Heart rate detection earphone and earphone device

By integrating a heart rate detection module into Bluetooth headsets, real-time monitoring of the user's heart rate is achieved, solving the problem of limited functionality in Bluetooth headsets and providing diverse health monitoring functions.

CN224583281UActive Publication Date: 2026-07-31SHENZHEN CANTIANSHU INFORMATION TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN CANTIANSHU INFORMATION TECH CO LTD
Filing Date
2025-07-28
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Existing Bluetooth headsets have limited functionality and cannot meet users' specific needs, especially in terms of health monitoring beyond audio transmission.

Method used

Design a heart rate detection earphone. By integrating an earphone circuit board, an earphone battery module, an earphone speaker module, and a heart rate detection module into the earphone shell, the earphone can detect the user's heart rate in real time while being worn, and transmit audio signals and detection data through the earphone circuit board.

Benefits of technology

Users can obtain health status more accurately and in a timely manner. The headphones have diverse functions to meet users' special needs for health monitoring.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application relates to a heart rate monitoring earphone and earphone device, which includes an earphone shell and earphone functional components. The earphone shell includes an ear hook, a connecting part, and an earphone part. One end of the connecting part is connected to the ear hook, and the other end of the connecting part is connected to the earphone part. The earphone functional components include an earphone circuit board, an earphone battery module, an earphone speaker module, and a heart rate monitoring module. The earphone circuit board and the earphone battery module are both fixedly disposed on the ear hook, and the earphone battery module is electrically connected to the earphone circuit board. The earphone speaker module is fixedly disposed on the earphone part and electrically connected to the earphone circuit board, and the heart rate monitoring module is disposed on the earphone part and electrically connected to the earphone circuit board. This application has the effect of making the earphone more versatile and meeting the special needs of users.
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Description

Technical Field

[0001] This application relates to the field of headphones, and more particularly to a heart rate monitoring headphone and headphone device. Background Technology

[0002] Bluetooth headsets apply Bluetooth technology to hands-free devices, freeing users from the hassle of annoying wires and allowing them to make calls easily in various ways. Since their introduction, Bluetooth headsets have become a great tool for improving efficiency. However, current Bluetooth headsets generally only support audio transmission, which is relatively simple and not suitable for meeting users' special needs. Summary of the Invention

[0003] In order to make the headphones more versatile and meet the special needs of users, this application provides a heart rate monitoring headphone and headphone device.

[0004] The heart rate monitoring earphone and earphone device provided in this application adopt the following technical solution:

[0005] A heart rate monitoring earphone includes an earphone shell and earphone functional components. The earphone shell includes an ear hook, a connecting part, and an earphone part. One end of the connecting part is connected to the ear hook, and the other end of the connecting part is connected to the earphone part. The earphone functional components include an earphone circuit board, an earphone battery module, an earphone speaker module, and a heart rate monitoring module. The earphone circuit board and the earphone battery module are both fixedly disposed on the ear hook. The earphone battery module is electrically connected to the earphone circuit board. The earphone speaker module is fixedly disposed on the earphone part and electrically connected to the earphone circuit board. The heart rate monitoring module is disposed on the earphone part and electrically connected to the earphone circuit board.

[0006] By adopting the above technical solution, when a user wears the heart rate monitoring headphones, the ear hook is in contact with the outside of the user's ear, and the headphone is in contact with the user's auricle and directly facing the user's ear canal. When the heart rate monitoring headphones are in use, the headphone battery module supplies power to the headphones, and the headphone circuit board transmits audio signals to the headphone speaker module. The headphone speaker module vibrates to emit sound and transmits the sound to the user's ear canal. At the same time, when the ear hook is in contact with the outside of the user's ear, the heart rate monitoring module is also in contact with the outside of the user's ear. This allows the heart rate monitoring module to detect the user's heart rate in real time, enabling the user to obtain their health status more accurately and promptly. This makes the headphones more versatile and meets the special needs of users, improving the current problem that Bluetooth headphones generally only support audio transmission and are not suitable for meeting the special needs of users.

