JP2005236858A - Antenna - Google Patents

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JP2005236858A
JP2005236858A JP2004046165A JP2004046165A JP2005236858A JP 2005236858 A JP2005236858 A JP 2005236858A JP 2004046165 A JP2004046165 A JP 2004046165A JP 2004046165 A JP2004046165 A JP 2004046165A JP 2005236858 A JP2005236858 A JP 2005236858A
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antenna
iron
alloy
soft magnetic
magnetic powder
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Yoshihiko Kato
義彦 加藤
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Tokin Corp
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NEC Tokin Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a small-sized antenna which is used in frequency bands lower than AM bands and includes a high gain and impulse resistance as well as is rich in flexibility and elasticity. <P>SOLUTION: The small-sized antenna is an AM band antenna to be used for an additional function radio of a portable phone, in which a core material composed of a soft magnetic substance power and an organic binder and rich in flexibility and rubber elasticity is used as a material of a core 11 for antenna, said core material is disposed at both sides of a strap 13, and a winding 12 is applied. Furthermore, the soft magnetic substance powder is flattened and/or needle-shaped and insulating coating is applied to its surface. Moreover, the antenna uses the organic binder composed of a polyurethane resin or the like and a curing agent. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

本発明は、AM帯又はそれより低い周波数帯で用いるアンテナに関する。   The present invention relates to an antenna used in an AM band or a lower frequency band.

AM帯ラジオ用のアンテナとして、ラジオ単体の場合には、図6に斜視図で示す様な焼結フェライトをコアとするアンテナがある。同図において、61は焼結フェライトコア、62は巻線である。   As an antenna for an AM band radio, in the case of a single radio, there is an antenna having a sintered ferrite core as shown in a perspective view in FIG. In the figure, 61 is a sintered ferrite core, and 62 is a winding.

一例として、Mn−Znフェライトを棒状又は板状に成形してなる磁心(コア)に巻線を施したアンテナが特許文献1に開示されている。   As an example, Patent Document 1 discloses an antenna in which a magnetic core (core) formed by molding Mn—Zn ferrite into a rod shape or a plate shape is wound.

今日、通信端末として著しい発展段階にある携帯電話において、付加機能としてラジオを搭載する需要があり、FM帯ラジオについては、搭載されている物も出て来ている。その中で、AM帯ラジオについては、携帯電話機が、AM帯のノイズ源を持っていることや、AM帯で一般的な焼結フェライトを使用したバーアンテナでは、小型、耐衝撃性をクリアすることが難しく実現がなされていない。   Today, there is a demand for mounting a radio as an additional function in a mobile phone that is in a remarkable development stage as a communication terminal, and an FM band radio is also being installed. Among them, for AM band radio, the mobile phone has a noise source in the AM band, and the bar antenna using sintered ferrite generally used in the AM band clears the small size and impact resistance. It is difficult and has not been realized.

特開平10−270232号公報Japanese Patent Laid-Open No. 10-270232

焼結フェライトのバーアンテナは、感度確保のためには、長い形状など大きくする必要があり、携帯電話機内に入れるために小型に設計された焼結フェライト製バーアンテナの場合は、ラジオ感度が下がり、更にノイズ源に近いため、S/N比も悪くなってしまう。また、ストラップの様に外部に配置した場合、大きさの制約、内部ノイズの影響が軽減されるが、無骨で固いことや、落下等の場合の衝撃に弱く、アンテナのフェライトが割れてしまう等の問題が発生してしまう。ロッドアンテナ、コイルアンテナについては、デザイン性、大きさ等で搭載は難しい。プラスチックフェライトのバーアンテナにおいても、ある程度、耐衝撃性は改善されたが、アンテナ用としての特性(透磁率μ60以上)を追求すると、フェライトの充填率を上げる必要があり、焼結フェライトと同じ様な固い材料となってしまい、同じ問題が発生していた。   Sintered ferrite bar antennas need to be large in order to ensure sensitivity, and in the case of sintered ferrite bar antennas that are designed to be small enough to be placed in mobile phones, the radio sensitivity decreases. Further, since it is closer to a noise source, the S / N ratio is also deteriorated. Also, when placed outside like a strap, the size restriction and the effect of internal noise are reduced, but it is rugged and hard, it is vulnerable to shocks such as dropping, and the ferrite of the antenna will break The problem will occur. Rod antennas and coil antennas are difficult to mount due to their design and size. Even with plastic ferrite bar antennas, the impact resistance has been improved to some extent, but pursuing characteristics for antennas (permeability μ60 or more) requires increasing the ferrite filling rate, which is similar to sintered ferrite. The same problem occurred.

