WO2017181524A1 - 一种手机主板和具有对讲功能的手机 - Google Patents

一种手机主板和具有对讲功能的手机 Download PDF

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Publication number
WO2017181524A1
WO2017181524A1 PCT/CN2016/087161 CN2016087161W WO2017181524A1 WO 2017181524 A1 WO2017181524 A1 WO 2017181524A1 CN 2016087161 W CN2016087161 W CN 2016087161W WO 2017181524 A1 WO2017181524 A1 WO 2017181524A1
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WO
WIPO (PCT)
Prior art keywords
mobile phone
module
fingerprint
intercom
chip
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PCT/CN2016/087161
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English (en)
French (fr)
Inventor
魏谨守
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深圳捷仕科技有限公司
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Application filed by 深圳捷仕科技有限公司 filed Critical 深圳捷仕科技有限公司
Publication of WO2017181524A1 publication Critical patent/WO2017181524A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/02Terminal devices
    • H04W88/06Terminal devices adapted for operation in multiple networks or having at least two operational modes, e.g. multi-mode terminals

Definitions

  • the present invention relates to the field of mobile phone manufacturing technologies, and in particular, to a mobile phone motherboard and a mobile phone having an intercom function.
  • a mobile phone motherboard includes a main body and a controller module, a digital-analog intercom module, and a fingerprint module disposed on the main body, the digital-analog intercom module, and the fingerprint module connected to the controller module
  • the controller module includes a control chip, and the control chip is respectively connected to the digital-analog intercom module and the fingerprint module, and is configured to control the digital-analog intercom module and the fingerprint module;
  • the intercom module is used for voice communication with other devices with intercom function; the fingerprint module is used for fingerprint collection and matching
  • the mobile phone motherboard further includes an infrared remote control module, a wireless charging module, an NFC chip, a memory, a mobile phone battery, and the wireless charging module and the NFC chip are connected to the controller module.
  • the infrared remote control module, the memory, and the mobile phone battery are connected to the controller module and integrated on the main body.
  • the digital-analog intercom module includes a digital-analog intercom chip, an antenna, a microphone, and a speaker, and the antenna, the microphone, and the speaker are connected to the digital-analog intercom chip, and the number The mode intercom chip is connected to the control chip.
  • the fingerprint module includes a fingerprint processing chip and a fingerprint collector, and the fingerprint collector, the fingerprint processing chip, and the control chip are sequentially connected.
  • the infrared remote control module includes a remote control chip and an infrared transceiver circuit, and the infrared transceiver circuit, the remote control chip, and the control chip are sequentially connected.
  • the mobile phone motherboard further includes a mobile phone card slot, a communication module, the mobile phone card slot, the communication module is mounted on the mainboard body, the mobile phone card slot, the communication module
  • the control chips are sequentially connected.
  • a mobile phone with an intercom function includes a mobile phone casing, a mobile phone screen disposed on the mobile phone casing, and a mobile phone motherboard installed in the mobile phone casing, and the mobile phone screen is connected to the main body of the mobile phone mainboard.
  • the mobile phone housing is provided with a fingerprint collection area, and the fingerprint collection area is used for contact-type reading of fingerprint information.
  • an inner surface of the mobile phone case is provided with an FPC module
  • the mobile phone main board further includes a coil, wherein the coil is respectively connected to the wireless charging module and the NFC chip, the wireless charging module, the The NFC chip and the coil are packaged in the FPC module and pasted on the inner surface of the handset casing by the FPC module.
  • the FPC module includes an FPC board, a gold finger, a parallel ferrite, an amorphous, a reinforcing steel sheet, and the FPC board has an FPC first surface, an FPC second surface, an SMT area, and a coil.
  • a connection region wherein the coil connection region is plated with gold; the reinforcing steel sheet, the paramagnetic ferrite, the gold finger, the coil connection region, and the amorphous portion are disposed on the first surface of the FPC;
  • the SMT region is disposed on the second surface of the FP C; the wireless charging module and the NFC chip are disposed in an SMT region.
  • the digital analog intercom module has the function of voice intercom call, and does not insert the mobile phone card. It can also carry on the intercom communication, the communication range is far, the signal is stable, the voice call quality is high, and there is no need to pay the operator, the call cost is low; the phone card can be called after the phone card is inserted, and the function of the general call phone is available, in different occasions Choose different calling methods and be flexible.
