JP3748637B2 - Vibration generator for portable devices - Google Patents

Vibration generator for portable devices Download PDF

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Publication number
JP3748637B2
JP3748637B2 JP27092996A JP27092996A JP3748637B2 JP 3748637 B2 JP3748637 B2 JP 3748637B2 JP 27092996 A JP27092996 A JP 27092996A JP 27092996 A JP27092996 A JP 27092996A JP 3748637 B2 JP3748637 B2 JP 3748637B2
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JP
Japan
Prior art keywords
plate
coil
elastic body
vibration
vibration system
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.)
Expired - Fee Related
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JP27092996A
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Japanese (ja)
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JPH10117472A (en
Inventor
伸一 島川
憲之 藤原
隆夫 松浪
真一郎 犬飼
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 Corp
Panasonic Holdings Corp
Original Assignee
Panasonic Corp
Matsushita Electric Industrial Co Ltd
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Publication date
Application filed by Panasonic Corp, Matsushita Electric Industrial Co Ltd filed Critical Panasonic Corp
Priority to JP27092996A priority Critical patent/JP3748637B2/en
Priority to KR1019960066401D priority patent/KR19980032013A/en
Priority to US08/764,504 priority patent/US5894263A/en
Priority to CN96121384A priority patent/CN1099658C/en
Priority to MYPI96005271A priority patent/MY114573A/en
Priority to SG9611724A priority patent/SG79927A1/en
Priority to KR1019960066401A priority patent/KR100245379B1/en
Publication of JPH10117472A publication Critical patent/JPH10117472A/en
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Publication of JP3748637B2 publication Critical patent/JP3748637B2/en
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  • Details Of Audible-Bandwidth Transducers (AREA)
  • Apparatuses For Generation Of Mechanical Vibrations (AREA)
  • Reciprocating, Oscillating Or Vibrating Motors (AREA)

Description

【0001】
【発明の属する技術分野】
本発明は、ぺージャー(ポケットベル)及び携帯可能な小型情報伝達装置に関し、より詳しくは、ぺージャー、携帯電話、及び人体に振動を伝えたり、音を鳴らしたりすることで情報を伝達する、信号受信及び発信の機能を持つその他携帯機器における振動発生装置に関するものである。
【0002】
【従来の技術】
従来、振動を発生する機能を持つこの種の小型情報伝達装置としては、取り分け普及率の高いぺージャーが代表的なものとして挙げられるので、以下においてぺージャーを中心に説明する。
【0003】
ぺージャーは元来、電話による無線呼び出し信号を内部受信機が受信すると、呼び出し音を発生させて携帯者に電話の呼び出しがあったことを知らせていたが、音による呼び出しは周囲に迷惑をかけたり、連絡の必要性を他人に知られてしまうという問題点があった。その対策として、現在では音で知らせる以外に、振動を発生させて携帯者に知らせる機能が備えられており、発音と振動のいずれかの呼出信号を選択できるようになっている。 これらのぺージャーにおいて、身体に感じる程度の振動を発生させる振動装置としては、従来図10に示すものが用いられている。図10において、17は円筒形コアレスモータ、19は回転軸、18はタングステン等の高比重合金より成る偏芯した分銅をそれぞれ示し、円筒形コアレスモータ17の端面に突出した回転軸19に分銅18を取り付けて形成している。偏芯分銅18は部分円運動して偏芯振動させるために半円状または扇板形状になっており、円筒形コアレスモータ17に通電されると、偏芯分銅18が回転し、2次的に振動を発生させるようになっている。
【0004】
【発明が解決しようとする課題】
しかしながら上記従来の振動発生装置は、ぺージャー等の携帯用機器の小型化の傾向に対して、以下のような課題を有する。
【0005】
(1)円筒形コアレスモータに偏芯分銅を取り付けた構成では、回転軸に大きな負荷がかかるため、これ以上の小型化や長期使用の要請に十分応えきれない。
【0006】
また、この構成では偏芯分銅が回転軸から抜けやすいという課題があり、品質管理に多大な時間を費やして組み立てを行う必要がある。
【0007】
(2)従来の構成では、音を発生する小型スピーカーを別に必要とし、この小型スピーカと前記振動発生装置が別々に組み込まれており、小型化の際の省スペース化の障害となっている。
【0008】
上記課題を解決するものとして、特願平7−228138号は、音による呼び出しと体感振動による呼び出しの双方が可能な構成の振動発生装置を提供しているが、以下に挙げるような課題を残している。
【0009】
(1)振動発生装置の内部で体感振動が発生しているとき、時折不安定な自励振動により、振動しているヨーク部分が相対向している弾性体方向以外の方向にも動いて枠体に当たり、異音を発生することがある。
【0010】
(2)振動発生装置を携帯機器に取付けたとき、携帯機器がどの様な向きになっても、振動するヨーク部分が滑らかに一方向に動かなければならないが、この点不十分である。
【0011】
(3)振動発生装置に外から力が加わったとき、特に落下衝撃などが加わったとき等でも、振動するヨーク部分が同じく一方向に振動しなければならないが、この点不十分である。
【0012】
従って本発明は、上記課題の解決を図ることを目的とする。
【0013】
【課題を解決するための手段】
