WO2011137612A1 - 一种天线装置及双模智能终端 - Google Patents

一种天线装置及双模智能终端 Download PDF

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Publication number
WO2011137612A1
WO2011137612A1 PCT/CN2010/076160 CN2010076160W WO2011137612A1 WO 2011137612 A1 WO2011137612 A1 WO 2011137612A1 CN 2010076160 W CN2010076160 W CN 2010076160W WO 2011137612 A1 WO2011137612 A1 WO 2011137612A1
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Prior art keywords
gps
dual
antenna
signal
module
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PCT/CN2010/076160
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English (en)
French (fr)
Inventor
雷斌
赵晨飞
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中兴通讯股份有限公司
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Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Priority to US13/516,922 priority Critical patent/US20120258771A1/en
Priority to EP10850981.1A priority patent/EP2482611A4/en
Publication of WO2011137612A1 publication Critical patent/WO2011137612A1/zh

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/12Supports; Mounting means
    • H01Q1/22Supports; Mounting means by structural association with other equipment or articles
    • H01Q1/24Supports; Mounting means by structural association with other equipment or articles with receiving set
    • H01Q1/241Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM
    • H01Q1/242Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM specially adapted for hand-held use
    • H01Q1/243Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM specially adapted for hand-held use with built-in antennas
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q21/00Antenna arrays or systems
    • H01Q21/28Combinations of substantially independent non-interacting antenna units or systems
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01SRADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
    • G01S19/00Satellite radio beacon positioning systems; Determining position, velocity or attitude using signals transmitted by such systems
    • G01S19/01Satellite radio beacon positioning systems transmitting time-stamped messages, e.g. GPS [Global Positioning System], GLONASS [Global Orbiting Navigation Satellite System] or GALILEO
    • G01S19/13Receivers
    • G01S19/35Constructional details or hardware or software details of the signal processing chain
    • G01S19/36Constructional details or hardware or software details of the signal processing chain relating to the receiver frond end
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W64/00Locating users or terminals or network equipment for network management purposes, e.g. mobility management

