WO2024113307A1 - 一种耳机仓及电子设备 - Google Patents

一种耳机仓及电子设备 Download PDF

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Publication number
WO2024113307A1
WO2024113307A1 PCT/CN2022/135875 CN2022135875W WO2024113307A1 WO 2024113307 A1 WO2024113307 A1 WO 2024113307A1 CN 2022135875 W CN2022135875 W CN 2022135875W WO 2024113307 A1 WO2024113307 A1 WO 2024113307A1
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WO
WIPO (PCT)
Prior art keywords
earphone
compartment
bracket
cover
magnet
Prior art date
Application number
PCT/CN2022/135875
Other languages
English (en)
French (fr)
Inventor
彭文勇
冯霁
Original Assignee
广东粤港澳大湾区国家纳米科技创新研究院
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 广东粤港澳大湾区国家纳米科技创新研究院 filed Critical 广东粤港澳大湾区国家纳米科技创新研究院
Priority to PCT/CN2022/135875 priority Critical patent/WO2024113307A1/zh
Publication of WO2024113307A1 publication Critical patent/WO2024113307A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R1/00Details of transducers, loudspeakers or microphones
    • H04R1/10Earpieces; Attachments therefor ; Earphones; Monophonic headphones

Definitions

  • the present application relates to the field of earphone technology, and in particular to an earphone compartment and an electronic device.
  • Bluetooth headsets are hands-free headsets that use Bluetooth technology, allowing users to avoid the hassle of annoying wires and make calls in a variety of ways. Since their introduction, Bluetooth headsets have become a great tool for improving efficiency.
  • the earphone compartment body of most existing earphone compartments is composed of a bottom shell, an inner tray and a top cover.
  • the inner tray is assembled at the top opening of the bottom shell, and an earphone slot for placing the earphone is provided between the top of the inner tray and the bottom of the top cover.
  • the battery assembly and the mainboard are installed in the accommodation space formed between the inner tray and the bottom shell. It is inconvenient to assemble using such an assembly method, especially the inner tray needs to be installed in the inner cavity of the bottom shell by interference fit. During assembly, the inner tray and the bottom shell need to be accurately positioned and aligned, which makes assembly even more inconvenient.
  • the purpose of this application is to provide an earphone compartment and an electronic device to solve the technical problem of inconvenient assembly in the prior art.
  • an earphone compartment comprising an earphone compartment body
  • the earphone compartment body comprises a compartment body and a compartment cover
  • the cabin cover is installed on the cabin body in an openable and closable manner, and comprises a cover body and an upper cover bracket;
  • the upper cover bracket is installed on the cover body
  • the cabin body includes a cabin shell and an earphone holder
  • the earphone holder is installed on the cabin housing;
  • the earphone bracket comprises a bracket seat, a host motherboard and a cover;
  • the host motherboard and the cover can be detachably mounted on the side wall of the bracket seat, and the cover is arranged to cover the host motherboard.
  • a touch panel is provided on the earphone compartment body
  • the host motherboard is connected to a screen adapter cable
  • the touch panel is connected to a screen wiring
  • the earphone support further includes a fixing member
  • the fixing piece is buckled and connected to the earphone bracket, and the connection terminals of the screen connection are crimped and fixed to the connection terminals of the screen adapter cable.
  • bracket seat is provided with a wiring groove for accommodating the wiring terminal of the screen adapter cable
  • the side wall of the wiring groove is provided with a first buckle structure
  • the fixing member is provided with a second buckle structure buckled with the first buckle structure.
  • the surface where the earphone bracket contacts the upper cover bracket or the surface where the upper cover bracket contacts the earphone bracket is a convex surface or a concave surface.
  • the surface of the earphone support in contact with the upper cover support is a convex surface
  • the surface of the upper cover support in contact with the earphone support is a concave surface
  • the surface where the earphone bracket contacts the upper cover bracket is a concave surface, and the surface where the upper cover bracket contacts the earphone bracket is a convex surface.
  • the height difference between the highest point and the lowest point is 0.20 mm to 0.30 mm.
  • the compartment cover is provided with a first pair of attracting magnets and a compartment cover Hall magnet;
  • the cabin body is provided with a second pair of attractive magnets cooperating with the first pair of attractive magnets and a cabin Hall switch for sensing the cabin cover Hall magnets.
  • a convex plate portion is provided on the upper edge of the main host motherboard disposed in the main body of the machine compartment, which is convex upwardly provided corresponding to the position of the Hall magnet of the compartment cover;
  • the cabin Hall switch is arranged on the convex plate portion.
  • An electronic device comprises earphones and the earphone compartment
  • the earphone comprises an earphone housing, an antenna and an earphone battery;
  • the antenna is attached to the outer wall of the earphone battery
  • the antenna and the earphone battery are adapted to be installed inside the earphone housing;
  • the earphone is provided with an earphone magnet
  • the main body of the earphone compartment is also provided with an earphone positioning magnet which is attracted and cooperates with the earphone magnet.
  • the earphone is also provided with an earphone Hall switch for sensing the earphone positioning magnet;
  • the vertical distance between the earphone Hall switch and the earphone positioning magnet is 2mm-5mm.
  • the antenna is specifically an LDS antenna.
  • the earphone positioning magnet is arranged below the first cavity
  • the headphone magnet is arranged at the bottom of the ear inlet. After the headphone is inserted into the compartment, the headphone magnet at least partially overlaps with the projection of the headphone positioning magnet in the vertical direction, and the vertical center line of the headphone magnet does not overlap with the vertical center line of the headphone positioning magnet.
  • the earphone inlet is also provided with an earphone touch panel arranged along the ear inlet toward the handle;
  • the earphone touch panel is inclined at an acute angle relative to an extension line of the center line of the handle.
  • the earphone compartment designed in this application includes an earphone compartment body; the earphone compartment body includes a compartment body and a compartment cover; the compartment body includes a compartment shell and an earphone bracket installed on the compartment shell; the earphone bracket includes a bracket seat, a host motherboard and a cover.
  • FIG1 is an overall stereoscopic view of an earphone compartment provided in the present application.
  • FIG2 is an overall exploded schematic diagram of an earphone compartment provided in the present application.
  • FIG3 is a three-dimensional view of a housing of an earphone compartment with a touch panel provided in the present application
  • FIG4 is a front view of a housing of an earphone compartment with a touch panel provided in the present application
  • FIG5 is a cross-sectional view of a housing of an earphone compartment with a touch panel provided in the present application
  • FIG6 is a three-dimensional view of a touch panel of an earphone compartment provided in the present application.
  • FIG7 is a front view of a touch panel with a logo pattern of an earphone compartment provided in the present application.
  • FIG8 is a first partial exploded schematic diagram of an earphone compartment provided in the present application.
  • FIG18 is a rear view of a cover of an earphone compartment provided in the present application.
  • FIG20 is a first exploded view of a support seat of an earphone compartment provided in the present application with a touch panel;
  • FIG22 is a front view of an earphone bracket of an earphone compartment provided in the present application with a touch panel;
  • FIG. 23 is a cross-sectional view taken along the A-A direction in FIG. 22
  • FIG24 is a second stereoscopic view of a support seat of an earphone compartment provided in the present application.
  • FIG26 is a fourth stereoscopic view of a support seat of an earphone compartment provided in the present application, in which a fixing member is assembled;
  • FIG28 is a three-dimensional view of a fixing member of an earphone compartment provided in the present application.
  • FIG29 is a partial enlarged schematic diagram of the connection between a fixing member of an earphone compartment and a bracket seat provided in the present application;
  • FIG30 is an exploded schematic diagram of a bracket seat and an upper cover bracket of an earphone compartment provided in the present application
  • FIG31 is a three-dimensional diagram of the cooperation between a bracket seat of an earphone compartment and an upper cover bracket provided in the present application;
  • FIG32 is a front view of a support seat of an earphone compartment provided in the present application and cooperating with an upper cover support;
  • FIG33 is a side view of a support seat of an earphone compartment provided in the present application.
  • Fig. 34 is a cross-sectional view taken along the A-A direction of Fig. 33;
  • FIG35 is a bottom view of an upper cover bracket of an earphone compartment provided in the present application.
  • Fig. 36 is a cross-sectional view taken along the B-B direction of Fig. 35;
  • FIG37 is a schematic diagram of the structure of the earphone of an electronic device provided in the present application and the earphone positioning magnet;
  • FIG38 is a schematic structural diagram of an earphone magnet and an earphone positioning magnet of an electronic device provided in the present application;
  • FIG39 is a first exploded schematic diagram of an earphone of an electronic device provided in the present application.
  • FIG40 is a second exploded schematic diagram of an earphone of an electronic device provided in the present application.
  • FIG41 is a stereoscopic view of an earphone housing of an electronic device provided in the present application.
  • FIG42 is a schematic diagram of a partial structure of an earphone of an electronic device provided in the present application.
  • 100 touch panel
  • 101 display area
  • 102 non-display area
  • 103 touch positioning structure
  • 104 chamfer
  • 105 logo pattern
  • 106 screen wiring
  • 1061 wiring terminals for screen wiring
  • headphone bracket 2020, second magnet mounting slot; 2021, second pair of magnets; 2022, headphone positioning magnet; 2023, card holder;
  • bracket seat 2040, first earphone slot; 2041, first screw; 2042, second screw; 2043, first stud; 2044, second stud; 2045, notch; 2046, limiting structure; 2047, positioning groove; 2048, notch; 204-1, wiring groove; 204-2, first positioning piece; 204-3, second positioning piece; 204-4, socket; 204-5, connecting protrusion;
  • covering member 2051, battery installation port; 2052, second connection hole; 2053, reinforcement member;
  • 300 machine cover; 301, cover body; 302, upper cover bracket; 3020, first magnet mounting slot; 3021, chamber cover Hall magnet; 3022, first pair of magnets; 303, second earphone slot; 304, convex surface; 305, concave surface;
  • earphone housing 500, earphone housing; 501, ear-entry portion; 502, handle portion; 503, earphone magnet; 504, earphone Hall switch; 505, tail cover; 506, antenna mounting port;
  • 600 headphone battery; 601, headphone wire; 602, headphone cable; 603, antenna; 604, headphone motherboard; 605, positive electrode pad; 606, negative electrode pad; 607, headphone touch pad;
  • 700 battery assembly; 701, linear motor; 702, microphone board bracket; 703, curved damping shaft; 704, microphone cable.
  • the terms “installed”, “connected”, and “connected” should be understood in a broad sense, for example, it can be a fixed connection, a replaceable connection, or an integral connection, it can be a mechanical connection, it can be an electrical connection, it can be a direct connection, it can be indirectly connected through an intermediate medium, and it can be the internal communication of two components.
  • installed should be understood in a broad sense, for example, it can be a fixed connection, a replaceable connection, or an integral connection, it can be a mechanical connection, it can be an electrical connection, it can be a direct connection, it can be indirectly connected through an intermediate medium, and it can be the internal communication of two components.
  • An embodiment of the present application discloses an earphone compartment.
  • an embodiment of an earphone compartment provided in the embodiments of the present application includes:
  • the earphone compartment body includes a compartment body 200 and a compartment cover 300 .
  • the cabin cover 300 is installed on the cabin body 200 in an openable and closable manner, and includes a cover body 301 and an upper cover bracket 302.
  • the upper cover bracket 302 is installed on the cover body 301, and the upper cover bracket 302 is snap-connected with the cover body 301.
  • the cabin body 200 includes a cabin shell 201 and an earphone bracket 202.
  • the earphone bracket 202 is installed on the cabin shell 201.
  • the earphone holder 202 includes a holder seat 204, a host motherboard 203 and a cover 205. Both the host motherboard 203 and the cover 205 can be detachably mounted on the side wall of the holder seat 204, and the cover 205 covers the host motherboard 203.
  • the host motherboard 203 is first mounted on the side wall of the holder seat 204, and then the cover 205 is mounted on the side wall of the holder seat 204 in a manner of covering the host motherboard 203; the cover 205 is specifically a battery compartment, and a battery installation port 2051 is opened in the middle of the battery compartment, and the battery assembly 700 of the earphone compartment body is installed in the battery installation port 2051 of the cover 205.
  • the host motherboard 203 is arranged on the side wall of the bracket seat 204, and the host motherboard 203 is covered and protected by the cover 205, so that the host motherboard 203 can be well fixed and protected between the bracket seat 204 and the cover 205, and the positioning and alignment between the cover 205, the host motherboard 203 and the bracket seat 204 are convenient, and the assembly is also simple, which effectively solves the technical problem of inconvenient assembly in the prior art.
  • Example 1 of an earphone compartment provided in an embodiment of the present application.
  • Example 2 of an earphone compartment provided in an embodiment of the present application. Please refer to Figures 1 to 36 for details.
  • a touch panel 100 is installed on the earphone compartment body.
  • the touch panel 100 has a display area 101 and a non-display area 102 surrounding the display area 101 and touchable; a touch positioning structure 103 is also provided on the touch panel 100 at one side of the non-display area 102, for positioning the non-display area 102 by touching.
