Open type earphone
By designing a control unit in the open-back headphones to detect pinch and slide touch operations, the discomfort of the tapping mode to the human ear is solved, improving the user experience and convenience.
Patent Information
- Application Number
- CN202520337133.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-02-28
AI Technical Summary
The tap-mode touch control of open-back headphones can indirectly tap the ear, causing discomfort and noise, and affecting the user experience.
A control unit connected to the main body of the earphone is designed. The control unit can detect pinch-press and swipe touch operations. It is set separately on the outside of the main body of the earphone and passes through the screen notch when worn to avoid hitting the ear. Control commands are generated by pinch-press and swipe operations.
It improves the user experience, avoids the clicking sound, increases the diversity and convenience of operation methods, and enables function adjustment without terminal operation.
Smart Images

Figure CN223859232U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of sound production devices, and in particular to an open earphone. BACKGROUND
[0002] An open earphone refers to an earphone that does not block the ear canal and does not completely cover the auricle.
[0003] In the related art, the touch control mode of an open earphone is usually a tapping mode. When the tapping mode is used to implement touch control, the user's ear is indirectly tapped, causing discomfort to the user's ear. CONTENT OF THE UTILITY MODEL
[0004] The present application provides an open earphone to reduce the discomfort of touch control to the user's ear and improve the user experience.
[0005] In a first aspect, the present application provides an open earphone, comprising:
[0006] a wearing part, an earphone main body, a control part, and a first battery assembly; one end of the wearing part is connected to the earphone main body, the other end of the wearing part is connected to the first battery assembly, the control part is connected to the earphone main body, and the control part passes through the interauricular incisure when worn;
[0007] The control part includes a control unit and a touch detection unit. The touch detection unit is configured to detect a pinch touch operation and / or a sliding touch operation. The control unit is configured to generate a corresponding control instruction according to the detected pinch touch operation and / or sliding touch operation.
[0008] The earphone main body is configured to execute the control instruction.
[0009] The first battery assembly is configured to supply power to the earphone main body and the control part.
[0010] In a possible implementation, the touch detection unit is a first touch detection unit. The first touch detection unit is configured to detect a pinch touch operation. The earphone main body includes a second touch detection unit. The second touch detection unit is configured to detect a sliding touch operation. The control unit is electrically connected to the first touch detection unit and the second touch detection unit.
[0011] In a possible implementation, the control unit is configured to generate different first control instructions corresponding to different pinch touch operations. Each first control instruction is configured to switch a working mode, switch a playing item, start or stop playing, or turn on or off a microphone. The control unit is configured to generate different second control instructions corresponding to different sliding touch operations. Each second control instruction is configured to adjust a volume or a playing state.
[0012] In a possible implementation, the earphone body includes a sound generating unit; the control portion further includes a sound pickup microphone, which is located on a side of the control portion away from the earphone body; and the control unit is electrically connected to the sound generating unit and the sound pickup microphone respectively.
[0013] In a possible implementation, the earphone body further includes a display component; the display component is configured to display a main page, and in response to a display setting operation triggered on the main page, display an interaction page; the interaction page includes a display function start control and a content editing sub-page; the display component is further configured to display edited multimedia content in the content editing sub-page in response to an editing operation; and the display component is further configured to display the multimedia content on the main page when a trigger operation on the display function start control is detected.
[0014] In a possible implementation, the control portion includes a second battery component; the second battery component is configured to supply power to the earphone body and the control portion; and the control unit is further configured to determine a main battery component and a secondary battery component from the first battery component and the second battery component according to a set main-secondary sequence; the charging priority and the discharging priority of the main battery component are both higher than the charging priority and the discharging priority of the secondary battery component.
[0015] In a possible implementation, the control portion includes a second battery component; the earphone body includes a sound generating unit and a display component; and the control unit is further configured to determine a main battery component and a secondary battery component from the first battery component and the second battery component according to a set main-secondary sequence; the main battery component is configured to supply power to the control portion and the sound generating unit, and the secondary battery component is configured to supply power to the display component.
[0016] In a possible implementation, the earphone body and the control portion are integrally formed, and a connection between the integrally formed earphone body and the control portion is a circular arc transition; the circular arc transition connection makes the open earphone not cover the antitragus and the tragus when worn.
