Open type earphone capable of being worn in real time

By designing open headphones that can be worn in real time, using elastic headbands and docking mechanisms, the discomfort and bumps caused by long-term wear are solved, and a comfortable user experience and sound quality is provided.

CN223067180UActive Publication Date: 2025-07-04东莞优合科技有限公司
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Patent Information

Application Number
CN202421993347.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-07-04
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

Existing headphones can easily cause discomfort on the head and ears when worn for a long time, and may easily bump into the back of the head when lying on your back, which makes the user experience poor.

Method used

An open headphone that can be worn in real time is designed, with elastic headbands and docking mechanisms to avoid discomfort caused by long-term wear, and prevent bumps by staggering the back of the head, while using open playback to maintain sound quality.

Benefits of technology

It achieves avoiding discomfort on the head and ears during wearing, preventing bumps, providing a comfortable usage experience, and maintaining the over-ear sound quality without having to stuff it into the ears.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an open type earphone capable of being worn in real time, which relates to the technical field of earphones and comprises an earphone plug, a first earphone shell, a second earphone shell and an earphone main body, and a connecting mechanism is arranged on the first earphone shell. By means of the connecting mechanism, the situation that the head and the ears are uncomfortable due to factors such as long-time wearing is avoided when a user conveniently wears the helmet, and meanwhile by means of the butt-joint mechanism staggered from the back side of the head of the user, the user can not feel comfortable due to the postures such as lying on the back in the wearing process, so that the user does not feel comfortable when wearing the helmet. According to the utility model, the situation that the back side of the head is in contact with the outside and the butt joint mechanism collides with the back side of the head to cause discomfort due to the fact that the back side of the head is in contact with the outside is avoided, and meanwhile, the earphone main body has ear covering type sound quality in the use process through an open-type playing mode of the earphone main body, does not need to cover the ears and is not required to be plugged into the ears like an ear plugging mode; therefore, the user can have comfortable use experience.
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Description

Technical Field

[0001] The utility model relates to the technical field of earphones, in particular to an open earphone that can be worn in real time. Background Art

[0002] An earphone is a pair of conversion units that receive electrical signals from a media player or receiver and convert them into audible sound waves using speakers close to the ears. The earphone can be separated from the media player and connected only with a plug, allowing one to listen to the sound alone without disturbing others. Earphones were originally used for telephones and radios, but with the popularity of portable electronic devices, they are now widely used in mobile phones, walkmans, radios, portable video games, digital audio players, etc.

[0003] Currently, the main types of earphones on the market are: over-ear, behind-the-neck, single-ear hook, in-ear, clip-on, etc. Among them, over-ear, in-ear, and clip-on earphones cause excessive pressure on the head and ears during long-term wearing, while behind-the-neck earphones are prone to hitting the back of the head when the user is lying on their back or in other positions, resulting in a poor user experience. Based on this, an open earphone that can be worn in real time is provided to eliminate the drawbacks of existing devices. Summary of the Utility Model

[0004] The purpose of the utility model is to provide an open earphone that can be worn in real time to solve the problems in the background art.

[0005] To achieve the above purpose, the utility model provides the following technical solutions:

[0006] An open earphone that can be worn in real time, including an earphone plug. The top end of the earphone plug is fixedly connected to a first earphone housing. One end of the first earphone housing is provided with a second earphone housing. Earphone bodies are installed inside both the first earphone housing and the second earphone housing. A connection mechanism is arranged on the first earphone housing.

[0007] Based on the above technical solutions, the utility model also provides the following optional technical solutions:

[0008] In an optional solution: The connection mechanism includes:

[0009] An anti-collision component arranged on the first earphone housing, which is used for the fixed connection between the first earphone housing and the second earphone housing;

[0010] The anti-collision component is an elastic headband located above the first earphone housing. The two ends of the bottom end of the elastic headband respectively penetrate into one side inside the first earphone housing and the second earphone housing;

[0011] A support component is provided on the elastic headband, and the support component is used to support the first earphone housing and the second earphone housing.

[0012] In an alternative embodiment: The support component includes:

[0013] Two silicone ear hooks symmetrically sleeved on the outer wall of the elastic headband. Connecting sleeve grooves are provided at the positions where the two silicone ear hooks are connected to the elastic headband. Openings communicating with the connecting sleeve grooves are provided on one side of the two silicone ear hooks at the connecting sleeve grooves.

