WO2021253309A1 - 移动终端及蓝牙耳机 - Google Patents

移动终端及蓝牙耳机 Download PDF

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Publication number
WO2021253309A1
WO2021253309A1 PCT/CN2020/096731 CN2020096731W WO2021253309A1 WO 2021253309 A1 WO2021253309 A1 WO 2021253309A1 CN 2020096731 W CN2020096731 W CN 2020096731W WO 2021253309 A1 WO2021253309 A1 WO 2021253309A1
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WO
WIPO (PCT)
Prior art keywords
earphone body
accommodating cavity
telescopic
mobile terminal
component
Prior art date
Application number
PCT/CN2020/096731
Other languages
English (en)
French (fr)
Inventor
黄雷
潘政民
苏蔚
张胜
汤良宇
Original Assignee
瑞声声学科技(深圳)有限公司
瑞声科技(新加坡)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 瑞声声学科技(深圳)有限公司, 瑞声科技(新加坡)有限公司 filed Critical 瑞声声学科技(深圳)有限公司
Publication of WO2021253309A1 publication Critical patent/WO2021253309A1/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

  • This application relates to the technical field of wearable devices, and in particular to a mobile terminal and a Bluetooth headset.
  • Bluetooth headset can be used to receive electrical signals from mobile phones, players and other terminal devices to listen to music or voice calls.
  • the purpose of this application is to provide a mobile terminal and a Bluetooth headset to solve the current technical problem that the Bluetooth headset and the charging box are carried together and have poor portability.
  • a mobile terminal which includes a terminal body and a telescopic mechanism arranged inside the terminal body.
  • the terminal body is provided with a receiving cavity for accommodating the earphone body, and a power supply contact is provided in the receiving cavity.
  • the power supply contact is used to cooperate with the charging contact of the earphone body, and the telescopic mechanism can pull the earphone body into the accommodating cavity to connect the power supply contact with the charging contact. Charging the earphone body;
  • the telescopic mechanism can also push the earphone body out of the accommodating cavity to separate the power supply contact from the charging contact.
  • the accommodating cavity includes a first accommodating cavity and a second accommodating cavity
  • the earphone body includes a first earphone body that is matched with the first accommodating cavity and an earphone body that is matched with the second accommodating cavity.
  • the second headphone body is a first earphone body that is matched with the first accommodating cavity and an earphone body that is matched with the second accommodating cavity.
  • the telescopic mechanism includes a first telescopic component detachably connected to the first earphone body and a second telescopic component detachably connected to the second earphone body, the first telescopic component and the The second telescopic component can be extended to push the first earphone body and the second earphone body out of the first accommodating cavity and the second accommodating cavity, respectively;
  • the first telescopic component and the second telescopic component can be retracted to retract the first earphone body and the second earphone body into the first accommodating cavity and the second accommodating cavity, respectively.
  • the telescopic mechanism further includes a driving component, which is connected to the first telescopic component and the second telescopic component, and is used to drive the first telescopic component and the second telescopic component Extend or retract.
  • the drive assembly is a drive motor
  • the first telescopic assembly includes a first rotating part and a first moving part threadedly connected to the first rotating part
  • the second telescopic assembly includes a second rotating part. Part and a second moving part threadedly connected with the second rotating part
  • the driving assembly can drive the first rotating part to rotate so that the first moving part is in the extending direction of the first rotating part
  • the driving assembly can also drive the second rotating member to rotate, so that the second moving member moves in the extending direction of the second rotating member.
  • the telescopic mechanism extends in a first direction, and the first accommodating cavity, the first telescopic component, the second telescopic component, and the second accommodating cavity are arranged at intervals along the first direction.
  • the telescopic mechanism includes a first magnetic attraction component, and the first magnetic attraction component is detachably connected to the second magnetic attraction component in the earphone body.
  • the telescopic mechanism further includes a connecting seat which is matched with the connecting groove in the earphone body, and the first magnetic attraction component is arranged in the connecting seat.
  • the shape of the accommodating cavity matches the shape of the earphone body.
  • the mobile terminal is one of a mobile phone, a tablet computer, a smart glasses, a smart watch, and a vehicle-mounted device.
  • a Bluetooth headset including a headset body accommodated in the above-mentioned mobile terminal, and the headset body includes a charging contact that is matched with the power supply contact.
  • the beneficial effect of the mobile terminal provided by the present application is that the telescopic mechanism can pull the earphone body into the accommodating cavity, so that the power supply contact and the charging contact are connected to charge the earphone body, and there is no need to be equipped with a charging box of a specified model.
  • the earphone body can be charged, and the earphone body can be charged on a movable terminal device, which is conducive to the carrying of the earphone body; in addition, the telescopic mechanism can also push the earphone body out of the accommodating cavity to make the power supply contact and the charging contact Separation, using a telescopic mechanism to control, which is conducive to the placement and charging of the headset body and the use of it.
