JP2009200870A - Output connector for microphone, and capacitor microphone - Google Patents

Output connector for microphone, and capacitor microphone Download PDF

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JP2009200870A
JP2009200870A JP2008040946A JP2008040946A JP2009200870A JP 2009200870 A JP2009200870 A JP 2009200870A JP 2008040946 A JP2008040946 A JP 2008040946A JP 2008040946 A JP2008040946 A JP 2008040946A JP 2009200870 A JP2009200870 A JP 2009200870A
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microphone
pin
base
output connector
electromagnetic wave
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JP5070083B2 (en
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Yutaka Akino
裕 秋野
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Audio Technica KK
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Abstract

<P>PROBLEM TO BE SOLVED: To provide an output connector for a microphone whose connector base is covered with a shield cover for disturbance shielding for an electromagnetic wave etc., wherein the electromagnetic wave is securely prevented from intrusion from a gap formed between a signal pin and a through-hole for the signal pin which is bored in the shield cover. <P>SOLUTION: The output connector 10A for the microphone is a three-pin type output connector having one grounding pin E and two signal pins SH and SC penetrating the connector base 11 and mounted on an end in a microphone case. The shield cover 16 is attached to the base inner face side of the connector base 11, where a first through-hole for the grounding pin E and two second through-holes 162 that cause the signal pins SH and SC to penetrate in non-contact manner are bored. An electromagnetic wave shield resin 30 containing an electromagnetic wave absorbing material made of magnetic powder is charged at least in gaps between the two second through-holes 162 and the signal pins SH and SC. <P>COPYRIGHT: (C)2009,JPO&INPIT

Description

本発明は、マイクロホン用出力コネクタおよびコンデンサマイクロホンに関し、さらに詳しく言えば、例えば携帯電話機などから発生される高い周波数の電磁波に対するシールド機能を有するマイクロホン用出力コネクタおよび同出力コネクタを備えたコンデンサマイクロホンに関するものである。   The present invention relates to a microphone output connector and a condenser microphone. More specifically, the present invention relates to a microphone output connector having a shielding function against high-frequency electromagnetic waves generated from, for example, a mobile phone, and a condenser microphone including the output connector. It is.

コンデンサマイクロホンは、マイクロホンユニット内に振動板と固定極とを対向的に配置してなる静電型の音響電気変換器を含み、そのインピーダンスがきわめて高いため、FET(電界効果トランジタ)などのインピーダンス変換器を内蔵している。通常、コンデンサマイクロホンにおいては、ファントム電源が用いられ、マイク音声信号はファントム電源用の平衡シールドケーブルを介して出力される。   Capacitor microphones include electrostatic acoustoelectric transducers that have a diaphragm and fixed poles facing each other in a microphone unit, and because of their extremely high impedance, they convert impedance such as FETs (field effect transistors). Built-in vessel. Usually, a condenser microphone uses a phantom power source, and a microphone audio signal is output via a balanced shield cable for the phantom power source.

上記平衡シールドケーブルを接続するため、マイクケース(手持ち式マイクロホンにおいてはマイクグリップ)側には、EIAJ RC−5236「音響機器用ラッチロック式丸形コネクタ」に規定されている3ピンタイプの出力コネクタが設けられ、この出力コネクタにより、コンデンサマイクロホンに対して上記平衡シールドケーブルを着脱できるようにしている。   In order to connect the balanced shielded cable, on the side of the microphone case (microphone grip in the case of handheld microphones), a 3-pin type output connector defined in EIAJ RC-5236 “Latch Lock Round Connector for Audio Equipment” The balanced shielded cable can be attached to and detached from the condenser microphone by this output connector.

上記出力コネクタに上記平衡シールドケーブルが接続された状態において、例えば携帯電話機などからの強い電磁波がマイクロホンやマイクケーブルに加えられると、その電磁波が出力コネクタからマイクロホンの内部に入り込み、インピーダンス変換器で復調され可聴周波数の雑音としてマイクロホンから出力されてしまうことがある。   When the balanced shielded cable is connected to the output connector, for example, if a strong electromagnetic wave from a mobile phone or the like is applied to a microphone or microphone cable, the electromagnetic wave enters the microphone from the output connector and is demodulated by an impedance converter. May be output from the microphone as audible noise.

これを防止するための方法のひとつとして、本出願人は特許文献1でシールド機能を有するマイクロホン用出力コネクタを提案しており、その構成を図2a〜図2cにより説明する。図2aはシールドカバーのみを断面とした出力コネクタの正面図、図2bは図2aのB−B線断面図、図2cは図2aの平面図である。   As one of the methods for preventing this, the present applicant has proposed a microphone output connector having a shielding function in Patent Document 1, and its configuration will be described with reference to FIGS. 2a to 2c. 2a is a front view of the output connector having only a shield cover as a cross section, FIG. 2b is a cross-sectional view taken along the line BB of FIG. 2a, and FIG. 2c is a plan view of FIG.