  • the touch panel 100 can be touched first, and when the touch positioning structure 103 is touched, the current touch position can be located, so that the non-display area 102 located on one side of the touch positioning structure 103 can be determined, and then blind operation can be achieved by operating the determined non-display area 102. Through this design, blind operation can be achieved, further improving the user interaction experience.
  • the display area 101 can be designed to be touch-sensitive, so that the entire touch panel 100 can be touch-sensitive.
  • the display area 101 can perform touch operations such as input, and the non-display area 102 can perform gesture operations such as sliding, further improving the user's interactive experience.
  • the touch control implementation of the non-display area 102 it can be to extend the touch layer of the display area 101 to the non-display area 102, or to arrange the wiring required for touch control in the non-display area 102, etc., as long as the non-display area 102 can also realize the touch function, and there is no specific limitation.
  • the touch positioning structure 103 can be designed as two. One of the touch positioning structures 103 is used to locate the portion of the non-display area 102 located on the left side of the display area 101 by touch; and the other touch positioning structure 103 is used to locate the portion of the non-display area 102 located on the right side of the display area 101 by touch. This design realizes multiple blind operation positions, further improving the interactive use experience.
  • the user When the user performs blind operation with his left hand, he can locate the portion of the non-display area 102 located on the left side of the display area 101 for blind operation, and when the user performs blind operation with his right hand, he can locate the portion of the non-display area 102 located on the right side of the display area 101 for blind operation.
  • the touch positioning structure 103 may be designed as a ridge, and the ridge is specifically formed on the protective layer of the touch panel 100.
  • the ridge is specifically arranged from the lower edge to the upper edge of the protective layer.
  • the ridges can be designed as curved ridges, which make the touch smoother and improve the touch feel.
  • the curved surface of the ridges can be designed as a gradual curved surface, so that the ridges are not so prominent visually, achieving an invisible but tangible effect, making the touch panel 100 more integrated and improving the overall aesthetics of the earphone compartment.
  • a logo pattern 105 is also provided on the non-display area 102.
  • the logo pattern 105/logo is combined with the non-display area 102 of the touch panel 100, and there is no need to occupy other positions for the logo pattern 105 design.
  • This design not only meets the logo design requirements, but also enables the area where the logo design is located to have a touch function, solving the problem that the area where the logo design is located cannot be touched in the past, and further improving the user's use pleasure.
  • the width of the portion of the non-display area 102 located below the display area 101 is designed to be greater than the width of other portions, and the identification pattern 105 is disposed on the portion of the non-display area 102 located below the display area 101.
  • a wider area is provided for disposing the identification pattern 105, which makes it easier to dispose the identification pattern 105 and also facilitates the touch routing in the location area.
  • a panel mounting opening 2010 for mounting the touch panel 100 is provided on the housing shell 201 .
  • the housing 201 is designed to include a side enclosure 2011 and a bottom enclosure 2012 smoothly connected to the bottom of the side enclosure 2011;
  • the side enclosure 2011 includes two plane portions 2013 and two curved surface portions 2014, the two plane portions 2013 are arranged parallel to each other, one side edge of the two plane portions 2013 is smoothly connected to the two side edges of one curved surface portion 214, and the other side edges of the two plane portions 2013 are smoothly connected to the two side edges of the other curved surface portion 214; this design can achieve a better grip.
  • the distance between the two plane portions 2013 is smaller than the distance between the two curved surface portions 214, that is, the side length of the plane portion 2013 is greater than the side length of the curved surface portion 2014, and the height of the plane portion 2013 is equal to the height of the curved surface portion 2014, so the area of the plane portion 2013 is significantly larger than the area of the curved surface portion 2014.
  • the panel mounting opening 2010 is provided on a planar portion 2013 and partially extends to at least an arc surface portion 2014; the panel mounting opening 2010 is extended to the arc surface portion 2014, so that a larger touch panel 100 can be provided on a machine compartment shell 201 of a certain size, thereby further improving the user interaction experience.
  • the front of the panel portion of the touch panel 100 extending to the curved surface portion 2014 is curved and matches the curvature of the curved surface portion 2014. This design can ensure the integrity of the earphone compartment body and achieve better grip comfort and overall aesthetics.
  • the extension design of the panel installation opening 2010 to the arc surface portion 2014 may be a symmetrical extension design, that is, the panel installation opening 2010 extends to the arc surface portions 2014 on both sides of the plane portion 2013 .
  • the lowest points of the bottom of the bottom enclosure 2012 are all located on the same plane. More specifically, the top of the bottom enclosure 2012 is smoothly connected to the bottom of the side enclosure 2011, and the bottom enclosure 2012 is preferably formed integrally with the side enclosure 2011; the bottom of the bottom enclosure 2012 may be a plane or not, as long as it is ensured that the lowest points of the bottom of the bottom enclosure 2012 are all located on the same plane, so that the bottom of the bottom enclosure 2012 can be placed flat on the desktop.
  • the bottom of the bottom enclosure 2012 can be placed flat on the desktop, thereby meeting the requirement that the entire earphone compartment can be placed vertically on the desktop, so that the user can read the display information on the touch panel 100 without getting close to the earphone compartment, which is conducive to improving the convenience of the user when using the earphone compartment, ensuring that the user has a good user experience, and effectively solving the technical problem that the existing earphone compartment can only be used lying down and is not convenient for the user to read the display information.
  • the bottom of the bottom enclosure 2012 is recessed toward the center of the side enclosure 2011 to form an escape groove 2016. Since the power button 2019 is often designed to be protruding, the escape groove 2016 provided by the internal recess can reserve space for the protruding power button 2019 to be installed on the bottom of the bottom enclosure 2012 without affecting the ability of the entire earphone compartment to be placed vertically on the desktop.
  • a power button 2019 is provided on the bottom enclosure 2012; the power button 2019 is distributed inside the avoidance groove 2016.
  • the power button 2019 can control the earphone compartment to start operation or control the earphone compartment to stop operation, meeting the needs of display screen display and earphone compartment charging.
  • a USB ring 2018 can also be provided at the bottom of the bottom enclosure 2012, and the USB ring 2018 is also provided in the avoidance groove 2016, and the USB ring 2018 facilitates the needs of charging the earphone compartment or connecting with external devices.
  • the profile of the avoidance groove 2016 is specifically circular, elliptical, oblong, polygonal or irregular.
  • the avoidance groove 2016 in an elliptical or oblong shape is more in line with the design requirements of a flat earphone compartment, so that the entire earphone compartment can be stably placed vertically on a desktop for use; of course, the profile of the avoidance groove 2016 can also be a rectangle or other polygon with a large difference in length and width, or an irregular shape such as a plum blossom, which will not be described in detail in this embodiment.
  • the lowest points of the bottom of the bottom circumference 2012 together form a ring structure 2017.
  • the setting of the ring structure 2017 can not only meet the requirement that the entire earphone compartment can be placed vertically on the desktop, but also reserve an avoidance groove 2016 inside for placing components such as the power button 2019, so that users can use the earphone compartment more easily.
  • the shape of the annular structure 2017 preferably matches the shape of the avoidance groove 2016.
  • the contour of the avoidance groove 2016 is elliptical or oblong
  • the shape structure is in the shape of a runway.
  • a chamfer 104 is provided on the front edge of the touch panel 100. Designing the front edge of the touch panel 100 as a chamfer 104 is easier to process than the existing rounded corner design. A smaller and uniform high-precision chamfer 104 can be processed on the front edge of the touch panel 100 by CNC, which reduces the production cost and makes the gap between the touch panel 100 and the housing 201 smaller, thereby solving the problem of poor integrity of the existing earphone housing that affects the user's grip comfort and overall aesthetics.
  • the chamfer 104 is a 45° chamfer
  • the straight side length of the 45° chamfer is 0.05 mm. If the straight side length is too long, it will affect the optimization effect of the gap between the touch panel 100 and the housing shell 201, and if it is too short, the front edge of the touch panel 100 will be too sharp and there will be a risk of cutting hands. Therefore, in order to balance the gap and the grip feel, the straight side length of the 45° chamfer is designed to be 0.05 mm.
  • a supporting flange 2015 for supporting the touch panel 100 is provided at the bottom of the panel installation opening 2010 .
  • the supporting flange 2015 can be integrally arranged around the bottom of the panel installation opening 2010 . This design can increase the supporting area with the touch panel 100 and improve the stability of the installation.
  • the inside of the bracket seat 204 is provided with a placement position adapted to the host motherboard 203.
  • the setting of the placement position can facilitate the installation of the host motherboard 203 at the accurate position of the bracket seat 204, which is conducive to improving the assembly efficiency;
  • the placement position is lower than the side wall edge of the bracket seat 204, so that the host motherboard 203 can be assembled inside the bracket seat 204, and the bracket seat 204 forms a limit to the host motherboard 203 through the structure at the edge of the placement position, and then the cover 205 is combined to cover and limit the host motherboard 203, thereby realizing all-round limit protection for the host motherboard 203, and preventing the host motherboard 203 from loosening after assembly.
  • a protruding plate portion 2030 is extended from the inner edge of the host motherboard 203, and a positioning groove 2047 matching the protruding plate portion 2030 is provided inside the bracket seat 204; an external component such as the aforementioned USB ring 2018 is provided on the outer edge of the host motherboard 203, and a notch 2045 is provided on the edge of the bracket seat 204 for exposing the external component.
  • the external component can meet the needs of the host motherboard 203 to be connected to an external device.
  • a limiting structure 2046 corresponding to the edge of the host motherboard 203 is provided between the bracket seat 204 and the cover 205.
  • the setting of the limiting structure 2046 can limit the edge of the host motherboard 203, which is conducive to preventing the host motherboard 203 from shifting when it is installed between the bracket seat 204 and the cover 205, so that the host motherboard 203 is well fixed and protected.
  • the limiting structure 2046 includes a limiting groove and a limiting protrusion that match the concave and convex; the bracket seat 204 is provided with a first limiting protrusion, and the cover 205 is provided with a first limiting groove that matches the first limiting protrusion; the headphone bracket 202 is provided with a second limiting groove, and the cover 205 is provided with a second limiting protrusion that matches the second limiting groove.
  • the host motherboard 203 is connected to the bracket seat 204 by snaps or screws.
  • the host motherboard 203 is connected to the bracket seat 204 by snaps or screws, which not only has the advantage of convenient assembly, but also ensures the detachability between the host motherboard 203 and the bracket seat 204, so as to facilitate subsequent maintenance and replacement.
  • a first connection hole 2032 is provided on the host motherboard 203, and a first stud 2043 corresponding to the first connection hole 2032 is provided on the bracket seat 204.
  • the first screw 2041 passes through the first connection hole 2032 and is connected to the first stud 2043, so that the host motherboard 203 is fixedly installed on the bracket seat 204. More specifically, there are multiple, preferably four, first connection holes 2032, and the multiple first connection holes 2032 are distributed at different positions on the host motherboard 203; during assembly, the first screw 2041 can be quickly connected to the first stud 2043 using an automatic screw tightening device, which is conducive to accelerating assembly efficiency.
  • the contact surface shapes between the cover 205 and the bracket seat 204 are adapted to each other, that is, the cover 205 can be adapted to be installed on the side wall of the bracket seat 204, and the cover 205 can fill the missing positions of the side wall of the bracket seat 204, so that the assembly of the various components of the earphone compartment body is more compact, which is conducive to saving the internal space of the earphone compartment body.
  • the outer contour of the cross section of the cover 205 and the bracket seat 204 is an oblong, circular, elliptical or polygonal shape. This arrangement allows the cover 205 and the bracket seat 204 to tend to form an earphone compartment body of a desired shape after assembly, forming a preliminary foundation for the appearance of the earphone compartment body.
  • the cover 205 is connected to the bracket seat 204 by snapping or screwing.
  • the cover 205 is connected to the bracket seat 204 by snapping or screwing, which not only has the advantage of convenient assembly, but also ensures the detachability between the host motherboard 203 and the bracket seat 204, so as to facilitate subsequent maintenance and replacement.
  • the cover 205 is provided with a second connection hole 2052
  • the bracket seat 204 is provided with a second stud 2044 corresponding to the second connection hole 2052.
  • the second screw 2042 passes through the second connection hole 2052 and is connected to the second stud 2044, so that the cover 205 is fixedly installed on the bracket seat 204.
  • the multiple second connection holes 2052 there are multiple second connection holes 2052, and the multiple second connection holes 2052 are distributed at different positions of the cover 205; preferably, there are four second connection holes 2052, and the four second connection holes 2052 are respectively distributed at the four corners of the cover 205; during assembly, the automatic screw tightening equipment can be used to quickly complete the connection between the second screw 2042 and the second stud 2044, which is conducive to speeding up the assembly efficiency.
  • the edge of the host motherboard 203 is provided with a notch 2048 that is in limiting contact with the second stud 2044.
  • the second stud 2044 is in limiting contact with the notch 2048 of the host motherboard 203, which can further enhance the limiting effect and positioning effect of the host motherboard 203, and ensure that the host motherboard 203 can be stably installed between the bracket seat 204 and the cover 205.