上記課題を解決するために、本願の請求項1記載の発明は、1対の板状弾性体を相対向するようにして枠体に支持させ、一方の板状弾性体にはヨーク及び磁石を有する磁界発生体を取り付けて第1の振動系を構成し、他方の板状弾性体にはコイルを取り付けて第2の振動系を構成し、前記コイルを前記磁界発生体の磁界内に配し、前記コイルに発振回路を通じて周波数の異なる電流を切り替え可能に与え、第1の振動系又は第2の振動系を選択的に共振させて、それぞれの共振周波数の振動を発生させるよう構成し、かつ前記第1の振動系を構成している板状弾性体が枠体の中心線方向に振動するように構成され、枠体の内周面に、前記ヨークの外周部と一定の間隔を設けて軟弾性体を配設するとともに、前記ヨークと前記軟弾性体との距離より、前記磁石と前記コイルとの距離および前記ヨークと前記コイルとの距離を大きくしたことを特徴とする携帯機器用振動発生装置に係るものである。
【0014】
上記発明によれば、コイル及び磁界発生体を内蔵させるというコンパクトかつ軽量な構造でありながら、呼出音と体感振動という2種類の呼出信号を使い分け自在に発生させることができ、又、装置本体がどのような向きであっても、あるいは落下衝撃等が加わっても、ヨークが枠体内周面に配設した軟弾性体と接触することによって、異音の発生を防止することができるとともに、ヨークや磁石がコイルに衝突してコイルが破損するのを防止することができるという作用を有する。
【0015】
、本願の請求項2記載の発明は、1対の板状弾性体を相対向するようにして枠体に支持させ、一方の板状弾性体にはヨーク及び磁石を有する磁界発生体を取り付けて第1の振動系を構成し、他方の板状弾性体にはコイルを取り付けて第2の振動系を構成し、前記コイルを前記磁界発生体の磁界内に配し、前記コイルに発振回路を通じて周波数の異なる電流を切り替え可能に与え、第1の振動系又は第2の振動系を選択的に共振させて、それぞれの共振周波数の振動を発生させるよう構成し、かつ前記第1の振動系を構成している板状弾性体が枠体の中心線方向に振動するように構成されると共に、前記板状弾性体が枠体の中心線方向に振動するように規制する方向規制部材を備え、かつこの方向規制部材がヨークの中心部を貫通するように配したガイドシャフトであることを特徴とする携帯機器用振動発生装置に係るものである。
【0017】
本願の請求項記載の発明は、1対の板状弾性体を相対向するようにして枠体に支持させ、一方の板状弾性体にはヨーク及び磁石を有する磁界発生体を取り付けて第1の振動系を構成し、他方の板状弾性体にはコイルを取り付けて第2の振動系を構成し、前記コイルを前記磁界発生体の磁界内に配し、前記コイルに発振回路を通じて周波数の異なる電流を切り替え可能に与え、第1の振動系又は第2の振動系を選択的に共振させて、それぞれの共振周波数の振動を発生させるよう構成し、かつ前記第1の振動系を構成している板状弾性体が枠体の中心線方向に振動するように構成されると共に、前記板状弾性体が枠体の中心線方向に振動するように規制する方向規制部材を備え、かつこの方向規制部材が、ヨークの外周部の上面及び下面をそれぞれ枠体に保持する1対の板状弾性支持体であることを特徴とする携帯機器用振動発生装置に係るものである。
【0019】
これら発明によれば、コイル及び磁界発生体を内蔵させるというコンパクトかつ軽量な構造でありながら、呼出音と体感振動という2種類の呼出信号を使い分け自在に発生させることができ、又、ヨークの自励振動を防止し、装置本体がどのような向きであっても、あるいは落下衝撃等が加わっても、ヨークが枠体の中心線方向に振動し、枠体内周面と接触することを回避させることができ、異音の発生を防止することができるという作用を有する。
【0020】
上記発明の具体的構成としては、一方の板状弾性体に中央部及び外周部が相手側の板状弾性体に向け突出するヨークを取り付け、前記ヨークの外周部内側に磁石を配置して第1の振動系を構成し、他方の板状弾性体に筒型コイルを相手側の板状弾性体に向け突出するように取り付け、前記筒型コイルが前記磁石の内周側で前記ヨークの中央部の外周側に位置するように配置して第2の振動系を構成し、かつ第1の振動系を構成している板状弾性体を、頂面と前記頂面周囲の底面と、前記頂面及び前記底面とを接続する接続部とを有するハット状の金属弾性体にて形成すると好適である。
【0021】
又、上記発明において、請求項に記載のように、コイルを配置した板状弾性体に前記コイルの位置決め用環状溝を設けると好適であり、コイル設置用部材を別途必要とせずコイルを板状弾性体に位置決めかつ装着することができ、生産性及びコンパクト化の点において有利であるという作用を有する。
【0022】
さらに、請求項に記載のように、上記発明の携帯機器用振動発生装置をぺージャー等の携帯機器に内蔵すると好適であり、コンパクトかつ軽量でありながら呼出音及び体感振動の2種類の呼出信号を切替え自在に使用でき、携帯時の装置の向きや落下による衝撃等にかかわらず、異音を発しない携帯機器を実現することができるという作用を有する。
【0023】
【発明の実施の形態】
以下、本発明の実施形態について図1〜9を参照しながら説明する。
【0024】
図1は本発明の振動発生装置の第1の実施形態の断面図であり、図2はその分解斜視図である。1、2は銅板等の金属板よりなる板状弾性体、5はコイル、6は樹脂や金属等からなる枠体、7はヨーク3及び磁石4よりなる磁界発生体、8はゴム等からなる軟弾性体、9は底部カバーをそれぞれ示す。
【0025】
枠体6の底面に、枠体6と底部カバー9との間に周囲が挟持されるように第1の板状弾性体1が設けられ、その板状弾性体1と相対向するように、枠体6の頂面に第2の板状弾性体2がその周囲において固着されている。
【0026】
第1の板状弾性体1は平面からみて渦巻型形状、また、断面からみて中央が盛り上がった台形形状をしており、中央部1aの中心に孔1bを有している。
【0027】
板状弾性体1は上記のような構成により、中央部1aが上下することによって、ヨーク3及び磁石4からなる磁界発生体7を振動させる。
【0028】
板状弾性体1の中央部1aに載置する形で、前記孔1bを利用して取り付けられているヨーク3は、純鉄やパーマロイ等の磁性材料からなり、円盤状の導体部3aと、この導体部3aから上方に突出する中央部3bと、導体部3aの外周に位置して上方に突出する円環状の外周部3cとからなる。ヨーク3は底面に凸部3dを有しており、この凸部3dを板状弾性体1中央部1aの孔1bに挿入して位置決めされる。
【0029】
上記のように、ヨーク3底面の凸部3dが板状弾性体1中央部1aの孔1bと嵌合するよう構成したことから、組み立て工程において生産性向上及びコスト低減を図ることができる。
【0030】
ヨーク3の外周面3cの内周面には円環状の磁石4が導体部3aと隙間を設けて固着され、N極側は外周部3cの内周面に接し、S極側はヨーク3の中央部3bの外周側に向け一定間隔を保持して設けられている。円環状の磁石4は、例えば希土類系磁石材料からなるものを用いると好適である。
【0031】
枠体6の頂面に設置された板状弾性体2は、中央部2aに位置決め用の環状溝2bを有し、その環状溝2b内に保持される形でコイル5が下方に突出するように設置されている。コイル5は銅線の表面に樹脂を焼き付けたエナメル線を用いて、円筒形状で構成している。コイル5は前記磁石4の内周側で、前記ヨーク3の中央部3bの外周側に位置するように配置され、ヨーク3及び磁石4からなる磁界発生体7の磁界内に位置している。
【0032】
上記のように板状弾性体2に前記位置決め用環状溝2bを設けることによって、コイル5と板状弾性体2の組立工程において生産性の向上を図ることができる。
【0033】
コイル5の破損を防ぐため、磁石4とコイル5との距離X、及びヨーク3の中央部3bとコイル5との距離Yとはいずれも、軟弾性体8とヨーク3の外周部3cとの距離Zより大となるように設定している。
【0034】
前記板状弾性体1とヨーク3及び磁石4からなる磁界発生体7とが第1の振動系を構成し、前記板状弾性体2とコイル5とが第2の振動系を構成している。発振回路を通じて電流をコイル5に通電すると、磁界発生体7と磁界内に配されたコイル5との相互磁気作用により両者が振動し、それぞれが取り付けられた板状弾性体1又は2を振動させる。
【0035】
