JPH1155394A - Loud-speaker communication equipment - Google Patents

Loud-speaker communication equipment

Info

Publication number
JPH1155394A
JPH1155394A JP20651497A JP20651497A JPH1155394A JP H1155394 A JPH1155394 A JP H1155394A JP 20651497 A JP20651497 A JP 20651497A JP 20651497 A JP20651497 A JP 20651497A JP H1155394 A JPH1155394 A JP H1155394A
Authority
JP
Japan
Prior art keywords
microphone
terminal
signal
speaker
circuit
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.)
Granted
Application number
JP20651497A
Other languages
Japanese (ja)
Other versions
JP3605265B2 (en
Inventor
Hiroshi Sumiya
浩史 角谷
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.)
Aiphone Co Ltd
Original Assignee
Aiphone Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Aiphone Co Ltd filed Critical Aiphone Co Ltd
Priority to JP20651497A priority Critical patent/JP3605265B2/en
Publication of JPH1155394A publication Critical patent/JPH1155394A/en
Application granted granted Critical
Publication of JP3605265B2 publication Critical patent/JP3605265B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Interconnected Communication Systems, Intercoms, And Interphones (AREA)
  • Cable Transmission Systems, Equalization Of Radio And Reduction Of Echo (AREA)
  • Telephone Function (AREA)

Abstract

PROBLEM TO BE SOLVED: To prevent hauling at the time of setting a microphone and a speaker for transmitting and receiving a transmission signal and a reception signal for communication when placed close to each other. SOLUTION: In a loud-speaker communication equipment for communicating with one terminal AQ1 and the other terminal BQ1, one terminal is provided with a microphone MIC1 to which a power is supplied through a microphone load circuit 1 for transmitting a transmission signal through a microphone amplifier 2 to the other terminal, and a speaker SP1 for receiving a reception signal from the terminal. The microphone load circuit of one terminal prevents hauling due to feedback from the speaker SP1 to the microphone MIC1 by using an LC tuning circuit 11. The microphone load circuit is constituted of a parallel circuit constituted of the LC tuning circuit substantially tuning with signal frequencies 1.5-3.0 kHz and a high resistance R1.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は拡声通話装置に係わ
り、マイクの負荷抵抗にLC同調回路を使用する拡声通
話装置に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a loudspeaker, and more particularly to a loudspeaker using an LC tuning circuit for a load resistance of a microphone.

【0002】[0002]

【従来の技術】従来よりこの種の拡声通話装置として図
3に示すようなものが提案されている。図3に示す拡声
通話装置は、2線の伝送路LN51、LN52を介して通話
のための上り音声信号である送話信号f51および下り音
声信号である受話信号f52の送受を行う1つの端末AQ
51と他の端末BQ51とで構成されている。
2. Description of the Related Art Conventionally, as shown in FIG. 3, there has been proposed this kind of loudspeaker apparatus. The loudspeaker apparatus shown in FIG. 3 is a single terminal AQ for transmitting and receiving a transmission signal f51, which is an upstream voice signal, and a reception signal f52, which is a downstream voice signal, for a call via two transmission lines LN51, LN52.
51 and another terminal BQ51.

【0003】1つの端末AQ51は、抵抗R51から成るマ
イク負荷回路51と、マイクMIC51と、スピーカSP
51と、マイクアンプ52と、コンデンサC51と、端末ケ
ース54と、2線の伝送路LN51、LN52を介して他の
端末BQ51との通話のために送受される送話信号f51お
よび受話信号f52を4線2線変換するハイブリッド回路
53とが設けられている。
[0005] One terminal AQ51 includes a microphone load circuit 51 including a resistor R51, a microphone MIC51, and a speaker SP.
51, a microphone amplifier 52, a capacitor C51, a terminal case 54, and a transmission signal f51 and a reception signal f52 transmitted / received for communication with another terminal BQ51 via two-line transmission lines LN51 and LN52. There is provided a hybrid circuit 53 for performing 4-wire to 2-wire conversion.

