WO2013097306A1 - 耳机控制方法及耳机 - Google Patents

耳机控制方法及耳机 Download PDF

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Publication number
WO2013097306A1
WO2013097306A1 PCT/CN2012/070295 CN2012070295W WO2013097306A1 WO 2013097306 A1 WO2013097306 A1 WO 2013097306A1 CN 2012070295 W CN2012070295 W CN 2012070295W WO 2013097306 A1 WO2013097306 A1 WO 2013097306A1
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Prior art keywords
signal
chip
earphone
sensing circuit
electrode layer
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PCT/CN2012/070295
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English (en)
French (fr)
Inventor
谭青松
Original Assignee
Tan Qingsong
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Application filed by Tan Qingsong filed Critical Tan Qingsong
Priority to US13/807,794 priority Critical patent/US9729955B2/en
Publication of WO2013097306A1 publication Critical patent/WO2013097306A1/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
    • H04R1/1041Mechanical or electronic switches, or control elements

Definitions

  • the present invention relates to a control method, and more particularly to an earphone control method and an earphone.
  • the volume control and the song control of the original headphone control device mainly rely on the following two methods.
  • the first method is the wire control device on the earphone wire, and the wire control device has a plurality of buttons for control.
  • the second way is to have multiple buttons on the earphone ear pocket to control.
  • the wire control device on the earphone wire has a plurality of buttons to control; the control mode is very intuitive, and the operation is also convenient; it is a good control device mode, and is also the most used control method at present.
  • the disadvantage is that this control method cannot be used when the headset is wireless.
  • buttons on the earphone earphone to control which is also the control method used by most wireless headphones.
  • This control method can basically meet the user's requirements for device control.
  • the drawback is that because the headphones are With the button on the head, the human eye can't see the button, and the device can only be manipulated by the touch of the finger. This operation is easy to press, and the accuracy and user experience are not very good. Summary of the invention
  • the present invention provides a method of controlling an earphone.
  • the invention provides a method for controlling an earphone, comprising the following steps:
  • the capacitive sensing circuit electrode layer detects the sliding coordinate signal and the track signal
  • the processing unit receives the coordinate signal and the track signal detected by the electrode layer of the capacitive sensing circuit
  • the processing unit analyzes whether the received coordinate signal and the track signal conform to the defined control rule, and converts the coordinate signal and the track signal that meet the control rule into instructions for transmission to the main control chip;
  • the main control chip is connected to the playback device terminal, and the main control chip transmits the command to the playback device terminal, and the playback device terminal executes the instruction.
  • the processing unit includes a capacitive touch chip, and the capacitive touch chip analyzes whether the received coordinate signal and the track signal meet the defined control rule, and matches The coordinate signal and the track signal of the control rule are converted into The instructions are transmitted to the master chip.
  • the processing unit includes a capacitive touch chip and a microprocessor connected to the capacitive touch chip, and the capacitive touch chip analyzes the received coordinate signal. And whether the track signal conforms to the defined control rule, and the microprocessor converts the coordinate signal and the track signal that meet the control rule into instructions for transmission to the main control chip.
  • step C the coordinate signal and the trajectory signal are compared with the control rule, and the coordinate signal and the trajectory signal are matched with the control rule, then the coordinate signal and the trajectory signal are converted into an instruction transmission to Master chip.
  • the matching control rule is judged by the tendency of the coordinate signal and the track signal to continuously increase or decrease continuously in a single direction.
  • the matching control rule is judged by the tendency of the coordinate signal and the trajectory signal to continuously increase from one point to two directions or the trend of successively decreasing from two directions to one point.
  • the present invention also provides an earphone, comprising an earphone housing, a capacitive sensing circuit electrode layer, a processing unit, a main control chip, and a playback device terminal, wherein the capacitive sensing circuit electrode layer is disposed on the inner surface of the earphone housing
  • the capacitive sensing circuit electrode layer is configured to detect a sliding coordinate signal and a track signal
  • the processing unit is configured to receive a coordinate signal and a track signal detected by the capacitive sensing circuit electrode layer
  • Connected to the main control chip the main control chip receives an instruction transmitted by the processing unit; the main control chip is further connected to the playback device terminal, and the main control chip transmits the instruction to the playback device terminal, where the playback is performed.
  • the device terminal executes the instructions.
