JP2010088136A - Electronic apparatus - Google Patents

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JP2010088136A
JP2010088136A JP2010001076A JP2010001076A JP2010088136A JP 2010088136 A JP2010088136 A JP 2010088136A JP 2010001076 A JP2010001076 A JP 2010001076A JP 2010001076 A JP2010001076 A JP 2010001076A JP 2010088136 A JP2010088136 A JP 2010088136A
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antenna
wireless communication
communication unit
frequency band
reception
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JP5117516B2 (en
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Kazuya Fukushima
和哉 福島
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Toshiba Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To provide an electronic apparatus in which plural kinds of wireless communication modules can efficiently use an antenna in common, and to provide a diversity antenna control method. <P>SOLUTION: A high-frequency signal of a first frequency band (fA), between an auxiliary antenna 40B and a first wireless communication module 10 and a high-frequency signal of a second frequency band (fB) between an auxiliary antenna 40B and a second wireless communication module 20 are separated by a filter 30. As a result, the first wireless communication module 10 performs wireless communication with an external apparatus through space diversity reception control, using a main antenna 40A and the auxiliary antenna 40B, and concurrently, a second wireless communication module 20 can perform wireless communication between the external apparatus using the auxiliary antenna 40B. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、空間ダイバーシティアンテナ制御機能をもつ無線通信モジュールと1つのアンテナを用いて通信を行う無線通信モジュールとを実装した若しくは実装可能にした複数の無線通信機能をもつ例えばポータブルコンピュータ等の電子機器に関する。   The present invention relates to an electronic apparatus such as a portable computer having a plurality of wireless communication functions in which a wireless communication module having a spatial diversity antenna control function and a wireless communication module for performing communication using one antenna are mounted or made mountable. About.

ポータブルコンピュータ等の情報処理装置に於いては、例えば無線LAN、Bluetooth(登録商標)等の無線通信モジュールが実装可能である。無線LANモジュールは、電波受信品質を向上させるため、送受信を行う主(Main)アンテナと、受信のみを行う補助(Aux)アンテナとでなる2本のアンテナを搭載し、受信状況に応じ主アンテナと補助アンテナを切り替えて、より感度のよい受信状態を保つように制御(空間ダイバーシティ制御)している。一方、Bluetoothモジュールに於いては、送受信を行うアンテナは1本のみである。また、無線LANモジュールはIEEE802.11bに準拠している場合、Bluetoothモジュールと使用周波数帯域が重複し、同時に使用すると、電波干渉が発生し、互いに通信速度が劣化するという弊害が発生することがある。このようなことから、一般には、無線LANモジュールのアンテナとBluetoothモジュールのアンテナとを別個にし、合計3つのアンテナを設けて電波干渉を極力抑えるようにしている。しかしながらポータブルコンピュータ等の小型電子機器に於いては、小型化、高密度化が要求されることから、筐体内に確保できるアンテナ実装スペースが益々減る傾向にある。この際、複数種の無線通信モジュールが1つまたは2つのアンテナをスイッチ回路により選択的に切り替えて共用する技術を適用することで、アンテナ実装数を減らすことができるが、この技術は無線通信モジュール各々の無線通信状態等に応じてスイッチ回路を切り替え制御する制御回路を必用とし構成が煩雑になるとともに、常に、スイッチ回路によりアンテナに接続された無線通信モジュールのみしか受信できないという問題がある。   In an information processing apparatus such as a portable computer, for example, a wireless communication module such as a wireless LAN or Bluetooth (registered trademark) can be mounted. In order to improve radio wave reception quality, the wireless LAN module includes two antennas, a main antenna that performs transmission and reception, and an auxiliary antenna that only performs reception (Aux) antenna. The auxiliary antenna is switched to perform control (spatial diversity control) so as to maintain a more sensitive reception state. On the other hand, in the Bluetooth module, only one antenna transmits and receives. In addition, when the wireless LAN module conforms to IEEE802.11b, the use frequency band overlaps with the Bluetooth module, and if used at the same time, radio interference may occur, and the communication speed may deteriorate. . For this reason, generally, the antenna of the wireless LAN module and the antenna of the Bluetooth module are separately provided, and a total of three antennas are provided to suppress radio wave interference as much as possible. However, since small electronic devices such as portable computers are required to be small and have high density, there is a tendency that the antenna mounting space that can be secured in the housing is further reduced. At this time, the number of antennas mounted can be reduced by applying a technology in which a plurality of types of wireless communication modules selectively switch and share one or two antennas with a switch circuit. There is a problem that a control circuit that switches and controls the switch circuit according to each wireless communication state is required and the configuration becomes complicated, and only the wireless communication module connected to the antenna by the switch circuit can always be received.