これによると、出力コネクタ10は、PBT(ポリブタジエンテレフタレート)樹脂などの電気絶縁体からなる円盤状のコネクタ基台11を備えている。コネクタ基台11には3本のピン、すなわち接地用の1番ピンE,信号のホット側の2番ピンSHおよび信号のコールド側の3番ピンSCとが例えば圧入により貫設されている。   According to this, the output connector 10 includes a disk-shaped connector base 11 made of an electrical insulator such as PBT (polybutadiene terephthalate) resin. The connector base 11 is provided with three pins, that is, a first pin E for grounding, a second pin SH on the signal hot side, and a third pin SC on the cold side of the signal, for example, by press-fitting.

なお、本明細書において、接地用の1番ピンEを単に「接地ピンE」、信号のホット側の2番ピンSHおよび信号のコールド側の3番ピンSCを単に「信号ピンSH,SC」ということがある。   In this specification, the first pin E for grounding is simply “grounding pin E”, the second pin SH on the hot side of the signal and the third pin SC on the cold side of the signal are simply “signal pins SH and SC”. There is.

手持ち式コンデンサマイクロホンについて言えば、図2bに示すように、出力コネクタ10は円筒状のマイクケース(マイクグリップ)20の端部内に装着される。通常、マイクケース20は真鍮などの金属材からなり、内蔵される電気部品のシールドケースとしても作用する。   In the case of a handheld condenser microphone, the output connector 10 is mounted in the end of a cylindrical microphone case (microphone grip) 20 as shown in FIG. Normally, the microphone case 20 is made of a metal material such as brass, and also acts as a shield case for built-in electrical components.

コネクタ基台11には、その外周面から半径方向に向けて雌ネジ穴13が形成されており、雌ネジ穴13内には、出力コネクタ10をマイクケース20に固定するための雄ネジ12が螺合されている。   A female screw hole 13 is formed in the connector base 11 from the outer peripheral surface thereof in the radial direction, and a male screw 12 for fixing the output connector 10 to the microphone case 20 is formed in the female screw hole 13. It is screwed.

これによれば、図2bに示すように、マイクケース20に穿設されている丸孔21から図示しないドライバ等により雄ネジ12を回して、同雄ネジ12を丸孔21の周縁に当接させることにより、出力コネクタ10をマイクケース20にしっかりと固定することができる。なお、コネクタ基台11の外周面には、マイクケース20側に形成されている図示しない凹溝に係合して回り止めとして機能するリブ14が設けられている。   According to this, as shown in FIG. 2 b, the male screw 12 is turned by a screwdriver or the like (not shown) from the round hole 21 formed in the microphone case 20, and the male screw 12 is brought into contact with the peripheral edge of the round hole 21. By doing so, the output connector 10 can be firmly fixed to the microphone case 20. A rib 14 is provided on the outer peripheral surface of the connector base 11 so as to engage with a concave groove (not shown) formed on the microphone case 20 side and function as a detent.

特許文献1に記載の発明によると、例えば携帯電話機から放射される電磁波のマイクケース20内への侵入を防止するため、コネクタ基台11の基台内面(マイクロホンの内部側に配置される面で、図2a,図2bにおいて上面)側にプリント配線板15とシールドカバー16とが設けられる。   According to the invention described in Patent Document 1, for example, in order to prevent electromagnetic waves radiated from a mobile phone from entering the microphone case 20, the inner surface of the base of the connector base 11 (the surface disposed on the inner side of the microphone). 2a and 2b, a printed wiring board 15 and a shield cover 16 are provided on the upper surface side.

図示しないが、プリント配線板15は、接地ピンEと信号ピンSH,SCが貫通される3つの貫通孔を有する両面プリント配線板で、コネクタ基台11の基台内面と対向する裏面側には、銅箔のベタパターンよりなるシールド層が形成され、その反対側の上面には、高周波侵入防止用のキャパシタと、静電気による回路破壊防止用のツェナーダイオードなどが実装されている。   Although not shown, the printed wiring board 15 is a double-sided printed wiring board having three through holes through which the ground pins E and the signal pins SH and SC are penetrated, and on the back side facing the base inner surface of the connector base 11. A shield layer made of a solid pattern of copper foil is formed, and a capacitor for preventing high-frequency penetration and a Zener diode for preventing circuit destruction due to static electricity are mounted on the upper surface on the opposite side.