尚、磁界発生体7を設置した状態での第1の板状弾性体1の共振周波数は50〜150Hzに設定し、第2の板状弾性体2の共振周波数は2〜3kHzに設定している。発振回路を通じて例えば250Hz以下の所定値の周波数の電流をコイル5に通電すると、板状弾性体1が共振を行い身体に感じる振動を発生させ、600Hz以上の所定値の周波数の電流をコイル5に通電すると板状弾性体2が共振を行って呼出音を発生させる。
【0036】
上記のようにヨーク3と磁石4とで円環状の磁界発生体7を構成することにより、磁石をヨークの中心に配置する構成と比較して、漏れ磁束が少なく、磁気効率及びコンパクト化の点で有利である。また、磁界発生体7及びコイル5を円環状にすることにより、第1の振動系での質量のアンバランスによる不安定な振動を防止でき、さらに生産性の向上を図ることができる。
【0037】
枠体6の内周面には、前記ヨーク3の外周部3cと一定の間隔を設けて配した円環状の軟弾性体8を設けている。この軟弾性体8によって、振動発生装置本体がどのような向きになっても、あるいは落下衝撃等が加わっても、ヨーク3の自励振動を吸収し、ヨーク3が枠体6内周面に接触することで起こる異音発生を抑えている。軟弾性体8はゴム系のシール材等を用いると好適である。
【0038】
尚、軟弾性体8は上述したものに限らず、図6〜9に示すように様々な形状、構成とすることができる。図6に示すように、軟弾性体8を板状弾性体1、2のそれぞれに沿って配置し、その際軟弾性体8を、ヨーク3の上端、下端部それぞれと重複する重複部Wを有する長さに形成すれば、ヨーク3の振動を減衰させることなくヨーク3の振動を1方向に規制して、異音発生を防ぐことができる。
【0039】
又、軟弾性体8は必ずしも円環状とする必要はなく、図7(a)、(b)に示すような点状の突起や、図8(a)、(b)に示すような鉛直方向に棒状の突起を円周上に断続して配する構成でもよい。上記のように断続的な突起を樹脂等で形成する構成にすれば、円環状のものに比べてヨーク3の振動の減衰が少なく、さらに製作しやすいという利点がある。
【0040】
あるいは図9に示すように、軟弾性体8に自由端部8aを設けた構成としてもよい。この場合、軟弾性体8は円環状であっても、又は円周上に断続的に設けたものであってもよい。自由端部8aを設けることにより、ヨーク3の振動がより柔軟に吸収されるため振動を減衰することがなく、かつヨーク3の振動を1方向に規制することができる。
【0041】
図3は本発明の振動発生装置の第2の実施形態を示す断面図である。枠体6内に、下端を底部カバー9に固定し、ヨーク3の中心部を貫通するように配したガイドシャフト10を設けて、枠体6の中心線方向の振動を方向規制することにより、装置本体がどのような向きになっても、あるいは落下衝撃等が加わっても、ヨーク3を常に一方向に振動させることができ、枠体6内周面と接触することによって起こる異音発生を抑える構成となっている。その他の構成は第1の実施の形態と同様なので説明を省略する。
【0042】
図4は本発明の振動発生装置の第3の実施形態を示す断面図である。枠体6内に、ヨーク3の外周部3cの上面及び下面にそれぞれ左右1対の帯板状弾性支持体11a、11bを取り付け、ヨーク3を枠体6内周面との間に一定間隔を設けて保持し、枠体6の中心線方向の振動を方向規制することにより、装置本体がどのような向きになっても、あるいは落下衝撃等が加わっても、ヨーク3を常に一方向に振動させることができ、枠体6内周面と接触することによって起こる異音発生を抑える構成となっている。その他の構成は第1の実施の形態と同様なので説明を省略する。
【0043】
図5は前記コイル5に発振回路16を通じて周波数の異なる電流を切替え可能に与える構成の一例を示している。図5において、5は円筒型コイル、15は直流電源、16はCPU14、トランジスタ13、抵抗器12a、12b等で構成される発振回路である。
【0044】
CPU14からトランジスタ13には通電と通電停止を繰り返すパルス信号が与えられ、このパルス信号の周波数と同周波数の電流がコイル5に流れる。コイル5に通電されると、磁石4を備えたヨーク3とコイル5とが電磁力により振動し、この振動が第1の板状弾性体1及び第2の板状弾性体2に伝わり、二次的に第1の振動系又は第2の振動系が振動する。CPU14は前記パルス信号の周波数を、第1の振動系を共振させる第1の周波数と、第2の振動系を共振させる第2の周波数のいずれをも選択できるように構成されている。
【0045】
CPU14が第1の周波数のパルス信号をトランジスタ13に与え、例えば第1の振動系の共振周波数に合わせて100Hzの周波数でコイル5に通電すると、板状弾性体1を介して装置自体が前記共振周波数に同期して共振し、体感振動を発生する。これにより、無音で他人に迷惑をかけることなく携帯者の呼び出しを行うことができる。
【0046】
他方、CPU14が第2の周波数のパルス信号をトランジスタ13に与え、例えば第2の振動系の共振周波数に併せて2.7kHzの周波数でコイル5に通電すると、板状弾性体2を介して装置自体が前記共振周波数と同期して共振し、スピーカーとして作用するため呼出音を発生させることができる。
【0047】
上記第1と第2の振動系それぞれに対する周波数の設定は、体感振動発生用には周波数を250Hz以下とし、呼出音発生用には周波数を600Hz以上にすると好適である。これはISO226(1961)の等ランドネス曲線に基き、周波数250Hz以下の振動は人間の耳には聴こえず、機械的振動のみ身体に伝えることができるからであり、又、周波数600Hz以上の振動は低い音圧レベルにて人間の耳で聴くことができるからである。
【0048】
このように1つの振動発生装置で2種類の呼出信号を発生させることができるため、前記した従来例と比較して、より小型で軽量、かつ振動の大きな振動発生装置を実現することが可能となる。
【0049】
上記振動発生装置は、ぺージャーや腕時計等の携帯機器に組み込んで用いることができる。例えばぺージャーの携帯者が切替えスイッチで呼出音と体感振動のいずれか一方を選択できるように構成することができる。また、前記CPU14からの第1の周波数のパルス信号と第2の周波数のパルス信号とを一定時間毎に交互に発生させて、呼出音と体感振動の両方が交互に生じるように構成することもできる。
【0050】
【発明の効果】
本発明の携帯機器用振動発生装置は、コンパクトかつ軽量な構造でありながら、呼出音と体感振動という2種類の呼出信号を使い分け自在に発生させることができる。
【0051】
また、振動発生装置本体がどのような向きになっても、あるいは落下衝撃等が加わっても、磁界発生体が枠体内周面と接触することを防いだり、たとえ接触してもその衝撃を緩和したりすることができるため、異音の発生を防止することができる。
【0052】
さらに本発明の振動発生装置をぺージャーや腕時計などの携帯機器に内蔵させることで、呼出音と体感振動という2種類の呼出信号機能を備えると共に、異音の発生を防止することができる携帯機器を提供することができる。
【図面の簡単な説明】
【図1】本発明の携帯機器用振動発生装置の第1の実施形態を示す断面図。
【図2】同分解斜視図。
【図3】本発明の携帯機器用振動発生装置の第2の実施形態を示す断面図。
【図4】本発明の携帯機器用振動発生装置の第3の実施形態を示す断面図。
【図5】本発明の携帯機器用振動発生装置の発振回路を示す概略図。
【図6】本発明の携帯機器用振動発生装置の第1の実施形態の変形例を示す断面図。
【図7】本発明の携帯機器用振動発生装置の第1の実施形態の変形例を示し、(a)は平面図、(b)は斜視図。
【図8】本発明の携帯機器用振動発生装置の第1の実施形態の変形例を示し、(a)は平面図、(b)は斜視図。
【図9】本発明の携帯機器用振動発生装置の第1の実施形態の変形例を示す断面図。
【図10】従来のぺージャー用振動発生装置を示す斜視図。
【符号の説明】
1 板状弾性体
2 板状弾性体
3 ヨーク
4 磁石
5 コイル
6 枠体
7 磁界発生体
8 軟弾性体
10 ガイドシャフト
11 板状弾性支持体
16 発振回路
