JPH1079622A - Frequency sharing antenna - Google Patents

Frequency sharing antenna

Info

Publication number
JPH1079622A
JPH1079622A JP23156296A JP23156296A JPH1079622A JP H1079622 A JPH1079622 A JP H1079622A JP 23156296 A JP23156296 A JP 23156296A JP 23156296 A JP23156296 A JP 23156296A JP H1079622 A JPH1079622 A JP H1079622A
Authority
JP
Japan
Prior art keywords
antenna
frequency
circuit
change circuit
inductance
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP23156296A
Other languages
Japanese (ja)
Inventor
Futoshi Deguchi
太志 出口
Mitsuyasu Baba
潤寧 馬場
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Panasonic Holdings Corp
Original Assignee
Matsushita Electric Industrial Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Matsushita Electric Industrial Co Ltd filed Critical Matsushita Electric Industrial Co Ltd
Priority to JP23156296A priority Critical patent/JPH1079622A/en
Publication of JPH1079622A publication Critical patent/JPH1079622A/en
Pending legal-status Critical Current

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Abstract

PROBLEM TO BE SOLVED: To provide an antenna capable of extending an antenna gain over a wide frequency band in an antenna system used for a radio communication terminal equipment or the like. SOLUTION: An electrically controllable inductance change circuit 2 is connected in series to the antenna 1. Moreover, an electrically controllable capacitance change circuit 3 is connected in parallel to the antenna 1. The resonance frequency of the antenna 1 is largely changed of a PIN diode used for a switch and the inductance change circuit 2 using a coil and is finely adjusted by using the capacitance change circuit 3 employing a varactor diode. The inductance change circuit 2 and the capacitance change circuit 3 are controlled electrically to allow the antenna 1 to cope with two frequency bands apart largely from each other.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、周波数共用アンテ
ナに関し、特に広帯域な共振周波数の電気的調整機能を
有する周波数共用アンテナに関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a frequency sharing antenna, and more particularly to a frequency sharing antenna having a function of electrically adjusting a resonance frequency in a wide band.

【0002】[0002]

【従来の技術】送信周波数帯域と受信周波数帯域が大き
く離れている場合、たとえば衛星通信システムに用いら
れる周波数帯として送信周波数が2.5GHz帯、受信
周波数が1.6GHz帯の場合、アンテナ装置として
は、0.9GHz離れた2つの帯域をカバーする必要が
ある。1つのアンテナでこれらの帯域をカバーするため
には、2.05GHzを中心周波数として比帯域が約4
3.9%(0.9/2.05)の広帯域なアンテナが必
要となる。しかし比帯域10%を超える広帯域な小型ア
ンテナは、簡単には実現出来ない。なぜならば、アンテ
ナの周波数帯域特性は自然共振現象によるアンテナ(1
/2λダイポールアンテナ)に比べ、インダクター等の
何らかの集中定数を装荷して共振周波数を下げてアンテ
ナを小型化する場合の帯域幅は狭くなるためである。す
なわちアンテナの小型化とその周波数広帯域化は相反す
る特性である。また強制的に整合回路でマッチングを取
った場合には、挟帯域化するとともに、その整合回路の
挿入損失によりアンテナ効率が低下する。
2. Description of the Related Art When a transmission frequency band and a reception frequency band are far apart from each other, for example, when a transmission frequency is 2.5 GHz and a reception frequency is 1.6 GHz as a frequency band used in a satellite communication system, an antenna device is used. Need to cover two bands separated by 0.9 GHz. In order to cover these bands with one antenna, the fractional band is about 4 with the center frequency of 2.05 GHz.
A 3.9% (0.9 / 2.05) broadband antenna is required. However, a small-sized antenna having a wide band exceeding 10% of the fractional band cannot be easily realized. The reason is that the frequency band characteristic of the antenna depends on the antenna (1
This is because the bandwidth becomes narrower when the antenna is downsized by lowering the resonance frequency by loading some lumped constant such as an inductor as compared with (/ 2λ dipole antenna). That is, miniaturization of the antenna and widening of the frequency band are contradictory characteristics. When matching is forcibly performed by the matching circuit, the band is narrowed, and the antenna efficiency is reduced due to the insertion loss of the matching circuit.

【0003】上記のように送受信の周波数帯域が離れて
いる場合、一つのアンテナで送受信の周波数帯域をカバ
ーしつつ、さらに小型で高効率のアンテナの実現は困難
であつた。
When the transmission and reception frequency bands are separated as described above, it is difficult to realize a more compact and highly efficient antenna while covering the transmission and reception frequency band with one antenna.

