JP3118308B2 - Noise detection circuit - Google Patents

Noise detection circuit

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Publication number
JP3118308B2
JP3118308B2 JP04102009A JP10200992A JP3118308B2 JP 3118308 B2 JP3118308 B2 JP 3118308B2 JP 04102009 A JP04102009 A JP 04102009A JP 10200992 A JP10200992 A JP 10200992A JP 3118308 B2 JP3118308 B2 JP 3118308B2
Authority
JP
Japan
Prior art keywords
noise
signal
broadcast
frequency
video
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
JP04102009A
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Japanese (ja)
Other versions
JPH05276539A (en
Inventor
良白 雪吉
清 長谷川
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.)
Sanyo Electric Co Ltd
Original Assignee
Sanyo Electric Co Ltd
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Filing date
Publication date
Application filed by Sanyo Electric Co Ltd filed Critical Sanyo Electric Co Ltd
Priority to JP04102009A priority Critical patent/JP3118308B2/en
Publication of JPH05276539A publication Critical patent/JPH05276539A/en
Application granted granted Critical
Publication of JP3118308B2 publication Critical patent/JP3118308B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Testing, Inspecting, Measuring Of Stereoscopic Televisions And Televisions (AREA)
  • Two-Way Televisions, Distribution Of Moving Picture Or The Like (AREA)

Description

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

【0001】[0001]

【産業上の利用分野】本発明は、衛星放送受信中のC
(搬送波電力)/N(ノイズ電力)の検出に用いられる
ノイズ検出回路に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention
The present invention relates to a noise detection circuit used for detecting (carrier power) / N (noise power).

【0002】[0002]

【従来の技術】現行の衛星放送にはNTSC放送(BS
−NTSC放送),ハイビジョン放送があるが、ハイビ
ジョン放送は実験段階である。そして、NTSC放送の
映像検波出力の信号スペクトラムは図3に示すようにな
り、その最高周波数は音声副搬送周波数(=5.73M
Hz)である。
2. Description of the Related Art Current satellite broadcasting includes NTSC broadcasting (BS
-NTSC broadcasting) and Hi-Vision broadcasting, but Hi-Vision broadcasting is an experimental stage. The signal spectrum of the video detection output of NTSC broadcasting is as shown in FIG. 3, and the highest frequency is the audio subcarrier frequency (= 5.73M).
Hz).

【0003】また、ハイビジョン放送の映像検波出力の
信号スペクトラムは図4に示すようになり、その周波数
帯域はNTSC放送より広い8.1MHzである。な
お、図3の領域ア,イはNTSC方式の映像成分,音声
副搬送波成分の領域を示し、図4の領域ウはMUSE信
号の領域を示す。
The signal spectrum of a video detection output of a high-definition broadcast is as shown in FIG. 4, and its frequency band is 8.1 MHz, which is wider than that of the NTSC broadcast. Note that areas A and B in FIG. 3 indicate areas of the video component and audio subcarrier component of the NTSC system, and area C in FIG. 4 indicates the area of the MUSE signal.

【0004】そして、衛星放送受信機は雑誌「エレクト
ロニクスライフ,1988年5月号」(日本放送協会出
版)の第12〜20頁等に記載されているように、放送
衛星の電波を受信アンテナ(BSアンテナ)により受信
し、この受信信号をBSコンバータによりBS−IF帯
と呼ばれる周波数帯域の信号(以下BS−IF信号とい
う)に変換して衛星放送チューナ(BSチューナ)に送
る。
As described in the magazine "Electronic Life, May 1988" (published by the Japan Broadcasting Corporation), the satellite broadcast receiver receives radio waves from broadcast satellites as described in pages 12 to 20 and the like. The signal is received by a BS antenna, converted into a signal in a frequency band called a BS-IF band (hereinafter, referred to as a BS-IF signal) by a BS converter, and sent to a satellite broadcast tuner (BS tuner).