  • the processing unit includes a capacitive touch chip, the capacitive touch chip is connected to the capacitive sensing circuit electrode layer, and the capacitive touch chip is mounted on the capacitive sensing
  • the capacitive touch chip is configured to analyze whether the received coordinate signal and the track signal meet the defined control rule, and convert the coordinate signal and the track signal that meet the control rule into instructions for transmission to the main Control chip; the capacitive board.
  • the earphone further includes a circuit board
  • the processing unit includes a capacitive touch chip, and a microprocessor connected to the capacitive touch chip, the microprocessor is mounted on the circuit board
  • the capacitive sensing circuit electrode layer is connected to the circuit board through a cable;
  • the capacitive touch chip is configured to analyze whether the received coordinate signal and the track signal meet the defined control rule, and the microprocessor uses For coordinate signals that will conform to the control rules And the track signal is converted into an instruction and transmitted to the main control chip;
  • the capacitive touch chip is connected to the capacitive sensing circuit electrode layer, and the capacitive touch chip is mounted on the line of the capacitive sensing electrode layer As one of the flexible circuit boards.
  • the processing unit, the main control chip, the playback device terminal, and the circuit board are all located inside the earphone housing.
  • the invention has the beneficial effects that: the earphone control method and the earphone of the invention greatly improve the convenience and ease of use of the user when using the earphone, and fundamentally change the operation mode of the user using the earphone; the mode of the invention is novel and dazzling Cool, fast, accurate and effective. Create an excellent user experience.
  • the user controls the earphone it is only necessary to remember the control gestures of several cartridges, and the capacitive sensing circuit electrode layer can be conveniently used to control the earphone. Make the use of the headset really close to the user, providing users with a thrilling technological experience.
  • Figure 1 is a flow chart of the method of the present invention.
  • Figure 2 is a schematic block diagram of the present invention.
  • the present invention discloses a method for controlling an earphone, which includes the following four steps:
  • step S1 the electrode layer of the capacitive sensing circuit detects a sliding coordinate signal and a track signal.
  • the processing unit receives the coordinate signal and the track signal detected by the electrode layer of the capacitive sensing circuit.
  • step S3 the processing unit analyzes whether the received coordinate signal and the track signal conform to the defined control rule, and converts the coordinate signal and the track signal that meet the control rule into instructions for transmission to the main control chip.
  • the main control chip is connected to the playback device terminal, and the main control chip transmits an instruction to the playback device terminal, and the playback device terminal executes the instruction.
  • the processing unit includes a capacitive touch chip, and the capacitive touch chip analyzes whether the received coordinate signal and the track signal meet the defined control rule, and The coordinate signal and the track signal that meet the control rules are converted into instructions for transmission to the main control chip.
  • the processing unit includes a capacitive touch chip and a microprocessor connected to the capacitive touch chip, and the capacitive touch chip analyzes the received Whether the coordinate signal and the track signal meet the defined control rule, the microprocessor converts the coordinate signal and the track signal that meet the control rule into instructions for transmission to the main control chip.
  • the coordinate signal and the trajectory signal are compared with the control rule, and the coordinate signal and the trajectory signal are matched with the control rule, and then the coordinate signal and the trajectory signal are converted into instructions for transmission to the main control chip.
  • the instructions include a volume adjustment command and a music play order command, and a music fast forward and rewind command.
  • the coordinate signal and the trajectory signal are adapted to the control rule to: determine the matching control rule by continuously increasing or continuously decreasing the trend of the coordinate signal and the trajectory signal in a single direction; for example:
  • the processing unit divides the periphery of the electrode layer of the capacitive sensing circuit into four directions of up and down and left and right.
  • the surface of the electrode layer of the capacitive sensing circuit will be evenly distributed N (where N represents multiple, and information points are based on capacitive sensing).
  • the size of the circuit electrode layer determines an information point.
  • the processing unit collects each touched coordinate information, and determines which control rule corresponds to the corresponding gesture according to the direction in which the coordinate information data and the trajectory are incremented or decremented. For example, the processing unit will judge the increment of more than 7 (the number is custom) information points from left to right as a control rule, and the instruction conforming to the control rule corresponds to the play through the link between the main control chip and the playback device terminal.
  • the device terminal controls the next command of the music.
