JP2007282039A - Electromagnetic transducer - Google Patents

Electromagnetic transducer Download PDF

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JP2007282039A
JP2007282039A JP2006107798A JP2006107798A JP2007282039A JP 2007282039 A JP2007282039 A JP 2007282039A JP 2006107798 A JP2006107798 A JP 2006107798A JP 2006107798 A JP2006107798 A JP 2006107798A JP 2007282039 A JP2007282039 A JP 2007282039A
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permanent magnet
air holes
magnet plate
frame
electromagnetic transducer
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Masamitsu Ishii
政光 石井
Shuzo Uchiumi
秀三 内海
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Mitsubishi Electric Engineering Co Ltd
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Mitsubishi Electric Engineering Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To achieve ideal sound pressure/sound quality without decreasing the area of a magnetized portion in a permanent magnet plate by preventing vibration from colliding with a portion other than air holes, and effectively utilizing the range of a non-magnetized zone nz. <P>SOLUTION: An electromagnetic transducer comprises permanent magnet plates 2, 5 each formed with a band-like multi-pole magnetization pattern and frames 1, 6 for covering and supporting the permanent magnet plates 2, 5 and air holes of the permanent magnet 2 and the frame 1 are slit-shaped. Thus, effects can be provided that vibration is prevented from colliding with a portion other than the air holes 8 and ideal sound pressure/sound quality can be improved without decreasing the area of a magnetized portion. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

この発明は、例えばオーディオ信号を再生する電磁変換器に関するものである。   The present invention relates to an electromagnetic transducer for reproducing an audio signal, for example.

永久磁石と振動膜とを組み合わせた電磁変換器は様々な技術が提案されている。図4は従来の平板型の電磁変換器構成の概略図を示す図である。この種の電磁変換器は、通常、永久磁石板2,5と、その永久磁石板2,5に対向するように配置した振動膜4と、これら永久磁石板2,5と振動膜4との間に配置された緩衝部材3と、これらを覆うフレーム1,6を備えている。また振動膜4はコイルパターン7aを有するコイル7が全面に形成され、フレーム1及び永久磁石板2は円形形状の空気孔10を有する。
図2は平板型の電磁変換器の断面図を示した図であり、電磁変換器は、永久磁石板2,5と、その永久磁石板2,5に対向するように配置した振動膜4と、これらを覆い支持するフレーム1,6を備え、永久磁石板2,5は帯状のN極とS極が交互に現れる平行縞状の多極着磁パターンを有する。この永久磁石板2,5は異なる磁極同士の間隙部分のいわゆる未着磁部分(着磁のニュートラルゾーン)nzと称される部分を有する。また振動膜4は未着磁部分nzと対向する位置にコイル7を形成し、フレーム1及び永久磁石板2は図4に示すような円形形状の空気孔10を有する。
Various technologies have been proposed for electromagnetic transducers combining a permanent magnet and a vibrating membrane. FIG. 4 is a diagram showing a schematic diagram of the configuration of a conventional flat-plate electromagnetic transducer. This type of electromagnetic transducer is usually composed of permanent magnet plates 2, 5, a vibrating membrane 4 disposed so as to face the permanent magnet plates 2, 5, and the permanent magnet plates 2, 5 and the vibrating membrane 4. A shock-absorbing member 3 disposed between them and frames 1 and 6 covering them are provided. The vibrating membrane 4 has a coil 7 having a coil pattern 7 a formed on the entire surface, and the frame 1 and the permanent magnet plate 2 have circular air holes 10.
FIG. 2 is a cross-sectional view of a flat electromagnetic transducer, which includes permanent magnet plates 2 and 5 and a vibrating membrane 4 disposed so as to face the permanent magnet plates 2 and 5. The permanent magnet plates 2 and 5 have parallel striped multi-pole magnetized patterns in which strip-like N poles and S poles appear alternately. The permanent magnet plates 2 and 5 have a so-called non-magnetized portion (magnetized neutral zone) nz in a gap portion between different magnetic poles. The vibrating membrane 4 forms a coil 7 at a position facing the unmagnetized portion nz, and the frame 1 and the permanent magnet plate 2 have circular air holes 10 as shown in FIG.