[0017] In a possible implementation, the wearing portion is an ear hook, and the ear hook passes the preauricular incisure when worn.
[0018] In a possible implementation, the wearing portion is an ear clip, and the ear clip is configured to be elastically clamped on the helix when worn.
[0019] The open earphone provided in the application designs a control part connected with the earphone main body, the control part can detect pinch touch operation and / or sliding touch operation, the control part is separately arranged outside the earphone main body, and the control part is limited to pass through the interauricular notch when being worn, so that the user can conveniently perform the pinch touch operation and the sliding touch operation through the part of the control part passing through the interauricular notch; the pinch touch operation and the sliding touch operation will not cause the open earphone to vibrate, so compared with the knocking operation, the pinch touch operation and the sliding touch operation do not have the problem of indirect knocking on the ear, and no knocking sound is generated, thereby improving the user experience; in addition, the pinch touch operation and the sliding touch operation have multiple different operation modes to generate different control instructions, so that most of the function adjustments of the open earphone can be realized through the pinch touch operation and the sliding touch operation, without the need for the user to operate through the terminal, thereby greatly improving the convenience of using the open earphone. BRIEF DESCRIPTION OF DRAWINGS
[0020] The accompanying drawings, which are incorporated herein and constitute part of the specification, illustrate embodiments consistent with the application and, together with the description, serve to explain the principles of the application.
[0021] Figure 1 FIG. 1 is a structural schematic diagram of an open earphone in the related art;
[0022] Figure 2 FIG. 2 is a structural schematic diagram of different types of open earphones in the related art;
[0023] Figure 3 FIG. 3 is a structural schematic diagram of an open earphone provided in the application Figure 1 ;
[0024] Figure 4 FIG. 4 is a structural schematic diagram of an open earphone provided in the application Figure 2 ;
[0025] Figure 5 FIG. 5 is a structural schematic diagram of an open earphone provided in the application Figure 3 . DETAILED DESCRIPTION
[0026] The exemplary embodiments will be described in detail herein with reference to the accompanying drawings. When the following description refers to the drawings, the same numbers in different drawings represent the same or similar elements unless otherwise indicated. The implementations described in the following exemplary embodiments do not represent all implementations consistent with the application. Instead, they are merely examples consistent with some aspects of the application as detailed in the appended claims.
[0027] Open earphones refer to earphones that do not block the ear canal and do not completely cover the auricle, such as ear clip earphones (when worn, the ear clip is fixed to the concha, and the earphone body is at the entrance of the ear canal), ear hook earphones (when worn, the ear hook is fixed between the head and the ear, and the earphone body is at the entrance of the ear canal), ring-shaped open earphones (when worn, the support sleeve is placed in the cymba concha, and the earphone body is at the entrance of the ear canal), and the like. Open earphones can obtain sound information in the environment while listening to the content played by the earphones, and have a wide range of applications in scenarios where the user needs to pay attention to environmental sounds, such as cycling, running, and the like.
[0028] Figure 1 FIG. 1 is a structural schematic diagram of an ear hook earphone in the related art. The ear hook earphone includes an ear hook structure 101, an earphone body 102, and a battery pack 103. In the related art, the touch control mode of open earphones is usually a tapping mode. Because open earphones have the characteristics of not blocking the ear canal and not completely covering the auricle, there is a gap between the earphone body and the entrance of the ear canal when the open earphones are used, and thus the tapping mode of touch control will indirectly tap the human ear, causing discomfort. The inventors have counted the weights of some ear clip earphones, ear hook earphones, and ring-shaped open earphones on the market, as shown in Table 1. For ear clip earphones, the average weight of a single earphone is 5.3 g. For ear hook earphones, the average weight of a single earphone is 10.7 g, and the average weight of the overall ear hook earphone (two single earphones connected by a wire) is 19.1 g. For ring-shaped open earphones, the average weight of a single earphone is 4.1 g. When the weight of the earphone is heavy, the discomfort caused by tapping the human ear will be stronger. In addition, tapping touch control will also produce obvious tapping sound, affecting the user experience. Figure 2
[0029] The open earphone provided in the present application designs a control part connected with the earphone body. The control part can detect pinch touch control operations and / or sliding touch control operations. The control part is separately arranged outside the earphone body, and is limited to pass through the interauricular incisure when worn, so that the user can conveniently perform pinch touch control operations and sliding touch control operations through the part of the control part that passes through the interauricular incisure. Performing pinch touch control operations and sliding touch control operations will not cause the open earphone to vibrate, so compared with tapping operations, pinch touch control operations and sliding touch control operations do not have the problem of indirectly tapping the human ear, and do not produce tapping sound, thereby improving the user experience. In addition, pinch touch control operations and sliding touch control operations have multiple different operation modes to generate different control instructions, so that most of the function adjustments of the open earphone can be realized through pinch touch control operations and sliding touch control operations, without the need for the user to operate the terminal, thereby greatly improving the convenience of using the open earphone.