  • the beneficial effect of the Bluetooth headset is that the headset body includes a charging contact that matches the power supply contact of the mobile terminal, and the headset body can be placed in the receiving cavity of the mobile terminal for charging, or the headset body can be taken out for use , Which is conducive to the carrying and charging life of the headset body.
  • FIG. 1 is a schematic diagram of the structure of a mobile terminal and a Bluetooth headset provided by an embodiment of the application;
  • Figure 2 is a front view of the mobile terminal and Bluetooth headset shown in Figure 1;
  • Fig. 3 is an A-A cross-sectional view of the mobile terminal and Bluetooth headset shown in Fig. 2;
  • FIG. 4 is a schematic diagram of another state structure diagram of the mobile terminal and the Bluetooth headset shown in FIG. 1;
  • FIG. 5 is a front view of the mobile terminal and Bluetooth headset shown in FIG. 4;
  • Fig. 6 is a B-B cross-sectional view of the mobile terminal and Bluetooth headset shown in Fig. 5;
  • FIG. 7 is a schematic structural diagram of a state of the mobile terminal shown in FIG. 1;
  • FIG. 8 is a schematic diagram of the retractable mechanism and the Bluetooth headset in the mobile terminal and the Bluetooth headset shown in FIG. 1;
  • Fig. 9 is a schematic diagram of another state of the retractable mechanism and the Bluetooth headset shown in Fig. 1;
  • Fig. 10 is an exploded view of the retractable mechanism and the Bluetooth headset shown in Fig. 8.
  • the present application discloses a mobile terminal 10, including: a terminal body 100 and a telescopic mechanism 200 arranged inside the terminal body 100, the terminal body 100 is provided with an accommodating cavity 110 for accommodating the earphone body 300 , The receiving cavity 110 is provided with a power supply contact 111, the power supply contact 111 is used to cooperate with the charging contact 310 of the earphone body 300, and the telescopic mechanism 200 can pull the earphone body 300 into the receiving cavity 110 to make the power supply contact 111 Connect with the charging contact 310 to charge the earphone body 300.
  • the earphone body 300 can also be charged without a designated charging box.
  • the earphone body 300 can be charged on a mobile terminal device to achieve charging life, which is beneficial to the earphone.
  • Carrying the body 300; the telescopic mechanism 200 can also push the earphone body 300 out of the accommodating cavity 110 to separate the power supply contact 111 from the charging contact 310.
  • the telescopic mechanism 200 is used for control, which facilitates the placement, charging and taking out of the earphone body 300 for use.
  • the headset body 300 is a Bluetooth headset.
  • the Bluetooth headset can be used in conjunction with the mobile terminal 10 to improve the portability of the Bluetooth headset.
  • the headset body 300 can be stored on the mobile terminal 10 for charging, or stored in the mobile terminal after charging is completed 10, to avoid the loss of the headset body 300; the mobile terminal 10 can be the parent device of the Bluetooth headset, and is connected to the Bluetooth headset Bluetooth to provide information and signal transmission for the Bluetooth headset.
  • the power supply contact 111 is a power supply electrode and is electrically connected to the power supply on the mobile terminal 10
  • the charging contact 310 is a charging electrode and is electrically connected to the power supply on the earphone body 300 to realize the power supply of the earphone body 300.
  • the power source on the mobile terminal 10 and the earphone body 300 is a lithium battery.
  • the accommodating cavity 110 includes a first accommodating cavity 112 and a second accommodating cavity 113
  • the earphone body 300 includes a first earphone body 320 that cooperates with the first accommodating cavity 112 and a second accommodating cavity 113 A matched second earphone body 330.
  • the earphone body 300 includes a first earphone body 320 and a second earphone body 330, which can be used in combination to correspond to the left and right ears of the user.
  • the first accommodating cavity 112 and the second accommodating cavity 113 are arranged opposite to each other on both sides of the terminal body 100, which facilitates the configuration of the internal components of the terminal body 100.
  • the first earphone body 320 and the second earphone body 330 can be fitted on both sides. Corresponding to the left and right ears of the user respectively, which facilitates the user's access.
  • the first receiving cavity 112 and the second receiving cavity 113 may also be provided on a single side of the terminal body 100, and the first earphone body 320 and the second earphone body 330 may also be implemented.
  • the accommodating cavity 110 may also only include the first accommodating cavity 112
  • the earphone body 300 may also only include the first earphone body 320 that is matched with the first accommodating cavity 112, and the first earphone body 320 may also be installed. Music listening and call functions.
  • the telescopic mechanism 200 includes a first telescopic component 210 detachably connected with the first earphone body 320 and a second telescopic component 220 detachably connected with the second earphone body 330, the first telescopic component 210 and The second telescopic component 220 can be extended to push the first earphone body 320 and the second earphone body 330 out of the first accommodating cavity 112 and the second accommodating cavity 113, respectively, so as to facilitate the user to take and use after the charging is completed.
