JP4349355B2 - TV receiver - Google Patents

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JP4349355B2
JP4349355B2 JP2005315846A JP2005315846A JP4349355B2 JP 4349355 B2 JP4349355 B2 JP 4349355B2 JP 2005315846 A JP2005315846 A JP 2005315846A JP 2005315846 A JP2005315846 A JP 2005315846A JP 4349355 B2 JP4349355 B2 JP 4349355B2
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義已 縫村
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Seiko Epson Corp
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Description

本発明は、サーチ選局機能やオート・プリセット機能を有するテレビ受信機に関するものである。   The present invention relates to a television receiver having a search channel selection function and an auto-preset function.

最近のテレビ受信機における選局操作は、図1に示すようにマイコン制御によるものが大部分で、特に据置き型の高級機種や車載用のテレビ受信機においては、周波数の安定度向上による受信品位の確保から周波数シンセサイザー方式が採用されている。   As shown in Fig. 1, most of the channel selection operations in recent television receivers are controlled by a microcomputer. Especially in stationary high-end models and in-vehicle television receivers, reception is performed with improved frequency stability. The frequency synthesizer method is adopted to ensure the quality.

図1はスプリット・キャリア方式音声検波を採用したテレビ受信機の概略ブロック図を示すが、アンテナで受信されたテレビ信号はPLL内蔵チューナー1で選局及び周波数変換された後、中間周波数としてSAWフィルターに供給される。映像用SAWフィルター2では両側隣接チャンネルの映像/音声信号及び受信チャンネルの音声信号を除去した映像信号のみを抽出し、映像検波回路3に供給する。映像検波回路では中間周波数増幅と検波が行われ、映像検波出力は復調回路10で色復調された後、表示素子11で映像表示される。また、映像検波出力は同期分離回路4で同期分離され、テレビの局検出信号用としてマイコンに供給される。マイコン5はPLL内蔵チューナー1を制御してチャンネルの選局動作を行う。更に、チューナー1からの中間周波信号は音声専用のSAWフィルター6にも供給され、音声中間周波数のみが抽出されて音声検波回路7に供給される。音声検波回路では音声信号が増幅/検波され、音声検波出力は音声増幅回路8を介してスピーカ9を駆動している。   FIG. 1 shows a schematic block diagram of a television receiver employing split carrier type sound detection. A television signal received by an antenna is channel-selected and frequency-converted by a tuner 1 with a built-in PLL, and then a SAW filter as an intermediate frequency. To be supplied. The video SAW filter 2 extracts only the video signal from which the video / audio signal of the adjacent channel on both sides and the audio signal of the reception channel are removed, and supplies the video signal to the video detection circuit 3. The video detection circuit performs intermediate frequency amplification and detection. The video detection output is color demodulated by the demodulation circuit 10 and then displayed on the display element 11. The video detection output is synchronously separated by the synchronous separation circuit 4 and supplied to the microcomputer for use as a television station detection signal. The microcomputer 5 controls the PLL built-in tuner 1 to perform channel selection operation. Further, the intermediate frequency signal from the tuner 1 is also supplied to the SAW filter 6 dedicated to sound, and only the sound intermediate frequency is extracted and supplied to the sound detection circuit 7. In the voice detection circuit, the voice signal is amplified / detected, and the voice detection output drives the speaker 9 via the voice amplification circuit 8.