[0030] The technical solutions of the present application and how the technical solutions of the present application solve the above technical problems will be described in detail below with specific examples. The following specific examples can be combined with each other, and the same or similar concepts or processes may not be described again in some examples. The embodiments of the present application will be described below with reference to the accompanying drawings.
[0031] Figure 3 Structure diagram of open earphone provided by the present application Figure 1 As shown in Figure 3 , the open earphone comprises:
[0032] a wearing part 301, an earphone main body 302, a control part 303, and a first battery assembly 304; one end of the wearing part 301 is connected to the earphone main body 302, the other end of the wearing part 301 is connected to the first battery assembly 304, the control part 303 is connected to the earphone main body 302, and the control part 303 passes through an interauricular notch when worn;
[0033] The control part 303 comprises a control unit and a touch detection unit, the touch detection unit is used for detecting a pinch touch operation and / or a sliding touch operation, and the control unit is used for generating a corresponding control instruction according to the detected pinch touch operation and / or sliding touch operation;
[0034] The earphone main body 302 is used for executing the control instruction;
[0035] The first battery assembly 304 is used for supplying power to the earphone main body 302 and the control part 303.
[0036] Among them, different types of open earphones have different wearing parts 301, for example, when the open earphone is an ear clip type earphone, the wearing part 301 is an ear clip, and when the open earphone is an ear hanging type earphone, the wearing part 301 is an ear hanging.
[0037] Among them, the interauricular notch is an area of the human ear, specifically a u-shaped recessed area between the tragus and the antitragus.
[0038] Among them, the control unit and the touch detection unit are electrically connected, the control unit is electrically connected with the earphone main body 302, so that the control unit can interact with the touch detection unit and the earphone main body 302.
[0039] The touch detection unit is used for detecting a touch operation of a user, and the control unit can generate a corresponding control instruction according to the touch operation detected by the touch detection unit, and send the control instruction to the earphone main body 302 to instruct the earphone main body 302 to execute the control instruction.
[0040] The control instruction can be used to switch the working mode (such as noise reduction mode, transparent mode), switch the playing item (switch to the previous item, switch to the next item), pause or start the current playing item, pause or start the microphone, adjust the volume, and adjust the playing state (such as fast forward, fast playback).
[0041] Specifically, the touch detection unit is used to detect pinch touch operations and / or sliding touch operations, which means that the touch detection unit can detect the following touch operations: 1) pinch touch operation, 2) sliding touch operation, 3) pinch touch operation and sliding touch operation.
[0042] The pinch touch operation means that the control is triggered by a pinch operation, which can be an operation of pinching the two sides of the control part 303 and pressing down. Different pinch operations can be set through various combinations between different pinch durations and pressing times, and different control instructions can be set for different pinch operations, so as to trigger different functions.
[0043] The sliding touch operation means that the control is triggered by a sliding operation, which is an operation of sliding from a certain position of the control part 303 to another position. Different sliding operations can be set by setting different positions and sliding directions, and different control instructions can be set for different sliding operations, so as to trigger different functions.
