mark is used for indicating that the trigger is in the first position;
[0022] The handle is provided with a second mark on the second side, and the second mark is used for indicating that the trigger is in the second position.
[0023] Optionally, the flexible piece has a second slot body, the magnet is arranged in the second slot body, the second slot body has an opening for the magnet to be put into the second slot body, and the second slot body is configured to have the opening upward in the state that the trigger is in the first position and the second position.
[0024] Optionally, the frame body comprises a first support part, a second support part and a second connecting part, one end of the second connecting part is detachably connected with the first support part, and the other end of the second connecting part is detachably connected with the second support part;
[0025] The first support part and the second support part are both provided with an installation part for installing the sound, and at least one of the first support part and the second support part is provided with the trigger.
[0026] Optionally, the sound support further comprises a buffer piece, and at least one side of the frame body is provided with the buffer piece.
[0027] The application further provides a sound kit, which comprises:
[0028] a sound; the sound has an equalizer optimization function;
[0029] the sound support described above; the sound is arranged on the sound installation side of the sound support;
[0030] In a state where the trigger is in the first position, the trigger can trigger the sound device to start the equalizer optimization function.
[0031] In a state where the trigger is in the second position, the trigger cannot trigger the sound device to start the equalizer optimization function.
[0032] Optionally, the magnet of the trigger has a first magnetic pole; the sound device has a Hall effect sensor, and the sound device is configured to start the equalizer optimization function when the magnetic field of the first magnetic pole is detected.
[0033] The sound device support provided by the present application has the following beneficial effects: compared with the prior art, the sound device support includes a support body and a trigger, the trigger has a first position and a second position that can be switched relative to the support body, in a state where the trigger is in the first position, the trigger can trigger the sound device arranged on the support body to start the equalizer optimization function, and in a state where the trigger is in the second position, the trigger cannot trigger the sound device arranged on the support body to start the equalizer optimization function. If a user wants to make the sound device start the equalizer optimization function, the user adjusts the trigger to the first position, and if the user does not want to make the sound device start the equalizer optimization function, the user adjusts the trigger to the second position. The user can select whether to trigger the equalizer optimization function of the sound device according to personal needs, thereby realizing greater use freedom and personalized customization of audio experience. BRIEF DESCRIPTION OF DRAWINGS
[0034] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.
[0035] Figure 1 It is an exploded view of the sound device kit in the embodiment of the present application;
[0036] Figure 2 It is a schematic view of the sound device support in the embodiment of the present application;
[0037] Figure 3 It is a schematic view of the trigger in the first position in the embodiment of the present application;
[0038] Figure 4 It is a schematic view of the trigger in the second position in the embodiment of the present application;
[0039] Figure 5 It is an exploded view of one side of the trigger in the embodiment of the present application;
[0040] Figure 6 It is an exploded view of the other side of the trigger in the embodiment of the present application;
[0041] Figure 7 is a schematic view of a flexible piece in the embodiment of the present application;
[0042] Figure 8 is a schematic view of the trigger piece and the frame body separated in the embodiment of the present application;
[0043] Figure 9 is an exploded view of the sound support in the embodiment of the present application;
[0044] Figure 10 is a schematic view of the setting of the buffer piece in the embodiment of the present application.
[0045] In the drawings, various reference numbers refer to:
[0046] the sound support 10; the sound 20; the frame body 1, the first slot body 11; the first support part 12; the second support part 13; the second connecting part 14; the limiting part 15; the buffer piece 16; the trigger piece 2; the magnet 21; the flexible piece 22; the first side 221; the second side 222; the main body part 223; the handle part 224; the first connecting part 225; the first limiting slot 2251; the second limiting slot 2252; the first mark 226; the second mark 227; the second slot body 228. DETAILED DESCRIPTION
[0047] In order to make the technical problems to be solved by the present application, the technical solutions and beneficial effects clearer, the present application will be further described in detail below with reference to the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and not intended to limit the present application.
[0048] It should be noted that when an element is referred to as being "fixed to" or "set on" another element, it can be directly on the other element or indirectly on the other element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or indirectly connected to the other element.
[0049] It should be understood that the terms "length", "width", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the present application and simplify the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0050] In addition, the terms "first", "second", etc. are used only for descriptive purposes and are not to be construed as indicating or implying relative importance or an ordered ranking of the indicated technical features. Thus, features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "a plurality of" is two or more, unless otherwise explicitly and specifically limited.
