JPH08307126A - Container structure of antenna - Google Patents
Container structure of antennaInfo
- Publication number
- JPH08307126A JPH08307126A JP11049095A JP11049095A JPH08307126A JP H08307126 A JPH08307126 A JP H08307126A JP 11049095 A JP11049095 A JP 11049095A JP 11049095 A JP11049095 A JP 11049095A JP H08307126 A JPH08307126 A JP H08307126A
- Authority
- JP
- Japan
- Prior art keywords
- radiating element
- wireless device
- radiation
- shield
- ground
- 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
Links
Landscapes
- Details Of Aerials (AREA)
- Support Of Aerials (AREA)
Abstract
Description
【0001】[0001]
【産業上の利用分野】本発明は、携帯電話や自動車電話
等の無線機器に用いられるアンテナの収納構造に関す
る。BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a storage structure for an antenna used in a wireless device such as a mobile phone or a car phone.
【0002】[0002]
【従来の技術】図5は、特開平2ー271701号公報
に記載されている「伸張可能なアンテナシステムおよび
これを用いた携帯用無線機」の概略図である。図5にお
いて、11は第1の放射素子、12は第2の放射素子、
13は第3の放射素子、14は無線機器のシールド、1
5は給電線路、16は給電点、17は第1の放射素子1
1通過用の孔である。図5(a)は第1の放射素子11
を伸した状態、図5(b)は第1の放射素子11を無線
機器10内部に収納した状態を表している。2. Description of the Related Art FIG. 5 is a schematic view of a "stretchable antenna system and a portable wireless device using the same" disclosed in Japanese Patent Laid-Open No. 2771701. In FIG. 5, 11 is a first radiating element, 12 is a second radiating element,
13 is a third radiating element, 14 is a shield for radio equipment, 1
5 is a feeding line, 16 is a feeding point, 17 is the first radiating element 1
It is a hole for one passage. FIG. 5A shows the first radiating element 11
5B shows a state in which the first radiating element 11 is housed inside the wireless device 10.
【0003】また図6は、第1の放射素子11を無線機
器10内部に収納した状態での断面図である。図5
(a)では、第2の放射素子12に給電された高周波電
力が電磁界結合により第1の放射素子11に給電されて
動作するが、図5(b)では、第2の放射素子12単体
のみが動作するようになっている。第3の放射素子13
は、その接地されていない素子端からみた第3の放射素
子13と無線機器10のシールド14との間の入力イン
ピーダンスが極大となり、かつ給電点16からみた第1
の放射素子11と第3の放射素子13との入力インピー
ダンスが給電線路15の特性インピーダンスと同程度と
なるように1/4波長の電気的な長さがとられている。
したがって、接地側の電流は主に第3の放射素子13上
を流れるので、無線機器10のシールド14上を流れる
電流を抑圧でき、無線機器10を人体が保持した場合に
も、そのことによる放射への影響が少なくなる。FIG. 6 is a sectional view showing a state where the first radiating element 11 is housed inside the radio equipment 10. Figure 5
In (a), the high-frequency power fed to the second radiating element 12 is fed to the first radiating element 11 by electromagnetic field coupling to operate, but in FIG. 5 (b), the second radiating element 12 alone is operated. Only is supposed to work. Third radiating element 13
Has the maximum input impedance between the third radiating element 13 and the shield 14 of the wireless device 10 when viewed from the element end which is not grounded, and the first impedance when viewed from the feeding point 16
The electrical length of ¼ wavelength is set so that the input impedance between the radiating element 11 and the third radiating element 13 is approximately the same as the characteristic impedance of the feed line 15.
Therefore, the current on the ground side mainly flows on the third radiating element 13, so that the current flowing on the shield 14 of the wireless device 10 can be suppressed, and even when the wireless device 10 is held by the human body, radiation due to this Impact on
【0004】[0004]
【発明が解決しようとする課題】しかしながら、前記特
開平2ー271701号公報に開示されている例では、
第1の放射素子11を無線機器10内部に収納した状態
において、次に述べる2つの問題点がある。However, in the example disclosed in the above-mentioned JP-A-2-271701,
There are two problems described below when the first radiating element 11 is housed inside the wireless device 10.