  • the above mobile phone motherboard also integrates a fingerprint module, an infrared remote control module, a wireless charging module, and an NFC chip, and has the functions of fingerprint recognition, infrared remote control, wireless charging, and short-range wireless communication, with many functions and strong practicability.
  • FIG. 1 is a block diagram showing the composition of a mobile phone motherboard according to an embodiment of the present invention.
  • FIG. 2 is a schematic front structural view of an FPC module of a mobile phone motherboard according to an embodiment of the present invention.
  • FIG 3 is a schematic side view showing the structure of an FPC module of a mobile phone motherboard according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram showing the overall structure of a mobile phone having an intercom function according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural view of a back surface of a mobile phone with an intercom function according to an embodiment of the present invention.
  • the mobile phone main board 100 includes a main body 101 and a controller module 102 disposed on the main body 101.
  • the digital module intercom module 103, the fingerprint module 104, the digital analog intercom module 103, and the fingerprint module 104 are connected to the controller module 102.
  • the controller module 102 includes a control chip, and the control chip is respectively connected with the digital analog intercom module 103 and the fingerprint module 1. 04 is connected to control the digital-analog intercom module 103 and the fingerprint module 104.
  • control chip is used to send an operation instruction to the digital-to-analog module 103 and the fingerprint module 104, and process the digital-analog intercom module 103 and the fingerprint module 104.
  • the feedback module 103 is used for voice communication with other devices having an intercom function; the fingerprint module 104 is used for fingerprint collection and matching.
  • the digital-to-analog intercom module 103 includes a digital-to-analog intercom chip, an antenna, a microphone, a speaker, an antenna, a microphone, a speaker connected to the digital-analog intercom chip, and the digital-to-analog intercom chip is connected to the control chip.
  • the control chip preferably uses the MT6735 main chip, and other chips that implement the function are also selectable.
  • the control chip first sends an intercom request to the digital analog intercom chip, and the digital analog intercom chip sends an intercom request to other devices with intercom function through the antenna, when other devices with intercom function
  • the consent intercom signal will be sent out, and the digital-analog intercom chip will feed back the above-mentioned agreed intercom signal received by the antenna to the control chip, and the above-mentioned mobile phone main board officially establishes a voice intercom communication with other devices having intercom function.
  • the digital-to-analog intercom module 103 and other intercom-enabled devices for voice intercom are also selectable.
  • the microphone first collects the voice information and transmits the voice information to the digital analog intercom chip, and the digital analog intercom chip processes the voice information and sends the voice information to the antenna.
  • Other devices with intercom function After performing intercom voice reception, the antenna receives the AC voice information sent by other devices with intercom function, and transmits the AC voice information to the digital analog intercom chip, digital analog intercom
  • the chip will process the above-mentioned AC voice information and play it through the speaker.
  • the other devices having the intercom function include a mobile phone and a walkie-talkie having an intercom function.
  • the mobile phone motherboard 100 includes an infrared remote control module 108 , a wireless charging module 109 , an NFC chip 110 , and a memory 112 .
  • the controller module 102 is respectively connected to the wireless charging module 109 and the NFC chip 110 , and the fingerprint module 104 .
  • the infrared remote control module 108, the wireless charging module 109, and the memory 112 are connected to the controller module 102 and are integrally mounted on the main body 101.
  • the fingerprint module 104 includes a fingerprint processing chip, a fingerprint collector, a fingerprint collector, a fingerprint processing chip, and a control chip of the controller module 102 are sequentially connected;
  • the infrared remote control module 108 includes a remote control chip, an infrared transceiver circuit, an infrared transceiver circuit, and a remote control. The chip and the control chip of the controller module 102 are sequentially connected.
  • the control chip of the controller module 102 issues a storage or matching operation instruction to the fingerprint module 104, and the fingerprint collector of the fingerprint module 104 samples the fingerprint information and transmits the fingerprint information to the fingerprint processing chip, and the fingerprint processing chip Then, according to the operation instruction of the control chip, the fingerprint information or the fingerprint matching action is performed on the fingerprint information.
  • the control chip of the controller module 102 sends a remote control command to the remote control chip of the infrared remote control module 108, and the remote control chip generates a corresponding infrared remote control signal according to the remote control command, and transmits the infrared remote control signal through the infrared transceiver circuit. Send to the corresponding remotely controlled infrared device.
  • the mobile phone motherboard further includes a coil 110 and a mobile phone battery 105.