この状況にあって、本発明の課題はAM帯より低い周波数帯で用いられ高利得で耐衝撃性を備えるだけでなく柔軟性と弾性に富む小型のアンテナを提供することにある。   In this situation, an object of the present invention is to provide a small antenna that is used in a frequency band lower than the AM band and has not only high gain and impact resistance but also high flexibility and elasticity.

そこで、これらの問題を解決するため、バーアンテナのコア材として、軟磁性体粉末と、有機結合材としてのエラストマーあるいはプラストマーとからなるコアを使用することにより、柔軟性と弾性に富む、耐衝撃性を向上した、携帯電話用などに適したAM帯アンテナの製作が可能となる。   Therefore, in order to solve these problems, by using a core made of soft magnetic powder and an elastomer or plastomer as an organic binder as the core material of the bar antenna, the impact resistance is rich in flexibility and elasticity. This makes it possible to manufacture an AM band antenna suitable for mobile phones and the like with improved performance.

すなわち、本発明のアンテナは、AM帯より低い周波数帯で用いられ、軟磁性体粉末及び有機結合剤からなるコアと、巻線とを備えるアンテナにおいて、前記軟磁性体粉末は、鉄アルミ珪素合金、鉄ニッケル合金、鉄コバルト合金、鉄コバルトシリコン合金、鉄シリコンバナジウム合金、鉄コバルトボロン合金、コバルト系アモルファス合金、鉄系アモルファス合金、酸化物磁性粉末、カーボニル鉄、モリブデンパーマロイ、及び純鉄圧粉から選ばれる1つの軟磁性体、又はそれらの組み合わせからなり、前記軟磁性体粉末の形状は偏平状及び/又は針状であり、前記軟磁性体粉末の少なくとも一部は酸化皮膜又は高分子材料によって絶縁被覆され、前記有機結合剤はポリエステル系樹脂、ポリ塩化ビニル系樹脂、ポリビニルブチラール樹脂、ポリウレタン樹脂、セルロース系樹脂、ニトリル−ブタジエン系ゴム、スチレン−ブタジエン系ゴム等の熱可塑性樹脂若しくはそれらの共重合体、エポキシ樹脂、フェノール樹脂、アミド系樹脂、イミド系樹脂等の熱硬化性樹脂、有機系難燃剤であるハロゲン化物、及び有機系難燃剤である臭素化ポリマーから選ばれた少なくとも1つからなることを特徴とする。   That is, the antenna of the present invention is used in a frequency band lower than the AM band, and includes an antenna including a core made of soft magnetic powder and an organic binder, and a winding. The soft magnetic powder is made of an iron aluminum silicon alloy. , Iron-nickel alloy, iron-cobalt alloy, iron-cobalt-silicon alloy, iron-silicon vanadium alloy, iron-cobalt boron alloy, cobalt-based amorphous alloy, iron-based amorphous alloy, oxide magnetic powder, carbonyl iron, molybdenum permalloy, and pure iron compact The soft magnetic powder is flat and / or needle-shaped, and at least a part of the soft magnetic powder is an oxide film or a polymer material. The organic binder is polyester resin, polyvinyl chloride resin, polyvinyl butyral resin. Thermoplastic resins such as polyurethane resins, cellulose resins, nitrile-butadiene rubbers, styrene-butadiene rubbers or copolymers thereof, epoxy resins, phenol resins, amide resins, imide resins, It is characterized by comprising at least one selected from a halide as an organic flame retardant and a brominated polymer as an organic flame retardant.