Definitions

  • the present invention relates to Code Division Multiple Access (CDMA) 2000 lx Packet-Data Optimized (EV-DO) and Global System for Mobile Communications (GSM) dual-mode terminals.
  • CDMA Code Division Multiple Access
  • EV-DO Packet-Data Optimized
  • GSM Global System for Mobile Communications
  • the third generation of mobile communication technology is a cellular mobile communication technology that supports high-speed data transmission.
  • mobile terminals using 3G technology also provide broadband wireless data communication functions.
  • 3GGP 3rd Generation Partnership Project
  • 3GPP2 have recognized three sets of 3G technical standards, namely, Wideband Code Devision Multiple Access (WCDMA) in Europe and CDMA2000 lx in the United States. EV-DO and Time Devision-Synchronous Code Devision Multiple Access (TD-SCDMA) in China.
  • WCDMA Wideband Code Devision Multiple Access
  • TD-SCDMA Time Devision-Synchronous Code Devision Multiple Access
  • the dual-mode mobile terminals here generally refer to a dual-mode mobile terminal in 3G and GSM systems, such as dual-mode WCDMA and GSM systems.
  • Mobile terminal With the rapid development of CDMA2000 lx EV-DO, new demands have emerged for CDMA2000 lx EV-DO and GSM dual-mode mobile terminals. Since the focus of 3G applications lies in broadband wireless data communication, mobile terminals need to have the ability to access the Internet wirelessly. One of the important access methods is Wireless Fidelity (Wi-Fi).
  • Wi-Fi Wireless Fidelity
  • mobile terminals especially smart terminals, usually need to have a Global Position System (GPS) function and a Bluetooth (BT) interface to ensure the convenience of wireless transmission.
  • GPS Global Position System
  • BT Bluetooth
  • the dual-mode intelligent terminal needs to integrate a plurality of wireless communication units, and each wireless communication unit needs an antenna with a corresponding frequency band, how to insert these antennas in a small space of the dual-mode intelligent terminal and reduce mutual interference between the communication unit antennas
  • the dual-mode intelligent terminal of WCDMA and GSM is taken as an example, and the GSM and WCDMA shared antennas are generally used, and the dual mode of the CDMA2000 lx EV-DO system and the GSM system is adopted.
  • CDMA2000 lx EV-DO and GSM shared antenna For mobile terminals, there is no processing chip for CDMA2000 lx EV-DO and GSM shared antenna.
  • this new dual-mode intelligent terminal there is no corresponding antenna structure solution on the market. Summary of the invention
  • the main object of the present invention is to provide an antenna device and a dual-mode intelligent terminal suitable for use in the field of dual-mode intelligent terminals, which reduce the crosstalk between antennas while rationally arranging the antennas.
  • the invention provides an antenna device, comprising:
  • CELL/Global Positioning System GPS antenna located on the short side of the dual-mode intelligent terminal board, receives or transmits packet data service to optimize the EV-DO signal, receives the GPS signal, and sends the received signal to the CELL/GPS dual-frequency device;
  • the CELL/GPS dual frequency transmitter transmits the received EV-DO signal and the GPS signal to the EV-DO module and the GPS module respectively;
  • Global mobile communication system GSM antenna located on the other short side of the dual-mode intelligent terminal board, connected to the GSM module to receive or transmit GSM signals;
  • the wireless broadband WIFI/Bluetooth BT antenna is located on the long side of the dual-mode intelligent terminal board and is connected to the WIFI module and the BT module to receive or transmit WIFI signals or BT signals.
  • the CELL/GPS dual frequency device is specifically configured to receive a mixed signal of the EV-DO and the GPS transmitted by the CELL/GPS antenna, and have two filters built in, one filter from the hybrid signal.
  • the EV-DO signal is filtered out, and the obtained GPS signal is sent to the GPS module; a filter filters the GPS signal from the mixed signal, and sends the obtained EV-DO signal to the EV-DO module.
  • the WIFI/BT antenna is located in the middle of the long side of the dual-mode intelligent terminal board, and is far away from the CELL/GPS antenna and the GSM antenna.
  • the present invention further provides a dual-mode intelligent terminal, comprising: a display unit, an input unit, and a main board, further comprising: an antenna device, the antenna device specifically comprising:
  • the CELL/GPS antenna is located on the short side of the dual-mode intelligent terminal board, receives or transmits the EV-DO signal, receives the GPS signal, and sends the received signal to the CELL/GPS dual-frequency device;
  • the CELL/GPS dual-frequency transmitter transmits the received EV-DO signal and the GPS signal to the EV-DO module and the GPS module of the main board respectively;
  • the GSM antenna is located on the other short side of the dual-mode intelligent terminal board and is connected to the GSM module to receive or transmit the GSM signal.
  • the WIFI/BT antenna is located on the long side of the dual-mode intelligent terminal board. It is connected to the WIFI module of the main board and the BT module to receive or send WIFI signals or BT signals.
  • the CELL/GPS antenna, the GSM antenna and the WIFI/BT antenna are respectively placed in different orientations of the dual-mode intelligent terminal, and the distance between the antennas is exhausted. It may be large, reducing the crosstalk between the antennas while properly arranging the antennas.
  • FIG. 1 is a schematic diagram of the composition of an antenna device according to the present invention.
  • FIG. 2 is a schematic diagram of the composition of a dual-mode intelligent terminal according to the present invention. detailed description
  • the basic idea of the invention is: Transceiver CELL, ie CDMA2000 1 X EV-DO signal and
  • the receiving GPS signal shares one antenna
  • the transmitting and receiving WIFI and BT signals share one antenna
  • the transmitting and receiving GSM signals use one antenna, and the distance between the antennas is appropriate, so as to avoid crosstalk between the antennas while placing the antenna.
  • the antenna device of the present invention includes: CELL/GPS antenna 101, CELL/GPS dual frequency device 102, GSM antenna 103, WIFI/ BT antenna 104, wherein the distance between the antennas is controlled to avoid signal crosstalk;