【0005】さらに、このBSチューナによりBS−I
F信号から選択されたチャンネルの衛星放送を選局して
FM復調し、選択されたチャンネルの衛星放送の映像検
波出力を復調形成する。そして、この映像検波出力を後
段のNTSC映像処理回路,音声復調回路(音声PCM
デコーダ),MUSEデコーダ等に供給して再生処理
し、選択された放送の映像,音声を再生形成する。
Further, the BS-I
The satellite broadcast of the selected channel is selected from the F signal and FM demodulated, and the demodulation output of the satellite broadcast of the selected channel is demodulated and formed. Then, this video detection output is output to the NTSC video processing circuit and audio demodulation circuit (audio PCM) in the subsequent stage.
Decoder), a MUSE decoder, etc., to perform reproduction processing, and reproduce and form the video and audio of the selected broadcast.

【0006】ところで、この種衛星放送受信機には受信
中のC/Nを検出するため、ノイズ検出回路を備えるも
のがある。なお、C/NはBS−IF信号(1.035
98〜1.3315GHz)の無変調搬送波電力Cと伝
送帯域(27MHz)内のノイズ電力Nの比であり、通
常、C(信号電力)は一定であるがノイズ電力Nは大気
の状態等で変化し易く、時々刻々変化する。
Some satellite broadcast receivers of this type include a noise detection circuit for detecting C / N during reception. Note that C / N is the BS-IF signal (1.035
This is the ratio between the unmodulated carrier power C of 98 to 1.3315 GHz) and the noise power N in the transmission band (27 MHz). Normally, C (signal power) is constant, but the noise power N varies depending on the atmospheric condition and the like. Easy to change and change from moment to moment.

【0007】そして、従来のノイズ検出回路は、NTS
C放送の周波数帯域及びBSチューナの9MHz以上で
低下する映像検波出力(FM復調出力)の一般的な周波
数特性を考慮して中心周波数を7〜8MHzに設定した
バンドパスフィルタを備え、このフィルタによりNTS
C放送の最高周波数(=5.73MHz)より高い7〜
8MHzのノイズ成分をろ波して抽出する。
[0007] The conventional noise detection circuit uses NTS.
A band-pass filter having a center frequency set to 7 to 8 MHz is provided in consideration of the general frequency characteristics of the frequency band of the C broadcast and the video detection output (FM demodulation output) which decreases at 9 MHz or more of the BS tuner. NTS
7 to higher than the highest frequency of C broadcast (= 5.73 MHz)
An 8 MHz noise component is filtered and extracted.

【0008】さらに、バンドパスフィルタの抽出信号を
ノイズアンプで増幅した後平滑し、直流電圧のノイズ検
出信号を形成する。このノイズ検出信号は前記ノイズア
ンプのゲイン調整により、その電圧変化がC/Nにほぼ
一致する。
Further, the extracted signal of the band pass filter is amplified by a noise amplifier and then smoothed to form a DC voltage noise detection signal. The voltage change of this noise detection signal substantially matches C / N due to the gain adjustment of the noise amplifier.

【0009】そして、形成されたノイズ検出電圧により
C/NがCRTのバー表示等で報知され、この報知は放
送視聴中のC/Nの状態把握及びBSアンテナ設置時の
方向決め等に利用される。
[0009] The C / N is notified by a bar display or the like of the CRT based on the formed noise detection voltage, and this notification is used for grasping the state of the C / N during broadcast viewing and determining the direction when the BS antenna is installed. You.

【0010】[0010]

【発明が解決しようとする課題】前記従来のノイズ検出
回路の場合、NTSC放送のC/N検出に適合するよう
にバンドパスフィルタの中心周波数が固定され、BSチ
ューナの映像検波出力の7〜8MHzの成分をノイズ成
分として抽出するため、信号周波数帯域(=8.1MH
z)のハイビジョン放送の受信時は信号成分がノイズ成
分として誤抽出され、ノイズ検出信号のC/N値が実際
のC/N値より低下し、しかも、信号成分の変化に応じ
てノイズ検出信号が変動し、C/Nを正常に検出できな
い問題点がある。
In the case of the conventional noise detection circuit, the center frequency of the band-pass filter is fixed so as to conform to the C / N detection of NTSC broadcasting, and the video detection output of the BS tuner is 7 to 8 MHz. Is extracted as a noise component, the signal frequency band (= 8.1 MHz)
At the time of receiving the high definition broadcast of z), the signal component is erroneously extracted as a noise component, the C / N value of the noise detection signal is lower than the actual C / N value, and the noise detection signal is changed according to the change of the signal component. Fluctuates, and C / N cannot be detected normally.