【0004】従来の技術として、公開特許広報(特開平
4−213907)に記載の例を図6に記す。図6は、
従来の共振周波数を変化させるアンテナ装置の構成図で
あって、図6(a)はアンテナ1と並列にキャパシタン
ス変化回路3を接続し、制御信号電圧によってキャパシ
タンスの値を変えて、アンテナ1の共振周波数を変える
ものを示しており、また図6(b)はアンテナ1と直列
にインダクタンス変化回路2を接続したものを示してお
り、同様に制御信号電圧によってインダクタンスの値を
変えてアンテナの共振周波数を変化させるものである。
FIG. 6 shows an example of a conventional technique described in a public patent publication (Japanese Patent Laid-Open No. Hei 4-213907). FIG.
FIG. 6A is a configuration diagram of a conventional antenna device for changing a resonance frequency. FIG. 6A shows a configuration in which a capacitance changing circuit 3 is connected in parallel with the antenna 1, and the value of the capacitance is changed by a control signal voltage so that the resonance of the antenna 1 FIG. 6B shows a case where an inductance changing circuit 2 is connected in series with the antenna 1. Similarly, the resonance frequency of the antenna is changed by changing the value of the inductance by the control signal voltage. Is to change.

【0005】[0005]

【発明が解決しようとする課題】しかしながら上記従来
の装置では、図3の本発明の実施の形態1の送受信周波
数帯域の概略図に示すように、受信周波数帯域5と送信
周波数帯域6が大きく離れている場合には、キャパシタ
ンス変化回路のみではその変化量が小さく、また周波数
を小さく微調する場合、インダクタンス変化回路のみで
は対応できない。また、送受信個々にアンテナを設ける
と部品点数が増えて装置が複雑になるという問題点を有
している。
However, in the above-mentioned conventional device, as shown in the schematic diagram of the transmission and reception frequency band of the first embodiment of the present invention in FIG. 3, the reception frequency band 5 and the transmission frequency band 6 are largely separated. In this case, the change amount is small only by the capacitance change circuit, and when the frequency is finely adjusted, it cannot be coped with only the inductance change circuit. Further, when an antenna is provided for each of the transmission and reception, there is a problem that the number of parts increases and the device becomes complicated.

【0006】本発明は上記従来の問題点を解決するもの
で、受信周波数帯域と送信周波数帯域が離れているよう
な衛星通信システムなどでも十分な利得が得られる周波
数共用アンテナを提供することを目的としている。
An object of the present invention is to provide a frequency sharing antenna capable of obtaining a sufficient gain even in a satellite communication system in which a reception frequency band and a transmission frequency band are separated from each other. And

【0007】[0007]

【課題を解決するための手段】請求項1の発明は、アン
テナと直列に、アンテナの共振周波数の大きな変更を担
当するインダクタンス変化回路を設け、かつアンテナと
並列にアンテナの共振周波数の微調整を担当するキャパ
シタンス変化回路を設け、このインダクタンス変化回路
とキャパシタンス変化回路を制御信号電圧によって操作
する。
According to a first aspect of the present invention, there is provided an inductance changing circuit in series with an antenna in charge of a large change in the resonance frequency of the antenna, and fine adjustment of the resonance frequency of the antenna in parallel with the antenna. A responsible capacitance changing circuit is provided, and the inductance changing circuit and the capacitance changing circuit are operated by a control signal voltage.

【0008】請求項2の発明は、前記インダクタンス変
化回路の制御信号電圧を、アンテナ用給電線に重畳させ
る。
According to a second aspect of the present invention, a control signal voltage of the inductance changing circuit is superimposed on an antenna feed line.

【0009】[0009]

【発明の実施の形態】請求項1の発明は、アンテナと直
列に接続したインダクタンス変化回路によってアンテナ
の共振周波数を大きく変化させ、またアンテナ1と並列
に接続したキャパシタンス変化回路によって細かな調整
を行う作用を有する。
DETAILED DESCRIPTION OF THE INVENTION According to the first aspect of the present invention, the resonance frequency of the antenna is largely changed by an inductance changing circuit connected in series with the antenna, and fine adjustment is performed by a capacitance changing circuit connected in parallel with the antenna 1. Has an action.