  • the CELL/GPS antenna 101 is located on the short side of the dual-mode intelligent terminal board, and is connected to the CELL/GPS dual-frequency device 102 to receive and transmit the EV-DO signal and receive the GPS signal, wherein the EV-DO signal is in the 850 MHz band, and the GPS is 1575.42MHz band;
  • the CELL/GPS dual frequency device 102 is connected to the CELL/GPS antenna 101 and the EV-DO module and the GPS module for transmitting the EV-DO signal and the GPS signal transmitted by the CELL/GPS antenna 101 to the EV-DO module and the GPS, respectively.
  • Module wherein, the EV-DO module is located on the dual-mode intelligent terminal motherboard, used for transmitting and receiving and processing EV-DO signals, providing EVDO communication function, and the GPS module is located on the dual-mode intelligent terminal motherboard for receiving GPS signals and providing GPS Features;
  • the GSM antenna 103 is located on the other short side of the dual-mode intelligent terminal board and is connected to the GSM module to receive and transmit the GSM signal.
  • the GSM signal includes four frequency bands of 850 MHz, 900 MHz, 1800 MHz and 1900 MHz; wherein, GSM The module is located on the dual-mode intelligent terminal board, used to send and receive and process GSM signals, and provides GSM communication functions;
  • the WIFI/BT antenna 104 is located on the long side of the dual-mode intelligent terminal board, and may be located on the left side of the left side or on the right side of the right side, connected to the WIFI/BT module, receiving and transmitting a WIFI signal or a BT signal, the WIFI Or the BT signal is in the 2.4 GHz band; wherein, the WIFI/BT module is located on the dual-mode intelligent terminal motherboard, used for transmitting and receiving and processing WIFI/BT signals, providing WIFI and BT functions, and the receiving and processing WIFI/BT signals include: WIFI The /BT module receives the signal and determines whether it belongs to the WIFI signal or the BT signal according to the signal protocol. According to different signals, The corresponding module is opened by its own switch. If it is a mixed signal, the WIFI module and the BT module are turned on or off periodically, so that the WIFI module and the BT module work in a time-sharing manner.
  • the CELL/GPS dual frequency device 102 is specifically configured to receive a mixed signal of the EV-DO and the GPS transmitted by the CELL/GPS antenna 101, and two filters are built in, and one filter filters out the EV-DO signal from the mixed signal, and the obtained
  • the GPS signal is sent to the GPS module; a filter filters the GPS signal from the mixed signal, and sends the obtained EV-DO signal to the EV-DO module.
  • the distance between the CELL/GPS antenna 101 and the GSM antenna 103 needs to be more than 105 mm; the WIFI/BT antenna 104 should be located at the side of the side of the dual-mode intelligent terminal board, with the possible distance from the CELL/GPS antenna 101 and The GSM antenna 103 is also at a similar distance.
  • the present invention also provides a dual mode intelligent terminal comprising a display unit 201, an input unit 202, a main board 203 and an antenna device 204:
  • the display unit 201 is connected to the main board 203 for displaying the operation result of the dual-mode intelligent terminal; the input unit 202 is connected to the main board 203 for providing an interface for user operation;
  • a motherboard 203 configured to provide a carrier for implementing hardware of the dual-mode intelligent terminal
  • the antenna device 204 is connected to the main board 203 and is configured to receive and transmit wireless signals of the dual mode intelligent terminal, including a CELL/GPS antenna, a GSM antenna, a WIFI/BT antenna, and a CELL/GPS dual frequency device.
  • the CELL/GPS antenna is located on the short side of the dual-mode intelligent terminal board. It is connected to the CELL/GPS dual-frequency transmitter to receive and transmit EV-DO signals and receive GPS signals.
  • the EV-DO signal is 850MHz frequency band and the GPS is 1575.42MHz. Frequency band
  • CELL/GPS dual frequency transmitter connected with CELL/GPS antenna and EV-DO module and GPS module, used to send the signal sent by CELL/GPS antenna 101 to EV-DO module and GPS module respectively;
  • EV-DO module It is located on the dual-mode intelligent terminal board, used to send and receive and process EV-DO signals, and provides EVDO communication function.
  • the GPS module is located on the dual-mode intelligent terminal board for receiving GPS signals and providing GPS functions.
  • the GSM antenna is located on the other short side of the dual-mode intelligent terminal board and is connected to the GSM module to receive and transmit the GSM signal.
  • the GSM signal includes four frequency bands of 850 MHz, 900 MHz, 1800 MHz and 1900 MHz; wherein, the GSM module Located on the dual-mode intelligent terminal board, it is used to send and receive and process GSM signals, and provides GSM communication functions;
  • the WIFI/BT antenna is located on the long side of the dual-mode intelligent terminal board. It can be located on the left side of the left side or on the right side of the right side. It is connected to the WIFI module and the BT module to receive and send WIFI signals or BT signals. Or the BT signal is in the 2.4 GHz band; wherein, the WIFI/BT module is located on the dual-mode intelligent terminal motherboard, used for transmitting and receiving and processing WIFI/BT signals, providing WIFI and BT functions, and the receiving and processing WIFI/BT signals include : The WIFI/BT module receives the signal and determines whether it belongs to the WIFI signal or the BT signal according to the signal protocol. According to different signals, the corresponding module is turned on by its own set switch. If it is a mixed signal, the WIFI module is turned on or off periodically. The BT module enables the WIFI module and the BT module to work in a time-sharing manner.
  • the CELL/GPS dual-frequency device is specifically used for receiving a mixed signal of EV-DO and GPS transmitted by a CELL/GPS antenna, and two filters are built in, one filter filters out the EV-DO signal from the mixed signal, and the obtained GPS is obtained.
  • the signal is sent to the GPS module; a filter filters the GPS signal from the mixed signal and sends the obtained EV-DO signal to the EV-DO module.
  • the distance between the CELL/GPS antenna and the GSM antenna needs to be above 105 mm; the WIFI/BT antenna should be located in the middle of the side of the dual-mode intelligent terminal board, as far as possible from the CELL/GPS antenna and the GSM antenna. the distance.