  • the coordinate signal and the trajectory signal are adapted to the control rule to be: a trend of continuously increasing from one point to two directions by the coordinate signal and the trajectory signal or a continuous decreasing trend from two directions to one point. Then, the matching control rule is determined; for example: an action of enlarging or reducing by two fingers.
  • the user can also perform a squatting action on the electrode layer of the capacitive sensing circuit by means of a finger, and counterclockwise to increase the volume counterclockwise.
  • the present invention also discloses an earphone, including an earphone housing, a capacitive sensing circuit electrode layer, a processing unit 1, a main control chip 2, a playback device terminal 3, and the capacitive sensing circuit electrode.
  • the layer is disposed on the inner surface of the earphone casing, the capacitive sensing circuit electrode layer is configured to detect a sliding coordinate signal and a track signal; and the processing unit 1 is configured to receive the detected by the capacitive sensing circuit electrode layer a coordinate signal and a track signal; the processing unit 1 is connected to the main control chip 2, and the main control chip 2 receives an instruction transmitted by the processing unit 1; the main control chip 2 It is also connected to the playback device terminal 3, and the main control chip 2 transmits an instruction to the playback device terminal 3, and the playback device terminal 3 executes the command.
  • the processing unit 1 includes a capacitive touch chip, the capacitive touch chip is connected to the capacitive sensing circuit electrode layer, and the capacitive touch is used to analyze the received coordinate signal. And whether the track signal conforms to the defined control rule, and converts the coordinate signal and the track signal that meet the control rule into instructions for transmission to the main control chip 2; the circuit board.
  • the earphone further includes a circuit board, the processing unit 1 includes a capacitive touch chip, and a microprocessor connected to the capacitive touch chip, the microprocessor is mounted on the On the circuit board, the capacitive sensing circuit electrode layer is connected to the circuit board through a cable; the capacitive touch chip is configured to analyze whether the received coordinate signal and the track signal meet the defined control rule, The microprocessor is configured to convert the coordinate signal and the track signal that meet the control rule into instructions for transmission to the main control chip 2; the capacitive touch chip is connected to the capacitive sensing circuit electrode layer, and the capacitive touch chip is mounted a line of the capacitive sensing circuit electrode layer; a flexible circuit board in which the capacitive sensing circuit electrode layer and the capacitive sensing circuit electrode layer are integrated.
  • the processing unit 1 includes a capacitive touch chip, and a microprocessor connected to the capacitive touch chip, the microprocessor is mounted on the On the circuit board, the capacitive sensing circuit electrode layer is connected to
  • the earphone casing is curved, so a flexible circuit board is used; of course, the earphone casing can also be a flat plate, so that instead of a flexible circuit board, an ordinary double-sided or multi-sided PCB can be used, and capacitive transmission is adopted.
  • the sensing circuit electrode layer is on the top layer of the pcb, and the capacitive touch chip, the microprocessor, and the main control chip 2 can be placed on the bottom layer of the PCB.
  • the outer surface of the earphone housing of the present invention does not have any buttons for controlling the volume of the device and the song control. All operations involving device volume and song control are controlled by the capacitive sensing circuit electrode layer.

