JPS5970041A - Privacy telephone set of communication circuit - Google Patents

Privacy telephone set of communication circuit

Info

Publication number
JPS5970041A
JPS5970041A JP17949882A JP17949882A JPS5970041A JP S5970041 A JPS5970041 A JP S5970041A JP 17949882 A JP17949882 A JP 17949882A JP 17949882 A JP17949882 A JP 17949882A JP S5970041 A JPS5970041 A JP S5970041A
Authority
JP
Japan
Prior art keywords
subcarrier
signal
modulated
circuit
wave
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.)
Pending
Application number
JP17949882A
Other languages
Japanese (ja)
Inventor
Masaharu Muto
雅春 武藤
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.)
Tokyo Sanyo Electric Co Ltd
Sanyo Electric Co Ltd
Sanyo Denki Co Ltd
Original Assignee
Tokyo Sanyo Electric Co Ltd
Sanyo Electric Co Ltd
Sanyo Denki 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 Tokyo Sanyo Electric Co Ltd, Sanyo Electric Co Ltd, Sanyo Denki Co Ltd filed Critical Tokyo Sanyo Electric Co Ltd
Priority to JP17949882A priority Critical patent/JPS5970041A/en
Publication of JPS5970041A publication Critical patent/JPS5970041A/en
Pending legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04KSECRET COMMUNICATION; JAMMING OF COMMUNICATION
    • H04K1/00Secret communication
    • H04K1/04Secret communication by frequency scrambling, i.e. by transposing or inverting parts of the frequency band or by inverting the whole band

Landscapes

  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)

Abstract

PURPOSE:To uniform an output level by modulating a voice signal by one of the 2nd and 3rd subcarriers and passing the modulated signal through a filter to fix the level on the transmitting side, and applying the 2nd and 3rd subcarriers to the received signal alternately to demodulate the signal on the receiving side. CONSTITUTION:A voice signal fa is modulated by the 2nd subcarrier 4fp and only a modulated signal (4fp+fa) is passed by a BPF6. The 2nd subcarrier 4fp and the 3rd subcarrier 5fp are alternately applied by a switch 13 to obtain output signals fa, (fp-fa), which are applied to a modulator 8 to transmit the modulated signal. The transmitted signal is detected by a receiving signal detecting circuit 17 to obtain a signal fa'. On the basis of any one of (fp-fa) and fa out of the signal fa', the subcarriers 5fp, 4fp are switched by a switch 28, only the demodulated signal (4fp+fa) is selected through a BPF19 and then the subcarrier 4fp is applied to the selected signal. Subsequently, an output signal fa is taken out and applied to an amplifier circuit 21 to output the amplified signal from a speaker 22.

Description

【発明の詳細な説明】 (イ)産業上の利用分野 本発明は自己の通話の内容が他人に盗聴されることがな
いようにした通信回路の秘話装置に関する。
DETAILED DESCRIPTION OF THE INVENTION (a) Field of Industrial Application The present invention relates to a confidential communication device for a communication circuit that prevents the contents of one's phone calls from being eavesdropped on by others.

(ロ)背景技術 最近電話回線に接続された親機に、その親機より離れた
ところにある子機で、無線により電話通話することがで
きるようにした無線電話機が多く使用されてきている。
(B) Background Art Recently, many wireless telephones have come into use, which are connected to a telephone line and are capable of making wireless phone calls with a slave unit located at a distance from the base unit.

斯る無線電話機に於いて、これら機器間の秘話性が重要
視されてきた。そのため従来は送信側で通話スペクトル
を反転して送信し、受信側では送信側と逆の回路構成に
より、通話スペクトルを復元し音声を再現する方式のも
のがある1、しかし同一方式の受信機が多くなれば秘話
性は薄れる。
In such wireless telephones, importance has been placed on confidentiality between these devices. Therefore, conventionally there is a method in which the transmitting side inverts the speech spectrum and transmits it, and the receiving end restores the speech spectrum and reproduces the voice using a circuit configuration opposite to that on the transmitting side.1However, receivers using the same method If there are too many, the sense of secrecy will diminish.