【0004】尚、スピーカSP51およびマイクMIC51
は、1つの端末AQ51の筐体である端末ケース54に近
距離で取り付けられている。マイクMIC51の一方の出
力側は、コンデンサC51およびマイクアンプ52を介し
てハイブリッド回路53の4線側に接続されている。ま
た、マイクMIC51の他方の出力側はハイブリッド回路
53の4線側に接続されている。更に、スピーカSP51
の入力側はハイブリッド回路53の4線側に接続されて
いる。
A speaker SP51 and a microphone MIC51
Is mounted at a short distance to a terminal case 54 which is a housing of one terminal AQ51. One output side of the microphone MIC51 is connected to the 4-wire side of the hybrid circuit 53 via the capacitor C51 and the microphone amplifier 52. The other output side of the microphone MIC51 is connected to the 4-wire side of the hybrid circuit 53. Further, the speaker SP51
Are connected to the 4-wire side of the hybrid circuit 53.

【0005】マイク負荷回路51を成し、一端が定電圧
源Vccに接続されている抵抗R51の他端は、マイクMI
C51とコンデンサC51間に接続されている。ハイブリッ
ド回路53の2線側は2線の伝送路LN51、LN52を介
して他の端末BQ51に接続されている。このように構成
された従来の拡声通話装置において、1つの端末AQ51
と他の端末BQ51間で送受される上り音声信号である送
話信号f51および下り音声信号である受話信号f52のう
ち、他の端末BQ51にて生成送出される下り音声信号で
ある受話信号f52が2線の伝送路LN51、LN52を介し
て1つの端末AQ51のハイブリッド回路53の2線側に
入力されることにより、この受話信号f52は2線4線変
換されて4線側より出力されスピーカSP51より放音さ
れる。
The other end of the resistor R51, which forms a microphone load circuit 51 and has one end connected to the constant voltage source Vcc, is connected to the microphone MI.
It is connected between C51 and capacitor C51. The two-wire side of the hybrid circuit 53 is connected to another terminal BQ51 via two-wire transmission lines LN51 and LN52. In the conventional loudspeaker apparatus thus constructed, one terminal AQ51
Of the transmission signal f51, which is an upstream voice signal, and the reception signal f52, which is a downstream voice signal, transmitted and received between the other terminal BQ51 and the reception voice signal f52, which is a downstream voice signal generated and transmitted by another terminal BQ51. When the received signal f52 is input to the two-wire side of the hybrid circuit 53 of one terminal AQ51 via the two-wire transmission lines LN51 and LN52, the reception signal f52 is converted to two-wire and four-wire, and output from the four-wire side to be output from the speaker SP51. More sound is emitted.

【0006】マイクMIC51より生成送出される上り音
声信号であり電気変換された送話信号f51は、コンデン
サC51を介してマイクアンプ52にて電圧増幅されてハ
イブリッド回路53の4線側に入力される。また、送話
信号f51はハイブリッド回路53にて4線2線変換さ
れ、2線側より2線の伝送路LN51、LN52を介して他
の端末BQ1に送出される。
A transmission signal f51, which is an up-speech signal generated and transmitted from the microphone MIC51 and electrically converted, is voltage-amplified by the microphone amplifier 52 via the capacitor C51 and input to the 4-wire side of the hybrid circuit 53. . Further, the transmission signal f51 is converted into four lines and two lines by the hybrid circuit 53, and is transmitted from the two lines to another terminal BQ1 via the two lines of transmission lines LN51 and LN52.

【0007】[0007]

【発明が解決しようとする課題】しかしながら、従来の
拡声通話装置では、1つの端末AQ51を構成するマイク
負荷回路51が抵抗R51のみで形成されていることか
ら、マイク負荷回路51のインピーダンスは一定であ
る。よって、端末カバー(筐体)54に設けられたマイ
クMIC51に近距離に設置されているスピーカSP51に
て出力される下り音声信号である受話信号f52のその一
部が音響帰還信号としてマイクMIC51へ帰還され、マ
イクMIC51より本来生成送出される上り音声信号であ
る送話信号f51の他に音響帰還信号も生成送出されてハ
ウリングするなどの難点があった。
However, in the conventional loudspeaker apparatus, the impedance of the microphone load circuit 51 is constant since the microphone load circuit 51 constituting one terminal AQ51 is formed by only the resistor R51. is there. Therefore, a part of the reception signal f52, which is a down-speech signal output from the speaker SP51 installed at a short distance from the microphone MIC51 provided on the terminal cover (housing) 54, is transmitted to the microphone MIC51 as an acoustic feedback signal. There has been a problem that an acoustic feedback signal is generated and transmitted in addition to the transmission signal f51 which is an upstream voice signal which is originally generated and transmitted from the microphone MIC51 and howling occurs.