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  • Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Acoustics & Sound (AREA)
  • Signal Processing (AREA)
  • Switches That Are Operated By Magnetic Or Electric Fields (AREA)
  • Position Input By Displaying (AREA)
  • Electronic Switches (AREA)

Abstract

本发明提供了一种耳机控制方法,包括如下步骤:A.电容式传感电路电极层侦测滑动的坐标信号及轨迹信号;B.处理单元接收电容式传感电路电极层侦测到的坐标信号及轨迹信号;C.处理单元分析接收到的坐标信号及轨迹信号是否符合已定义的控制规则,并把符合控制规则的坐标信号及轨迹信号转化成指令传输给主控芯片;D.所述主控芯片与播放设备终端相连、且主控芯片将指令传输给播放设备终端,由所述播放设备终端执行指令。

Description

耳机控制方法及耳机 技术领域
本发明涉及控制方法, 尤其涉及耳机控制方法及耳机。
背景技术
原有的头戴式耳机控制设备的音量及歌曲控制主要靠以下 2种方式, 第一种方式是耳机线材上的线控装置, 线控装置上有多个按键来控制。 第 二种方式是耳机耳包外壳上有多个按键来控制。
第一种方式:耳机线材上的线控装置,线控装置上有多个按键来控制; 这种控制方式很直观, 操作也很方便; 是不错的控制设备方式, 也是目前 使用最多的控制方式; 缺点是当头戴式耳机为无线方式时, 此控制方式没 办法使用。
第二种方式: 耳机耳包外壳上有多个按键来控制, 这也是大多数无线 耳机使用的控制方式, 这种控制方式能基本满足用户对设备控制的要求; 缺陷是, 因为头戴耳机是带在头上的, 人眼看不见按键, 只能通过手指的 触感来操控设备,这样的操作很容易误按,准确率及用户体验都不是太好。 发明内容
为了解决现有技术中的问题, 本发明提供了一种耳机控制方法。
本发明提供了一种耳机控制方法, 包括如下步骤:
A.电容式传感电路电极层侦测滑动的坐标信号及轨迹信号;
B.处理单元接收电容式传感电路电极层侦测到的坐标信号及轨迹信 号;
C.处理单元分析接收到的坐标信号及轨迹信号是否符合已定义的控 制规则, 并把符合控制规则的坐标信号及轨迹信号转化成指令传输给主控 芯片;
D.所述主控芯片与播放设备终端相连、 且主控芯片将指令传输给播 放设备终端, 由所述播放设备终端执行指令。
作为本发明的进一步改进, 在所述步骤 C中, 所述处理单元包括电容 式触摸芯片, 所述电容式触摸芯片分析接收到的坐标信号及轨迹信号是否 符合已定义的控制规则, 并把符合控制规则的坐标信号及轨迹信号转化成 指令传输给主控芯片。
作为本发明的进一步改进, 在所述步骤 C中, 所述处理单元包括电容 式触摸芯片、 以及与所述电容式触摸芯片相连的微处理器, 所述电容式触 摸芯片分析接收到的坐标信号及轨迹信号是否符合已定义的控制规则 , 所 述微处理器将符合控制规则的坐标信号及轨迹信号转化成指令传输给主控 芯片。
作为本发明的进一步改进, 在所述步骤 C中, 坐标信号及轨迹信号与 控制规则进行比较, 坐标信号及轨迹信号与控制规则相适配, 那么将该坐 标信号及轨迹信号转化成指令传输给主控芯片。
作为本发明的进一步改进, 通过坐标信号及轨迹信号向单个方向连续 递增或连续递减的趋势进而判断出相适配的控制规则。
作为本发明的进一步改进, 通过坐标信号及轨迹信号由一点向两个方 向连续递增的趋势或由两个方向向一点连续递减的趋势进而判断出相适配 的控制规则。
本发明还提供了一种耳机, 包括耳机壳体、 电容式传感电路电极层、 处理单元、 主控芯片、 播放设备终端, 所述电容式传感电路电极层设置于 所述耳机壳体内表面, 所述电容式传感电路电极层用于侦测滑动的坐标信 号及轨迹信号; 所述处理单元用于接收电容式传感电路电极层侦测到的坐 标信号及轨迹信号; 所述处理单元与所述主控芯片相连, 所述主控芯片接 收所述处理单元传输的指令; 所述主控芯片还与播放设备终端相连、 且主 控芯片将指令传输给播放设备终端, 由所述播放设备终端执行指令。