  • a reinforcing member 2053 is provided at the edge of the cover 205. Since the middle of the cover 205 needs to leave a space for installing the battery assembly 700, the cover 205 is hollowed out as a whole, and the shell strength around the battery assembly 700 is relatively weak (that is, the edge strength of the cover 205 is relatively weak). Therefore, by adding a reinforcing member 2053 to the edge of the cover 205 for reinforcement, the cover 205 has better strength to press the host motherboard 203, and can protect the host motherboard 203 from impact damage when it falls.
  • multiple reinforcing members 2053 there are multiple reinforcing members 2053 , and multiple reinforcing members 2053 arranged in parallel are distributed on both sides of the covering member 205 .
  • the host motherboard 203 is connected to the screen adapter cable 2033; the touch panel 100 is connected to the screen wiring 106; the headphone holder 202 also includes a fixing member 400; the fixing member 400 is snap-connected to the headphone holder 202, and the terminal 1061 of the screen wiring is crimped and fixed to the terminal 2034 of the screen adapter cable.
  • the above design can make the assembly of the screen wiring 106 and the screen transfer cable 2033 easier, increase the production line pass rate, overcome the cumulative tolerance formed by the connectors of the screen transfer cable 2033 and the screen wiring 106, and effectively solve the technical problem of the difficulty in assembling the existing screen transfer cable 2033 and the flat cable.
  • the fixing member 400 since the fixing member 400 is snap-connected with the bracket seat 204, the fixing member 400 will not collide with the screen when the product is used due to vibration, thus solving the problem of the sound of the square hole sleeve colliding with the screen when the product is used due to vibration.
  • the bracket seat 204 is provided with a wiring groove 204-1 for placing the wiring terminal 2034 of the screen adapter cable; the setting of the wiring groove 204-1 can provide a suitable position for the connection and fixation between the wiring terminal 2034 of the screen adapter cable, the wiring terminal 1061 of the screen wiring and the fixing member 400, which is convenient for providing a reference position during assembly, so that the wiring terminal 2034 of the screen adapter cable and the wiring terminal 1061 of the screen wiring can be docked at the required position.
  • the side wall of the wiring groove 204-1 is provided with a first buckle structure; the fixing member 400 is provided with a second buckle structure that buckles with the first buckle structure.
  • the fixing member 400 can conveniently crimp the connection terminal 2034 of the screen adapter cable and the connection terminal 1061 of the screen connection into the wiring groove 204-1, and at the same time, the detachability between the fixing member 400 and the bracket seat 204 is ensured, which is convenient for subsequent disassembly and maintenance.
  • the first snap-fit structure includes a socket 204-4 and a connecting protrusion 204-5; the socket 204-4 and the connecting protrusion 204-5 are respectively arranged on both sides of the wiring groove 204-1; the second snap-fit structure includes a plug-in 404 plugged into the socket 204-4 and a stopper groove 405 snap-fitted with the connecting protrusion 204-5.
  • one side of the fixing member 400 can be first inserted into the socket 204-4 of the groove through the plug-in 404, and then the other side of the fixing member 400 can be squeezed until the connecting protrusion 204-5 of the groove snaps into the stopper groove 405, so that both sides of the fixing member 400 are snap-fitted with the bracket seat 204, ensuring the stability of the fixing member 400 crimping and fixing the connection terminal 2034 of the screen adapter cable and the connection terminal 1061 of the screen wiring.
  • the connecting protrusion 204-5 and the socket 204-4 are respectively arranged on the side walls of the wiring groove 204-1; the socket 204-4 of the wiring groove 204-1 extends through to the outside of the bracket seat 204, so that appropriate assembly space can be reserved so that the fixing part 400 can be more easily snap-connected with the bracket seat 204.
  • Connectors 401 are provided on both sides of the fixing member 400; plug-in 404 and stopper groove 405 are respectively provided on the two connecting members 401.
  • the setting of the connecting member 401 can provide a position for installing the plug-in 404 and the stopper groove 405 to meet the requirement of snap connection between the side wall of the fixing member 400 and the side wall of the wiring groove 204-1.
  • the two connecting members 401 are connecting plates formed by extending downward from the two side edges of the fixing member 400
  • the plug-in 404 is a plug-in plate formed by extending outward from the edges of the connecting plate
  • the limiting groove 405 is arranged at the position where the connecting member 401 is connected to the fixing member 400. This arrangement can appropriately stagger the positions of the plug-in 404 and the limiting groove 405 along the height direction, so that the fixing member 400 can be more easily snapped onto the bracket seat 204.
  • the two connecting members 401 are respectively in contact with the two side walls of the wiring groove 204-1.
  • This arrangement can well limit the range of movement of the fixing member 400, prevent the fixing member 400 from loosening after being installed on the bracket seat 204, and help ensure the stability of the fixing member 400 in crimping the connection terminal 2034 of the screen adapter cable and the connection terminal 1061 of the screen connection.
  • the wiring groove 204-1 is provided with a first positioning member 204-2 for positioning the wiring terminal 2034 of the screen adapter cable.
  • the first positioning member 204-2 is specifically provided on a convex strip at the bottom of the wiring groove 204-1.
  • the first positioning member 204-2 can play a positioning role when the wiring terminal 2034 of the screen adapter cable is installed in the wiring groove 204-1, so that the wiring terminal 2034 of the screen adapter cable can be crimped and fixed at the required position, ensuring the accuracy of the connection between the wiring terminal 2034 of the screen adapter cable and the wiring terminal 1061 of the screen wiring.
  • the fixing member 400 is provided with a pressing member 402; the pressing member 402 is located on the side of the fixing member 400 away from the positioning member.
  • the pressing member 402 can form a downward pressing force on the screen alignment cable, which is conducive to improving the reliability of the fixing member 400 to the screen alignment cable.
  • the combined use of the pressing member 402 and the first positioning member 204-2 can well limit the range of movement of the terminal of the screen alignment cable, which is conducive to ensuring the stability of the fixing member 400 to the terminal of the screen alignment cable.
  • the pressing member 402 is a plate-like structure formed by extending downwardly from the edge of the fixing member 400 ; the fixing member 400 is provided with crack stoppers 403 on both sides of the pressing member 402 , which are helpful in preventing cracks from occurring in the flanged pressing member 402 .
  • the bracket seat 204 is provided with a second positioning member 204-3 for positioning the screen transfer cable 2033.
  • the second positioning member 204-3 is specifically a convex strip provided on the surface of the bracket seat 204.
  • the surface where the earphone holder 202 contacts the upper cover holder 302 or the surface where the upper cover holder 302 contacts the earphone holder 202 is a convex surface 304 or a concave surface 305 . More specifically, the surface where the headphone holder 202 contacts the upper cover holder 302 (that is, the top surface of the headphone holder 202, specifically, the top surface of the holder seat 204) can be a convex surface 304 or a concave surface 305.
  • the convex surface 304 or the concave surface 305 as the top surface of the headphone holder 202 can allow the paint to flow evenly to every place of the concave surface 305 or the convex surface 304, which is beneficial to reduce the accumulation of paint on the top surface of the headphone holder 202; similarly, the surface where the upper cover holder 302 contacts the headphone holder 202 (that is, the bottom surface of the upper cover holder 302) can be a convex surface 304 or a concave surface 305.
  • using the convex surface 304 or the concave surface 305 as the bottom surface of the upper cover holder 302 can allow the paint to flow evenly to every place of the concave surface 305 or the convex surface 304, which is beneficial to reduce the accumulation of paint on the bottom surface of the upper cover holder 302.
  • the paint can flow evenly to every place of the concave surface 305 or the convex surface 304, the leveling effect is good, the paint thickness is uniform after baking, and paint accumulation is not easy to occur, which effectively solves the technical problem that paint accumulation is easy to occur on the upper cover holder 302 or the earphone holder 202 of the existing earphone compartment during painting.
  • the earphone bracket 202 and the upper cover bracket 302 can cooperate with each other, and the contact surface between the earphone bracket 202 and the upper cover bracket 302 cannot be a convex surface 304 or a concave surface 305 at the same time.
  • the surface where the earphone bracket 202 contacts the upper cover bracket 302 is a convex surface 304, and the surface where the upper cover bracket 302 contacts the earphone bracket 202 is a concave surface 305; it can also be designed that the surface where the earphone bracket 202 contacts the upper cover bracket 302 is a concave surface 305, and the surface where the upper cover bracket 302 contacts the earphone bracket 202 is a convex surface 304.
  • This setting can avoid the situation where paint is not easily accumulated on the contact surface between the upper cover bracket 302 and the earphone bracket 202 without affecting the cooperation between the earphone bracket 202 and the upper cover bracket 302, and the paint thickness is uniform after baking, which meets the production requirements.
  • the convex surface 304 is specifically a curved convex surface 304; and the concave surface 305 is specifically a curved concave surface 305. Since customers often touch the contact surface between the upper cover bracket 302 and the earphone bracket 202 when using the earphone compartment, the contact surface between the upper cover bracket 302 and the earphone bracket 202 is set as the curved convex surface 304 and the curved concave surface 305, which can provide users with a smooth touch experience without hurting their hands.
  • the earphone bracket 202 is provided with two symmetrically arranged first earphone slots 2040; the surface where the earphone bracket 202 contacts the upper cover bracket 302 is symmetrically arranged about the symmetry line of the two first earphone slots 2040.
  • the arrangement of the two first earphone slots 2040 meets the requirement of placing earphones on the earphone bracket 202, and at the same time, the symmetrical design is adopted on the surface where the earphone bracket 202 contacts the upper cover bracket 302, which is more in line with the user's aesthetics of the appearance of the earphone compartment.
  • two second earphone slots 303 are symmetrically arranged on the upper cover bracket 302; the surface where the upper cover bracket 302 contacts the earphone bracket 202 is symmetrically arranged about the symmetry line of the two second earphone slots 303.
  • the two second earphone slots 303 are used in conjunction with the two first earphone slots 2040 to meet the requirements of the earphone compartment for accommodating and protecting the earphones.
  • the symmetrical design is adopted on the surface where the upper cover bracket 302 contacts the earphone bracket 202, which is more in line with the user's aesthetic taste for the appearance of the earphone compartment.
  • the curved convex surface 304 includes two symmetrically arranged circular arc convex surfaces 304 or two symmetrically arranged elliptical arc convex surfaces 304, that is, the curved convex surface 304 is specifically a double arc convex surface 304 symmetrically arranged about the symmetry line of the two first earphone slots 2040 (or the second earphone slots 303).
  • the setting of the double arc convex surface 304 is conducive to improving the aesthetics of the appearance of the earphone compartment body, and can also allow the paint to flow evenly to every place of the convex surface 304, so that the leveling effect is good and the paint thickness is uniform after baking.
  • the height of the double-arc convex surface 304 gradually increases from the edge position to the middle position.
  • the curved concave surface 305 includes two symmetrically arranged circular arc concave surfaces 305 or two symmetrically arranged elliptical arc concave surfaces 305, that is, the curved concave surface 305 is specifically a double arc concave surface 305 symmetrically arranged about the symmetry line of the two second earphone slots 303 (or the first earphone slot 2040).
  • the setting of the double arc concave surface 305 is conducive to improving the aesthetics of the appearance of the earphone compartment body, and can also allow the paint to flow evenly to every place of the concave surface 305, with a good leveling effect and uniform paint thickness after baking.
  • the height of the double-arc concave surface 305 gradually decreases from the edge position to the middle position.
  • the surface where the earphone bracket 202 contacts the upper cover bracket 302 is the double-arc convex surface 304
  • the surface where the upper cover bracket 302 contacts the earphone bracket 202 (secondary appearance surface) is the double-arc concave surface 305.
  • the height difference between the highest point and the lowest point on the surface where the earphone support 202 contacts the upper cover support 302 or the surface where the upper cover support 302 contacts the earphone support 202 is 0.20 mm to 0.30 mm.
  • the contact surface between the earphone support 202 and the upper cover support 302 is provided with a concave surface 305 and a convex surface 304 of matching shapes.
  • the concave surface 305 and the convex surface 304 of matching shapes can be covered and sealed with each other, and the earphones located in the earphone compartment body have a good dustproof and waterproof effect.
  • the compartment cover 300 is provided with a first pair of magnets 3022 and a compartment cover Hall magnet 3021; the compartment body 200 is provided with a second pair of magnets 2021 that cooperate with the first pair of magnets 3022 and a compartment Hall switch 2031 for sensing the compartment cover Hall magnet 3021.
  • a compartment cover Hall magnet 3021 By independently designing a compartment cover Hall magnet 3021 to specifically cooperate with the compartment Hall switch 2031, sensing is achieved. Compared with the existing method of sensing the magnetic field generated between the pair of magnets, the sensing accuracy is better.
  • first pair of attractive magnets 3022 and the compartment cover Hall magnet 3021 are installed on the upper cover bracket 302
  • the second pair of attractive magnets 2021 are installed on the earphone bracket 202
  • the compartment Hall switch 2031 is installed in the compartment shell 201 .
  • the number of the first pair of magnets 3022 can be designed to be multiple. The increase in the number also improves the overall quality of the compartment cover 300, and thus can improve the feel of opening and closing the cover to a certain extent.
  • the four first pairs of magnets 3022 can be distributed at the four corners of the upper cover bracket 302. This number can achieve a better opening and closing feel, and can also avoid interference with the compartment Hall switch 2031 due to too many magnets.