特開2001−24579号公報JP 2001-24579 A

上述したように、従来では複数種の無線通信モジュールがアンテナ素子を共用する技術に関して構成並びに機能性の面で問題があった。   As described above, conventionally, there are problems in terms of configuration and functionality regarding a technique in which a plurality of types of wireless communication modules share antenna elements.

本発明は上記実情に鑑みなされたもので、複数種の無線通信モジュールがアンテナを効率よく共用できる電子機器を提供することを目的とする。   The present invention has been made in view of the above circumstances, and an object thereof is to provide an electronic apparatus in which a plurality of types of wireless communication modules can efficiently share an antenna.

本発明は、第1のアンテナと、第2のアンテナと、前記第1のアンテナが送受信用のアンテナ端子に接続され、前記第2のアンテナがフィルタを介して受信用のアンテナ端子に接続され、第1の通信プロトコルに従い無線通信を行う第1の無線通信部と、前記第2のアンテナが前記フィルタを介して送受信用のアンテナ端子に接続され、前記第1の通信プロトコルとは異なる第2の通信プロトコルに従い無線通信を行う第2の無線通信部とを具備し、前記フィルタは、前記第2のアンテナと前記第1の無線通信部の受信アンテナ端子との間、及び前記第2のアンテナと前記第2の無線通信部の送受信アンテナ端子との間に接続され、前記第2のアンテナを通じて受信された信号を、前記第1の無線通信部が使用する第1の周波数帯と前記第2の無線通信部が使用する第2の周波数帯とに切り分けることを特徴とする。   In the present invention, a first antenna, a second antenna, and the first antenna are connected to an antenna terminal for transmission and reception, and the second antenna is connected to an antenna terminal for reception through a filter, A first wireless communication unit that performs wireless communication in accordance with a first communication protocol, and a second antenna different from the first communication protocol, wherein the second antenna is connected to an antenna terminal for transmission / reception via the filter. A second wireless communication unit that performs wireless communication according to a communication protocol, wherein the filter is between the second antenna and a reception antenna terminal of the first wireless communication unit, and the second antenna. The first frequency band used by the first wireless communication unit and the second signal received from the second antenna connected to the transmission / reception antenna terminal of the second wireless communication unit. Characterized in that cut into the second frequency band used by the wireless communication unit.

アンテナの切り替えスイッチを設けることなく複数種の無線通信モジュールがアンテナ素子を効率よく共用できる。   A plurality of types of wireless communication modules can efficiently share an antenna element without providing an antenna changeover switch.

本発明の実施形態に係る電子機器の構成を示すブロック図。1 is a block diagram showing a configuration of an electronic device according to an embodiment of the present invention. 本発明の実施形態に係るアンテナ回路をパーソナルコンピュータに適用した際の配置例を示す図。The figure which shows the example of arrangement | positioning at the time of applying the antenna circuit which concerns on embodiment of this invention to a personal computer. 本発明の実施形態に係る電子機器の具体的な構成例を示すブロック図。1 is a block diagram showing a specific configuration example of an electronic device according to an embodiment of the present invention. 本発明の実施形態に係る電子機器の具体的な構成例を示すブロック図。1 is a block diagram showing a specific configuration example of an electronic device according to an embodiment of the present invention.

以下図面を参照して本発明の実施形態を説明する。   Embodiments of the present invention will be described below with reference to the drawings.

本発明の実施形態に係る電子機器の構成を図1に示している。   FIG. 1 shows the configuration of an electronic apparatus according to an embodiment of the present invention.

この図1に示す電子機器は、第1の無線通信モジュール10と、第2の無線モジュール20と、フィルタ30と、一対のアンテナ40A,40Bとを具備して構成される。   The electronic device shown in FIG. 1 includes a first wireless communication module 10, a second wireless module 20, a filter 30, and a pair of antennas 40A and 40B.