[0014] Conductive components are provided inside the first earphone housing and the second earphone housing, and the conductive components are used to supply power to the earphone body.

[0015] In an alternative embodiment: The conductive component includes:

[0016] Two limit posts respectively fixedly connected inside the first earphone housing and the second earphone housing. A conductive strip is sleeved on the outer wall of the limit post. A data wire is sleeved inside the elastic headband. The conductive strip penetrates the elastic headband and is fixedly connected to the data wire, and is electrically connected to the earphone body through a data transmission line.

[0017] In an alternative embodiment: A volume button is fixedly connected to the bottom end of the earphone plug. A first data transmission line is fixedly connected to the bottom end of the volume button. A second data transmission line is fixedly connected to the bottom end of the first data transmission line.

[0018] In an alternative embodiment: The elastic headband is fixedly connected to the first earphone housing and the second earphone housing through a docking mechanism;

[0019] The docking mechanism includes:

[0020] A plug-in component provided at the bottom end of the elastic headband, and the plug-in component is used for the convenient docking of the elastic headband with the first earphone housing and the second earphone housing;

[0021] The plug-in component includes:

[0022] Two docking strips symmetrically provided below the elastic headband. The two docking strips respectively penetrate into the interiors of the two first earphone housings and the second earphone housing, and are fixedly connected to the conductive strips. Docking pressing blocks are fixedly connected to the top ends of the two docking strips. A docking plug ring is fixedly connected to the top end of the docking pressing block. A docking sleeve is sleeved on the outer wall of the docking plug ring. The docking sleeve is fixedly connected to the elastic headband;

[0023] An anti-disconnection component is provided on the docking plug ring, and the anti-disconnection component is used to prevent the docking sleeve and the docking pressing block from automatically separating.

[0024] In an alternative embodiment: The anti - detachment component includes:

[0025] A plurality of silica gel rings vertically and equidistantly fixedly connected to the outer wall of the docking insertion ring, and the plurality of silica gel rings are snap - connected to the docking sleeve;

[0026] The bottom end of the data wire is provided with a power transmission component, and the power transmission component is used to transmit current and voltage to the earphone main body.

[0027] In an alternative embodiment: The power transmission component includes:

[0028] A data connection cylinder fixedly connected to the top end of the docking pressure block. The data connection cylinder is electrically connected to the conductive strip through a data transmission line. A hole groove for the data transmission line to pass through is provided inside the docking strip. A data plug is arranged on the upper surface of the data connection cylinder. The data plug is located at the bottom end of the data wire and is fixedly connected to the data wire and the docking sleeve.

[0029] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0030] 1. Through the connection mechanism, the present utility model achieves the purpose of avoiding discomfort in the head and ear parts caused by factors such as long - term wearing when the user wears it easily. At the same time, through the docking mechanism offset from the user's back of the head, it can ensure that during the wearing process, the user will not have the situation that the back of the head contacts the outside due to lying on the back or other postures, resulting in discomfort caused by the docking mechanism hitting the back of the head. At the same time, through the open - type playback mode of the earphone main body, the earphone main body can have the sound quality of over - ear type during use, without covering the ears, and without being inserted into the ears like in - ear type, so that the user can have a comfortable use experience.

[0031] 2. Through the docking mechanism, when the sound quality effect of the earphone main body is poor due to poor contact of the elastic headband, the present utility model can achieve the purpose of conveniently replacing the elastic headband. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Figure 1 is a schematic structural diagram of the present utility model.

[0033] Figure 2 is a schematic cross - sectional structural diagram of the second earphone housing of the present utility model.

[0034] Figure 3 is a schematic cross - sectional structural diagram of the docking mechanism of the present utility model.

[0035] Notes on the accompanying drawings: 1. headphone plug; 201. elastic headband; 202. silicone ear hook; 203. conductive sleeve; 204. limiting column; 205. connecting sleeve groove; 206. data conductor; 3. first data transmission line; 4. volume button; 5. second data transmission line; 6. first headphone shell; 7. second headphone shell; 801. docking sleeve; 802. silicone ring; 803. data plug; 804. docking sleeve; 805. docking ring; 806. docking pressure block; 807. data connection tube; 9. headphone body. DETAILED DESCRIPTION

[0036] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below in conjunction with the accompanying drawings and embodiments.