  • the compartment cover Hall magnet 3021 is designed between the four first pairs of magnets 3022. Taking the first pair of magnets 3022 as an example, the number of the corresponding second pair of magnets 2021 is also four, and the first pair of magnets 3022 are distributed one-to-one.
  • the upper cover bracket 302 is provided with a first magnet installation slot 3020 for accommodating the first pair of magnets 3022 and the compartment cover Hall magnet 3021.
  • the earphone bracket 202 is provided with a second magnet installation slot 2020 for accommodating the second pair of magnets 2021.
  • the upper edge of the host motherboard 203 disposed in the main body 200 of the machine compartment is provided with the aforementioned convex plate portion 2030 convexly upwardly corresponding to the position of the Hall magnet 3021 of the compartment cover; the machine compartment Hall switch 2031 is arranged on the convex plate portion 2030.
  • This design can shorten the sensing distance between the machine compartment Hall switch 2031 and the Hall magnet 3021 of the compartment cover, further improve the sensing accuracy, and make the triggering consistency of the machine compartment Hall switch 2031 better.
  • the cover 301 is hinged to the housing 201 through a curved damping shaft 703; the cover 301 is snap-connected to the upper cover bracket 302; the headphone housing is also provided with a linear motor 701 electrically connected to the host motherboard 203, a power circuit board, a cover 205, a host motherboard 203, a headphone bracket 202, a bracket seat 204 and a touch panel 100, which are snap-fixed in sequence; the microphone cable 704 and the microphone board bracket 702 are both fixed on the bracket seat 204.
  • a card holder 2023 is provided on one of the arc portions 214, and the card holder 2023 can meet the need for the headphone housing to be plugged in with a SIM card, which is conducive to expanding the scope of use of the headphone housing to meet the diverse needs of users.
  • the present application also discloses an electronic device, including earphones and the earphone compartment of the above-mentioned embodiment 1 or embodiment 2, wherein the earphone compartment is used to store the earphones.
  • the earphone is provided with an earphone magnet 503, and the earphone compartment body 200 is also provided with an earphone positioning magnet 2022 that is attracted to and cooperates with the earphone magnet 503.
  • the arrangement of the earphone magnet 503 and the earphone positioning magnet 2022 enables the earphone to be firmly adsorbed and fixed in the earphone compartment after entering the compartment, thereby ensuring the charging stability of the earphone.
  • the earphone is also configured with an earphone Hall switch 504 for sensing the earphone positioning magnet 2022; the design of the earphone Hall switch 504, together with the conventional method of monitoring the end PIN needle of the earphone through the circuit, forms a double alarm, which can ensure that the earphone can be accurately identified when entering the warehouse.
  • the earphone Hall switch 504 is designed to have a vertical distance of 2mm-5mm from the earphone positioning magnet 2022 after the earphone is put into the compartment.
  • the earphone includes an earphone housing 500, an antenna 603 and an earphone battery 600; the antenna 603 is attached to the outer wall of the earphone battery 600; the antenna 603 and the earphone battery 600 are jointly adapted and installed inside the earphone housing 500.
  • the antenna 603 is a strip-shaped sheet structure, and when in use, the antenna 603 is located on the side of the earphone housing 500 away from the human ear; the antenna 603 and the earphone battery 600 are jointly adapted and installed inside the earphone housing 500, that is, under the premise that the antenna 603 is attached to the outer wall of the earphone battery 600, the outer wall of the antenna 603 and the outer wall of the earphone battery 600 are in contact with and against the inner wall of the earphone housing 500, so that the installation space inside the earphone housing 500 can be maximized.
  • the antenna 603 is attached to the outer wall of the earphone battery 600, and the antenna 603 and the earphone battery 600 are jointly adapted and installed inside the earphone shell 500. There is no need to reserve too much space during assembly. It has the advantages of compact structure, easy assembly and sufficient layout space, which meets the needs of lightweight and miniaturized design of the earphone and effectively solves the technical problem that the internal components of the existing earphones are not installed compactly enough.
  • the antenna 603 is specifically an LDS antenna 603. That is to say, a laser engraving layer is provided on the surface of the antenna 603, and the provision of the laser engraving layer can reduce the obstruction to the wireless transmission of the antenna 603 and improve the remote communication performance of the antenna 603.
  • the earphone battery 600 is cylindrical, elliptical or prism-shaped.
  • the shape of the earphone battery 600 is selected according to actual needs, and a cylindrical earphone battery 600 is preferably used, which can better match the handle 502 of the earphone.
  • the shape of the surface of the antenna 603 in contact with the earphone battery 600 matches the shape of the earphone battery 600.
  • the antenna 603 can be matched and mounted on the surface of the earphone battery 600 through its inner surface, which is beneficial to reduce the gap between the antenna 603 and the earphone battery 600, so that the antenna 603 and the earphone battery 600 can be adapted and installed together inside the earphone housing 500.
  • the surface where the antenna 603 contacts the earphone battery 600 is an arc surface.
  • the surface of the antenna 603 in contact with the earphone housing 500 is a curved surface.
  • the antenna 603 can well contact and abut the inner wall of the earphone housing 500 through its curved outer surface, which is conducive to reducing the gap between the antenna 603 and the inner wall of the earphone housing 500, meeting the requirements of the earphone lightweight design.
  • the earphone housing 500 includes an ear inlet 501 and a handle 502 connected to the ear inlet 501; the antenna 603 and the earphone battery 600 are both adapted to be installed inside the handle 502. Since the earphone battery 600 and the antenna 603 are both relatively long, the longer handle 502 of the earphone housing 500 is more suitable for the installation of the earphone battery 600 and the antenna 603, and the inside of the handle 502 is easier to be processed into an installation space that matches the combination of the earphone battery 600 and the antenna 603.
  • the handle 502 and the ear inlet 501 are both hollow, one end of the handle 502 is connected to the ear inlet 501, and the other end of the handle 502 is provided with an antenna 603 installation port 506 for inserting the earphone battery 600 and the antenna 603; the earphone battery 600 and the antenna 603 are jointly adapted and installed in the inner cavity of the handle 502.
  • an inner cavity with a cross-sectional shape matching the common cross-sectional shape of the antenna 603 and the earphone battery 600 after mounting can be provided on the inner wall of the handle 502.
  • the installation of the antenna 603 and the earphone battery 600 is not affected, and the antenna 603 and the earphone battery 600 can be effectively limited to avoid loosening of the antenna 603 and the earphone battery 600 when the earphone is in use.
  • an earphone motherboard 604 is also included; the earphone motherboard 604 is matched and installed inside the ear inlet 501; the earphone motherboard 604 is connected to the antenna 603 through the earphone wire 601.
  • the ear inlet 501 can provide sufficient installation space for the earphone motherboard 604, and at the same time, it does not affect the connection between the earphone motherboard 604 and the earphone battery 600 or the antenna 603; the earphone motherboard 604 is preferably processed into a shape that matches the shape of the inner cavity of the ear inlet 501, which also meets the compact assembly design of the earphone.
  • the earphone wire 601 is located at the connection between the ear inlet 501 and the handle 502, the earphone wire 601 is preferably in a stepped shape. This arrangement allows part of the earphone wire 601 to be arranged along the edge of the earphone battery 600, making the wiring more reasonable.
  • the headset mainboard 604 is provided with a headset cable 602; the headset cable 602 is provided with a positive electrode pad 605 and a negative electrode pad 606 at both ends of the headset battery 600.
  • the headset cable 602 can serve as a connecting component between the headset battery 600 and the headset mainboard 604, and can transmit the power provided by the headset battery 600 to the headset mainboard 604, so that the headset mainboard 604 can operate.
  • the earphone cable 602 is attached to the outer periphery of the earphone battery 600, and the earphone cable 602 is specifically a strip-shaped sheet structure.
  • This arrangement can effectively reduce the assembly space between the earphone cable 602 and the earphone battery 600 without affecting the earphone battery 600 supplying power to the earphone mainboard 604, so that the antenna 603, the earphone battery 600 and the earphone cable 602 can be adapted and installed together on the handle 502 of the earphone, meeting the requirements of compact assembly and lightweight design of the earphone.
  • a tail cover 505 is also included; the tail cover 505 is encapsulated on the end of the handle 502 away from the ear inlet 501.
  • the tail cover 505 can cover and seal the antenna 603 and the earphone battery 600 to prevent the antenna 603 and the earphone battery 600 from sliding out of the handle 502.
  • the tail cover 505 is detachably connected to the handle 502, meeting the needs of repairing and replacing the antenna 603 and the earphone battery 600.
  • the first earphone slot 2040 on the earphone bracket 202 of the earphone compartment is composed of a first cavity adapted to the ear-entry portion 501 and a second cavity adapted to the handle portion 502; in order to make the structure in the earphone compartment more compact, the earphone positioning magnet 2022 is arranged below the first cavity; based on this design, in order to make the earphone magnet 503 closer to the earphone positioning magnet 2022 to achieve better suction, the earphone magnet 503 is arranged at the bottom of the ear-entry portion 501, and the earphone magnet 503 at least partially overlaps with the projection of the earphone positioning magnet 2022 in the vertical direction after the earphone is inserted into the compartment, and the vertical center line of the earphone magnet 503 does not overlap with the vertical center line of the earphone positioning magnet 2022.
  • a partial overlap and offset design is achieved between the smaller-sized earphone magnet 503 and the larger-sized earphone positioning magnet 2022, and the partial overlap design can ensure that there is a certain magnetic attraction force between the earphone magnet 503 and the earphone positioning magnet 2022, meeting the magnetic attraction requirements.
  • the eccentric design can give way to the headphone Hall switch 504 in the headphone, so that the headphone Hall switch 504 can more accurately sense the headphone positioning magnet 2022.
  • this offset design can also weaken the magnetic attraction force to a certain extent, thereby helping to improve the feel of taking and putting the headphone, and further improving the user experience.
  • the first pair of magnets 3022, the second pair of magnets 2021, the compartment Hall switch 2031, the compartment cover Hall magnet 3021, the headphone positioning magnet 2022 and the headphone magnet 503 are all reasonably distributed and arranged to better ensure their coexistence and normal operation.
  • the earphone inlet 501 is also provided with an earphone touch pad 607 arranged along the earphone inlet 501 toward the handle 502.
  • the earphone touch pad 607 is inclined at an acute angle relative to the extension line of the center line of the handle 502. This design can play a certain role in blind operation positioning and can also further enhance the operating experience of the earphone.
  • the angle a between the earphone touch panel 607 and the extension line of the center line of the handle 502 is 25° to 35°. If the angle a is designed to be too large, the ear inlet 501 will not match the auricle of the human body, and if the angle a is designed to be too small, it is easy to loosen when pressed.
  • the angle a is preferably designed to be 30°.
  • the earphone touch panel 607 is preferably designed to be an inverted triangle. Because if it is designed to be a rectangle, the information collection surface that can be provided in the width direction is relatively small, that is, the contact surface with the finger is smaller, which will lead to a poor operating experience; and if it is designed to be a square or a circle, the structure of the ear inlet 501 will become very large. After comprehensive consideration, it is preferably designed to be an inverted triangle, which has a larger touch area and does not make the structure of the ear inlet 501 larger.