また、本発明のアンテナは、携帯電話機に外付けされるストラップと一体に形成され、AM帯アンテナとして動作することができる。   The antenna of the present invention is formed integrally with a strap attached to a mobile phone and can operate as an AM band antenna.

また、本発明のアンテナは、AM帯より低い周波数帯のRFIDに用いることができる。   The antenna of the present invention can be used for RFID in a frequency band lower than the AM band.

本発明のアンテナは、携帯電話用AM帯アンテナに使用すると、柔軟性とゴム弾性に富むコア材を用いたため、携帯電話機のストラップとしても、機能性、デザイン性に良好なアンテナを提供することができる。また、本発明に使用したコアは、FPC(フレキシブルプリント配線)の様な薄い物から、数センチの物まで製作が可能で、刃型、プレス金型、カッターの様な刃物等で切断ができ、有機結合剤の選定により成型も可能である。また、積層することにより更に複雑な形状にも対応が可能である。   When the antenna of the present invention is used for an AM band antenna for a mobile phone, a core material rich in flexibility and rubber elasticity is used. Therefore, an antenna having good functionality and design can be provided as a strap for a mobile phone. it can. In addition, the core used in the present invention can be manufactured from a thin object such as FPC (flexible printed wiring) to a few centimeters, and can be cut with a blade tool, a press die, a cutter tool, or the like. Molding is also possible by selecting an organic binder. Further, it is possible to cope with more complicated shapes by stacking.

本発明の第1の実施の形態のアンテナは、携帯電話の付加機能ラジオに使用するAM帯アンテナであり、アンテナ用コアに軟磁性体粉末と有機結合剤とからなる、柔軟性とゴム弾性に富むコア材を使用したバーアンテナである。   The antenna according to the first embodiment of the present invention is an AM band antenna used for an additional function radio of a cellular phone, and is composed of a soft magnetic powder and an organic binder in an antenna core, and has flexibility and rubber elasticity. It is a bar antenna using a rich core material.

この軟磁性体粉末とは、高周波透磁率の大きな、鉄アルミ珪素合金(センダスト(登録商標))、鉄ニッケル合金(パーマロイ(登録商標))、鉄コバルト合金、鉄コバルトシリコン合金、鉄シリコンバナジウム合金、鉄コバルトボロン合金、コバルト系アモルファス合金、鉄系アモルファス合金、酸化物磁性粉末(フェライト)、カーボニル鉄、モリブデンパーマロイ、純鉄圧粉の軟磁性材料のいずれか又はそれらの組み合わせからなる。なお、酸化物磁性粉末(フェライト)はこれ1種のみでは、ラジオ感度が不足するので、他の高透磁率の軟磁性体粉末と混合して用いる。   This soft magnetic powder is an iron aluminum silicon alloy (Sendust (registered trademark)), an iron nickel alloy (Permalloy (registered trademark)), an iron cobalt alloy, an iron cobalt silicon alloy, an iron silicon vanadium alloy having a high frequency magnetic permeability. , Iron-cobalt boron alloy, cobalt-based amorphous alloy, iron-based amorphous alloy, oxide magnetic powder (ferrite), carbonyl iron, molybdenum permalloy, pure iron powder, or a combination thereof. In addition, since only one kind of oxide magnetic powder (ferrite) has insufficient radio sensitivity, it is used by mixing with other high magnetic permeability soft magnetic powder.

また、有機結合剤はポリエステル系樹脂、ポリ塩化ビニル系樹脂、ポリビニルブチラール樹脂、ポリウレタン樹脂、セルロース系樹脂、ニトリル−ブタジエン系ゴム、スチレン−ブタジエン系ゴム等の熱可塑性樹脂あるいはそれらの共重合体、エポキシ樹脂、フェノール樹脂、アミド系樹脂、イミド系樹脂等の熱硬化性樹脂、あるいは有機系難燃剤であるハロゲン化物、臭素化ポリマーのいずれか又はそれらの組み合わせからなる。   The organic binder is a polyester resin, a polyvinyl chloride resin, a polyvinyl butyral resin, a polyurethane resin, a cellulose resin, a nitrile-butadiene rubber, a thermoplastic resin such as a styrene-butadiene rubber, or a copolymer thereof. It consists of a thermosetting resin such as an epoxy resin, a phenol resin, an amide resin or an imide resin, or a halide or brominated polymer which is an organic flame retardant, or a combination thereof.