【0010】請求項2の発明は、インダクタンス変化回
路の制御信号電圧をアンテナ用給電線に重畳して、アン
テナの共振周波数を変化させる。
According to a second aspect of the present invention, the resonance frequency of the antenna is changed by superimposing the control signal voltage of the inductance changing circuit on the feed line for the antenna.

【0011】(実施の形態1)図1は本発明の実施の形
態1の周波数共用アンテナの構成図、図2は同周波数共
用アンテナの回路図、図3は同送受信周波数帯域の概略
図、図4は同インダクタンス変化回路による共振周波数
の変化を説明するための周波数共用アンテナの等価回路
図である。1はアンテナであり、7はインダクタンス変
化回路2で使用するコイル、8はインダクタンスの値を
変えるためのスイッチとして使用するPINダイオード
である。9はPINダイオード8への制御信号電圧を印
加するための端子である。10はアンテナ1へ給電され
る高周波電力が制御信号電圧を印加する端子9側とグラ
ンド11へ漏れるのを抑制するためのチョークコイルで
ある。12はキャパシタンス変化回路3で、キャパシタ
ンスの値を変えるために使用するバラクタダイオードで
あり、13はバラクタダイオード12のキャパシタンス
の制御信号電圧を印加するための端子である。14はP
INダイオード8とバラクタダイオード12の制御信号
電圧を分離するためのコンデンサである。また15は送
受信回路である。
(Embodiment 1) FIG. 1 is a configuration diagram of a frequency sharing antenna according to Embodiment 1 of the present invention, FIG. 2 is a circuit diagram of the frequency sharing antenna, and FIG. 3 is a schematic diagram of the transmission / reception frequency band. FIG. 4 is an equivalent circuit diagram of a frequency sharing antenna for explaining a change in resonance frequency due to the inductance changing circuit. Reference numeral 1 denotes an antenna, 7 denotes a coil used in the inductance changing circuit 2, and 8 denotes a PIN diode used as a switch for changing the value of the inductance. Reference numeral 9 denotes a terminal for applying a control signal voltage to the PIN diode 8. Reference numeral 10 denotes a choke coil for suppressing high-frequency power supplied to the antenna 1 from leaking to the terminal 9 to which the control signal voltage is applied and the ground 11. Numeral 12 denotes a varactor diode used to change the value of the capacitance, which is a capacitance changing circuit 3. Numeral 13 denotes a terminal for applying a control signal voltage of the capacitance of the varactor diode 12. 14 is P
This is a capacitor for separating the control signal voltages of the IN diode 8 and the varactor diode 12. Reference numeral 15 denotes a transmission / reception circuit.

【0012】以上のように構成された周波数共用アンテ
ナについて、その動作を図3の送受信周波数帯域の概略
図と図4(a),(b)の動作原理図を用いて説明す
る。まず、アンテナ1の共振周波数をインダクタンス変
化回路2を用いて、送信周波数帯6と受信周波数帯域5
で大きく切り替える場合の動作について説明する。最初
に、制御信号電圧を端子9から、チョークコイル10を
介してPINダイオード8に印加している状態、すなわ
ちPINダイオード8がON状態の等価回路を図4
(a)に示すが、図4(a)においてアンテナ1の共振
周波数が図3の送信周波数帯域6内にあるように、あら
かじめアンテナ1の設計をしておく必要がある。なお、
16はバラクタダイオード12に相当する可変容量コン
デンサである。
The operation of the frequency sharing antenna configured as described above will be described with reference to the schematic diagram of the transmission / reception frequency band of FIG. 3 and the principle of operation of FIGS. 4 (a) and 4 (b). First, the resonance frequency of the antenna 1 is determined using the inductance changing circuit 2 and the transmission frequency band 6 and the reception frequency band 5 are determined.
The operation in the case where the switching is largely performed will be described. First, an equivalent circuit in which the control signal voltage is applied from the terminal 9 to the PIN diode 8 via the choke coil 10, that is, an equivalent circuit in which the PIN diode 8 is ON is shown in FIG.
As shown in FIG. 4A, it is necessary to design the antenna 1 in advance so that the resonance frequency of the antenna 1 in FIG. 4A is within the transmission frequency band 6 in FIG. In addition,
Reference numeral 16 denotes a variable capacitor corresponding to the varactor diode 12.