【0005】1)第3の放射素子13が一方向だけしか
ないために、上述した無線機器10上を流れる電流の抑
圧効果はあまり得られず、人体が近づいた場合の放射へ
の影響はさほど改善されない。1) Since the third radiating element 13 has only one direction, the above-described effect of suppressing the current flowing through the wireless device 10 is not obtained so much, and when the human body approaches, the radiation effect is not so great. Not improved.
【0006】2)仮に給電線路15の接地側からの信号
電流が第3の放射素子13に集中した場合、第2の放射
素子12と第3の放射素子13により構成される放射系
は平衡型に近い電流分布となり、不平衡電流が流れるた
めに、放射パターンの変化や利得の劣化という悪影響が
発生する。2) If the signal current from the ground side of the feed line 15 is concentrated in the third radiating element 13, the radiating system constituted by the second radiating element 12 and the third radiating element 13 is a balanced type. Since the current distribution is close to, and an unbalanced current flows, adverse effects such as a change in radiation pattern and deterioration of gain occur.
【0007】[0007]
【課題を解決するための手段】本発明の目的は、このよ
うな問題点を解消し、第1の放射素子収納時において
も、放射パターンや利得の劣化、および人体近接による
特性の劣化が少なくなるようなアンテナの収納構造を有
する無線機器を提供することにある。SUMMARY OF THE INVENTION An object of the present invention is to solve the above problems and to reduce the deterioration of the radiation pattern and the gain and the deterioration of the characteristics due to the proximity of the human body even when the first radiating element is housed. Another object of the present invention is to provide a wireless device having such an antenna storage structure.
【0008】上記課題を解決するために、本発明は、1
/2波長の電気的な長さを持つ第1の放射素子、1/4
波長の電気的な長さを持つ第2の放射素子、給電点付近
にて接地された1/4波長の電気的な長さを持つ第3の
放射素子により構成され、第1の放射素子が無線機器内
部へ収納可能であり、第1の放射素子を無線機器から引
出したときには、第2の放射素子に給電された高周波電
力が電磁界結合により第1の放射素子に給電動作し、第
1の放射素子を収納したときには、第2の放射素子単体
にて動作するアンテナにおいて、第1の放射素子を無線
機器内部に収納した際に、給電点付近からみた第1の放
射素子と無線機器のシールドとの間の入力インピーダン
スが極大となるように、第1の放射素子の中央部付近を
接地するようにした。In order to solve the above problems, the present invention provides
First radiating element having an electrical length of / 2 wavelength, 1/4
The second radiating element having an electrical length of wavelength and the third radiating element having an electrical length of ¼ wavelength grounded near the feeding point are provided, and the first radiating element is When the first radiating element can be housed in the wireless device and the first radiating element is pulled out from the wireless device, the high-frequency power supplied to the second radiating element supplies power to the first radiating element by electromagnetic field coupling, When the first radiating element is housed inside the wireless device in the antenna that operates by the second radiating element alone, the first radiating element and the wireless device when viewed from the vicinity of the feeding point The vicinity of the central portion of the first radiating element was grounded so that the input impedance with the shield was maximized.
【0009】[0009]
【作用】上記のように構成したので、給電線路の接地側
からの信号電流は、他の放射素子上により集中するの
で、無線機器上を流れる電流を抑圧することが出来、人
体が近ずいた場合の放射への影響を改善することが出来
る。また、給電線路の接地側からの信号電流が他の放射
素子に集中し、放射系が平衡型に近い電流分布となって
も、放射素子とシールドとの間が平衡/不平衡変換器と
して働くので、放射パターンの変化や利得の劣化を抑え
ることが出来る。With the above structure, the signal current from the ground side of the power feeding line is concentrated on the other radiating element, so that the current flowing on the radio equipment can be suppressed and the human body is kept close. The radiation effect can be improved. In addition, even if the signal current from the ground side of the feed line concentrates on other radiating elements and the radiating system has a current distribution close to a balanced type, the radiating element and the shield work as a balanced / unbalanced converter. Therefore, it is possible to suppress changes in the radiation pattern and deterioration of the gain.