前記軟磁性体粉末は、偏平状粉末、針状粉末又はそれらの混合粉末である。また、その軟磁性体粉末の少なくとも1種の材料については、酸化被膜又は有機結合剤等の高分子材料により絶縁コーティングを施し、渦電流の発生を防止する。   The soft magnetic powder is a flat powder, a needle powder, or a mixed powder thereof. In addition, at least one material of the soft magnetic powder is subjected to an insulating coating with a polymer material such as an oxide film or an organic binder to prevent the generation of eddy currents.

この様なコア材を携帯電話機に外付けするストラップ上に配して一体で形成すると、曲げても使用が可能であり、曲がった状態でも受信が可能な、AM帯用アンテナとなる。   When such a core material is disposed on a strap externally attached to a mobile phone and formed integrally, an AM band antenna that can be used even when bent and can be received even when bent is obtained.

本発明の第2の実施の形態でのアンテナは、AM帯以下の中波帯の電波を使用するRFID(Radio Frequency Identification)に用いるバーアンテナである。RFIDにおいても、本発明で用いるコア材のゆえに、高利得で、耐衝撃性、柔軟性、ゴム弾性に富むアンテナとなる。   The antenna according to the second embodiment of the present invention is a bar antenna used for RFID (Radio Frequency Identification) that uses radio waves in the medium wave band below the AM band. Even in the case of RFID, because of the core material used in the present invention, the antenna has high gain, impact resistance, flexibility, and rubber elasticity.

本発明のアンテナを携帯電話用AM帯アンテナとして作製し、従来型の焼結フェライト製バーアンテナと特性比較を行った。   The antenna of the present invention was fabricated as an AM band antenna for a mobile phone, and the characteristics were compared with those of a conventional sintered ferrite bar antenna.

図1は、本発明の実施例1のアンテナを示す斜視図である。図2は、本実施例1のアンテナが携帯電話用AM帯アンテナとして使用されるときの曲げ柔軟性を示す斜視図である。11はコア、12は巻線、13はストラップ、14は連結固定部である。   FIG. 1 is a perspective view showing an antenna according to Embodiment 1 of the present invention. FIG. 2 is a perspective view showing bending flexibility when the antenna of the first embodiment is used as an AM band antenna for a mobile phone. 11 is a core, 12 is a winding, 13 is a strap, and 14 is a connecting and fixing part.

今回試作したバーアンテナのコアには、軟磁性体微粉末としてFe−Al−Si合金粉末を用い、ポリウレタン樹脂と硬化剤とからなる有機結合剤により、1mmの厚みで形成したコア材を用いた。これを、1枚のコアサイズが11×50×1mmに切断したものを2枚用意した。次に、図1の様に、ストラップ13の柔軟性のあるバンドをベースとして2枚のコア材で挟んでアンテナコアを作製し、ポリウレタン線の巻線12を施した。このコア材料の透磁率は、μ=70以上であった。   For the core of the prototype bar antenna, a core material formed with a thickness of 1 mm using an organic binder made of a polyurethane resin and a curing agent is used as the soft magnetic fine powder, Fe-Al-Si alloy powder. . Two sheets were prepared by cutting the core size into 11 × 50 × 1 mm. Next, as shown in FIG. 1, an antenna core was produced by sandwiching the flexible band of the strap 13 between two core members, and a polyurethane wire winding 12 was applied. The magnetic permeability of the core material was μ = 70 or more.

図3に、このアンテナの利得曲線(周波数依存性)を示す。   FIG. 3 shows the gain curve (frequency dependence) of this antenna.

これに対し図4は、従来型の焼結フェライト製のバーアンテナでの利得曲線を示す。そのときの構造はすでに説明した図6と同様であり、コアサイズはφ10×60mmである。   On the other hand, FIG. 4 shows a gain curve of a conventional sintered ferrite bar antenna. The structure at that time is the same as that of FIG. 6 already described, and the core size is φ10 × 60 mm.