作为本发明的进一步改进, 所述处理单元包括电容式触摸芯片, 所述 电容式触摸芯片与所述电容式传感电路电极层相连、 且所述电容式触摸芯 片安装于所述电容式传感电路电极层的排线上, 所述电容式触摸芯片用于 分析接收到的坐标信号及轨迹信号是否符合已定义的控制规则 , 并把符合 控制规则的坐标信号及轨迹信号转化成指令传输给主控芯片; 所述电容式 板。
作为本发明的进一步改进, 该耳机还包括电路板, 所述处理单元包括 电容式触摸芯片、 以及与所述电容式触摸芯片相连的微处理器, 所述微处 理器安装于所述电路板上, 所述电容式传感电路电极层通过排线与所述电 路板相连; 所述电容式触摸芯片用于分析接收到的坐标信号及轨迹信号是 否符合已定义的控制规则, 所述微处理器用于将符合控制规则的坐标信号 及轨迹信号转化成指令传输给主控芯片; 所述电容式触摸芯片与所述电容 式传感电路电极层相连、 且所述电容式触摸芯片安装于所述电容式传感电 极层的排线为一体的柔性线路板。
作为本发明的进一步改进, 所述处理单元、 所述主控芯片、 所述播放 设备终端和所述电路板均位于所述耳机壳体内部。
本发明的有益效果是: 本发明的耳机控制方法及耳机极大地提高了用 户在使用耳机时的方便及易用性, 从根本上改变了用户使用耳机的操作模 式; 本发明的模式新颖、 炫酷、 快速、 准确、 有效。 为使用者创造出极佳 的使用体验。 用户在控制耳机时, 只需要记住几个筒单的控制手势, 就可 以很方便的利用电容式传感电路电极层来控制耳机。 使耳机的使用真正做 到贴近用户, 提供用户超炫的科技体验。
附图说明
图 1是本发明的方法流程图。
图 2是本发明的原理框图。
具体实施方式
如图 1所示, 本发明公开了一种耳机控制方法, 包括如下四个步骤: 在步骤 S1 中, 电容式传感电路电极层侦测滑动的坐标信号及轨迹信号。 在步骤 S2 中, 处理单元接收电容式传感电路电极层侦测到的坐标信号及 轨迹信号。 在步骤 S3 中, 处理单元分析接收到的坐标信号及轨迹信号是 否符合已定义的控制规则, 并把符合控制规则的坐标信号及轨迹信号转化 成指令传输给主控芯片。 在步骤 S4 中, 所述主控芯片与播放设备终端相 连、 且主控芯片将指令传输给播放设备终端, 由所述播放设备终端执行指 令。
作为该耳机控制方法的一个实施例, 在步骤 S3 中, 所述处理单元包 括电容式触摸芯片 , 所述电容式触摸芯片分析接收到的坐标信号及轨迹信 号是否符合已定义的控制规则, 并把符合控制规则的坐标信号及轨迹信号 转化成指令传输给主控芯片。
作为该耳机控制方法的另一个实施例, 在步骤 S3 中, 所述处理单元 包括电容式触摸芯片、 以及与所述电容式触摸芯片相连的微处理器, 所述 电容式触摸芯片分析接收到的坐标信号及轨迹信号是否符合已定义的控制 规则, 所述微处理器将符合控制规则的坐标信号及轨迹信号转化成指令传 输给主控芯片。 在步骤 S3 中, 坐标信号及轨迹信号与控制规则进行比较, 坐标信号 及轨迹信号与控制规则相适配, 那么将该坐标信号及轨迹信号转化成指令 传输给主控芯片。 所述指令包括音量调节指令和乐曲播放次序指令以及乐 曲快进快退指令。
作为本发明的一个实施例, 坐标信号及轨迹信号与控制规则相适配是 指: 通过坐标信号及轨迹信号向单个方向连续递增或连续递减的趋势进而 判断出相适配的控制规则; 例如: 处理单元将把电容式传感电路电极层周 边分为上下和左右四个方向, 电容式传感电路电极层表面将会均衡分布 N (这里的 N代表多个,信息点多少根据电容式传感电路电极层的面积大小 决定)个信息点, 手指在触摸电容式传感电路电极层上耳壳表面时, 所对 应的电容式传感电路电极层信息点都会侦测到手指的动作, 并把此信号传 给处理单元。 处理单元将每个触碰过的坐标信息收集起来, 根据这些坐标 信息数据和轨迹是往哪个方向递增或是递减的趋势进而判断出相应的手势 对应的是哪个控制规则。 比如处理单元将把从左到右连续超过 7 (此数字 为自定义)个信息点的递增判断为一个控制规则, 符合这个控制规则的指 令通过主控芯片与播放设备终端的链接又对应到播放设备终端控制乐曲的 下一曲指令。 同理也可以把从右到左连续超过 7 (此数字为自定义) 个信 息点的递增判断为另一个控制规则。 还可以把从上到下连续超过 3 (此数 字为自定义)个信息点的递增判断为一个控制规则。 这个规则又可以对应 到播放设备终端的音量增大和减小级的指令, 并把连续超过 3 (此数字为 自定义) 个信息点的递减判断为另一个控制规则等等。