この電磁変換器において、電流(オーディオ信号)が振動膜4のコイル7に流れると、コイル7と永久磁石板2,5の帯状の多極着磁パターンとが電磁的に結合するため、振動(オーディオ振動)がフレミングの法則により振動膜4に発生する。この振動はフレーム1及び永久磁石板2の円形の空気孔10(開口部)を通り、音が外部へフレーム1及び永久磁石板2のある方向に出力される。   In this electromagnetic transducer, when a current (audio signal) flows through the coil 7 of the vibration film 4, the coil 7 and the strip-shaped multipolar magnetization pattern of the permanent magnet plates 2 and 5 are electromagnetically coupled. Audio vibration) is generated in the diaphragm 4 by Fleming's law. This vibration passes through the circular air holes 10 (openings) of the frame 1 and the permanent magnet plate 2, and sound is output to the outside in the direction in which the frame 1 and the permanent magnet plate 2 exist.

特開平9−331596号公報(段落0013)Japanese Patent Laid-Open No. 9-331596 (paragraph 0013)

従来の電磁変換器は上記のように構成されており、振動膜より発生した振動は空気孔を通り、音が外部に出力されるため、空気孔の形状は未着磁部分nzの形状と合致するように配置する必要がある。しかし、円形の空気孔の形状は、従来のコーン形スピーカでフレームや永久磁石板の空気孔として多く用いられていたが、未着磁部分nzの形状と合致するような配置をすることができず、振動が空気孔以外の部分に衝突してしまう。このため未着磁部分nzの範囲(面積)が有効に利用できず、音は外部に伝わりにくかった。また振動が空気孔以外の部分に衝突することを防ぐため、円形の空気孔の形状を未着磁部分nzの幅より大きくした場合、永久磁石板の着磁部分が減少することで、永久磁石板の磁力が低下し、その結果、音圧が低下するという課題があった。   The conventional electromagnetic transducer is configured as described above, and the vibration generated from the vibrating membrane passes through the air hole and the sound is output to the outside, so the shape of the air hole matches the shape of the unmagnetized part nz. Need to be arranged. However, the shape of the circular air hole was often used as the air hole of the frame or the permanent magnet plate in the conventional cone-shaped speaker, but it can be arranged to match the shape of the unmagnetized part nz. However, the vibration collides with a portion other than the air hole. For this reason, the range (area) of the unmagnetized portion nz cannot be used effectively, and the sound is difficult to be transmitted to the outside. Further, in order to prevent vibrations from colliding with parts other than the air holes, when the shape of the circular air hole is made larger than the width of the unmagnetized part nz, the magnetized part of the permanent magnet plate is reduced, so that the permanent magnet There was a problem that the magnetic force of the plate was lowered, and as a result, the sound pressure was lowered.

この発明は上記のような課題を解決するため、振動が空気孔以外の部分と衝突することを防ぎ、未着磁部分nzの範囲が有効に利用され、永久磁石板は着磁部分の面積を減らすことなく、理想的な音圧/音質向上することを目的とする。   In order to solve the above problems, the present invention prevents vibrations from colliding with parts other than the air holes, effectively uses the range of the unmagnetized part nz, and the permanent magnet plate reduces the area of the magnetized part. It aims to improve ideal sound pressure / sound quality without reducing it.

本願発明に係る電磁変換器は、帯状の多極着磁パターンが形成された永久磁石板と、永久磁石板を覆い支持するフレームとを備えた電磁変換器において、永久磁石板およびフレームがスリット形状の空気孔を有している。   An electromagnetic transducer according to the present invention is an electromagnetic transducer comprising a permanent magnet plate on which a strip-shaped multipolar magnetization pattern is formed, and a frame that covers and supports the permanent magnet plate. The permanent magnet plate and the frame are slit-shaped. Air holes.

本発明の電磁変換器は、帯状の多極着磁パターンが形成された永久磁石板と、永久磁石板を覆い支持するフレームとを備えた電磁変換器において、永久磁石板およびフレームの空気孔の形状がスリット形状であるので、振動が空気孔以外の部分と衝突することを防ぎ、スリット状の空気孔を有する永久磁石板は未着磁部分nzの範囲を有効に利用でき、永久磁石板は着磁部分の面積を減らすことなく、理想的な音圧/音質向上することができる。   An electromagnetic transducer according to the present invention is an electromagnetic transducer including a permanent magnet plate on which a strip-shaped multipolar magnetization pattern is formed, and a frame that covers and supports the permanent magnet plate. Since the shape is a slit shape, vibrations are prevented from colliding with parts other than the air holes, and the permanent magnet plate having the slit-like air holes can effectively utilize the range of the unmagnetized part nz. Ideal sound pressure / sound quality can be improved without reducing the area of the magnetized part.