シールドカバー16は、コネクタ基台11の基台内面の上部を覆う基板部16aと、コネクタ基台11の外周面に嵌合されるスカート部16bとを含み、その全体が好ましくは真鍮(BRASS)に代表される銅合金のプレス成型品よりなる。   The shield cover 16 includes a substrate portion 16a that covers an upper portion of the inner surface of the base of the connector base 11, and a skirt portion 16b that is fitted to the outer peripheral surface of the connector base 11, and the whole is preferably brass. It consists of a press-formed product of copper alloy represented by

シールドカバー16は、コネクタ基台11の基台内面側に被せられるため、図2cに示すように、その基板部16aには、接地ピンE用の貫通孔161,信号ピンSH用の貫通孔162および信号ピンSC用の貫通孔163の3つの貫通孔が穿設されている。   Since the shield cover 16 is placed on the inner side of the base of the connector base 11, as shown in FIG. 2c, a through hole 161 for the ground pin E and a through hole 162 for the signal pin SH are provided in the board portion 16a. And three through holes of the through hole 163 for the signal pin SC are formed.

このうち、接地ピンE用の貫通孔161は、接地ピンEとシールドカバー16とを電気的に導通させるため、接地ピンEと接触し得るように接地ピンEとほぼ同径の孔として形成される。なお、最終的に接地ピンEはシールドカバー16にハンダ付けされる。   Among these, the through hole 161 for the ground pin E is formed as a hole having substantially the same diameter as the ground pin E so as to be in contact with the ground pin E in order to electrically connect the ground pin E and the shield cover 16. The The ground pin E is finally soldered to the shield cover 16.

これに対して、信号ピンSH用の貫通孔162と信号ピンSC用の貫通孔163は、それらの各ピンと非接触となるように信号ピンSH,SCよりも大径に形成されるが、マイクケース20内に輻射される電磁波を最小限に抑えるため、貫通孔162,163はできるだけ小径に形成される。   On the other hand, the through hole 162 for the signal pin SH and the through hole 163 for the signal pin SC are formed to have a larger diameter than the signal pins SH and SC so as to be in non-contact with the respective pins. In order to minimize electromagnetic waves radiated into the case 20, the through holes 162 and 163 are formed as small as possible.

このような構成を有する出力コネクタ10によれば、携帯電話機などで使用される高い周波数に対しても、その電磁波(高周波電流)のマイクロホン内への侵入を阻止することができる。   According to the output connector 10 having such a configuration, it is possible to prevent the electromagnetic waves (high-frequency current) from entering the microphone even at a high frequency used in a mobile phone or the like.

しかしながら、上記したように、信号ピンSH,SCと貫通孔162,163との間には、信号ピンSH,SCとシールドカバー16とを非接触に保つための隙間が僅かながらも存在するため、なおもその隙間から電磁波がマイクロホン内に入り込むおそれがある。   However, as described above, there is a slight gap between the signal pins SH and SC and the through holes 162 and 163 for keeping the signal pins SH and SC and the shield cover 16 in a non-contact state. Note that electromagnetic waves may enter the microphone from the gap.

電磁波の侵入阻止の信頼性をより高めるには、各ピンにフェライトビーズを取り付けることが有効であるが、組立作業上、その取り付けが面倒であるばかりでなく、配置スペースも必要であることからコネクタの全体寸法が大きくなり、好ましい対策とは言えない。   In order to further improve the reliability of prevention of electromagnetic wave intrusion, it is effective to attach ferrite beads to each pin, but it is not only troublesome for assembly work but also requires installation space. This is not a preferable measure.

これとは別に、電磁波を吸収する磁性粉等を可撓性シートに練り込んだ電磁波シールド材が各種市販されているが、この種の市販品は汎用的に仕様が決められているため、マイクロホン用コネクタに合うものを探し出すのが困難であるし、また、磁性材料の混合量や厚み等の調整もできない。マイクロホン用コネクタ用途の特注仕様とするとコスト高となるため、にわかに採用することができない。   Apart from this, there are various commercially available electromagnetic shielding materials in which magnetic powder or the like that absorbs electromagnetic waves is kneaded into a flexible sheet. It is difficult to find one that fits the connector, and the mixing amount and thickness of the magnetic material cannot be adjusted. A custom specification for a microphone connector is expensive and cannot be used immediately.

仮に、マイクロホン用コネクタ用途の電磁波シールド材として適当な市販品があったとしても、実際問題として、その電磁波シールド材を切り抜いて、信号ピンSH,SCと貫通孔162,163との間の隙間に詰め込むことは容易ではなく、また、外来振動や衝撃によって外れてしまうこともある。   Even if there is a commercially available product suitable as an electromagnetic wave shielding material for a microphone connector, as an actual problem, the electromagnetic wave shielding material is cut out and formed in the gap between the signal pins SH and SC and the through holes 162 and 163. It is not easy to pack, and it may come off due to external vibration or impact.