第1の無線通信モジュール10は、第1周波数帯(fA)を用いて外部機器との間で空間ダイバーシティ受信制御による通信が可能である。第2の無線モジュール20は上記第1周波数帯(fA)とは異なる第2周波数帯(fB)を用いて単一のアンテナにより外部機器との間で通信を行う。第1の無線通信モジュール10には、空間ダイバーシティ受信制御を可能にするための送受信用のアンテナ(主アンテナ)接続端子11と、受信用のアンテナ(補助アンテナ)接続端子12とが設けられる。第2の無線モジュール20には単一の送受信用アンテナ接続端子21が設けられる。   The first wireless communication module 10 can communicate with an external device by spatial diversity reception control using the first frequency band (fA). The second wireless module 20 communicates with an external device using a single antenna using a second frequency band (fB) different from the first frequency band (fA). The first wireless communication module 10 is provided with a transmission / reception antenna (main antenna) connection terminal 11 and a reception antenna (auxiliary antenna) connection terminal 12 for enabling spatial diversity reception control. The second radio module 20 is provided with a single transmission / reception antenna connection terminal 21.

一対のアンテナ40A,40Bのうち、アンテナ40Aは、空間ダイバーシティ受信制御に於いて送受信を行う主アンテナとして用いられ、アンテナ40Bは受信のみを行う補助アンテナとして用いられる。以下、アンテナ40Aを主アンテナと称し、アンテナ40Bを補助アンテナと称す。   Of the pair of antennas 40A and 40B, the antenna 40A is used as a main antenna that performs transmission / reception in space diversity reception control, and the antenna 40B is used as an auxiliary antenna that performs only reception. Hereinafter, the antenna 40A is referred to as a main antenna, and the antenna 40B is referred to as an auxiliary antenna.

主アンテナ40Aは第1のアンテナケーブル61を介して無線LAN用モジュール10の送受信用アンテナ接続端子11に接続され、補助アンテナ40Bは第2のアンテナケーブル62を介してフィルタ30に接続される。   The main antenna 40A is connected to the transmission / reception antenna connection terminal 11 of the wireless LAN module 10 via the first antenna cable 61, and the auxiliary antenna 40B is connected to the filter 30 via the second antenna cable 62.

フィルタ30は、第1の無線通信モジュール10の受信用アンテナ接続端子12と第2の無線モジュール20のアンテナ接続端子21と補助アンテナ40Bとの間に接続され、補助アンテナ40Bと第1の無線通信モジュール10の受信用アンテナ接続端子12との間の第1周波数帯(fA)の高周波信号と、補助アンテナ40Bと第2の無線通信モジュール20のアンテナ接続端子21との間の第2周波数帯(fB)の高周波信号とを弁別して切り分ける。   The filter 30 is connected between the receiving antenna connection terminal 12 of the first wireless communication module 10, the antenna connection terminal 21 of the second wireless module 20, and the auxiliary antenna 40B, and the auxiliary antenna 40B and the first wireless communication. A high-frequency signal in the first frequency band (fA) between the receiving antenna connection terminal 12 of the module 10 and a second frequency band (between the auxiliary antenna 40B and the antenna connection terminal 21 of the second wireless communication module 20). The high frequency signal of fB) is discriminated and separated.

このように回路接続されたアンテナ回路をポータブルコンピュータに適用した際の一配置構成例を図2に示している。   FIG. 2 shows an example of an arrangement configuration when the antenna circuit thus connected to the circuit is applied to a portable computer.

ポータブルコンピュータ本体1には、第1の無線通信モジュール10と、第2の無線モジュール20と、フィルタ30とが内蔵される。ポータブルコンピュータ本体1にヒンジ機構2,2を介して回動可能に設けられた表示部3筐体(表示部筐体)4には、その解放端側の2カ所に所定の距離を隔ててそれぞれ主アンテナ40Aと補助アンテナ40Bが設けられる。上記主アンテナ40Aは第1のアンテナケーブル61を介して第1の無線通信モジュール10の送受信用アンテナ接続端子11に接続される。上記補助アンテナ40Bは第2のアンテナケーブル62を介してフィルタ30に接続される。   The portable computer main body 1 includes a first wireless communication module 10, a second wireless module 20, and a filter 30. A display unit 3 housing (display unit housing) 4 rotatably provided on the portable computer main body 1 via hinge mechanisms 2 and 2 is separated from the release end side by two predetermined distances. A main antenna 40A and an auxiliary antenna 40B are provided. The main antenna 40 </ b> A is connected to the transmission / reception antenna connection terminal 11 of the first wireless communication module 10 via the first antenna cable 61. The auxiliary antenna 40B is connected to the filter 30 via the second antenna cable 62.