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a pager (pager) and a portable small-sized information transmission device, and more specifically, transmits information to a pager, a mobile phone, and a human body by transmitting vibrations or sounds. The present invention relates to a vibration generating device in other portable devices having signal receiving and transmitting functions.
[0002]
[Prior art]
Conventionally, as this type of small-sized information transmission device having a function of generating vibration, a pager with a high penetration rate can be cited as a typical example, and the following description will focus on the pager.
[0003]
Originally, when the internal receiver received a radio call signal by phone, the pager generated a ringing tone to inform the mobile phone that the phone had been called. There was a problem that other people knew the necessity of communication. As a countermeasure, at present, in addition to notifying with sound, a function of generating vibration and notifying a carrier is provided, and either a sounding signal or a vibration calling signal can be selected. In these pagers, as a vibration device that generates vibrations that can be felt by the body, the one shown in FIG. 10 is conventionally used. In FIG. 10, 17 is a cylindrical coreless motor, 19 is a rotary shaft, 18 is an eccentric weight made of high-specific-polymerized gold such as tungsten, and a weight 18 is provided on the rotary shaft 19 protruding from the end face of the cylindrical coreless motor 17. Is attached and formed. The eccentric weight 18 has a semicircular shape or a fan plate shape for partial circular movement and eccentric vibration, and when the cylindrical coreless motor 17 is energized, the eccentric weight 18 rotates and becomes secondary. It is designed to generate vibration.
[0004]
[Problems to be solved by the invention]
However, the conventional vibration generator has the following problems with respect to the trend of downsizing portable devices such as pagers.
[0005]
(1) In a configuration in which an eccentric weight is attached to a cylindrical coreless motor, a large load is applied to the rotating shaft, so that it is not possible to sufficiently meet demands for further downsizing and long-term use.
[0006]
Moreover, in this structure, there exists a subject that an eccentric weight tends to remove | deviate from a rotating shaft, and it is necessary to assemble a great deal of time for quality control.
[0007]
(2) In the conventional configuration, a small speaker that generates sound is separately required, and the small speaker and the vibration generating device are separately incorporated, which is an obstacle to space saving in downsizing.
[0008]
In order to solve the above-mentioned problem, Japanese Patent Application No. 7-228138 provides a vibration generator having a structure capable of both calling by sound and calling by bodily sensation vibration, but leaves the following problems. ing.
[0009]
(1) When sensible vibrations are generated inside the vibration generator, the oscillating yoke portions move in directions other than the opposing elastic body direction due to the occasional unstable self-excited vibration. It may hit the body and generate abnormal noise.
[0010]
(2) When the vibration generator is attached to the portable device, the vibrating yoke portion must move smoothly in one direction regardless of the orientation of the portable device, but this is insufficient.
[0011]
(3) Even when a force is applied to the vibration generator from the outside, particularly when a drop impact is applied, the vibrating yoke portion must vibrate in the same direction, but this is insufficient.