[0037] Example 1

[0038] In one embodiment, Figures 1 - 3 As shown, an open-type headset that can be worn in real time comprises an earphone plug 1, a first earphone housing 6 is fixedly connected to the top of the earphone plug 1, a second earphone housing 7 is arranged at one end of the first earphone housing 6, an earphone body 9 is installed inside the first earphone housing 6 and the second earphone housing 7, a volume button 4 is fixedly connected to the bottom end of the earphone plug 1, a first data transmission line 3 is fixedly connected to the bottom end of the volume button 4, a second data transmission line 5 is fixedly connected to the bottom end of the first data transmission line 3, and a connecting mechanism is arranged on the first earphone housing 6;

[0039] In this embodiment, when in use, the user can move the first earphone housing 6 and the second earphone housing 7 to one end of the two ears respectively through the connecting mechanism, and contact the skin of the ear area. At the same time, the connecting mechanism effectively avoids the user from feeling uncomfortable in the head and ears due to factors such as the heavy equipment and long-term wearing. At the same time, the connecting mechanism staggered with the back of the user's head can prevent the user from feeling uncomfortable due to the collision between the connecting mechanism and the back of the head due to lying on his back and other postures during wearing.

[0040] Afterwards, the second data transmission line 5 can be inserted into the earphone jack of the device, and then the audio can be played through the earphone body 9 inside the first earphone shell 6 and the second earphone shell 7 respectively;

[0041] In one embodiment, Figures 1 - 2 As shown, the connecting mechanism includes:

[0042] An anti-knock component is arranged on the first earphone housing 6, and the anti-knock component is used for fixing the first earphone housing 6 and the second earphone housing 7;

[0043] The anti-collision component is an elastic headband 201 located above the first earphone housing 6. The two ends of the bottom end of the elastic headband 201 respectively penetrate into the inner sides of one side of the first earphone housing 6 and the second earphone housing 7. Through the vertically arranged elastic headband 201, it can be staggered from the back of the user's head, effectively avoiding the situation where the elastic headband 201 collides with the back of the head when the user is in a lying position or other postures;

[0044] A support component is arranged on the elastic headband 201, and the support component is used to support the first earphone housing 6 and the second earphone housing 7;

[0045] In one embodiment, as Figures 1 - 2 shown, the support component includes:

[0046] Two silicone ear hook parts 202 symmetrically sleeved on the outer wall of the elastic headband 201. Connecting sleeve grooves 205 are provided at the positions where the two silicone ear hook parts 202 are connected to the elastic headband 201. Openings communicating with the connecting sleeve grooves 205 are provided on one side of the two silicone ear hook parts 202 located at the connecting sleeve grooves 205. Through the mutual cooperation of the openings and the connecting sleeve grooves 205, when the silicone ear hook parts 202 need to be cleaned, the silicone ear hook parts 202 can be removed from the elastic headband 201. At this time, the silicone ear hook parts 202 are deformed under the block of the elastic headband 201 until the silicone ear hook parts 202 are separated from the elastic headband 201. After the silicone ear hook parts 202 are cleaned and dried, the above operations are reversed to facilitate the purpose of conveniently placing and taking the silicone ear hook parts 202;

[0047] Conductive components are arranged inside the first earphone housing 6 and the second earphone housing 7 respectively, and the conductive components are used to supply power to the earphone main body 9;

[0048] In one embodiment, as Figures 1 - 2 shown, the conductive component includes:

[0049] Two limit posts 204 respectively fixedly connected inside the first earphone housing 6 and the second earphone housing 7. A conductive sleeve strip 203 is sleeved on the outer wall of the limit post 204. A data wire 206 is sleeved inside the elastic headband 201. The conductive sleeve strip 203 penetrates through the elastic headband 201 and is fixedly connected to the data wire 206, and is electrically connected to the earphone main body 9 through a data transmission line;

[0050] In one embodiment, as Figure 3 shown, the elastic headband 201 is fixedly connected to the first earphone housing 6 and the second earphone housing 7 through a docking mechanism;

[0051] The docking mechanism includes:

[0052] A plug-in component is provided at the bottom end of the elastic headband 201. The plug-in component is used for the convenient docking of the elastic headband 201 with the first earphone housing 6 and the second earphone housing 7;

[0053] The plug-in component includes:

[0054] Two docking strip bars 801 symmetrically arranged below the elastic headband 201. The two docking strip bars 801 respectively penetrate into the interiors of the two first earphone housings 6 and the second earphone housing 7, and are fixedly connected to the conductive strip bar 203. At the top ends of the two docking strip bars 801, docking pressing blocks 806 are fixedly connected. At the top end of the docking pressing block 806, a docking insertion ring 805 is fixedly connected. A docking sleeve 804 is sleeved on the outer wall of the docking insertion ring 805, and the docking sleeve 804 is fixedly connected to the elastic headband 201;

[0055] An anti-disconnection component is provided on the docking insertion ring 805. The anti-disconnection component is used to prevent the docking sleeve 804 and the docking pressing block 806 from automatically separating;

[0056] In one embodiment, as Figure 3 shown, the anti-disconnection component includes:

[0057] A plurality of silica gel rings 802 vertically and equidistantly fixedly connected to the outer wall of the docking insertion ring 805. The plurality of silica gel rings 802 are engaged with the docking sleeve 804. Due to the frictional force between the plurality of silica gel rings 802 and the docking sleeve 804, it is beneficial to prevent the docking insertion ring 805 and the docking sleeve 804 from self-separating;

[0058] At the bottom end of the data wire 206, a power transmission component is provided. The power transmission component is used to transmit current and voltage to the earphone main body 9;

[0059] In one embodiment, as Figure 3 shown, the power transmission component includes:

[0060] A data connection cylinder 807 fixedly connected to the top end of the docking pressing block 806. The data connection cylinder 807 is electrically connected to the conductive strip bar 203 through a data transmission line. A hole groove for the data transmission line to pass through is provided inside the docking strip bar 801. A data plug 803 is provided on the upper surface of the data connection cylinder 807. The data plug 803 is located at the bottom end of the data wire 206 and is fixedly connected to the data wire 206 and the docking sleeve 804.

[0061] The above embodiment discloses an open-type headset that can be worn in real time, wherein, when the present invention is in use, the user respectively sleeves the two silicone ear hanging pieces 202 on the two ears, at which time the first earphone housing 6 and the second earphone housing 7 are respectively moved to one end of the two ears by the elastic headband 201 under the drive of the two silicone ear hanging pieces 202, and contact the skin of the ear part, and at the same time, the elastic headband 201 is driven by the two silicone ear hanging pieces 202 to contact the user's head, and at this time, the elastic headband 201 is in a vertical state as a whole, which effectively avoids the user's discomfort in the head and ear parts caused by factors such as the heavy equipment and long-term wearing when wearing. At the same time, the elastic headband 201 staggered from the back of the user's head can prevent the user's back of the head from contacting the outside world due to lying on his back and other postures during wearing, which causes discomfort caused by the elastic headband 201 bumping against the back of the head;

[0062] After that, the second data transmission line 5 can be inserted into the earphone jack of the device, and then the audio can be played through the earphone body 9 inside the first earphone shell 6 and the second earphone shell 7 respectively. At this time, the earphone body 9 can have an over-ear sound quality during use through the open playback mode of the earphone body 9, and does not need to cover the ear. At the same time, it does not need to be plugged into the ear like the plug-in ear type, so that the user can have a comfortable use experience;

[0063] Example 2

[0064] Different from Example 1, during use, when the elastic headband 201 has poor contact and causes poor sound quality, and needs to be replaced, the docking pressure block 806 can be pulled to separate from the docking sleeve 804, and at the same time, the data connection tube 807 is separated from the data plug 803 under the drive of the docking pressure block 806, so that the electrical connection between the data connection tube 807 and the data plug 803 can be released, and then the docking ring 805 is driven by the docking pressure block 806 to drive the multiple silicone rings 802 to separate from the inner wall of the docking sleeve 804. In this process, the multiple silicone rings 802 are deformed under the obstruction of the docking sleeve 804 until the docking ring 805 is separated from the inside of the docking sleeve 804, so that the elastic headband 201 can be conveniently separated from the first earphone housing 6 and the second earphone housing 7;

[0065] Afterwards, the above operation is reversed to allow the first earphone shell 6, the second earphone shell 7 to dock with the new elastic headband 201, thereby achieving the purpose of convenient replacement of the elastic headband 201.

[0066] As described above, it is only the specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present application can easily think of changes or substitutions, which should all be covered within the protection scope of the present application. Therefore, the protection scope of the present application shall be subject to the protection scope of the claims.