  • the coil 110 is connected to the wireless charging module 109 and the NFC chip 110, respectively, and the mobile phone battery 105 is mounted on the main body 101.
  • the coil 110, the NFC chip 110, the control chip of the controller module 102, and the memory 112 form a short-range wireless communication component, so that the mobile phone motherboard has a short-range wireless communication function; the coil 110, the wireless charging module 109, and the control core
  • the tablet and the mobile phone battery 105 form a wireless charging circuit, so that the above mobile phone motherboard has a wireless charging function.
  • control chip of the controller module 102 issues a data exchange instruction to the NFC chip 110, and the NFC chip 110 accesses the data inside the memory 112 through the controller module 102, and the memory 1 is
  • the internal data of 12 is exchanged with the external NFC device through the coil 110.
  • the mobile phone battery 105 sends a low battery alarm message to the controller module 102 after the battery is low, the control chip of the controller module 102 issues a charging command to the wireless charging module 109, and the wireless charging module 109 passes the coil.
  • the 110 searches for and receives the wireless charging signal from the external wireless charger, and converts the charging signal into a charging current suitable for charging the mobile phone battery 105.
  • the charging current is input to the mobile phone battery 105 through the controller module 102 to charge the charging battery.
  • the mobile phone motherboard 100 includes a mobile phone card slot 107, a communication module 106, and a mobile phone card slot 107.
  • the communication module 106 is mounted on the main body 101, and the mobile phone card slot 107 and the communication module 106 are connected to the control chip of the controller module 102.
  • the mobile phone motherboard 100 passes the mobile phone card.
  • the communication module 106 performs telephone communication; the telephone signal is unstable, and the call distance is in the digital analog intercom module.
  • the communication range of 3 is ⁇ , and the digital mode intercom module 103 is used for intercom calls, which does not require cost, low call cost, and good call quality.
  • the mobile phone 300 having the intercom function includes a mobile phone case 301, a mobile phone screen 302 disposed on the mobile phone case 301, and a mobile phone main board 100 installed in the mobile phone case 301.
  • the screen 302 is connected to the main body 101 of the mobile phone main board 100.
  • the mobile phone housing 301 is provided with a fingerprint collection area 303 for contact-reading fingerprint information.
  • the main board body 101 is mounted in the mobile phone case 301, and the coil 110 is connected to the mobile phone main board 100 and pasted on the inner surface of the mobile phone case 301, and the mobile phone screen 302 is connected to the main body 101.
  • the mobile phone 300 having the intercom function is configured, and the user performs the intercom voice communication with the other mobile phone having the intercom function through the mobile phone 300 having the intercom function.
  • a fingerprint collection area 303 is disposed on the mobile phone screen 302.
  • the fingerprint collector of the fingerprint module 104 is connected to the fingerprint collection area 303.
  • the fingerprint collector collects
  • the fingerprint information is transmitted to the fingerprint processing chip of the fingerprint module 104, and the fingerprint processing chip is
  • the storage instruction or matching instruction of the control chip of the controller module 102 stores the collected fingerprint information or matches the collected information with the stored fingerprint information.
  • the above functions can be used for fingerprint unlocking, so that the intercom mobile phone has a fingerprint unlocking function.
  • an FPC module 200 is disposed on an inner surface of the mobile phone housing 301.
  • the mobile phone motherboard 100 further includes a coil 110.
  • the coil 110 is respectively connected to the wireless charging module 109 and the NFC chip 11, and the wireless charging module. 109.
  • the NFC chip 111 and the coil 110 are packaged in the FPC module 200 and pasted on the inner surface of the mobile phone case 301 by the FPC module 200.
  • the FPC module 200 includes an FPC board 201, a gold finger 206, a parallel ferrite 204, an amorphous 205, and a reinforcing steel sheet 202.
  • the FPC board 201 has an FPC first surface 207, FPC.
  • the second surface 208, the SMT region 209, the coil connection region 203, and the coil connection region 203 are gold-plated; the reinforcing steel sheet 202, the parallel ferrite 204, the gold finger 206, the coil connection region 203, and the amorphous 205 are set at the FPC first.
  • the SM T region 209 is disposed on the FPC second surface 208; the wireless charging module 109 and the NFC chip 110 are disposed in the SMT region 209 and connected to the controller module 102.