実施の形態1.
図1はこの発明の実施の形態1による平板型の電磁変換器構成の概略図である。この電磁変換器は、永久磁石板2,5と、その永久磁石板2,5に対向するように配置した振動膜4と、これら永久磁石板2,5と振動膜4との間に配置された緩衝部材3と、これらを覆い支持するフレーム1,6を備え、振動膜4は蛇行コイルパターン7aを有するコイル7を全面に形成する。このことは従来の電磁変換器と同様であるが、フレーム1及び永久磁石板2の空気孔8は、従来の円形形状と異なり、スリット形状を有する。
実施の形態1の電磁変換器の断面図を示す図は、従来の電磁変換器と同様に図2であり、電磁変換器は、永久磁石板2,5と、その永久磁石板2,5に対向するように配置した振動膜4と、これらを覆うフレーム1,6を備え、永久磁石板2,5は異なる磁極が一定の間隔を置いて交互に形成された帯状の多極着磁パターンが有するものであり、この永久磁石板2,5は異なる磁極同士の間隙部分のいわゆる未着磁部分nzと称される部分を有する。また振動膜4は未着磁部分nzと対向する位置にコイル7を形成し、フレーム1及び永久磁石板2は図1に示すようなスリット形状の空気孔8を有する。
Embodiment 1 FIG.
FIG. 1 is a schematic diagram of a flat electromagnetic transducer configuration according to Embodiment 1 of the present invention. This electromagnetic transducer is disposed between the permanent magnet plates 2, 5, the diaphragm 4 disposed so as to face the permanent magnet plates 2, 5, and between the permanent magnet plates 2, 5 and the diaphragm 4. The shock absorbing member 3 and the frames 1 and 6 for covering and supporting them are provided, and the vibrating membrane 4 forms a coil 7 having a meandering coil pattern 7a on the entire surface. This is the same as the conventional electromagnetic transducer, but the air holes 8 of the frame 1 and the permanent magnet plate 2 have a slit shape, unlike the conventional circular shape.
The cross-sectional view of the electromagnetic transducer according to the first embodiment is shown in FIG. 2 in the same manner as the conventional electromagnetic transducer. The electromagnetic transducer is provided on the permanent magnet plates 2 and 5 and the permanent magnet plates 2 and 5. The diaphragms 4 are arranged so as to face each other, and the frames 1 and 6 cover them. The permanent magnet plates 2 and 5 each have a strip-like multipolar magnetization pattern in which different magnetic poles are alternately formed at a predetermined interval. The permanent magnet plates 2 and 5 have a so-called unmagnetized portion nz of a gap portion between different magnetic poles. The vibration film 4 forms a coil 7 at a position facing the unmagnetized portion nz, and the frame 1 and the permanent magnet plate 2 have slit-shaped air holes 8 as shown in FIG.

まず、永久磁石板2,5は、図2に示すように、振動膜4との対向面のほぼ全面に焼結フェライト磁石からなる帯状の多極着磁パターンN,Sが片面に形成されているもので、その多極着磁パターンN,Sは、後述する図3で示すように、帯状のN極とS極が交互に現れる平行縞状の多極着磁パターンとなっており、そのうち永久磁石板2は、未着磁部分nzに沿って一定のピッチaで未着磁部分nzと同一の幅の複数のスリット状の空気孔8が設けられている。   First, as shown in FIG. 2, the permanent magnet plates 2 and 5 are formed on one side with strip-shaped multipolar magnetization patterns N and S made of sintered ferrite magnets on almost the entire surface facing the vibration film 4. As shown in FIG. 3 to be described later, the multipole magnetization patterns N and S are parallel striped multipole magnetization patterns in which strip-like N and S poles appear alternately, The permanent magnet plate 2 is provided with a plurality of slit-like air holes 8 having the same width as the unmagnetized portion nz at a constant pitch a along the unmagnetized portion nz.

次に、図1に示すように、振動膜4は表面に蛇行コイルパターン7aを有するコイル7が形成され、図2に示すように、振動膜4は永久磁石板2,5に対向するように配置している。またコイル7の直線部分は多極着磁パターンの帯状のN極とS極の中央部に位置する配置をし、またコイル7の直線部分は帯状磁極N,Sと同じピッチで平行に配置されている。この振動膜4は柔軟な薄膜状の樹脂フィルム上に蛇行コイルパターン7aを有するコイル7をプリント配線した構造となる。   Next, as shown in FIG. 1, the vibrating membrane 4 has a coil 7 having a meandering coil pattern 7a formed on the surface thereof, and as shown in FIG. 2, the vibrating membrane 4 faces the permanent magnet plates 2 and 5. It is arranged. The linear portion of the coil 7 is arranged at the center of the strip-shaped N pole and S pole of the multipolar magnetization pattern, and the linear portion of the coil 7 is disposed in parallel at the same pitch as the strip-shaped magnetic poles N and S. ing. The vibration film 4 has a structure in which a coil 7 having a meandering coil pattern 7a is printed on a flexible thin film resin film.

