WO2016000159A1 - 耳机微调结构和耳机 - Google Patents

耳机微调结构和耳机 Download PDF

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Publication number
WO2016000159A1
WO2016000159A1 PCT/CN2014/081231 CN2014081231W WO2016000159A1 WO 2016000159 A1 WO2016000159 A1 WO 2016000159A1 CN 2014081231 W CN2014081231 W CN 2014081231W WO 2016000159 A1 WO2016000159 A1 WO 2016000159A1
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WO
WIPO (PCT)
Prior art keywords
limiting
earphone
assembly
lower assembly
structure according
Prior art date
Application number
PCT/CN2014/081231
Other languages
English (en)
French (fr)
Inventor
吴海全
师瑞文
彭久高
余新
杨成
Original Assignee
深圳市冠旭电子有限公司
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.)
Filing date
Publication date
Application filed by 深圳市冠旭电子有限公司 filed Critical 深圳市冠旭电子有限公司
Priority to JP2016522768A priority Critical patent/JP6182672B2/ja
Priority to PCT/CN2014/081231 priority patent/WO2016000159A1/zh
Priority to CN201480004268.0A priority patent/CN105393552B/zh
Priority to EP14896378.8A priority patent/EP3163899B1/en
Priority to US14/622,991 priority patent/US9497533B2/en
Publication of WO2016000159A1 publication Critical patent/WO2016000159A1/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
    • H04R1/1058Manufacture or assembly
    • H04R1/1066Constructional aspects of the interconnection between earpiece and earpiece support
    • 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
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R5/00Stereophonic arrangements
    • H04R5/033Headphones for stereophonic communication
    • H04R5/0335Earpiece support, e.g. headbands or neckrests

Definitions

  • the present invention relates to the technical field of earphones, and more particularly to earphone fine tuning structure and earphone.
  • Headphones and earphones are common audio devices. Headphones are larger than earbuds. They generally have two large sounding units that are connected together by elastic headbands. The sounding unit is in close contact with the human ear. Due to the particularity of the integrated structure of the headset, it has poor adaptability to various head shapes and ear positions of various people, and it is necessary to enhance the adaptability by means of an adjustment structure that can adjust the position of the sounding unit.
  • the adjustment function of the headset is to adjust the length of the headband or to adjust the length of the connection between the headband and the sounding unit.
  • the former can adapt to different shapes of the head of the person, and the latter can adapt to the ear. Different positions, but it is impossible to adjust the angle of the generating unit itself, which affects the wearing adaptability.
  • the sounding unit surrounds the auricle with a soft structure such as a sponge, and forms a sealed space to conduct sound. If the unit angle is not adapted, the sealed space may be incompletely closed, thereby appearing. Leakage and other issues.
  • the object of the present invention is to provide a headphone fine-tuning structure, which aims to solve the problem that the wearing of the headphone is poor in the prior art, and leakage may occur.
  • an earphone fine-tuning structure for adjusting an angle between a headband of a headphone and a sounding unit, comprising an upper component coupled to the end of the headband and a lower component coupled to the sounding unit
  • the lower assembly and the upper assembly are hinged to each other, the upper assembly is provided with a limiting step, the lower assembly is movably connected to the limiting member, and the limiting member is provided with abutment for the limiting step
  • a plurality of different thickness limit blocks that limit the angle of the lower assembly relative to the upper assembly.
  • the limiting member is a rotating member that is inserted into the lower assembly and is axially rotatable, and the outer edge of the rotating member is provided with a plurality of the limiting blocks.
  • a rotating shaft for articulating the upper assembly and the lower assembly is further provided, and an upper end of the lower assembly is provided with a connecting notch, and two ends of the connecting notch are correspondingly provided with a first shaft hole 1221, and the lower end of the upper assembly A protrusion is inserted into the connection gap, and the protrusion is laterally opened with a second shaft hole, and the limiting step is formed on the protrusion.