【0008】本発明はこのような難点を解消するために
なされたもので、マイクとスピーカが端末ケースに近距
離に取り付けられている状態において、スピーカより出
力される信号の周波数特性の影響を考慮して、高抵抗に
LC同調回路を並列接続したマイク負荷回路を使用する
ことにより、マイクより生成送出される信号に供給され
る定電圧源からのバイアス電流を供給制御することによ
り、ハウリングを防止可能な拡声通話装置を提供するこ
とを目的としている。
The present invention has been made to solve such a problem, and considers the influence of the frequency characteristics of a signal output from a speaker when a microphone and a speaker are attached to a terminal case at a short distance. By using a microphone load circuit in which an LC tuning circuit is connected in parallel with a high resistance, howling is prevented by controlling the supply of a bias current from a constant voltage source supplied to a signal generated and transmitted from the microphone. It is intended to provide a possible loudspeaker device.

【0009】[0009]

【課題を解決するための手段】このような目的を達成す
る本発明の拡声通話装置は、1つの端末と他の端末と通
話する拡声通話装置において、1つの端末は、マイク負
荷回路を介して電源供給されマイクアンプを経由して他
の端末に送話信号を送るマイクと、他の端末からの受話
信号を受信するスピーカとを有し、1つの端末のマイク
負荷回路はLC同調回路を使用してスピーカからマイク
への帰還によるハウリングを防止したものである。
A loudspeaker apparatus according to the present invention for achieving the above object is a loudspeaker apparatus for communicating with one terminal and another terminal, wherein one terminal is connected via a microphone load circuit. It has a microphone that is supplied with power and sends a transmission signal to another terminal via a microphone amplifier, and a speaker that receives a reception signal from another terminal. The microphone load circuit of one terminal uses an LC tuning circuit. This prevents feedback from returning from the speaker to the microphone.

【0010】また、本発明におけるマイク負荷回路は、
信号周波数1.5〜3.0kHzに実質的に同調するL
C同調回路と高抵抗との並列回路から成るものである。
このように構成された本発明の拡声通話装置において、
スピーカにて出力される下り音声信号である受話信号の
その一部が音響帰還信号としてマイクへ帰還される際
に、マイクより生成送出される音響帰還信号が重畳され
た上り音声信号である送話信号に定電圧源よりバイアス
電流を供給するマイク負荷回路は、受話信号の周波数帯
域のハウリングが生じやすい帯域(1.5〜3.0kH
z)に対してマイク負荷回路を成すLC同調回路により
インピーダンスを低下させることから、音響帰還信号が
重畳された上り通話信号である送話信号のハウリングし
やすい(周波数)帯域が増幅されないようにハウリング
防止されて、1つの端末および他の端末間における通話
のための送話信号および受話信号の送受が可能となる。
Further, the microphone load circuit according to the present invention comprises:
L substantially tuned to a signal frequency of 1.5 to 3.0 kHz
It consists of a parallel circuit of a C tuning circuit and a high resistance.
In the thus configured loudspeaker apparatus of the present invention,
When a part of the reception signal, which is the downstream audio signal output from the speaker, is returned to the microphone as an acoustic feedback signal, the transmission is an upstream audio signal on which the acoustic feedback signal generated and transmitted from the microphone is superimposed. A microphone load circuit that supplies a bias current to a signal from a constant voltage source has a band (1.5 to 3.0 kHz) in which howling of the frequency band of the received signal is likely to occur.
Since the impedance is reduced by the LC tuning circuit forming the microphone load circuit with respect to z), the howling (frequency) band where the howling of the transmission signal, which is the uplink communication signal on which the acoustic feedback signal is superimposed, is easily amplified is not amplified. This prevents the transmission and reception of a transmission signal and a reception signal for a call between one terminal and another terminal.