ところで、このような場合、送信された信号を出来るだけ忠実に再生するために、一般的に選局時の同調周波数が公的に定められたチャンネル周波数に一致するようにマイコン5によりチューナー1の局部発振周波数を制御している。そして、チャンネルの選局手段には色々便利な機能が採用されており、特に車載用テレビ受信機においては移動受信に配慮したオート・プリセット機能やオート・サーチ機能を持つことが一般化されている。ここで、オート・プリセットとは、キー操作により1チャンネルから62チャンネルまで自動的に掃引し、その場所で受信できるテレビのチャンネル番号を記憶保持できるようにした機能である。また、オート・サーチとは、キー操作により受信チャンネル番号を自動的に掃引し、図6に示すマイコンのフロー・チャートのように、テレビ信号が受信できた時に掃引を停止してそのチャンネルが受信できるようにした機能である。   By the way, in such a case, in order to reproduce the transmitted signal as faithfully as possible, in general, the microcomputer 5 adjusts the tuning frequency of the tuner 1 so that the tuning frequency at the time of channel selection coincides with a publicly determined channel frequency. Controls the local oscillation frequency. Various convenient functions have been adopted as channel selection means, and in particular, in-vehicle television receivers have an auto-preset function and an auto-search function that take mobile reception into account. . Here, the auto preset is a function that automatically sweeps from channel 1 to channel 62 by a key operation and can store and hold the channel number of a television that can be received at that location. Auto search automatically sweeps the reception channel number by key operation, and when the TV signal is received as shown in the flowchart of the microcomputer shown in Fig. 6, the sweep is stopped and the channel is received. This is a function that can be done.

このようなオート・プリセット動作やオート・サーチ動作を実行した場合、放送波を受信した時にプリセットやサーチ停止をすることは当然であるが、VHFの7チャンネルに放送波がなく8チャンネルに放送波が存在するような状況下では、7チャンネルをプリセットしたり7チャンネルでサーチ停止する誤動作が発生することがある。このような場合、7チャンネルに放送波が存在しないことを予め知っていれば余り弊害はないが、知らない場合は当然放送波が存在するものと思われるので、期待を裏切られることになる。この現象は、図1に示すように、我国のチャンネル・プラン上7チャンネルと8チャンネルのチャンネル間隔が4MHz(他のチャンネル間隔は6MHz)しかなく両者の信号帯域が2MHz重なっていることから、フィルターで隣接チャンネルの信号を除去しても8チャンネルから7チャンネルへの影響を排除し切れないために発生するものである。   When such an auto-preset operation or auto-search operation is executed, it is natural that the preset or search is stopped when a broadcast wave is received, but there is no broadcast wave on channel 7 of VHF, and broadcast wave on channel 8 In such a situation, there may be a malfunction that presets 7 channels or stops searching at 7 channels. In such a case, there is not much trouble if it is known in advance that there is no broadcast wave on the 7th channel. However, if it is not known, it is natural that the broadcast wave is present, so the expectation is betrayed. As shown in FIG. 1, this phenomenon is based on the channel plan in Japan, because the channel spacing between 7 and 8 channels is only 4 MHz (the other channel spacing is 6 MHz), and the signal band of both channels overlaps by 2 MHz. This is because even if the signal of the adjacent channel is removed, the influence from the 8th channel to the 7th channel cannot be completely eliminated.

上述のように、従来のテレビ受信機においては、VHFの7チャンネルにテレビ信号が無く8チャンネルに信号がある場合、オート・プリセット動作やオート・サーチ動作を実行すると、7チャンネルにテレビ信号が無いにも拘わらず8チャンネルの信号の影響であたかも7チャンネルに信号があるような動作をしてしまう不具合が存在する。   As described above, in the conventional television receiver, when there is no TV signal in 7 channels of VHF and there is a signal in 8 channels, there is no television signal in 7 channels when auto preset operation or auto search operation is executed. Nevertheless, there is a problem that the operation is as if there is a signal on the 7th channel due to the influence of the 8th channel signal.

そこで、本発明ではこのような不具合を改善することを目的とする。   Therefore, an object of the present invention is to improve such a problem.