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Mobile Radio Communication Systems (AREA)
  • Transceivers (AREA)
  • Position Fixing By Use Of Radio Waves (AREA)

Abstract

本发明公开了一种天线装置,包括:CELL/GPS天线,位于双模智能终端主板的短侧边,接收或发送EV-DO,信号,接收GPS信号,将接收的信号发送至CELL/GPS双频器;CELL/GPS双频器,将EV-DO信号以及GPS信号分别发送至EV-DO模块以及GPS模块;GSM天线,位于双模智能终端主板另一短侧边,同GSM模块相连,接收与发射GSM信号;WIFI/BT天线,位于双模智能终端主板的长侧边,同WIFI模块以及BT模块相连,用于接收或发送WIFI信号或者BT信号。本发明还公开了一种双模智能终端,采用本发明所述的装置及双模智能终端,可以在实现放置天线的同时避免天线之间的串扰。

Description

一种天线装置及 智能终端 技术领域
本发明涉及码分多址( Code Division Multiple Access , CDMA ) 2000 lx 分组数据业务优化 ( Evolution-Data Optimized, EV-DO )与全球移动通讯系 统( Global System for Mobile Communications, GSM )双模终端领域, 特别 是指一种天线装置及双模智能终端。 背景技术
第三代移动通信技术(Third Generation, 3G )是一种支持高速数据传 输的蜂窝移动通信技术,釆用 3G技术的移动终端,除了提供语音通话功能, 还提供宽带无线数据通信功能。 目前第三代合作伙伴计划 ( 3rd Generation Partnership Project, 3GGP )及 3GPP2共承认了 3套 3G的技术标准, 分别 为欧洲的宽带码分多址 ( Wideband Code Devision Multiple Access , WCDMA ) 、 美国的 CDMA2000 lx EV-DO以及中国的时分同步码分多址 ( Time Devision-Synchronous Code Devision Multiple Access, TD-SCDMA )。
随着 3G的推广, 针对 3G的双模移动终端也逐渐开发应用, 这里的双 模移动终端一般是指 3G中的一种制式与 GSM制式的双模移动终端, 例如 WCDMA与 GSM制式的双模移动终端。 随着 CDMA2000 lx EV-DO的迅 速发展,对 CDMA2000 lx EV-DO制式与 GSM制式的双模移动终端出现了 新的需求。 由于 3G应用的重点在于宽带无线数据通信, 因此, 移动终端需 具备无线接入互联网的能力, 其中一种重要的接入的方式为无线宽带 ( Wireless Fidelity, Wi-Fi ) 。 此外, 移动终端特别是智能终端通常还需具 备全球定位***( Global Position System, GPS )功能、以及蓝牙( Bluetooth, BT )接口, 以保证无线传输的便利性。 由于双模智能终端需集成众多的无线通信单元, 并且每个无线通信单 元都需要有对应频段的天线, 如何在双模智能终端狭小的空间内置入这些 天线并降低各通信单元天线间的相互干扰, 成为首要解决的问题, 在现有 技术中, 以 WCDMA 与 GSM 的双模智能终端为例, 一般釆用 GSM 与 WCDMA共用天线的方式, 而对于 CDMA2000 lx EV-DO制式与 GSM制 式的双模移动终端,没有 CDMA2000 lx EV-DO与 GSM共用天线的处理芯 片, 对于这种全新的双模制式的智能终端, 目前市场上还没有相应的天线 结构的解决方案。 发明内容
有鉴于此, 本发明的主要目的在于提供一种适用于双模智能终端领域 的一种天线装置及双模智能终端, 在合理布局天线的同时降低天线之间的 串扰。
为达到上述目的, 本发明的技术方案是这样实现的:
本发明提供了一种天线装置, 包括:
CELL/全球定位*** GPS天线, 位于双模智能终端主板的短侧边, 接 收或发送分组数据业务优化 EV-DO信号,接收 GPS信号,将接收的信号发 送至 CELL/GPS双频器;