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  • Engineering & Computer Science (AREA)
  • Acoustics & Sound (AREA)
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Abstract

本申请公开了一种耳机仓及电子设备,涉及耳机技术领域,其中耳机仓包括耳机仓体;耳机仓体包括机仓主体以及机仓盖;机仓盖可开闭地安装于机仓主体上,包括盖体以及上盖支架;上盖支架安装于盖体上;机仓主体包括机仓壳体以及耳机支架;耳机支架安装于机仓壳体上;耳机支架包括支架座、主机主板和覆盖件。通过将主机主板设置在支架座的侧壁上,再通过覆盖件对主机主板进行覆盖保护,不仅可以使得主机主板在支架座与覆盖件之间得到很好的固定与保护作用,而且覆盖件与支架座之间的定位对准方便、装配也简单,有效地解决了现有技术中存在装配不方便的技术问题。

Description

一种耳机仓及电子设备 技术领域
本申请涉及耳机技术领域,尤其涉及一种耳机仓及电子设备。
背景技术
蓝牙耳机是将蓝牙技术应用在免持耳机上,让使用者可以免除恼人电线的牵绊,自在地以各种方式轻松通话。蓝牙耳机自面世以来,就成为了提升效率的好工具。
目前的蓝牙耳机产品通常会配备耳机仓,耳机仓能够延长耳机的使用时长,同时提供耳机收纳保护,进一步提升蓝牙耳机的使用体验。现有大多数耳机仓的耳机仓体均由底壳、内托和顶盖组成,内托装配于底壳的顶部开口处,内托的顶部与顶盖的底部之间设有用于放置耳机的耳机槽,电池组件以及主板则安装于内托与底壳之间形成的容纳空间。采用这样的组装方式装配不方便,特别是内托需要通过过盈配合的方式安装于底壳的内腔内,装配时需要内托与底壳之间能够精准定位对准,装配更加不方便。
发明内容
有鉴于此,本申请的目的是提供一种耳机仓及电子设备,用于解决现有技术中存在装配不方便的技术问题。
为达到上述技术目的,本申请提供了一种耳机仓,包括耳机仓体;
所述耳机仓体包括机仓主体以及机仓盖;
所述机仓盖可开闭地安装于所述机仓主体上,包括盖体以及上盖支架;
所述上盖支架安装于所述盖体上;
所述机仓主体包括机仓壳体以及耳机支架;
所述耳机支架安装于所述机仓壳体上;
所述耳机支架包括支架座、主机主板和覆盖件;
所述主机主板和所述覆盖件均可拆卸安装于所述支架座的侧壁上,且 所述覆盖件覆设所述主机主板设置。
进一步地,所述耳机仓体上设有触控面板;
所述主机主板连接有屏幕转接排线;
所述触控面板连接有屏幕接线;
所述耳机支架还包括固定件;
所述固定件与所述耳机支架卡扣连接,并将所述屏幕接线的接线端子与所述屏幕转接排线的接线端子压接固定。
进一步地,所述支架座上设有用于放置所述屏幕转接排线的接线端子的接线凹槽;
所述接线凹槽的侧壁设有第一卡扣结构;
所述固定件设有与所述第一卡扣结构卡扣配合的第二卡扣结构。
进一步地,所述耳机支架与所述上盖支架接触的面或所述上盖支架与所述耳机支架接触的面为凸面或凹面。
进一步地,所述耳机支架与所述上盖支架接触的面为凸面,且所述上盖支架与所述耳机支架接触的面为凹面;或
所述耳机支架与所述上盖支架接触的面为凹面,且所述上盖支架与所述耳机支架接触的面为凸面。
进一步地,在所述耳机支架与所述上盖支架接触的面或所述上盖支架与所述耳机支架接触的面上,最高点与最低点之间的高度差为0.20mm~0.30mm。
进一步地,所述机仓盖配置有第一对吸磁铁以及仓盖霍尔磁铁;
所述机仓主体上配置有与所述第一对吸磁铁配合的第二对吸磁铁以及用于感应所述仓盖霍尔磁铁的机仓霍尔开关。
进一步地,所述机仓主体内配置的主机主板上边缘对应所述仓盖霍尔磁铁位置向上凸设有凸板部;
所述机仓霍尔开关设置所述凸板部上。
一种电子设备,包括耳机以及上述的耳机仓;
所述耳机仓用于收纳所述耳机;
所述耳机包括耳机壳体、天线和耳机电池;
所述天线贴装于所述耳机电池的外壁;
所述天线和所述耳机电池共同适配安装于所述耳机壳体的内部;
所述耳机壳体包括入耳部以及与入耳部连接的柄部。
进一步地,所述耳机内配置有耳机磁铁;
所述耳机仓的机仓主体内还配置有与所述耳机磁铁对吸配合的耳机定位磁铁。
进一步地,所述耳机内还配置有用于感应所述耳机定位磁铁的耳机霍尔开关;
所述耳机入仓之后,所述耳机霍尔开关与所述耳机定位磁铁之间的竖直距离为2mm-5mm。
进一步地,所述天线具体为LDS天线。
进一步地,所述耳机仓的耳机支架上的第一耳机槽由适配所述入耳部的第一腔体以及适配所述柄部的第二腔体组成;
所述耳机定位磁铁设于所述第一腔体下方;
所述耳机磁铁设于所述入耳部内的底部,所述耳机磁铁在所述耳机入仓之后与所述耳机定位磁铁在竖直方向的投影至少部分重合,且所述耳机磁铁的竖直中心线与所述耳机定位磁铁的竖直中心线不重合。
进一步地,所述入耳部上还设有沿所述入耳部向所述柄部方向设置的耳机触控板;
所述耳机触控板相对于所述柄部的中心线的延长线呈锐角倾斜设置。
进一步地,所述耳机触控板与所述柄部的中心线的延长线之间的夹角为25°~35°。
进一步地,所述耳机触控板呈倒三角形。
从以上技术方案可以看出,本申请所设计的耳机仓,包括耳机仓体;耳机仓体包括机仓主体以及机仓盖;其机仓主体包括机仓壳体以及安装于机仓壳体上的耳机支架;耳机支架包括支架座、主机主板以及覆盖件。通过将主机主板设置在支架座的侧壁上,再通过覆盖件对主机主板进行覆盖保护,不仅可以使得主机主板在支架座与覆盖件之间得到很好的固定与保护作用,而且覆盖件与支架座之间的定位对准方便、装配也简单,有效地解决了现有技术中存在装配不方便的技术问题。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其它的附图。
图1为本申请中提供的一种耳机仓的整体立体图;
图2为本申请中提供的一种耳机仓的整体爆炸示意图;
图3为本申请中提供的一种耳机仓的带有触控面板的机仓壳体的立体图;
图4为本申请中提供的一种耳机仓的带有触控面板的机仓壳体的主视图;
图5为本申请中提供的一种耳机仓的带有触控面板的机仓壳体的剖视图;
图6为本申请中提供的一种耳机仓的触控面板的立体图;
图7为本申请中提供的一种耳机仓的带有标识图案的触控面板的主视图;
图8为本申请中提供的一种耳机仓的第一局部爆炸示意图;
图9为本申请中提供的一种耳机仓的第一局部结构示意图;
图10为本申请中提供的一种耳机仓的第二局部结构示意图;
图11为本申请中提供的一种耳机仓的第二局部爆炸示意图;
图12为图5中的A位置放大示意图;
图13为本申请中提供的一种耳机仓的耳机支架的爆炸示意图;
图14为本申请中提供的一种耳机仓的支架座的第一立体图;
图15为本申请中提供的一种耳机仓的支架座的主视图;
图16为本申请中提供的一种耳机仓的支架座带有主机主板的主视图;
图17为本申请中提供的一种耳机仓的覆盖件覆盖于主机主板时的主视图;
图18为本申请中提供的一种耳机仓的覆盖件的后视图;
图19为本申请中提供的一种耳机仓的耳机支架的立体图;
图20为本申请中提供的一种耳机仓的支架座带有触控面板的第一爆炸图;
图21为本申请中提供的一种耳机仓的支架座带有触控面板的第二爆炸图;
图22为本申请中提供的一种耳机仓的耳机支架带有触控面板的主视图;
图23为图22中A-A方向的剖视图
图24为本申请中提供的一种耳机仓的支架座的第二立体图;
图25为本申请中提供的一种耳机仓的支架座装配有屏幕转接排线的第三立体图;
图26为本申请中提供的一种耳机仓的支架座装配有固定件的第四立体图;
图27为本申请中提供的一种耳机仓的支架座带有触摸面板的第五立体图;
图28为本申请中提供的一种耳机仓的固定件的立体图;
图29为本申请中提供的一种耳机仓的固定件与支架座连接的局部放大示意图;
图30为本申请中提供的一种耳机仓的支架座与上盖支架的爆炸示意图;
图31为本申请中提供的一种耳机仓的支架座与上盖支架配合的立体图;
图32为本申请中提供的一种耳机仓的支架座与上盖支架配合的主视图;
图33为本申请中提供的一种耳机仓的支架座的侧视图;
图34为图33的A-A方向的剖视图;
图35为本申请中提供的一种耳机仓的上盖支架的仰视图;
图36为图35的B-B方向的剖视图;
图37为本申请中提供的一种电子设备的耳机与耳机定位磁铁配合的结构示意图;
图38为本申请中提供的一种电子设备的耳机磁铁与耳机定位磁铁配 合的结构示意图;
图39为本申请中提供的一种电子设备的耳机的第一爆炸示意图;
图40为本申请中提供的一种电子设备的耳机的第二爆炸示意图;
图41为本申请中提供的一种电子设备的耳机壳体的立体图;
图42为本申请中提供的一种电子设备的耳机的局部结构示意图;
图中:100、触控面板;101、显示区;102、非显示区;103、触摸定位结构;104、倒角;105、标识图案;106、屏幕接线;1061、屏幕接线的接线端子;
200、机仓主体;
201、机仓壳体;2010、面板安装口;2011、侧围;2012、底围;2013、平面部;2014、弧面部;2015、支撑凸缘;2016、避让凹槽;2017、环形结构;2018、USB环;2019、开关机按键;
202、耳机支架;2020、第二磁铁安装槽;2021、第二对吸磁铁;2022、耳机定位磁铁;2023、卡托件;
203、主机主板;2030、凸板部;2031、机仓霍尔开关;2032、第一连接孔;2033、屏幕转接排线;2034、屏幕转接排线的接线端子;
204、支架座;2040、第一耳机槽;2041、第一螺丝;2042、第二螺丝;2043、第一螺柱;2044、第二螺柱;2045、缺口;2046、限位结构;2047、定位槽;2048、凹口;204-1、接线凹槽;204-2、第一定位件;204-3、第二定位件;204-4、插口;204-5、连接凸起;
205、覆盖件;2051、电池安装口;2052、第二连接孔;2053、加强件;
300、机仓盖;301、盖体;302、上盖支架;3020、第一磁铁安装槽;3021、仓盖霍尔磁铁;3022、第一对吸磁铁;303、第二耳机槽;304、凸面;305、凹面;
400、固定件;401、连接件;402、抵压件;403、止裂口;404、插件;405、限位槽;
500、耳机壳体;501、入耳部;502、柄部;503、耳机磁铁;504、耳机霍尔开关;505、尾盖;506、天线安装口;
600、耳机电池;601、耳机导线;602、耳机排线;603、天线;604、 耳机主板;605、正极焊盘;606、负极焊盘;607、耳机触控板;
700、电池组件;701、线性马达;702、麦克板支架;703、曲面阻尼转轴;704、麦克排线。
具体实施方式
下面将结合附图对本申请实施例的技术方案进行清楚、完整地描述,显然,所描述的实施例是本申请实施例一部分实施例,而不是全部的实施例。基于本申请实施例中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请实施例保护的范围。
在本申请实施例的描述中,需要说明的是,术语“中心”、“上”、“下”、“左”、“右”、“竖直”、“水平”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请实施例和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请实施例的限制。此外,术语“第一”、“第二”、“第三”仅用于描述目的,而不能理解为指示或暗示相对重要性。
在本申请实施例的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可更换连接,或一体地连接,可以是机械连接,也可以是电连接,可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本申请实施例中的具体含义。
本申请实施例公开了一种耳机仓。
请参阅图2、图8以及图13,本申请实施例中提供的一种耳机仓的一个实施例,包括:
耳机仓体,如图8所示,就耳机仓体设计来说,包括机仓主体200以及机仓盖300。
机仓盖300可开闭地安装于机仓主体200上,包括盖体301以及上盖支架302,上盖支架302安装于盖体301上,上盖支架302与盖体301之 间卡扣连接。机仓主体200包括机仓壳体201以及耳机支架202,耳机支架202安装于机仓壳体201上。
如图2以及图13所示,耳机支架202包括支架座204、主机主板203和覆盖件205,主机主板203和覆盖件205均可拆卸安装于支架座204的侧壁上,且覆盖件205覆设主机主板203设置。更具体地说,安装时,先将主机主板203安装于支架座204的侧壁上,然后再将覆盖件205以覆盖主机主板203的方式安装于支架座204的侧壁上;覆盖件205具体为电池仓,电池仓的中间开设有电池安装口2051,耳机仓体的电池组件700均安装于覆盖件205的电池安装口2051。
通过主机主板203设置在支架座204的侧壁上,并通过覆盖件205对主机主板203进行覆盖保护,不仅可以使得主机主板203在支架座204与覆盖件205之间得到很好的固定和保护作用,而且覆盖件205、主机主板203与支架座204之间定位对准方便、装配也简单,有效地解决了现有技术中存在装配不方便的技术问题。
以上为本申请实施例提供的一种耳机仓的实施例一,以下为本申请实施例提供的一种耳机仓的实施例二,具体请参阅图1至图36。
基于上述实施例一的方案:
如图3至图6所示,该耳机仓体上安装有触控面板100。