[0012]
Accordingly, an object of the present invention is to solve the above problems.
[0013]
[Means for Solving the Problems]
In order to solve the above-mentioned problem, the invention according to claim 1 of the present application is configured such that a pair of plate-like elastic bodies are supported by a frame body so as to face each other, and one plate-like elastic body has a yoke and a magnet. A first vibration system is configured by attaching a magnetic field generator having the above structure, and a second vibration system is configured by attaching a coil to the other plate-like elastic body, and the coil is disposed in the magnetic field of the magnetic field generator. A current having a different frequency is switchably applied to the coil through an oscillation circuit, and the first vibration system or the second vibration system is selectively resonated to generate vibrations of the respective resonance frequencies; and The plate-like elastic body constituting the first vibration system is configured to vibrate in the direction of the center line of the frame body, and the inner peripheral surface of the frame body is provided with a certain distance from the outer peripheral portion of the yoke. with disposing a soft elastic body, the distance between the soft elastic body and the yoke Ri is one of the vibration generator for portable devices, characterized in that to increase the distance between the distance and the yoke of the said magnet coil coil.
[0014]
According to the above invention, while having a compact and lightweight structure in which a coil and a magnetic field generator are built in, it is possible to generate two kinds of ringing signals, ringing sound and bodily sensation vibration, so that they can be used properly. whatever the orientation, or even drop impact or the like is applied, by the yoke in contact with the soft elastic body which is arranged inside the frame periphery, it is possible to prevent the occurrence of abnormal noise, the yoke And the magnet can be prevented from colliding with the coil and being damaged .
[0015]
In the invention according to claim 2 of the present application, a pair of plate-like elastic bodies are supported by the frame body so as to face each other, and a magnetic field generator having a yoke and a magnet is attached to one plate-like elastic body. The first vibration system is configured, a coil is attached to the other plate-like elastic body to form a second vibration system, the coil is arranged in the magnetic field of the magnetic field generator, and an oscillation circuit is connected to the coil. The first vibration system or the second vibration system is selectively resonated to generate vibrations of the respective resonance frequencies, and the first vibration system A plate-like elastic body configured to vibrate in the direction of the center line of the frame body, and a direction regulating member for regulating the plate-like elastic body to vibrate in the direction of the center line direction of the frame body. And this direction regulating member passes through the central part of the yoke Those of the vibration generator for portable devices, which is a the guide shaft.
[0017]
In the invention according to claim 3 of the present application, a pair of plate-like elastic bodies are supported by the frame so as to face each other, and a magnetic field generator having a yoke and a magnet is attached to one plate-like elastic body. The first vibration system is configured, a coil is attached to the other plate-like elastic body to form a second vibration system, the coil is arranged in the magnetic field of the magnetic field generator, and an oscillation circuit is connected to the coil. The first vibration system or the second vibration system is selectively resonated to generate vibrations of the respective resonance frequencies, and the first vibration system A plate-like elastic body configured to vibrate in the direction of the center line of the frame body, and a direction regulating member for regulating the plate-like elastic body to vibrate in the direction of the center line direction of the frame body. And this direction regulating member is the upper surface and the lower surface of the outer periphery of the yoke It is related with the vibration generator for portable devices characterized by being a pair of plate-shaped elastic support body which each hold | maintains to a frame.
[0019]
According to these inventions, it is possible to generate two kinds of ringing signals, ringing sound and body vibration, freely and selectively, while having a compact and lightweight structure in which a coil and a magnetic field generator are incorporated. Prevents excitation vibration and avoids the yoke vibrating in the direction of the center line of the frame body and coming into contact with the peripheral surface of the frame body regardless of the orientation of the device body or a drop impact. It is possible to prevent the generation of abnormal noise.
[0020]
As a specific configuration of the invention, mounting the yoke central portion and the outer peripheral portion is protruded toward the plate-like elastic body of the counterpart to the plate-like elastic bodies hand, by placing a magnet on an outer peripheral portion inside the yoke A first vibration system is configured, and a cylindrical coil is attached to the other plate-like elastic body so as to protrude toward the other plate-like elastic body, and the cylindrical coil is arranged on the inner peripheral side of the magnet and on the yoke. the second vibration system is constituted by arranging so as to be located on the outer peripheral side of the central portion, or Tsu the first vibration system constitute by that plate-like elastic body, a bottom surface of said top surface surrounding the top surface Preferably, it is formed of a hat-shaped metal elastic body having a connecting portion that connects the top surface and the bottom surface.
[0021]
In the above invention, as described in claim 4 , it is preferable to provide an annular groove for positioning the coil on the plate-like elastic body on which the coil is arranged, and the coil is plated without requiring a coil installation member separately. It can be positioned and attached to the elastic body, and has an effect that it is advantageous in terms of productivity and compactness.
[0022]
Furthermore, as described in claim 5 , it is preferable to incorporate the portable device vibration generating device of the present invention in a portable device such as a pager, and the two types of ringing sound and bodily sensation vibration are compact and lightweight. The signal can be used in a switchable manner, and it has an effect that it is possible to realize a portable device that does not generate an abnormal sound regardless of the orientation of the device at the time of carrying or an impact caused by dropping.
[0023]
DETAILED DESCRIPTION OF THE INVENTION
Hereinafter, embodiments of the present invention will be described with reference to FIGS.
[0024]
FIG. 1 is a sectional view of a first embodiment of the vibration generator of the present invention, and FIG. 2 is an exploded perspective view thereof. 1 and 2 are plate-like elastic bodies made of a metal plate such as a copper plate, 5 is a coil, 6 is a frame made of resin or metal, 7 is a magnetic field generator made of a yoke 3 and a magnet 4, and 8 is made of rubber or the like. A soft elastic body 9 and a bottom cover 9 respectively.
[0025]
The first plate-like elastic body 1 is provided on the bottom surface of the frame body 6 so that the periphery is sandwiched between the frame body 6 and the bottom cover 9, and is opposed to the plate-like elastic body 1. The second plate-like elastic body 2 is fixed to the top surface of the frame body 6 at the periphery thereof.
[0026]
The first plate-like elastic body 1 has a spiral shape when viewed from the plane, and a trapezoidal shape where the center rises when viewed from the cross section, and has a hole 1b at the center of the central portion 1a.