【0011】本発明は、衛星放送の映像周波数帯域が異
なる複数の放送のいずれの受信時にも、ノイズ成分のみ
を抽出してC/Nに応じた正しいノイズ検出信号が得ら
れるノイズ検出回路を提供することを目的とする。
The present invention provides a noise detection circuit capable of extracting only a noise component and obtaining a correct noise detection signal according to C / N at the time of receiving any of a plurality of broadcasts having different video frequency bands of satellite broadcasts. The purpose is to do.

【0012】[0012]

【課題を解決するための手段】前記の目的を達成するた
めに、本発明のノイズ検出回路においては、受信した衛
星放送の映像周波数帯域に基づくBSチューナの映像検
波出力の周波数帯域の変化に連動して中心周波数が映像
検波出力の最適ノイズ抽出周波数に切換わりノイズ成分
を抽出するバンドパスフィルタと、このフィルタの抽出
信号を増幅,平滑してノイズ検出信号を形成する直流化
回路部とを備える。
In order to achieve the above object, a noise detection circuit according to the present invention is adapted to be linked to a change in a frequency band of a video detection output of a BS tuner based on a video frequency band of a received satellite broadcast. A band-pass filter that changes the center frequency to the optimum noise extraction frequency of the video detection output and extracts a noise component; and a DC conversion circuit that amplifies and smoothes the extraction signal of the filter to form a noise detection signal. .

【0013】[0013]

【作用】前記のように構成された本発明のノイズ検出回
路の場合、バンドパスフィルタの中心周波数が受信した
衛星放送の映像周波数帯域に応じて切換わり、常に受信
中の衛星放送の最適ノイズ抽出周波数になる。
In the noise detection circuit of the present invention configured as described above, the center frequency of the band-pass filter is switched in accordance with the video frequency band of the received satellite broadcast, and the optimum noise extraction of the satellite broadcast currently being received is performed. Frequency.

【0014】そのため、衛星放送の映像周波数帯域が異
なる複数の放送,例えばNTSC放送,ハイビジョン放
送のいずれの受信時にも、バンドパスフィルタがそれぞ
れの信号帯域より上側のノイズ成分のみを抽出する。そ
して、バンドパスフィルタの抽出信号が直流化回路部に
より増幅,平滑され、常に、受信中の衛星放送のC/N
に比例したノイズ検出信号が形成される。
Therefore, at the time of receiving a plurality of broadcasts having different video frequency bands of satellite broadcast, for example, NTSC broadcast and Hi-Vision broadcast, the band-pass filter extracts only noise components above the respective signal bands. Then, the extraction signal of the band-pass filter is amplified and smoothed by the DC conversion circuit unit, and the C / N of the currently received satellite broadcast is always displayed.
Is formed in proportion to the noise detection signal.

【0015】[0015]

【実施例】1実施例について、図1及び図2を参照して
説明する。図1はNTSC放送,ハイビジョン放送を受
信する場合の構成を示し、BSチューナの受信した放送
の映像検波出力は入力端子1,バッファアンプ2を介し
てバンドパスフィルタ3等の後段回路に供給される。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS One embodiment will be described with reference to FIGS. FIG. 1 shows a configuration for receiving an NTSC broadcast or a high-definition broadcast. A video detection output of a broadcast received by a BS tuner is supplied to a subsequent circuit such as a band-pass filter 3 via an input terminal 1 and a buffer amplifier 2. .

【0016】バンドパスフィルタ3において、R1,R
2,R3は整合用の抵抗、C1,C5,C6は直流カッ
ト用のコンデンサ、C2,C3,C4,C7,C8は共
振用のコンデンサ、L1,L2は共振用のコイル、Q
1,Q2,Q3は中心周波数切換用のトランジスタ、R
4,R5,R6はトランジスタQ1〜Q3のコレクタと
+5Vの正電源端子+Bとの間に設けられたトランジス
タQ1〜Q3それぞれのコレクタ抵抗である。
In the band-pass filter 3, R1, R
2, R3 are matching resistors, C1, C5, C6 are DC cut capacitors, C2, C3, C4, C7, C8 are resonance capacitors, L1, L2 are resonance coils, Q
1, Q2 and Q3 are transistors for switching the center frequency, R
Reference numerals 4, R5 and R6 denote collector resistors of the transistors Q1 to Q3 provided between the collectors of the transistors Q1 to Q3 and the positive power supply terminal + B of + 5V.