触控面板100具有显示区101以及围绕显示区101周围且可触控的非显示区102;触控面板100上于部分非显示区102一侧位置还设有触摸定位结构103,用于通过触摸以定位部分非显示区102。可以先通过触摸触控面板100,在触摸到触摸定位结构103时,也就可以定位当前的触摸位置,从而能够确定位于该触摸定位结构103一侧的部分非显示区102,进而可以通过操作该确定的部分非显示区102实现盲操。通过这一设计,可实现盲操,进一步提升用户交互使用体验。
本申请中,显示区101可设计为可触控的,从而实现触控面板100整个均可进行触控操作。显示区101可以进行输入等触控操作,非显示区102可以进行滑动等手势操作,进一步提升了用户的交互使用体验。就非显示区102的触控实现,可以是将显示区101的触控层延伸至非显示区102,或在非显示区102布置触控所需的走线等,满足能够实现非显示区102亦 可实现触控功能即可,具体不做限制。
进一步地,如图3至图6所示,该触摸定位结构103可以设计为两个。其中一个触摸定位结构103用于通过触摸以定位非显示区102上位于显示区101左侧的部分;而另一个触摸定位结构103用于通过触摸以定位非显示区102上位于显示区101右侧的部分。这一设计实现了多个盲操位置,进一步提升交互使用体验。当用户用左手进行盲操时,可以顺势定位位于显示区101左侧的非显示区102部分进行盲操,而当用户用右手进行盲操时,则可以顺势定位位于显示区101右侧的非显示区102部分进行盲操。
进一步地,如图3至图6所示,就该触摸定位结构103设计来说,可以是设计为凸棱,该凸棱具体形成于触控面板100的防护层。以上述定位非显示区102位于显示区101左右侧部分设计来说,该凸棱具体自防护层的下边缘向上边缘方向进行设置。
进一步地,如图3至图6所示,凸棱可设计为弧面凸棱,触摸更加顺滑,提升触摸手感。以凸棱为弧面凸棱为例,该凸棱的弧面可以设计为渐变弧面,这样在视觉上可以使得凸棱不会那么凸显,实现看不到但摸得到的效果,使得触控面板100一体性更好,可以提升耳机仓体的整体美观度。
进一步地,如图7所示,非显示区102上还设有标识图案105。将标识图案105/logo结合至触控面板100的非显示区102上,无需占用其它位置进行标识图案105设计。这一设计,既满足了logo设计需求,同时也使得该logo设计所在的区域具有触控功能,解决了以往的logo设计所在区域无法触控的问题,进一步提升了用户的使用乐趣。
该非显示区102位于显示区101下方的部分的宽度设计为大于其它部分的宽度,并将标识图案105设于非显示区102上位于显示区101下方的部分。有更宽的区域范围来设置标识图案105,也使得标识图案105更方便设置,同时也方便该位置区域触控走线。
进一步地,如图4以及图5所示,机仓壳体201上设有用于安装触控面板100的面板安装口2010。
其中,机仓壳体201被设计为包括侧围2011以及与侧围2011底部平滑连接的底围2012;侧围2011包括两个平面部2013以及两个弧面部2014,两个平面部2013前后平行设置,两个平面部2013的一侧边缘分别与一个 弧面部2014的两侧边缘平滑连接,两个平面部2013的另一侧边缘分别与另一个弧面部2014的两侧边缘平滑连接;通过这一设计可以实现更好的握持手感。另外,两个平面部2013之间的距离小于两个弧面部2014之间的距离,也就是平面部2013的边长大于弧面部2014的边长,且平面部2013的高度与弧面部2014的高度相等,因此平面部2013的面积明显大于弧面部2014的面积,这样设置一方面使得整个耳机仓体呈扁平状,方便用户握持耳机仓体,携带使用体验更好。
面板安装口2010开设于一个平面部2013上,且部分至少延伸至一个弧面部2014;将面板安装口2010延伸至弧面部2014设置,从而在一定尺寸的机仓壳体201上能够实现设置更大面积的触控面板100,进而可以进一步提升用户交互使用体验。
触控面板100上延伸至弧面部2014上的面板部分的正面呈弧形且与弧面部2014的弧度相适配。这一设计,能够保证耳机仓体的一体性,实现更好的握持舒适度以及整体美观度。
进一步地,就面板安装口2010往弧面部2014进行延伸的延伸设计来说,可以是对称式延伸设计,也即是面板安装口2010部分分别延伸至平面部2013两侧的弧面部2014。
进一步地,如图1、图2以及图4所示,底围2012的底部的各个最低点均位于同一平面上。更具体地说,底围2012的顶部与侧围2011的底部平滑连接,底围2012优选与侧围2011一体成型;底围2012的底部可以为平面,也可以不为,只要保证底围2012的底部的各个最低点均位于同一平面上,以便底围2012能够平放于桌面上即可。通过设置底围2012的底部的各个最低点均位于同一平面上,使得底围2012的底部能够平放于桌面上,从而达到整个耳机仓体能够竖放于桌面上的要求,以便用户无需凑近耳机仓体,即可读取触控面板100上的显示信息,有利于提高用户对耳机仓体使用时的便利性,保证用户具有良好的使用体验,有效地解决了现有耳机仓体只能躺放使用不便于用户读取显示信息的技术问题。
进一步地,底围2012的底部向侧围2011的中心凹陷形成避让凹槽2016。由于开关机按键2019往往采用凸出设计,通过内部凹陷设置的避让凹槽2016可以在不影响整个耳机仓体能够竖放于桌面上的同时,还可以预 留空间供凸出的开关机按键2019安装于底围2012的底部上。
进一步地,底围2012上设有开关机按键2019;开关机按键2019分布于避让凹槽2016的内部。开关机按键2019可以起到控制耳机仓体启动开始作业或控制耳机仓体停止作业的作用,满足显示屏显示以及耳机仓体充电的需求。还可以在底围2012的底部设有USB环2018,USB环2018也设置在避让凹槽2016内,通过USB环2018方便耳机仓体充电或与外部设备连接使用的需求。
进一步地,避让凹槽2016的轮廓形状具体呈圆形、椭圆状、长圆状、多边形或不规则图形。呈椭圆状或长圆状的避让凹槽2016更符合扁平状的耳机仓体的设计要求,使得整个耳机仓体能够稳定地竖放于桌面上进行使用;当然,避让凹槽2016的轮廓也可以采用长宽相差较大的长方形或其他多边形,又或者采用例如梅花状等的不规则图形,本实施例不再一一赘述。
底围2012的底部的各个最低点共同形成环形结构2017。通过环形结构2017的设置不仅可以满足整个耳机仓体能够竖放于桌面上的要求,还可以在内部预留出用于放置开关机按键2019等部件的避让凹槽2016,方便用户更容易上手使用耳机仓体。
更具体地说,环形结构2017的形状优选与避让凹槽2016的形状相匹配,例如当避让凹槽2016的轮廓呈椭圆状或长圆状时,形状结构呈跑道形状。
进一步地,如图5以及图12所示,触控面板100正面边缘设置有倒角104。将触控面板100正面边缘设计为倒角104,相比于现有的圆角设计来说,其更易实现加工,能够通过CNC在触控面板100的正面边缘加工出更小尺寸且均匀的高精度倒角104,降低制作成本的同时能够使得触控面板100与机仓壳体201之间的间隙更细小,从而解决了现有的耳机仓体存在的一体性不佳导致影响用户握持舒适性以及整体美观度的问题。
进一步地,倒角104为45°倒角,45°倒角的直边长为0.05mm;直边长如果过长会影响触控面板100与机仓壳体201之间间隙优化效果,而如果过小,则会使得该触控面板100正面边缘过于尖锐而存在割手风险。为此,为了平衡间隙以及握持手感,将45°倒角的直边长为设计0.05mm。
进一步地,为了方便触控面板100安装,面板安装口2010底部设有用 于支撑触控面板100的支撑凸缘2015。
进一步地,该支撑凸缘2015可以是整体环设于面板安装口2010底部,这一设计能够增大与触控面板100的支撑面积,提高安装的稳固性。
进一步地,如图13至图19所示,支架座204的内部设有与主机主板203相适配的放置位。放置位的设置可以方便主机主板203能够安装于支架座204的准确位置上,有利于提高装配效率;放置位低于支架座204的侧壁边缘,这样设置可以使得主机主板203装配于支架座204的内部,并通过支架座204在放置位边缘的结构对主机主板203形成限位,再结合覆盖件205对主机主板203进行覆盖限位保护,从而实现对主机主板203形成全方位限位保护,避免主机主板203装配后出现松动情况。更具体地说,主机主板203的内侧边缘延伸设有凸板部2030,支架座204的内部设有与凸板部2030相匹配的定位槽2047;主机主板203的外侧边缘设有例如前述的USB环2018的外接件,支架座204的边缘设有供外接件露出的缺口2045,通过外接件可以满足主机主板203与外部设备对接使用的需求。
进一步地,支架座204和覆盖件205之间设有与主机主板203的边缘相对应的限位结构2046。通过限位结构2046的设置可以对主机主板203的边缘起到限位效果,有利于避免主机主板203安装于支架座204和覆盖件205之间时出现移位的情况,使得主机主板203得到很好的固定和保护作用。更具体地说,限位结构2046包括凹凸配合的限位凹槽和限位凸起;支架座204上设有第一限位凸起,覆盖件205设有第一限位凸起相匹配的第一限位凹槽;耳机支架202上设有第二限位凹槽,覆盖件205设有第二限位凹槽相匹配的第二限位凸起。
进一步地,主机主板203与支架座204卡扣连接或通过螺丝连接。主机主板203采用卡扣或螺丝与支架座204连接,不仅具有装配方便的优点,而且还可以保证主机主板203与支架座204之间的可拆性,以便后续进行维修和更换。
进一步地,主机主板203上开设有第一连接孔2032,支架座204设有与第一连接孔2032相对应的第一螺柱2043。通过第一螺丝2041穿过第一连接孔2032与第一螺柱2043连接,从而实现将主机主板203固定安装于支架座204上。更具体地说,第一连接孔2032为多个,优选为四个,多个 第一连接孔2032分布于主机主板203的不同位置上;装配时,可以利用螺丝自动拧紧设备快速完成第一螺丝2041与第一螺柱2043连接,有利于加快装配效率
进一步地,覆盖件205与支架座204之间的接触面形状相适配,也就是覆盖件205能够适配安装于支架座204的侧壁,覆盖件205可以填补支架座204侧壁的漏缺位置,使得耳机仓体的各个部件之间装配更加紧凑,有利于节省耳机仓体的内部空间。
进一步地,在本实施例中,覆盖件205与支架座204共同的截面外轮廓呈长圆形、圆形、椭圆形或多边形。这样设置使得装配后的覆盖件205和支架座204能够趋向于形成所需形状的耳机仓体,在内部为耳机仓体的外观形成初步基础。
进一步地,在本实施例中,覆盖件205与支架座204卡扣连接或通过螺丝连接。覆盖件205采用卡扣或螺丝与支架座204连接,不仅具有装配方便的优点,而且还可以保证主机主板203与支架座204之间的可拆性,以便后续进行维修和更换。
进一步地,在本实施例中,覆盖件205上开设有第二连接孔2052,支架座204设有与第二连接孔2052相对应的第二螺柱2044。通过第二螺丝2042穿过第二连接孔2052与第二螺柱2044连接,从而实现将覆盖件205固定安装于支架座204上。
更具体地说,第二连接孔2052为多个,多个第二连接孔2052分布于覆盖件205的不同位置上;优选第二连接孔2052为四个,四个第二连接孔2052分别分布于覆盖件205的四角处;装配时,可以利用螺丝自动拧紧设备快速完成第二螺丝2042与第二螺柱2044连接,有利于加快装配效率。
进一步地,在本实施例中,主机主板203的边缘设有与第二螺柱2044限位接触的凹口2048。通过第二螺柱2044与主机主板203的凹口2048限位接触,可以进一步加强对主机主板203限位效果和定位效果,保证主机主板203能够稳定安装于支架座204与覆盖件205之间。
进一步地,覆盖件205的边缘设有加强件2053。由于覆盖件205的中间需要空出电池组件700安装的位置,导致覆盖件205整体掏空,电池组件700周圈的壳体强度偏弱(也就是覆盖件205的边缘强度较弱),因此通 过在覆盖件205的边缘增设加强件2053进行补强,使得覆盖件205有更好的强度压住主机主板203,而且在跌落时可以保护主机主板203减少冲击损伤。
更具体地说,加强件2053为多个,覆盖件205的两侧均分布有多个平行设置的加强件2053。
进一步地,如图20至图29所示,主机主板203连接有屏幕转接排线2033;触控面板100连接有屏幕接线106;耳机支架202还包括固定件400;固定件400与耳机支架202卡扣连接,并将屏幕接线的接线端子1061与屏幕转接排线的接线端子2034压接固定。更具体地说,安装时,先将屏幕接线的接线端子1061与屏幕转接排线的接线端子2034对接,然后再将固定件400移动到屏幕接线的接线端子1061和屏幕转接排线的接线端子2034的正上方位置,最后将固定件400卡接于支架座204卡接固定,使得屏幕接线的接线端子1061和屏幕转接排线的接线端子2034被固定在固定件400与支架座204之间;固定件400在对屏幕接线106和屏幕转接排线2033固定的同时,并不影响屏幕接线106和屏幕转接排线2033沿直线排布。
上述设计,可以让屏幕接线106和屏幕转接排线2033的装配更为简单,增加了产线直通率,克服了屏幕转接排线2033、屏幕接线106连接器形成的累计公差,有效地解决了现有的屏幕转接排线2033和平面排线装配难度大的技术问题。同时通过固定件400将屏幕接线106和屏幕转接排线2033固定之后,由于固定件400与支架座204卡扣连接,使得产品使用时震动后固定件400不会与屏幕撞击,解决了产品使用时震动后方孔套管与屏幕撞击有声响的问题。