  • the limiting step portion is opened in the protrusion, and a rotating cavity that prevents interference with the protrusion when the limiting block rotates is further disposed.
  • the protrusion block is further provided with a limiting sliding slot for preventing interference with the limiting hole, and the lower end of the limiting sliding slot is connected to the rotating concave cavity.
  • the lower assembly further includes a knob for adjusting the rotation angle of the rotating member, the knob extending into the lower assembly and connected to the rotating member, and the other end extending outside the lower assembly.
  • the outer side of the knob is scribed with anti-slip embossing, and the outer end surface is provided with a scale for conveniently observing the position of the limiting block.
  • a soft rubber ring for increasing the rotational damping of the rotating member is further included, and the soft rubber ring is fixed to the lower assembly, and the end of the rotating member is inserted into the soft rubber ring.
  • the number of the limiting blocks is six, and is evenly distributed along the outer edge of the rotating member.
  • the earphone fine adjustment structure of the invention can select the limit block of different thickness, change the limit angle of the lower component and the upper component, and achieve the purpose of adjusting the angle of the headband and the sounding unit, thereby improving the headwear type. Wear comfort of the headphones to avoid leakage.
  • the invention also provides an earphone, comprising a headband and two sounding units, wherein the sounding unit and the headband connection are provided with the above-mentioned earphone fine adjustment structure.
  • the earphone fine adjustment structure is provided at each of the sounding unit and the headband connection.
  • the earphone of the invention is provided with a fine adjustment structure of the earphone, and can be finely adjusted by the sounding unit to improve wearing comfort and avoid leakage.
  • FIG. 1 is a schematic structural diagram of an earphone including a headphone fine adjustment structure according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of an explosion structure of a headphone trimming structure according to an embodiment of the present invention
  • FIG. 3 is a schematic structural diagram of a rotating member of a headphone fine adjustment structure according to an embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of an upper component of a headphone trimming structure according to an embodiment of the present invention.
  • the earphone fine adjustment structure 1 is mounted and coupled between the headband 2 and the sounding unit 3, and includes an upper assembly 11 and a lower assembly 12 hinged to each other, wherein the upper assembly 11 is coupled to the end of the headband 2,
  • the lower assembly 12 is coupled to the sounding unit 3.
  • the upper assembly 11 is provided with a limiting step 112 (shown in FIG. 4)
  • the lower assembly 12 is movably connected to the limiting member 121
  • the limiting member 121 is provided with a plurality of limiting blocks 1211 having different axial thicknesses, on the lower assembly 12 and
  • the rotation of the assembly 11 to the maximum limit angle is such that the limiting block 1211 can abut against the limiting step 112 to limit the angle.
  • the earphone 2 When the sounding unit 3 needs to be finely adjusted, the earphone 2 is worn on the head, and the extended headband 2 provides an elastic force so that the two sounding units 3 are in close contact with the two ear portions, and the upper assembly 11 and the lower assembly 12 are simultaneously received.
  • the inward elastic force of the headband 2 and the reaction force from the head are rotated to the limit angle, and the different axial thicknesses of the limiting block 1211 can limit different limit angles to achieve the wearing of the earphones.
  • the angle of the sounding unit 3 itself is finely adjusted.
  • the earphone fine adjustment structure 1 in this embodiment can accurately adjust the angle of the sounding unit 3 according to different head shapes, so that it can be more closely attached to the ear portion, which not only increases the comfort but also facilitates the sounding unit 3 and the ear portion. Form a closed space to avoid leakage.
  • the position of the limiting member 121 can be various, for example, a sheet-like structure that is slidably mounted on the lower assembly 12, and the limiting block 1211 is arranged side by side on the outer side.
  • the manner adopted in this embodiment is as shown in FIG.
  • the rotating member 121 is inserted into the lower assembly 12 and can be axially rotated.
  • a plurality of limiting blocks 1211 are disposed around the outer edge of the rotating member 121. By rotating the rotating member 121, the position of the limiting block 1211 can be changed, and different limiting blocks can be selected. 1211 is abutted against the limit step 112.