【0011】[0011]

【発明の実施の形態】以下、本発明の拡声通話装置の一
実施例について、図面を参照して説明する。図1に示す
拡声通話装置は、2線の伝送路LN1、LN2を介して通
話のための上り音声信号である送話信号f1および下り
音声信号である受話信号f2の送受を行う1つの端末A
Q1と他の端末BQ1とで構成されている。
BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a block diagram showing an embodiment of a voice communication apparatus according to the present invention. The loudspeaker apparatus shown in FIG. 1 is a terminal A which transmits and receives a transmission signal f1 as an up-speech signal and a reception signal f2 as a down-speech signal for a call via two-line transmission lines LN1 and LN2.
Q1 and another terminal BQ1.

【0012】1つの端末AQ1は、マイク負荷回路1
と、マイクMIC1と、スピーカSP1と、マイクアンプ
2と、端末ケース4と、2線の伝送路LN1、LN2を介
して他の端末BQ1との通話のために送受される送話信
号f1およ受話信号f2を4線2線変換するハイブリッド
回路3と、コンデンサC2とが設けられている。尚、ス
ピーカSP1およびマイクMIC1は、1つの端末AQ1
の筐体である端末ケース4に近距離で取り付けられてい
る。
One terminal AQ1 has a microphone load circuit 1
And a microphone MIC1, a speaker SP1, a microphone amplifier 2, a terminal case 4, and a transmission signal f1 and a transmission signal f1 transmitted and received for communication with another terminal BQ1 via two-line transmission lines LN1 and LN2. A hybrid circuit 3 for converting the reception signal f2 into four lines and two lines and a capacitor C2 are provided. Note that the speaker SP1 and the microphone MIC1 are connected to one terminal AQ1.
Is mounted at a short distance to the terminal case 4 which is a housing of the device.

【0013】マイクMIC1の一方の出力側は、コンデ
ンサC2およびマイクアンプ2を介してハイブリッド回
路3の4線側に接続されている。また、マイクMIC1
の他方の出力側はハイブリッド回路3の4線側に接続さ
れている。更に、スピーカSP1の入力側はハイブリッ
ド回路3の4線側に接続されている。マイク負荷回路1
を成し、一端が定電圧源Vccに接続されている高抵抗R
1の他端は、マイクMIC1とコンデンサC2間に接続さ
れている。また、高抵抗R1の両端間には直列接続され
たコイルL1、抵抗R2およびコンデンサC1とから成る
LC同調回路11が並列接続されている。
One output side of the microphone MIC1 is connected to the 4-wire side of the hybrid circuit 3 via the capacitor C2 and the microphone amplifier 2. In addition, microphone MIC1
The other output side is connected to the 4-wire side of the hybrid circuit 3. Further, the input side of the speaker SP1 is connected to the 4-wire side of the hybrid circuit 3. Microphone load circuit 1
And a high resistance R having one end connected to the constant voltage source Vcc.
The other end of 1 is connected between microphone MIC1 and capacitor C2. Further, an LC tuning circuit 11 including a coil L1, a resistor R2 and a capacitor C1 connected in series is connected in parallel between both ends of the high resistance R1.

【0014】ハイブリッド回路3の2線側は2線の伝送
路LN1、LN2を介して他の端末BQ1に接続されてい
る。このように構成された本発明の拡声通話装置におい
て、以下その動作について説明する。1つの端末AQ1
と他の端末BQ1間で送受される上り音声信号である送
話信号f1および下り音声信号である受話信号f2のう
ち、他の端末BQ1にて生成送出される下り音声信号で
ある受話信号f2が2線の伝送路LN1、LN2を介して
1つの端末AQ1のハイブリッド回路3の2線側に入力
されることにより、この受話信号f2は2線4線変換さ
れて4線側より出力されスピーカSP1より放音され
る。
The two-wire side of the hybrid circuit 3 is connected to another terminal BQ1 via two-wire transmission lines LN1 and LN2. The operation of the thus configured loudspeaker apparatus according to the present invention will be described below. One terminal AQ1
Of the transmission signal f1 which is an uplink audio signal transmitted and received between the other terminal BQ1 and the reception signal f2 which is a downlink audio signal, the reception signal f2 which is a downlink audio signal generated and transmitted by another terminal BQ1 is When the received signal f2 is input to the 2-wire side of the hybrid circuit 3 of one terminal AQ1 via the 2-wire transmission lines LN1 and LN2, the reception signal f2 is converted to 2-wire and 4-wire and output from the 4-wire side to be output to the speaker SP1. More sound is emitted.