[0007] Optionally, the earphone circuit board is electrically connected to two charging posts, and the ear hook has two through-hole charging holes, with the two charging posts passing through the two charging holes respectively.

[0008] Optionally, the ear hook portion has a through-hole detection slot on the side near the earphone portion, and the heart rate detection module passes through and is fixedly installed in the detection slot.

[0009] An earphone device includes two heart rate monitoring earphones and an earphone case for storing the two heart rate monitoring earphones. The earphone case includes a case body, which includes a case main body and a case cover. The case cover is connected to the case main body and is openable and closable. The case main body has two earphone slots, each of which includes a first slot portion and a second slot portion. The first slot portion and the second slot portion are connected. The first slot portion is used to place the ear hook portion, and the second slot portion is used to place the earphone portion. The case cover has two cover slots. When the case cover is closed, the two cover slots are respectively connected to the two earphone slots.

[0010] Optionally, the earphone case also includes a case functional component, which includes a case circuit board, a case battery module, and a heart rate display. The case circuit board and the case battery module are disposed inside the case body. The case battery module is electrically connected to the case circuit board. The heart rate display is disposed on one side of the case body and is electrically connected to the case circuit board. The heart rate display can display the user's heart rate value detected by the heart rate detection module.

[0011] Optionally, the chassis circuit board is electrically connected to multiple charging pins. When the heart rate detection earphone is placed in the earphone slot, each of the charging pins abuts against and is electrically connected to each of the charging posts.

[0012] Optionally, the chassis circuit board is fixedly and electrically connected to a USB charging module, and the chassis body has a through-hole charging slot, through which the USB charging module passes.

[0013] Optionally, the nacelle circuit board is electrically connected to a control button, and the nacelle body has a through-hole for the control button, which is inserted through and slides into the button hole.

[0014] Optionally, one side of the nacelle cover is rotatably connected to one side of the nacelle body, a first magnetic attractor is fixedly provided on the other side of the nacelle cover, and a second magnetic attractor is fixedly provided on the other side of the nacelle body. When the nacelle cover is closed, the first magnetic attractor and the second magnetic attractor are magnetically attracted and fixed.

[0015] Optionally, a nacelle spring is provided between the nacelle body and the nacelle cover. The nacelle body has a spring groove, and the nacelle cover has two spring holes. The nacelle spring passes through and abuts against the spring groove, and both ends of the nacelle spring pass through the two spring holes respectively.

[0016] In summary, this application includes at least one of the following beneficial technical effects:

[0017] When a user wears the heart rate monitoring headphones, the ear hooks are in contact with the outside of the user's ear, and the earpieces are in contact with the user's ear canal and directly facing the user's ear canal. During use, the headphone battery module supplies power to the headphones, and the headphone circuit board transmits audio signals to the headphone speaker module. The speaker module vibrates to produce sound, which is then transmitted to the user's ear canal. Simultaneously, with the ear hooks in contact with the outside of the user's ear, the heart rate monitoring module is also in contact with the outside of the user's ear, allowing the heart rate monitoring module to detect the user's heart rate in real time. This enables users to obtain more accurate and timely information about their health status, making the headphones more versatile and meeting specific user needs. This addresses the limitation of current Bluetooth headphones, which generally only support audio transmission and are not suitable for meeting specific user requirements. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of the heart rate monitoring earphone;

[0019] Figure 2 The ear hook of the heart rate monitoring earphone exploded. Figure 1 ;

[0020] Figure 3 The ear hook of the heart rate monitoring earphone exploded. Figure 2 ;

[0021] Figure 4 This is an exploded view of the headphone section of a heart rate monitoring headset;

[0022] Figure 5 This is a schematic diagram of the overall structure of a heart rate monitoring headphone device;

[0023] Figure 6 This is a schematic diagram of the earphone compartment structure of a heart rate monitoring earphone device;

[0024] Figure 7 This is an exploded view of the earphone compartment structure of a heart rate monitoring earphone device;

[0025] Figure 8 This is a schematic diagram of the explosion of the housing of a heart rate monitoring headphone device;

[0026] Figure 9 yes Figure 8 Enlarged view of part A;

[0027] Figure 10 This is a schematic diagram of the functional components in the housing of a heart rate monitoring headphone device.

