Speakers and electronic systems

By integrating ECG and PPG detection modules into the speaker and setting up a partition structure within the shell assembly, the problem that existing speakers cannot monitor health data in real time is solved, the combination of sound amplification and health monitoring is achieved, and the comfort and convenience of using the speaker are improved.

CN115550766BActive Publication Date: 2025-09-16GEER TECH CO LTD
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Patent Information

Application Number
CN202110731618.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-06-29
Publication Date
2025-09-16
Estimated Expiration
2041-06-29

AI Technical Summary

Technical Problem

Existing smart speakers are unable to monitor human health data, such as electrocardiogram and heart rate, in real time, and cannot meet the needs of real-time health monitoring.

Method used

The ECG and PPG detection modules are integrated into the speaker. By setting spaced installation cavities and accommodating cavities in the shell assembly and passing through a through cavity between the two, the speaker assembly and the detection assembly are separated to avoid mutual interference. At the same time, sound outlet holes and through holes are set on the shell assembly to achieve sound amplification and health status monitoring.

Benefits of technology

It realizes the combination of the speaker's sound amplification function and real-time health monitoring, improves the comfort and convenience of using the speaker, and meets the needs of real-time monitoring of human health status.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a speaker and an electronic system, wherein the speaker includes a shell assembly, a speaker assembly, and a detection assembly. The shell assembly is provided with an installation cavity, a receiving cavity, and a through cavity between the installation cavity and the receiving cavity. The through cavity is provided through the shell assembly. The shell assembly is also provided with a sound outlet connecting the installation cavity and the through cavity, and a through hole connecting the receiving cavity and the through cavity. The speaker assembly is provided in the installation cavity, and the detection assembly is provided in the receiving cavity and is provided corresponding to the through hole. The detection assembly is used to detect health status parameters. The present invention aims to provide a speaker that is convenient for real-time monitoring of human health. The speaker can not only realize real-time monitoring of human health status, but also realize sound amplification to improve the effect of the speaker.
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Description

Technical Field

[0001] The present invention relates to the technical field of speaker boxes, and in particular to a speaker box and an electronic system using the speaker box. Background Art

[0002] Smart speakers are becoming increasingly popular, and their functions are becoming increasingly diverse. However, in related technologies, smart speakers are generally unable to measure data such as a person's electrocardiogram (ECG) and heart rate, failing to meet the needs of real-time monitoring of human health. Summary of the Invention

[0003] The main purpose of the present invention is to provide a speaker and an electronic system, aiming to provide a speaker that is convenient for real-time monitoring of human health. The speaker can not only realize real-time monitoring of human health status, but also can amplify sound to improve the effect of the speaker.

[0004] To achieve the above object, the present invention provides a speaker, comprising:

[0005] A housing assembly, the housing assembly being provided with a mounting cavity, a receiving cavity, and a through cavity located between the mounting cavity and the receiving cavity, the through cavity being provided through the housing assembly, the housing assembly being further provided with a sound outlet hole communicating with the mounting cavity and the through cavity, and a through hole communicating with the receiving cavity and the through cavity;

[0006] a speaker assembly, the speaker assembly being disposed in the mounting cavity; and

[0007] A detection component is arranged in the accommodating cavity and corresponds to the through hole, and is used to detect health status parameters.

[0008] In one embodiment, the housing assembly comprises:

[0009] a housing, the housing being provided with a cavity and two communication ports communicating with the cavity; and

[0010] The support is arranged in the cavity and divides the cavity into the installation cavity and the accommodating cavity. The support is provided with the through cavity, the sound outlet hole and the through hole. The two ends of the through cavity are respectively connected with the two communication ports.

[0011] In one embodiment, the shell assembly also includes a sound cavity shell, which is arranged in the installation cavity and connected to the support. The sound cavity shell is provided with a sound cavity and an opening connected to the sound cavity. The opening is arranged corresponding to the sound outlet hole, and part of the speaker assembly extends into the sound cavity through the opening.

[0012] In one embodiment, the housing includes a first housing and a second housing that are detachably connected, the first housing and the second housing enclose the cavity, the second housing is provided with two communicating ports, and the support is connected to the second housing;

[0013] And / or, a mounting groove is provided on a side of the support facing the accommodating cavity, the through hole passes through the bottom wall of the mounting groove, and at least a portion of the detection component is accommodated and confined in the mounting groove;

[0014] And / or, a limiting groove is provided on a side of the support facing the through cavity, the through hole is provided on the bottom wall of the limiting groove, and at least part of the detection component is provided in the limiting groove.

[0015] In one embodiment, the through hole comprises a plurality of holes, and the detection component comprises:

[0016] a mainboard, the mainboard being disposed in the accommodating cavity; and

[0017] An ECG module, comprising a plurality of electrode plates and a plurality of elastic pieces, each of the electrode plates being arranged in a through hole, each of the elastic pieces being arranged between the main board and an electrode plate, and being connected to the main board and an electrode plate, and the ECG module being used to measure an electrocardiogram; and / or a PPG module, comprising a transmitting lamp, a receiving lamp and a transparent plate, the transmitting lamp and the receiving lamp being arranged at intervals on the main board and being electrically connected to the main board, the transparent plate being arranged in a through hole and being arranged corresponding to the receiving lamp and the transmitting lamp, and the PPG module being used to measure blood pressure, blood oxygen and heart rate.