  • the first telescopic component 210 and the second telescopic component 220 can be retracted to retract the first earphone body 320 and the second earphone body 330 into the first receiving cavity 112 and the second receiving cavity 113, respectively, so that the first earphone body 320 And the charging contacts 310 on the second earphone body 330 are connected to the power supply contacts 111 on the first receiving cavity 112 and the second receiving cavity 113 to charge the first earphone body 320 and the second earphone body 330, and can The first earphone body 320 and the second earphone body 330 are received in the first receiving cavity 112 and the second receiving cavity 113, respectively, so that the first earphone body 320 and the second earphone body 330 can be prevented from falling, and the first earphone can be realized
  • the main body 320 and the second earphone main body 330 are charged safely and stably.
  • the first telescopic component 210 and the second telescopic component 220 are retracted and hidden at the bottom of the first receiving cavity 112 and the second receiving cavity 113 to avoid The vibration of the first telescopic component 210 and the second telescopic component 220 is damaged.
  • the telescopic mechanism 200 can be provided with a telescopic component, and the first earphone body 320 and the second earphone body 330 are housed on one side of the terminal body 100, and the second earphone body can be realized by a telescopic component.
  • the telescopic control of one earphone body 320 and the second earphone body 330 can reduce the cost of control accessories.
  • the telescopic mechanism 200 also includes a drive assembly 230, which is connected to the first telescopic assembly 210 and the second telescopic assembly 220, and is used to drive the first telescopic assembly 210 and the second telescopic assembly 220 to extend
  • a driving assembly 230 is used to simultaneously drive the telescopic control of the first telescopic component 210 and the second telescopic component 220, so that the telescopic synchronization of the first telescopic component 210 and the second telescopic component 220 is better and can be reduced.
  • the cost of the drive assembly 230 is used to simultaneously drive the telescopic control of the first telescopic component 210 and the second telescopic component 220, so that the telescopic synchronization of the first telescopic component 210 and the second telescopic component 220 is better and can be reduced. The cost of the drive assembly 230.
  • the driving assembly 230 may also include a first driving assembly and a second driving assembly.
  • the first driving assembly is connected to the first telescopic assembly 210 and is used to drive the first telescopic assembly 210 to extend.
  • the second driving component is connected to the second telescopic component 220, and is used to drive the second telescopic component 220 to extend or retract, so that a single telescopic control of the first telescopic component 210 and the second telescopic component 220 can be realized.
  • the driving assembly 230 is a driving motor
  • the first telescopic assembly 210 includes a first rotating part 211 and a first moving part 212 threadedly connected to the first rotating part 211
  • the second telescopic assembly 220 includes a second rotating part 221
  • the driving assembly 230 can drive the first rotating part 211 to rotate, so that the first moving part 212 moves in the extending direction of the first rotating part 211, so that the A moving part 212 can push out or retract the first earphone body 320 into the first receiving cavity 112
  • the driving assembly 230 can also drive the second rotating part 221 to rotate, so that the second moving part 222 is in the extending direction of the second rotating part 221 Move so that the second moving part 222 can push the second earphone body 330 out or retract the second receiving cavity 113, so as to realize the position control of the first earphone body 320 and the second earphone body 330, respectively.
  • the driving assembly 230 is a driving motor
  • the first telescopic assembly 210 further includes a first fixed sleeve 213, the first fixed sleeve 213 is provided with a first guide groove 2131, and the first moving member 212 is provided with a first guide that cooperates with the first guide groove 2131.
  • the protrusion 2121, the first guide groove 2131 extends along the extension direction of the first rotating member 211, so that after the first guide protrusion 2121 and the first guide groove 2131 are slidably fitted, the first moving member 212 can be guided along the first rotating member 211 is moved in the extension direction to realize that the rotation of the first rotating member 211 can drive the first moving member 212 to move along the extension direction of the first rotating member 211;
  • the second telescopic assembly 220 also includes a second fixed sleeve 224 and a second fixed sleeve 224
  • a second guide groove 2241 is provided on the second moving member 222, and a second guide protrusion 2221 that cooperates with the second guide groove 2241 is provided on the second moving member 222.
  • the second guide groove 2241 extends along the extension direction of the second rotating member 221 to make After the second guide protrusion 2221 is slidingly fitted with the second guide groove 2241, the second moving member 222 can be guided to move along the extension direction of the second rotating member 221, so as to realize that the rotation of the second rotating member 221 can drive the second moving member 222 to move along.
  • the extension direction of the second rotating member 221 moves.
  • the telescopic mechanism 200 further includes a fixed seat 240, the first fixed sleeve 213 is sleeved outside the first moving part 212, the second fixed sleeve 224 is sleeved outside the second moving part 222, the first fixed sleeve 213 and the second fixed
  • the sleeve 224 is connected to the terminal body 100 by a fixing seat 240 so that the telescopic mechanism 200 is installed in the assembly groove of the terminal body 100 to realize a stable and reliable connection between the telescopic mechanism 200 and the terminal body 100.
  • the telescopic mechanism 200 extends along the first direction, and the first accommodating cavity 112, the first telescopic component 210, the second telescopic component 220, and the second accommodating cavity 113 are arranged at intervals along the first direction, so that the first accommodating The cavity 112 and the second accommodating cavity 113 are symmetrically arranged on both sides of the telescopic mechanism 200 to facilitate the telescopic mechanism to control the expansion and contraction of the first earphone body 320 and the second earphone body 330.