[0028] Explanation of reference numerals in the attached drawings: 1. Heart rate monitoring earphone; 11. Earphone shell; 111. Ear hook; 1111. Charging port; 1112. Detection slot; 112. Connecting part; 113. Earphone part; 1131. Speaker hole; 12. Earphone functional component; 121. Earphone circuit board; 1211. Charging post; 122. Earphone battery module; 123. Earphone speaker module; 124. Heart rate monitoring module; 2. Earphone compartment; 21. Compartment body; 211. Compartment main body; 2111. First main body; 21111. Charging slot; 21112. Button 2112, second main body; 21121, spring groove; 2113, earphone groove; 21131, first groove body; 21132, second groove body; 212, hood cover; 2121, first hood cover; 21211, spring hole; 2122, second hood cover; 2123, hood cover groove; 213, hood spring; 22, hood functional components; 221, hood circuit board; 2211, charging pin; 2212, USB charging module; 2213, control button; 222, hood battery module; 223, heart rate display. Detailed Implementation

[0029] The following is in conjunction with the appendix Figure 1-10 This application will be described in further detail.

[0030] This application discloses a heart rate monitoring earphone and earphone device. (Refer to...) Figures 1 to 4 A heart rate monitoring earphone includes an earphone shell 11 and an earphone functional component 12. The earphone shell 11 includes an ear hook 111, a connecting part 112 and an earphone part 113. One end of the connecting part 112 is connected to the ear hook 111, and the other end of the connecting part 112 is connected to the earphone part 113. The earphone part 113 is spherical, and the connecting part 112 is U-shaped.

[0031] Reference Figures 1 to 4 The headphone functional component 12 includes a headphone circuit board 121, a headphone battery module 122, a headphone speaker module 123, and a heart rate detection module 124. The headphone circuit board 121 and the headphone battery module 122 are both fixedly disposed inside the ear hook portion 111. The headphone circuit board 121 is electrically connected to two charging posts 1211. The ear hook portion 111 has two through-hole charging holes 1111, and the two charging posts 1211 pass through the two charging holes 1111 respectively. The headphone battery module 122 is connected to the headphone battery module 124. The circuit board 121 is electrically connected. The headphone speaker module 123 is fixedly installed in the headphone part 113 and electrically connected to the headphone circuit board 121. The headphone part 113 has a through-hole speaker hole 1131. The headphone speaker module 123 passes through the speaker hole 1131. The ear hook part 111 has a through-hole detection groove 1112 on the side near the headphone part 113. The heart rate detection module 124 passes through and is fixedly installed in the detection groove 1112. The heart rate detection module 124 is electrically connected to the headphone circuit board 121.

[0032] The implementation principle of a heart rate monitoring earphone according to an embodiment of this application is as follows: When a user wears the heart rate monitoring earphone 1, the ear hook 111 abuts against the outside of the user's ear, and the earphone part 113 abuts against the user's auricle and is directly opposite the user's external ear canal. When the heart rate monitoring earphone 1 is in use, the earphone battery module 122 supplies power to the heart rate monitoring earphone 1, and the earphone circuit board 121 transmits the audio signal to the earphone speaker module 123. The earphone speaker module vibrates to emit sound and transmits the sound to the user's external ear canal. At the same time, when the ear hook 111 abuts against the outside of the user's ear, the heart rate monitoring module 124 abuts against the outside of the user's ear, so that the heart rate monitoring module 124 can detect the user's heart rate in real time, allowing the user to obtain their health status more accurately and timely. This makes the earphone more versatile, meets the special needs of users, and improves the problem that current Bluetooth earphones generally only support audio transmission functions, which are relatively simple and not suitable for meeting the special needs of users.