[0018] In one embodiment, each of the elastic pieces comprises:

[0019] A fixing section connected to the main board, wherein two limiting protrusions are provided on a side of the fixing section facing away from the main board, the two limiting protrusions are arranged opposite to each other, and each limiting protrusion is provided with a limiting hole;

[0020] a bending section, wherein the bending section is formed by bending one end of the fixed section toward a side away from the main board;

[0021] an elastic segment, the elastic segment being formed by extending from one end of the bending segment away from the fixed segment toward a direction away from the fixed segment, the end of the elastic segment away from the bending segment being connected to one of the electrode plates; and

[0022] The limiting section is formed by bending one end of the elastic section away from the bending section and extending toward the fixed section. The end of the limiting section away from the elastic section is located between the two limiting protrusions, and a protrusion is provided corresponding to each limiting hole, and the protrusion is passed through the limiting hole.

[0023] In one embodiment, the through cavity is configured in a trumpet shape or an expanded shape.

[0024] In one embodiment, the speaker further includes a charging coil, which is disposed in the accommodating cavity and spaced apart from the detection component. The charging coil is used to wirelessly charge the mobile terminal.

[0025] In one embodiment, the speaker further includes a display screen, which is connected to the housing assembly and electrically connected to the detection assembly.

[0026] The present invention further provides an electronic system, comprising a device body and the above-mentioned speaker, wherein the speaker is connected to the device body in a signal or communication connection.

[0027] The speaker box of the technical solution of the present invention can use the installation cavity and the accommodating cavity to install and protect the speaker assembly, and use the accommodating cavity to install and protect the detection assembly by arranging an installation cavity and the accommodating cavity between the installation cavity and the accommodating cavity, so as to effectively separate the speaker assembly and the detection assembly by using the accommodating cavity, so as to avoid mutual interference between the two and affect each other's performance; at the same time, a sound outlet hole connecting the installation cavity and the accommodating cavity is provided on the shell assembly, so that the sound outlet hole can transmit the sound generated by the speaker assembly in the installation cavity to the accommodating cavity, so as to achieve a sound amplification effect by using the accommodating cavity; further, a through hole connecting the accommodating cavity and the through cavity is provided on the shell assembly, so that the detection assembly is arranged corresponding to the through hole, so that users can use the detection assembly to realize real-time monitoring of human health status. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.

[0029] Figure 1 This is a schematic structural diagram of a speaker in one embodiment of the present invention;

[0030] Figure 2 is an exploded schematic diagram of a speaker in one embodiment of the present invention;

[0031] Figure 3 is a cross-sectional schematic diagram of a speaker box according to an embodiment of the present invention;

[0032] Figure 4 This is a structural diagram of a support in one embodiment of the present invention;

[0033] Figure 5 A structural schematic diagram of a support from another perspective in one embodiment of the present invention;

[0034] Figure 6 A schematic structural diagram of a detection component in one embodiment of the present invention;

[0035] Figure 7 is an exploded schematic diagram of a detection component in one embodiment of the present invention;

[0036] Figure 8 Schematic diagram of the structure of the elastic member in one embodiment of the present invention.

[0037] Description of Figure Numbers:

[0038] Label name Label name 100 speakers 3 Detection components 1 Housing assembly 31 motherboard 1a Mounting cavity 32 ECG module 1b Accommodation cavity 321 electrode plates 11 case 322 Shrapnel 111 cavity 3221 Fixed segment 112 First shell 3222 Limiting convex part 113 Second shell 3223 Limiting hole 114 Connecting port 3224 Bend section 12 Support 3225 Elastic segment 121 Through cavity 3226 Limit section 122 Sound hole 3227 raised part 123 through-hole 33 PPG module 124 Mounting slot 331 Transmitter 125 Limit slot 332 Receiving light 13 Sound cavity shell 323 Transparent board 131 sound cavity 4 Charging coil 132 Opening 5 Display 2 Speaker assembly

[0039] The purpose, features and advantages of the present invention will be further described with reference to the accompanying drawings and in conjunction with the embodiments. DETAILED DESCRIPTION

[0040] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0041] It should be noted that all directional indications in the embodiments of the present invention (such as up, down, left, right, front, back, etc.) are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.

[0042] At the same time, the meaning of "and / or" or "and / or" appearing in the full text includes three options. Taking "A and / or B" as an example, it includes option A, or option B, or an option in which both A and B are satisfied.

[0043] In addition, in the present invention, descriptions such as "first" and "second" are for descriptive purposes only and should not be understood as indicating or implying their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of such features. In addition, the technical solutions between the various embodiments can be combined with each other, but this must be based on the fact that they can be implemented by ordinary technicians in this field. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0044] Smart speakers are becoming increasingly popular, and their functionality is becoming increasingly diverse. However, existing smart speakers are typically unable to measure data such as electrocardiograms (ECGs) and heart rates, failing to meet the need for real-time health monitoring. Integrating ECG and PPG sensors into speakers could enable real-time monitoring of a person's health and enhance user comfort.

[0045] Based on the above concepts and problems, the present invention proposes a speaker 100. It is understood that the speaker 100 can be used independently, or it can be connected to an electronic system through a signal or communication connection, thereby enabling the electronic system to control the speaker 100 or interact with the speaker 100, etc., without limitation. Alternatively, the speaker 100 can be a portable speaker, a home speaker, etc., without limitation.

[0046] Please refer to Figures 1 to 3 As shown, in an embodiment of the present invention, the speaker assembly 100 includes a shell assembly 1, a speaker assembly 2 and a detection assembly 3, wherein the shell assembly 1 is provided with an installation cavity 1a, a receiving cavity 1b and a through cavity 121 located between the installation cavity 1a and the receiving cavity 1b, the through cavity 121 is arranged through the shell assembly 1, the shell assembly 1 is also provided with a sound outlet hole 122 connecting the installation cavity 1a and the through cavity 121 and a through hole 123 connecting the receiving cavity 1b and the through cavity 121, the speaker assembly 2 is arranged in the installation cavity 1a, the detection assembly 3 is arranged in the receiving cavity 1b, and is arranged corresponding to the through hole 123, and the detection assembly 3 is used to detect health status parameters.