[0027]
The plate-like elastic body 1 vibrates the magnetic field generator 7 composed of the yoke 3 and the magnet 4 when the central portion 1a moves up and down with the above-described configuration.
[0028]
The yoke 3 mounted using the hole 1b in a form to be placed on the central portion 1a of the plate-like elastic body 1 is made of a magnetic material such as pure iron or permalloy, and has a disk-like conductor portion 3a. The center part 3b which protrudes upwards from this conductor part 3a, and the annular outer peripheral part 3c which is located in the outer periphery of the conductor part 3a and protrudes upwards are comprised. The yoke 3 has a convex portion 3d on the bottom surface, and the convex portion 3d is inserted into the hole 1b of the central portion 1a of the plate-like elastic body 1 and positioned.
[0029]
As described above, the convex portion 3d on the bottom surface of the yoke 3 is configured to be fitted into the hole 1b of the central portion 1a of the plate-like elastic body 1, so that productivity can be improved and cost can be reduced in the assembly process.
[0030]
An annular magnet 4 is fixed to the inner peripheral surface of the outer peripheral surface 3c of the yoke 3 with a gap between the conductor portion 3a, the N pole side is in contact with the inner peripheral surface of the outer peripheral portion 3c, and the S pole side is the yoke 3's side. It is provided at a constant interval toward the outer peripheral side of the central portion 3b. The annular magnet 4 is preferably made of, for example, a rare earth magnet material.
[0031]
The plate-like elastic body 2 installed on the top surface of the frame body 6 has an annular groove 2b for positioning at the center portion 2a, and the coil 5 protrudes downward while being held in the annular groove 2b. Is installed. The coil 5 is formed in a cylindrical shape using an enameled wire obtained by baking a resin on the surface of a copper wire. The coil 5 is disposed on the inner peripheral side of the magnet 4 so as to be positioned on the outer peripheral side of the central portion 3 b of the yoke 3, and is positioned in the magnetic field of the magnetic field generator 7 including the yoke 3 and the magnet 4.
[0032]
By providing the positioning annular groove 2b in the plate-like elastic body 2 as described above, the productivity can be improved in the assembly process of the coil 5 and the plate-like elastic body 2.
[0033]
In order to prevent damage to the coil 5, the distance X between the magnet 4 and the coil 5 and the distance Y between the central portion 3 b of the yoke 3 and the coil 5 are both between the soft elastic body 8 and the outer peripheral portion 3 c of the yoke 3. It is set to be larger than the distance Z.
[0034]
The plate-like elastic body 1 and the magnetic field generator 7 composed of the yoke 3 and the magnet 4 constitute a first vibration system, and the plate-like elastic body 2 and the coil 5 constitute a second vibration system. . When a current is passed through the coil 5 through the oscillation circuit, both vibrate due to the mutual magnetic action between the magnetic field generator 7 and the coil 5 arranged in the magnetic field, and vibrate the plate-like elastic body 1 or 2 to which each is attached. .
[0035]
The resonant frequency of the first elastic plate 1 with the magnetic field generator 7 installed is set to 50 to 150 Hz, and the resonant frequency of the second elastic plate 2 is set to 2 to 3 kHz. Yes. When a current having a predetermined frequency of 250 Hz or less is applied to the coil 5 through the oscillation circuit, the plate-like elastic body 1 resonates to generate vibrations felt by the body, and a current having a predetermined frequency of 600 Hz or more is applied to the coil 5. When energized, the plate-like elastic body 2 resonates and generates a ringing tone.
[0036]
By forming the annular magnetic field generator 7 with the yoke 3 and the magnet 4 as described above, there is less leakage magnetic flux compared with the configuration in which the magnet is arranged at the center of the yoke, and the point of magnetic efficiency and compactness. Is advantageous. Further, by forming the magnetic field generator 7 and the coil 5 in an annular shape, it is possible to prevent unstable vibration due to mass imbalance in the first vibration system, and to further improve productivity.
[0037]
An annular soft elastic body 8 is provided on the inner peripheral surface of the frame body 6 so as to be spaced apart from the outer peripheral portion 3 c of the yoke 3. The soft elastic body 8 absorbs the self-excited vibration of the yoke 3 regardless of the orientation of the vibration generator main body or a drop impact or the like, and the yoke 3 is attached to the inner peripheral surface of the frame body 6. Abnormal noise generated by contact is suppressed. As the soft elastic body 8, it is preferable to use a rubber-based sealing material or the like.
[0038]
The soft elastic body 8 is not limited to the one described above, and can have various shapes and configurations as shown in FIGS. As shown in FIG. 6, the soft elastic body 8 is arranged along each of the plate-like elastic bodies 1 and 2, and at that time, the soft elastic body 8 is overlapped with the upper and lower ends of the yoke 3. If it is formed to have a length, the vibration of the yoke 3 can be regulated in one direction without attenuating the vibration of the yoke 3, thereby preventing the generation of abnormal noise.
[0039]
Further, the soft elastic body 8 does not necessarily have an annular shape, and the dot-like protrusions as shown in FIGS. 7A and 7B or the vertical direction as shown in FIGS. 8A and 8B. Alternatively, the rod-like protrusions may be arranged intermittently on the circumference. If the intermittent projections are formed of resin or the like as described above, there is an advantage that the vibration of the yoke 3 is less attenuated than that of an annular one, and that it is easier to manufacture.
[0040]
Or as shown in FIG. 9, it is good also as a structure which provided the free end part 8a in the soft elastic body 8. FIG. In this case, the soft elastic body 8 may be annular or may be provided intermittently on the circumference. By providing the free end portion 8a, the vibration of the yoke 3 is absorbed more flexibly, so that the vibration is not attenuated and the vibration of the yoke 3 can be regulated in one direction.
[0041]
FIG. 3 is a sectional view showing a second embodiment of the vibration generator of the present invention. In the frame body 6, a lower end is fixed to the bottom cover 9, a guide shaft 10 is provided so as to penetrate the central portion of the yoke 3, and the vibration in the direction of the center line of the frame body 6 is regulated. The yoke 3 can always vibrate in one direction regardless of the orientation of the main body of the apparatus or a drop impact is applied, and abnormal noise caused by contact with the inner peripheral surface of the frame body 6 can be generated. It has a configuration to suppress. Since other configurations are the same as those of the first embodiment, description thereof is omitted.