特開2005−311752号公報JP 2005-311752 A

したがって、本発明の課題は、コネクタ基台に電磁波などの外乱遮蔽用のシールドカバーが被せられているマイクロホン用出力コネクタにおいて、信号ピンと、シールドカバーに穿設されている信号ピン用の貫通孔との間に存在する隙間からの電磁波の侵入を確実に防止することにある。   Accordingly, an object of the present invention is to provide a signal pin and a through hole for a signal pin formed in the shield cover in a microphone output connector in which a shield cover for shielding disturbance such as electromagnetic waves is covered on the connector base. Intrusion of electromagnetic waves from a gap existing between them is reliably prevented.

上記課題を解決するため、本発明は、請求項1に記載されているように、電気絶縁体からなるコネクタ基台に1本の接地ピン(1番ピン)と2本の信号ピン(2番ピン,3番ピン)とが貫設されており、コンデンサマイクロホンのマイクケース内の端部に装着される3ピンタイプの出力コネクタで、上記コネクタ基台の上記マイクケースの内側に位置する基台内面側に、上記基台内面の上部を覆う基板部と上記コネクタ基台の外周面に嵌合されるスカート部とを含み、上記基板部に上記接地ピンと実質的に同一径で上記接地ピンを接触した状態で貫通させるひとつの第1貫通孔と、上記各信号ピンよりも大径で上記各信号ピンを非接触で貫通させる2つの第2貫通孔とが穿設されているシールドカバーが取り付けられているマイクロホン用出力コネクタにおいて、少なくとも上記第2貫通孔と上記信号ピンとの間の隙間に、磁性粉末からなる電磁波吸収材料を含む電磁波遮蔽樹脂が充填されていることを特徴としている。   In order to solve the above-described problems, the present invention provides a connector base made of an electrical insulator with one ground pin (No. 1 pin) and two signal pins (No. 2). 3 pin type output connector that is attached to the end of the microphone case of the condenser microphone, and is a base located inside the microphone case of the connector base. The inner surface includes a board portion covering the upper portion of the inner surface of the base and a skirt portion fitted to the outer peripheral surface of the connector base, and the ground pin is provided on the board portion with substantially the same diameter as the ground pin. A shield cover is attached that has one first through hole penetrating in contact and two second through holes larger in diameter than the signal pins and penetrating the signal pins in a non-contact manner. Microphone output The connector, in a gap between at least the second through-hole and the signal pin, the electromagnetic wave shielding resin containing an electromagnetic wave absorbing material comprising a magnetic powder is characterized in that it is filled.

本発明の好ましい態様によると、請求項2に記載されているように、上記電磁波遮蔽樹脂の樹脂材として、嫌気性硬化を兼ね備えている紫外線硬化樹脂が用いられる。   According to a preferred aspect of the present invention, as described in claim 2, an ultraviolet curable resin having anaerobic curing is used as the resin material of the electromagnetic wave shielding resin.

また、請求項3に記載されているように、上記電磁波遮蔽樹脂が、上記シールドカバーと上記基台内面との間にも充填されていることが好ましい。   In addition, as described in claim 3, it is preferable that the electromagnetic wave shielding resin is also filled between the shield cover and the inner surface of the base.

また、本発明には、請求項4に記載されているように、請求項1ないし3のいずれか1項に記載されたマイクロホン用出力コネクタを備えているコンデンサマイクロホンも含まれる。   In addition, the present invention includes a condenser microphone including the microphone output connector according to any one of claims 1 to 3 as described in claim 4.

本発明によれば、シールドカバーに穿設されている第2貫通孔と信号ピンとの間の隙間に、好ましくは上記隙間を含めてシールドカバーと基台内面との間に、磁性粉末からなる電磁波吸収材料を含む電磁波遮蔽樹脂が充填されていることにより、信号ピンにフェライトビーズを取り付けたことと等価の電磁波遮蔽効果が得られる。   According to the present invention, an electromagnetic wave made of magnetic powder is formed in a gap between the second through hole formed in the shield cover and the signal pin, preferably between the shield cover and the inner surface of the base including the gap. By being filled with an electromagnetic wave shielding resin containing an absorbing material, an electromagnetic wave shielding effect equivalent to attaching a ferrite bead to a signal pin can be obtained.

また、電磁波遮蔽樹脂により第2貫通孔内に信号ピンが位置決めされるため、出力コネクタをマイクケースに固定する際、シールドカバーに回転ずれが生じたとしても、信号ピンとシールドカバーとの接触を確実に防止することができる。   In addition, since the signal pin is positioned in the second through-hole by the electromagnetic wave shielding resin, even when the output cover is fixed to the microphone case, even if the shield cover is deviated from rotation, the signal pin and the shield cover can be securely contacted. Can be prevented.