【0017】そして、バンドパスフィルタ3の中心周波
数をNTSC放送の受信時とハイビジョン放送の受信時
とで切換えるため、NTSC放送の音声PCMデコーダ
のフレーム同期フラグの信号等を切換制御信号とし、こ
の信号を制御端子4からトランジスタQ1のベースに供
給する。
In order to switch the center frequency of the band-pass filter 3 between the reception of the NTSC broadcast and the reception of the HDTV broadcast, a signal of a frame synchronization flag of an audio PCM decoder of the NTSC broadcast is used as a switching control signal. From the control terminal 4 to the base of the transistor Q1.

【0018】なお、この実施例においては、型番TC9
050NのICを用いた音声PCMデコーダのフレーム
同期信号を利用し、NTSC放送のときにハイレベルに
なり、それ以外のとき(ハイビジョン放送のとき)にロ
ーレベルになるフレーム同期フラグ信号を制御端子4を
介してトランジスタQ1のベースに供給する。
In this embodiment, the model number TC9
Using a frame synchronization signal of an audio PCM decoder using an IC of 050N, a frame synchronization flag signal which becomes a high level in the case of NTSC broadcasting and becomes a low level in other cases (in the case of high definition broadcasting) is transmitted to the control terminal 4. To the base of the transistor Q1.

【0019】そして、NTSC放送の受信時はトランジ
スタQ1がオンしてトランジスタQ2,Q3がオフし、
コンデンサC7,C8はコンデンサC2,コイルL1の
第1の共振回路,コンデンサC4,コイルL2の第2の
共振回路から切離された状態に保持される。
When receiving an NTSC broadcast, the transistor Q1 turns on and the transistors Q2 and Q3 turn off.
The capacitors C7 and C8 are kept separated from the capacitor C2 and the first resonance circuit of the coil L1, and from the capacitor C4 and the second resonance circuit of the coil L2.

【0020】このとき、フィルタ3は中心周波数が従来
と同様NTSC放送のノイズ抽出最適周波数(=7〜8
MHz)に設定され、その周波数特性が図2の実線aに
示すようになる。
At this time, the center frequency of the filter 3 is the optimum noise extraction frequency (= 7 to 8) for NTSC broadcasting as in the prior art.
MHz), and its frequency characteristic is as shown by the solid line a in FIG.

【0021】一方、ハイビジョン放送の受信時はトラン
ジスタQ1がオフしてトランジスタQ2,Q3がオン
し、コンデンサC7,C8が前記両共振回路それぞれに
接続される。この接続によりフィルタ3はフィルタ定数
が切換わって中心周波数がMUSE信号帯域8.1MH
zより高い9〜10MHzの最適ノイズ抽出周波数に切
換わり、その周波数特性が図2の破線bに示すようにな
る。
On the other hand, when receiving a high-definition broadcast, the transistor Q1 is turned off, the transistors Q2 and Q3 are turned on, and the capacitors C7 and C8 are connected to the resonance circuits. With this connection, the filter 3 changes the filter constant and the center frequency is changed to the MUSE signal band of 8.1 MHz.
The frequency is switched to the optimum noise extraction frequency of 9 to 10 MHz, which is higher than z, and the frequency characteristic is as shown by the broken line b in FIG.

【0022】したがって、フィルタ3はNTSC放送,
ハイビジョン放送のいずれの受信時にも、BSチューナ
の映像検波出力から信号周波数帯域より上側のノイズ成
分のみを抽出し、とくに、ハイビジョン放送の受信時に
従来のように信号成分を誤検出することがない。
Therefore, the filter 3 is an NTSC broadcast,
At any time of receiving a high-definition broadcast, only the noise components above the signal frequency band are extracted from the video detection output of the BS tuner.