(ハ)解決゛しようとする問題点 前述の欠点を除去するため音声スペクトラムの反転と正
規とをある時間間隔で切換えてやり、この切換え間隔や
タイミングを変えるのみで数種類の秘話回線をつくるこ
とができるが、音声スペクトラムの反転側はダブルバラ
ンスモジュレータ回路及びバンドパスフィルタを通過さ
せるため、前記音声スペクトラムの反転と正規とを切換
える際に位相ずれが生じ、受信側で復元したときに、切
換えノイズを生じる。そこで音声信号を変調し正規スペ
クトルと反転スペクトルとを形成するにあたって、第1
及び第2モジユレータとバンドパスマイナス1倍した第
3副搬送波とでもって音声信号を変調することによって
、前記切換えノイズの発生を防止するよう圧することが
考えられる。この場合に音声信号をある時間間隔で第1
モジユレータに加えられる第2及び第3副搬送波で変調
し、得られた変調波をバンドパスフィルタを通過させ前
記バンドパスフィルタを通過した変調波を、さらに第2
モジ−レータで前記第2又は第3副搬送波の一方でもっ
て変調することが考えられるが、これであるとバンドパ
スフィルタには音声信号(fa)  を第2副搬送波(
4P)及び第3副搬送波(5,)で交互に変調した変調
波14f、+falと15fP−falとが通過するこ
とになる。今第1副搬送波(fP)を4.7 K Hz
、音声信号(fa)  を約IK Hzとすると、 + 4 f、十fal  = 19.8KHz15fp
fal二22.5K11z となり、バンドパスフィルタは18.8KHz〜23.
5KI]zまでの信号を通過させる必要があるが、バン
ドパスフィルタの周波数はその間一様でないので、通過
する周波数の信号によってレベル差を生じる。
(c) Problems to be solved In order to eliminate the above-mentioned drawbacks, the voice spectrum is switched between inverted and normal at certain time intervals, and it is possible to create several types of secret lines simply by changing the switching interval and timing. However, since the inverted side of the audio spectrum passes through a double balance modulator circuit and a bandpass filter, a phase shift occurs when switching between the inverted and normal audio spectrum, and when restored on the receiving side, switching noise is generated. arise. Therefore, in modulating the audio signal to form a normal spectrum and an inverted spectrum, the first step is to
It is conceivable to prevent the switching noise from occurring by modulating the audio signal with the second modulator and the third subcarrier multiplied by the bandpass minus one. In this case, the audio signal is
The modulated wave is modulated by the second and third subcarriers applied to the modulator, the resulting modulated wave is passed through a bandpass filter, and the modulated wave that has passed through the bandpass filter is further
It is conceivable that a modulator modulates either the second or third subcarrier, but in this case, the audio signal (fa) is sent to the bandpass filter by the second subcarrier (fa).
4P) and the third subcarrier (5,), modulated waves 14f, +fal and 15fP-fal will pass through. Now the first subcarrier (fP) is 4.7 KHz
, assuming that the audio signal (fa) is approximately IK Hz, + 4 f, 10 fal = 19.8 KHz 15 fp
Fal2 is 22.5K11z, and the bandpass filter is 18.8KHz to 23.
It is necessary to pass signals up to 5KI]z, but since the frequency of the bandpass filter is not uniform during that time, a level difference occurs depending on the signal of the passing frequency.

に)問題点を解決するための手段 本発明はそこで音声信号を第1モジユレータでは第2又
は第3副搬送波の一方のみで変調し、バンドパスフィル
タには第2又は第3副搬送波の一方のみで変調された変
調波を通過させるようにし、前記バンドパスフィルタか
らはレベルが一定の信号を得ることができるようにした
通信回線の秘話装置を提供するものである。
2) Means for Solving the Problem The present invention therefore modulates the audio signal with only one of the second or third subcarrier in the first modulator, and modulates the audio signal with only one of the second or third subcarrier in the bandpass filter. The present invention provides a communication line privacy device that allows a modulated wave modulated by the bandpass filter to pass through and obtains a signal with a constant level from the bandpass filter.