[0051] A sound bar is a device used to play sound, which can convert electrical signals into sound signals, and is widely used in music playing, movie watching, speech, conference, etc. Most modern sound bars are equipped with a function component called equalizer (EQ) to help users further optimize the sound quality of the sound bar, making it more suitable for individual preferences or specific occasions.
[0052] The working principle of the equalizer is based on the frequency decomposition and gain adjustment of the audio signal. The audio signal can be finely divided into different frequency components, such as bass, midrange and treble, etc. The equalizer can significantly change the overall tone of the audio by independently adjusting the gain level of these frequency components, enhancing or weakening the sound of a specific frequency band, thereby achieving the purpose of sound quality optimization.
[0053] With the continuous progress of technology, some sound bars now have equalizer optimization functions. This function can automatically adjust the equalizer settings according to the actual environment of the sound bar, ensuring that the best sound quality effect can be presented in some special environments. In order to achieve this intelligent optimization, the sound bar system uses various detection methods, for example, microphone environment detection, which captures the sound characteristics of the surrounding environment through the built-in microphone, analyzes factors such as reflection and echo, and adjusts the equalizer settings accordingly to reduce the adverse effects of the environment on the sound quality; for example, accelerometer detection: using an accelerometer to perceive the placement position and attitude change of the sound bar, such as whether it is placed on a stable flat surface or whether it is in an inclined state, and adjusting the sound quality to adapt to different physical conditions.
[0054] However, the current equalizer optimization function is usually an automatic function, and if the user does not want to enable the equalizer optimization function, the user cannot manually turn off this optimization function, which limits the user's control over the sound effect adjustment.
[0055] To solve the above problems, an embodiment of the present application provides a sound bar support 10, please refer to Figures 1 to 4 , now the sound bar support 10 provided by the embodiment of the present application will be described, the sound bar support 10 comprises:
[0056] a support body 1; the support body 1 is used for installing a sound bar 20 with equalizer optimization function;
[0057] The trigger 2 is arranged on the frame 1, and the trigger 2 has a first position and a second position which can be switched relative to the frame 1.
[0058] When the trigger 2 is in the first position, the trigger 2 can trigger the sound 20 arranged on the frame 1 to start the equalizer optimization function.
[0059] When the trigger 2 is in the second position, the trigger 2 cannot trigger the sound 20 arranged on the frame 1 to start the equalizer optimization function.
[0060] The sound support 10 of the embodiment is used for the installation of the sound 20, and the sound support 10 of the embodiment includes but is not limited to a wall-mounted support, a floor-mounted support, a desktop support, a ceiling support, etc. The material of the sound support 10 can include metal, plastic, wood, glass, etc. For example Figure 1 The embodiment shown is a wall-mounted support, and the sound 20 can be hung on the sound 20 hanging groove of the support in the direction indicated by the arrow through the special large head screw installed on the back. The horizontally arranged long holes on the sound support 10 are used to install the support on the wall through the screw.
[0061] The sound support 10 includes the frame 1, which is the main structure of the sound support 10 and can be made of metal or a solid plastic material to ensure that sufficient support strength and stability are provided for the sound 20. The frame 1 can be generally provided with a general or special mounting portion for the installation and fixation of the sound 20. The mounting portion includes but is not limited to a hole, a groove, a support column, etc. In addition, the frame 1 can also be provided with an adjusting mechanism for adjusting the position and angle of the sound 20. It is particularly noted that the frame 1 of the embodiment is used for the installation of the sound 20 with the equalizer optimization function, and therefore, the structure form of the frame 1 should be designed according to the commercially available or researched and developed sound 20 with the equalizer optimization function.
[0062] The equalizer optimization function has been fully explained in the foregoing, and this function can automatically adjust the equalizer setting according to the actual environment of the sound 20 to ensure that the best sound quality effect can be presented in any environment. It is also noted here that the equalizer optimization function of the embodiment is triggered by the specially designed trigger 2. By arranging the specific trigger on the sound support, when the sound and the support are correctly installed, the trigger 2 activates the equalizer optimization function. The technical means of arranging the trigger 2 to realize the equalizer optimization function is more direct and efficient.