  • the first opening for the assembly 210 is closed. The first opening is closed after the first telescopic assembly 210 is retracted.
  • the bottom of the second accommodating cavity 113 is provided with a second opening that cooperates with the second telescopic assembly 220. After the second telescopic assembly 220 is retracted
  • the second opening is closed to ensure that the first accommodating cavity 112 and the second accommodating cavity 113 can be kept intact when charging is stopped, and are not easily damaged by vibration.
  • the retractable mechanism 200 further includes a first magnetic attraction component, and the first magnetic attraction component is detachably connected to the second magnetic attraction component in the earphone body 300, so that the earphone body 300 and the retractable mechanism 200 pass through the first magnetic attraction component.
  • the attraction component and the second magnetic attraction component are attracted and cooperated, which facilitates the placement and removal of the earphone body 300 on the telescopic mechanism 200, and has high portability.
  • one of the first magnetic attraction component and the second magnetic attraction component It is a magnet, and the other is a magnet or a magnetic attraction metal. When the first magnetic attraction component and the second magnetic attraction component are both magnets, the magnet in the first magnetic attraction component and the magnet in the second magnetic attraction component attract each other.
  • the first magnetic attraction component can be replaced with an elastic slot
  • the second magnetic attraction component can be replaced with an elastic buckle that matches the elastic slot
  • the headset body can also be connected to the elastic slot. Removable connection of the telescopic mechanism.
  • the telescopic mechanism 200 further includes a connecting seat 223, which fits with the connecting groove 331 in the earphone body 300, the first magnetic attraction component is disposed in the connecting seat 223, and the connecting seat 223 is in the earphone body 300. After the connection grooves 331 are matched, the connection of the earphone body 300 on the telescopic mechanism 200 can be made more stable.
  • the shape of the receiving cavity 110 matches the shape of the earphone body 300, so that the earphone body 300 can be more stably placed in the receiving cavity 110 after being stored in the receiving cavity 110 and connected with the telescopic mechanism 200 Inside, the risk of the earphone body 300 falling after the mobile terminal 10 is impacted can be reduced.
  • the shape of the first accommodating cavity 112 matches the shape of the first earphone body 320
  • the shape of the second accommodating cavity 113 matches the shape of the second earphone body 330 to realize the shapes of the accommodating cavity 110 and the earphone body 300 design.
  • the mobile terminal 10 is one of a mobile phone, a tablet computer, a smart glasses, a smart watch, and an in-vehicle device, so that the earphone body 300 can be charged with the mobile device, so that the earphone body 300 can be connected to various types of smart hardware.
  • the matching avoids the carrying of the charging box, and improves the portability of the earphone body 300 to carry.
  • the mobile phone may be a folding screen smart phone
  • the headset body 300 is stored at the crease position of the folding screen smart phone
  • the smart glasses are AR glasses or VR glasses.
  • the control program of the mobile phone can be operated to make the telescopic mechanism 200 extend from the accommodating cavity 110, and the headset body 300 is attracted to the telescopic mechanism 200
  • the headset body 300 is attracted to the telescopic mechanism 200
  • Figures 1 and 7 when the charging is completed, operate the mobile phone program,
  • the telescopic mechanism 200 pushes the earphone body 300 out of the accommodating cavity 110, which is convenient for the user to take the earphone body 300.
  • the telescopic mechanism 200 is retracted into the mobile phone.
  • the application also discloses a Bluetooth headset, which includes a headset body 300 housed in the above-mentioned mobile terminal 10.
  • the headset body 300 includes a charging contact 310 matched with a power supply contact 111, and the headset body 300 can be placed on the mobile terminal. Charging in the receiving cavity 110 in 10, or taking out the earphone body 300 for use, facilitates the carrying and charging life of the earphone body 300.
  • the Bluetooth headset when going out, only the battery power of the Bluetooth headset and the mobile terminal 10 needs to be ensured, and there is no need to carry an additional charging box, and attention is paid to the battery power of the charging box, which improves the portability when going out.
  • the Bluetooth headset is a TWS headset, which can provide a better stereo effect.