【0023】そして、フィルタ3のノイズ成分の抽出信
号は直流化回路部5のノイズアンプ6より増幅された
後,平滑用のコンデンサC9,C10及びバッファアン
プ7により平滑され、直流電圧のノイズ検出信号が形成
される。
The extracted signal of the noise component of the filter 3 is amplified by the noise amplifier 6 of the DC conversion circuit section 5 and then smoothed by the smoothing capacitors C9 and C10 and the buffer amplifier 7, so that the DC voltage noise detection signal is obtained. Is formed.

【0024】ところで、BSチューナの映像検波出力の
周波数特性が9MHz以上で低下するときは、ノイズア
ンプ6のハイビジョン放送の受信時のゲインをNTSC
放送の受信時より高くし、放送方式間でのノイズ検出信
号のレベル差を補正する必要がある。そのため、この実
施例においては、直流化回路部5にゲイン切換用のトラ
ンジスタQ4を設け、制御端子4の制御信号に基づきト
ランジスタQ1を介してトランジスタQ4をスイッチン
グする。
When the frequency characteristic of the video detection output of the BS tuner is lowered at 9 MHz or more, the gain of the noise amplifier 6 at the time of receiving the HDTV broadcast is set to NTSC.
It is necessary to make the level higher than that at the time of receiving the broadcast, and to correct the level difference of the noise detection signal between the broadcast systems. Therefore, in this embodiment, a transistor Q4 for switching the gain is provided in the DC conversion circuit unit 5, and the transistor Q4 is switched via the transistor Q1 based on the control signal of the control terminal 4.

【0025】そしてこのスイッチングにより、ハイビジ
ョン放送受信時はバッファアンプ6のゲイン調整電圧を
NTSC放送受信時の可変抵抗VRの分圧から抵抗7の
電圧降下の補正を加えた電圧に上昇可変してアンプ6の
ゲインを大きくし、ノイズ検出信号の放送方式間のレベ
ル差を解消する。
By this switching, the gain adjustment voltage of the buffer amplifier 6 is increased and changed to a voltage obtained by correcting the voltage drop of the resistor 7 from the divided voltage of the variable resistor VR at the time of receiving the NTSC broadcast, when the HDTV broadcast is received. 6 is increased to eliminate the level difference between broadcast systems of the noise detection signal.

【0026】そして、直流化回路部5により形成された
ノイズ検出信号は、例えばA/D変換して選局回路8に
供給され、この回路8の選局用マイクロコンピュータに
より使用者(視聴者)の選択等に基づいてCRTのC/
N表示処理が実行され、ノイズ検出信号の電圧に応じた
バー表示等で現在のC/Nが正しく表示される。
The noise detection signal formed by the DC conversion circuit unit 5 is, for example, A / D-converted and supplied to a channel selection circuit 8, and a user (viewer) of the channel selection microcomputer 8 uses the channel selection microcomputer. CRT C /
The N display process is executed, and the current C / N is correctly displayed on a bar or the like corresponding to the voltage of the noise detection signal.

【0027】ところで、前記実施例においては、衛星放
送のNTSC放送,ハイビジョン放送(MUSE方式)
を受信する場合に適用したが、衛星放送の映像周波数帯
域が異なる種々の方式の複数の放送を受信する場合に適
用できるのは勿論である。
By the way, in the above embodiment, satellite broadcasting NTSC broadcasting, high definition broadcasting (MUSE system)
However, it is needless to say that the present invention can be applied to a case where a plurality of broadcasts of various systems having different video frequency bands of satellite broadcasts are received.

【0028】そして、受信する放送に応じてフィルタ3
の中心周波数を切換えればよく、この場合、放送の種類
は3種類以上であってもよいのは勿論である。また、フ
ィルタ3の抽出信号に放送方式間のレベル差が生じない
ときは、、直流化回路部5のトランジスタQ4のスイッ
チングに基づく増幅ゲインの可変補正は省いてもよい。
Then, the filter 3 according to the broadcast to be received
, The number of broadcasts may be three or more. Further, when there is no level difference between the broadcasting systems in the extraction signal of the filter 3, the variable correction of the amplification gain based on the switching of the transistor Q4 of the DC conversion circuit unit 5 may be omitted.