上記図1および図2に示す構成に於いて、第1の無線通信モジュール10は、第1周波数帯(fA)にて、主アンテナ40A、および補助アンテナ40Bを用い、外部機器との間で空間ダイバーシティ受信制御による通信を行う。   In the configuration shown in FIG. 1 and FIG. 2, the first wireless communication module 10 uses the main antenna 40A and the auxiliary antenna 40B in the first frequency band (fA), and has a space between the external devices. Communication by diversity reception control.

一方、第2の無線通信モジュール20は、補助アンテナ40Bを用いて外部機器との間で所定の通信プロトコルに従い通信を行う。   On the other hand, the second wireless communication module 20 communicates with an external device according to a predetermined communication protocol using the auxiliary antenna 40B.

この際、補助アンテナ40Bと第1の無線通信モジュール10との間の第1周波数帯(fA)の高周波信号と、補助アンテナ40Bと第2の無線通信モジュール20との間の第2周波数帯(fB)の高周波信号とはフィルタ30により切り分けられる。 At this time, a high-frequency signal in the first frequency band (fA) between the auxiliary antenna 40B and the first wireless communication module 10 and a second frequency band (in between the auxiliary antenna 40B and the second wireless communication module 20). The high frequency signal fB) is separated by the filter 30.

このようなアンテナ回路を用いることで、第1の無線通信モジュール10が主アンテナ40Aと補助アンテナ40Bを用いて空間ダイバーシティ受信制御により外部の機器と無線通信を行い、これと並行して第2の無線通信モジュール20が補助アンテナ40Bを用いて外部機器との間で無線通信を行うことができる。   By using such an antenna circuit, the first wireless communication module 10 performs wireless communication with an external device by spatial diversity reception control using the main antenna 40A and the auxiliary antenna 40B. The wireless communication module 20 can perform wireless communication with an external device using the auxiliary antenna 40B.

上記した本発明の実施形態をより具現化した例を図3および図4に示している。   An example in which the above-described embodiment of the present invention is embodied is shown in FIGS.

図3および図4は、上記図1および図2に示した、第1の無線通信モジュール10を無線LAN用モジュール、第2の無線通信モジュール20をBluetooth用モジュールとした例を示している。   FIGS. 3 and 4 show examples in which the first wireless communication module 10 and the second wireless communication module 20 shown in FIGS. 1 and 2 are used as a wireless LAN module and a Bluetooth module, respectively.

図4は無線LAN用モジュール10が使用する周波数帯域を、IEEE80.211b若しくはIEEE802.11gに従い、2.4GHz帯とした場合のアンテナ回路構成を示している。この際は、無線LAN用モジュール10の使用周波数帯が、Bluetooth用モジュール20の使用周波数帯(2.4GHz帯)と重複することから、Bluetooth用モジュール20の送信時に於いて、無線LAN用モジュール10が補助アンテナ40Bを用いず、主アンテナ40Aのみを用いて通信を行う。   FIG. 4 shows an antenna circuit configuration when the frequency band used by the wireless LAN module 10 is set to a 2.4 GHz band in accordance with IEEE800.211b or IEEE802.11g. At this time, since the use frequency band of the wireless LAN module 10 overlaps the use frequency band (2.4 GHz band) of the Bluetooth module 20, the wireless LAN module 10 is transmitted during transmission of the Bluetooth module 20. However, communication is performed using only the main antenna 40A without using the auxiliary antenna 40B.

これにより、無線LAN用モジュール10は、Bluetooth用モジュール20が補助アンテナ40Bを用いて送信を行っている間は、モジュール相互間の干渉を抑える必用があることからダイバーシティ受信制御機能を利用できないが、無線LAN用モジュール10と、Bluetooth用モジュール20とが並行してそれぞれ相手機器と通信を行うことができる。   As a result, the wireless LAN module 10 cannot use the diversity reception control function because it is necessary to suppress interference between the modules while the Bluetooth module 20 performs transmission using the auxiliary antenna 40B. The wireless LAN module 10 and the Bluetooth module 20 can communicate with the counterpart device in parallel.