[0063] For example Figure 2As shown, the trigger 2 is arranged on the sound equipment support 10 and is used to trigger the equalizer optimization function. In this embodiment, the trigger 2 is a component that can adjust the relative position with the frame 1, so that it can be switched to the first position or the second position. It is particularly emphasized that the position here not only includes the coordinates of the trigger 2, but also includes the direction of the trigger 2, that is, the trigger 2 can be different in coordinates, different in direction, or different in both coordinates and direction when it is in the first position and the second position respectively. For example, Figure 3 and Figure 4 As shown in the embodiment, the trigger 2 is shown in the first position and the second position respectively, and the difference between the two is that the direction of the trigger 2 is different.
[0064] In this embodiment, when the trigger 2 is in the first position, the trigger 2 can trigger the sound equipment 20 arranged on the frame 1 to start the equalizer optimization function; when the trigger 2 is in the second position, the trigger 2 cannot trigger the sound equipment 20 arranged on the frame 1 to start the equalizer optimization function. That is, after the sound equipment 20 is installed on the sound equipment support 10, by adjusting the position of the trigger 2, it can be selected whether the sound equipment 20 starts the equalizer optimization function. If the user wants the sound equipment 20 to start the equalizer optimization function, the trigger 2 is adjusted to the first position; if the user does not want the sound equipment 20 to start the equalizer optimization function, the trigger 2 is adjusted to the second position. When the user does not want the wall resonance to affect the bass output of the sound equipment 20, the trigger of the equalizer optimization function can be avoided by simply adjusting the trigger 2, so that a more natural audio experience can be enjoyed. Therefore, the user can select whether to trigger the equalizer optimization function of the sound equipment 20 according to personal needs, so as to realize greater freedom of use and personalized customization of audio experience.
[0065] According to different installation modes of the sound equipment 20, the sound equipment support 10 and the trigger 2 are also different. For example, for the sound equipment 20 that needs to be wall-mounted, the sound equipment support 10 can adopt a wall-mounted support, and the corresponding sound equipment 20 includes an equalizer optimization function for the wall-mounted state of the sound equipment 20. When the trigger 2 is in the first position, it can trigger the sound equipment 20 to start the equalizer optimization function for the wall-mounted state, for example, to optimize the bass part to reduce the low-frequency resonance phenomenon caused by wall reflection, avoid the bass becoming muddy and unclear, so that the sound equipment 20 has better sound effect in the wall-mounted state. For example, for the sound equipment 20 that needs to be installed by using a floor stand, the sound equipment support 10 can adopt a floor stand, and the corresponding sound equipment 20 includes an equalizer optimization function for the floor-mounted state of the sound equipment 20. When the trigger 2 is in the first position, it can trigger the sound equipment 20 to start the equalizer optimization function for the floor-mounted state, so that the sound equipment 20 has better sound effect in the floor-mounted state.
[0066] The selection of the trigger 2 also needs to be selected according to the detection method of the sound 20 for the trigger. For example, the sound 20 is equipped with a Hall effect sensor, which can realize the detection of the magnetic field. The principle of the Hall effect sensor detecting the magnetic field is based on the Hall effect, that is, when the current passes through a conductor placed in the magnetic field, a potential difference perpendicular to the magnetic field and the current direction of the conductor will be generated. Because the direction of the potential difference is related to the direction of the magnetic field and the current, the detection of the magnetic field can be realized through the potential difference, and it can also be detected which magnetic pole of the magnet produces the magnetic field. The direction of the magnetic field or whether the magnetic field exists is detected by the Hall effect sensor, so as to determine whether to start the equalizer optimization function. At this time, the trigger 2 can use the magnet 21. By changing the position or direction of the magnet 21, the equalizer optimization function of the sound 20 is triggered by the detection of the Hall effect sensor. For example, whether the equalizer optimization function is started is determined by detecting whether the magnetic field exists at a specific position of the sound support 10 through the Hall effect sensor. The first position can be a specific position detected by the Hall effect sensor, and the second position can be any other position that cannot be detected by the Hall effect sensor. When the user wants to start the equalizer optimization function, the magnet 21 can be adjusted to the first position, so that the Hall effect sensor can detect that the first position has a magnetic field, so that the sound 20 starts the equalizer optimization function. When the user does not want to start the equalizer optimization function, the magnet 21 can be adjusted or removed to the second position, so that the Hall effect sensor cannot detect the magnetic field of the first position, so that the sound 20 does not start the equalizer optimization function. For another example, the sound 20 is equipped with a pressure sensor, and the trigger 2 is a movable block matched with the pressure sensor. When the trigger 2 is in the first position, the pressure sensor can be in contact with the trigger 2, so that the sound 20 starts the equalizer optimization function. The second position is any position where the trigger 2 cannot contact the pressure sensor. When the trigger 2 is in the first position, the pressure sensor cannot contact the trigger 2, so that the sound 20 cannot start the equalizer optimization function. Similarly, corresponding triggers 2 can be selected for different sounds 20.