进一步地,支架座204上设有用于放置屏幕转接排线的接线端子2034的接线凹槽204-1;通过接线凹槽204-1的设置可以为屏幕转接排线的接线端子2034、屏幕接线的接线端子1061以及固定件400之间的连接固定提供适宜的位置,便于在组装时提供基准位,以便屏幕转接排线的接线端子2034和屏幕接线的接线端子1061在所需的位置进行对接。
接线凹槽204-1的侧壁设有第一卡扣结构;固定件400设有与第一卡扣结构卡扣配合的第二卡扣结构。通过第一卡扣结构和第二卡扣结构的卡扣配合,可以方便固定件400将屏幕转接排线的接线端子2034和屏幕接线 的接线端子1061压接固定于接线凹槽204-1内,同时也保证了固定件400与支架座204之间的可拆性,便于后续的拆卸以及维修。
进一步地,第一卡扣结构包括插口204-4和连接凸起204-5;插口204-4和连接凸起204-5分别设置于接线凹槽204-1的两侧;第二卡扣结构包括与插口204-4插接配合的插件404以及与连接凸起204-5卡扣配合的限位槽405。在安装时,固定件400的一侧可以先通过插件404插接于凹槽的插口204-4内,然后挤压固定件400的另一侧直至凹槽的连接凸起204-5与限位槽405卡扣配合,从而实现固定件400的两侧均与支架座204进行卡接固定,保证固定件400对屏幕转接排线的接线端子2034和屏幕接线的接线端子1061压接固定的稳定性。
更具体地说,连接凸起204-5和插口204-4分别设置于接线凹槽204-1的两侧侧壁上;接线凹槽204-1的插口204-4贯穿延伸至支架座204的外部,这样可以预留有适当的装配空间,以便固定件400更容易与支架座204卡扣连接。
固定件400的两侧均设有连接件401;插件404和限位槽405分别设置在两个连接件401上。通过连接件401的设置可以提供插件404和限位槽405安装的位置,以符合固定件400的侧壁与接线凹槽204-1的侧壁卡扣连接的需求。
更具体地说,两个连接件401具体为固定件400的两侧边缘向下延伸形成的连接板,插件404具体为连接板的边缘向外延伸形成的插板,限位槽405设置在连接件401与固定件400连接的位置,这样设置可以适当沿高度方向错开插件404和限位槽405的位置,方便固定件400更容易卡接于支架座204上。
进一步地,固定件400与支架座204连接时,两个连接件401分别与接线凹槽204-1的两侧壁接触相抵。这样设置可以很好地限制固定件400的活动范围,避免固定件400安装于支架座204后出现松动的情况,有利于保证固定件400对屏幕转接排线的接线端子2034和屏幕接线的接线端子1061压接固定的稳定性。
接线凹槽204-1设有对屏幕转接排线的接线端子2034形成定位的第一定位件204-2。第一定位件204-2具体凸设于接线凹槽204-1底部的凸条, 通过第一定位件204-2的设置可以在屏幕转接排线的接线端子2034在接线凹槽204-1安装时起到定位作用,以便屏幕转接排线的接线端子2034能够在所需的位置进行压接固定,保证屏幕转接排线的接线端子2034与屏幕接线的接线端子1061连接时的准确性。
固定件400设有抵压件402;抵压件402位于固定件400远离定位件的一侧。当固定件400与支架座204卡扣固定时,抵压件402可以对屏幕准接排线形成向下的抵压力,有利于提高固定件400对屏幕准接排线固定的可靠性。同时抵压件402和第一定位件204-2的配合使用可以很好地限制屏幕准接排线的接线端子的活动范围,有利于保证固定件400对屏幕准接排线的接线端子固定的稳定性。
更具体地说,抵压件402具体为固定件400的边缘向下延伸形成的板状结构;固定件400在抵压件402的两侧均设置有止裂口403,止裂口403有利于避免翻边的抵压件402出现裂缝。
支架座204上设有对屏幕转接排线2033形成定位的第二定位件204-3。第二定位件204-3具体为设置在支架座204表面的凸条,安装时屏幕转接排线2033的侧壁可以与第二定位件204-3相贴,从而为屏幕转接排线2033提供排布方向,以便屏幕转接排线2033以直线的方式安装于支架座204上。
进一步地,如图8、图30至图36所示,耳机支架202与上盖支架302接触的面或上盖支架302与耳机支架202接触的面为凸面304或凹面305。更具体地说,耳机支架202与上盖支架302接触的面(也就是耳机支架202的顶面,具体的也即是支架座204的顶面)可以是凸面304,也可以凹面305,相比于平面,采用凸面304或凹面305作为耳机支架202的顶面可以使得油漆能够均匀地流动到凹面305或凸面304的每个地方,有利于减少油漆堆积在耳机支架202的顶面;同样,上盖支架302与耳机支架202接触的面(也就是上盖支架302的底面)可以是凸面304,也可以凹面305,相比于平面,采用凸面304或凹面305作为上盖支架302的底面可以使得油漆能够均匀地流动到凹面305或凸面304的每个地方,有利于减少油漆堆积在上盖支架302的底面。
通过将耳机支架202与上盖支架302接触的面或上盖支架302与耳机 支架202接触的面设计成凹面305或凸面304,使得油漆能够均匀地流动到凹面305或凸面304的每个地方,流平效果好,烤漆后油漆厚度均匀,不易出现油漆堆积的情况,有效地解决了现有耳机仓体的上盖支架302或耳机支架202在喷漆时容易出现积油漆的技术问题。
进一步地,由于当上盖支架302盖合于耳机支架202上时,耳机支架202与上盖支架302之间需要对耳机形成闭合保护,因此耳机支架202与上盖支架302之间能够相互配合,耳机支架202与上盖支架302之间的接触面不能同时为凸面304或同时为凹面305。可以设计耳机支架202与上盖支架302接触的面为凸面304,且上盖支架302与耳机支架202接触的面为凹面305;也可以设计耳机支架202与上盖支架302接触的面为凹面305,且上盖支架302与耳机支架202接触的面为凸面304。这样设置可以在不影响耳机支架202与上盖支架302之间的配合的同时,又可以避免上盖支架302与耳机支架202之间的接触面不易出现油漆堆积的情况,烤漆后油漆厚度均匀,满足生产的需求。
进一步地,凸面304具体为弯曲凸面304;凹面305具体为弯曲凹面305。由于客户在使用耳机仓体时,往往会触摸到上盖支架302与耳机支架202之间的接触面,将上盖支架302与耳机支架202之间的接触面设置为弯曲凸面304和弯曲凹面305,可以给用户触摸顺滑不硌手的使用体验。
进一步地,在本实施例中,耳机支架202上设有对称设置的两个第一耳机槽2040;耳机支架202与上盖支架302接触的面关于两个第一耳机槽2040的对称线呈对称设置。两个第一耳机槽2040的设置满足耳机支架202放置耳机的需求,同时在耳机支架202与上盖支架302接触的面上采用对称性设计,更符合用户对耳机仓体外观的审美。
进一步地,在本实施例中,上盖支架302上设有对称设置的两个第二耳机槽303;上盖支架302与耳机支架202接触的面关于两个第二耳机槽303的对称线呈对称设置。通过两个第二耳机槽303配合两个第一耳机槽2040的使用,可以满足耳机仓体容纳保护耳机的需求,同时在上盖支架302与耳机支架202接触的面上采用对称性设计,更符合用户对耳机仓体外观的审美。
进一步地,在本实施例中,弯曲凸面304包括对称设置的两个圆弧凸 面304或对称设置的两个椭圆弧凸面304,也就是弯曲凸面304具体为关于两个第一耳机槽2040(或第二耳机槽303)的对称线呈对称设置的双弧凸面304。双弧凸面304的设置有利于提高耳机仓体外观的美观性,而且还可以使得油漆能够均匀地流动到凸面304的每个地方,流平效果好,烤漆后油漆厚度均匀。
更具体地说,双弧凸面304的高度沿边缘位置到中间位置逐渐增大。
进一步地,在本实施例中,弯曲凹面305包括对称设置的两个圆弧凹面305或对称设置的两个椭圆弧凹面305,也就是弯曲凹面305具体为关于两个第二耳机槽303(或第一耳机槽2040)的对称线呈对称设置的双弧凹面305。双弧凹面305的设置有利于提高耳机仓体外观的美观性,而且还可以使得油漆能够均匀地流动到凹面305的每个地方,流平效果好,烤漆后油漆厚度均匀。
更具体地说,双弧凹面305的高度沿边缘位置到中间位置逐渐减小。由于耳机仓体的上盖支架302打开之后,使用者会先看到耳机支架202与上盖支架302接触的面,因此耳机支架202与上盖支架302接触的面为一级外观面,上盖支架302与耳机支架202接触的面为二级外观面,出于美观考虑优选耳机支架202与上盖支架302接触的面(一级外观面)为双弧凸面304,上盖支架302与耳机支架202接触的面(二级外观面)为双弧凹面305。
进一步地,在本实施例中,在耳机支架202与上盖支架302接触的面或上盖支架302与耳机支架202接触的面上,最高点与最低点之间的高度差为0.20mm~0.30mm。通过采用适宜高度差的凸面304或凹面305,可以在保证油漆流平效果的同时,又可以降低生产难度。
进一步地,在本实施例中,耳机支架202与上盖支架302之间的接触面设有形状相匹配的凹面305和凸面304。通过在耳机支架202与上盖支架302之间的接触面采用形状相匹配的凹面305和凸面304,可以满足耳机支架202与上盖支架302之间相互盖合闭合密封的效果,对位于耳机仓体内的耳机具有良好的防尘防水效果。
进一步地,如图8至图11所示,机仓盖300配置有第一对吸磁铁3022以及仓盖霍尔磁铁3021;机仓主体200上配置有与第一对吸磁铁3022配 合的第二对吸磁铁2021以及用于感应仓盖霍尔磁铁3021的机仓霍尔开关2031。通过独立设计一个仓盖霍尔磁铁3021,来专门与机仓霍尔开关2031配合,实现感应。相比已有通过感应对吸磁铁之间产生的磁场的方式来说,感应准确率更好。
进一步地,第一对吸磁铁3022以及仓盖霍尔磁铁3021安装于上盖支架302,第二对吸磁铁2021安装于耳机支架202上,机仓霍尔开关2031安装于机仓壳体201内。
进一步地,第一对吸磁铁3022数量来说,可以设计为多个,数量的增加,也提升了机仓盖300的整体质量,进而一定程度可以提升开合盖的手感。优选可以为四个,四个第一对吸磁铁3022可以分布于上盖支架302四个角位置,这一数量即可以实现较好的开合手感,亦可避免因数量过多而干扰机仓霍尔开关2031。以此为例,为了避免影响仓盖霍尔磁铁3021与机仓霍尔开关2031之间的配合,仓盖霍尔磁铁3021设计在四个第一对吸磁铁3022之间。以第一对吸磁铁3022数量为4个为例,对应的第二对吸磁铁2021数量也为四个,与第一对吸磁铁3022一一对应分布。
进一步地,为了方便安装第一对吸磁铁3022,上盖支架302上设有分别用于容置第一对吸磁铁3022以及仓盖霍尔磁铁3021的第一磁铁安装槽3020。同理,耳机支架202上设有用于容置第二对吸磁铁2021的第二磁铁安装槽2020。
进一步地,机仓主体200内配置的主机主板203上边缘对应仓盖霍尔磁铁3021位置向上凸设有前述提到的凸板部2030;机仓霍尔开关2031设置凸板部2030上。这一设计,能够缩短机仓霍尔开关2031与仓盖霍尔磁铁3021之间的感应距离,进一步提升感应准确率,使得机仓霍尔开关2031触发一致性更好。
如图2所示,本申请中,盖体301通过曲面阻尼转轴703与机仓壳体201铰接;盖体301与上盖支架302之间卡扣连接;耳机仓体内还设有与主机主板203电连接的线性马达701、电源电路板,覆盖件205、主机主板203、耳机支架202支架座204和触控面板100依次卡扣固定;麦克排线704和麦克板支架702均固定在支架座204上。而且,其中一个弧面部2014上设有卡托件2023,通过卡托件2023的设置可以满足耳机仓体插接SIM 卡使用的需求,有利于扩大耳机仓体的使用范围,以满足用户的多样性需求。
如图37至图38所示,本申请还公开了一种电子设备,包括耳机以及上述实施例一或实施例二的耳机仓,该耳机仓用于收纳耳机。
进一步地,耳机内配置有耳机磁铁503;耳机仓的机仓主体200内还配置有与耳机磁铁503对吸配合的耳机定位磁铁2022。耳机磁铁503与耳机定位磁铁2022的设置,能够使得耳机入仓之后能够被稳固的吸附固定在耳机仓内,保证耳机充电稳定性。
进一步地,耳机内还配置有用于感应耳机定位磁铁2022的耳机霍尔开关504;耳机霍尔开关504的设计,其与常规的通过电路监测耳机的末端PIN针方式组成双报险,能够确保耳机入仓时能够被准确识别到。
为保证耳机霍尔开关504能够准确感应到耳机定位磁铁2022,该耳机霍尔开关504设计为在耳机入仓之后,与耳机定位磁铁2022之间的竖直距离为2mm-5mm。
进一步地,如图39至图42所示,耳机包括耳机壳体500、天线603和耳机电池600;天线603贴装于耳机电池600的外壁;天线603和耳机电池600共同适配安装于耳机壳体500的内部。更具体地说,天线603具体为条形片状结构,使用时,天线603位于耳机壳体500远离人体耳部的一侧;天线603和耳机电池600共同适配安装于耳机壳体500的内部,也就是在天线603贴装于耳机电池600的外壁的前提下,天线603的外壁和耳机电池600的外壁与耳机壳体500的内壁接触相抵,这样可以最大化地利用耳机壳体500内部的安装空间。
通过天线603贴装于耳机电池600的外壁,且天线603和耳机电池600共同适配安装于耳机壳体500的内部,装配时无需预留过多空间,具有结构紧凑、组装方便和布局空间足够的优点,满足耳机的轻小化设计的需求,有效地解决现有耳机的内部部件安装不够紧凑的技术问题。