[0044] Correspondingly, the pinch touch operation and / or the sliding touch operation are detected by the touch detection unit. After detecting the pinch touch operation and / or the sliding touch operation, the corresponding touch electrical signal is generated according to the pinch touch operation and / or the sliding touch operation. The touch electrical signal is sent to the control unit. The control unit generates a control instruction according to the touch electrical signal. The control instruction is sent to the earphone main body, so that the earphone main body executes the control instruction.
[0045] For example, the touch detection unit detects the sliding touch operation corresponding to "volume down", generates the touch electrical signal corresponding to "volume down", sends the touch electrical signal to the control unit, and the control unit generates the control instruction corresponding to "volume down". The control instruction is sent to the earphone main body 302, so that the earphone main body 302 reduces the volume of the played audio according to the control instruction.
[0046] The earphone main body 302 includes an audio processing assembly; optionally, the audio processing assembly includes a sound generating unit and a sound pickup unit; the sound generating unit is used to decode the audio signal to obtain an analog audio signal, amplify the audio signal, and drive the loudspeaker to sound, etc.; the sound pickup unit is used to collect the analog audio signal through the sound pickup microphone, convert the analog audio signal into a digital audio signal, etc.; when worn, the earphone main body 302 is located in the concha cavity, and the loudspeaker included in the earphone main body 302 is located at the entrance of the ear canal.
[0047] It should be noted that the control part 303 is separately arranged outside the earphone main body 302, and is limited to pass through the intertragal incisure when worn, so that the user can conveniently perform pinch operation and sliding operation through the control part 303.
[0048] Optionally, at least part of the control part 303 can be designed as a handle structure, which enables the user to conveniently perform pinch touch and sliding touch, and improves the interactive experience; in addition, since the intertragal incisure is a u-shaped recessed area, the handle structure enables the control part 303 to pass through the intertragal incisure without pressing the tragus and the antitragus, thereby improving the comfort of the user when wearing.
[0049] The first battery assembly 304 is connected to the other end of the wearing part 301, and it can be understood that the first battery assembly 304 is located behind the ear when worn, and the earphone main body 302 and the control part 303 are located in front of the ear.
[0050] Optionally, the first battery assembly 304 can include an ear-back shell and a first battery pack arranged in the ear-back shell, the first battery pack is used for power supply, and the ear-back shell is connected to the other end of the wearing part 301.
[0051] Optionally, the earphone main body 302 can include a main shell and an audio processing assembly arranged in the main shell, the main shell is connected to one end of the wearing part 301; the main shell can be regarded as an acoustic cavity, and therefore the structural design of the acoustic cavity for reducing the leakage effect, enhancing the sound field, etc. is also applicable to the main shell.
[0052] Optionally, the control part 303 can include a control part shell and a control unit and a touch detection unit arranged in the control part shell, and the control part shell is connected to the main shell.
[0053] Optionally, the control part shell and the main shell can be designed as one body, that is, the earphone main body 302 and the control part 303 are in a one-body designed shell, and the one-body designed shell can also be regarded as an acoustic cavity, and therefore the structural design of the acoustic cavity for reducing the leakage effect, enhancing the sound field, etc. is also applicable to the one-body designed shell.
[0054] Optionally, the ear-back shell, the wearing part, the control part shell and the main shell can be designed as one body, that is, the open earphone has an integrally formed earphone shell, which reduces the connection structure between the components of the open earphone, improves the durability of the external structure of the open earphone, and also improves the appearance of the open earphone.
[0055] The open earphone provided in the application is designed with a control part connected with the earphone main body. The control part can detect pinch touch control operation and / or sliding touch control operation. The control part is separately arranged outside the earphone main body, and the control part is limited to pass through the interauricular notch when worn, so that the user can conveniently perform pinch touch control operation and sliding touch control operation through the part of the control part passing through the interauricular notch. The pinch touch control operation and the sliding touch control operation will not cause the open earphone to vibrate, so compared with the knocking operation, the pinch touch control operation and the sliding touch control operation do not have the problem of indirect knocking on the ear, and no knocking sound is generated, thereby improving the user experience. In addition, the pinch touch control operation and the sliding touch control operation have multiple different operation modes to generate different control instructions, so that most of the function adjustments of the open earphone can be realized through the pinch touch control operation and the sliding touch control operation, without the need for the user to operate through the terminal, thereby greatly improving the convenience of using the open earphone.