作为本发明的另一个实施例, 坐标信号及轨迹信号与控制规则相适配 是指: 通过坐标信号及轨迹信号由一点向两个方向连续递增的趋势或由两 个方向向一点连续递减的趋势进而判断出相适配的控制规则; 例如: 通过 两个手指#文放大或缩小的动作。
当然,用户也可以通过手指在电容式传感电路电极层上做划圏的动作, 顺时针为加音量逆时针为减音量。
如图 2所示, 本发明还公开了一种耳机, 包括耳机壳体、 电容式传感 电路电极层、 处理单元 1、 主控芯片 2、 播放设备终端 3 , 所述电容式传感 电路电极层设置于所述耳机壳体内表面, 所述电容式传感电路电极层用于 侦测滑动的坐标信号及轨迹信号; 所述处理单元 1用于接收电容式传感电 路电极层侦测到的坐标信号及轨迹信号; 所述处理单元 1与所述主控芯片 2相连,所述主控芯片 2接收所述处理单元 1传输的指令;所述主控芯片 2 还与播放设备终端 3相连、 且主控芯片 2将指令传输给播放设备终端 3 , 由所述播放设备终端 3执行指令。
作为该耳机的一个实施例, 所述处理单元 1包括电容式触摸芯片, 所 述电容式触摸芯片与所述电容式传感电路电极层相连、 且所述电容式触摸 于分析接收到的坐标信号及轨迹信号是否符合已定义的控制规则, 并把符 合控制规则的坐标信号及轨迹信号转化成指令传输给主控芯片 2; 所述电 路板。
作为该耳机的另一个实施例, 该耳机还包括电路板, 所述处理单元 1 包括电容式触摸芯片、 以及与所述电容式触摸芯片相连的微处理器, 所述 微处理器安装于所述电路板上, 所述电容式传感电路电极层通过排线与所 述电路板相连; 所述电容式触摸芯片用于分析接收到的坐标信号及轨迹信 号是否符合已定义的控制规则, 所述微处理器用于将符合控制规则的坐标 信号及轨迹信号转化成指令传输给主控芯片 2; 所述电容式触摸芯片与所 述电容式传感电路电极层相连、 且所述电容式触摸芯片安装于所述电容式 传感电路电极层的排线上; 所述电容式传感电路电极层与所述电容式传感 电路电极层的排线为一体的柔性线路板。
在本发明中, 耳机外壳是弧面的, 所以采用柔性线路板; 当然该耳机 外壳也可以是平板的, 那么就可以不用柔性线路板, 而是采用普通的双面 或多面 PCB , 电容式传感电路电极层在 pcb的顶层, 电容式触摸芯片、 微 处理器、 包括主控芯片 2都可以放在 PCB的底层。
所述处理单元 1、所述主控芯片 2、所述播放设备终端 3和所述电路板 均位于所述耳机壳体内部。 所述主控芯片 2与所述播放设备终端 3通过有 线或无线方式相连接。
本发明的耳机壳体外表面除开必需的主功能按键,不会有任何控制设备 音量及歌曲控制的按键。 所有涉及设备音量及歌曲控制的操作均通过电容 式传感电路电极层来控制。
耳机的音量控制可采用单个手指在电容式传感电路电极层上划和下划 来控制音量的大小; 也可以用手指在电容式传感电路电极层上顺逆划圏来 控制音量; 还可以双指或多指在电容式传感电路电极层上收放来控制耳机 的音量大小等等。 耳机的歌曲控制可以通过单指或多指在电容式传感电路电极层上前划 后划或左划右划来控制歌曲的前进后退、 上一曲下一曲等等。
本发明的耳机控制方法及耳机极大地提高了用户在使用耳机时的方便 及易用性,从根本上改变了用户使用耳机的操作模式;本发明的模式新颖、 炫酷、 快速、 准确、 有效。 为使用者创造出极佳的使用体验。 用户在控制 耳机时, 只需要记住几个筒单的控制手势, 就可以很方便的利用电容式传 感电路电极层来控制耳机。 使耳机的使用真正做到贴近用户, 提供用户超 炫的科技体验。