(ホ)実施例 以下本発明を図面に従って説明すると、(1)は送信回
路、(2)は受信回路である。前記送信回路(刀はマイ
クロホン(3)、該マイクロホン(3)に接続された増
幅回路(4)、該増幅回路(4)で増幅された音声信号
を変調する第1ダブルバランスモジユレータ(5)、変
調した音声信号をバンドパスさせる第1バンドパスフイ
ルタ(G)、該第1バンドパスフイルタ(6)に接続さ
れた第2ダブルバランスモジユレータ(力、該第2ダブ
ルバランスモジヱレータ(力でモジュレータした信号を
送信する変調送信回路(8)、該変調送信回路(8)に
接続されたアンテナ(9)、第1副搬送波信号を発生す
る第1発振回路QO)、該第1発振回路00で発振され
た第1副搬送波を整数倍、例えば4倍し第2副搬送波を
発生する4倍回路(11)、及び第1副搬送波を前記整
数倍プラス1倍、即ち5倍し第3副搬送波を発生する5
倍回路α沢前記4倍回路α1)又は5倍回路a3の第2
又は第3副搬送波を選択的に第2ダブルバランスモジ−
レータ(力に加える第1スイツチ(13)、前記第1発
振回路(101よりの発振信号をうけ、前記第1スイツ
チ03を切換えるスイッチング信号(第3図)を発生す
る第1スイツチング信号発生回路04)、及び同期信号
発生回路09とよりなる。受信回路■は送信回路(1)
と対称をなすもので、アンテナ(16)、受信検波回路
07)、第1タフルバランスデイモジーレータ(181
,第2バントパスフィルタQl、第2ダブルバランスデ
ィモジ−レータ(至)、増幅回路(21+、スピーカc
!2、さらに第2発振回路(ハ)、4倍及び5倍回路C
!4)(251、第2スイツチング信号発生回路(イ)
及び同期信号検出回路(27)とよりなる。前記第1ス
イツチング信号発生回路04)及び第2スイツチング信
号発生回路(26)は同一構成をなし、例えば第2図に
示すように、第1発振回路(10)の発振信号をシフト
し信号(a)(b)(c)(d)を発生するシフトレジ
スタf2gl及び該シフトレジスタQ9)の出力に接続
されたノア回路00)〜0■及びスイッチ(ト)〜(2
)とよりなり、第3図に示すような6種類のスイッチン
グ信号が得られる。
(E) Embodiments Below, the present invention will be explained with reference to the drawings. (1) is a transmitting circuit, and (2) is a receiving circuit. The transmission circuit (the sword is a microphone (3), an amplifier circuit (4) connected to the microphone (3), and a first double balance modulator (5) that modulates the audio signal amplified by the amplifier circuit (4). ), a first bandpass filter (G) for bandpassing the modulated audio signal, a second double balance modulator (G) connected to the first bandpass filter (6); (a modulation transmission circuit (8) that transmits a signal modulated by force, an antenna (9) connected to the modulation transmission circuit (8), a first oscillation circuit QO that generates a first subcarrier signal), the first A quadrupling circuit (11) generates a second subcarrier by multiplying the first subcarrier oscillated by the oscillation circuit 00 by an integral number, for example, 4, and multiplying the first subcarrier by the integer plus 1, that is, by 5. 5 to generate the third subcarrier
The second of the quadrupling circuit α1) or the quintuple circuit a3
Alternatively, the third subcarrier may be selectively connected to the second double balance module.
a first switch (13) that applies the force to the first switch (13); a first switching signal generation circuit 04 that receives an oscillation signal from the first oscillation circuit (101) and generates a switching signal (FIG. 3) for switching the first switch 03; ), and a synchronization signal generation circuit 09.The receiving circuit (■) is a transmitting circuit (1).
It is symmetrical to the antenna (16), reception detection circuit 07), and first tuffle balanced demodulator (181).
, second bandpass filter Ql, second double balance demodulator (to), amplifier circuit (21+, speaker c
! 2. Furthermore, the second oscillation circuit (C), quadruple and quintuple circuit C
! 4) (251, second switching signal generation circuit (a)
and a synchronization signal detection circuit (27). The first switching signal generation circuit 04) and the second switching signal generation circuit (26) have the same configuration, and for example, as shown in FIG. ) (b) (c) (d) NOR circuits 00) to 0■ and switches (g) to (2) connected to the outputs of the shift register f2gl and the shift register Q9) that generate
), six types of switching signals as shown in FIG. 3 are obtained.