  • the limiting block 1211 can be arranged in multiple manners.
  • the number of the limiting blocks 1211 is six, and is evenly distributed along the outer edge of the rotating member 121.
  • the limiting block 1211 can be distributed in various ways, for example, in a clockwise or counterclockwise direction, the thickness is increased, or the two minimum thickness basic limiting blocks are disposed at the relative positions, and the bottom of the basic limiting block is set lower.
  • the two low-limit blocks have higher two high-limit blocks on both sides of the other base block. The user can roughly select a base block position and then rotate left and right to select a more suitable height.
  • the lower assembly 12 further includes a knob 1212 having one end extending into the interior of the lower assembly 12, connected to the rotating member 121, and the other end extending outside the lower assembly 12 for allowing the user to operate the rotary knob. 1212, to drive the rotating member 121 to rotate.
  • the non-slip embossing pattern is scribed on the outer side of the knob 1212 to facilitate the pinching and rotation.
  • the outer end surface is provided with a scale for conveniently observing the position of the limiting block 1211.
  • the scale can be understood from the scale, and the limiting block 1211 is selected according to the actual wearing. Feel, rotate to select a thicker or thinner limit block 1211.
  • a soft rubber ring 1212 is further fixed, and the end of the rotating member 121 is inserted into the soft rubber ring 1212.
  • the soft rubber ring 1212 can increase the rotational damping when the rotating member 121 is provided, and provides a certain buffering effect while changing the rotation. Feel, avoid the problem that the rotation resistance is too small and it is easy to turn over.
  • the upper assembly 11 and the lower assembly 12 can be hinged in various manners, for example, by using a convex cylindrical and a concave cylindrical cavity.
  • a hinge (not shown) is used to articulate the two, such as As shown in FIG. 2, the upper end of the lower assembly 12 is provided with a connecting notch 122, and the first end of the connecting notch 122 is correspondingly provided with a first axial hole. 1212, a lower end of the upper assembly 11 is provided with a protrusion 111 that can be inserted into the connection gap 122.
  • the protrusion 111 is laterally opened with a second shaft hole 1111.
  • the rotation shaft is inserted into the first shaft hole 1221 and the second shaft hole 1111, and the lower assembly 12 is 12 It can rotate with respect to the upper assembly 11 with the rotating shaft as the axis.
  • the limiting step 112 is opened on the bump 111.
  • a portion of the limiting step 112 is formed on the bump 111, and a rotating cavity 114 is further formed.
  • the rotating member 121 drives the limiting block 1211 to rotate, the limiting block 1211 rotates in the rotating cavity 114. Will be with bumps 111 interference occurred.
  • a limiting slot 113 is further defined on the protrusion 111, and a lower end of the limiting slot 113 communicates with the rotating cavity 114.
  • the lower assembly 12 can be rotated at a relatively large angle with respect to the upper assembly 11.
  • the limiting block 1211 can slide in the limiting sliding slot 113 without interfering with the convex block 111.
  • the embodiment further provides an earphone, including a headband 2, the above-mentioned earphone fine adjustment structure 1 and two sounding units 3.
  • the sounding unit 3 can be adjusted by the earphone fine adjustment structure 1
  • the angle of the unit 3 relative to the headband 2, the finer fit changes the actual wearing experience, not only improves the wearing comfort, but also avoids problems such as leakage.
  • the earphone fine adjustment structure 1 can be provided only on one side, and the angular position of the sounding unit 3 on the left and right sides can be balanced by the elasticity of the headband 2 itself, and fine adjustment can be performed, thereby saving cost.