図5は無線LAN用モジュール10が使用する周波数帯域を、IEEE802.11aに従う5GHz帯とした場合のアンテナ回路構成を示している。この際は、無線LAN用モジュール10の使用周波数帯(5GHz帯)が、Bluetooth用モジュール20の使用周波数帯(2.4GHz帯)と異なることから、無線LAN用モジュール10は主アンテナ40Aおよび補助アンテナ40Bを用いてダイバーシティ受信制御機能を利用し、Bluetooth用モジュール20は補助アンテナ40Bを用いて、それぞれ相手機器と並行して通信が可能である。この際、フィルタ30は、補助アンテナ40Bと無線LAN用モジュール10との間の5GHz帯の高周波信号と、補助アンテナ40BとBluetooth用モジュール20との間の2.4GHz帯の高周波信号とを弁別し切り分ける。これにより、補助アンテナ(Auxアンテナ)40Bに、5GHz帯の無線LAN用モジュール10の高周波信号、および2.4GHz帯のBluetooth用モジュール20の高周波信号が入出力した場合、5GHz帯の高周波信号はそのまま無線LAN用モジュール10の受信回路に入力され、2.4GHz帯の高周波信号はそのままBluetooth用モジュール20の受信回路に入力される。   FIG. 5 shows an antenna circuit configuration when the frequency band used by the wireless LAN module 10 is a 5 GHz band according to IEEE802.11a. In this case, since the use frequency band (5 GHz band) of the wireless LAN module 10 is different from the use frequency band (2.4 GHz band) of the Bluetooth module 20, the wireless LAN module 10 includes the main antenna 40A and the auxiliary antenna. The diversity reception control function is used using 40B, and the Bluetooth module 20 can communicate with the counterpart device in parallel using the auxiliary antenna 40B. At this time, the filter 30 discriminates a high frequency signal in the 5 GHz band between the auxiliary antenna 40B and the wireless LAN module 10 and a high frequency signal in the 2.4 GHz band between the auxiliary antenna 40B and the Bluetooth module 20. Carve out. Thereby, when the high frequency signal of the wireless LAN module 10 in the 5 GHz band and the high frequency signal of the Bluetooth module 20 in the 2.4 GHz band are input / output to the auxiliary antenna (Aux antenna) 40B, the high frequency signal in the 5 GHz band is left as it is. The 2.4 GHz band high-frequency signal input to the receiving circuit of the wireless LAN module 10 is input to the receiving circuit of the Bluetooth module 20 as it is.

尚、ここでは、使用周波数帯が2.4GHz帯/5GHz帯の無線LAN用モジュール10と、2.4GHz帯のBluetooth用モジュール20とを対象にしたアンテナ回路を例に採ったが、これに限らず、ダイバーシティ受信制御機能をもつ他の装置にも適用可能であり、また、例えばHomePNA(HomePhonelineNetworking Alliance)等、他の無線通信方式等にも適宜適用可能である。また使用するアンテナの種類についても、例えばダイポールアンテナ、モノポールアンテナ、逆Fアンテナ等、種々のアンテナが適用可能である。   In this example, the antenna circuit for the wireless LAN module 10 in the 2.4 GHz band / 5 GHz band and the Bluetooth module 20 in the 2.4 GHz band is taken as an example, but the present invention is not limited to this. In addition, the present invention can be applied to other devices having a diversity reception control function, and can be appropriately applied to other wireless communication systems such as HomePNA (Home Phoneline Networking Alliance). As for the type of antenna to be used, various antennas such as a dipole antenna, a monopole antenna, and an inverted F antenna can be applied.

10…無線LAN用モジュール、11…送受信用アンテナ接続端子、12…受信用アンテナ接続端子、20…Bluetooth用モジュール、21…アンテナ接続端子、30…フィルタ、40A…主アンテナ、40B…補助アンテナ、61,62…アンテナケーブル。   DESCRIPTION OF SYMBOLS 10 ... Wireless LAN module, 11 ... Transmission / reception antenna connection terminal, 12 ... Reception antenna connection terminal, 20 ... Bluetooth module, 21 ... Antenna connection terminal, 30 ... Filter, 40A ... Main antenna, 40B ... Auxiliary antenna, 61 62. Antenna cable.