[0067] Please refer to Figures 1 to 4 In some embodiments of the present application, the trigger 2 includes a magnet 21, and the magnet 21 has a first magnetic pole for triggering the sound 20 to start the equalizer optimization function.
[0068] In the state that the trigger 2 is in the first position, the first magnetic pole faces the sound 20 mounting side of the frame body 1.
[0069] In the state that the trigger 2 is in the second position, the first magnetic pole faces away from the sound 20 mounting side.
[0070] The trigger 2 of the embodiment adopts a magnet 21, which has two magnetic poles, i.e. N pole and S pole. The magnet 21 of the embodiment has a first magnetic pole for triggering the equalizer optimization function of the sound device 20, and the first magnetic pole can be the N pole or the S pole, i.e. the sound device 20 can be designed to trigger the equalizer optimization function through the N pole of the magnet 21 or through the S pole of the magnet 21. Figure 3 And Figure 4 For example, since Figure 3 And Figure 4 The magnet 21 in
[0071] When the magnet 21 is in the first position, the first magnetic pole faces the sound device 20 mounting side of the frame 1, and the sound device 20 mounting side is the side of the frame 1 on which the sound device 20 is mounted. At this time, if the sound device 20 is internally designed with a sensor, such as a Hall sensor, which interacts with the magnet 21, the sensor can detect the magnetic field generated by the first magnetic pole of the magnet 21 and generate a corresponding electrical signal. After the circuit inside the sound device 20 receives this signal, it will identify it as an instruction to start the equalizer optimization function and adjust the equalizer settings accordingly.
[0072] When the magnet 21 is in the second position, the first magnetic pole faces away from the sound device 20 mounting side. In this case, the sensor inside the sound device 20 cannot detect the first magnetic pole of the magnet 21, so it will not generate a signal to start the equalizer optimization function. The sound device 20 remains in its current state and does not start the equalizer optimization function.
[0073] Therefore, the sound device support 10 of the embodiment allows users to select whether to trigger or not to trigger the equalizer optimization function of the sound device 20 by adjusting the magnetic pole direction of the magnet 21.
[0074] Please refer to Figures 3 to 8 In some embodiments of the present application, the trigger 2 further includes a flexible member 22, the magnet 21 is arranged in the flexible member 22, and the frame 1 has a first slot body 11 with an opening facing the sound device 20 mounting side;
[0075] The flexible member 22 has a first side 221 and a second side 222, the first side 221 is opposite to the second side 222, and the first magnetic pole faces the first side 221;
[0076] In the state that the trigger 2 is in the first position, the second side 222 of the flexible member 22 is embedded in the first slot 11, so that the first magnetic pole is directed toward the sound equipment 20 mounting side of the frame 1.
[0077] In the state that the trigger 2 is in the second position, the first side 221 of the flexible member 22 is embedded in the first slot 11, so that the first magnetic pole is directed away from the sound equipment 20 mounting side.
[0078] The flexible member 22 is arranged in the flexible member 22, which can protect the magnet 21. Because of the softness of the flexible member 22, it is easy to be embedded in the slot and is not easy to be damaged when it is taken out. The flexible member 22 can be made of rubber, silica gel, soft plastic or the like. The first side 221 and the second side 222 of the flexible member 22 are opposite to each other, and the first magnetic pole is directed toward the first side 221. Therefore, by changing the direction of the first side 221 and the second side 222 of the flexible member 22, the direction of the first magnetic pole can be changed. Figure 5 and Figure 6 As shown, the first magnetic pole is N pole, and the N pole is directed toward the side with ON indication, i.e. the first side 221; the second magnetic pole is S pole, and the S pole is directed toward the side with OFF indication, i.e. the second side 222.