以下本発明の通信回路の秘話装置の動作について説明す
ると、マイクロホン(31K加えられた音声信号f、を
第1ダブルバランスモジユレータ(5)にて前記第2又
は第3副搬送波のいずれか一方、本実施例では4倍回路
(11)よりの第2副搬送波4f、にて変調し、変調信
号+ 4 f、+ fa lのみを発生させる。
The operation of the confidential communication device of the communication circuit of the present invention will be explained below.The microphone (voice signal f to which 31K is added) is transmitted to one of the second or third subcarriers by the first double balance modulator (5). , in this embodiment, is modulated by the second subcarrier 4f from the quadrupling circuit (11) to generate only modulated signals +4f and +fa1.

次に第1バンドパスフイルタ(6)でマイナス分を消滅
させ、変調信号14f、+falのみをパスさせるため
、変調信号はl 4 fp+ faIのみとなり出力レ
ベルハ−定とされて第2ダブルバランスモジユレータ(
力に加えられる。第2ダブルバランスモジユレータ(力
には第1スイツチ0□□□により4倍回路01)よりの
第2副搬送波(4fP)と5倍回路(5)よりの第3副
搬送波(5f、)とが交互に加えられるので、前記変調
信号14f、+f−は変調される。前記第2副搬送波(
4fP)で変調し正規スペクトルをつくルト、第2ダブ
ルバランスモジユレータ(7)の出力信号は1f11と
なり、第3副搬送波(5f、)で変調し反転スペクトル
をつくると、第2ダプルノくランスモジュレータ(力の
出力信号はif、−f、lと1なる。これら信号は同期
信号発生回路a51cy>同期信号(f8)とともに変
調送信回路(8)K加えられ、アンテナ(9)より送信
される。前記送信された信号は受信回路(2)のアンテ
ナα6)に受信され、受信検波回路07)で検波される
。検波して得た信号(f、)は第1ダブルバランスデイ
モジユレータ(18)K加えられる。
Next, the first band pass filter (6) eliminates the negative part and passes only the modulation signals 14f and +fal, so that the modulation signal becomes only l 4 fp + faI, and the output level is set at high constant, and the second double balance module rater (
added to the force. The second subcarrier (4fP) from the second double balance modulator (4x circuit 01 by the first switch 0□□□) and the third subcarrier (5f, ) from the 5x circuit (5) are applied alternately, the modulation signals 14f, +f- are modulated. The second subcarrier (
4fP) to create a normal spectrum, the output signal of the second double balance modulator (7) becomes 1f11, and modulates with the third subcarrier (5f, ) to create an inverted spectrum. The output signals of the modulator (force are 1 if, -f, and l. These signals are added to the modulation transmitter circuit (8) K together with the synchronization signal generation circuit a51cy > synchronization signal (f8), and are transmitted from the antenna (9). The transmitted signal is received by the antenna α6) of the reception circuit (2) and detected by the reception detection circuit 07). The detected signal (f,) is applied to the first double balance demodulator (18)K.