また、電磁波遮蔽樹脂の樹脂材として、嫌気性硬化を兼ね備えている紫外線硬化樹脂を用いることにより、第2貫通孔と信号ピンとの間の隙間から紫外線を照射する際、シールドカバー内の紫外線があたらない部分をも硬化させることができる。   Further, by using an ultraviolet curable resin having anaerobic curing as the resin material of the electromagnetic wave shielding resin, when the ultraviolet ray is irradiated from the gap between the second through hole and the signal pin, The part which is not present can be cured.

次に、図1aないし図1cにより本発明の実施形態について説明する。図1aはシールドカバーのみを断面とした出力コネクタの正面図、図1bは図1aのA−A線断面図、図1cは図1aの平面図で、それぞれ先に説明した上記従来例の図2aないし図2cに対応しており、上記従来例と変更を要しない構成要素には同じ参照符号を用いて説明する。   Next, an embodiment of the present invention will be described with reference to FIGS. 1a to 1c. FIG. 1a is a front view of an output connector having only a shield cover in cross section, FIG. 1b is a cross-sectional view taken along line AA of FIG. 1a, and FIG. 1c is a plan view of FIG. Components corresponding to those in FIG. 2c and need not be changed from those in the conventional example will be described using the same reference numerals.

この実施形態に係る出力コネクタ10Aにおいても、上記従来例と同じく、PBT(ポリブタジエンテレフタレート)樹脂などの電気絶縁体からなる円盤状のコネクタ基台11を備えている。コネクタ基台11には3本のピン、すなわち接地用の1番ピンE(接地ピンE),信号のホット側の2番ピンSH(信号ピンSH)および信号のコールド側の3番ピンSC(信号ピンSC)とが例えば圧入により貫設されている。   The output connector 10A according to this embodiment also includes a disk-shaped connector base 11 made of an electrical insulator such as PBT (polybutadiene terephthalate) resin, as in the conventional example. The connector base 11 has three pins, namely, a first pin E (ground pin E) for grounding, a second pin SH (signal pin SH) on the hot side of the signal, and a third pin SC (on the cold side of the signal) The signal pin SC) is penetrated by press-fitting, for example.

コネクタ基台11には、その外周面から半径方向に向けて雌ネジ穴13が形成されており、雌ネジ穴13内には、出力コネクタ10Aをマイクケース20(図2b参照)に固定するための雄ネジ12が螺合されている。また、コネクタ基台11の外周面には、上記マイクケース20側に形成されている図示しない凹溝に係合して回り止めとして機能するリブ14が設けられている。   A female screw hole 13 is formed in the connector base 11 from the outer peripheral surface in the radial direction, and the output connector 10A is fixed in the female screw hole 13 to the microphone case 20 (see FIG. 2b). The male screw 12 is screwed. Further, on the outer peripheral surface of the connector base 11, a rib 14 is provided that engages with a concave groove (not shown) formed on the microphone case 20 side and functions as a detent.

この実施形態に係る出力コネクタ10Aにおいても、上記従来例と同じく、例えば携帯電話機から放射される電磁波のマイクケース20内への侵入を防止するため、コネクタ基台11の基台内面(マイクロホンの内部側に配置される面で、図1a,図1bにおいて上面)側にプリント配線板15とシールドカバー16とが設けられる。   Also in the output connector 10A according to this embodiment, the inner surface of the connector base 11 (inside the microphone) in order to prevent, for example, electromagnetic waves radiated from a mobile phone from entering the microphone case 20 in the output connector 10A. A printed wiring board 15 and a shield cover 16 are provided on the side disposed on the side, the upper surface in FIGS. 1a and 1b.

図示しないが、プリント配線板15は、接地ピンEと信号ピンSH,SCが貫通される3つの貫通孔を有する両面プリント配線板で、コネクタ基台11の基台内面と対向する裏面側には、銅箔のベタパターンよりなるシールド層が形成され、その反対側の上面には、高周波侵入防止用のキャパシタと、静電気による回路破壊防止用のツェナーダイオードなどが実装されている。   Although not shown, the printed wiring board 15 is a double-sided printed wiring board having three through holes through which the ground pins E and the signal pins SH and SC are penetrated, and on the back side facing the base inner surface of the connector base 11. A shield layer made of a solid pattern of copper foil is formed, and a capacitor for preventing high-frequency penetration and a Zener diode for preventing circuit destruction due to static electricity are mounted on the upper surface on the opposite side.