映像信号と音声信号を別々に検波する方式のテレビ受信機において、テレビ放送波のサーチ選局動作またはオート・プリセット動作時に、第1のチャンネルの映像搬送波が中間周波フィルターの受信チャンネル用音声トラップまたは前記中間フィルターの隣接チャネル排除領域で除去されるように第1のチャンネルに隣接する第2のチャンネルの同調選局用局部発振周波数を正規周波数より約0.5MHz乃至約2.0MHz低く設定することを特徴とする。
さらに、前記テレビ受信機の第1のチャンネルはVHFの8チャンネルであり、第2のチャンネルはVHFの7チャンネルであることを特徴とする。
In a television receiver that detects a video signal and an audio signal separately, at the time of TV broadcast wave search channel selection operation or auto-preset operation, the video carrier of the first channel is an audio trap for the reception channel of the intermediate frequency filter or The local oscillation frequency for tuning and tuning of the second channel adjacent to the first channel is set to be lower by about 0.5 MHz to about 2.0 MHz than the normal frequency so as to be removed in the adjacent channel exclusion region of the intermediate filter. It is characterized by.
Further, the first channel of the television receiver is 8 channels of VHF, and the second channel is 7 channels of VHF.

局部発振周波数をずらし、8チャンネルのキャリアをIFフィルタのトラップで除去することにより、7チャンネルの局の有無を良好に判定することができる。   By shifting the local oscillation frequency and removing the 8-channel carrier by the trap of the IF filter, the presence or absence of the 7-channel station can be determined well.

インター・キャリア音声検波方式のテレビ受信機において、テレビ放送波のサーチ選局動作またはオート・プリセット動作時に、第1のチャンネルの映像搬送波が中間周波フィルターの上側隣接チャンネル用映像トラップで除去されるように第1のチャンネルに隣接する第2のチャンネルの同調選局用局部発振周波数を正規周波数より約2.0MHz低く設定することを特徴とする。
さらに、前記テレビ受信機の第1のチャンネルはVHFの8チャンネルであり、第2のチャンネルはVHFの7チャンネルであることを特徴とする。
In inter-carrier audio detection television receivers, the video carrier of the first channel is removed by the video trap for the upper adjacent channel of the intermediate frequency filter during search selection or auto-preset operation of television broadcast waves. The local oscillation frequency for tuning channel selection of the second channel adjacent to the first channel is set to be approximately 2.0 MHz lower than the normal frequency.
Further, the first channel of the television receiver is 8 channels of VHF, and the second channel is 7 channels of VHF.

局部発振周波数をずらし、8チャンネルのキャリアをIFフィルタのトラップで除去することにより、7チャンネルの局の有無を良好に判定することができる。   By shifting the local oscillation frequency and removing the 8-channel carrier by the trap of the IF filter, the presence or absence of the 7-channel station can be determined well.

本発明では、オート・プリセット動作やオート・サーチ動作にVHF7チャンネル選局時の局部発振周波数を正規周波数より低く設定することにより、隣接する8チャンネルのテレビ信号の影響を排除し、結果的に7チャンネル無信号を有信号と誤判定する不具合を改善するものである。以下に本発明について、具体的な適用例をもとに説明する。   In the present invention, the local oscillation frequency at the time of channel selection of VHF is set lower than the normal frequency in the auto preset operation and the auto search operation, thereby eliminating the influence of the adjacent 8-channel television signal. This is to improve the problem of erroneously determining that a channel non-signal is a presence signal. Hereinafter, the present invention will be described based on specific application examples.

図2に示したVHF7チャンネルと8チャンネルのテレビ信号の周波数関係を7チャンネル選局時の中間周波数に置き換えると図3の様になる。これは、音声検波をスプリット・キャリア方式またはクウォジ・パラレルのインター・キャリア方式で行う場合の中間周波数段の映像用SAWフィルター2の周波数特性例を示すものである。   If the frequency relationship between the VHF 7-channel and 8-channel television signals shown in FIG. 2 is replaced with the intermediate frequency at the time of 7-channel selection, the result is as shown in FIG. This shows an example of the frequency characteristic of the SAW filter 2 for video at the intermediate frequency stage when audio detection is performed by the split carrier method or the quadruple parallel inter carrier method.