このとき検波して得た信号が+rpralである場合、
第2スイツチ(28)が第3副搬送波(5rp)を、又
検波して得た信号が(fP)のとき、第2副搬送波(4
fP)を夫々選択するように第2スイツチ(28)は切
換えられる。このことをさら罠詳述すると、受信回路(
勾に受信された同期信号(f、 )は同期検波回路(2
力で検波され、第2スイツチング信号発生回路C26)
に加えられ、該第2スイツチング信号発生回路(26)
を制御し、第1スイツチ03)に同期し第2スイツチC
I!81を切換えるスイッチ信号を発生する。上述のよ
うに第1ダブルバランスデイモジユレータ08)の出力
信号は送信回路(1)に同期して正規スペクトルと反転
スペクトルとが切換えられ、復調信号j4r、−1f、
lと復調信号15f、±f、−falとがでる。これら
は第2バンドパスフイルタ(Lglで濾波すると、いず
れも復調信号14f、+f、lのみが選択されるのでレ
ベルは一定とされ、第2ダブルバランスディモジ−レー
タ(支)1へ加えられる。前記第2ダブルバランスデイ
モジユレータ(20)には第2副搬送波(f8)が常に
加えられるので、前記第2ダブルバランスディモジ−レ
ータ(イ)の出力信号は14f、十f、±4f、lとな
り、そのうち出力信号(fa)のみをとり出し増幅回路
(21)に加える。従ってスピーカ(221よりはもと
の音声信号(う)が出力される。
If the signal obtained by detection at this time is +rpral,
When the second switch (28) detects the third subcarrier (5rp) and the signal obtained by detecting it is (fP), the second subcarrier (4rp) is detected.
The second switch (28) is switched so as to select respectively fP). To explain this in more detail, the receiving circuit (
The synchronization signal (f, ) received at the gradient is sent to the synchronization detection circuit (2
The second switching signal generation circuit C26)
and the second switching signal generation circuit (26)
and synchronizes with the first switch 03) and the second switch C
I! 81 is generated. As mentioned above, the output signal of the first double balance day modulator 08) is switched between the normal spectrum and the inverted spectrum in synchronization with the transmitting circuit (1), and the demodulated signals j4r, -1f,
l and demodulated signals 15f, ±f, -fal are output. When these are filtered by the second band pass filter (Lgl), only the demodulated signals 14f, +f, and l are selected, so that the level is kept constant and is applied to the second double balance demodulator (support) 1. Since the second subcarrier (f8) is always applied to the second double balance demodulator (20), the output signal of the second double balance demodulator (a) is 14f, 10f, ±4f. , l, of which only the output signal (fa) is taken out and applied to the amplifier circuit (21).Therefore, the original audio signal (c) is output from the speaker (221).

尚、第1スイツチ0及び第2スイツチ(28)を切換え
るスイッチング信号はスイッチμs)〜(至)のうち任
意のスイッチ例えばスイッチO〔:)(至)をオンする
とスイッチング信号(第3図C1D)を生じ、スイッチ
57)ta?)をオンするとスイッチング信号(第3図
C1D)を生じ、さらにスイッチ(ハ)儲をオンすると
スイッチング信号(第3図C1D)を生じるので、これ
らスイッチ(支))〜0υを切換えることにより正規ス
ペクトルと逆転スペクトルとの切換え時間を変えること
ができる。
Note that the switching signal for switching the first switch 0 and the second switch (28) is a switching signal (Fig. 3 C1D) when any switch among switches μs) to (to) is turned on, for example, switch O [:) (to). occurs, and the switch 57) ta? ) is turned on, a switching signal (C1D in Figure 3) is generated, and when the switch (C) is turned on, a switching signal (C1D in Figure 3) is generated, so by switching these switches (branches) to 0υ, a normal spectrum can be obtained. The switching time between the spectrum and the reversed spectrum can be changed.

(へ)効果 本発明の通信回路の秘話装置は上述の如く、送信側では
音声信号を第2副搬送波又は第3副搬送波のいずれか一
方のみで変調するようにしたので、フィルタを通過させ
る変調波の周波数は前記第2副搬送波又は第3副搬送波
のいずれかを中心として変化するのみであるから、前記
フィルタを通過する変調波のレベルは一定にされ、又受
信側では前記変調波を先ず交互に加えられる第2副搬送
波及び第3副搬送波で復調するので、フィルタを通過す
る復調信号の周波数変化も少(なるから、出力レベルが
一定の復調信号が得られる。
(f) Effect As mentioned above, the communication circuit of the present invention modulates the audio signal with only either the second subcarrier or the third subcarrier on the transmitting side, so it is modulated to pass the filter. Since the frequency of the wave only changes around either the second subcarrier or the third subcarrier, the level of the modulated wave passing through the filter is kept constant, and on the receiving side, the modulated wave is first Since demodulation is performed using the second and third subcarriers that are applied alternately, there is little change in the frequency of the demodulated signal passing through the filter (therefore, a demodulated signal with a constant output level can be obtained).