【0015】このとき、スピーカSP1より放音される
受話信号f2のうち、一部が音響帰還信号としてマイク
MIC1に入力されることより、マイクMIC1より本来
生成送出される上り音声信号である送話信号f1の他に
前述の音響帰還信号も生成送出される。よって、音響帰
還信号が重畳された送話信号f1がマイクアンプ2を介
して増幅されるようなハウリングを防止するために、音
響帰還信号が重畳された送話信号f1に対して定電圧源
Vccより供給されるバイアス電流は、図2に示すような
縦軸に1つの端末AQ1のマイク負荷回路1を成すLC
同調回路11のインピーダンスZ[Ω]、横軸に1つの端
末のスピーカSP1から放音される下り音声信号である
受話信号f2の周波数帯域f[kHz]から示される周波
数特性図のように、マイク負荷回路1を成すLC同調回
路11はハウリングしやすい信号周波数である1.5〜
3.0kHzに同調してインピーダンスZが低下するこ
とからカットされる。よって、マイクMIC1にて生成
送出される音響帰還信号が重畳された上り音声信号であ
る送話信号f1が1.5〜3.0kHzの周波数帯域が
増幅されないように電気変換され、音響/電気信号とし
て変換送出される。
At this time, since a part of the reception signal f2 emitted from the speaker SP1 is input to the microphone MIC1 as an acoustic feedback signal, the transmission signal which is an upstream voice signal originally generated and transmitted from the microphone MIC1 is transmitted. The above-mentioned acoustic feedback signal is generated and transmitted in addition to the signal f1. Therefore, in order to prevent howling in which the transmission signal f1 on which the acoustic feedback signal is superimposed is amplified via the microphone amplifier 2, the constant voltage source Vcc is applied to the transmission signal f1 on which the acoustic feedback signal is superimposed. The bias current supplied from the terminal AQ1 has a vertical axis as shown in FIG.
As shown in the frequency characteristic diagram of the impedance Z [Ω] of the tuning circuit 11 and the frequency band f [kHz] of the reception signal f2 which is the down-sound signal emitted from the speaker SP1 of one terminal on the horizontal axis, The LC tuning circuit 11 forming the load circuit 1 has a signal frequency of 1.5 to
It is cut because the impedance Z is lowered in synchronization with 3.0 kHz. Therefore, the transmission signal f1, which is an upstream audio signal on which the acoustic feedback signal generated and transmitted by the microphone MIC1 is superimposed, is converted into an electric signal so that the frequency band of 1.5 to 3.0 kHz is not amplified, and the sound / electric signal is output. Is converted and transmitted.

【0016】電気変換された送話信号f1は、コンデン
サC2を介してマイクアンプ2にて電圧増幅されてハイ
ブリッド回路3の4線側に入力される。また、増幅され
た送話信号f1はハイブリッド回路3にて4線2線変換
されて2線側より出力され、2線の伝送路LN1、LN2
を介して他の端末BQ1へ送出される。尚、上記実施例
では、1つの端末のマイクアンプの負荷抵抗にLC同調
回路を並列接続してハウリング防止をしたものを示した
が、他の端末BQ1の拡声マイクの負荷抵抗にLC同調
回路を並列接続してハウリング防止をしてもよい。
The electrically converted transmission signal f1 is amplified in voltage by the microphone amplifier 2 via the capacitor C2 and is input to the 4-wire side of the hybrid circuit 3. Further, the amplified transmission signal f1 is converted into four wires and two wires by the hybrid circuit 3 and output from the two wires side, and the transmission lines LN1 and LN2 of two wires are used.
To another terminal BQ1 via In the above embodiment, the LC tuning circuit is connected in parallel to the load resistance of the microphone amplifier of one terminal to prevent howling, but the LC tuning circuit is connected to the load resistance of the loudspeaker microphone of the other terminal BQ1. The howling may be prevented by connecting in parallel.