シールドカバー16は、コネクタ基台11の基台内面の上部を覆う基板部16aと、コネクタ基台11の外周面に嵌合されるスカート部16bとを含み、その全体が好ましくは真鍮(BRASS)に代表される銅合金のプレス成型品よりなる。   The shield cover 16 includes a substrate portion 16a that covers an upper portion of the inner surface of the base of the connector base 11, and a skirt portion 16b that is fitted to the outer peripheral surface of the connector base 11, and the whole is preferably brass. It consists of a press-formed product of copper alloy represented by

シールドカバー16は、コネクタ基台11の基台内面側に被せられるため、図1cに示すように、その基板部16aには、接地ピンE用の貫通孔161(請求項1における第1貫通孔)と、信号ピンSH,SC用の2つの貫通孔162,163(請求項1における第2貫通孔)とが穿設されている。   Since the shield cover 16 is placed on the inner surface of the base of the connector base 11, as shown in FIG. 1c, the board portion 16a has a through hole 161 for the ground pin E (the first through hole in claim 1). ) And two through holes 162 and 163 (second through holes in claim 1) for the signal pins SH and SC.

このうち、接地ピンE用の貫通孔161は、接地ピンEとシールドカバー16とを電気的に導通させるため、接地ピンEと接触し得るように接地ピンEとほぼ同径の孔として形成される。なお、最終的に接地ピンEはシールドカバー16にハンダ付けされる。   Among these, the through hole 161 for the ground pin E is formed as a hole having substantially the same diameter as the ground pin E so as to be in contact with the ground pin E in order to electrically connect the ground pin E and the shield cover 16. The The ground pin E is finally soldered to the shield cover 16.

これに対して、信号ピンSH用の貫通孔162と信号ピンSC用の貫通孔163は、それらの各ピンと非接触となるように信号ピンSH,SCよりも大径に形成されるが、マイクケース20内に輻射される電磁波を最小限に抑えるため、貫通孔162,163はできるだけ小径に形成されることが好ましい。   On the other hand, the through hole 162 for the signal pin SH and the through hole 163 for the signal pin SC are formed to have a larger diameter than the signal pins SH and SC so as to be in non-contact with the respective pins. In order to minimize electromagnetic waves radiated into the case 20, the through holes 162 and 163 are preferably formed as small as possible.

本発明によると、少なくとも信号ピンSHと貫通孔162との隙間および信号ピンSCと貫通孔163との隙間、好ましくは上記各隙間を含めてシールドカバー16と基台内面(この実施形態ではプリント配線板15)との間に、磁性粉末からなる電磁波吸収材料を含む電磁波遮蔽樹脂30が充填される。   According to the present invention, at least the gap between the signal pin SH and the through-hole 162 and the gap between the signal pin SC and the through-hole 163, preferably including the gaps, the shield cover 16 and the inner surface of the base (in this embodiment, the printed wiring) An electromagnetic wave shielding resin 30 containing an electromagnetic wave absorbing material made of magnetic powder is filled between the plate 15).

この出力コネクタ10Aを組み立てるには、まず、接地ピンE、信号ピンSH,SCを、それぞれ対応する貫通孔161,162,163に貫通させてシールドカバー16をコネクタ基台11の基台内面側に取り付けたのち、好ましくは接地ピンEをシールドカバー16にハンダ付けする前に、信号ピンSH,SCと貫通孔162,163とを、それらの間の各隙間が均一になるようにほぼ同軸的に位置合わせして、所定の治具にて仮止めする。この位置合わせは、接地ピンEを中心としてシールドカバー16を回転させることにより行う。   To assemble this output connector 10A, first, the grounding pin E and the signal pins SH, SC are passed through the corresponding through holes 161, 162, 163, respectively, and the shield cover 16 is placed on the inner surface of the base of the connector base 11. After the mounting, preferably before the ground pin E is soldered to the shield cover 16, the signal pins SH, SC and the through holes 162, 163 are made substantially coaxial so that the gaps between them are uniform. Align and temporarily fix with a predetermined jig. This alignment is performed by rotating the shield cover 16 around the ground pin E.

その後、図1a,図1bに示すように、信号ピンSHと貫通孔162との隙間、信号ピンSCと貫通孔163との隙間から、シールドカバー16とコネクタ基台11との間の空間内に電磁波遮蔽樹脂30を注入して硬化させて、シールドカバー16とコネクタ基台11とを一体化する。そして、電磁波遮蔽樹脂30が硬化するのを待って、接地ピンEをシールドカバー16にハンダ付けする。   After that, as shown in FIGS. 1 a and 1 b, the gap between the signal pin SH and the through hole 162 and the gap between the signal pin SC and the through hole 163 enter the space between the shield cover 16 and the connector base 11. The electromagnetic wave shielding resin 30 is injected and cured to integrate the shield cover 16 and the connector base 11. Then, after the electromagnetic wave shielding resin 30 is cured, the ground pin E is soldered to the shield cover 16.

電磁波遮蔽樹脂30の樹脂材はエポキシ樹脂などであってもよいが、作業性および生産性の観点から紫外線の照射により短時間で硬化する紫外線硬化樹脂(例えば、スリーボンド社製の品番3042D)が好ましい。   The resin material of the electromagnetic wave shielding resin 30 may be an epoxy resin or the like, but from the viewpoint of workability and productivity, an ultraviolet curable resin that is cured in a short time by irradiation with ultraviolet rays (for example, product number 3042D manufactured by Three Bond Co., Ltd.) is preferable. .