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

第1図は本発明の通信回路の秘話装置のブロック図、第
2図は本発明に用いたスイッチング信号発生回路図、第
3図は本発明に用いたスイッチング信号波形図である。 (刀・・・送信回路、 (2)・・・受信回路、 (5
)・・・第1ダブルバランスドモジエレータ、  (6
)・・・第1フイルタ、(7)・・・第2ダブルバラン
スモジユレータ、Qll・・・4倍回路、 Q21・・
・5倍回路、 0騰・・・第1スイッチ、 04)・・
・第1スイツチング信号発生回路、OQ・・・第1ダブ
ルバランスデイモジユレータ、a坤・・・第2フイルタ
、 (イ)・・・第2ダブルバランスディモジ−レータ
。 く  ω Q  OLLIL
FIG. 1 is a block diagram of a secret device of a communication circuit according to the present invention, FIG. 2 is a switching signal generation circuit diagram used in the present invention, and FIG. 3 is a switching signal waveform diagram used in the present invention. (Sword...transmission circuit, (2)...reception circuit, (5)
)...first double balanced modgierator, (6
)...First filter, (7)...Second double balance modulator, Qll...Quadruple circuit, Q21...
・5x circuit, 0 rise...1st switch, 04)...
- First switching signal generation circuit, OQ...first double balance demodulator, akon...second filter, (A)...second double balance demodulator. Ku ω Q OLLIL

Claims (1)

【特許請求の範囲】[Claims] (1)送信回路において、マイクロホンよリノ音声信号
を第1モジユレータで、第1副搬送波を整数倍した第2
副搬送波、あるいは第1副搬送波を前記整数倍プラス1
倍又は整数倍マイナス1倍した第3副搬送波のいずれか
一方で変調し、変調した変調波の一部を第1フイルタで
通過させ、通過させた変調波を第2モジユレータで前記
第2副搬送波あるいは第3副搬送波をある間隔で交互に
加えて変調し、変調して得た変調波を送信し、受信回路
において、前記受信した変調波を第1デイモジユレータ
で送信回路に同期した速さで交互に加えられる第2副搬
送波あるいは、第3副搬送波で復調し、復調して得られ
た復調波の一部を第2フイルタで除去し、前記第2フイ
ルタを通過した復調波を第2ディモジュl/−夕で第2
又は第3副搬送波によって裡調し、もとの音声信号を得
ることを特徴とした通信回線の秘話装置。
(1) In the transmission circuit, a first modulator converts the audio signal from the microphone into a second subcarrier that is an integer multiple of the first subcarrier.
The subcarrier or the first subcarrier is the integer times the above plus 1.
The modulated wave is modulated by either the third subcarrier multiplied by a factor of 1 or an integer times minus 1, a part of the modulated wave is passed through the first filter, and the passed modulated wave is transmitted to the second subcarrier by a second modulator. Alternatively, the third subcarrier is modulated by adding it alternately at a certain interval, the modulated wave obtained by modulation is transmitted, and in the receiving circuit, the received modulated wave is alternately applied by the first demodulator at a speed synchronized with the transmitting circuit. A second subcarrier or a third subcarrier added to the demodulated wave is demodulated, a part of the demodulated wave obtained by demodulation is removed by a second filter, and the demodulated wave that has passed through the second filter is converted into a second demodulated wave. /-Second in the evening
Or, a communication line secret device characterized in that the original voice signal is obtained by modulating it using a third subcarrier.
JP17949882A 1982-10-12 1982-10-12 Privacy telephone set of communication circuit Pending JPS5970041A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP17949882A JPS5970041A (en) 1982-10-12 1982-10-12 Privacy telephone set of communication circuit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP17949882A JPS5970041A (en) 1982-10-12 1982-10-12 Privacy telephone set of communication circuit

Publications (1)

Publication Number Publication Date
JPS5970041A true JPS5970041A (en) 1984-04-20

Family

ID=16066868

Family Applications (1)

Application Number Title Priority Date Filing Date
JP17949882A Pending JPS5970041A (en) 1982-10-12 1982-10-12 Privacy telephone set of communication circuit

Country Status (1)

Country Link
JP (1) JPS5970041A (en)

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