  • the wireless charging module 109 and the NFC chip 110 are encapsulated in the SMT region 209 of the FPC second surface 208, the coil 110 is connected to the coil connection region 203, and the gold finger 206 is connected to the controller module 102.
  • the gold finger 206 and the coil connection area 203 are connected to the FPC board 201 through different circuits.
  • the wireless charging module 109 and the NFC chip 110 are respectively connected to the gold finger 206 and the coil connection area 203 through the internal circuit of the FPC board 201, and pass the gold finger 206.
  • both the wireless charging module 109 and the NFC chip 110 are connected to the coil 110, but are connected to the controller module 102 by different internal circuits of the FP C board 201.
  • the reinforcing steel sheet 202 is installed at a corresponding position of the SMT region 209 to prevent the SMT region 209 from being bent and damaging the electronic components in the SMT region 209.
  • the parallel ferrite 204 is disposed on the outer surface of the coil 110, the metal shield interference of the coil 110 is enhanced, the sensitivity of the sensing signal and the receiving is improved, and finally the coil 110 and the parallel ferrite 204 are fixed by the amorphous 205.
  • the FPC is on the first surface 207.
  • the digital-to-analog intercom module 103 has a voice intercom function, and can perform intercom communication without inserting a mobile phone card, the communication range is long, the signal is stable, the voice call quality is high, and the operation is not required.
  • the merchant pays the fee, the call cost is low; the phone card can be called after the phone card is inserted, and the function of the general call phone is available, and different call modes are selected in different occasions, and the flexibility is changeable.
  • the above mobile phone motherboard also integrates fingerprints
  • the module 104, the infrared remote control module 108, the wireless charging module 109, and the NFC chip 110 have the functions of fingerprint recognition, infrared remote control, wireless charging, and short-range wireless communication, and have many functions and strong practicability.