【0029】[0029]

【発明の効果】本発明は、以上説明したように構成され
ているため、以下に記載する効果を奏する。バンドパス
フィルタ3の中心周波数が受信した衛星放送の映像周波
数帯域に応じて切換わり、常に受信中の衛星放送の最適
ノイズ抽出周波数になるため、映像周波数帯域が異なる
複数の衛星放送,例えばNTSC放送,ハイビジョン放
送のいずれの受信時にも、フィルタ3がそれぞれの信号
帯域より上側のノイズ成分のみを抽出する。
Since the present invention is configured as described above, the following effects can be obtained. Since the center frequency of the band-pass filter 3 is switched according to the video frequency band of the received satellite broadcast and becomes the optimum noise extraction frequency of the satellite broadcast being received at all times, a plurality of satellite broadcasts having different video frequency bands, for example, NTSC broadcast , HDTV broadcast, the filter 3 extracts only noise components above the respective signal bands.

【0030】そして、フィルタ3の抽出信号が直流化回
路部5により増幅,平滑され、常に、受信中の衛星放送
のC/Nに比例した正しいノイズ検出信号を検出して形
成することができる。
Then, the extracted signal of the filter 3 is amplified and smoothed by the DC conversion circuit section 5, and a correct noise detection signal proportional to the C / N of the satellite broadcast being received can always be detected and formed.

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

【図1】本発明のノイズ検出回路の1実施例の結線図で
ある。
FIG. 1 is a connection diagram of one embodiment of a noise detection circuit according to the present invention.

【図2】図1のバンドパスフィルタの周波数特性図であ
る。
FIG. 2 is a frequency characteristic diagram of the bandpass filter of FIG.

【図3】NTSC放送の映像検波出力の信号スペクトラ
ムの説明図である。
FIG. 3 is an explanatory diagram of a signal spectrum of a video detection output of NTSC broadcasting.

【図4】ハイビジョン放送の映像検波出力の信号スペク
トラムの説明図である。
FIG. 4 is an explanatory diagram of a signal spectrum of a video detection output of a high-definition broadcast.

【符号の説明】[Explanation of symbols]

3 バンドパスフィルタ 5 直流化回路部 3 Bandpass filter 5 DC circuit

Claims (1)

(57)【特許請求の範囲】(57) [Claims] 【請求項1】 衛星放送チューナの映像検波出力に含ま
れたノイズ成分を抽出し、衛星放送の受信信号のC(搬
送波電力)/N(ノイズ電力)に応じて変化する直流の
ノイズ検出信号を出力するノイズ検出回路において、 受信した衛星放送の映像周波数帯域に基づく前記映像検
波出力の周波数帯域の変化に連動して中心周波数が前記
映像検波出力の最適ノイズ抽出周波数に切換わり前記ノ
イズ成分を抽出するバンドパスフィルタと、 前記フィルタの抽出信号を増幅,平滑して前記ノイズ検
出信号を形成する直流化回路部とを備えたことを特徴と
するノイズ検出回路。
A noise component included in a video detection output of a satellite broadcast tuner is extracted, and a DC noise detection signal that changes according to C (carrier power) / N (noise power) of a satellite broadcast received signal is extracted. In the output noise detection circuit, the center frequency is switched to the optimum noise extraction frequency of the video detection output in response to a change in the frequency band of the video detection output based on the video frequency band of the received satellite broadcast, and the noise component is extracted. A noise detection circuit, comprising: a band-pass filter that performs amplification; and a DC conversion circuit that amplifies and smoothes an extraction signal of the filter to form the noise detection signal.
JP04102009A 1992-03-27 1992-03-27 Noise detection circuit Expired - Fee Related JP3118308B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP04102009A JP3118308B2 (en) 1992-03-27 1992-03-27 Noise detection circuit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP04102009A JP3118308B2 (en) 1992-03-27 1992-03-27 Noise detection circuit

Publications (2)

Publication Number Publication Date
JPH05276539A JPH05276539A (en) 1993-10-22
JP3118308B2 true JP3118308B2 (en) 2000-12-18

Family

ID=14315777

Family Applications (1)

Application Number Title Priority Date Filing Date
JP04102009A Expired - Fee Related JP3118308B2 (en) 1992-03-27 1992-03-27 Noise detection circuit

Country Status (1)

Country Link
JP (1) JP3118308B2 (en)

Also Published As

Publication number Publication date
JPH05276539A (en) 1993-10-22

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