【0013】次にアンテナ1の共振周波数を送信周波数
17から受信周波数18に移動させる場合には、制御信
号電圧を下げてPINダイオード8をOFF状態にす
る。このときの等価回路を図4(b)に示す。図4
(b)において、アンテナ1と直列にコイル7が挿入さ
れることになり、アンテナ1の共振周波数が下がること
になる。コイル7のインダクタンスの値は、PINダイ
オード8のON/OFF状態の変化によりアンテナ1の
共振周波数が送信周波数帯域6と受信周波数帯域5の間
で切り替わるように適切に選択しなければならない。
Next, when the resonance frequency of the antenna 1 is shifted from the transmission frequency 17 to the reception frequency 18, the control signal voltage is lowered and the PIN diode 8 is turned off. FIG. 4B shows an equivalent circuit at this time. FIG.
In (b), the coil 7 is inserted in series with the antenna 1, and the resonance frequency of the antenna 1 is reduced. The value of the inductance of the coil 7 must be appropriately selected so that the resonance frequency of the antenna 1 is switched between the transmission frequency band 6 and the reception frequency band 5 by changing the ON / OFF state of the PIN diode 8.

【0014】次にアンテナ1の共振周波数の微調整を行
う場合について説明する。アンテナ1の共振周波数が受
信周波数帯域5と送信周波数帯域6のいずれにある場合
でも、共振周波数の微調整はキャパシタンス変化回路3
を用いて行う。一般的にバラクタダイオード12は印加
電圧に対して連続的にキャパシタンスの値が変化する
が、このバラクタダイオード12に端子13から制御信
号電圧をチョークコイル10を介して印加し、バラクタ
ダイオードのキャパシタンスを制御する。図3に示すよ
うにアンテナ1の共振周波数を高い方19へ移動させる
場合には、バラクタダイオード12へ制御信号電圧を上
げて、キャパシタンスの値を小さくする。逆にアンテナ
1の共振周波数を低い方20場合には、バラクタダイオ
ード12に印加している制御信号電圧を下げて、バラク
タダイオード12のキャパシタンスを大きくする。この
ようにして、制御信号電圧によりバラクタダイオード1
2のキャパシタンスを変化させて、アンテナ1の共振周
波数の微調整を行う。
Next, a case where the resonance frequency of the antenna 1 is finely adjusted will be described. Regardless of whether the resonance frequency of the antenna 1 is in the reception frequency band 5 or the transmission frequency band 6, fine adjustment of the resonance frequency is performed by the capacitance changing circuit 3.
This is performed using Generally, the value of the capacitance of the varactor diode 12 changes continuously with respect to the applied voltage. The control signal voltage is applied to the varactor diode 12 from the terminal 13 through the choke coil 10 to control the capacitance of the varactor diode. I do. As shown in FIG. 3, when the resonance frequency of the antenna 1 is shifted to the higher one 19, the control signal voltage is increased to the varactor diode 12 and the capacitance value is decreased. Conversely, when the resonance frequency of the antenna 1 is lower 20, the control signal voltage applied to the varactor diode 12 is reduced, and the capacitance of the varactor diode 12 is increased. Thus, the varactor diode 1 is controlled by the control signal voltage.
The resonance frequency of the antenna 1 is finely adjusted by changing the capacitance of the antenna 2.

【0015】(実施の形態2)図5は本発明の実施の形
態2の給電線に制御信号電圧を重畳させる周波数共用ア
ンテナの回路図である。図5において、1はアンテナで
あり、7はインダクタンス変化回路で使用するコイル、
8はインダクタンスの値を変えるためのスイッチとして
使用するPINダイオード、9はPINダイオード8へ
の制御信号電圧を印加するための端子、10はアンテナ
1へ給電される高周波電力の制御信号電圧を印加する端
子9側とグランド11への漏洩を抑制するためのチョー
クコイル、15は送受信回路である。
(Embodiment 2) FIG. 5 is a circuit diagram of a frequency sharing antenna for superposing a control signal voltage on a feeder according to Embodiment 2 of the present invention. In FIG. 5, 1 is an antenna, 7 is a coil used in an inductance changing circuit,
Reference numeral 8 denotes a PIN diode used as a switch for changing the value of inductance, reference numeral 9 denotes a terminal for applying a control signal voltage to the PIN diode 8, and reference numeral 10 denotes a control signal voltage of high-frequency power supplied to the antenna 1. A choke coil 15 for suppressing leakage to the terminal 9 and the ground 11 is a transmitting / receiving circuit.