[0047] In this embodiment, the shell assembly 1 of the speaker 100 is used to install, fix and support the speaker assembly 2, the detection assembly 3 and other components of the speaker 100, that is, the shell assembly 1 provides an installation base for the speaker assembly 2, the detection assembly 3 and other components of the speaker 100. It can be understood that the shell assembly 1 can be a shell, a cylinder, a box, etc. with an installation space, which is not limited here. By providing the installation cavity 1a and the accommodating cavity 1b spaced apart in the shell assembly 1, the speaker assembly 2 and the detection assembly 3 are installed using the installation cavity 1a and the accommodating cavity 1b respectively, so as to avoid the speaker assembly 2 and the detection assembly 3 from interfering with each other during operation, so as to affect each other's working performance.

[0048] Understandably, Figures 1 to 3 As shown, through cavity 121 is provided through housing assembly 1, that is, at least one end of through cavity 121 is connected to the outside. Through cavity 121 is located between mounting cavity 1a and accommodating cavity 1b, and is used to separate mounting cavity 1a and accommodating cavity 1b. That is, mounting cavity 1a and accommodating cavity 1b are located on either side of through cavity 121.

[0049] In this embodiment, by providing a sound outlet hole 122 that connects the mounting cavity 1a and the through cavity 121, the sound emitted by the speaker assembly 2 in the mounting cavity 1a is transmitted to the through cavity 121 through the sound outlet hole 122, and then conducted to the outside world by the through cavity 121, thereby achieving the sound effect of the speaker 100. It can be understood that by providing the sound outlet hole 122 on the upper surface of the through cavity 121 and arranging the speaker assembly 2 corresponding to the sound outlet hole 122, on the one hand, the through cavity 121 can be used to hide the sound outlet hole 122, thereby improving the appearance of the speaker 100 and preventing dust and the like from entering the speaker 100 through the sound outlet hole 122; on the other hand, the structure of the through cavity 121 can be used to amplify the sound emitted by the speaker assembly 2.

[0050] Optionally, the through cavity 121 is configured in a trumpet or flared shape. As will be appreciated, configuring the through cavity 121 in a trumpet or flared shape facilitates the sound amplification effect achieved by the through cavity 121, thereby improving the sound quality of the speaker 100. In this embodiment, the through hole 123 is located at the end of the through cavity 121 with the larger opening, making it easier for users to detect health status parameters.

[0051] In this embodiment, by providing a through hole 123 on the housing assembly 1 that connects the accommodating cavity 1b and the through cavity 121, the detection component 3 disposed in the accommodating cavity 1b is disposed corresponding to the through hole 123, thereby facilitating the user to monitor the human health status in real time through the detection component 3 at the through hole 123, thereby improving the convenience of use of the speaker 100. It can be understood that by disposing the detection component 3 in the accommodating cavity 1b and exposing it at the through hole 123 of the through cavity 121, the aesthetic appearance of the speaker 100 is effectively improved.

[0052] It is understood that the housing assembly 1 can be a one-piece structure, which can improve the structural strength and aesthetic appearance of the housing assembly 1. Of course, in order to facilitate the disassembly, modification, and maintenance of the speaker assembly 2 and other components of the speaker 100, the housing assembly 1 can also be a split structure. For example, the housing assembly 1 can be divided into two parts and connected to form a one-piece structure by a detachable connection method. This is not limited here.

[0053] The speaker 100 of the present invention can use the installation cavity 1a and the accommodating cavity 1b to install and protect the speaker assembly 2, and use the accommodating cavity 1b to install and protect the detection assembly 3 by setting an interval between the installation cavity 1a and the accommodating cavity 1b. By setting a through cavity 121 that runs through the shell assembly 1 between the installation cavity 1a and the accommodating cavity 1b, the speaker assembly 2 and the detection assembly 3 can be effectively separated by the through cavity 121 to avoid mutual interference between the two and affecting each other's performance; at the same time, a sound outlet hole 122 connecting the installation cavity 1a and the through cavity 121 is provided on the shell assembly 1, so that the sound outlet hole can transmit the sound generated by the speaker assembly 2 in the installation cavity 1a to the through cavity 121, so as to achieve sound generation and sound amplification effects by using the through cavity 121; further, by setting a through hole 123 connecting the accommodating cavity 1b and the through cavity 121 on the shell assembly 1, the detection assembly 3 is set corresponding to the through hole 123, so that the user can use the detection assembly 3 to realize real-time monitoring of human health status.

[0054] In one embodiment, the shell assembly 1 includes a shell 11 and a support 12, wherein the shell 11 is provided with a cavity 111 and two communicating ports 114 communicating with the cavity 111, the support 12 is provided in the cavity 111, and divides the cavity 111 into an installation cavity 1a and a accommodating cavity 1b, the support 12 is provided with a through cavity 121, a sound outlet hole 122 and a through hole 123, and the two ends of the through cavity 121 are respectively connected to the two communicating ports 114.

[0055] In this embodiment, if Figures 1 to 5 As shown, the shell 11 has a cavity 111, and the shell 11 is also provided with a communication port 114 communicating with the cavity 111. The support 12 is provided in the cavity 111, and divides the cavity 111 into an installation cavity 1a and an accommodation cavity 1b. The support 12 is provided with a through cavity 121, that is, the through cavity 121 passes through the support 12, and the two ends of the through cavity 121 are respectively communicated with the two communication ports 114. It can be understood that the support 12 is also provided with a sound outlet 122 and a through hole 123, that is, the sound outlet 122 and the through hole 123 are located on opposite sides of the support 12, so that the sound outlet 122 communicates with the installation cavity 1a and the through cavity 121, and the through hole 123 communicates with the accommodation cavity 1b and the through cavity 121.