[0056] In an optional implementation, the touch control detection unit is a first touch control detection unit; the first touch control detection unit is configured to detect pinch touch control operation; the earphone main body comprises a second touch control detection unit; the second touch control detection unit is configured to detect sliding touch control operation; and the control unit is electrically connected with the first touch control detection unit and the second touch control detection unit respectively.
[0057] The first touch control detection unit comprises a first sensor (or a first sensor array) configured to detect pinch operation, and the first sensor can be arranged in the part of the control part passing through the interauricular notch; and the second touch control detection unit comprises a second sensor (or a second sensor array) configured to detect sliding operation, and the second sensor can be arranged on the part of the earphone main body facing the external environment when worn.
[0058] The earphone main body can have a larger operation surface and a larger accommodation space. The sliding touch control operation is realized through the earphone main body, and the pinch touch control operation is realized through the control part, which is conducive to the balanced distribution of internal electronic elements and circuits of the open earphone.
[0059] In an optional implementation, the control unit is configured to generate different first control instructions corresponding to different multiple pinch touch control operations; each first control instruction is configured to switch working modes, switch playing items, start or stop playing, or turn on or off a microphone; and the control unit is configured to generate different second control instructions corresponding to different multiple sliding touch control operations; each second control instruction is configured to adjust volume or adjust a playing state.
[0060] Different pinch touch operations correspond to different first control instructions, and different pinch touch operations can be realized through various combinations between the pinch duration and the number of presses, which is not limited; the correspondence between the pinch touch operation and the first control instruction can be set according to actual needs, which is not limited.
[0061] The working mode can include, but is not limited to, a noise reduction mode, a transparent mode, a normal mode (without noise reduction and transparent processing), and a Bluetooth connection mode; the switching of the playing item can be switching to the previous item for playing or switching to the next item for playing; starting and stopping playing means pausing the current item or playing the current item from the paused position; and turning on and off the microphone means turning on or off the sound pickup microphone.
[0062] Different sliding touch operations correspond to different second control instructions, and different sliding touch operations can be realized through various combinations between different positions and sliding directions, which is not limited; the correspondence between the sliding touch operation and the second control instruction can be set according to actual needs, which is not limited.
[0063] Adjusting the volume can be adjusting the volume up or down; adjusting the playing state can be adjusting to fast forward playing, fast backward playing, or multiple speed playing.
[0064] In the related art, the types of tapping touch operations are few, and thus the interactions that can be realized are few, and in most cases, the user needs to operate the terminal; in the above embodiment, various pinch touch operations are realized through various combinations between the pinch duration and the number of presses, and various sliding touch operations are realized through various combinations between different positions and sliding directions, and thus most of the function adjustments of the open earphone can be realized through the pinch touch operation and the sliding touch operation, without the need for the user to operate the terminal, greatly improving the convenience of using the open earphone.
[0065] In an optional implementation, the earphone body includes a sound generating unit, the control part further includes a sound pickup microphone, and the sound pickup microphone is located on a side of the control part away from the earphone body; the control unit is electrically connected with the sound generating unit and the sound pickup microphone, respectively.
[0066] The number of sound pickup microphones can be one or more, and the specific position and distribution of the one or more sound pickup microphones in the control part can be set according to actual needs.
[0067] As the earphone main body is located in the concha cavity when worn, the control part passes through the intertragic notch when worn, and the side of the control part away from the earphone main body can be understood as that the pickup microphone is located away from the concha cavity and close to the mouth when worn; when the open earphone collects human voice, the sound wave transmission path is from the mouth to the pickup microphone, and the pickup microphone is arranged on the side of the control part away from the earphone main body, so that the sound wave transmission path can be shortened, the attenuation of human voice in the propagation process can be reduced, and the pickup effect can be improved.
[0068] In the related art, the pickup microphone of the open earphone is usually arranged on the earphone main body, the pickup microphone is far away from the mouth of the user when worn, the attenuation of sound in the propagation process is obvious, the volume of the collected human voice is small, details are lost, and the pickup effect is poor; the pickup microphone is arranged on the side of the control part away from the earphone main body in the above embodiment, so that the pickup microphone is closer to the mouth when worn, the signal closer to the sound source can be obtained, the clear human voice can be collected, and the pickup effect can be improved.