[0033] Reference Figure 5 and Figure 6 A heart rate monitoring earphone device includes two heart rate monitoring earphones 1 and an earphone case 2 for storing the two heart rate monitoring earphones 1. The earphone case 2 includes a case body 21, which includes a case main body 211 and a case cover 212. One side of the case cover 212 is rotatably connected to one side of the case main body 211, and a first magnetic attractor (not shown) is fixedly provided on the other side of the case cover 212. A second magnetic attractor (not shown) is fixedly provided on the other side of the case main body 211. The case cover 212 can be opened or closed. When the case cover 212 is closed, the first magnetic attractor and the second magnetic attractor are magnetically attracted and fixed. In the embodiments of this application, both the first magnetic attractor and the second magnetic attractor are magnets.

[0034] Reference Figures 6 to 8The main body 211 of the cabin includes a first main body portion 2111 and a second main body portion 2112. The second main body portion 2112 passes through the first main body portion 2111 and is snapped and fixed to the first main body portion 2111. The main body 211 has two headphone slots 2113, both of which are located in the second main body portion 2112. Each headphone slot 2113 includes a first slot body portion 21131 and a second slot body portion 21132. The first slot body portion 21131 and the second slot body portion 21132 are connected. 131 is used to place the ear hook part 111, and the second groove part 21132 is used to place the earphone part 113. The housing cover 212 includes a first housing cover part 2121 and a second housing cover part 2122. The second housing cover part 2122 passes through the first housing cover part 2121 and is snapped and fixed to the first housing cover part 2121. The housing cover 212 has two housing cover grooves 2123, both of which are located in the second housing cover part 2122. When the housing cover 212 is closed, the two housing cover grooves 2123 are respectively connected to the two earphone grooves 2113.

[0035] Reference Figures 6 to 9 A nacelle spring 213 is provided between the nacelle body 211 and the nacelle cover 212. The second main body 2112 has a spring groove 21121, and the first nacelle cover 2121 has two through spring holes 21211. The nacelle spring 213 passes through and abuts against the spring groove 21121. The two ends of the nacelle spring 213 pass through the two spring holes 21211 respectively. Thus, when the nacelle cover 212 is closed to a certain extent, the nacelle spring 213 pushes the nacelle cover 212 to rotate towards the nacelle body 211 until the nacelle cover 212 is closed. When the nacelle cover 212 is opened to a certain extent, the nacelle spring 213 pushes the nacelle cover 212 to rotate away from the nacelle body 211 until the nacelle cover 212 is opened.

[0036] Reference Figure 10 The earphone compartment 2 also includes a compartment functional component 22, which includes a compartment circuit board 221, a compartment battery module 222, and a heart rate display 223. The compartment circuit board 221 and the compartment battery module 222 are disposed inside the compartment body 211, that is, the compartment circuit board 221 and the compartment battery module 222 are located between the first main body 2111 and the second main body 2112. The compartment battery module 222 is electrically connected to the compartment circuit board 221. The heart rate display 223 is disposed on one side of the first main body 2111 and is electrically connected to the compartment circuit board 221. The heart rate display 223 can display the user's heart rate value detected by the heart rate detection module 124.

[0037] Reference Figure 10The earphone compartment 2 circuit board is electrically connected to multiple charging pins 2211. When the heart rate detection earphone 1 is placed in the earphone slot 2113, each charging pin 2211 abuts against and is electrically connected to each charging post 1211, so that the earphone compartment 2 charges the heart rate detection earphone 1 when it is placed in the earphone slot 2113. The compartment circuit board 221 is fixed and electrically connected to a USB charging module 2212. The first main body 2111 has a through charging slot 21111, through which the USB charging module 2212 passes. The USB charging module 2212 can charge the compartment battery module 222. The compartment circuit board 221 is electrically connected to a control button 2213. The first main body 2111 has a through button hole 21112, through which the control button 2213 passes and slides to engage with the button hole 21112.