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  • Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Acoustics & Sound (AREA)
  • Signal Processing (AREA)
  • Telephone Set Structure (AREA)

Abstract

本申请公开了一种移动终端及蓝牙耳机,该移动终端包括:终端本体及设置于终端本体内部的伸缩机构,终端本体上开设有用于容纳耳机本体的容纳腔,容纳腔内设置有供电触点,供电触点用于与耳机本体的充电触点配合,伸缩机构能将耳机本体拉入容纳腔内,以使供电触点与充电触点连接,以向耳机本体充电;伸缩机构还能将耳机本体推出容纳腔,以使供电触点与充电触点分离,不需要配备指定型号的充电盒,也可实现耳机本体的充电,可将耳机本体在可移动的终端设备上实现充电续航,利于耳机本体的携带。

Description

移动终端及蓝牙耳机 技术领域
本申请涉及可穿戴设备技术领域,尤其涉及一种移动终端及蓝牙耳机。
背景技术
蓝牙耳机作为一种便携式电子设备,可以用于接收手机、播放器等终端设备的电信号,以收听音乐或语音通话。
技术问题
传统的蓝牙耳机需放进定制的充电盒中进行充电,当充电盒没电时需另行对充电盒进行充电,且充电盒本身的电容量也十分有限, 需定时关注充电盒本身电量,因而在携带蓝牙耳机时,需要同时携带充电盒,很不方便,便携性较差。
因此,有必要提供一种新的终端设备以解决上述技术问题。
技术解决方案
本申请的目的在于提供一种移动终端及蓝牙耳机,以解决目前蓝牙耳机与充电盒配合携带,便携性较差的技术问题。
本申请的技术方案如下:
提供一种移动终端,包括:终端本体及设置于所述终端本体内部的伸缩机构,所述终端本体上开设有用于容纳耳机本体的容纳腔,所述容纳腔内设置有供电触点,所述供电触点用于与所述耳机本体的充电触点配合,所述伸缩机构能将所述耳机本体拉入所述容纳腔内,以使所述供电触点与所述充电触点连接,以向所述耳机本体充电;
所述伸缩机构还能将所述耳机本体推出所述容纳腔,以使所述供电触点与所述充电触点分离。
作为一种改进,所述容纳腔包括第一容纳腔及第二容纳腔,所述耳机本体包括与所述第一容纳腔相配合的第一耳机本体及与所述第二容纳腔相配合的第二耳机本体。
作为一种改进,所述伸缩机构包括与所述第一耳机本体可拆卸连接的第一伸缩组件及与所述第二耳机本体可拆卸连接的第二伸缩组件,所述第一伸缩组件及所述第二伸缩组件能伸出,以将所述第一耳机本体及所述第二耳机本体分别推出所述第一容纳腔及所述第二容纳腔;
所述第一伸缩组件及所述第二伸缩组件还能缩回,以将所述第一耳机本体及所述第二耳机本体分别收回所述第一容纳腔及所述第二容纳腔。
作为一种改进,所述伸缩机构还包括驱动组件,所述驱动组件与所述第一伸缩组件及所述第二伸缩组件连接,并用于驱动所述第一伸缩组件及所述第二伸缩组件伸出或缩回。
作为一种改进,所述驱动组件为驱动电机,所述第一伸缩组件包括第一转动件及与所述第一转动件螺纹连接的第一移动件,所述第二伸缩组件包括第二转动件及与所述第二转动件螺纹连接的第二移动件,所述驱动组件能驱动所述第一转动件旋转,以使所述第一移动件在所述第一转动件的延伸方向上移动,所述驱动组件还能驱动所述第二转动件旋转,以使所述第二移动件在所述第二转动件的延伸方向上移动。
作为一种改进,所述伸缩机构沿第一方向延伸,所述第一容纳腔、第一伸缩组件、第二伸缩组件及所述第二容纳腔沿所述第一方向间隔设置。
作为一种改进,所述伸缩机构包括第一磁吸组件,所述第一磁吸组件与所述耳机本体中的第二磁吸组件可拆卸连接。
作为一种改进,所述伸缩机构还包括连接座,所述连接座与所述耳机本体中的连接槽相配合,所述第一磁吸组件设置于所述连接座内。
作为一种改进,所述容纳腔的形状与所述耳机本体的形状相配合。
作为一种改进,所述移动终端为手机、平板电脑、智能眼镜、智能手表及车载设备中的一者。
还提供一种蓝牙耳机,包括容纳于上述移动终端中的耳机本体,所述耳机本体包括与所述供电触点相配合的充电触点。
有益效果
本申请提供的移动终端的有益效果在于:伸缩机构能将耳机本体拉入容纳腔内,以使供电触点与充电触点连接,以向耳机本体充电,不需要配备指定型号的充电盒,也可实现耳机本体的充电,可将耳机本体在可移动的终端设备上实现充电续航,利于耳机本体的携带;另外,伸缩机构还能将耳机本体推出容纳腔,以使供电触点与充电触点分离,采用伸缩机构控制,利于耳机本体的放置充电及取出使用。
本申请提供的蓝牙耳机的有益效果在于:耳机本体包括与移动终端中供电触点相配合的充电触点,并可将耳机本体放置在移动终端中的容纳腔内充电,或将耳机本体取出使用,利于耳机本体的携带及充电续航。