[0069] In an optional implementation, the earphone main body further includes a display component; the display component is configured to display an interactive page in response to a display setting operation triggered on the main page; the interactive page includes a display function opening control and a content editing sub-page; the display component is further configured to display the edited multimedia content in the content editing sub-page; and the display component is further configured to display the multimedia content on the main page in response to a triggering operation on the display function opening control.
[0070] As shown in Figure 4 , the open earphone includes a wearing part 401, an earphone main body 402, a control part 403, and a first battery component 404, wherein the earphone main body 402 further includes a display component 4021.
[0071] The display component 4021 includes a display screen, and the display screen is located on the side of the earphone main body 402 facing the external environment when worn, so that the multimedia content displayed on the display screen can be viewed by other users when worn.
[0072] Specifically, the user can trigger a display setting operation on the main page by a long press, a slide, or the like gesture, and the display component 4021 displays an interaction page in response to the display setting operation. The interaction page includes a display function on control, a display function off control, and a content editing sub-page. The content editing sub-page includes a content box and a virtual keyboard. The user interacts with the virtual keyboard in the interaction page to perform an editing operation. Multimedia content such as a statement and an expression can be edited through the virtual keyboard to realize input of the multimedia content, and the input multimedia content is displayed in the content box in real time. When the display component 4021 detects a triggering operation on the display function on control, the display component 4021 acquires the multimedia content in the content box and displays the multimedia content in the main page. When the display component 4021 detects a triggering operation on the display function off control, the display component 4021 is turned off.
[0073] The multimedia content includes but is not limited to text, a static image, a dynamic image, a video, and an animation. For example, the displayed multimedia content can be a preset expression, a preset statement, and lyrics that are scrolled and displayed with music. The display component 4021 displays the preset expression and the preset statement (for example, an expression of a smiling face and a statement of "hello").
[0074] In the above embodiment, the display component displays the multimedia content, so that the multimedia content displayed when the open earphone is worn can be viewed by other users, and the diversity of the open earphone is improved.
[0075] In an optional implementation, the control portion includes a second battery component; the second battery component is configured to supply power to the earphone main body and the control portion; the control unit is further configured to determine a main battery component and a secondary battery component from the first battery component and the second battery component according to the set main-secondary sequence; the charging priority and the discharging priority of the main battery component are both higher than the charging priority and the discharging priority of the secondary battery component.
[0076] Optionally, as shown in Figure 5 The open earphone includes a wearing portion 501, an earphone main body 502, a control portion 503, and a first battery component 504. The control portion 503 includes a control unit 5031, a touch detection unit 5032, a sound pickup microphone 5033, and a second battery component 5034. The second battery component 5034 can be configured to supply power to the earphone main body 502, the control unit 5031, the touch detection unit 5032, and the sound pickup microphone 5033.
[0077] Optionally, the touch detection unit included in the control portion is a first touch detection unit, the earphone main body includes a sound production unit, a second touch detection unit, and a display component, and the second battery component can be configured to supply power to the sound production unit, the sound pickup microphone, the first touch detection unit, the second touch detection unit, the control unit, and the display component.
[0078] The control unit is arranged outside the earphone main body, and the control unit provides more space for arranging electronic components, and the second battery assembly is arranged in the control unit, so that the battery capacity of the open earphone is improved, and the endurance of the open earphone is improved.
[0079] Optionally, the charging and discharging sequence between the first battery assembly and the second battery assembly can be set, for example, the battery assembly with more remaining power is preferentially charged and discharged.
[0080] Optionally, the user sets the main and auxiliary sequence of the first battery assembly and the second battery assembly on the terminal, for example, the party with more battery capacity in the first battery assembly and the second battery assembly can be set as the main battery assembly.
[0081] When charging the open earphone, the main battery assembly is preferentially charged, and when the main battery assembly is fully charged, the auxiliary battery assembly is charged; when using the open earphone, the power of the main battery assembly is preferentially consumed, and when the power of the main battery assembly is consumed, the power of the auxiliary battery assembly is consumed.