CELL/GPS双频器, 将接收的 EV-DO信号以及 GPS信号分别发送至 EV-DO模块以及 GPS模块;
全球移动通讯*** GSM天线, 位于双模智能终端主板另一短侧边, 同 GSM模块相连, 接收或发射 GSM信号;
无线宽带 WIFI /蓝牙 BT天线, 位于双模智能终端主板的长侧边, 同 WIFI模块以及 BT模块相连, 接收或发送 WIFI信号或者 BT信号。
上述方案中, 所述 CELL/GPS双频器具体用于, 接收 CELL/GPS天线 发送的 EV-DO和 GPS的混合信号, 内置两个滤波器,一个滤波器从混合信 号中滤除 EV-DO信号, 将获得的 GPS信号发送至 GPS模块; 一个滤波器 从混合信号中滤除 GPS信号, 将获得的 EV-DO信号发送至 EV-DO模块。
105mm以上; 所述 WIFI/BT天线位于双模智能终端主板的长侧边的中间位 置, 以距离 CELL/GPS天线与 GSM天线同样远。
本发明还提供了一种双模智能终端, 包括: 显示单元、 输入单元、 主 板, 其特征在于, 还包括: 天线装置, 所述天线装置具体包括:
CELL/ GPS天线,位于双模智能终端主板的短侧边,接收或发送 EV-DO 信号, 接收 GPS信号, 将接收的信号发送至 CELL/GPS双频器;
CELL/GPS双频器,将接收的 EV-DO信号以及 GPS信号分别发送至主 板的 EV-DO模块以及 GPS模块;
GSM天线, 位于双模智能终端主板另一短侧边, 同 GSM模块相连, 接收或发射 GSM信号;
WIFI/BT天线, 位于双模智能终端主板的长侧边, 同主板的 WIFI模块 以及 BT模块相连, 接收或发送 WIFI信号或者 BT信号。
由此可见,釆用本发明所述的双模智能终端的天线装置,将 CELL/GPS 天线、 GSM天线以及 WIFI/BT天线分别放置在双模智能终端的不同方位, 同时天线之间的距离尽可能大, 在合理布局天线的同时降低天线之间的串 扰。 附图说明
图 1为本发明实现天线装置的组成示意图;
图 2为本发明实现双模智能终端的组成示意图。 具体实施方式
本发明的基本思想是: 收发 CELL, 即 CDMA2000 1 X EV-DO信号和 接收 GPS信号共用一个天线、 收发 WIFI和 BT信号共用一个天线, 收发 GSM信号使用一个天线, 且天线之间的距离要适当, 以实现在放置天线的 同时避免天线之间的串扰。
下面通过附图与具体实施例来对本发明进行详细说明, 如图 1 所示, 本发明所述的天线装置包括: CELL/GPS天线 101 、 CELL/GPS双频器 102、 GSM天线 103、 WIFI/BT天线 104, 其中, 控制天线之间的距离以避免信 号串扰;
CELL/GPS天线 101 , 位于双模智能终端主板的短侧边, 与 CELL/GPS 双频器 102相连, 接收与发送 EV-DO信号, 接收 GPS信号, 其中 EV-DO 信号为 850MHz频段, GPS为 1575.42MHz频段;
CELL/GPS双频器 102,与 CELL/GPS天线 101以及 EV-DO模块和 GPS 模块相连, 用于将 CELL/GPS天线 101发送的 EV-DO信号以及 GPS信号 分别发送至 EV-DO模块以及 GPS模块; 其中, EV-DO模块位于双模智能 终端主板上, 用于收发并处理 EV-DO信号, 提供 EVDO通信功能, GPS 模块位于双模智能终端主板上, 用于接收 GPS信号, 并提供 GPS功能;
GSM天线 103 ,位于双模智能终端主板另一短侧边,同 GSM模块相连, 接收与发射 GSM信号,所述 GSM信号包括 850 MHz、 900 MHz、 1800 MHz 以及 1900 MHz四个频段; 其中, GSM模块位于双模智能终端主板上, 用 于收发并处理 GSM信号, 并提供 GSM通信功能;