【0016】図5において、送受信回路15から送信さ
れた高周波出力信号は、アンテナ用給電線4を介してア
ンテナ1に供給される。アンテナ1の共振周波数を図3
中の送信周波数帯域6に移動させる場合には、端子9に
制御電圧を印加しPINダイオード8をON状態とす
る。これにより、インダクタンス変化回路2中のコイル
が短絡され、アンテナ1の共振周波数が上がる。逆にア
ンテナ1の共振周波数を図3中の受信周波数帯域5に移
動させるには、インダクタンス変化回路2中のPINダ
イオード8がOFF状態になるように、端子9に印加し
ている制御電圧を下げる。この結果、アンテナ1と直列
にコイル7が挿入され、アンテナ1の共振周波数が下が
る。なお、PINダイオード8のON/OFFで、送信
周波数帯域6と受信周波数帯域5を切り替えられるよう
に、コイル7のインダクタンスの値を設定しておかなけ
ればならない。
In FIG. 5, a high-frequency output signal transmitted from the transmission / reception circuit 15 is supplied to the antenna 1 through the antenna feed line 4. Fig. 3 shows the resonance frequency of the antenna 1.
When moving to the middle transmission frequency band 6, a control voltage is applied to the terminal 9 and the PIN diode 8 is turned on. Thereby, the coil in the inductance changing circuit 2 is short-circuited, and the resonance frequency of the antenna 1 increases. Conversely, in order to shift the resonance frequency of the antenna 1 to the reception frequency band 5 in FIG. 3, the control voltage applied to the terminal 9 is reduced so that the PIN diode 8 in the inductance changing circuit 2 is turned off. . As a result, the coil 7 is inserted in series with the antenna 1, and the resonance frequency of the antenna 1 decreases. The value of the inductance of the coil 7 must be set so that the transmission frequency band 6 and the reception frequency band 5 can be switched by turning on / off the PIN diode 8.

【0017】上記の様に、送受信制御信号電圧により高
周波成分阻止用のチョークコイル10を介して、PIN
ダイオード8の切り替えを制御し、送受信周波数帯域間
5,6での共振周波数を切り換える構成である。
As described above, the PIN signal is transmitted through the choke coil 10 for blocking high frequency components by the transmission / reception control signal voltage.
In this configuration, the switching of the diode 8 is controlled to switch the resonance frequency between the transmission and reception frequency bands 5 and 6.

【0018】[0018]

【発明の効果】以上説明したように本発明によれば、共
振周波数を電気的に制御する周波数共用アンテナでは、
送受信周波数が大きく離れているような通信システムな
どに求められる広帯域な周波数特性を実現できる。ま
た、アンテナ装置全体の小型化も図ることができるため
に、携帯通信端末の小型化に有効である。
As described above, according to the present invention, in a frequency sharing antenna for electrically controlling a resonance frequency,
Broadband frequency characteristics required for a communication system in which transmission and reception frequencies are far apart can be realized. Further, the size of the entire antenna device can be reduced, which is effective in reducing the size of the mobile communication terminal.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明の実施の形態1の周波数共用アンテナの
構成図
FIG. 1 is a configuration diagram of a frequency sharing antenna according to a first embodiment of the present invention.

【図2】本発明の実施の形態1の周波数共用アンテナの
回路図
FIG. 2 is a circuit diagram of the frequency sharing antenna according to the first embodiment of the present invention.

【図3】本発明の実施の形態1の送受信周波数帯域の概
略図
FIG. 3 is a schematic diagram of a transmission / reception frequency band according to the first embodiment of the present invention.

【図4】本発明の実施の形態1のインダクタンス変化回
路による共振周波数の変化を説明するための周波数共用
アンテナの等価回路図
FIG. 4 is an equivalent circuit diagram of a frequency sharing antenna for explaining a change in resonance frequency caused by the inductance changing circuit according to the first embodiment of the present invention;

【図5】本発明の実施の形態2の給電線に制御信号電圧
を重畳させる周波数共用アンテナの回路図
FIG. 5 is a circuit diagram of a frequency sharing antenna for superimposing a control signal voltage on a power supply line according to a second embodiment of the present invention.

【図6】従来の共振周波数を変化させるアンテナ装置の
構成図
FIG. 6 is a configuration diagram of a conventional antenna device that changes a resonance frequency.