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的前提下,还可以根据这些附图获得其他的附图。
其中:
图1为本申请的一个实施例提供的移动终端及蓝牙耳机的结构示意图;
图2为图1所示的移动终端及蓝牙耳机的主视图;
图3为图2所示的移动终端及蓝牙耳机的A-A 剖视图;
图4为图1所示的移动终端及蓝牙耳机的另一种状态结构示意图;
图5为图4所示的移动终端及蓝牙耳机的主视图;
图6为图5所示的移动终端及蓝牙耳机的B-B 剖视图;
图7为图1所示的移动终端的一种状态结构示意图;
图8为图1所示的移动终端及蓝牙耳机中伸缩机构及蓝牙耳机示意图;
图9为图1所示的伸缩机构及蓝牙耳机的另一种状态示意图;
图10为图8所示的伸缩机构及蓝牙耳机的爆炸图。
本发明的实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
请参阅图1至图6,本申请公开了一种移动终端10,包括:终端本体100及设置于终端本体100内部的伸缩机构200,终端本体100上开设有用于容纳耳机本体300的容纳腔110,容纳腔110内设置有供电触点111,供电触点111用于与耳机本体300的充电触点310配合,伸缩机构200能将耳机本体300拉入容纳腔110内,以使供电触点111与充电触点310连接,以向耳机本体300充电,不需要配备指定型号的充电盒,也可实现耳机本体300的充电,可将耳机本体300在可移动的终端设备上实现充电续航,利于耳机本体300的携带;伸缩机构200还能将耳机本体300推出容纳腔110,以使供电触点111与充电触点310分离,采用伸缩机构200控制,利于耳机本体300的放置充电及取出使用。
耳机本体300为蓝牙耳机,可将蓝牙耳机与移动终端10配合使用,以提高蓝牙耳机的便携性,可将耳机本体300收纳在移动终端10上进行充电,或在充电完毕后,收纳在移动终端10上,以避免耳机本体300的丢失;移动终端10可为蓝牙耳机的母体设备,并与蓝牙耳机蓝牙连接,以为蓝牙耳机提供信息及信号的传输。
在一实施例中,供电触点111为供电电极,并与移动终端10上的电源电连接,充电触点310为充电电极,并与耳机本体300上的电源电连接,以实现耳机本体300的充电。优选的,移动终端10及耳机本体300上的电源为锂电池。
请继续参阅图3及图5,容纳腔110包括第一容纳腔112及第二容纳腔113,耳机本体300包括与第一容纳腔112相配合的第一耳机本体320及与第二容纳腔113相配合的第二耳机本体330,耳机本体300包括第一耳机本体320及第二耳机本体330,可配套使用,以与用户的左右耳朵相对应。优选的,第一容纳腔112及第二容纳腔113在终端本体100两侧相对设置,利于终端本体100内部组件的配置,并可将两侧配合的第一耳机本体320与第二耳机本体330分别与用户的左右耳朵对应,利于用户的取用。当然,可以理解的是,在不同实施例中,第一容纳腔112及第二容纳腔113还可设置在终端本体100的单侧,也可实现第一耳机本体320及第二耳机本体330的收纳及充电,另外,容纳腔110也可仅包括第一容纳腔112,耳机本体300也可仅包括与第一容纳腔112相配合的第一耳机本体320,也可实现第一耳机本体320的音乐收听及通话功能。
请参阅图8及图9,伸缩机构200包括与第一耳机本体320可拆卸连接的第一伸缩组件210及与第二耳机本体330可拆卸连接的第二伸缩组件220,第一伸缩组件210及第二伸缩组件220能伸出,以将第一耳机本体320及第二耳机本体330分别推出第一容纳腔112及第二容纳腔113,以在充电完毕后,便于用户拿取使用。
第一伸缩组件210及第二伸缩组件220还能缩回,以将第一耳机本体320及第二耳机本体330分别收回第一容纳腔112及第二容纳腔113,以使第一耳机本体320及第二耳机本体330上的充电触点310与第一容纳腔112及第二容纳腔113上的供电触点111连接,以向第一耳机本体320及第二耳机本体330充电,并可将第一耳机本体320及第二耳机本体330收分别纳于第一容纳腔112及第二容纳腔113内,可避免第一耳机本体320及第二耳机本体330的掉落,可实现第一耳机本体320及第二耳机本体330安全、稳定的充电。
另外,在用户取出第一耳机本体320及第二耳机本体330后,第一伸缩组件210及第二伸缩组件220缩回,隐藏在第一容纳腔112及第二容纳腔113的底部,以避免第一伸缩组件210及第二伸缩组件220的震动受损。当然,可以理解的是,在不同实施例中,伸缩机构200可设置有一伸缩组件,且第一耳机本体320及第二耳机本体330收纳于终端本体100的单侧,可通过一伸缩组件实现第一耳机本体320及第二耳机本体330的伸缩控制,可降低控制配件成本。