緩衝部材3は通気性および音響エネルギーの透過性を有する不織布などから形成され、図1に示すように、緩衝部材3は永久磁石板2,5と振動膜4との間に配置され、その振動膜4が振動時に永久磁石板2,5とぶつかるのを防止するとともに、サスペンションとしての役割を担うものである。   The buffer member 3 is formed of a non-woven fabric having air permeability and acoustic energy permeability. As shown in FIG. 1, the buffer member 3 is disposed between the permanent magnet plates 2 and 5 and the vibration film 4 and vibrations thereof. The membrane 4 prevents the permanent magnet plates 2 and 5 from colliding with each other during vibration and plays a role as a suspension.

フレーム1は永久磁石板2のスリット形状の空気孔8に連通させるスリット形状の空気孔8を有している。フレーム6は永久磁石板5における多極着磁パターンの形成面と反対側の面に配置されて磁束漏洩を防止するためのものである。またフレーム1,6は、例えば、鉄板やニッケル・鉄合金(パーマロイ)板などが適用される。   The frame 1 has slit-shaped air holes 8 that communicate with the slit-shaped air holes 8 of the permanent magnet plate 2. The frame 6 is disposed on the surface of the permanent magnet plate 5 opposite to the surface on which the multipolar magnetized pattern is formed to prevent leakage of magnetic flux. For the frames 1 and 6, for example, an iron plate, a nickel / iron alloy (permalloy) plate, or the like is applied.

図3は電磁変換器の空気孔8,10の形状違いによる効果を説明するための概略図である。図3(a)上図はフレーム1及び永久磁石板2のスリット形状の空気孔8の配置を示す図であり、スリット形状の空気孔8がピッチaの間隔で形成されている。図3(a)下図は永久磁石板2の着磁パターン9を示す図であり、N極とS極がピッチaで交互に現れる平行縞状の多極着磁パターンとなり、永久磁石板2は異なる磁極同士の間隙部分に未着磁部分nzを有している。この図3(a)は空気孔8のスリット形状が永久磁石板2の未着磁部分nzの形状に合致するように配置した図である。また配置図3(b)上図はフレーム1及び永久磁石板2の円形形状の空気孔10の配置を示す図であり、従来の円形形状の空気孔10がピッチaの間隔で形成されている。図3(b)下図は図3(a)下図と同様である。   FIG. 3 is a schematic diagram for explaining the effect due to the difference in shape of the air holes 8 and 10 of the electromagnetic transducer. 3A is a diagram showing the arrangement of the slit-shaped air holes 8 in the frame 1 and the permanent magnet plate 2, and the slit-shaped air holes 8 are formed at intervals of a pitch a. FIG. 3 (a) is a diagram showing the magnetization pattern 9 of the permanent magnet plate 2, which is a parallel striped multipolar magnetization pattern in which N poles and S poles appear alternately at a pitch a. An unmagnetized portion nz is provided in a gap portion between different magnetic poles. FIG. 3A is a diagram in which the slit shape of the air hole 8 is arranged so as to match the shape of the non-magnetized portion nz of the permanent magnet plate 2. 3B is an illustration showing the arrangement of the circular air holes 10 in the frame 1 and the permanent magnet plate 2. The conventional circular air holes 10 are formed at intervals of a pitch a. . The lower diagram of FIG. 3B is the same as the lower diagram of FIG.