  • the earphone fine adjustment structure 1 is provided at the connection between each sound emitting unit 3 and the headband 2. The two earphone fine adjustment structures 1 on both sides can be adjusted synchronously or asynchronously to improve the actual wearing experience more subtlely.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Acoustics & Sound (AREA)
  • Signal Processing (AREA)
  • Manufacturing & Machinery (AREA)
  • Headphones And Earphones (AREA)
  • Health & Medical Sciences (AREA)
  • Otolaryngology (AREA)

Abstract

涉及耳机的技术领域,公开了耳机微调结构和耳机,其中耳机微调结构,用于调节头戴式耳机的头带与发声单元之间的角度,包括连接于所述头带末端的上组件和连接于所述发声单元的下组件,所述下组件与所述上组件相互铰接,所述上组件设有限位台阶,所述下组件活动连接有限位件,所述限位件上设有可抵接于所述限位台阶用于限制所述下组件相对上组件角度的多个厚度不同的限位块。耳机微调结构,可以通过选择不同厚度的限位块,调节上组件和下组件之间的角度,达到调节发声单元相对头带角度的目的,从而改善耳机的佩戴舒适度。

Description

耳机微调结构和耳机 技术领域
本发明涉及耳机的技术领域,尤其涉及耳机微调结构和耳机。
背景技术
头戴式耳机和耳塞是常见的音频设备,与耳塞相比,头戴式耳机体积较大,一般具有两个较大的发声单元,通过弹性头带连接在一起,使用时依靠弹性头带将发声单元紧贴于人耳。由于头戴式耳机一体式结构的特殊性,其对各种人不同的头型、耳朵位置适应性较差,需要借助可调节发声单元位置的调节结构来增强适应性。
现有技术中而头戴式耳机采用的调节结构功能为可调节头带的长短或者调节头带与发声单元连接处的长短,前者能适应对人头顶的不同形状,后者能适应耳部的不同位置,但是均无法对发生单元自身角度进行调节,影响佩戴适应性。而且由于头戴式耳机采用包围式发音,即发声单元利用海绵等软结构包围在耳廓,形成密封空间传导声音,如果发生单元角度不适配,此密闭空间还有可能封闭不完全,从而出现漏音等问题。
尤其在对音质和佩戴舒适性要求较高的高端耳机领域,现有技术中的调节结构无法满足用户的要求。
技术问题
本发明的目的在于提供耳机微调结构,旨在解决现有技术中头戴式耳机佩戴舒适性较差,有可能发生漏音的问题。
技术解决方案
本发明是这样实现的,耳机微调结构,用于调节头戴式耳机的头带与发声单元之间的角度,包括连接于所述头带末端的上组件和连接于所述发声单元的下组件,所述下组件与所述上组件相互铰接,所述上组件设有限位台阶,所述下组件活动连接有限位件,所述限位件上设有可抵接于所述限位台阶用于限制所述下组件相对上组件角度的多个厚度不同的限位块。
进一步地,所述限位件为插设于所述下组件上且能轴向转动的转动件,所述转动件外沿环绕设有多个所述限位块。
进一步地,还包括用于铰接所述上组件、所述下组件的转轴,所述下组件上端设有连接缺口,所述连接缺口两端对应开设有第一轴孔1221,所述上组件下端设有可插入所述连接缺口的凸块,所述凸块横向开设有第二轴孔,所述限位台阶开设于所述凸块上。
进一步地,于所述凸块开设所述限位台阶部位,还开设有防止所述限位块转动时与所述凸块发生干涉的转动凹腔。
进一步地,所述凸块上还开设有防止与所述限位孔干涉的限位滑槽,所述限位滑槽下端连通至所述转动凹腔。
进一步地,所述下组件还包括用于调节所述转动件转动角度的旋钮,所述旋钮一端伸入所述下组件内且连接于所述转动件,另一端延伸于下组件外。