Claims (7)

第1のアンテナと、
第2のアンテナと、
前記第1のアンテナが送受信用のアンテナ端子に接続され、前記第2のアンテナがフィルタを介して受信用のアンテナ端子に接続され、第1の通信プロトコルに従い無線通信を行う第1の無線通信部と、
前記第2のアンテナが前記フィルタを介して送受信用のアンテナ端子に接続され、前記第1の通信プロトコルとは異なる第2の通信プロトコルに従い無線通信を行う第2の無線通信部とを具備し、
前記フィルタは、前記第2のアンテナと前記第1の無線通信部の受信アンテナ端子との間、及び前記第2のアンテナと前記第2の無線通信部の送受信アンテナ端子との間に接続され、前記第2のアンテナを通じて受信された信号を、前記第1の無線通信部が使用する第1の周波数帯と前記第2の無線通信部が使用する第2の周波数帯とに切り分ける電子機器。
A first antenna;
A second antenna;
A first wireless communication unit configured to perform wireless communication according to a first communication protocol, wherein the first antenna is connected to an antenna terminal for transmission and reception, the second antenna is connected to an antenna terminal for reception via a filter; When,
The second antenna is connected to an antenna terminal for transmission / reception via the filter, and includes a second wireless communication unit that performs wireless communication according to a second communication protocol different from the first communication protocol,
The filter is connected between the second antenna and a reception antenna terminal of the first wireless communication unit, and between the second antenna and a transmission / reception antenna terminal of the second wireless communication unit, An electronic apparatus that separates a signal received through the second antenna into a first frequency band used by the first wireless communication unit and a second frequency band used by the second wireless communication unit.
前記第1の無線通信部は前記第1のアンテナを主アンテナとし、前記第2のアンテナを補助アンテナとするダイバーシティ受信制御を行う請求項1記載の電子機器。 The electronic device according to claim 1, wherein the first wireless communication unit performs diversity reception control using the first antenna as a main antenna and the second antenna as an auxiliary antenna. 前記第1の周波数帯と前記第2の周波数帯とが重複する場合、前記第1の無線通信部は前記第1のアンテナを用いて送受信する請求項1記載の電子機器。 The electronic device according to claim 1, wherein the first wireless communication unit transmits and receives using the first antenna when the first frequency band and the second frequency band overlap. 前記第1の周波数帯と前記第2の周波数帯とが異なる場合、前記第1の無線通信部は前記第1のアンテナを主アンテナとし、前記第2のアンテナを補助アンテナとするダイバーシティ受信制御を行う請求項1記載の電子機器。 When the first frequency band is different from the second frequency band, the first wireless communication unit performs diversity reception control using the first antenna as a main antenna and the second antenna as an auxiliary antenna. The electronic device according to claim 1 to be performed. 第1のアンテナと、
前記第1のアンテナと異なる第2のアンテナと、
前記第1のアンテナと前記第2のアンテナが接続され、第1の通信プロトコルに従い無線通信を行う第1の無線通信部と、
前記第2のアンテナが接続され、前記第1の通信プロトコルと異なる第2の通信プロトコルに従い無線通信を行う第2の無線通信部と、
前記第2のアンテナと前記第1の無線通信部と前記第2の無線通信部とに接続され、前記第2のアンテナを通じて受信された信号を、前記第1の無線通信部が使用する第1の周波数帯と前記第2の無線通信部が使用する第2の周波数帯とを切り分けるフィルタとを具備し、
前記第1の無線通信部は、前記第1の周波数帯と前記第2の周波数帯が互いに異なる場合に、前記第1のアンテナを送受信アンテナとして用い、前記第2のアンテナを受信専用アンテナとして用いてダイバーシティ受信制御により前記第1の通信プロトコルに従い無線通信を行い、前記第1の周波数帯と前記第2の周波数帯が重複する場合に、前記第2のアンテナを用いずに前記第1のアンテナを用いて前記第1の通信プロトコルに従い無線通信を行うことを特徴とする電子機器。
A first antenna;
A second antenna different from the first antenna;
A first wireless communication unit that connects the first antenna and the second antenna and performs wireless communication in accordance with a first communication protocol;
A second wireless communication unit connected to the second antenna and performing wireless communication according to a second communication protocol different from the first communication protocol;
The first radio communication unit is connected to the second antenna, the first radio communication unit, and the second radio communication unit, and the first radio communication unit uses a signal received through the second antenna. And a filter for separating the second frequency band used by the second wireless communication unit,