【0010】[0010]
【実施例】以下、図面を用いて本発明の実施例を説明す
る。Embodiments of the present invention will be described below with reference to the drawings.
【0011】図において、同じ部位は同じ符号で示す。In the figures, the same parts are designated by the same reference numerals.
【0012】図1は、第1の放射素子21の無線機器2
0内収納時において、第1の放射素子21と給電線路2
5の接地導体との間の入力インピーダンスが極大となる
ように、第1の放射素子21の中央部付近を給電線路2
5の接地手段である接地導体27に接地した場合の実施
例である。22は第2の放射素子、23は第3の放射素
子、24は無線機器のシールドを示す。FIG. 1 shows a wireless device 2 of the first radiating element 21.
The first radiating element 21 and the feeder line 2 when stored in 0
In order to maximize the input impedance with the ground conductor of No. 5, the feeding line 2 is provided near the center of the first radiating element 21.
5 is an example in the case of being grounded to the ground conductor 27 which is the grounding means of No. 5. Reference numeral 22 is a second radiating element, 23 is a third radiating element, and 24 is a shield of a wireless device.
【0013】図2は、第1の放射素子31の無線機器3
0内収納時において、第1の放射素子31と給電線路3
5の接地導体37との間の入力インピーダンスが極大と
なるように、第1の放射素子31の中央部付近を給電線
路35の接地導体37に接地した場合の実施例である。
32は第2の放射素子、33は第3の放射素子、34無
線機器のシールドである。FIG. 2 shows the wireless device 3 of the first radiating element 31.
The first radiating element 31 and the feeding line 3 when stored in 0
5 is an example in which the vicinity of the central portion of the first radiating element 31 is grounded to the ground conductor 37 of the feed line 35 so that the input impedance between the fifth conductor 5 and the ground conductor 37 becomes maximum.
Reference numeral 32 is a second radiating element, 33 is a third radiating element, and 34 is a shield of the wireless device.
【0014】図3は、第1の放射素子41が無線機器4
0のシールドの外側に収納される構造において、給電点
付近からみた第1の放射素子41と無線機器40のシー
ルド44とのとの間の入力インピーダンスが極大となる
ように、第1の放射素子41の中央部付近を接地するよ
うにした場合の実施例である。42は第2の放射素子、
43は第3の放射素子、45は給電線路、47は接地導
体である。In FIG. 3, the first radiating element 41 is used as the wireless device 4.
In the structure housed outside the shield of No. 0, the first radiating element so that the input impedance between the first radiating element 41 and the shield 44 of the wireless device 40 seen from the vicinity of the feeding point becomes maximum. This is an embodiment in which the vicinity of the central portion of 41 is grounded. 42 is the second radiating element,
43 is a third radiating element, 45 is a feed line, and 47 is a ground conductor.
【0015】また図4は、第1の放射素子51の無線機
器50収納時の無線機器のシールドもしくは給電線路の
接地導体54への接地方法に関する他の実施例であり、
図4(a)は、容量結合にて接地した場合の実施例を示
しており、図4(b)はインダクタンス結合にて接地し
た場合の実施例を示している。54は無線機器50のシ
ールドもしくは給電線路の接地導体であり、58は容量
結合素子、59はインダクタンス結合素子である。FIG. 4 shows another embodiment relating to a method of grounding the first radiating element 51 to the shield of the wireless device or the ground conductor 54 of the power feeding line when the wireless device 50 is housed,
FIG. 4A shows an embodiment in the case of being grounded by capacitive coupling, and FIG. 4B shows an embodiment in the case of being grounded by inductance coupling. Reference numeral 54 is a shield of the wireless device 50 or a ground conductor of a power supply line, 58 is a capacitive coupling element, and 59 is an inductance coupling element.