[0038] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A heart rate detection earpiece, characterized in that: The device includes an earphone shell and earphone functional components. The earphone shell includes an ear hook, a connecting part, and an earphone part. One end of the connecting part is connected to the ear hook, and the other end of the connecting part is connected to the earphone part. The earphone functional components include an earphone circuit board, an earphone battery module, an earphone speaker module, and a heart rate detection module. The earphone circuit board and the earphone battery module are both fixedly mounted on the ear hook. The earphone battery module is electrically connected to the earphone circuit board. The earphone speaker module is fixedly mounted on the earphone part and electrically connected to the earphone circuit board. The heart rate detection module is mounted on the earphone part and electrically connected to the earphone circuit board.

2. The heart rate detection earphone according to claim 1, characterized in that: The earphone circuit board is electrically connected to two charging posts, and the ear hook has two through-hole charging holes, with the two charging posts passing through the two charging holes respectively.

3. The heart rate detection earphone according to claim 1, characterized in that: The ear hook has a through-hole detection slot on the side near the earphone, and the heart rate detection module passes through and is fixedly installed in the detection slot.

4. A heart rate detection earphone device comprising two heart rate detection earphones and an earphone case for accommodating the two heart rate detection earphones, characterized in that: The two heart rate monitoring earphones are the heart rate monitoring earphones according to claim 1. The earphone case includes a case body, which includes a case main body and a case cover. The case cover is connected to the case main body and can be opened or closed. The case main body has two earphone slots. Each earphone slot includes a first slot portion and a second slot portion. The first slot portion and the second slot portion are connected. The first slot portion is used to place the ear hook portion, and the second slot portion is used to place the earphone portion. The case cover has two cover slots. When the case cover is closed, the two cover slots are respectively connected to the two earphone slots.

5. The heart rate detection earphone device of claim 4, wherein: The earphone case also includes a case functional component, which includes a case circuit board, a case battery module, and a heart rate display. The case circuit board and the case battery module are disposed inside the main body of the case. The case battery module is electrically connected to the case circuit board. The heart rate display is disposed on one side of the main body of the case and is electrically connected to the case circuit board. The heart rate display can display the user's heart rate value detected by the heart rate detection module.

6. The heart rate detection earphone device according to claim 5, wherein: The earphone circuit board is electrically connected to two charging posts; the housing circuit board is electrically connected to multiple charging pins. When the heart rate detection earphone is placed in the earphone slot, each of the charging pins abuts against and is electrically connected to each of the charging posts.

7. The heart rate detection earphone device of claim 5, wherein: The chassis circuit board is fixed and electrically connected to a USB charging module. The chassis body has a through-hole charging slot, through which the USB charging module passes.

8. The heart rate detection earphone device of claim 5, wherein: The nacelle circuit board is electrically connected to a control button, and the nacelle body has a through-hole for the control button, which is inserted through and slides into the button hole.

9. The heart rate detection earphone device of claim 4, wherein: One side of the naval cover is rotatably connected to one side of the naval body. A first magnetic chuck is fixedly installed on the other side of the naval cover, and a second magnetic chuck is fixedly installed on the other side of the naval body. When the naval cover is closed, the first magnetic chuck and the second magnetic chuck are magnetically attracted and fixed together.

10. The heart rate detection earphone device of claim 9, wherein: A nacelle spring is provided between the nacelle body and the nacelle cover. The nacelle body has a spring groove, and the nacelle cover has two spring holes. The nacelle spring passes through and abuts against the spring groove, and its two ends pass through the two spring holes respectively.