【0017】[0017]

【発明の効果】以上の説明から明らかなようにように、
本発明の拡声通話装置によれば、マイク負荷回路をハウ
リングしやすい周波数帯域でのインピーダンスが低下す
るようなLC同調回路で構成したので、マイクおよびス
ピーカを近距離に設置されている際のハウリングを防止
できるという効果がある。
As is clear from the above description,
According to the loudspeaker apparatus of the present invention, the microphone load circuit is constituted by the LC tuning circuit in which the impedance in the frequency band in which the howling is easily reduced is reduced, so that the howling when the microphone and the speaker are installed at a short distance is reduced. There is an effect that it can be prevented.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明の拡声通話装置の一実施例を示すブロッ
ク図。
FIG. 1 is a block diagram showing an embodiment of a voice communication apparatus according to the present invention.

【図2】本発明の拡声通話装置の一実施例の周波数特性
を示すグラフ。
FIG. 2 is a graph showing frequency characteristics of one embodiment of the loudspeaker apparatus of the present invention.

【図3】従来の拡声通話装置のブロック図。FIG. 3 is a block diagram of a conventional loudspeaker apparatus.

【符号の説明】[Explanation of symbols]

AQ1・・・・・1つの端末 BQ1・・・・・他の端末 MIC1・・・・・マイク SP1・・・・・スピーカ R1・・・・・高抵抗 1・・・・・マイク負荷回路 2・・・・・マイクアンプ 11・・・・・LC同調回路 AQ1 One terminal BQ1 Other terminal MIC1 Microphone SP1 Speaker R1 High resistance 1 Microphone load circuit 2 ..... Microphone amplifier 11 ..... LC tuning circuit

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】1つの端末(AQ1)と他の端末(BQ1)
とで通話する拡声通話装置において、 前記1つの端末は、マイク負荷回路(1)を介して電源供
給され、マイクアンプ(2)を経由して前記他の端末に
送話信号を送るマイク(MIC1)と、前記他の端末から
の受話信号を受信するスピーカ(SP1)とを有し、 前記1つの端末の前記マイク負荷回路は、LC同調回路
(11)を使用して前記スピーカから前記マイクへの帰
還によるハウリングを防止したことを特徴とする拡声通
話装置。
1. One terminal (AQ1) and another terminal (BQ1)
A microphone (MIC1), which is supplied with power via a microphone load circuit (1) and transmits a transmission signal to the other terminal via a microphone amplifier (2). ), And a speaker (SP1) for receiving a reception signal from the other terminal, wherein the microphone load circuit of the one terminal transmits a signal from the speaker to the microphone using an LC tuning circuit (11). A loudspeaker apparatus characterized by preventing howling due to the return of the telephone.
【請求項2】前記マイク負荷回路は、信号周波数1.5
〜3.0kHzに実質的に同調する前記LC同調回路と
高抵抗(R1)との並列回路から成ることを特徴とする
請求項1記載の拡声通話装置。
2. The microphone load circuit according to claim 1, wherein said microphone load circuit has a signal frequency of 1.5.
2. The loudspeaker apparatus according to claim 1, comprising a parallel circuit of said LC tuning circuit substantially tuned to .about.3.0 kHz and a high resistance (R1).
JP20651497A 1997-07-31 1997-07-31 Loudspeaker Expired - Fee Related JP3605265B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP20651497A JP3605265B2 (en) 1997-07-31 1997-07-31 Loudspeaker

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP20651497A JP3605265B2 (en) 1997-07-31 1997-07-31 Loudspeaker

Publications (2)

Publication Number Publication Date
JPH1155394A true JPH1155394A (en) 1999-02-26
JP3605265B2 JP3605265B2 (en) 2004-12-22

Family

ID=16524634

Family Applications (1)

Application Number Title Priority Date Filing Date
JP20651497A Expired - Fee Related JP3605265B2 (en) 1997-07-31 1997-07-31 Loudspeaker

Country Status (1)

Country Link
JP (1) JP3605265B2 (en)

Also Published As

Publication number Publication date
JP3605265B2 (en) 2004-12-22

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