【0016】なお、上記実施例では第1の放射素子、第
2の放射素子がともにヘリカル素子の場合を示したが、
本発明はこれに対してのみ適用されるものではなく、任
意の素子形状の放射素子に適用可能であることは言うま
でもない。Although the first and second radiating elements are both helical elements in the above embodiment,
It goes without saying that the present invention is not limited to this, and can be applied to a radiating element having an arbitrary element shape.
【0017】[0017]
【発明の効果】以上説明したように、本発明の構成なら
びに方法によれば、 1)給電線路の接地側からの信号電流は、第3の放射素
子上により集中するので、無線機器上を流れる電流を抑
圧することが出来、人体が近づいた場合の放射への影響
を改善すること 2)上記のように、給電線路の接地側からの信号電流が
第3の放射素子に集中し、第2の放射素子と第3の放射
素子により構成される放射系が平衡型に近い電流分布と
なっても、第1の放射素子と無線機器のシールドとの間
が平衡/不平衡変換器として働くので、放射パターンの
変化や利得の劣化を抑えることが出来る。As described above, according to the configuration and method of the present invention, 1) the signal current from the ground side of the feed line concentrates on the third radiating element, and therefore flows on the radio equipment. The current can be suppressed, and the effect on radiation when the human body approaches is improved. 2) As described above, the signal current from the ground side of the feed line concentrates on the third radiating element, Even if the radiating system consisting of the radiating element and the third radiating element has a current distribution close to the balanced type, the space between the first radiating element and the shield of the wireless device works as a balanced / unbalanced converter. It is possible to suppress the change of the radiation pattern and the deterioration of the gain.
【0018】従って、本発明によれば、第1の放射素子
収納時においても、放射パターンや利得の劣化、および
人体近接による特性の劣化の少ないアンテナの収納構造
を持つ無線機器を提供することができる。Therefore, according to the present invention, it is possible to provide a radio device having an antenna housing structure in which the radiation pattern and the gain are not deteriorated even when the first radiating element is housed, and the characteristics are not deteriorated due to the proximity of the human body. it can.
【図1】本発明の実施例であり、第1の放射素子21が
無線機器のシールド24内部に収納され、シールド24
に接地される場合を示す。1 is an embodiment of the present invention, in which a first radiating element 21 is housed inside a shield 24 of a wireless device,
It shows the case of being grounded.
【図2】本発明の実施例であり、第1の放射素子31が
無線機器のシールド34内部に収納され、給電線路35
の接地導体に接地される場合を示す。FIG. 2 is an embodiment of the present invention, in which a first radiating element 31 is housed inside a shield 34 of a wireless device, and a power feeding line 35 is provided.
It shows the case of being grounded to the grounding conductor of.
【図3】本発明の実施例であり、第1の放射素子41が
無線機器のシールド44外部に収納され、シールド44
に接地される場合を示す。FIG. 3 is an embodiment of the present invention, in which the first radiating element 41 is housed outside the shield 44 of the wireless device,
It shows the case of being grounded.
【図4】第1の放射素子51収納時の無線機器のシール
ドもしくは給電線路の接地導体54への接地方法に関す
る他の実施例であり、図4(a)は容量結合にて接地し
た場合、図4(b)はインダクタンス結合にて接地した
場合である。FIG. 4 is another embodiment relating to a method of grounding a shield of a wireless device or a feed line to a ground conductor 54 when the first radiating element 51 is housed, and FIG. 4 (a) shows a case of grounding by capacitive coupling. FIG. 4B shows a case of being grounded by inductance coupling.
【図5】従来技術である特開平2ー271701号公報
に記載されている無線機の概略図。図5(a)は第1の
放射素子11を伸した状態、図5(b)は収納した状態
を示す。FIG. 5 is a schematic diagram of a wireless device described in Japanese Patent Application Laid-Open No. 2-271701, which is a conventional technique. FIG. 5A shows the first radiating element 11 in a stretched state, and FIG. 5B shows the housed state.