[0079] The frame 1 is provided with the first slot 11, so that the flexible member 22 can be embedded in the first slot 11 as shown, and can be taken out of the first slot 11 as shown. Figure 3 Figure 8 When the trigger 2 is in the first position, the second side 222 of the flexible member 22, i.e. the side opposite to the first magnetic pole, is embedded in the first slot 11 of the frame 1. Since the opening of the first slot 11 is arranged toward the sound equipment 20 mounting side, at this time, the first magnetic pole of the magnet 21 is directed toward the sound equipment 20 mounting side of the frame 1. If the sound equipment 20 is internally provided with a sensor capable of detecting magnetic field, it will detect the first magnetic pole of the magnet 21 and generate a corresponding electrical signal. After the sound equipment 20 receives the signal, the equalizer optimization function will be started.
[0080] Since the flexible member 22 can be embedded in the first slot 11 or taken out of the first slot 11, the flexible member 22 is first taken out of the first slot 11 and then put into the first slot 11. When the trigger 2 is adjusted to the second position, the first side 221 of the flexible member 22, i.e. the side toward which the first magnetic pole is directed, is embedded in the first slot 11. At this time, the first magnetic pole of the magnet 21 is directed away from the sound equipment 20 mounting side of the frame 1. The sensor in the sound equipment 20 cannot detect the first magnetic pole of the magnet 21, so no signal for starting the equalizer optimization function will be generated. The sound equipment 20 remains in its current state and does not start the equalizer optimization function.
[0081] Please refer to Figures 5 to 8 In some embodiments of the present application, the flexible member 22 includes a main body portion 223, a handle portion 224, and a first connecting portion 225 connected between the main body portion 223 and the handle portion 224. The first connecting portion 225 has a first limiting slot 2251 on the first side 221 and a second limiting slot 2252 on the second side 222. The main body portion 223 is embedded in the first slot body 11, and the frame body 1 has a limiting portion 15 on one side of the first slot body 11.
[0082] When the trigger member 2 is in the first position, the limiting portion 15 is embedded in the second limiting slot 2252. When the trigger member 2 is in the second position, the limiting portion 15 is embedded in the first limiting slot 2251.
[0083] The flexible member 22 of the present embodiment includes a main body portion 223, which is generally the main part of the magnet 21 and has sufficient thickness and strength to keep the position of the magnet 21 stable. The handle portion 224 is designed at one end of the flexible member 22, which is convenient for users to hold and operate the trigger member 2. The handle portion 224 can have various shapes and sizes to adapt to different operation needs. The first connecting portion 225 is a transition part connecting the main body portion 223 and the handle portion 224, and the first connecting portion 225 forms the first limiting slot 2251 and the second limiting slot 2252 on the first side 221 and the second side 222, respectively, for interaction with the limiting portion 15 on the frame body 1.
[0084] The first slot body 11 is used to accommodate the main body portion 223 of the flexible member 22, which can enable the trigger member 2 to switch between two positions when the different sides of the main body portion 223 are embedded in the first slot body 11. The frame body 1 also has a limiting portion 15 on one side of the first slot body 11, which is used to embed in the corresponding first limiting slot 2251 or second limiting slot 2252 when the trigger member 2 is in different positions, thereby ensuring the stability and accuracy of the trigger member 2.
[0085] When the user needs to turn on the equalizer optimization function of the sound device 20, the handle part 224 can be held and the main body part 223 of the flexible part 22 is embedded into the first slot body 11 of the frame body 1. At this time, the second side 222 of the flexible part 22, i.e. the side containing the second limiting slot 2252, faces the limiting part 15 of the frame body 1. At the same time, the limiting part 15 is embedded into the second limiting slot 2252. Due to the cooperation of the limiting part 15 and the second limiting slot 2252, the trigger part 2 is stably positioned at the first position. When the user does not need to turn on the equalizer optimization function, the handle part 224 can be held, the moving trigger part 2 is moved out of the first slot body 11, and the trigger part 2 is flipped over so that the first side 221 of the flexible part 22 faces the limiting part 15 of the frame body 1, the first side 221 is embedded into the first slot body 11, and the limiting part 15 is embedded into the first limiting slot 2251. Similarly, due to the close cooperation of the limiting part 15 and the first limiting slot 2251, the trigger part 2 is stably positioned at the second position.
[0086] Please refer to Figures 3 to 6 In some embodiments of the present application, a first mark 226 is arranged on the first side 221 of the flexible part 22, and the first mark 226 is used to indicate that the trigger part 2 is at the first position; a second mark 227 is arranged on the second side 222 of the flexible part 22, and the second mark 227 is used to indicate that the trigger part 2 is at the second position.