また、図5は、小型設計の焼結フェライト製のバーアンテナでの利得曲線を示す。このときのコアサイズはφ3.5×20mmである。   FIG. 5 shows a gain curve in a small-sized sintered ferrite bar antenna. The core size at this time is φ3.5 × 20 mm.

すなわち、図3〜図5は、本発明の携帯電話用AM帯のアンテナの利得と、従来型の焼結フェライト製バーアンテナ及び小型設計の焼結フェライト製バーアンテナの利得とを比較測定したデータを示す。また、表1にはその結果をまとめて示す。   That is, FIGS. 3 to 5 show data obtained by comparing and measuring the gain of the AM band antenna for mobile phones of the present invention and the gain of the conventional sintered ferrite bar antenna and the small-sized sintered ferrite bar antenna. Indicates. Table 1 summarizes the results.

Figure 2005236858
Figure 2005236858

表1の様に、本発明のアンテナは、小型設計の焼結フェライト製バーアンテナと比べ、利得、Q共に良好な特性となっている。従来の焼結フェライト製バーアンテナに対しては、特性的には及んでいないが、AGC(Automatic Gain Control)回路の調整により一般使用に十分対応できる特性であり、本発明の図1に示した形状でのAM局の電波受信状態は、従来型の焼結フェライト製と同様に良好であった。また図2の様にコアを曲げた形状においても、感度は良好であった。   As shown in Table 1, the antenna of the present invention has good characteristics in terms of both gain and Q as compared with a small-sized sintered ferrite bar antenna. The conventional sintered ferrite bar antenna does not reach the characteristics, but can be sufficiently adapted for general use by adjusting the AGC (Automatic Gain Control) circuit, and is shown in FIG. 1 of the present invention. The radio wave reception state of the AM station in the shape was as good as that of the conventional sintered ferrite. Also, the sensitivity was good even in the shape where the core was bent as shown in FIG.

実施例1のアンテナを示す斜視図。1 is a perspective view showing an antenna of Example 1. FIG. 実施例1のアンテナの曲げ柔軟性を示す斜視図。The perspective view which shows the bending flexibility of the antenna of Example 1. FIG. 実施例1のアンテナの利得曲線。The gain curve of the antenna of Example 1. FIG. 従来型の焼結フェライト製バーアンテナの利得曲線。Gain curve of a conventional sintered ferrite bar antenna. 小型設計の焼結フェライト製バーアンテナの利得曲線。Gain curve of a sintered ferrite bar antenna with a small design. 従来型の焼結フェライトを使用したバーアンテナを示す斜視図。The perspective view which shows the bar antenna using the conventional sintered ferrite.

符号の説明Explanation of symbols

11 コア
12,62 巻線
13 ストラップ
14 連結固定部
61 焼結フェライトコア
11 Core 12, 62 Winding 13 Strap
14 Connection fixing part 61 Sintered ferrite core

Claims (3)