【図6】第1の放射素子11を無線機器内部に収納した
状態の断面図。FIG. 6 is a cross-sectional view of a state where the first radiating element 11 is housed inside the wireless device.
10 無線機器 11 第1の放射素子 12 第2の放射素子 13 第3の放射素子 14 無線機器のシールド 15 給電線路 16 給電点 17 第1の放射素子通過用の孔 20 無線機器 21 第1の放射素子 22 第2の放射素子 23 第3の放射素子 24 無線機器のシールド 25 給電線路 27 接地導体 30 無線機器 31 第1の放射素子 32 第2の放射素子 33 第3の放射素子 34 無線機器のシールド 35 給電線路 37 接地導体 40 無線機器 41 第1の放射素子 42 第2の放射素子 43 第3の放射素子 44 無線機器のシールド 45 給電線路 47 接地導体 50 無線機器 51 第1の放射素子 54 無線機器のシールドもしくは給電線路の接地導
体 58 容量結合素子 59 インダクタンス結合素子Reference Signs List 10 wireless device 11 first radiating element 12 second radiating element 13 third radiating element 14 shield of wireless device 15 feeding line 16 feeding point 17 hole for passing first radiating element 20 wireless device 21 first radiating Element 22 Second radiating element 23 Third radiating element 24 Shield of wireless device 25 Feed line 27 Ground conductor 30 Wireless device 31 First radiating element 32 Second radiating element 33 Third radiating element 34 Shield of wireless device 35 Feed Line 37 Ground Conductor 40 Radio Equipment 41 First Radiating Element 42 Second Radiating Element 43 Third Radiating Element 44 Shield of Radio Equipment 45 Feed Line 47 Ground Conductor 50 Radio Equipment 51 First Radiating Element 54 Radio Equipment Grounding conductor of shield or feed line 58 Capacitive coupling element 59 Inductance coupling element
Claims (1)
射素子、1/4波長の電気的な長さを持つ第2の放射素
子、給電点付近にて接地された1/4波長の電気的な長
さを持つ第3の放射素子により構成され、第1の放射素
子が無線機器内部へ収納可能であり、第1の放射素子を
無線機器から引出したときには、第2の放射素子に給電
された高周波電力が電磁界結合により第1の放射素子に
給電動作し、第1の放射素子を収納したときには、第2
の放射素子単体にて動作するアンテナにおいて、前記第
1の放射素子を無線機器内部に収納した際に、給電点付
近からみた第1の放射素子と無線機器のシールドとの間
の入力インピーダンスが極大となるように、第1の放射
素子の中央部付近を接地するようにしたことを特徴とす
るアンテナの収納構造。1. A first radiating element having an electrical length of ½ wavelength, a second radiating element having an electrical length of ¼ wavelength, and a grounding element 1 near a feeding point. A third radiating element having an electrical length of / 4 wavelength, the first radiating element can be housed inside the wireless device, and when the first radiating element is pulled out from the wireless device, the second radiating element is When the first radiating element is housed, the high-frequency power fed to the radiating element is fed to the first radiating element by electromagnetic field coupling,
Of the radiating element alone, the input impedance between the first radiating element and the shield of the wireless device when viewed from the vicinity of the feeding point is maximized when the first radiating element is housed inside the wireless device. The antenna storage structure is characterized in that the vicinity of the central portion of the first radiating element is grounded so that
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP11049095A JPH08307126A (en) | 1995-05-09 | 1995-05-09 | Container structure of antenna |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP11049095A JPH08307126A (en) | 1995-05-09 | 1995-05-09 | Container structure of antenna |
Publications (1)
Publication Number | Publication Date |
---|---|
JPH08307126A true JPH08307126A (en) | 1996-11-22 |
Family
ID=14537072
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP11049095A Pending JPH08307126A (en) | 1995-05-09 | 1995-05-09 | Container structure of antenna |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPH08307126A (en) |
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