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  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Telephone Function (AREA)
  • Interconnected Communication Systems, Intercoms, And Interphones (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

本发明涉及一种手机主板和手机,手机主板包括主板体和设置在主板体上的控制器模块、数模对讲模块、指纹模块,所述数模对讲模块、所述指纹模块连接到所述控制器模块;所述控制器模块包括控制芯片,所述控制芯片分别与所述数模对讲模块、所述指纹模块连接,用于控制所述数模对讲模块和所述指纹模块。本发明还涉及一种具有对讲功能的手机,包括手机壳体、设于手机壳体上的手机屏幕和安装于手机壳体内的手机主板,手机壳体上设有指纹采集区域,本发明采用数模对讲芯片进行对讲通讯,通讯范围远,信号稳定、语音通话质量高,通话成本低。本发明还具有指纹识别功能、红外遥控功能、无线充电功能、近距离无线通讯功能,功能多,实用性强。

Description

说明书 发明名称:一种手机主板和具有对讲功能的手机 技术领域
[0001] 本发明涉及手机制造技术领域, 具体涉及一种手机主板和具有对讲功能的手机
背景技术
[0002] 手机作为一种通讯设备, 已经广泛应用到人们生活中, 人们除了使用手机进行 通话, 还使用手机观看视频、 拍照和摄像。
[0003] 目前手机采用的通话方式大多是电话通讯, 手机主板集成的功能也只能进行电 话通讯。 现有手机主板发送接收的信号很容易受到周围环境的影响, 信号会波 动大, 不稳定, 对通话质量会造成很大影响。 使用手机进行电话通讯吋需要在 手机主板上插入手机卡才能使用, 并且需要向运营商缴费, 长吋间通话会造成 很高的费用, 通话成本高。
技术问题
[0004] 有鉴于此, 有必要提供一种手机主板和具有对讲功能的手机, 既能在复杂环境 保持较高的通讯信号强度, 又能在不插入手机卡的情况下进行高质量语音通讯
问题的解决方案
技术解决方案
[0005] 一种手机主板, 包括主板体和设置在主板体上的控制器模块、 数模对讲模块、 指纹模块, 所述数模对讲模块、 所述指纹模块连接到所述控制器模块; 所述控 制器模块包括控制芯片, 所述控制芯片分别与所述数模对讲模块、 所述指纹模 块连接, 用于控制所述数模对讲模块和所述指纹模块; 所述数模对讲模块用于 与其他具有对讲功能的设备进行语音通讯; 所述指纹模块用于指纹采集与匹配
[0006] 进一步地, 所述手机主板还包括红外遥控模块、 无线充电模块、 NFC芯片、 存 储器、 手机电池, 所述无线充电模块、 所述 NFC芯片连接到所述控制器模块, 所 述红外遥控模块、 所述存储器、 所述手机电池连接到所述控制器模块并集成安 装在主板体上。
[0007] 进一步地, 所述数模对讲模块包括数模对讲芯片、 天线、 话筒、 扬声器, 所述 天线、 所述话筒、 所述扬声器连接到所述数模对讲芯片, 所述数模对讲芯片与 所述控制芯片连接。
[0008] 进一步地, 所述指纹模块包括指纹处理芯片、 指纹采集器, 所述指纹采集器、 所述指纹处理芯片、 所述控制芯片依次连接。
[0009] 进一步地, 所述红外遥控模块包括遥控芯片、 红外收发电路, 所述红外收发电 路、 所述遥控芯片、 所述控制芯片依次连接。
[0010] 进一步地, 所述手机主板还包括手机卡插槽、 通讯模块, 所述手机卡插槽、 所 述通讯模块安装在所述主板体上, 所述手机卡插槽、 所述通讯模块、 所述控制 芯片依次连接。
[0011] 一种具有对讲功能的手机, 包括手机壳体、 设于手机壳体上的手机屏幕和安装 于手机壳体内的手机主板, 所述手机屏幕与所述手机主板的主板体连接。
[0012] 进一步地, 所述手机壳体上设有指纹采集区域, 所述指纹采集区域用于接触式 读取指纹信息。
[0013] 进一步地, 所述手机壳体内表面设有 FPC模块, 所述手机主板还包括线圈, 所 述线圈分别与所述无线充电模块、 所述 NFC芯片连接, 所述无线充电模块、 所述 NFC芯片和所述线圈封装在所述 FPC模块中并通过所述 FPC模块粘贴在所述手机 壳体内表面。