[0087] In the present embodiment, the first mark 226 is arranged on the first side 221 of the flexible part 22, i.e. the side facing the sound device 20 when the trigger part 2 is at the first position. The first mark 226 is used to clearly indicate that the trigger part 2 is currently at the first position, and accordingly the user can know that the equalizer optimization function of the sound device 20 is turned on.
[0088] The second mark 227 is arranged on the second side 222 of the flexible part 22, i.e. the side facing the sound device 20 when the trigger part 2 is at the second position. The second mark 227 is used to indicate that the trigger part 2 is currently at the second position, and accordingly the user can know that the equalizer optimization function is not turned on.
[0089] The first mark 226 and the second mark 227 can be in the form of distinguished words, symbols, colors or patterns, for example, the first mark 226 is ON and the second mark 227 is OFF; or for example, the first mark 226 is an equalizer interface pattern and the second mark 227 is a cross pattern based on the equalizer interface pattern. Figure 5 and Figure 6 In the embodiment shown in the drawings, the first mark 226 adopts the words EQ ON and the second mark 227 adopts the words EQ OFF, wherein EQ is located on the main body part 223 and ON and OFF are located on the handle part 224.
[0090] Please refer to Figures 3 to 6In some embodiments of the present application, the flexible member 22 has a second slot 228, and the magnet 21 is arranged in the second slot 228. The second slot 228 has an opening for the magnet 21 to be arranged in the second slot 228. The second slot 228 is configured to have the opening upward when the trigger member 2 is in the first position and the second position.
[0091] The flexible member 22 of the present embodiment has a second slot 228, which can be arranged on the main body 223 of the flexible member 22 to have sufficient space for the magnet 21. The shape and size of the second slot 228 should match the magnet 21 to ensure that the magnet 21 can be stably arranged in and fixed in the second slot 228. The second slot 228 has an opening, so that the magnet 21 can be arranged in the second slot 228 through the opening, thereby simplifying the assembly process of the magnet 21 and the flexible member 22, and allowing the magnet 21 to be adjusted.
[0092] No matter whether the trigger member 2 is in the first position or the second position, the opening of the second slot 228 remains upward. It should be noted that upward here means the opposite direction of the direction of gravity, so that the magnet 21 can be prevented from falling out of the opening of the second slot 228. The magnet 21 is arranged in the flexible member 22, and the flexible member 22 can be wrapped around the magnet 21, which has a certain stability. In addition, the opening of the second slot 228 is arranged upward, which can better reduce the possibility of the magnet 21 being separated from the flexible member 22.
[0093] Please refer to Figure 9 In some embodiments of the present application, the frame 1 includes a first support part 12, a second support part 13, and a second connecting part 14. One end of the second connecting part 14 is detachably connected with the first support part 12, and the other end of the second connecting part 14 is detachably connected with the second support part 13.
[0094] The first support part 12 and the second support part 13 are respectively provided with mounting parts for mounting the sound equipment 20. At least one of the first support part 12 and the second support part 13 is provided with the trigger member 2.
[0095] The frame 1 of the present embodiment includes a first support part 12, a second support part 13, and a second connecting part 14. The first support part 12 and the second support part 13 are main parts of the frame 1. The first support part 12 and the second support part 13 are respectively provided with mounting parts for mounting the sound equipment 20. The mounting parts can be reserved screw holes, buckle structures, or other devices capable of stably connecting with the sound equipment 20. At least one of the first support part 12 and the second support part 13 is provided with the trigger member 2 to selectively realize the opening or closing of the sound equipment 20 equalizer optimization function. The length and structure of the first support part 12 and the second support part 13 can be adjusted according to the size, weight, and use requirements of the sound equipment 20 to ensure the stability of the installation and the convenience of the use.
[0096] The second connecting part 14 is connected to the first supporting part 12 and the second supporting part 13. One end of the second connecting part 14 is connected to the first supporting part 12 in a detachable manner, and the other end is connected to the second supporting part 13. The detachable connection can include screw connection, bolt connection, or buckle connection.