WIFI/BT天线 104, 位于双模智能终端主板的长侧边, 可以位于左部长 侧边也可以位于右部长侧边, 同 WIFI/BT模块相连,接收与发送 WIFI信号 或者 BT信号, 所述 WIFI或者 BT信号均为 2.4GHz频段; 其中, WIFI/BT 模块位于双模智能终端主板, 用于收发并处理 WIFI/BT信号, 提供 WIFI 以及 BT功能, 所述收发并处理 WIFI/BT信号包括: WIFI/BT模块接收信 号, 根据信号协议确定是属于 WIFI信号还是 BT信号, 根据不同的信号, 通过其自身设置的开关, 打开相应的模块, 若为混合信号, 则定时开启或 关闭 WIFI模块以及 BT模块, 使 WIFI模块以及 BT模块分时工作。
CELL/GPS 双频器 102具体用于, 接收 CELL/GPS 天线 101 发送的 EV-DO和 GPS的混合信号, 内置两个滤波器, 一个滤波器从混合信号中滤 除 EV-DO信号, 将获得的 GPS信号发送至 GPS模块; 一个滤波器从混合 信号中滤除 GPS信号, 将获得的 EV-DO信号发送至 EV-DO模块。
进一步的, CELL/GPS天线 101与 GSM天线 103之间的距离需要在 105mm以上; WIFI/BT天线 104应位于双模智能终端主板的侧部中间位置, 以尽可能的距离 CELL/GPS天线 101与 GSM天线 103同样远的距离。
本发明还提供了一种双模智能终端, 该双模智能终端包括显示单元 201 , 输入单元 202, 主板 203以及天线装置 204:
显示单元 201 , 与主板 203相连, 用于显示双模智能终端的操作结果; 输入单元 202 , 与主板 203相连, 用于提供用户操作的界面;
主板 203 , 用于提供实现双模智能终端运行的硬件的载体;
天线装置 204, 与主板 203相连, 用于接收及发送双模智能终端的无线 信号, 包括 CELL/GPS天线、 GSM天线、 WIFI/BT天线以及 CELL/GPS双 频器。
CELL/GPS天线, 位于双模智能终端主板的短侧边, 与 CELL/GPS双 频器相连, 接收与发送 EV-DO信号, 接收 GPS信号, 其中 EV-DO信号为 850MHz频段, GPS为 1575.42MHz频段;
CELL/GPS双频器,与 CELL/GPS天线以及 EV-DO模块和 GPS模块相 连, 用于将 CELL/GPS天线 101发送的信号分别发送至 EV-DO模块以及 GPS模块; 其中, EV-DO模块位于双模智能终端主板上, 用于收发并处理 EV-DO信号, 提供 EVDO通信功能, GPS模块位于双模智能终端主板上, 用于接收 GPS信号, 并提供 GPS功能; GSM天线, 位于双模智能终端主板另一短侧边, 同 GSM模块相连, 接收与发射 GSM信号,所述 GSM信号包括 850 MHz、 900 MHz、 1800 MHz 以及 1900 MHz四个频段; 其中, GSM模块位于双模智能终端主板上, 用 于收发并处理 GSM信号, 并提供 GSM通信功能;
WIFI/BT 天线, 位于双模智能终端主板的长侧边, 可以位于左部长侧 边也可以位于右部长侧边, 同 WIFI模块以及 BT模块相连, 接收与发送 WIFI信号或者 BT信号, 所述 WIFI或者 BT信号均为 2.4GHz频段; 其中, 其中, WIFI/BT模块位于双模智能终端主板, 用于收发并处理 WIFI/BT信 号,提供 WIFI以及 BT功能,所述收发并处理 WIFI/BT信号包括: WIFI/BT 模块接收信号 , 根据信号协议确定是属于 WIFI信号还是 BT信号 , 根据不 同的信号, 通过其自身设置的开关, 打开相应的模块, 若为混合信号, 则 定时开启或关闭 WIFI模块以及 BT模块,使 WIFI模块以及 BT模块分时工 作。
CELL/GPS双频器具体用于, 接收 CELL/GPS天线发送的 EV-DO和 GPS的混合信号, 内置两个滤波器, 一个滤波器从混合信号中滤除 EV-DO 信号, 将获得的 GPS信号发送至 GPS模块; 一个滤波器从混合信号中滤除 GPS信号, 将获得的 EV-DO信号发送至 EV-DO模块。
进一步的, CELL/GPS天线与 GSM天线之间的距离需要在 105mm以 上; WIFI/BT 天线应位于双模智能终端主板的侧部中间位置, 以尽可能的 距离 CELL/GPS天线与 GSM天线同样远的距离。
以上所述, 仅为本发明的较佳实施例而已, 并非用于限定本发明的保 护范围, 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