进一步地,天线603具体为LDS天线603。也就是说在天线603的表面设有镭雕层,通过镭雕层的设置可以减少了对天线603无线传输的阻碍,提高了天线603远程通信性能。
进一步地,耳机电池600呈圆柱状、椭圆柱状或棱柱状。耳机电池600 的形状根据实际需要而选择,优选采用圆柱状的耳机电池600,这样可以更匹配于耳机的柄部502。
进一步地,在本实施例中,天线603与耳机电池600接触的表面的形状与耳机电池600的形状相匹配。天线603通过其内表面可以匹配贴装于耳机电池600的表面,有利于减少天线603与耳机电池600之间的缝隙,以便天线603和耳机电池600能够一起适配安装于耳机壳体500的内部。
更具体地说,当耳机电池600呈圆柱状时,天线603与耳机电池600接触的表面为圆弧面。
进一步地,在本实施例中,天线603与耳机壳体500接触的表面为曲面。天线603通过其曲面状的外表面可以很好地与耳机壳体500的内壁接触相抵,有利于减少天线603与耳机壳体500的内壁之间的缝隙,满足耳机轻小化设计的要求。
进一步地,耳机壳体500包括入耳部501以及与入耳部501连接的柄部502;天线603和耳机电池600共同适配安装于柄部502的内部。由于耳机电池600和天线603的长度均相对较长,所以耳机壳体500长度较长的柄部502更符合耳机电池600和天线603的安装需求,同时柄部502的内部更容易加工成与耳机电池600和天线603的结合体相匹配的安装空间。
更具体地说,柄部502和入耳部501均中空设置,柄部502的一端与入耳部501连接,柄部502的另一端设有可供耳机电池600和天线603插入的天线603安装口506;耳机电池600和天线603共同适配安装于柄部502的内腔,具体可以在柄部502的内壁设有横截面形状与贴装后的天线603和耳机电池600的共同横截面形状相匹配的内腔,这样在不影响天线603和耳机电池600的安装的同时,又可以对天线603和耳机电池600进行有效的限位,避免在耳机使用时天线603和耳机电池600出现松动的情况。
进一步地,在本实施例中,还包括耳机主板604;耳机主板604匹配安装于入耳部501的内部;耳机主板604通过耳机导线601与天线603连接。入耳部501可以为耳机主板604提供足够的安装空间,同时也不影响耳机主板604与耳机电池600或天线603连接;耳机主板604优选加工成与入耳部501内腔形状相匹配的形状,同样符合耳机的紧凑装配设计。
更具体地说,由于耳机导线601位于入耳部501和柄部502的连接处,因此耳机导线601优选呈阶梯状,这样设置可以让部分耳机导线601能够沿着耳机电池600的边缘排布,使得布线更合理。
进一步地,在本实施例中,耳机主板604设有耳机排线602;耳机排线602在耳机电池600的两端分别设有正极焊盘605和负极焊盘606。通过耳机排线602的设置可以充当耳机电池600与耳机主板604之间的连接部件,可以将耳机电池600提供的电量输送至耳机主板604,以便耳机主板604能够进行作业。
进一步地,在本实施例中,耳机排线602贴装于耳机电池600的外周上,耳机排线602具体为条形片状结构。这样设置可以在不影响耳机电池600对耳机主板604供电的同时,又可以有效地缩小耳机排线602与耳机电池600之间的装配空间,使得天线603、耳机电池600和耳机排线602能够共同适配安装于耳机的柄部502,满足耳机装配紧凑以及轻小化设计的需求。
进一步地,在本实施例中,还包括尾盖505;尾盖505封装于柄部502远离入耳部501的端部上。通过尾盖505可以对天线603和耳机电池600进行封盖密闭,避免天线603和耳机电池600从柄部502滑出,同时尾盖505与柄部502可拆卸连接,满足天线603和耳机电池600维修更换的需求。
进一步地,耳机仓的耳机支架202上的第一耳机槽2040由适配入耳部501的第一腔体以及适配柄部502的第二腔体组成;为了使得耳机仓内结构更加紧凑,耳机定位磁铁2022设于第一腔体下方;基于此设计,为了使得耳机磁铁503能够更好地贴近耳机定位磁铁2022实现更好的对吸,耳机磁铁503设于入耳部501内的底部,耳机磁铁503在耳机入仓之后与耳机定位磁铁2022在竖直方向的投影至少部分重合,且耳机磁铁503的竖直中心线与耳机定位磁铁2022的竖直中心线不重合。也即是实现较小尺寸的耳机磁铁503与较大尺寸的耳机定位磁铁2022之间部分重叠且偏位设计,部分重叠设计能够保证耳机磁铁503与耳机定位磁铁2022之间具有一定磁吸作用力,满足磁吸需求。而偏心设计则能够给耳机内的耳机霍尔开关504起到让位作用,使得耳机霍尔开关504更为准确的感应耳机定位磁铁2022, 同时这一偏位设计也能够一定程度的弱化了磁吸作用力,进而有助于提升耳机的取放手感,进一步提升用户体验。本申请中对于第一对吸磁铁3022、第二对吸磁铁2021、机仓霍尔开关2031、仓盖霍尔磁铁3021、耳机定位磁铁2022以及耳机磁铁503均进行了合理的分布设置,更好的保证了彼此之间的共存与正常工作。
进一步地,如图41至图42所示,入耳部501上还设有沿入耳部501向柄部502方向设置耳机触控板607,该耳机触控板607相对于柄部502的中心线的延长线呈锐角倾斜设置,这一设计能够起到一定的盲操定位作用,也能够进一步地提升的耳机的操作体验。
如图41所示,进一步地,该耳机触控板607与柄部502的中心线的延长线之间的夹角a为25°~35°。如果角度a设计过大,会使得入耳部501与人的耳廓不匹配,而如果角度a设计过小,在按压的时候容易松动。该夹角a优选设计为30°。
进一步,该耳机触控板607优选设计呈倒三角形。因为,如果设计为矩形,那么其宽度方向所能够提供的信息采集面也就比较小,也即是与手指接触面更小,会导致操作体验不佳;而如果设计为正方形或圆形,则会使得入耳部501结构变得很大,综合考虑之下,优选设计为倒三角形,其触控面积更大的同时,也不会使得入耳部501结构变大。
以上对本申请所提供的一种耳机仓及电子设备进行了详细介绍,对于本领域的一般技术人员,依据本申请实施例的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本申请的限制。

Claims (16)

  1. 一种耳机仓,其特征在于,包括耳机仓体;
    所述耳机仓体包括机仓主体(200)以及机仓盖(300);
    所述机仓盖(300)可开闭地安装于所述机仓主体(200)上,包括盖体(301)以及上盖支架(302);
    所述上盖支架(302)安装于所述盖体(301)上;
    所述机仓主体(200)包括机仓壳体(201)以及耳机支架(202);
    所述耳机支架(202)安装于所述机仓壳体(201)上;
    所述耳机支架(202)包括支架座(204)、主机主板(203)和覆盖件(205);
    所述主机主板(203)和所述覆盖件(205)均可拆卸安装于所述支架座(204)的侧壁上,且所述覆盖件(205)覆设所述主机主板(203)设置。
  2. 根据权利要求1所述的耳机仓,其特征在于,所述耳机仓体上设有触控面板(100);
    所述主机主板(203)连接有屏幕转接排线(2033);
    所述触控面板(100)连接有屏幕接线(106);
    所述耳机支架(202)还包括固定件(400);
    所述固定件(400)与所述耳机支架(202)卡扣连接,并将所述屏幕接线的接线端子(1061)与所述屏幕转接排线的接线端子(2034)压接固定。
  3. 根据权利要求2所述的耳机仓,其特征在于,所述支架座(204)上设有用于放置所述屏幕转接排线的接线端子(2034)的接线凹槽(204-1);
    所述接线凹槽(204-1)的侧壁设有第一卡扣结构;
    所述固定件(400)设有与所述第一卡扣结构卡扣配合的第二卡扣结构。
  4. 根据权利要求1所述的耳机仓,其特征在于,所述耳机支架(202)与所述上盖支架(302)接触的面或所述上盖支架(302)与所述耳机支架(202)接触的面为凸面(304)或凹面(305)。
  5. 根据权利要求4所述的耳机仓,其特征在于,所述耳机支架(202)与所述上盖支架(302)接触的面为凸面(304),且所述上盖支架(302) 与所述耳机支架(202)接触的面为凹面(305);或
    所述耳机支架(202)与所述上盖支架(302)接触的面为凹面(305),且所述上盖支架(302)与所述耳机支架(202)接触的面为凸面(304)。
  6. 根据权利要求5所述的耳机仓,其特征在于,在所述耳机支架(202)与所述上盖支架(302)接触的面或所述上盖支架(302)与所述耳机支架(202)接触的面上,最高点与最低点之间的高度差为0.20mm~0.30mm。
  7. 根据权利要求1所述的耳机仓,其特征在于,所述机仓盖(300)配置有第一对吸磁铁(3022)以及仓盖霍尔磁铁(3021);
    所述机仓主体(200)上配置有与所述第一对吸磁铁(3022)配合的第二对吸磁铁(2021)以及用于感应所述仓盖霍尔磁铁(3021)的机仓霍尔开关(2031)。
  8. 根据权利要求7所述的耳机仓,其特征在于,所述机仓主体(200)内配置的主机主板(203)上边缘对应所述仓盖霍尔磁铁(3021)位置向上凸设有凸板部(2030);
    所述机仓霍尔开关(2031)设置所述凸板部(2030)上。
  9. 一种电子设备,其特征在于,包括耳机以及如权利要求1-8任意一项所述的耳机仓;
    所述耳机仓用于收纳所述耳机;
    所述耳机包括耳机壳体(500)、天线(603)和耳机电池(600);
    所述天线(603)贴装于所述耳机电池(600)的外壁;
    所述天线(603)和所述耳机电池(600)共同适配安装于所述耳机壳体(500)的内部;
    所述耳机壳体(500)包括入耳部(501)以及与入耳部(501)连接的柄部(502)。
  10. 根据权利要求9所述的电子设备,其特征在于,所述耳机内配置有耳机磁铁(503);
    所述耳机仓的机仓主体(200)内还配置有与所述耳机磁铁(503)对吸配合的耳机定位磁铁(2022)。
  11. 根据权利要求10所述的电子设备,其特征在于,所述耳机内还配置有用于感应所述耳机定位磁铁(2022)的耳机霍尔开关(504);
    所述耳机入仓之后,所述耳机霍尔开关(504)与所述耳机定位磁铁(2022)之间的竖直距离为2mm-5mm。
  12. 根据权利要求9所述的电子设备,其特征在于,所述天线(603)具体为LDS天线(603)。
  13. 根据权利要求10所述的电子设备,其特征在于,所述耳机仓的耳机支架(202)上的第一耳机槽(2040)由适配所述入耳部(501)的第一腔体以及适配所述柄部(502)的第二腔体组成;
    所述耳机定位磁铁(2022)设于所述第一腔体下方;
    所述耳机磁铁(503)设于所述入耳部(501)内的底部,所述耳机磁铁(503)在所述耳机入仓之后与所述耳机定位磁铁(2022)在竖直方向的投影至少部分重合,且所述耳机磁铁(503)的竖直中心线与所述耳机定位磁铁(2022)的竖直中心线不重合。
  14. 根据权利要求9所述的电子设备,其特征在于,所述入耳部(501)上还设有沿所述入耳部(501)向所述柄部(502)方向设置的耳机触控板(607);
    所述耳机触控板(607)相对于所述柄部(502)的中心线的延长线呈锐角倾斜设置。
  15. 根据权利要求14所述的电子设备,其特征在于,所述耳机触控板(607)与所述柄部(502)的中心线的延长线之间的夹角为25°~35°。
  16. 根据权利要求14所述的电子设备,其特征在于,所述耳机触控板呈倒三角形。
PCT/CN2022/135875 2022-12-01 2022-12-01 一种耳机仓及电子设备 WO2024113307A1 (zh)

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CN111200766A (zh) * 2018-11-16 2020-05-26 深圳百灵声学有限公司 无线蓝牙耳机智能充电收纳盒及蓝牙耳机
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US20210006888A1 (en) * 2019-07-04 2021-01-07 Sharetronic Data Technology (Hong Kong) Limited Headphone Charging Case
CN215912192U (zh) * 2021-08-30 2022-02-25 惠州市和宏科技有限公司 一种tws蓝牙耳机及耳机充电盒

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CN111200766A (zh) * 2018-11-16 2020-05-26 深圳百灵声学有限公司 无线蓝牙耳机智能充电收纳盒及蓝牙耳机
US20210006888A1 (en) * 2019-07-04 2021-01-07 Sharetronic Data Technology (Hong Kong) Limited Headphone Charging Case
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