[0056] It is understood that the support 12 may be a cylindrical structure having a hollow structure. The support 12 may be a regular cylindrical structure or an elliptical cylindrical structure. Of course, in other embodiments, the support 12 may also be an irregular structure having a hollow structure, which is not limited here. In one embodiment, the support 12 includes two opposing plate-like structures, such that the two plate-like structures are respectively connected to the housing and enclose the housing to form a through cavity 121, etc., which is not limited here.

[0057] In this embodiment, the support 12 has an upper surface and a lower surface that are opposite to each other, and the upper surface and the lower surface of the support 12 are located within the through cavity 121. Optionally, the upper surface and the lower surface of the support 12 are arranged non-parallel, that is, the distance between the upper surface and the lower surface gradually increases or decreases from one end of the through cavity 121 to the other end. This arrangement makes the through cavity 121 flared, and the detection assembly 3 is located at the end of the through cavity 121 with the larger opening, which facilitates the user to detect health status parameters. At the same time, the flared arrangement of the through cavity 121 also facilitates the sound emitted by the speaker assembly 2 to enter the through cavity 121 from the sound outlet 122, and be reflected by the upper and lower surfaces of the through cavity 121, thereby achieving a sound amplification effect.

[0058] In one embodiment, the shell assembly 1 also includes a sound cavity shell 13, which is arranged in the installation cavity 1a and connected to the support 12. The sound cavity shell 13 is provided with a sound cavity 131 and an opening 132 connected to the sound cavity 131. The opening 132 is arranged corresponding to the sound outlet hole 122, and part of the speaker assembly 2 extends into the sound cavity 131 through the opening 132.

[0059] In this embodiment, if Figure 2 and Figure 3 As shown, by disposing a sound cavity shell 13 in the mounting cavity 1a, the sound cavity shell 13 is used to achieve the installation and fixation of the speaker assembly 2. It can be understood that the sound cavity shell 13 is connected to the support 12, that is, a plurality of mounting posts are protruding from the side of the sound cavity shell 13 facing the support 12. The sound cavity shell 13 is connected to the support 12 via the plurality of mounting posts, so that the main structure of the sound cavity shell 13 is spaced apart from the support 12, thereby ensuring the sound effect of the speaker assembly 2.

[0060] As can be understood, the sound cavity housing 13 is provided with a sound cavity 131 communicating with the mounting cavity 1a and an opening 132 communicating with the sound cavity 131. The opening 132 is arranged facing the support 12 and is arranged corresponding to the sound outlet 122. In this way, when the speaker assembly 2 is installed on the side of the sound cavity housing 13 facing the support 12, a portion of the speaker assembly 2 extends through the opening 132 into the sound cavity 131, thereby ensuring the installation stability and sound output effect of the speaker assembly 2. Optionally, the outer contour of the sound cavity housing 13 is similar to the outer contour of the first housing 112.

[0061] In this embodiment, by setting up a sound cavity shell 13, while using the sound cavity shell 13 to fix the speaker assembly 2, the sound cavity 131 of the sound cavity shell 13 and the opening 132 connected to the sound cavity 131 can also be used to achieve a sound focusing effect on the sound of the speaker assembly 2, so that the sound emitted by the speaker assembly 2 is all transmitted toward the sound outlet 122, so as to improve the sound effect of the speaker box 100.

[0062] In one embodiment, if Figures 1 to 3As shown, the housing 11 includes a first housing 112 and a second housing 113 that are detachably connected. The first housing 112 and the second housing 113 enclose a cavity 111 . The second housing 113 is provided with two communication ports 114 . The support 12 is connected to the second housing 113 .

[0063] It is understood that by configuring the housing 11 as a two-part structure consisting of a first housing 112 and a second housing 113, the first housing 112 and the second housing 113 are connected in a detachable manner to form an integral structure, thereby improving the disassembly, replacement, or repair of components such as the speaker assembly 2 and the detection assembly 3. Optionally, the first housing 112 and the second housing 113 can be connected by a snap-fit ​​connection, a plug-fit connection, a screw connection, or a pin connection, etc., which is not limited here.

[0064] In this embodiment, the housing 11 formed by the first housing 112 and the second housing 113 can be cylindrical, spherical, or polygonal, without limitation. Optionally, the first housing 112 is a hemispherical structure, and the second housing 113 includes a base plate and an arcuate enclosure structure connected to the base plate, so that the first housing 112 is connected to the enclosure, that is, the enclosure is connected between the first housing 112 and the base, so that the first housing 112, the enclosure, and the base together form the cavity 111.

[0065] It can be understood that the enclosure of the second shell 113 is provided with two communication openings 114, and the two communication openings 114 are arranged opposite to each other, and the periphery of the support 12 is connected to the enclosure of the second shell 113, so that the two ends of the through cavity 121 are respectively connected to the two communication openings 114. At this time, the support 12 divides the accommodating cavity 111 into two parts of space. The installation cavity 1a is formed above the support 12, that is, it is formed by the first shell 112, the enclosure of the second shell 113 and the support 12, and is used to install the speaker assembly 2. The accommodating cavity 1b is formed below the support 12, that is, it is formed by the bottom plate, the enclosure and the support 12 of the second shell 113, and is used to install the detection assembly 3, etc., which is not limited here.