なお、紫外線硬化樹脂を用いる場合、上記したピンと貫通孔との間の隙間から紫外線を照射することになるが、その隙間が狭いことから、紫外線がシールドカバー16内に行き届かないことがあるため、紫外線硬化樹脂でも嫌気性硬化を兼ね備えていることがより好ましい。   In the case where an ultraviolet curable resin is used, ultraviolet rays are irradiated from the gap between the pin and the through hole, but the ultraviolet ray may not reach the shield cover 16 because the gap is narrow. It is more preferable that the ultraviolet curable resin also has anaerobic curing.

このように、本発明によれば、信号ピンSHと貫通孔162との隙間および信号ピンSCと貫通孔163との隙間が電磁波遮蔽樹脂30にて塞がれているため、出力コネクタ10Aからマイクケース20内への電磁波による高周波電流の流れ込みを確実に防止することが可能となる。   As described above, according to the present invention, the gap between the signal pin SH and the through hole 162 and the gap between the signal pin SC and the through hole 163 are blocked by the electromagnetic wave shielding resin 30, so that the output connector 10 </ b> A is connected to the microphone. It is possible to reliably prevent a high-frequency current from flowing into the case 20 due to electromagnetic waves.

なお、磁性粉末には、電気絶縁性を有するフェライト粉末や軟磁性材料等が用いられるが、その磁性粉末の選択や混合量は、電磁波遮蔽効果を確認しながら、適宜決められてよい。   As the magnetic powder, ferrite powder or soft magnetic material having electrical insulation is used, but the selection and mixing amount of the magnetic powder may be appropriately determined while confirming the electromagnetic wave shielding effect.

また、別の効果として、電磁波遮蔽樹脂30にてシールドカバー16とコネクタ基台11とが一体化されているため、出力コネクタ10Aを上記マイクケース20内に装着し、雄ネジ12を上記マイクケース20の内壁面に当接するようにきつく締め付けて固定したとしても、コネクタ基台11に対してシールドカバー16が回転することがなく、信号ピンSH,SCとシールドカバー16の接触、すなわち短絡を防止することができる。   As another effect, since the shield cover 16 and the connector base 11 are integrated by the electromagnetic wave shielding resin 30, the output connector 10A is mounted in the microphone case 20, and the male screw 12 is connected to the microphone case. Even if it is tightened and fixed so as to be in contact with the inner wall surface 20, the shield cover 16 does not rotate with respect to the connector base 11, and contact between the signal pins SH and SC and the shield cover 16, that is, short circuit is prevented. can do.

上記実施形態では、プリント配線板15が設けられているが、場合によっては、プリント配線板15は省略されてもよい。また、本発明には、上記構成の出力コネクタを備えたコンデンサマイクロホンも含まれる。   In the said embodiment, although the printed wiring board 15 is provided, the printed wiring board 15 may be abbreviate | omitted depending on the case. The present invention also includes a condenser microphone provided with the output connector configured as described above.

本発明の実施形態に係る出力コネクタをシールドカバーのみを断面として示す正面図。The front view which shows the output connector which concerns on embodiment of this invention as a cross section only in a shield cover. 図1aのA−A線断面図。FIG. 1B is a cross-sectional view taken along line AA in FIG. 図1aの平面図。The top view of FIG. 従来例としての出力コネクタをシールドカバーのみを断面として示す正面図。The front view which shows only the shield cover as a cross section of the output connector as a prior art example. 図2aのB−B線断面図。FIG. 2B is a sectional view taken along line BB in FIG. 図2aの平面図。Fig. 2b is a plan view of Fig. 2a.

符号の説明Explanation of symbols

10A 出力コネクタ
11 コネクタ基台
12 固定用の雄ネジ
13 雌ネジ
15 プリント配線板
16 シールドカバー
16a 基板部
16b スカート部
161〜163 貫通孔
20 マイクケース
30 電磁波遮蔽樹脂
E 接地用の1番ピン
SH ホット側の2番ピン
SC コールド側の3番ピン
DESCRIPTION OF SYMBOLS 10A Output connector 11 Connector base 12 Fixing male screw 13 Female screw 15 Printed wiring board 16 Shield cover 16a Board | substrate part 16b Skirt part 161-163 Through-hole 20 Microphone case 30 Electromagnetic wave shielding resin E The 1st pin for grounding SH Hot 2nd pin on the side SC 3rd pin on the cold side

Claims (4)