[0014] 进一步地, 所述 FPC模块包括 FPC板、 金手指、 顺络铁氧体、 非晶体、 补强钢 片, 所述 FPC板具有 FPC第一表面、 FPC第二表面、 SMT区域、 线圈连接区域, 所述线圈连接区域镀金; 所述补强钢片、 所述顺络铁氧体、 所述金手指、 所述 线圈连接区域、 所述非晶体设在所述 FPC第一表面上; 所述 SMT区域设在所述 FP C第二表面上; 所述无线充电模块和所述 NFC芯片设在 SMT区域内。
发明的有益效果
有益效果
[0015] 上述手机及其主板中, 数模对讲模块具有语音对讲通话的功能, 不插入手机卡 也能进行对讲通讯, 通讯范围远, 信号稳定、 语音通话质量高, 并且不需要向 运营商缴费, 通话成本低; 插入手机卡后能打电话, 具备一般通话手机的功能 , 在不同的场合选择不同的通话方式, 灵活多变。 上述手机主板还集成了指纹 模块、 红外遥控模块、 无线充电模块、 NFC芯片, 同吋具有指纹识别功能、 红外 遥控功能、 无线充电功能、 近距离无线通讯功能, 功能多, 实用性强。
对附图的简要说明
附图说明
[0016] 图 1是本发明实施例的手机主板的组成框图示意图。
[0017] 图 2是本发明实施例的手机主板的 FPC模块正面结构示意图。
[0018] 图 3是本发明实施例的手机主板的 FPC模块侧面结构示意图。
[0019] 图 4是本发明实施例的具有对讲功能的手机的整体结构示意图。
[0020] 图 5是本发明实施例的具有对讲功能的手机的背面结构示意图。
本发明的实施方式
[0021] 以下将结合具体实施例和附图对本发明进行详细说明。
[0022] 请参阅图 1~图5, 示出本发明实施例的一种手机主板和具有对讲功能的手机, 手机主板 100包括主板体 101和设置在主板体 101上的控制器模块 102、 数模对讲 模块 103、 指纹模块 104, 数模对讲模块 103、 指纹模块 104连接到控制器模块 102 ; 控制器模块 102包括控制芯片, 控制芯片分别与数模对讲模块 103和指纹模块 1 04连接, 用于控制数模对讲模块 103和指纹模块 104, 进一步地, 控制芯片用于 向数模对讲模块 103、 指纹模块 104下达操作指令并处理数模对讲模块 103、 指纹 模块 104反馈的信息; 数模对讲模块 103用于与其他具有对讲功能的设备进行语 音通讯; 指纹模块 104用于指纹采集与匹配。 进一步地, 数模对讲模块 103包括 数模对讲芯片、 天线、 话筒、 扬声器, 天线、 话筒、 扬声器连接到数模对讲芯 片, 并且数模对讲芯片与控制芯片连接。
[0023] 作为本发明一实施例, 控制芯片优选采用 MT6735主芯片, 其他实现该功能的 芯片也可选用。 控制芯片首先向数模对讲芯片下达对讲请求, 数模对讲芯片通 过天线向其他具有对讲功能的设备发送对讲请求, 当其他具有对讲功能的设备 同意上述对讲请求后会发出同意对讲信号, 数模对讲芯片将天线接收的上述同 意对讲信号反馈至控制芯片, 上述手机主板正式与其他具有对讲功能的设备建 立语音对讲通讯, 并通过数模对讲模块 103与其他具有对讲功能的设备进行语音 对讲。
[0024] 作为本发明一实施例, 在进行对讲语音发送吋, 话筒首先采集语音信息并将语 音信息传送至数模对讲芯片, 数模对讲芯片将上述语音信息处理后通过天线发 送至其他具有对讲功能的设备; 在进行对讲语音接收吋, 天线接收其他具有对 讲功能的设备发送过来的交流语音信息, 并将上述交流语音信息传送至数模对 讲芯片, 数模对讲芯片将对上述交流语音信息进行处理后通过扬声器播放出来 。 上述其他具有对讲功能的设备包括具有对讲功能的手机、 对讲机。
[0025] 见图 1所示, 上述手机主板 100包括红外遥控模块 108、 无线充电模块 109、 NFC 芯片 110、 存储器 112, 控制器模块 102分别与无线充电模块 109、 NFC芯片 110连 接, 指纹模块 104、 红外遥控模块 108、 无线充电模块 109和存储器 112连接到控 制器模块 102并集成安装在主板体 101上。 进一步地, 指纹模块 104包括指纹处理 芯片、 指纹采集器, 指纹采集器、 指纹处理芯片、 控制器模块 102的控制芯片依 次连接; 红外遥控模块 108包括遥控芯片、 红外收发电路, 红外收发电路、 遥控 芯片、 控制器模块 102的控制芯片依次连接。
[0026] 作为本发明一实施例, 控制器模块 102的控制芯片向指纹模块 104发出存储或匹 配操作指令, 指纹模块 104的指纹采集器对指纹信息进行采样并传送至指纹处理 芯片, 指纹处理芯片再根据控制芯片的操作指令对上述指纹信息执行指纹存储 或指纹匹配动作。
[0027] 作为本发明一实施例, 控制器模块 102的控制芯片向红外遥控模块 108的遥控芯 片发送遥控指令, 遥控芯片根据遥控指令生成相应的红外遥控信号, 并通过红 外收发电路将红外遥控信号发送到对应的被遥控红外设备中。