[0082] The second battery assembly is arranged in the control unit, so that the battery capacity of the open earphone is improved, and the endurance of the open earphone is improved.
[0083] In an optional implementation, the control unit includes a second battery assembly; the earphone main body includes a sound generating unit and a display assembly; the control unit is further configured to determine a main battery assembly and an auxiliary battery assembly from the first battery assembly and the second battery assembly according to the set main and auxiliary sequence; the main battery assembly is configured to supply power to the control unit and the sound generating unit, and the auxiliary battery assembly is configured to supply power to the display assembly.
[0084] Specifically, the user sets the main and auxiliary sequence of the first battery assembly and the second battery assembly on the terminal, for example, the party with more battery capacity in the first battery assembly and the second battery assembly can be set as the main battery assembly.
[0085] Since the control unit and the sound generating unit are used to implement the core functions of the open earphone, such as the audio playing function and the call function, and the display assembly is used to implement the additional function of the open earphone, in order to guarantee the length of time that the open earphone uses the core function, the main battery assembly is configured to supply power to the control unit and the sound generating unit, and the auxiliary battery assembly is configured to supply power to the display assembly, so as to avoid that the display assembly occupies the power of the core function, and the endurance of the core function of the open earphone is improved.
[0086] In an optional implementation, the earphone main body and the control unit are integrally formed, and the connection part of the integrally formed earphone main body and the control unit is a circular arc transition. The circular arc transition connection part makes the open earphone not cover the ear screen and the ear screen when worn.
[0087] Specifically, the earphone body and the control part are integrally formed, and can be arranged in an integrally formed shell, wherein a connection part of the earphone body and the control part is a circular arc transition, the circular arc transition connection part makes the shell region where the control part is located pass through the shoulder incision when worn, and does not cover the tragus and the antitragus, thereby improving the wearing comfort, and the open earphone has a smooth appearance, so that the integrally formed earphone body and the control part are more in line with the ear contour, and the sound leakage is reduced.
[0088] Optionally, in the integrally formed earphone body and the control part, the earphone body passes through the preauricular incision, and the control part passes through the intertragic incision.
[0089] In an optional implementation, the wearing part is an ear hook, and the ear hook passes through the preauricular incision when worn; or the wearing part is an ear clip, and the ear clip is used to elastically hold on the helix when worn.
[0090] Specifically, the ear hook includes a first ear hook segment, a second ear hook segment and a third ear hook segment; it should be noted that the first ear hook segment, the second ear hook segment and the third ear hook segment can be three independent structures, and the ear hook is obtained by connection; the ear hook can also be an independent structure, and cannot be split into the first ear hook segment, the second ear hook segment and the third ear hook segment, but only the parts of the ear hook are named by the functional difference, so as to facilitate subsequent description.
[0091] The first ear hook segment is connected with the earphone body, and the first ear hook segment passes through the preauricular incision; the second ear hook segment is connected with the first battery assembly, and the third ear hook segment is used to connect the first ear hook segment and the second ear hook segment, and is fixed between the ear and the head when worn.
[0092] Optionally, the earphone body, the control part, the ear hook and the first battery assembly can be integrally formed, so that the open earphone is integrally formed as a whole; in the integrally formed open earphone, part of the earphone body passes through the preauricular incision, part of the ear hook passes through the preauricular incision, and part of the control part passes through the intertragic incision.
[0093] Specifically, one end of the ear clip is connected with the earphone body, and the other end is connected with the first battery assembly; optionally, the earphone body and the control part are integrally formed, and when worn, in the integrally formed earphone body and the control part, the earphone body passes through the preauricular incision, and the control part passes through the intertragic incision.
[0094] The open earphone provided in the application is designed with a control part connected with the earphone main body, the control part can detect pinch touch operation and / or sliding touch operation, the control part is separately arranged outside the earphone main body, and the control part is limited to pass through the interauricular incisure when being worn, so that the user can conveniently perform the pinch touch operation and the sliding touch operation through the part of the control part passing through the interauricular incisure; the pinch touch operation and the sliding touch operation will not cause the open earphone to vibrate, so compared with the knocking operation, the pinch touch operation and the sliding touch operation do not have the problem of indirect knocking on the ear, and knocking sound is not generated, and the use experience of the user is improved.