权利要求书
1、 一种天线装置, 其特征在于, 该装置包括:
CELL及全球定位*** GPS天线, 位于双模智能终端主板的短侧边, 接收或发送分组数据业务优化 EV-DO信号,接收 GPS信号,将接收的信号 发送至 CELL/GPS双频器;
CELL/GPS双频器, 将接收的 EV-DO信号以及 GPS信号分别发送至 EV-DO模块以及 GPS模块;
全球移动通讯*** GSM天线, 位于双模智能终端主板另一短侧边, 同 GSM模块相连, 接收或发射 GSM信号;
无线宽带 WIFI /蓝牙 BT天线, 位于双模智能终端主板的长侧边, 同 WIFI模块以及 BT模块相连, 接收或发送 WIFI信号或者 BT信号。
2、 根据权利要求 1所述的装置, 其特征在于,
所述 CELL/GPS双频器具体用于, 接收 CELL/GPS天线发送的 EV-DO 和 GPS的混合信号,内置两个滤波器,一个滤波器从混合信号中滤除 EV-DO 信号, 将获得的 GPS信号发送至 GPS模块; 一个滤波器从混合信号中滤除 GPS信号, 将获得的 EV-DO信号发送至 EV-DO模块。
3、 根据权利要求 2所述的装置, 其特征在于, 所述 WIFI/BT天线位于双模智能终端主板的长侧边的中间位置, 以距 离 CELL/GPS天线与 GSM天线同样远。
4、 一种双模智能终端, 包括: 显示单元、 输入单元、 主板, 其特征在 于, 还包括: 天线装置, 所述天线装置具体包括:
CELL/ GPS天线,位于双模智能终端主板的短侧边,接收或发送 EV-DO 信号, 接收 GPS信号, 将接收的信号发送至 CELL/GPS双频器;
CELL/GPS双频器,将接收的 EV-DO信号以及 GPS信号分别发送至主 板的 EV-DO模块以及 GPS模块;
GSM天线, 位于双模智能终端主板另一短侧边, 同 GSM模块相连, 接收或发射 GSM信号;
WIFI/BT天线, 位于双模智能终端主板的长侧边, 同主板的 WIFI模块 以及 BT模块相连, 接收或发送 WIFI信号或者 BT信号。
5、 根据权利要求 4所述的双模智能终端, 其特征在于,
所述 CELL/GPS双频器具体用于, 接收 CELL/GPS天线发送的 EV-DO 和 GPS的混合信号,内置两个滤波器,一个滤波器从混合信号中滤除 EV-DO 信号, 将获得的 GPS信号发送至 GPS模块; 一个滤波器从混合信号中滤除 GPS信号, 将获得的 EV-DO信号发送至 EV-DO模块。
6、 根据权利要求 5所述的双模智能终端, 其特征在于,
所述 CELL/GPS天线与 GSM天线之间的距离需要在 105mm以上; 所述 WIFI/BT天线位于双模智能终端主板的长侧边的中间位置, 以距 离 CELL/GPS天线与 GSM天线同样远。
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Families Citing this family (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8570993B2 (en) 2010-05-20 2013-10-29 At&T Mobility Ii Llc Wi-Fi intelligent selection engine
US9059802B2 (en) 2011-11-09 2015-06-16 At&T Mobility Ii Llc Received signal strength indicator snapshot analysis
US8897407B2 (en) 2011-12-04 2014-11-25 Hemisphere Gnss Inc. RF (including GNSS) signal interference mitigation system and method
CN102684727B (zh) * 2011-12-20 2014-07-02 中兴通讯股份有限公司 一种天线复用方法及多模移动终端
CN103108414B (zh) * 2013-01-07 2016-01-13 华为终端有限公司 一种移动终端以及移动终端的信号处理方法
CN104284400B (zh) * 2013-07-01 2018-06-01 联想(北京)有限公司 信息处理方法及电子设备
CN104617972A (zh) * 2014-12-30 2015-05-13 宇龙计算机通信科技(深圳)有限公司 传输信号的方法、装置及终端
CN105872415A (zh) * 2015-12-14 2016-08-17 乐视致新电子科技(天津)有限公司 一种分体式电视及其主机单元
US10200936B2 (en) 2016-11-30 2019-02-05 At&T Intellectual Property I, L.P. Public/private indicator based access point connection permission
CN106792477A (zh) * 2017-01-11 2017-05-31 广东小天才科技有限公司 一种移动终端的蓝牙定位方法及装置
US11569569B2 (en) * 2017-10-06 2023-01-31 Yanmar Co., Ltd. Antenna unit for work vehicle and work vehicle
CN108737960A (zh) * 2018-05-28 2018-11-02 深圳优美创新科技有限公司 基于多重采样的自学习定位方法、定位***及电子设备
CN109193183A (zh) * 2018-09-11 2019-01-11 深圳市思讯通信技术有限公司 可穿戴智能设备的天线***及可穿戴智能设备
CN113644412B (zh) * 2020-05-11 2023-01-20 深圳Tcl数字技术有限公司 一种信号传输装置
CN113809516A (zh) * 2020-06-12 2021-12-17 中兴通讯股份有限公司 动态天线组及其终端设备