[0042]
FIG. 4 is a sectional view showing a third embodiment of the vibration generator of the present invention. A pair of left and right band plate-like elastic supports 11a and 11b are attached to the upper surface and the lower surface of the outer peripheral portion 3c of the yoke 3 in the frame 6, respectively, and the yoke 3 is spaced from the inner peripheral surface of the frame 6 at a constant interval. The yoke 3 is always vibrated in one direction regardless of the orientation of the apparatus main body or a drop impact or the like by restricting the vibration in the center line direction of the frame body 6 by being provided and held. Therefore, it is configured to suppress the generation of abnormal noise caused by contact with the inner peripheral surface of the frame body 6. Since other configurations are the same as those of the first embodiment, description thereof is omitted.
[0043]
FIG. 5 shows an example of a configuration in which currents having different frequencies are provided to the coil 5 through the oscillation circuit 16 in a switchable manner. In FIG. 5, 5 is a cylindrical coil, 15 is a DC power source, 16 is an oscillation circuit composed of a CPU 14, a transistor 13, resistors 12a and 12b, and the like.
[0044]
A pulse signal that repeats energization and deenergization is applied from the CPU 14 to the transistor 13, and a current having the same frequency as the frequency of the pulse signal flows through the coil 5. When the coil 5 is energized, the yoke 3 provided with the magnet 4 and the coil 5 are vibrated by electromagnetic force, and this vibration is transmitted to the first plate-like elastic body 1 and the second plate-like elastic body 2. Next, the first vibration system or the second vibration system vibrates. The CPU 14 is configured so that the frequency of the pulse signal can be selected from either a first frequency for resonating the first vibration system or a second frequency for resonating the second vibration system.
[0045]
When the CPU 14 gives a pulse signal having a first frequency to the transistor 13 and energizes the coil 5 at a frequency of 100 Hz in accordance with the resonance frequency of the first vibration system, for example, the device itself resonates via the elastic plate 1. Resonates in synchronism with the frequency and generates vibrations. Thereby, a caller can be called without causing trouble to others with no sound.
[0046]
On the other hand, when the CPU 14 gives a pulse signal of the second frequency to the transistor 13 and energizes the coil 5 at a frequency of 2.7 kHz in combination with the resonance frequency of the second vibration system, for example, the device is connected via the plate-like elastic body 2. Since it resonates in synchronization with the resonance frequency and acts as a speaker, it can generate a ringing tone.
[0047]
The frequency setting for each of the first and second vibration systems is preferably set to a frequency of 250 Hz or less for experiencing vibrations and a frequency of 600 Hz or more for generating ringing sounds. This is because vibrations with a frequency of 250 Hz or less cannot be heard by human ears and only mechanical vibrations can be transmitted to the body based on the ISO 226 (1961) equal landness curve, and vibrations with a frequency of 600 Hz or more are low. This is because it can be heard by the human ear at the sound pressure level.
[0048]
Since two types of calling signals can be generated by one vibration generator as described above, it is possible to realize a vibration generator that is smaller, lighter, and has a larger vibration than the conventional example described above. Become.
[0049]
The vibration generator can be used by being incorporated in a portable device such as a pager or a wristwatch. For example, it can be configured such that a pager's carrier can select either a ringing tone or a body vibration with a changeover switch. Alternatively, the first frequency pulse signal and the second frequency pulse signal from the CPU 14 may be alternately generated at fixed time intervals so that both the ringing tone and the body vibration are generated alternately. it can.
[0050]
【The invention's effect】
The vibration generator for portable devices of the present invention can generate two types of ringing signals, ringing sound and bodily sensation vibration, while using a compact and lightweight structure.
[0051]
In addition, the magnetic field generator is prevented from coming into contact with the peripheral surface of the frame, regardless of the orientation of the vibration generator body or a drop impact, etc. Therefore, the generation of abnormal noise can be prevented.
[0052]
Furthermore, by incorporating the vibration generating device of the present invention in a portable device such as a pager or a wristwatch, the portable device has two types of calling signal functions of ringing sound and body vibration and can prevent the generation of abnormal noise. Can be provided.
[Brief description of the drawings]
FIG. 1 is a cross-sectional view showing a first embodiment of a vibration generator for portable equipment according to the present invention.
FIG. 2 is an exploded perspective view of the same.
FIG. 3 is a cross-sectional view showing a second embodiment of the vibration generator for portable equipment of the present invention.
FIG. 4 is a cross-sectional view showing a third embodiment of the vibration generator for portable equipment of the present invention.
FIG. 5 is a schematic diagram showing an oscillation circuit of a vibration generator for portable equipment according to the present invention.
FIG. 6 is a cross-sectional view showing a modified example of the first embodiment of the vibration generator for portable devices of the present invention.
7A and 7B show a modification of the first embodiment of the vibration generator for a portable device of the present invention, where FIG. 7A is a plan view and FIG. 7B is a perspective view.
FIGS. 8A and 8B show a modification of the first embodiment of the vibration generator for portable equipment of the present invention, wherein FIG. 8A is a plan view and FIG. 8B is a perspective view.
FIG. 9 is a cross-sectional view showing a modification of the first embodiment of the vibration generator for portable devices of the present invention.