図3において、仮に7チャンネルにテレビ信号があり、これを通常行われるように正規な局部発振周波数L7で受信すると、7チャンネルの映像搬送波P7は58.75MHz、音声搬送波S7は54.25MHzとなる一方、隣接の8チャンネルの映像搬送波P8は、P7より4MHz低い54.75MHzに位置することになる。ところが、この周波数での電圧利得は図から明らかなように7チャンネルの映像搬送波P7と同等なことから、7チャンネルの映像信号と同等な受信感度を有することになる。実際は7チャンネルにテレビ信号が無いため、8チャンネルの映像搬送波のみを受信することになるが、映像搬送波の前後の僅かな帯域の信号しか受信できないため、色の付かないボケた映像しか得られず音声も出力されないことになる。   In FIG. 3, if there is a television signal on channel 7 and this is received at a normal local oscillation frequency L7 so that it is normally performed, the video carrier P7 of channel 7 is 58.75 MHz and the audio carrier S7 is 54.25 MHz. On the other hand, the video carrier P8 of the adjacent eight channels is located at 54.75 MHz, which is 4 MHz lower than P7. However, since the voltage gain at this frequency is equivalent to that of the 7-channel video carrier P7 as is apparent from the figure, it has a reception sensitivity equivalent to that of the 7-channel video signal. In fact, since there is no TV signal on channel 7, only the 8-channel video carrier is received, but only a small band of signals before and after the video carrier can be received, so only blurred images with no color can be obtained. Audio will not be output.

ところで、オート・プリセットやオート・サーチ動作において、テレビ信号の有無の検出には通常水平同期信号が利用されるが、上記のように8チャンネルの信号を7チャンネルで受信した場合でも映像検波出力には一応正規信号受信時に近い水平同期信号が得られるため、これを利用したテレビ信号検出器(選局マイコンでソフト的に処理される場合もある)は正規なテレビ信号と区別できず、結果的に7チャンネルにテレビ信号有りの判定を下し、有信号としてプリセットしたりサーチ停止するという誤動作を引き起こすことになる。   By the way, in auto-preset and auto-search operations, a horizontal synchronizing signal is usually used for detecting the presence or absence of a TV signal. However, even when an 8-channel signal is received on 7 channels as described above, the video detection output is obtained. Since a horizontal sync signal that is close to that when receiving a regular signal can be obtained, a TV signal detector that uses this signal (sometimes processed in software by a channel selection microcomputer) cannot be distinguished from a regular TV signal. In addition, it is determined that there is a TV signal in channel 7, and a malfunction occurs in that the preset is made as a signal or the search is stopped.

そこで、本発明では図7のフロー・チャートに示すように、選局マイコンのソフト対応によりオート・プリセット動作やオート・サーチ動作時に7チャンネル受信時のチューナーの局部発振周波数を0.5MHz低く設定することで、8チャンネルの映像搬送波の影響を排除するものである。   Therefore, in the present invention, as shown in the flow chart of FIG. 7, the local oscillation frequency of the tuner at the time of receiving 7 channels is set lower by 0.5 MHz at the time of auto-preset operation and auto-search operation by the software of the channel selection microcomputer. In this way, the influence of the 8-channel video carrier is eliminated.

図3の従来例に対比させて、図4に本発明に基づくSAWフィルター出力の周波数特性を示すが、図2に示した7チャンネル受信時の局部発振周波数を正規発振周波数L7(248MHz)より0.5MHz低くしたL7'(247.5MHz)を用いると、8チャンネルの映像搬送波に対する中間周波数は54.25MHzとなり、SAWフィルターの音声トラップに落ち込むことになる結果、受信感度を従来に比べトラップ減衰量分(45〜50dB)だけ低下させることが出来る。   Compared with the conventional example of FIG. 3, FIG. 4 shows the frequency characteristics of the SAW filter output according to the present invention. The local oscillation frequency at the time of receiving the 7-channel signal shown in FIG. 2 is 0 from the normal oscillation frequency L7 (248 MHz). When L7 '(247.5 MHz), which is lower by .5 MHz, is used, the intermediate frequency for the 8-channel video carrier is 54.25 MHz, resulting in a drop in the SAW filter's audio trap. It can be reduced by the minute (45-50 dB).