図3(b)では、フレーム1及び永久磁石板2は直線の未着磁部分nzに対して円形形状の空気孔10を有するので、未着磁部分nzの形状と空気孔10の形状が図3(b)の上下図のように合致せず、振動が空気孔10以外の部分に衝突してしまい、未着磁部分nzの範囲は有効に利用できず、振動が外部に十分に伝わらない。また未着磁部分nzの範囲が有効に利用されるために空気孔10の円形形状の直径を未着磁部分nzの幅より大きくすると、フレーム1及び永久磁石板2の開口部分が図3(a)に比べて広くなってしまい、永久磁石板2は着磁面積が狭くなり、磁力が低下し、結果として、出力される音圧レベルは低下してしまう。   In FIG. 3B, the frame 1 and the permanent magnet plate 2 have circular air holes 10 with respect to the straight unmagnetized portion nz, so the shape of the unmagnetized portion nz and the shape of the air holes 10 are illustrated. As shown in the upper and lower views of FIG. 3B, the vibrations collide with parts other than the air holes 10, the range of the unmagnetized part nz cannot be used effectively, and the vibrations are not sufficiently transmitted to the outside. . Further, in order to effectively utilize the range of the unmagnetized portion nz, when the diameter of the circular shape of the air hole 10 is made larger than the width of the unmagnetized portion nz, the opening portions of the frame 1 and the permanent magnet plate 2 are shown in FIG. As a result, the permanent magnet plate 2 has a smaller magnetized area and a lower magnetic force. As a result, the output sound pressure level is lowered.

一方、図3(a)では、フレーム1及び永久磁石板2が未着磁部分nzに沿って一定のピッチaで未着磁部分nzと同一の幅の複数のスリット状の空気孔8を有するので、未着磁部分nzの形状と空気孔8の形状が合致し、未着磁部分nzの範囲が有効に利用できる。このため、振動が空気孔8以外の部分と衝突することを防ぎ、永久磁石板2は着磁部分の面積を減らすことなく、理想的な音圧/音質向上ができるという効果を奏する。   On the other hand, in FIG. 3A, the frame 1 and the permanent magnet plate 2 have a plurality of slit-like air holes 8 having the same width as the unmagnetized portion nz at a constant pitch a along the unmagnetized portion nz. Therefore, the shape of the unmagnetized portion nz matches the shape of the air hole 8, and the range of the unmagnetized portion nz can be used effectively. For this reason, vibrations are prevented from colliding with portions other than the air holes 8, and the permanent magnet plate 2 has an effect that ideal sound pressure / sound quality can be improved without reducing the area of the magnetized portion.

またフレーム1は強度許容範囲内までスリット状の空気孔8を広げることができるので、フレーム1は開口可能な範囲で未着磁部分nzを有効に利用できる。このことは永久磁石板2が未着磁部分nzに沿って一定のピッチaで未着磁部分nzと同一の幅の複数のスリット状の空気孔8を有し、そしてフレーム1が未着磁部分nzに沿って一定のピッチaで未着磁部分nzより広い幅の複数のスリット状の空気孔8を有することも可能である。   Further, since the frame 1 can widen the slit-like air hole 8 to within the allowable strength range, the frame 1 can effectively utilize the unmagnetized portion nz within the openable range. This means that the permanent magnet plate 2 has a plurality of slit-like air holes 8 having the same width as the non-magnetized portion nz at a constant pitch a along the non-magnetized portion nz, and the frame 1 is not magnetized. It is also possible to have a plurality of slit-like air holes 8 having a width wider than that of the unmagnetized portion nz at a constant pitch a along the portion nz.

次に動作について説明する。
電流が振動膜4の表面に形成されている蛇行コイルパターン7aのコイル7に流れると、コイル7と永久磁石板2,5の帯状の多極着磁パターンとが電磁的に結合するため、振動がフレミングの法則により振動膜4に発生する。この振動がフレーム1及び永久磁石板2のスリットの空気孔8を通り、音がスリット形状の空気孔8の方向から外部に出力される。スリット状の空気孔8は永久磁石板2の未着磁部分nzに沿って一定のピッチaで未着磁部分nzと同一の幅に配置されることにより、空気孔8の形状が未着磁部分nzの形状と合致するため、未着磁部分nzの範囲が有効に利用でき、永久磁石板2は着磁部分の面積を減らすことなく、理想的な音圧/音質向上することができる。また、上記の永久磁石板2,5、振動膜4、緩衝部材3は、フレーム1,6に覆われてスピーカ筺体に取り付けられている。
Next, the operation will be described.
When an electric current flows through the coil 7 of the meandering coil pattern 7a formed on the surface of the vibration film 4, the coil 7 and the strip-shaped multipolar magnetization pattern of the permanent magnet plates 2 and 5 are electromagnetically coupled, Is generated in the vibration film 4 by Fleming's law. This vibration passes through the slit air hole 8 of the frame 1 and the permanent magnet plate 2, and sound is output to the outside from the direction of the slit-shaped air hole 8. The slit-shaped air holes 8 are arranged at a constant pitch a along the unmagnetized portion nz of the permanent magnet plate 2 with the same width as the unmagnetized portion nz, so that the shape of the air holes 8 is not magnetized. Since it matches the shape of the portion nz, the range of the unmagnetized portion nz can be used effectively, and the permanent magnet plate 2 can improve the ideal sound pressure / sound quality without reducing the area of the magnetized portion. The permanent magnet plates 2, 5, the vibrating membrane 4, and the buffer member 3 are covered with the frames 1, 6 and attached to the speaker housing.