AM帯より低い周波数帯で用いられ、軟磁性体粉末及び有機結合剤からなるコアと、巻線とを備えるアンテナにおいて、前記軟磁性体粉末は、鉄アルミ珪素合金、鉄ニッケル合金、鉄コバルト合金、鉄コバルトシリコン合金、鉄シリコンバナジウム合金、鉄コバルトボロン合金、コバルト系アモルファス合金、鉄系アモルファス合金、酸化物磁性粉末、カーボニル鉄、モリブデンパーマロイ、及び純鉄圧粉から選ばれる1つの軟磁性体、又はそれらの組み合わせからなり、前記軟磁性体粉末の形状は偏平状及び/又は針状であり、前記軟磁性体粉末の少なくとも一部は酸化皮膜又は高分子材料によって絶縁被覆され、前記有機結合剤はポリエステル系樹脂、ポリ塩化ビニル系樹脂、ポリビニルブチラール樹脂、ポリウレタン樹脂、セルロース系樹脂、ニトリル−ブタジエン系ゴム、スチレン−ブタジエン系ゴム等の熱可塑性樹脂若しくはそれらの共重合体、エポキシ樹脂、フェノール樹脂、アミド系樹脂、イミド系樹脂等の熱硬化性樹脂、有機系難燃剤であるハロゲン化物、及び有機系難燃剤である臭素化ポリマーから選ばれた少なくとも1つからなることを特徴とするアンテナ。   In an antenna that is used in a frequency band lower than the AM band and includes a core made of soft magnetic powder and an organic binder and a winding, the soft magnetic powder is made of iron aluminum silicon alloy, iron nickel alloy, iron cobalt alloy. , Iron cobalt silicon alloy, iron silicon vanadium alloy, iron cobalt boron alloy, cobalt amorphous alloy, iron amorphous alloy, oxide magnetic powder, carbonyl iron, molybdenum permalloy, and pure iron powder compact Or a combination thereof, and the shape of the soft magnetic powder is flat and / or needle-shaped, and at least a part of the soft magnetic powder is insulated with an oxide film or a polymer material, and the organic bond The agent is polyester resin, polyvinyl chloride resin, polyvinyl butyral resin, polyurethane resin, cellulose Resin, Thermoplastic resins such as nitrile-butadiene rubber, styrene-butadiene rubber or their copolymers, epoxy resins, phenol resins, amide resins, imide resins, etc., organic flame retardants An antenna comprising at least one selected from a certain halide and a brominated polymer which is an organic flame retardant. 携帯電話機に外付けされるストラップと一体に形成され、AM帯アンテナとして動作することを特徴とする、請求項1に記載のアンテナ。   The antenna according to claim 1, wherein the antenna is formed integrally with a strap attached to the mobile phone and operates as an AM band antenna. AM帯より低い周波数帯のRFIDに用いられることを特徴とする、請求項1に記載のアンテナ。   The antenna according to claim 1, wherein the antenna is used for an RFID having a frequency band lower than an AM band.
JP2004046165A 2004-02-23 2004-02-23 Antenna Pending JP2005236858A (en)

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KR100778002B1 (en) 2007-09-10 2007-11-21 주식회사 디지웨이브 Strap type dmb antenna apparatus of mobile communication terminal
WO2008018179A1 (en) * 2006-08-11 2008-02-14 Mitsui Chemicals, Inc. Antenna core and antenna
WO2008029769A1 (en) 2006-09-05 2008-03-13 Hitoshi Kitayoshi Thin slot antenna having cavity, antenna power feeding method, and rfid tag device using the antenna and the method
EP1953865A1 (en) * 2007-02-02 2008-08-06 NEOSID Pemetzrieder GmbH &amp; Co.KG Inductive component, in particular antenna
JP2008221363A (en) * 2007-03-09 2008-09-25 Denso Wave Inc Robot control system and operation pendant
WO2011060825A1 (en) * 2009-11-19 2011-05-26 Nokia Corporation Deformable apparatus

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WO2008018179A1 (en) * 2006-08-11 2008-02-14 Mitsui Chemicals, Inc. Antenna core and antenna
JPWO2008018179A1 (en) * 2006-08-11 2009-12-24 三井化学株式会社 Antenna core and antenna
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WO2008029769A1 (en) 2006-09-05 2008-03-13 Hitoshi Kitayoshi Thin slot antenna having cavity, antenna power feeding method, and rfid tag device using the antenna and the method
EP1953865A1 (en) * 2007-02-02 2008-08-06 NEOSID Pemetzrieder GmbH &amp; Co.KG Inductive component, in particular antenna
JP2008221363A (en) * 2007-03-09 2008-09-25 Denso Wave Inc Robot control system and operation pendant
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WO2009035180A1 (en) * 2007-09-10 2009-03-19 Digiwave Co., Ltd Strap-typed dmb antenna apparatus for mobile communication terminal
WO2011060825A1 (en) * 2009-11-19 2011-05-26 Nokia Corporation Deformable apparatus
US10020556B2 (en) 2009-11-19 2018-07-10 Nokia Technologies Oy Deformable apparatus

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