[0066] In one embodiment, the through hole 123 includes multiple pieces, and the detection component 3 includes a main board 31, an ECG module 32 and / or a PPG module 33, wherein the main board 31 is arranged in the accommodating cavity 1b, the ECG module 32 includes multiple electrode plates 321 and multiple elastic pieces 322, each electrode plate 321 is arranged in a through hole 123, each elastic piece 322 is arranged between the main board 31 and an electrode plate 321, and is connected to the main board 31 and an electrode plate 321, the ECG module 32 is used to measure the electrocardiogram, the PPG module 33 includes a transmitting lamp 331, a receiving lamp 332 and a transparent plate 333, the transmitting lamp 331 and the receiving lamp 332 are arranged at intervals on the main board 31, and are electrically connected to the main board 31, the transparent plate 333 is arranged in a through hole 123, and is arranged corresponding to the receiving lamp 332 and the transmitting lamp 331, and the PPG module 33 is used to measure blood pressure, blood oxygen and heart rate.

[0067] It is understood that the detection component 3 can be composed of a main board 31 and an ECG module 32, so that the main board 31 and the ECG module 32 are electrically connected, so that the detection component 3 can be used to measure the electrocardiogram. Of course, the detection component 3 can be composed of a main board 31 and a PPG module 33, so that the main board 31 and the PPG module 33 are electrically connected, so that the detection component 3 can be used to measure blood pressure, blood oxygen and heart rate.

[0068] In this embodiment, if Figures 2 to 8 As shown, the detection component 3 includes a main board 31, an ECG module 32 and a PPG module 33. The ECG module 32 and the PPG module 33 are both electrically connected to the main board 31, so that the main board 31 of the detection component 3 is used to control the ECG module 32 and the PPG module 33, so that the ECG module 32 is used to measure the electrocardiogram, and the PPG module 33 is used to measure blood pressure, blood oxygen and heart rate, so that the speaker 100 has multiple functions and provides convenience in use.

[0069] In one embodiment, the ECG module 32 includes a plurality of electrode plates 321 and a plurality of spring elements 322. Each electrode plate 321 is connected to the main board 31 via a spring element 322, and each electrode plate 321 is correspondingly disposed within a through hole 123. In this embodiment, the provision of the spring elements 322 allows electrical conduction between the electrode plates 321 and the main board 31 to be achieved, thereby ensuring that after the electrode plates 321 come into contact with the user, the detection signal can be smoothly fed back to the main board 31.

[0070] As can be understood, when a user touches the electrode pads 321 of the ECG module 32, the pads 321 may deform. If used for an extended period, this may lead to poor electrical continuity between the pads 321 and the mainboard 31. Therefore, by providing the spring element 322, the elasticity of the spring element 322 can be utilized to restore the deformation of the pads 321 after extended use, thereby ensuring good electrical continuity between the pads 321 and the mainboard 31. Furthermore, the provision of the spring element 322 helps prevent problems such as poor contact between the pads 321 of the ECG module 32 and the mainboard 31 caused by differences in component heights.

[0071] In one embodiment, the PPG module 33 includes a transmitting lamp 331, a receiving lamp 332, and a transparent plate 333. The transmitting lamp 331 and the receiving lamp 332 are spaced apart from each other on the mainboard 31 and are electrically connected to the mainboard 31. The transparent plate 333 is disposed within the through hole 123 and is positioned corresponding to the receiving lamp 332 and the transmitting lamp 331. Optionally, the transparent plate 333 is a transparent glass structure.

[0072] As will be appreciated, by configuring the transparent plate 333 as a transparent structure, a user can insert a finger into the through cavity 121. When the finger is positioned at the transparent plate 333, the transmitting light 331 transmits a signal to the finger, which is then reflected by the finger to the receiving light 332, which then receives the signal reflected by the finger, thereby enabling blood pressure, blood oxygen, and heart rate testing. As will be appreciated, the transmitting light 331 can be an LED, and the receiving light 332 can be a PD, without limitation. The PPG module 33 can utilize an existing module structure, without limitation.

[0073] In this embodiment, the opening or closing of the PPG module 33 can be controlled by the main board 31, or a control button or touch key can be set on the outer wall of the shell 11 of the speaker 100 to realize the opening or closing of the detection component 3 or the PPG module 33, etc., which is not limited here.

[0074] In one embodiment, if Figure 6 and Figure 8As shown, each elastic piece 322 includes a fixed section 3221, a bent section 3224, an elastic section 3225 and a limiting section 3226 connected in sequence, wherein the fixed section 3221 is connected to the main board 31, and the fixed section 3221 is provided with two limiting protrusions 3222 on the side facing away from the main board 31. The two limiting protrusions 3222 are arranged opposite to each other, and each limiting protrusion 3222 is provided with a limiting hole 3223. The bent section 3224 is formed by bending one end of the fixed section 3221 toward the side facing away from the main board 31, and the elastic section 3225 is formed by bending the bent section 3224. One end away from the fixed section 3221 extends in a direction away from the fixed section 3221, and one end of the elastic section 3225 away from the bending section 3224 is connected to an electrode plate 321. The limiting section 3226 is formed by bending one end of the elastic section 3225 away from the bending section 3224 and extending in the direction of the fixed section 3221. The end of the limiting section 3226 away from the elastic section 3225 is located between the two limiting protrusions 3222, and a protrusion 3227 is provided corresponding to each limiting hole 3223, and the protrusion 3227 is passed through the limiting hole 3223.

[0075] It is understandable that the fixed section 3221 , the bending section 3224 , the elastic section 3225 and the limiting section 3226 may be an integrally formed structure, which can improve the structural strength of the elastic piece 322 and facilitate the processing of the elastic piece 322 .