【符号の説明】[Explanation of symbols]

1 アンテナ 2 インダクタンス変化回路 3 キャパシタンス変化回路 4 アンテナ用給電線 5 受信周波数帯域 6 送信周波数帯域 7 コイル 8 PINダイオード 10 チョークコイル 11 グランド 12 バラクタダイオード 15 送受信回路 16 可変容量コンデンサ 17 送信周波数 18 受信周波数 REFERENCE SIGNS LIST 1 antenna 2 inductance changing circuit 3 capacitance changing circuit 4 antenna feed line 5 reception frequency band 6 transmission frequency band 7 coil 8 PIN diode 10 choke coil 11 ground 12 varactor diode 15 transmission / reception circuit 16 variable capacitor 17 transmission frequency 18 reception frequency

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】アンテナに直列に、アンテナの共振周波数
の大きな変更を担当するインダクタンス変化回路を設
け、かつアンテナと並列にアンテナの共振周波数の微調
整を担当するキャパシタンス変化回路を設け、このイン
ダクタンス変化回路とキャパシタンス変化回路を制御信
号電圧によって操作することを特徴とする周波数共用ア
ンテナ。
An inductance changing circuit is provided in series with the antenna to control a large change in the resonance frequency of the antenna, and a capacitance changing circuit is provided in parallel with the antenna to fine-tune the resonance frequency of the antenna. A frequency sharing antenna characterized in that a circuit and a capacitance changing circuit are operated by a control signal voltage.
【請求項2】前記インダクタンス変化回路の制御信号電
圧を、アンテナ用給電線に重畳させることを特徴とする
請求項1記載の周波数共用アンテナ。
2. The frequency sharing antenna according to claim 1, wherein a control signal voltage of said inductance changing circuit is superimposed on a feed line for the antenna.
JP23156296A 1996-09-02 1996-09-02 Frequency sharing antenna Pending JPH1079622A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP23156296A JPH1079622A (en) 1996-09-02 1996-09-02 Frequency sharing antenna

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP23156296A JPH1079622A (en) 1996-09-02 1996-09-02 Frequency sharing antenna

Publications (1)

Publication Number Publication Date
JPH1079622A true JPH1079622A (en) 1998-03-24

Family

ID=16925460

Family Applications (1)

Application Number Title Priority Date Filing Date
JP23156296A Pending JPH1079622A (en) 1996-09-02 1996-09-02 Frequency sharing antenna

Country Status (1)

Country Link
JP (1) JPH1079622A (en)

Cited By (9)

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JPWO2004036687A1 (en) * 2002-10-15 2006-02-16 株式会社日立製作所 Small multi-mode antenna and high-frequency module using the same
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JP5400945B1 (en) * 2012-10-12 2014-01-29 株式会社フジクラ Method for manufacturing antenna
US8941548B2 (en) 2011-08-30 2015-01-27 Kabushiki Kaisha Toshiba Antenna device and electronic apparatus including antenna device
US8988292B2 (en) 2011-03-30 2015-03-24 Kabushiki Kaisha Toshiba Antenna device and electronic device including antenna device
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Cited By (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPWO2004036687A1 (en) * 2002-10-15 2006-02-16 株式会社日立製作所 Small multi-mode antenna and high-frequency module using the same
WO2010140406A1 (en) * 2009-06-05 2010-12-09 株式会社村田製作所 Antenna device and wireless communication device
JP5305255B2 (en) * 2009-06-05 2013-10-02 株式会社村田製作所 ANTENNA DEVICE AND RADIO COMMUNICATION DEVICE
WO2011024280A1 (en) * 2009-08-27 2011-03-03 株式会社 東芝 Antenna device and communication device
US8699964B2 (en) 2009-08-27 2014-04-15 Kabushiki Kaisha Toshiba Antenna apparatus and communication apparatus
US8942641B2 (en) 2009-08-27 2015-01-27 Kabushiki Kaisha Toshiba Antenna apparatus and communication apparatus
US8988292B2 (en) 2011-03-30 2015-03-24 Kabushiki Kaisha Toshiba Antenna device and electronic device including antenna device
WO2013012078A1 (en) * 2011-07-20 2013-01-24 株式会社フジクラ Antenna and wireless tag
US9159019B2 (en) 2011-07-20 2015-10-13 Fujikura Ltd. Antenna and wireless tag
US8941548B2 (en) 2011-08-30 2015-01-27 Kabushiki Kaisha Toshiba Antenna device and electronic apparatus including antenna device
JP2012034379A (en) * 2011-09-02 2012-02-16 Hitachi Ltd Radio unit and radio device
JP5400945B1 (en) * 2012-10-12 2014-01-29 株式会社フジクラ Method for manufacturing antenna
JP2020101544A (en) * 2018-12-19 2020-07-02 系統電子工業股▲ふん▼有限公司 Rf matching device of tire pneumatic sensor

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