[0097] The sound equipment supporting frame 10 of the embodiment is mainly suitable for the sound equipment 20 with a relatively large length, and the sound equipment supporting frame 10 also has a relatively long length, which is not conducive to the storage and transportation of the sound equipment supporting frame 10. In the embodiment, the frame body 1 is divided into the first supporting part 12, the second supporting part 13, and the second connecting part 14, and the length of each part is relatively shorter, which is more conducive to the storage and transportation. When the sound equipment supporting frame 10 needs to be installed, the first supporting part 12 and the second supporting part 13 are connected into a whole through the second connecting part 14, so that the sound equipment supporting frame 10 can have a sufficient length to install the sound equipment 20.
[0098] Please refer to Figure 9 In some embodiments of the present application, the sound equipment supporting frame 10 further comprises a buffer 16, and at least one side of the frame body 1 is provided with the buffer 16. The sound equipment supporting frame 10 of the embodiment further comprises the buffer 16, which can reduce the resonance between the sound equipment 20, the supporting frame, and the installation wall caused by the sound of the sound equipment 20, avoid causing noise, and also has the effect of protecting the sound equipment 20 and the wall from being worn. The buffer 16 can be made of foam, foamed plastic, or the like. The buffer 16 can be arranged on one side or both sides of the frame body 1. In the embodiments shown in Figure 9 and Figure 10 In the embodiments shown in
[0099] Please refer to Figures 1 to 10 Based on the sound equipment supporting frame 10, the present application further provides a sound equipment 20 kit comprising:
[0100] The sound equipment 20 has an equalizer optimization function;
[0101] The sound equipment supporting frame 10 of each of the above embodiments; the sound equipment 20 is arranged on the sound equipment 20 installation side of the sound equipment supporting frame 10;
[0102] When the trigger 2 is in the first position, the trigger 2 can trigger the sound equipment 20 to start the equalizer optimization function;
[0103] When the trigger 2 is in the second position, the trigger 2 cannot trigger the sound equipment 20 to start the equalizer optimization function.
[0104] The sound equipment 20 kit of the embodiment includes the sound equipment 20 and the sound equipment support 10. The sound equipment 20 is built-in with the equalizer optimization function. The equalizer setting can be automatically adjusted according to the actual environment of the sound equipment 20, so as to ensure the best sound quality effect in any environment. The sound equipment support 10 includes the support body 1 and the trigger 2. The support body 1 is the main structure of the sound equipment support 10, and is mainly used to provide sufficient stable support for the sound equipment 20. The trigger 2 is used to trigger the equalizer optimization function. The trigger 2 is a component that can adjust the relative position of the support body 1, so as to be switched to the first position or the second position. It is particularly emphasized that the position here not only includes the coordinates of the trigger 2, but also includes the direction of the trigger 2, that is, the trigger 2 can be different in coordinates, different in direction, or different in both coordinates and direction when it is in the first position and the second position respectively.
[0105] When the trigger 2 is in the first position, the trigger 2 can trigger the sound equipment 20 arranged on the support body 1 to start the equalizer optimization function. When the trigger 2 is in the second position, the trigger 2 cannot trigger the sound equipment 20 arranged on the support body 1 to start the equalizer optimization function. That is, after the sound equipment 20 is installed on the sound equipment support 10, the position of the trigger 2 can be adjusted to select whether the sound equipment 20 starts the equalizer optimization function. If the user wants the sound equipment 20 to start the equalizer optimization function, the trigger 2 is adjusted to the first position. If the user does not want the sound equipment 20 to start the equalizer optimization function, the trigger 2 is adjusted to the first position. The user can choose whether to trigger the sound according to personal needs.
[0106] In some embodiments of the present application, the magnet 21 of the trigger 2 has a first magnetic pole; the sound equipment 20 has a Hall effect sensor, and the sound equipment 20 is configured to start the equalizer optimization function when the magnetic field of the first magnetic pole is detected.