[0076] In this embodiment, the fixed section 3221 of the elastic member 322 has a plate-like or sheet-like structure, and the bent section 3224 has a U-shaped structure. One end of the bent section 3224 is connected to the fixed section 3221, and the other end is connected to the elastic section 3225. This allows the elastic section 3225 to be elastically deformable relative to the fixed section 3221 via the bent section 3224. It will be appreciated that the elastic section 3225, the bent section 3224, and the fixed section 3221 are sequentially connected to form a V-shaped structure, which is not limited here.

[0077] As can be understood, the limiting section 3226 is formed by bending one end of the elastic section 3225 away from the bent section 3224 and extending toward the fixed section 3221. The end of the limiting section 3226 away from the elastic section 3225 is located between the two limiting protrusions 3222 and is spaced apart from the fixed section 3221, thereby ensuring the deformability of the elastic section 3225. By providing a protrusion 3227 on the limiting section 3226 so that the protrusion 3227 is inserted into the limiting hole 3223, the limiting protrusion 3222 of the fixed section 3221 is used to limit the deformation of the elastic section 3225, thereby preventing the elastic section 3225 from being deformed too much during reset, which would affect the connection stability between the elastic section 3225 and the electrode plate 321.

[0078] In this embodiment, the spring element 322 can sequentially achieve electrical conduction between the electrode plate 321 and the main board 31 through the fixed section 3221, the bent section 3224, and the elastic section 3225. When a user touches the electrode plate 321, the electrode plate 321 deforms, pushing the elastic section 3225 of the spring element 322 to deform as well, causing the elastic section 3225 to drive the limiting section 3226 toward the fixed section 3221. At this time, the electrode plate 321 is still electrically connected to the main board 31 through the elastic section 3225, the bent section 3224, and the fixed section 3221. At the same time, when the end of the limiting section 3226 away from the elastic section 3225 abuts the fixed section 3221, the electrode plate 321 can also be electrically connected to the main board 31 through the limiting section 3226 and the fixed section 3221.

[0079] It can be understood that when the external force disappears, the electrode plate 321 and the elastic section 3225 recover and reset, and the elastic section 3225 drives the limiting section 3226 to move toward the end away from the fixed section 3221, so that the limiting section 3226 is spaced from the end of the elastic section 3225 and the fixed section 3221 (that is, it does not abut against the fixed section 3221). At this time, the protrusion 3227 plays a certain limiting role in the reset of the elastic section 3225, thereby preventing the electrode plate 321 and the elastic section 3225 from recovering and resetting due to excessive deformation, which may damage the electrode plate 321 or cause the electrode plate 321 to detach from the through hole 123. At this time, the electrode plate 321 is still electrically connected to the main board 31 through the elastic section 3225, the bending section 3224 and the fixed section 3221, thereby ensuring that the electrode plate 321 and the main board 31 are electrically connected.

[0080] In one embodiment, if Figure 5 As shown, a mounting groove 124 is provided on one side of the support 12 facing the accommodating cavity 1 b , and a through hole 123 passes through the bottom wall of the mounting groove 124 , so that at least part of the detection component 3 is accommodated and confined in the mounting groove 124 .

[0081] In this embodiment, a mounting groove 124 is provided on the support 12, thereby facilitating the secure mounting of the mainboard 31 of the detection assembly 3. As will be appreciated, the through-hole 123 extends through the bottom wall of the mounting groove 124. This facilitates the connection between the spring element 322 of the ECG module 32 and the electrode plate 321 and the mainboard 31, and also facilitates the transmission of signals by the transmitting light 331 of the PPG module 33 and the reception of signals by the receiving light 332. Optionally, the shape and contour of the mounting groove 124 are similar to those of the mainboard 31.

[0082] In one embodiment, if Figure 2 and Figure 4 As shown, a limiting groove 125 is provided on one side of the support 12 facing the through cavity 121 , a through hole 123 is provided on the bottom wall of the limiting groove 125 , and at least part of the detection component 3 is provided in the limiting groove 125 .

[0083] As will be appreciated, by providing the retaining groove 125 on the support 12, the through hole 123 is located on the bottom wall of the retaining groove 125, thereby utilizing the retaining groove 125 to achieve position-limited installation of the transparent plate 333 / electrode plate 321 of the detection assembly 3. Optionally, there are multiple retaining grooves 125, and the shape and profile of the retaining grooves 125 are similar to the shape and profile of the transparent plate 333 / electrode plate 321. In this embodiment, the retaining groove 125 and the mounting groove 124 are located on opposite surfaces of the support 12.

[0084] In one embodiment, the speaker 100 further includes a charging coil 4 , which is disposed in the accommodating cavity 1 b and spaced apart from the detection component 3 . The charging coil 4 is used to wirelessly charge the mobile terminal.

[0085] In this embodiment, if Figure 2 and Figure 3 As shown, by arranging a charging coil 4 in the accommodating cavity 1b of the speaker 100, the charging coil 4 is fixedly mounted on the side of the support 12 facing the accommodating cavity 1b, so that the charging coil 4 can be used to wirelessly charge the mobile terminal.

[0086] Understandably, Figure 4 and Figure 5 As shown, the side of the support 12 facing the accommodating cavity 1b is raised toward the through cavity 121, so that a groove is formed on the side of the support 12 facing the accommodating cavity 1b. The charging coil 4 is accommodated and restrained in the groove, thereby facilitating charging of a mobile terminal (such as a mobile phone) placed in the through cavity 121. In this embodiment, the charging coil 4 and the mainboard 31 of the detection component 3 are electrically connected to the power supply or control circuit of the speaker 100.