以上内容是结合具体的优选实施方式对本发明所作的进一步详细说 明, 不能认定本发明的具体实施只局限于这些说明。 对于本发明所属技术 领域的普通技术人员来说, 在不脱离本发明构思的前提下, 还可以做出若 干筒单推演或替换, 都应当视为属于本发明的保护范围。

Claims

权利要求书
1. 一种耳机控制方法, 其特征在于, 包括如下步骤:
A. 电容式传感电路电极层侦测滑动的坐标信号及轨迹信号;
B. 处理单元接收电容式传感电路电极层侦测到的坐标信号及轨迹 信号;
C. 处理单元分析接收到的坐标信号及轨迹信号是否符合已定义的 控制规则,并把符合控制规则的坐标信号及轨迹信号转化成指令 传输给主控芯片;
D. 所述主控芯片与播放设备终端相连、且主控芯片将指令传输给播 放设备终端, 由所述播放设备终端执行指令。
2. 根据权利要求 1所述的耳机控制方法, 其特征在于, 在所述步骤 C中, 所述处理单元包括电容式触摸芯片,所述电容式触摸芯片分析接收到的 坐标信号及轨迹信号是否符合已定义的控制规则,并把符合控制规则的 坐标信号及轨迹信号转化成指令传输给主控芯片。
3. 根据权利要求 1所述的耳机控制方法, 其特征在于, 在所述步骤 C中, 所述处理单元包括电容式触摸芯片、以及与所述电容式触摸芯片相连的 微处理器,所述电容式触摸芯片分析接收到的坐标信号及轨迹信号是否 符合已定义的控制规则,所述微处理器将符合控制规则的坐标信号及轨 迹信号转化成指令传输给主控芯片。
4. 根据权利要求 1至 3任一项所述的耳机控制方法, 其特征在于, 在所述 步骤 C中, 坐标信号及轨迹信号与控制规则进行比较, 坐标信号及轨迹 信号与控制规则相适配,那么将该坐标信号及轨迹信号转化成指令传输 给主控芯片。
5. 根据权利要求 4所述的耳机控制方法, 其特征在于: 通过坐标信号及轨 迹信号向单个方向连续递增或连续递减的趋势进而判断出相适配的控 制规则。
6. 根据权利要求 4所述的耳机控制方法, 其特征在于: 通过坐标信号及轨 迹信号由一点向两个方向连续递增的趋势或由两个方向向一点连续递 减的趋势进而判断出相适配的控制规则。
7. 一种耳机, 其特征在于: 包括耳机壳体、 电容式传感电路电极层、 处理 单元、 主控芯片、 播放设备终端, 所述电容式传感电路电极层设置于所 述耳机壳体内表面,所述电容式传感电路电极层用于侦测滑动的坐标信 号及轨迹信号;所述处理单元用于接收电容式传感电路电极层侦测到的 坐标信号及轨迹信号; 所述处理单元与所述主控芯片相连, 所述主控芯 片接收所述处理单元传输的指令; 所述主控芯片还与播放设备终端相 连、 且主控芯片将指令传输给播放设备终端, 由所述播放设备终端执行 指令。
8. 根据权利要求 7所述的耳机, 其特征在于: 所述处理单元包括电容式触 摸芯片, 所述电容式触摸芯片与所述电容式传感电路电极层相连、 且所 容式触摸芯片用于分析接收到的坐标信号及轨迹信号是否符合已定义 的控制规则,并把符合控制规则的坐标信号及轨迹信号转化成指令传输 的排线为一体的柔性线路板。
9. 根据权利要求 7所述的耳机, 其特征在于: 该耳机还包括电路板, 所述 处理单元包括电容式触摸芯片、以及与所述电容式触摸芯片相连的微处 理器, 所述微处理器安装于所述电路板上, 所述电容式传感电路电极层 通过排线与所述电路板相连;所述电容式触摸芯片用于分析接收到的坐 标信号及轨迹信号是否符合已定义的控制规则,所述微处理器用于将符 合控制规则的坐标信号及轨迹信号转化成指令传输给主控芯片;所述电 容式触摸芯片与所述电容式传感电路电极层相连、且所述电容式触摸芯 片安装于所述电容式传感电路电极层的排线上;所述电容式传感电路电 极层与所述电容式传感电路电极层的排线为一体的柔性线路板。
10.根据权利要求 7至 9任一项所述的耳机, 其特征在于: 所述处理单元、 所述主控芯片、所述播放设备终端和所述电路板均位于所述耳机壳体内 部。
PCT/CN2012/070295 2011-12-28 2012-01-12 耳机控制方法及耳机 WO2013097306A1 (zh)

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