The first wireless communication unit uses the first antenna as a transmission / reception antenna and the second antenna as a reception-only antenna when the first frequency band and the second frequency band are different from each other. In the case where wireless communication is performed according to the first communication protocol by diversity reception control, and the first frequency band and the second frequency band overlap, the first antenna is used without using the second antenna. An electronic device that performs wireless communication according to the first communication protocol using
第1のアンテナと、
前記第1のアンテナと異なる第2のアンテナと、
前記第1のアンテナと前記第2のアンテナが接続され、第1の通信プロトコルに従い無線通信を行う第1の無線通信部と、
前記第2のアンテナが接続され、前記第1の通信プロトコルと異なる第2の通信プロトコルに従い無線通信を行う第2の無線通信部と、
前記第2のアンテナと前記第1の無線通信部と前記第2の無線通信部とに接続され、前記第2のアンテナを通じて受信された信号を、前記第1の無線通信部が使用する第1の周波数帯と前記第2の無線通信部が使用する第2の周波数帯とを切り分けるフィルタとを具備し、
前記第1の無線通信部は、前記第1の周波数帯と前記第2の周波数帯が互いに異なる場合に、前記第1のアンテナを送受信アンテナとして用い、前記第2のアンテナを受信専用アンテナとして用いてダイバーシティ受信制御により前記第1の通信プロトコルに従い無線通信を行うことを特徴とする電子機器。
A first antenna;
A second antenna different from the first antenna;
A first wireless communication unit that connects the first antenna and the second antenna and performs wireless communication in accordance with a first communication protocol;
A second wireless communication unit connected to the second antenna and performing wireless communication according to a second communication protocol different from the first communication protocol;
The first radio communication unit is connected to the second antenna, the first radio communication unit, and the second radio communication unit, and the first radio communication unit uses a signal received through the second antenna. And a filter for separating the second frequency band used by the second wireless communication unit,
The first wireless communication unit uses the first antenna as a transmission / reception antenna and the second antenna as a reception-only antenna when the first frequency band and the second frequency band are different from each other. An electronic device that performs wireless communication according to the first communication protocol by diversity reception control.
第1のアンテナと、
前記第1のアンテナと異なる第2のアンテナと、
前記第1のアンテナと前記第2のアンテナが接続され、第1の通信プロトコルに従い無線通信を行う第1の無線通信部と、
前記第2のアンテナが接続され、前記第1の通信プロトコルと異なる第2の通信プロトコルに従い無線通信を行う第2の無線通信部と、
前記第2のアンテナと前記第1の無線通信部と前記第2の無線通信部とに接続され、前記第2のアンテナを通じて受信された信号を、前記第1の無線通信部が使用する第1の周波数帯と前記第2の無線通信部が使用する第2の周波数帯とを切り分けるフィルタとを具備し、
前記第1の周波数帯と前記第2の周波数帯が重複する場合に、前記第2のアンテナを用いずに前記第1のアンテナを用いて前記第1の通信プロトコルに従い無線通信を行うことを特徴とする電子機器。
A first antenna;
A second antenna different from the first antenna;
A first wireless communication unit that connects the first antenna and the second antenna and performs wireless communication in accordance with a first communication protocol;
A second wireless communication unit connected to the second antenna and performing wireless communication according to a second communication protocol different from the first communication protocol;
The first radio communication unit is connected to the second antenna, the first radio communication unit, and the second radio communication unit, and the first radio communication unit uses a signal received through the second antenna. And a filter for separating the second frequency band used by the second wireless communication unit,
When the first frequency band and the second frequency band overlap, wireless communication is performed according to the first communication protocol using the first antenna without using the second antenna. Electronic equipment.
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JP4828798B2 (en) * 2004-01-30 2011-11-30 株式会社東芝 Electronics

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Publication number Priority date Publication date Assignee Title
WO2013093969A1 (en) * 2011-12-21 2013-06-27 三菱電機株式会社 Wireless communication apparatus
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