请继续参阅图8及图9,伸缩机构200还包括驱动组件230,驱动组件230与第一伸缩组件210及第二伸缩组件220连接,并用于驱动第一伸缩组件210及第二伸缩组件220伸出或缩回,采用一驱动组件230同时驱动第一伸缩组件210及第二伸缩组件220的伸缩控制,以使第一伸缩组件210及第二伸缩组件220的伸缩同步性较好,并可降低驱动组件230的成本。当然,可以理解的是,在不同实施例中,驱动组件230还可包括第一驱动组件及第二驱动组件,第一驱动组件与第一伸缩组件210连接,并用于驱动第一伸缩组件210伸出或缩回,第二驱动组件与第二伸缩组件220连接,并用于驱动第二伸缩组件220伸出或缩回,可实现第一伸缩组件210及第二伸缩组件220的单一伸缩控制。
请参阅图10,驱动组件230为驱动电机,第一伸缩组件210包括第一转动件211及与第一转动件211螺纹连接的第一移动件212,第二伸缩组件220包括第二转动件221及与第二转动件221螺纹连接的第二移动件222,驱动组件230能驱动第一转动件211旋转,以使第一移动件212在第一转动件211的延伸方向上移动,以使第一移动件212能将第一耳机本体320推出或收回第一容纳腔112,驱动组件230还能驱动第二转动件221旋转,以使第二移动件222在第二转动件221的延伸方向上移动,以使第二移动件222能将第二耳机本体330推出或收回第二容纳腔113,以分别实现第一耳机本体320及第二耳机本体330的位置控制。优选的,该驱动组件230为步进电机。
具体的,第一伸缩组件210还包括第一固定套213,第一固定套213上设置有第一导向槽2131,第一移动件212上设置有与第一导向槽2131相配合的第一导向凸起2121,第一导向槽2131沿第一转动件211的延伸方向延伸,以使第一导向凸起2121与第一导向槽2131滑动配合后,能引导第一移动件212沿第一转动件211的延伸方向移动,以实现第一转动件211转动能驱动第一移动件212沿第一转动件211的延伸方向移动;第二伸缩组件220还包括第二固定套224,第二固定套224上设置有第二导向槽2241,第二移动件222上设置有与第二导向槽2241相配合的第二导向凸起2221,第二导向槽2241沿第二转动件221延伸方向延伸,以使第二导向凸起2221与第二导向槽2241滑动配合后,能引导第二移动件222沿第二转动件221的延伸方向移动,以实现第二转动件221转动能驱动第二移动件222沿第二转动件221的延伸方向移动。
另外,伸缩机构200还包括固定座240,第一固定套213套接在第一移动件212外部,第二固定套224套接在第二移动件222外部,第一固定套213及第二固定套224的采用固定座240与终端本体100连接,以将伸缩机构200安装在终端本体100的装配槽内,实现伸缩机构200与终端本体100的连接稳定、可靠。
在一实施例中,伸缩机构200沿第一方向延伸,第一容纳腔112、第一伸缩组件210、第二伸缩组件220及第二容纳腔113沿第一方向间隔设置,以使第一容纳腔112及第二容纳腔113对称设置在伸缩机构200的两侧,以利于伸缩机构对第一耳机本体320及第二耳机本体330的伸缩控制,第一容纳腔112底部设置有与第一伸缩组件210配合的第一开口,第一伸缩组件210缩回后封闭该第一开口,第二容纳腔113底部设置有与第二伸缩组件220配合的第二开口,第二伸缩组件220缩回后封闭该第二开口,以保证第一容纳腔112及第二容纳腔113在停止充电时,可以保持完好,不易震动受损。
在一实施例中,伸缩机构200还包括第一磁吸组件,第一磁吸组件与耳机本体300中的第二磁吸组件可拆卸连接,以使耳机本体300与伸缩机构200通过第一磁吸组件及第二磁吸组件吸合配合,便于耳机本体300在伸缩机构200上的放置及拿取,便携性高,具体地,该第一磁吸组件和第二磁吸组件中的一者为磁铁,另一者为磁铁或磁吸金属,当第一磁吸组件和第二磁吸组件都为磁铁时,第一磁吸组件中的磁铁与第二磁吸组件中的磁铁相互吸附。当然,可以理解的是,在不同实施例中,第一磁吸组件可以替换为弹性卡槽,第二磁吸组件可以替换为与弹性卡槽相配合的弹性卡扣,也可实现耳机本体与伸缩机构的可拆卸连接。
在一实施例中,伸缩机构200还包括连接座223,连接座223与耳机本体300中的连接槽331相配合,第一磁吸组件设置于连接座223内,连接座223与耳机本体300中的连接槽331配合后,可使耳机本体300在伸缩机构200上的连接更加稳定。
在一实施例中,容纳腔110的形状与耳机本体300的形状相配合,以使耳机本体300在收纳于容纳腔110内,并与伸缩机构200连接后,可更加稳定的放置在容纳腔110内,可降低移动终端10受到冲击后,耳机本体300掉落的风险。优选的,第一容纳腔112的形状与第一耳机本体320的形状相配合,第二容纳腔113的形状与第二耳机本体330的形状相配合,以实现容纳腔110及耳机本体300的形状设计。