このことは、従来の誤動作しない8チャンネルの信号レベルが仮に30dB(μV)であるとすると、本考案を採用することにより誤動作レベルが75〜80dB(μV)にまで引き上げられることになり、実使用上の受信エリアを考慮するとオート・プリセット誤動作やオート・サーチ誤動作を起こす可能性を大幅に軽減することが出来る。特に一般的な屋内使用のテレビ信号は大きくても70dB前後を確保するようにレベル設定されることが多いため、誤動作の可能性を殆ど無くすことができる。また、車載テレビ受信機のような移動受信においても、送信所近辺の限られた強電界区域を除き、広大なエリアを占める中電界から弱電界地域で誤動作の発生を防ぐことが出来ることになる。   This means that if the conventional 8-channel signal level that does not malfunction is 30 dB (μV), the malfunction level is raised to 75 to 80 dB (μV) by adopting the present invention. Considering the reception area above, the possibility of auto preset malfunction and auto search malfunction can be greatly reduced. In particular, a general indoor television signal is often set at a level so as to ensure about 70 dB at most, so that the possibility of malfunction can be almost eliminated. Moreover, even in mobile reception such as an in-vehicle television receiver, it is possible to prevent malfunctions from a middle electric field that occupies a large area to a weak electric field area, except for a limited strong electric field area near the transmitting station. .

以上の説明では、局部発振周波数を0.5MHz低くすることを条件としたが、SAWフィルターの特性上本発明の効果を得るのに必要な減衰量が確保できる場合は、局部発振周波数のシフト量を0.5MHzに限定する必要はなく、その前後の周波数とすることも可能である。   In the above description, it is assumed that the local oscillation frequency is lowered by 0.5 MHz. However, when the attenuation necessary for obtaining the effect of the present invention can be secured due to the characteristics of the SAW filter, the shift amount of the local oscillation frequency. Need not be limited to 0.5 MHz, and may be frequencies before and after that.

なお、オート・プリセットやオート・サーチ動作時に7チャンネルの局部発振周波数を0.5MHz低くすると、7チャンネルにテレビ信号が存在する場合の正常なプリセット動作やサーチ動作に弊害を及ぼすことが懸念されるが、図4から解るように、7チャンネルの映像搬送波も本来の位置より0.5MHz低いほうにずれる結果、反って電圧利得が増加することでむしろ動作感度を若干向上させる方向で弊害にはならない。   Note that if the local oscillation frequency of channel 7 is lowered by 0.5 MHz during auto-preset or auto-search operation, there is a concern that it may adversely affect normal preset operation or search operation when there is a TV signal in channel 7. However, as can be seen from FIG. 4, the 7-channel video carrier is also shifted 0.5 MHz lower than the original position. As a result, the voltage gain is increased and the operation sensitivity is slightly improved. .

また、オート・プリセットやオート・サーチ動作以外の通常受信時は、7チャンネルの局部発振周波数を正規な同調周波数で用いている。   In normal reception other than auto-preset and auto-search operations, the 7-channel local oscillation frequency is used at the normal tuning frequency.

以上の説明では、オート・プリセットやオート・サーチ動作時に7チャンネルの局部発振周波数を0.5MHz低くしたが、4〜12チャンネルのVHFハイ・バンドのみ又は1〜62チャンネルまでの全てのチャンネルの局部発振周波数を一律に0.5MHz低くしても弊害はなく同様な改善効果が得られることは明らかである。   In the above description, the local oscillation frequency of 7 channels is lowered by 0.5 MHz during auto preset and auto search operations. However, only the VHF high band of 4 to 12 channels or the local channels of all channels from 1 to 62 channels are used. It is clear that even if the oscillation frequency is uniformly lowered by 0.5 MHz, there is no harmful effect and the same improvement effect can be obtained.