以上説明した実施の形態1によれば、電磁変換器は、帯状の多極着磁パターンが形成された永久磁石板2,5と、永久磁石板2,5を覆い支持するフレーム1,6とを備え、永久磁石板2およびフレーム1のスリット形状の空気孔8の形状が永久磁石板2の未着磁部分nzの形状に合致するので、振動が空気孔8以外の部分と衝突することを防ぎ、永久磁石板2は着磁部分の面積を減らすことなく、理想的な音圧/音質向上ができるという効果を奏し、未着磁部分nzの範囲が有効に利用できるという効果を奏し、音が外部に伝わりやすいという効果を奏する。   According to the first embodiment described above, the electromagnetic transducer includes the permanent magnet plates 2 and 5 on which the strip-shaped multipolar magnetization pattern is formed, and the frames 1 and 6 that cover and support the permanent magnet plates 2 and 5. And the shape of the slit-shaped air hole 8 of the permanent magnet plate 2 and the frame 1 matches the shape of the non-magnetized part nz of the permanent magnet plate 2, so that vibrations collide with parts other than the air hole 8. The permanent magnet plate 2 has the effect that the ideal sound pressure / sound quality can be improved without reducing the area of the magnetized portion, and has the effect that the range of the unmagnetized portion nz can be effectively used. Has the effect of being easily transmitted to the outside.

実施の形態1における平板型の電磁変換器構成の概略図である。1 is a schematic diagram of a configuration of a flat-plate electromagnetic transducer according to Embodiment 1. FIG. 平板型電磁変換器の断面を表す図である。It is a figure showing the cross section of a flat type electromagnetic transducer. 空気孔の形状の違いによる効果を示す図である。It is a figure which shows the effect by the difference in the shape of an air hole. 従来の平板型の電磁変換器構成の概略図である。It is the schematic of the conventional flat type electromagnetic transducer structure.

符号の説明Explanation of symbols

1 フレーム(上部)、2 永久磁石板(上部)、3 緩衝部材、4 振動膜、5 永久磁石板(下部)、6 フレーム(下部)、7 コイル、7a 蛇行コイルパターン、8 スリット形状の空気孔、9 着磁パターン、10 円形形状の空気孔、nz 未着磁部分(着磁のニュートラルゾーン)、a ピッチ。   1 frame (upper part), 2 permanent magnet plate (upper part), 3 buffer member, 4 diaphragm, 5 permanent magnet plate (lower part), 6 frame (lower part), 7 coil, 7a meander coil pattern, 8 slit-shaped air hole , 9 Magnetized pattern, 10 circular air holes, nz unmagnetized portion (neutral neutral zone), a pitch.

Claims (2)

帯状の多極着磁パターンが形成された永久磁石板と、前記永久磁石板を覆い支持するフレームとを備えた電磁変換器において、
前記永久磁石板および前記フレームがスリット形状の空気孔を有することを特徴とする電磁変換器。
In an electromagnetic transducer comprising a permanent magnet plate on which a strip-shaped multipolar magnetization pattern is formed, and a frame that covers and supports the permanent magnet plate,
The electromagnetic converter, wherein the permanent magnet plate and the frame have slit-shaped air holes.
前記永久磁石板および前記フレームにおいて、前記空気孔の形状が前記永久磁石板の未着磁部分の形状に合致することを特徴とする請求項1記載の電磁変換器。   2. The electromagnetic transducer according to claim 1, wherein in the permanent magnet plate and the frame, a shape of the air hole matches a shape of an unmagnetized portion of the permanent magnet plate.
JP2006107798A 2006-04-10 2006-04-10 Electromagnetic transducer Pending JP2007282039A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113873405A (en) * 2021-09-02 2021-12-31 头领科技(昆山)有限公司 Flat earphone

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113873405A (en) * 2021-09-02 2021-12-31 头领科技(昆山)有限公司 Flat earphone

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