[0028] 图 1中, 上述手机主板还包括线圈 110、 手机电池 105, 线圈 110分别与无线充电 模块 109、 NFC芯片 110连接, 手机电池 105安装在主板体 101上。 线圈 110、 NFC 芯片 110、 控制器模块 102的控制芯片、 存储器 112组成近距离无线通讯组件, 使 上述手机主板具有近距离无线通讯功能; 线圈 110、 无线充电模块 109、 控制芯 片、 手机电池 105组成无线充电回路, 使上述手机主板具有无线充电功能。
[0029] 作为本发明一实施例, 控制器模块 102的控制芯片向 NFC芯片 110下达数据交换 指令, NFC芯片 110通过控制器模块 102访问存储器 112内部的数据, 并将存储器 1
12内部的数据通过线圈 110与外界 NFC设备进行数据交换。
[0030] 作为本发明一实施例, 手机电池 105在电量低吋向控制器模块 102发送低电量报 警信息, 控制器模块 102的控制芯片向无线充电模块 109下达充电指令, 无线充 电模块 109通过线圈 110搜索并接收外界无线充电器发出的无线充电信号, 并将 充电信号转变为适合手机电池 105充电的充电电流, 上述充电电流通过控制器模 块 102输入手机电池 105, 对其进行充电。
[0031] 图 1中, 上述手机主板 100包括手机卡插槽 107、 通讯模块 106, 手机卡插槽 107
、 通讯模块 106安装在主板体 101上, 手机卡插槽 107、 通讯模块 106连接到控制 器模块 102的控制芯片。
[0032] 作为本发明一实施例, 在电话信号好、 通话距离超过数模对讲模块 103的通讯 范围情况下, 在手机卡插槽 107中插入手机卡后, 上述手机主板 100通过手机卡
、 通讯模块 106进行电话通讯; 在电话信号不稳定、 通话距离在数模对讲模块 10
3的通讯范围吋, 使用数模对讲模块 103进行对讲通话, 不需要花费, 通话成本 低, 并且通话质量好。
[0033] 图 4、 图 5中, 上述具有对讲功能的手机 300, 包括手机壳体 301、 设于手机壳体 301上的手机屏幕 302和安装于手机壳体 301内的手机主板 100, 手机屏幕 302与手 机主板 100的主板体 101连接。 进一步地, 手机壳体 301上设有指纹采集区域 303 , 指纹采集区域 303用于接触式读取指纹信息。
[0034] 作为本发明一实施例, 主板体 101安装在手机壳体 301中, 线圈 110与手机主板 1 00连接并粘贴在手机壳体 301的内表面上, 手机屏幕 302与主板体 101连接以组成 具有对讲功能的手机 300, 用户通过具有对讲功能的手机 300与其他具有对讲功 能的设备进行对讲语音通讯。
[0035] 作为本发明一实施例, 手机屏幕 302上设有指纹采集区域 303, 指纹模块 104的 指纹采集器连接到指纹采集区域 303, 当手指放在指纹采集区域 303上吋, 指纹 采集器采集指纹信息并传送至指纹模块 104的指纹处理芯片, 指纹处理芯片根据 控制器模块 102的控制芯片的存储指令或匹配指令将采集的指纹信息进行存储或 将采集的信息与已存储指纹信息进行匹配。 上述功能可用于指纹解锁, 使对讲 手机具有指纹解锁功能。
[0036] 图 1、 图 2、 图 4中, 手机壳体 301内表面设有 FPC模块 200, 手机主板 100还包括 线圈 110, 线圈 110分别与无线充电模块 109、 NFC芯片 11连接, 无线充电模块 109 、 NFC芯片 111和线圈 110封装在 FPC模块 200中并通过 FPC模块 200粘贴在手机壳 体 301内表面。
[0037] 图 2、 图 3中, FPC模块 200包括 FPC板 201、 金手指 206、 顺络铁氧体 204、 非晶 体 205、 补强钢片 202, FPC板 201具有 FPC第一表面 207、 FPC第二表面 208、 SMT 区域 209、 线圈连接区域 203, 线圈连接区域 203镀金; 补强钢片 202、 顺络铁氧 体 204、 金手指 206、 线圈连接区域 203、 非晶体 205设在 FPC第一表面 207上; SM T区域 209设在 FPC第二表面 208上; 无线充电模块 109和 NFC芯片 110设在 SMT区 域 209内并与控制器模块 102连接。