また、局部発振周波数のシフト量も、更に1.5MHzずらして通常の隣接映像トラップと一致させるべく2MHzとしても良く、SAWフィルターの帯域外減衰量特性に合わせて任意に設定することが出来る。   Further, the shift amount of the local oscillation frequency may be further shifted by 1.5 MHz to be 2 MHz so as to coincide with the normal adjacent video trap, and can be arbitrarily set according to the out-of-band attenuation characteristic of the SAW filter.

更に、以上の説明では、音声検波をスプリット・キャリア方式またはクウォジ・パラレルのインター・キャリア方式で行う場合を例に本発明の作用効果を述べてきたが、通常のインター・キャリア方式の音声検波を行う場合にも本発明を適用することによる誤動作の改善が可能である。但し、図5に示すように、インター・キャリア方式用のSAWフィルターの周波数特性では、一般的に映像搬送波Pと音声搬送波Sの電圧利得上のレベル差(P−S偏差)は、音声受信感度と映像性バズ妨害との兼ね合いから20〜25dB程度に設定されるため、局部発振周波数のシフト量を0・5MHzとした場合では、本発明適用前と適用後の8チャンネル映像搬送波のレベル差は20dB程度しか得られないことになり、改善効果も20dB程度に留まることになる。しかし、局部発振周波数のシフト量を例えば2MHzまで拡大すれば、8チャンネルの映像搬送波を隣接チャンネル用の映像トラップ(52.75MHz)に落とし込めることになるため、スプリット・キャリア方式またはクウォジ・パラレルのインター・キャリア方式で行う場合と同様な大幅な誤動作改善効果を得ることができることになる。   Further, in the above description, the operation and effect of the present invention have been described by taking the case where voice detection is performed by the split carrier method or the quad-parallel inter carrier method as an example. However, the normal inter carrier method voice detection is performed. Even in the case of performing, it is possible to improve malfunction by applying the present invention. However, as shown in FIG. 5, in the frequency characteristics of the SAW filter for the inter-carrier method, the level difference (PS deviation) in the voltage gain between the video carrier P and the audio carrier S is generally the audio reception sensitivity. Therefore, when the local oscillation frequency shift amount is set to 0.5 MHz, the level difference between the 8-channel video carrier before and after the application of the present invention is as follows. Only about 20 dB can be obtained, and the improvement effect is also limited to about 20 dB. However, if the shift amount of the local oscillation frequency is increased to, for example, 2 MHz, an 8-channel video carrier can be dropped into an adjacent channel video trap (52.75 MHz). As a result, it is possible to obtain a significant malfunction improvement effect similar to that performed in the inter-carrier method.

以上述べたように、本発明によれば、選局マイコンのソフト変更によるオート・プリセットやオート・サーチ動作時の7チャンネルの局部発振周波数を0.5MHz低くするという極めて簡単な手段で、VHF7チャンネル無信号時の8チャンネル信号によるプリセット誤動作やサーチ停止誤動作を大幅に改善することができ、実用受信電界では実質的に誤動作を解消することが出来るものである。   As described above, according to the present invention, VHF 7 channels can be obtained by a very simple means of lowering the local oscillation frequency of 7 channels at the time of auto-preset and auto search operations by changing the tuning microcomputer software by 0.5 MHz. Preset malfunctions and search stop malfunctions due to 8-channel signals when there is no signal can be greatly improved, and malfunctions can be substantially eliminated in a practical reception electric field.