进一步地,所述旋钮外侧刻划有防滑凹凸纹,外端面设有便于观测限位块位置的刻度。
进一步地,还包括用于增大所述转动件转动阻尼的软胶圈,所述软胶圈固定于所述下组件,所述转动件末端插入所述软胶圈内部。
进一步地,所述限位块数量为六个,沿所述转动件外沿平均分布。
与现有技术相比,本发明中的耳机微调结构,可以选择不同厚度的限位块,改变下组件与上组件的极限角度,达到调节头带与发声单元角度的目的,从而改善头戴式耳机的佩戴舒适度,避免漏音。
本发明还提供了耳机,包括头带、两发声单元,各发声单元与头带连接处设有上述的耳机微调结构。
进一步地,各所述发声单元与所述头带连接处均设有所述耳机微调结构。
有益效果
本发明中的耳机,设有耳机微调结构,可以发声单元进行角度微调,改善佩戴舒适度,避免漏音。
附图说明
图1为本发明实施例提供的包括耳机微调结构的耳机结构示意图;
图2为本发明实施例提供的耳机微调结构的爆炸结构示意图;
图3为本发明实施例提供的耳机微调结构的转动件结构示意图;
图4为本发明实施例提供的耳机微调结构的上组件结构示意图。
本发明的实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
以下结合具体附图对本实施例的实现进行详细的描述。
如图1至图4所示,耳机微调结构1安装连接于头带2和发声单元3之间,包括相互铰接的上组件11和下组件12,其中上组件11连接于头带2的末端,下组件12连接于发声单元3。上组件11设有限位台阶112(如图4所示),下组件12活动连接有限位件121,限位件121上设有多个轴向厚度不同的限位块1211,在下组件12和上组件11转动至最大极限角度是,限位块1211可抵接于限位台阶112上,限制角度。
在需要对发声单元3进行细微调节时,将耳机2佩戴在头部,撑开的头带2提供弹性力,使两发声单元3紧贴与两耳部,上组件11与下组件12同时受到头带2向内的弹力和来自头部的反作用力,二者之间旋转至极限角度,而限位块1211不同的轴向厚度,可以限制不同的此极限角度,以实现佩戴后的耳机的发声单元3自身的角度,即对其进行细调。
本实施例中的耳机微调结构1可根据不同的头型,可以精确的调整发声单元3的角度,使其更加贴合耳部,不仅增加了舒适度,而且便于在发声单元3与耳部之间形成封闭空间,避免发生漏音。
限位件121的设置可以为多种,例如滑动安装在下组件12上的片状结构,外侧面并排设置限位块1211,本实施例中采用的方式如图1所示,限位件121为转动件121,插设于下组件12上且能轴向转动,在转动件121外沿环绕设有多个限位块1211。将转动件121旋转,即可改变限位块1211的位置,选择不同的限位块 1211抵接于限位台阶112。
如图3所示,限位块1211的排列方式可以有多种,本实施例中,限位块1211数量为六个,沿转动件121外沿平均分布。限位块1211的分布方式可以有多种,例如沿顺时针或逆时针方向,厚度递增,或者在相对位置设置两厚度最低的基础限位块,在其中一基础限位块两侧设置较低的两低限位块,在另一基础限位块两侧设置较高的两高限位块,用户可大致先选择一基础限位块位置,然后左右旋转,挑选更适合的高度。
如图2所示,为了便于操作,下组件12还包括旋钮1212,的一端伸入下组件12的内部,连接在转动件121上,另一端延伸于下组件12外,可供人操作转动旋钮1212,以带动转动件121转动。
在旋钮1212外侧刻划有防滑凹凸纹,便于捏紧后转动,在外端面设有便于观测限位块1211位置的刻度,可以从刻度上了解,此时选择的限位块1211,并根据实际佩戴感受,旋转选择更厚或更薄的限位块1211。
在下组件12内,还固定有软胶圈1212,转动件121末端插入软胶圈1212内部,软胶圈1212可以增大转动件121时的转动阻尼,提供一定的缓冲作用,同时改变转动时的手感,避免因转动阻力过小,容易转过量的问题。