Claims

1. An open earphone that can be worn in real time, including a headphone plug (1), the top of the headphone plug (1) is fixedly connected to a first headphone housing (6), one end of the first headphone housing (6) is provided with a second headphone housing (7), and headphone bodies (9) are installed inside both the first headphone housing (6) and the second headphone housing (7), characterized in that, A connecting mechanism is provided on the first earphone housing (6).

2. The open earphone wearable in real time according to claim 1, characterized in that, The connecting mechanism includes: an anti-collision component provided on the first earphone housing (6), and the anti-collision component is used for the fixed connection between the first earphone housing (6) and the second earphone housing (7); The anti-collision component is an elastic headband (201) located above the first earphone housing (6), and both ends of the bottom end of the elastic headband (201) penetrate into the inner sides of one side of the first earphone housing (6) and the second earphone housing (7) respectively; A support component is provided on the elastic headband (201), and the support component is used for supporting the first earphone housing (6) and the second earphone housing (7).

3. The open earphone wearable in real time according to claim 2, wherein The support component includes: two silicone ear hook members (202) symmetrically sleeved on the outer wall of the elastic headband (201), connection sleeve grooves (205) are formed at the positions where the two silicone ear hook members (202) are connected to the elastic headband (201), and openings communicating with the connection sleeve grooves (205) are formed on one side of the two silicone ear hook members (202) located at the connection sleeve grooves (205); Conductive components are provided inside the first earphone housing (6) and the second earphone housing (7), and the conductive components are used for supplying power to the earphone main body (9).

4. The open earphone wearable in real time according to claim 3, characterized in that, The conductive component includes: two limiting columns (204) respectively fixedly connected inside the first earphone housing (6) and the second earphone housing (7), a conductive sleeve strip (203) is sleeved on the outer wall of the limiting column (204), a data wire (206) is sleeved inside the elastic headband (201), the conductive sleeve strip (203) penetrates through the elastic headband (201) and is fixedly connected to the data wire (206), and is electrically connected to the earphone main body (9) through a data transmission line.

5. The open earphone wearable in real time according to claim 1, characterized in that, A volume button (4) is fixedly connected to the bottom end of the earphone plug (1), a first data transmission line (3) is fixedly connected to the bottom end of the volume button (4), and a second data transmission line (5) is fixedly connected to the bottom end of the first data transmission line (3).

6. The open earphone wearable in real time according to claim 4, characterized in that, The elastic headband (201) is fixedly connected to the first earphone housing (6) and the second earphone housing (7) through a docking mechanism; The docking mechanism includes: a plugging component provided at the bottom end of the elastic headband (201), and the plugging component is used for the convenient docking of the elastic headband (201) with the first earphone housing (6) and the second earphone housing (7); The plugging component includes: two docking sleeve strips (801) symmetrically arranged below the elastic headband (201), the two docking sleeve strips (801) respectively penetrate into the interiors of the two first earphone housings (6) and the second earphone housings (7), and are fixedly connected to the conductive sleeve strips (203), docking pressing blocks (806) are fixedly connected to the top ends of the two docking sleeve strips (801), docking insertion rings (805) are fixedly connected to the top ends of the docking pressing blocks (806), a docking sleeve (804) is sleeved on the outer wall of the docking insertion ring (805), and the docking sleeve (804) is fixedly connected to the elastic headband (201); An anti - detachment component is provided on the docking insertion ring (805), and the anti - detachment component is used to prevent the automatic separation of the docking sleeve (804) and the docking pressing block (806).

7. The open earphone wearable in real time according to claim 6, wherein The anti - detachment component includes: a plurality of silica gel rings (802) fixedly connected to the outer wall of the docking insertion ring (805) vertically and equidistantly, and the plurality of silica gel rings (802) are snap - connected with the docking sleeve (804); A power transmission component is provided at the bottom end of the data wire (206), and the power transmission component is used to transmit current and voltage to the earphone body (9).

8. An open earphone that can be worn in real time according to claim 7, characterized in that, The power transmission component includes: a data connection cylinder (807) fixedly connected to the top end of the docking pressing block (806), the data connection cylinder (807) is electrically connected to the conductive sleeve strip (203) through a data transmission line, a hole groove for the data transmission line to pass through is formed inside the docking strip (801), a data plug (803) is arranged on the upper surface of the data connection cylinder (807), the data plug (803) is located at the bottom end of the data wire (206), and is fixedly connected to the data wire (206) and the docking sleeve (804).