音声スプリット・キャリア方式のテレビ受信機における選局システムのブロック図。The block diagram of the channel selection system in the audio | voice split carrier type television receiver. テレビ信号の7チャンネル及び8チャンネルの周波数とチューナーの局部発振周波数の関係を示す図。The figure which shows the relationship of the frequency of 7 channels and 8 channels of a television signal, and the local oscillation frequency of a tuner. 従来における映像用SAWフィルター周波数特性と8チャンネル映像搬送波との関係を示す図。The figure which shows the relationship between the SAW filter frequency characteristic for images in the past, and the 8-channel image carrier wave. 本発明における映像用SAWフィルター周波数特性と8チャンネル映像搬送波との関係を示す図。The figure which shows the relationship between the SAW filter frequency characteristic for images | videos in this invention, and an 8-channel image carrier wave. インター・キャリア方式に本発明を適用した場合のSAWフィルター周波数特性と8チャンネル映像搬送波との関係を示す図。The figure which shows the relationship between the SAW filter frequency characteristic at the time of applying this invention to an inter carrier system, and an 8-channel video carrier wave. 従来のオート・プリセットやオート・サーチ動作時のマイコンのフロー・チャート例を示す図。The figure which shows the example of a flow chart of the microcomputer at the time of the conventional auto preset and auto search operation | movement. 本発明のオート・プリセットやオート・サーチ動作時のマイコンのフロー・チャート例を示す図。The figure which shows the example of a flow chart of the microcomputer at the time of the auto preset and auto search operation | movement of this invention.

符号の説明Explanation of symbols

1…チューナー、2…映像用SAWフィルター、3…増幅検波回路、4…同期分離回路、5…マイコン、6…音声用SAWフィルター、7…音声検波回路、8…音声処理回路、9…スピーカ、10…映像復調回路、11…画像表示器。
DESCRIPTION OF SYMBOLS 1 ... Tuner, 2 ... SAW filter for images, 3 ... Amplification detection circuit, 4 ... Synchronous separation circuit, 5 ... Microcomputer, 6 ... SAW filter for audio, 7 ... Audio detection circuit, 8 ... Audio processing circuit, 9 ... Speaker, 10: Image demodulating circuit, 11: Image display.

Claims (2)

映像信号と音声信号を別々に検波する方式のテレビ受信機において、テレビ放送波のサーチ選局動作またはオート・プリセット動作時に、VHFの8チャンネルの映像搬送波が中間周波フィルターの受信チャンネル用音声トラップまたは前記中間周波フィルターの隣接チャネル排除領域で除去されるようにVHFの8チャンネルに隣接するVHFの7チャンネルの同調選局用局部発振周波数を正規周波数より約0.5MHz乃至約2.0MHz低く設定することを特徴とするテレビ受信機。 In a television receiver that detects a video signal and an audio signal separately, at the time of TV broadcast wave search channel selection or auto-preset operation, the VHF 8-channel video carrier is an intermediate frequency filter receiving channel audio trap or The local oscillation frequency for tuning channel selection of 7 channels of VHF adjacent to 8 channels of VHF is set to be lower by about 0.5 MHz to about 2.0 MHz than the normal frequency so as to be removed in the adjacent channel exclusion region of the intermediate frequency filter. A television receiver characterized by that. インター・キャリア音声検波方式のテレビ受信機において、テレビ放送波のサーチ選局動作またはオート・プリセット動作時に、VHFの8チャンネルの映像搬送波が中間周波フィルターの上側隣接チャンネル用映像トラップで除去されるようにVHFの8チャンネルに隣接するVHFの7チャンネルの同調選局用局部発振周波数を正規周波数より約2.0MHz低く設定することを特徴とするテレビ受信機。   In the inter-carrier audio detection type television receiver, the video carrier of 8 channels of VHF is removed by the video trap for the adjacent channel on the upper side of the intermediate frequency filter during the search selection operation or the auto-preset operation of the television broadcast wave. The television receiver is characterized in that the local oscillation frequency for tuning and tuning of the 7 channels of VHF adjacent to the 8 channels of VHF is set to be approximately 2.0 MHz lower than the normal frequency.
JP2005315846A 2005-10-31 2005-10-31 TV receiver Expired - Fee Related JP4349355B2 (en)

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