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050041624A1 (en) * 2003-06-03 2005-02-24 Ping Hui Systems and methods that employ a dualband IFA-loop CDMA antenna and a GPS antenna with a device for mobile communication
CN1829360A (zh) * 2005-03-05 2006-09-06 乐金电子(中国)研究开发中心有限公司 Gsm和cdma模式转换装置
CN201018628Y (zh) * 2007-01-19 2008-02-06 英华达(上海)电子有限公司 一种双模智能手机
CN201234356Y (zh) * 2008-07-14 2009-05-06 中兴通讯股份有限公司 一种WiFi和GSM双模手机

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6351236B1 (en) * 2000-04-25 2002-02-26 Agilent Technologies, Inc. Combined GPS and CDMA in a mobile transceiver
US7369091B2 (en) * 2006-08-31 2008-05-06 Research In Motion Limited Mobile wireless communications device having dual antenna system for cellular and WiFi
US7899489B2 (en) * 2006-10-30 2011-03-01 Kyocera Corporation Wireless communication device and wireless communication method
FI20065696A0 (fi) * 2006-11-03 2006-11-03 Nokia Corp Radioprosessin ohjaus
US7864120B2 (en) * 2007-05-31 2011-01-04 Palm, Inc. High isolation antenna design for reducing frequency coexistence interference
CN201112568Y (zh) * 2007-09-04 2008-09-10 中兴通讯股份有限公司 一种多模手机的天线结构及使用该天线结构的手机

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050041624A1 (en) * 2003-06-03 2005-02-24 Ping Hui Systems and methods that employ a dualband IFA-loop CDMA antenna and a GPS antenna with a device for mobile communication
CN1829360A (zh) * 2005-03-05 2006-09-06 乐金电子(中国)研究开发中心有限公司 Gsm和cdma模式转换装置
CN201018628Y (zh) * 2007-01-19 2008-02-06 英华达(上海)电子有限公司 一种双模智能手机
CN201234356Y (zh) * 2008-07-14 2009-05-06 中兴通讯股份有限公司 一种WiFi和GSM双模手机

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