[0095] Finally, it should be noted that: other embodiments of the utility model will be easily thought of by those skilled in the art after considering the specification and practicing the utility model disclosed herein.The utility model aims at covering any modification, use or adaptability of the utility model, which follows the general principles of the utility model and includes the common knowledge or conventional technical means in the technical field of the utility model not disclosed by the utility model, is not limited to the precise structure described above and shown in the drawings, and various modifications and changes can be made without departing from the scope thereof.The scope of the utility model is only limited by the appended claims.
Claims
1. An open earphone, characterized by, The earphone comprises a wearing part, an earphone main body, a control part and a first battery assembly; one end of the wearing part is connected to the earphone main body, the other end of the wearing part is connected to the first battery assembly, the control part is connected to the earphone main body, and the control part passes through an interaural incisure when worn; The control part comprises a control unit and a touch detection unit; the touch detection unit is used for detecting a pinch touch operation and / or a sliding touch operation, and the control unit is used for generating a corresponding control instruction according to the detected pinch touch operation and / or sliding touch operation; The earphone main body is used for executing the control instruction; The first battery assembly is used for supplying power to the earphone main body and the control part. The touch detection unit is a first touch detection unit; the first touch detection unit is used for detecting a pinch touch operation; 2. Open earphone according to claim 1, characterized in that The earphone main body comprises a second touch detection unit; the second touch detection unit is used for detecting a sliding touch operation; The control unit is electrically connected to the first touch detection unit and the second touch detection unit respectively. The control unit is used for generating different first control instructions corresponding to different pinch touch operations; each first control instruction is used for switching a working mode, switching a playing item, starting or stopping playing, or switching a microphone on or off; 3. The open headphone of claim 1, wherein The control unit is used for generating different second control instructions corresponding to different sliding touch operations; each second control instruction is used for adjusting a volume or a playing state. The earphone main body comprises a sound generating unit; 4. The open headphone of claim 1, wherein The control part further comprises a sound pickup microphone, which is located on a side of the control part away from the earphone main body; The control unit is electrically connected to the sound generating unit and the sound pickup microphone respectively. The earphone main body further comprises a display assembly; 5. The open headphone of claim 1, wherein The display assembly is used for displaying a main page, displaying an interactive page in response to a display setting operation triggered on the main page, and the interactive page comprises a display function on control and a content editing subpage; The display assembly is further used for displaying edited multimedia content in the content editing subpage in response to an editing operation; The display assembly is further used for displaying the multimedia content on the main page when a trigger operation for the display function on control is detected. The control part comprises a second battery assembly; the second battery assembly is used for supplying power to the earphone main body and the control part; 6. Open earphone according to any of claims 1 to 5, characterized in that The control unit is further used for determining a main battery assembly and a secondary battery assembly in the first battery assembly and the second battery assembly according to a set main-secondary sequence; the charging priority and the discharging priority of the main battery assembly are higher than the charging priority and the discharging priority of the secondary battery assembly. The control part comprises a second battery assembly; 7. Open earphone according to any of claims 1 to 5, characterized in that The earphone main body comprises a sound generating unit and a display assembly; The control unit is further used for determining a main battery assembly and a secondary battery assembly in the first battery assembly and the second battery assembly according to a set main-secondary sequence; The main battery assembly is used for supplying power to the control part and the sound generating unit, and the secondary battery assembly is used for supplying power to the display assembly. 8. The open ear headphone according to any one of claims 1 to 5, characterized in that, The earphone body and the control part are integrally formed, and the connection part of the integrally formed earphone body and the control part is a circular arc transition, so that the open earphone does not cover the antitragus and the tragus when worn.
9. The open ear headphone according to any one of claims 1 to 5, characterized in that, The wearing part is an ear hook, and the ear hook passes through the preauricular incisure when worn.
10. The open ear headphone according to any one of claims 1 to 5, characterized in that, The wearing part is an ear clip, and the ear clip is used for elastically clamping on the helix when worn.