[0087] In one embodiment, the speaker 100 further includes a display screen 5 , which is connected to the housing assembly 1 and electrically connected to the detection assembly 3 .

[0088] Understandably, Figures 1 to 3 As shown, by setting up a display screen 5, the display screen 5 is electrically connected to the detection component 3, so that the display screen 5 can be used to conveniently display the human health data monitored in real time by the detection component 3, such as electrocardiogram, heart rate and other data.

[0089] In this embodiment, if Figure 2 and Figure 3 As shown, the display screen 5 is connected to the first housing 112 of the housing assembly 1. It can be understood that the display screen 5 can be fixedly provided on the first housing 112 or movably provided on the first housing 112, which is not limited here.

[0090] like Figure 2 and Figure 3As shown, in one embodiment, a rotating shaft is provided on the display screen 5, a mounting column is provided on the shell assembly 1, and a rotating cavity connected to the mounting cavity 1a is provided on the mounting column, so that the rotating shaft rotates and passes through the rotating cavity, thereby utilizing the mounting column to install and fix the display screen 5, and at the same time, the rotating shaft rotates and passes through the rotating cavity, so that the display screen 5 is rotatably connected to the mounting column, thereby realizing that the display screen 5 is rotated relative to the mounting column and the shell assembly 1 through the rotating shaft, so as to present the display screen 5 as a horizontal screen or a vertical screen, so that the user can use it according to needs, thereby improving the user's convenience.

[0091] It is understood that by providing a rotating cavity on the mounting post that communicates with the mounting cavity 1a, the display screen 5 can be electrically connected to the speaker assembly 2 within the mounting cavity 1a through the rotating cavity, effectively avoiding issues such as exposed cables affecting the appearance. In this embodiment, the display screen 5 can be electrically connected to the speaker assembly 2 via a cable passing through the rotating cavity and the mounting cavity 1a. Of course, in other embodiments, contacts can be provided within the rotating cavity to electrically connect the contacts to the speaker assembly 2, and contact pieces can be provided on the rotating shaft of the display screen 5. In this way, when the rotating shaft of the display screen 5 passes through the rotating cavity, the contact pieces and the contacts are electrically connected, thereby achieving electrical connection between the display screen 5 and the speaker assembly 2.

[0092] In this embodiment, the display screen 5 is also provided with a microphone structure, so that the user can realize voice interaction with the speaker 100 through the microphone structure, for example, the microphone structure can be used to control the playback content of the speaker 100, such as playing music, novels, or other contents, without limitation. Of course, the microphone structure can also be used to realize the on / off mode, sleep mode, etc. of the speaker 100.

[0093] It is understood that the display screen 5 is also provided with a camera, so that functions such as identification or taking pictures can be realized through the camera, which is not limited here. In this embodiment, a driving structure can also be provided so that the driving structure is connected to the rotating shaft of the display screen 5, so that the display screen 5 of the speaker 100 can be automatically rotated and adjusted. For example, through the cooperation of the microphone structure and the camera, the display screen 5 can automatically adjust and rotate according to the user's voice and position, etc., which is not limited here.

[0094] In order to facilitate the adjustment of the height and angle of the display screen 5, in this embodiment, the shell assembly 1 also includes a rotating bracket and a driving assembly. The first shell 112 is provided with a rotating port connected to the installation cavity 1a. The rotating bracket includes a rotating shell movably arranged between the first shell 11 and the sound cavity shell 13 and a mounting column protruding from the rotating shell. The rotating shell is transmission-connected to the driving assembly. One end of the mounting column movably passes through the rotating port and is connected to the rotating shaft. The driving assembly is arranged on the support 12. In this way, the driving assembly can be used to drive the rotating shell to drive the mounting column and the display screen 5 to move along the rotating port to adjust the angle or height of the display screen 5.

[0095] Optionally, the rotating opening is arranged in a strip or arc shape. It is understood that the driving component can be a driving motor, a driving motor with a gear transmission structure, or a driving motor with a screw, etc., as long as the driving component can drive the rotating housing to drive the mounting column and the display screen 5 to move along the rotating opening to adjust the angle or height of the display screen 5, and the structure is not limited here.

[0096] In one embodiment, if Figure 2 As shown, the driving assembly includes a driving member, a driving gear and a driven gear. The driving member is arranged on the support 12, the driving gear is connected to the output shaft of the driving member, and the driven gear is connected to the rotating shell and meshed with the driving gear.

[0097] It can be understood that the rotating shell is rotatably connected to the support 12 through a hole-axis structure, and the driven gear is provided on a rotating shaft of the rotating shell. In this way, when the driving member drives the driving gear to drive the driven gear to rotate, the driven gear drives the rotating shell to rotate, so that the rotating shell rotates around the two rotating holes on the support 12, thereby causing the mounting column to drive the display screen 5 to move along the rotating opening.

[0098] The speaker 100 of the present invention provides a trumpet-shaped through cavity 121 on the housing 11. A sound outlet 122 is provided connecting the mounting cavity 1a and the through cavity 121. This allows for sound amplification using the through cavity 121. Furthermore, one end of the trumpet-shaped through cavity 121 is opened wider, allowing the user to place their finger on the detection component 3 within the through cavity 121. Furthermore, the detection component 3 and charging coil 4 are provided, allowing the through cavity 121 to contain a PPG-ECG sensor and wireless charging structure, meeting the user's needs for mobile phone charging and health management.