[0038] 作为本发明一实施例, 无线充电模块 109、 NFC芯片 110封装在 FPC第二表面 208 的 SMT区域 209内, 线圈 110与线圈连接区域 203连接, 金手指 206与控制器模块 1 02连接, 金手指 206、 线圈连接区域 203通过不同的电路连接到 FPC板 201, 无线 充电模块 109、 NFC芯片 110分别通过 FPC板 201内部电路连接到金手指 206和线圈 连接区域 203, 并通过金手指 206连接到控制器模块 102、 通过线圈连接区域 203 连接到线圈 11, 无线充电模块 109与 NFC芯片 110均与线圈 110连接, 但是通过 FP C板 201不同的内部电路连接到控制器模块 102。 优选的, 在 SMT区域 209的对应 位置安装补强钢片 202, 防止 SMT区域 209弯折, 损坏 SMT区域 209内的电子元器 件。 优选的, 在线圈 110外表面设置顺络铁氧体 204, 增强线圈 110的抗金属屏蔽 干扰, 提高感应信号和接收的灵敏度, 最后通过非晶体 205将线圈 110、 顺络铁 氧体 204固定在 FPC第一表面 207上。
[0039] 上述手机主板中, 数模对讲模块 103具有语音对讲通话的功能, 不插入手机卡 也能进行对讲通讯, 通讯范围远, 信号稳定、 语音通话质量高, 并且不需要向 运营商缴费, 通话成本低; 插入手机卡后能打电话, 具备一般通话手机的功能 , 在不同的场合选择不同的通话方式, 灵活多变。 上述手机主板还集成了指纹 模块 104、 红外遥控模块 108、 无线充电模块 109、 NFC芯片 110, 同吋具有指纹识 别功能、 红外遥控功能、 无线充电功能、 近距离无线通讯功能, 功能多, 实用 性强。
需要说明的是, 本发明并不局限于上述实施方式, 根据本发明的创造精神, 本 领域技术人员还可以做出其他变化, 这些依据本发明的创造精神所做的变化, 都应包含在本发明所要求保护的范围之内。

Claims

权利要求书
一种手机主板, 其特征在于, 包括主板体和设置在主板体上的控制器 模块、 数模对讲模块、 指纹模块, 所述数模对讲模块、 所述指纹模块 连接到所述控制器模块; 所述控制器模块包括控制芯片, 所述控制芯 片分别与所述数模对讲模块、 所述指纹模块连接, 用于控制所述数模 对讲模块和所述指纹模块; 所述数模对讲模块用于与其他具有对讲功 能的设备进行语音通讯; 所述指纹模块用于指纹采集与匹配。
如权利要求 1所述的手机主板, 其特征在于, 所述手机主板还包括红 外遥控模块、 无线充电模块、 NFC芯片、 存储器、 手机电池, 所述无 线充电模块、 所述 NFC芯片连接到所述控制器模块, 所述红外遥控模 块、 所述存储器、 所述手机电池连接到所述控制器模块并集成安装在 主板体上。
如权利要求 1所述的手机主板, 其特征在于, 所述数模对讲模块包括 数模对讲芯片、 天线、 话筒、 扬声器, 所述天线、 所述话筒、 所述扬 声器连接到所述数模对讲芯片, 所述数模对讲芯片与所述控制芯片连
[权利要求 4] 如权利要求 2所述的手机主板, 其特征在于, 所述指纹模块包括指纹 处理芯片、 指纹采集器, 所述指纹采集器、 所述指纹处理芯片、 所述 控制芯片依次连接。
[权利要求 5] 如权利要求 2所述的手机主板, 其特征在于, 所述红外遥控模块包括 遥控芯片、 红外收发电路, 所述红外收发电路、 所述遥控芯片、 所述 控制芯片依次连接。
[权利要求 6] 如权利要求 1所述的手机主板, 其特征在于, 所述手机主板还包括手 机卡插槽、 通讯模块, 所述手机卡插槽、 所述通讯模块安装在所述主 板体上, 所述手机卡插槽、 所述通讯模块、 所述控制芯片依次连接。
[权利要求 7] —种具有对讲功能的手机, 包括手机壳体、 设于手机壳体上的手机屏 幕和安装于手机壳体内的手机主板, 其特征在于, 所述手机主板为如 权利要求 1-7任一项所述的手机主板, 所述手机屏幕与所述手机主板 的主板体连接。
[权利要求 8] 如权利要求 7所述的具有对讲功能的手机, 其特征在于, 所述手机壳 体上设有指纹采集区域, 所述指纹采集区域用于接触式读取指纹信息
[权利要求 9] 如权利要求 7所述的具有对讲功能的手机, 其特征在于, 所述手机壳 体内表面设有 FPC模块, 所述手机主板还包括线圈, 所述线圈分别与 所述无线充电模块、 所述 NFC芯片连接, 所述无线充电模块、 所述 N FC芯片和所述线圈封装在所述 FPC模块中并通过所述 FPC模块粘贴在 所述手机壳体内表面。
[权利要求 10] 如权利要求 9所述的具有对讲功能的手机, 其特征在于, 所述 FPC模 块包括 FPC板、 金手指、 顺络铁氧体、 非晶体、 补强钢片, 所述 FPC 板具有 FPC第一表面、 FPC第二表面、 SMT区域、 线圈连接区域, 所 述线圈连接区域镀金; 所述补强钢片、 所述顺络铁氧体、 所述金手指 、 所述线圈连接区域、 所述非晶体设在所述 FPC第一表面上; 所述 S MT区域设在所述 FPC第二表面上; 所述无线充电模块和所述 NFC芯 片设在 SMT区域内。
PCT/CN2016/087161 2016-04-18 2016-06-24 一种手机主板和具有对讲功能的手机 WO2017181524A1 (zh)

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