上组件11和下组件12的铰接方式可以有多种,例如设置利用外凸的圆柱和内凹的圆柱腔配合,本实施例中利用转轴(图中未示出)使二者铰接,结构如图2所示,在下组件12上端设有连接缺口122,连接缺口122两端对应开设有第一轴孔 1221,上组件11下端设有可插入连接缺口122的凸块111,凸块111横向开设有第二轴孔1111,转轴插设在第一轴孔1221和第二轴孔1111内,下组件12能以转轴为轴,相对上组件11转动。限位台阶112即开设于凸块111上。
如图4所示,在凸块111上开设限位台阶112部位,还开设有转动凹腔114,转动件121带动限位块1211转动时,限位块1211在转动凹腔114内转动,不会与凸块 111发生干涉。
凸块111上还开设有限位滑槽113,限位滑槽113下端连通至转动凹腔114。在未佩戴时,下组件12可以相对上组件11做较大角度的转动,此时限位块1211可在限位滑槽113内滑动,不会与凸块111发生干涉。
如图1所示,本实施例还提供了耳机,包括头带2、上述的耳机微调结构1以及两发声单元3,本实施例中的耳机,其发声单元3可以由耳机微调结构1调节发声单元3相对头带2的角度,更加细微的配合改变实际佩戴感受,不仅提高了佩戴舒适性,而且避免了发生漏音等问题。
在实际设计中可以只在一边设置耳机微调结构1,利用头带2本身的弹性平衡左右侧的发声单元3的角度位置,能进行微调,同时节约了成本。本实施例中各发声单元3与头带2连接处均设有耳机微调结构1。两侧的两耳机微调结构1可以同步或者异步调整,更加细微的改善实际佩戴感受。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。

Claims (11)

  1. 耳机微调结构,用于调节头戴式耳机的头带与发声单元之间的角度,其特征在于,包括连接于所述头带末端的上组件和连接于所述发声单元的下组件,所述下组件与所述上组件相互铰接,所述上组件设有限位台阶,所述下组件活动连接有限位件,所述限位件上设有可抵接于所述限位台阶用于限制所述下组件相对上组件角度的多个厚度不同的限位块。
  2. 如权利要求1所述的耳机微调结构,其特征在于,所述限位件为插设于所述下组件上且能轴向转动的转动件,所述转动件外沿环绕设有多个所述限位块。
  3. 如权利要求2所述的耳机微调结构,其特征在于,还包括用于铰接所述上组件、所述下组件的转轴,所述下组件上端设有连接缺口,所述连接缺口两端对应开设有第一轴孔1221,所述上组件下端设有可插入所述连接缺口的凸块,所述凸块横向开设有第二轴孔,所述限位台阶开设于所述凸块上。
  4. 如权利要求3所述的耳机微调结构,其特征在于,于所述凸块开设所述限位台阶部位,还开设有防止所述限位块转动时与所述凸块发生干涉的转动凹腔。
  5. 如权利要求4所述的耳机微调结构,其特征在于,所述凸块上还开设有防止与所述限位孔干涉的限位滑槽,所述限位滑槽下端连通至所述转动凹腔。
  6. 如权利要求2-5任一项所述的耳机微调结构,其特征在于,所述下组件还包括用于调节所述转动件转动角度的旋钮,所述旋钮一端伸入所述下组件内且连接于所述转动件,另一端延伸于下组件外。
  7. 如权利要求6所述的耳机微调结构,其特征在于,所述旋钮外侧刻划有防滑凹凸纹,外端面设有便于观测限位块位置的刻度。
  8. 如权利要求1-5任一项所述的耳机微调结构,其特征在于,还包括用于增大所述转动件转动阻尼的软胶圈,所述软胶圈固定于所述下组件,所述转动件末端插入所述软胶圈内部。
  9. 如权利要求2-5任一项所述的耳机微调结构,其特征在于,所述限位块数量为六个,沿所述转动件外沿平均分布。
  10. 耳机,其特征在于,包括头带、两发声单元,还包括权利要求1至9任一项所述的耳机微调结构。
  11. 如权利要求10所述的耳机,其特征在于,各所述发声单元与所述头带连接处均设有所述耳机微调结构
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EP14896378.8A EP3163899B1 (en) 2014-06-30 2014-06-30 Earphone fine-adjustment structure and earphone
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