FIG. 10 is a perspective view showing a conventional pager vibration generator.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 Plate-shaped elastic body 2 Plate-shaped elastic body 3 Yoke 4 Magnet 5 Coil 6 Frame body 7 Magnetic field generator 8 Soft elastic body 10 Guide shaft 11 Plate-shaped elastic support body 16 Oscillation circuit

Claims (5)

1対の板状弾性体を相対向するようにして枠体に支持させ、一方の板状弾性体にはヨーク及び磁石を有する磁界発生体を取り付けて第1の振動系を構成し、他方の板状弾性体にはコイルを取り付けて第2の振動系を構成し、前記コイルを前記磁界発生体の磁界内に配し、前記コイルに発振回路を通じて周波数の異なる電流を切り替え可能に与え、第1の振動系又は第2の振動系を選択的に共振させて、それぞれの共振周波数の振動を発生させるよう構成し、かつ前記第1の振動系を構成している板状弾性体が枠体の中心線方向に振動するように構成され、枠体の内周面に、前記ヨークの外周部と一定の間隔を設けて軟弾性体を配設するとともに、前記ヨークと前記軟弾性体との距離より、前記磁石と前記コイルとの距離および前記ヨークと前記コイルとの距離を大きくしたことを特徴とする携帯機器用振動発生装置。A pair of plate-like elastic bodies are supported by the frame so as to face each other, and a magnetic field generator having a yoke and a magnet is attached to one plate-like elastic body to constitute the first vibration system, and the other A coil is attached to the plate-like elastic body to form a second vibration system, the coil is placed in the magnetic field of the magnetic field generator, and currents having different frequencies are given to the coil through an oscillation circuit so as to be switched, A plate-like elastic body configured to selectively resonate one vibration system or the second vibration system to generate vibrations of the respective resonance frequencies, and to constitute the first vibration system is a frame body The soft elastic body is disposed on the inner peripheral surface of the frame body at a certain distance from the outer peripheral portion of the yoke, and the yoke and the soft elastic body From the distance, the distance between the magnet and the coil and the yoke and the front Vibration generator for portable devices, characterized in that to increase the distance between the coils. 1対の板状弾性体を相対向するようにして枠体に支持させ、一方の板状弾性体にはヨーク及び磁石を有する磁界発生体を取り付けて第1の振動系を構成し、他方の板状弾性体にはコイルを取り付けて第2の振動系を構成し、前記コイルを前記磁界発生体の磁界内に配し、前記コイルに発振回路を通じて周波数の異なる電流を切り替え可能に与え、第1の振動系又は第2の振動系を選択的に共振させて、それぞれの共振周波数の振動を発生させるよう構成し、かつ前記第1の振動系を構成している板状弾性体が枠体の中心線方向に振動するように構成されると共に、前記板状弾性体が枠体の中心線方向に振動するように規制する方向規制部材を備え、かつこの方向規制部材がヨークの中心部を貫通するように配したガイドシャフトであることを特徴とする携帯機器用振動発生装置。A pair of plate-like elastic bodies are supported by the frame so as to face each other, and a magnetic field generator having a yoke and a magnet is attached to one plate-like elastic body to constitute the first vibration system, and the other A coil is attached to the plate-like elastic body to form a second vibration system, the coil is placed in the magnetic field of the magnetic field generator, and currents having different frequencies are given to the coil through an oscillation circuit so as to be switched, A plate-like elastic body configured to selectively resonate one vibration system or the second vibration system to generate vibrations of the respective resonance frequencies, and to constitute the first vibration system is a frame body And a direction restricting member for restricting the plate-like elastic body to vibrate in the direction of the center line of the frame , and the direction restricting member covers the central portion of the yoke. that the guide shaft arranged to pass through Vibration generator for portable devices to butterflies. 1対の板状弾性体を相対向するようにして枠体に支持させ、一方の板状弾性体にはヨーク及び磁石を有する磁界発生体を取り付けて第1の振動系を構成し、他方の板状弾性体にはコイルを取り付けて第2の振動系を構成し、前記コイルを前記磁界発生体の磁界内に配し、前記コイルに発振回路を通じて周波数の異なる電流を切り替え可能に与え、第1の振動系又は第2の振動系を選択的に共振させて、それぞれの共振周波数の振動を発生させるよう構成し、かつ前記第1の振動系を構成している板状弾性体が枠体の中心線方向に振動するように構成されると共に、前記板状弾性体が枠体の中心線方向に振動するように規制する方向規制部材を備え、かつこの方向規制部材が、ヨークの外周部の上面及び下面をそれぞれ枠体に保持する1対の板状弾性支持体であることを特徴とする携帯機器用振動発生装置。 A pair of plate-like elastic bodies are supported by the frame so as to face each other, and a magnetic field generator having a yoke and a magnet is attached to one plate-like elastic body to constitute the first vibration system, and the other A coil is attached to the plate-like elastic body to form a second vibration system, the coil is placed in the magnetic field of the magnetic field generator, and currents having different frequencies are given to the coil through an oscillation circuit so as to be switched, A plate-like elastic body configured to selectively resonate one vibration system or the second vibration system to generate vibrations of the respective resonance frequencies, and to constitute the first vibration system is a frame body And a direction restricting member for restricting the plate-like elastic body to vibrate in the direction of the center line of the frame, and the direction restricting member includes an outer peripheral portion of the yoke. A pair of plates each holding the upper and lower surfaces of the frame to the frame Vibration generator for portable equipment characterized in that an elastic support. コイルを配置した板状弾性体に前記コイルの位置決め用環状溝を設けて、この環状溝を利用して前記コイルを保持した請求項1、2又は3記載の携帯機器用振動発生装置。Provided positioning annular groove of the coil plate-like elastic member disposed coils, portable apparatus for the vibration generator of the annular groove by utilizing the claims 1, 2 or 3, wherein the holding said coil. 請求項1〜のいずれか1項に記載の携帯機器用振動発生装置を内蔵した携帯機器。A portable device incorporating the vibration generator for a portable device according to any one of claims 1 to 4 .
JP27092996A 1995-12-15 1996-10-14 Vibration generator for portable devices Expired - Fee Related JP3748637B2 (en)

Priority Applications (7)

Application Number Priority Date Filing Date Title
JP27092996A JP3748637B2 (en) 1996-10-14 1996-10-14 Vibration generator for portable devices
KR1019960066401D KR19980032013A (en) 1995-12-15 1996-12-06 Vibration generator
US08/764,504 US5894263A (en) 1995-12-15 1996-12-12 Vibration generating apparatus
CN96121384A CN1099658C (en) 1995-12-15 1996-12-13 Vibration generating apparatus
MYPI96005271A MY114573A (en) 1995-12-15 1996-12-14 Vibration generating apparatus
SG9611724A SG79927A1 (en) 1995-12-15 1996-12-14 Vibration generating apparatus
KR1019960066401A KR100245379B1 (en) 1995-12-15 1996-12-16 Vibration generating apparatus

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP27092996A JP3748637B2 (en) 1996-10-14 1996-10-14 Vibration generator for portable devices

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JPH10117472A JPH10117472A (en) 1998-05-06
JP3748637B2 true JP3748637B2 (en) 2006-02-22

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