[0107] The sound bar 20 is internally integrated with a Hall effect sensor, which is a magnetic field detection device based on the Hall effect. When the Hall effect sensor can detect the presence of the magnetic field of a certain magnetic pole and generate a corresponding electrical signal. The sound bar 20 is specially configured to automatically turn on the equalizer optimization function when the Hall effect sensor detects the magnetic field of the first magnetic pole. This means that when the magnet 21 on the trigger piece 2 is close to the sound bar 20 and in the correct magnetic pole direction, the sound bar 20 will automatically adjust its equalizer parameters, so that the sound bar 20 better adapts to the current environment in which the sound bar 20 is located. For example, for a sound bar 20 that needs to be wall-mounted, the sound bar support 10 can adopt a wall-mounted support, and the corresponding sound bar 20 includes an equalizer optimization function for the wall-mounted state of the sound bar 20. When the trigger piece 2 is in the first position, it can trigger the sound bar 20 to start the equalizer optimization function for the wall-mounted state, so that the sound bar 20 has better sound quality in the wall-mounted state. For example, for a sound bar 20 that needs to be installed using a floor stand, the sound bar support 10 can adopt a floor stand, and the corresponding sound bar 20 includes an equalizer optimization function for the floor-mounted state of the sound bar 20. When the trigger piece 2 is in the first position, it can trigger the sound bar 20 to start the equalizer optimization function for the floor-mounted state, so that the sound bar 20 has better sound quality in the floor-mounted state. The sound bar 20 can include but is not limited to the Sonos Arc sound bar of the Sonos company.
[0108] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. Any modifications, equivalent replacements and improvements made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A speaker stand, characterized in that, The speaker bracket includes: Frame; the frame is used to mount speakers with equalizer optimization function; A trigger; the trigger is disposed on the frame, and the trigger has a first position and a second position that can be switched relative to the frame; When the trigger is in the first position, the trigger can trigger the audio equalizer optimization function set on the frame. When the trigger is in the second position, the trigger cannot trigger the audio equalizer optimization function set on the frame.
2. The speaker stand as described in claim 1, characterized in that, The trigger includes a magnet having a first magnetic pole that triggers the audio start-up equalizer optimization function. When the trigger is in the first position, the first magnetic pole faces the speaker mounting side of the frame; When the trigger is in the second position, the first magnetic pole is away from the speaker mounting side.
3. The speaker stand as described in claim 2, characterized in that, The trigger also includes a flexible component, the magnet is disposed within the flexible component, and the frame has a first groove with an opening facing the speaker mounting side; The flexible component has a first side and a second side, the first side being the opposite side of the second side, and the first magnetic pole facing the first side; When the trigger is in the first position, the second side of the flexible member is embedded in the first groove so that the first magnetic pole faces the speaker mounting side of the frame. When the trigger is in the second position, the first side of the flexible member is embedded in the first groove so that the first magnetic pole is away from the speaker mounting side.
4. The speaker stand as described in claim 3, characterized in that, The flexible component includes a main body, a handle, and a first connecting part. The first connecting part is connected between the main body and the handle. The first connecting part has a first limiting groove on the first side and a second limiting groove on the second side. The main body is embedded in the first groove, and the frame has a limiting part located on one side of the first groove; When the trigger is in the first position, the limiting part is embedded in the second limiting groove; When the trigger is in the second position, the limiting part is embedded in the first limiting groove.
5. The speaker stand as described in claim 4, characterized in that, A first mark is provided on the first side of the flexible component, and the first mark is used to indicate that the trigger is in the first position; A second mark is provided on the second side of the handle, the second mark being used to indicate that the trigger is in the second position.
6. The speaker stand as described in claim 3, characterized in that, The flexible member has a second groove, the magnet is disposed in the second groove, the second groove has an opening for the magnet to be inserted into the second groove, and the second groove is configured to have the opening facing upward when the trigger is in the first position and the second position.
7. The speaker stand as described in any one of claims 1-6, characterized in that, The frame includes a first support part, a second support part, and a second connecting part. One end of the second connecting part is detachably connected to the first support part, and the other end of the second connecting part is detachably connected to the second support part. Both the first bracket portion and the second bracket portion are provided with mounting portions for mounting the speaker, and at least one of the first bracket portion and the second bracket portion is provided with the trigger element.
8. The speaker stand as described in any one of claims 1-6, characterized in that, The speaker bracket also includes a buffer, which is provided on at least one side of the bracket.
9. A sound system kit, characterized in that, The audio kit includes: The speaker system features an equalizer optimization function. The speaker bracket according to any one of claims 1-8; the speaker is disposed on the speaker mounting side of the speaker bracket; When the trigger is in the first position, the trigger can trigger the audio equalizer optimization function. When the trigger is in the second position, the trigger cannot activate the audio equalizer optimization function.
10. The audio kit as claimed in claim 9, characterized in that, The magnet of the trigger has a first magnetic pole; the speaker has a Hall effect sensor and is configured to activate the equalizer optimization function when the magnetic field of the first magnetic pole is detected.