[0099] In this embodiment, the detection component 3 has three ECG modules 32 and one PPG module 33. The ECG module 32 can be used to measure the electrocardiogram, and the PPG module 33 can be used to test blood pressure, blood oxygen and heart rate. By setting a spring piece 322 between the electrode plate 321 of the ECG module 32 and the main board 31, the spring piece 322 can be used to eliminate poor contact caused by the height difference of the parts. It can be understood that by forming a boss in the middle of the side of the support 12 facing the through cavity 121, and forming a groove on the side of the boss facing the accommodating cavity 1b, the charging coil 4 is installed by limiting the groove, so that the charging coil 4 can be used to realize the wireless charging service of the mobile phone, so that the speaker 100 has multiple functions and the convenience of use of the speaker 100 is improved.

[0100] The present invention also provides an electronic system comprising a device body and a speaker 100, which is connected to the device body for signal or communication. The specific structure of the speaker 100 is similar to that of the aforementioned embodiments. Since this electronic system utilizes all the technical solutions of all the aforementioned embodiments, it possesses at least all the beneficial effects of the technical solutions of the aforementioned embodiments, and therefore will not be further elaborated here.

[0101] It is understood that the device body can be a computer, cloud or server, etc., which can play the content of the speaker 100, such as music, TV, advertisements and other voice information. Of course, the data detected by the detection component 3 in the speaker 100 can also be saved, compared, analyzed, etc. through the device body, which is not limited here.

[0102] The above descriptions are merely optional embodiments of the present invention and do not limit the patent scope of the present invention. All equivalent structural transformations made based on the contents of the present invention's description and drawings, or direct / indirect applications in other related technical fields, are included in the patent protection scope of the present invention.

Claims

1. A speaker, characterized in that: The speaker includes: A housing assembly, the housing assembly being provided with a mounting cavity, a receiving cavity, and a through cavity located between the mounting cavity and the receiving cavity, the through cavity being provided through the housing assembly, the housing assembly being further provided with a sound outlet hole communicating with the mounting cavity and the through cavity, and a through hole communicating with the receiving cavity and the through cavity; a speaker assembly, the speaker assembly being disposed in the mounting cavity; and a detection component, the detection component being disposed in the accommodating cavity and corresponding to the through hole, and being used to detect health status parameters; In which, the shell assembly includes a shell and a support, the shell is provided with a cavity and two communicating ports connected to the cavity, the support is arranged in the cavity and divides the cavity into the installation cavity and the accommodating cavity, the support is provided with the through cavity, the sound outlet and the through hole, and the two ends of the through cavity are respectively connected to the two communicating ports.

2. The speaker as claimed in claim 1, wherein: The shell assembly also includes a sound cavity shell, which is arranged in the installation cavity and connected to the support. The sound cavity shell is provided with a sound cavity and an opening connected to the sound cavity. The opening is arranged corresponding to the sound outlet hole, and part of the speaker assembly extends into the sound cavity through the opening.

3. The speaker as claimed in claim 1, wherein: The housing comprises a first housing and a second housing that are detachably connected, the first housing and the second housing enclose the cavity, the second housing is provided with two communicating ports, and the support is connected to the second housing; And / or, a mounting groove is provided on a side of the support facing the accommodating cavity, the through hole passes through the bottom wall of the mounting groove, and at least a portion of the detection component is accommodated and confined in the mounting groove; And / or, a limiting groove is provided on a side of the support facing the through cavity, the through hole is provided on the bottom wall of the limiting groove, and at least part of the detection component is provided in the limiting groove.

4. The speaker as claimed in claim 1, wherein: The through holes include a plurality of holes, and the detection component includes: a mainboard, the mainboard being disposed in the accommodating cavity; and An ECG module, comprising a plurality of electrode plates and a plurality of elastic pieces, each of the electrode plates being arranged in a through hole, each of the elastic pieces being arranged between the main board and an electrode plate, and being connected to the main board and an electrode plate, and the ECG module being used to measure an electrocardiogram; and / or a PPG module, comprising a transmitting lamp, a receiving lamp and a transparent plate, the transmitting lamp and the receiving lamp being arranged at intervals on the main board and being electrically connected to the main board, the transparent plate being arranged in a through hole and being arranged corresponding to the receiving lamp and the transmitting lamp, and the PPG module being used to measure blood pressure, blood oxygen and heart rate.

5. The speaker as claimed in claim 4, characterized in that Each of the elastic pieces comprises: A fixing section connected to the main board, wherein two limiting protrusions are provided on a side of the fixing section facing away from the main board, the two limiting protrusions are arranged opposite to each other, and each limiting protrusion is provided with a limiting hole; a bending section, wherein the bending section is formed by bending one end of the fixed section toward a side away from the main board; an elastic segment, the elastic segment being formed by extending from one end of the bending segment away from the fixed segment toward a direction away from the fixed segment, the end of the elastic segment away from the bending segment being connected to one of the electrode plates; and The limiting section is formed by bending one end of the elastic section away from the bending section and extending toward the fixed section. The end of the limiting section away from the elastic section is located between the two limiting protrusions, and a protrusion is provided corresponding to each limiting hole, and the protrusion is passed through the limiting hole.

6. The speaker according to any one of claims 1 to 5, characterized in that The through cavity is arranged in a trumpet shape or an expanded shape.

7. The speaker according to any one of claims 1 to 5, characterized in that The speaker box further includes a charging coil, which is disposed in the accommodating cavity and spaced apart from the detection component. The charging coil is used to wirelessly charge the mobile terminal.

8. The speaker according to any one of claims 1 to 5, characterized in that The speaker box further includes a display screen, which is connected to the housing assembly and electrically connected to the detection assembly.

9. An electronic system, characterized in that: The device comprises a device body and a speaker as claimed in any one of claims 1 to 8, wherein the speaker is connected to the device body in a signal or communication connection.

Citation Information

Patent Citations

  • Indoor health detector ware

    CN206924075U