在一实施例中,移动终端10为手机、平板电脑、智能眼镜、智能手表及车载设备中的一者,以将耳机本体300与移动设备配合充电,可实现耳机本体300与各类智能硬件的匹配,避免了充电盒的携带,提高了耳机本体300携带的便携性。优选的,该手机可为折叠屏智能手机,耳机本体300收纳在折叠屏智能手机的折痕位置处,该智能眼镜为AR眼镜或VR眼镜。
请参阅图1,当该移动终端10为手机,且耳机本体300电量不足时,可操作手机的控制程序,以使伸缩机构200从容纳腔110内伸出,将耳机本体300吸合在伸缩机构200上,请参阅图4,操作手机程序,以使伸缩机构200缩回,以将耳机本体300收回至容纳腔110内充电,请参阅图1及图7,当充电完成后,操作手机程序,以使伸缩机构200将耳机本体300从容纳腔110内推出,便于用户拿取耳机本体300,并在用户将耳机本体300从伸缩机构200上取下后,伸缩机构200缩回至手机内部。
本申请还公开了一种蓝牙耳机,包括容纳于上述移动终端10中的耳机本体300,耳机本体300包括与供电触点111相配合的充电触点310,并可将耳机本体300放置在移动终端10中的容纳腔110内充电,或将耳机本体300取出使用,利于耳机本体300的携带及充电续航。
采用本实施例中的蓝牙耳机,出门时,仅需要保证蓝牙耳机及移动终端10的电池电量即可,不需要额外携带充电盒,并关注充电盒的电池电量,提高了外出的便携性。优选的,该蓝牙耳机为TWS耳机,可提供较好的立体声效果。
需要说明的是,本申请中提到的“多个”指的是两个或两个以上;术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。
以上的仅是本申请的实施方式,在此应当指出,对于本领域的普通技术人员来说,在不脱离本申请创造构思的前提下,还可以做出改进,但这些均属于本申请的保护范围。

Claims (11)

  1. 一种移动终端,其特征在于,包括:终端本体及设置于所述终端本体内部的伸缩机构,所述终端本体上开设有用于容纳耳机本体的容纳腔,所述容纳腔内设置有供电触点,所述供电触点用于与所述耳机本体的充电触点配合,所述伸缩机构能将所述耳机本体拉入所述容纳腔内,以使所述供电触点与所述充电触点连接,以向所述耳机本体充电;
    所述伸缩机构还能将所述耳机本体推出所述容纳腔,以使所述供电触点与所述充电触点分离。
  2. 根据权利要求1所述的移动终端,其特征在于,所述容纳腔包括第一容纳腔及第二容纳腔,所述耳机本体包括与所述第一容纳腔相配合的第一耳机本体及与所述第二容纳腔相配合的第二耳机本体。
  3. 根据权利要求2所述的移动终端,其特征在于,所述伸缩机构包括与所述第一耳机本体可拆卸连接的第一伸缩组件及与所述第二耳机本体可拆卸连接的第二伸缩组件,所述第一伸缩组件及所述第二伸缩组件能伸出,以将所述第一耳机本体及所述第二耳机本体分别推出所述第一容纳腔及所述第二容纳腔;
    所述第一伸缩组件及所述第二伸缩组件还能缩回,以将所述第一耳机本体及所述第二耳机本体分别收回所述第一容纳腔及所述第二容纳腔。
  4. 根据权利要求3所述的移动终端,其特征在于,所述伸缩机构还包括驱动组件,所述驱动组件与所述第一伸缩组件及所述第二伸缩组件连接,并用于驱动所述第一伸缩组件及所述第二伸缩组件伸出或缩回。
  5. 根据权利要求4所述的移动终端,其特征在于,所述驱动组件为驱动电机,所述第一伸缩组件包括第一转动件及与所述第一转动件螺纹连接的第一移动件,所述第二伸缩组件包括第二转动件及与所述第二转动件螺纹连接的第二移动件,所述驱动组件能驱动所述第一转动件旋转,以使所述第一移动件在所述第一转动件的延伸方向上移动,所述驱动组件还能驱动所述第二转动件旋转,以使所述第二移动件在所述第二转动件的延伸方向上移动。
  6. 根据权利要求3所述的移动终端,其特征在于,所述伸缩机构沿第一方向延伸,所述第一容纳腔、第一伸缩组件、第二伸缩组件及所述第二容纳腔沿所述第一方向间隔设置。
  7. 根据权利要求1所述的移动终端,其特征在于,所述伸缩机构包括第一磁吸组件,所述第一磁吸组件与所述耳机本体中的第二磁吸组件可拆卸连接。
  8. 根据权利要求7所述的移动终端,其特征在于,所述伸缩机构还包括连接座,所述连接座与所述耳机本体中的连接槽相配合,所述第一磁吸组件设置于所述连接座内。
  9. 根据权利要求1所述的移动终端,其特征在于,所述容纳腔的形状与所述耳机本体的形状相配合。
  10. 根据权利要求1所述的移动终端,其特征在于,所述移动终端为手机、平板电脑、智能眼镜、智能手表及车载设备中的一者。
  11. 一种蓝牙耳机,其特征在于,包括容纳于权利要求1至10任意一项所述移动终端中的耳机本体,所述耳机本体包括与所述供电触点相配合的充电触点。
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