電気絶縁体からなるコネクタ基台に1本の接地ピン(1番ピン)と2本の信号ピン(2番ピン,3番ピン)とが貫設されており、コンデンサマイクロホンのマイクケース内の端部に装着される3ピンタイプの出力コネクタで、上記コネクタ基台の上記マイクケースの内側に位置する基台内面側に、上記基台内面の上部を覆う基板部と上記コネクタ基台の外周面に嵌合されるスカート部とを含み、上記基板部に上記接地ピンと実質的に同一径で上記接地ピンを接触した状態で貫通させるひとつの第1貫通孔と、上記各信号ピンよりも大径で上記各信号ピンを非接触で貫通させる2つの第2貫通孔とが穿設されているシールドカバーが取り付けられているマイクロホン用出力コネクタにおいて、
少なくとも上記第2貫通孔と上記信号ピンとの間の隙間に、磁性粉末からなる電磁波吸収材料を含む電磁波遮蔽樹脂が充填されていることを特徴とするマイクロホン用出力コネクタ。
One ground pin (No. 1 pin) and two signal pins (No. 2 and No. 3 pins) are penetrated through the connector base made of an electrical insulator, and the end of the condenser microphone inside the microphone case A 3-pin type output connector attached to the base, on the inner surface of the base on the inner side of the microphone case of the connector base, and on the outer surface of the connector base and covering the upper part of the inner surface of the base A first through hole that penetrates the substrate portion with the ground pin substantially in the same diameter as the ground pin, and having a diameter larger than each of the signal pins. In the microphone output connector to which the shield cover in which the two second through holes for penetrating the signal pins in a non-contact manner are attached,
An output connector for a microphone, characterized in that at least a gap between the second through hole and the signal pin is filled with an electromagnetic wave shielding resin containing an electromagnetic wave absorbing material made of magnetic powder.
上記電磁波遮蔽樹脂の樹脂材として、嫌気性硬化を兼ね備えている紫外線硬化樹脂を用いることを特徴とする請求項1に記載のマイクロホン用出力コネクタ。   2. The microphone output connector according to claim 1, wherein an ultraviolet curable resin having anaerobic curing is used as the resin material of the electromagnetic wave shielding resin. 上記電磁波遮蔽樹脂が、上記シールドカバーと上記基台内面との間にも充填されていることを特徴とする請求項1または2に記載のマイクロホン用出力コネクタ。   3. The microphone output connector according to claim 1, wherein the electromagnetic wave shielding resin is also filled between the shield cover and the inner surface of the base. 請求項1ないし3のいずれか1項に記載のマイクロホン用出力コネクタを備えているコンデンサマイクロホン。   A condenser microphone comprising the microphone output connector according to any one of claims 1 to 3.
JP2008040946A 2008-02-22 2008-02-22 Microphone output connector and condenser microphone Expired - Fee Related JP5070083B2 (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011205179A (en) * 2010-03-24 2011-10-13 Audio Technica Corp Output connector for condenser microphone, and condenser microphone
JP2012019325A (en) * 2010-07-07 2012-01-26 Audio Technica Corp Capacitor microphone output connector and capacitor microphone having the same
JP2012060276A (en) * 2010-09-07 2012-03-22 Audio Technica Corp Electromagnetic noise eliminator, and microphone using the same

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JP2004031291A (en) * 2002-06-28 2004-01-29 Fdk Corp Signal transmitting cable with connector
JP2005311752A (en) * 2004-04-22 2005-11-04 Audio Technica Corp Output connector of microphone
JP2006174310A (en) * 2004-12-17 2006-06-29 Audio Technica Corp Condenser microphone
JP2007324806A (en) * 2006-05-31 2007-12-13 Audio Technica Corp Output connector for condenser microphone

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Publication number Priority date Publication date Assignee Title
JPH0676887A (en) * 1992-08-31 1994-03-18 Matsushita Electric Ind Co Ltd Connector device
JP2001110642A (en) * 1999-10-12 2001-04-20 Daido Steel Co Ltd Noise filter with built-in connector and producing method therefor
JP2004031291A (en) * 2002-06-28 2004-01-29 Fdk Corp Signal transmitting cable with connector
JP2005311752A (en) * 2004-04-22 2005-11-04 Audio Technica Corp Output connector of microphone
JP2006174310A (en) * 2004-12-17 2006-06-29 Audio Technica Corp Condenser microphone
JP2007324806A (en) * 2006-05-31 2007-12-13 Audio Technica Corp Output connector for condenser microphone

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011205179A (en) * 2010-03-24 2011-10-13 Audio Technica Corp Output connector for condenser microphone, and condenser microphone
JP2012019325A (en) * 2010-07-07 2012-01-26 Audio Technica Corp Capacitor microphone output connector and capacitor microphone having the same
JP2012060276A (en) * 2010-09-07 2012-03-22 Audio Technica Corp Electromagnetic noise eliminator, and microphone using the same

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