JPH04150187A - Magnetic recording device for color video signal - Google Patents

Magnetic recording device for color video signal

Info

Publication number
JPH04150187A
JPH04150187A JP2269314A JP26931490A JPH04150187A JP H04150187 A JPH04150187 A JP H04150187A JP 2269314 A JP2269314 A JP 2269314A JP 26931490 A JP26931490 A JP 26931490A JP H04150187 A JPH04150187 A JP H04150187A
Authority
JP
Japan
Prior art keywords
signal
color
change
absolute value
carrier
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
JP2269314A
Other languages
Japanese (ja)
Inventor
Yasuhito Kobayashi
小林 靖仁
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.)
Fujifilm Holdings Corp
Original Assignee
Fuji Photo Film 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 Fuji Photo Film Co Ltd filed Critical Fuji Photo Film Co Ltd
Priority to JP2269314A priority Critical patent/JPH04150187A/en
Publication of JPH04150187A publication Critical patent/JPH04150187A/en
Pending legal-status Critical Current

Links

Abstract

PURPOSE:To prevent inversion of the color of a reproduced picture by generating an absolute value signal corresponding to a change in a color signal and multiplying the absolute value signal with a chrominance carrier signal subject to FM modulation so as to correct the chrominance carrier signal mixed with a carrier luminance signal. CONSTITUTION:A differentiating circuit 10 differentiates a color difference line sequential signal C2 of a base band to generate a differentiating signal S1 corresponding to the change including a direction of a change in the color difference line sequential signal C2 and an absolute value detection circuit 11 takes absolute value of the differentiating signal S1 to generate an absolute value signal S2 corresponding to only the change in the color difference line sequential signal C2. Then a multiplier 12 multiplies the absolute value signal S2 with a chrominance color difference signal C3 to correct the signal C3 so that the level of the chrominance color difference signal C3 is changed in response to the change in the color difference line sequential signal C2 and a recording amplifier 5 mixes a carrier luminance signal Y2 and a corrected carrier color difference signal C4. Thus, the color signal is recorded while its C/N of the part corresponding to a change in the color signal is increased and the color inversion in the reproduced pattern is prevented.

Description

【発明の詳細な説明】 〈産業上の利用分野〉 本発明はカラー映像信号の磁気記録装置に関し、特にプ
リエンファシスをかけて低域FM重畳記録方式により色
信号を記録する場合に適用して有用なものである。
[Detailed Description of the Invention] <Industrial Application Field> The present invention relates to a magnetic recording device for color video signals, and is particularly useful when applied to recording color signals using a low-frequency FM superimposition recording method with pre-emphasis applied. It is something.

〈従来の技術〉 カラー映像信号の磁気記録装置としてスチルビデオカメ
ラが開発され、今後の民生レベルへの普及が期待されて
いる。
<Prior Art> A still video camera has been developed as a magnetic recording device for color video signals, and is expected to become popular at the consumer level in the future.

この腫のメチルビデオカメラでは、色差線順次記録方式
及び低域FM重畳記録゛方式により輝度信号を記録して
いる。すなわち、先ず輝度信号を線順次化し、このよう
にして得る色差線順次信号をFM変調して搬送輝度信号
を形成する。その後、搬送輝度信号を、FM変調した搬
送−度信号と混合し、このようにして得ろ搬送カラー映
像信号を、磁気ヘッドを介して記録媒体であるフロッピ
ーディスクに記録するようになっている。
This methyl video camera records luminance signals using a color difference line sequential recording method and a low frequency FM superimposition recording method. That is, first, the luminance signal is line-sequentialized, and the color-difference line-sequential signal obtained in this way is FM-modulated to form a carrier luminance signal. Thereafter, the carrier luminance signal is mixed with the FM-modulated carrier intensity signal, and the thus obtained carrier color video signal is recorded on a floppy disk, which is a recording medium, via a magnetic head.

このとき、色差線順次信号には、一般に、プリエンファ
シスがかけられる。また、搬送輝度信号が搬送−度信号
よりも低域の周波数帯を占めるよう夫々のキャリアの中
心周波数が選定されている。
At this time, pre-emphasis is generally applied to the color difference line sequential signal. Further, the center frequency of each carrier is selected so that the carrier luminance signal occupies a lower frequency band than the carrier luminance signal.

〈発明が解決しようとする課題〉 上述の如きスチルビデオカメラにおいては、低域FM重
畳記録方式を採っているため、充分なC/Nがとれず、
このためS/Nを大きくする目的でプリエンファシスを
強くかけている。このように、強いプリエンファシスを
かけていることとも相俟ち、上記スチルビデオカメラで
記録した輝度信号の変化部、すなわち再生画像の色の境
目では、しばしば色の反転現象を生起し、再生画像の画
質を低下させていた。
<Problem to be solved by the invention> Since the still video camera described above uses a low frequency FM superimposed recording method, it is not possible to obtain a sufficient C/N.
For this reason, pre-emphasis is strongly applied in order to increase the S/N ratio. In this way, combined with the strong pre-emphasis applied, color reversal phenomenon often occurs at the changing parts of the luminance signal recorded by the above-mentioned still video camera, that is, at the color boundaries of the reproduced image, and the reproduced image The image quality was reduced.

本発明は、上記従来技術に艦み、再生画像の色の反転を
防止し得るカラー映像信号の磁気記録装置を提供するこ
とを目的とする。
SUMMARY OF THE INVENTION The present invention is based on the above-mentioned prior art and has an object to provide a magnetic recording device for color video signals that can prevent color reversal of reproduced images.

〈課題を解決するための手段〉 上記目的を達成する本発明の構成は、 FM変調した搬送色信号を搬送輝度信号と混合して得る
搬送カラー映像信号を、磁気ヘッドを介して記録媒体に
記録するようになっているカラー映像信号の磁気記録装
置において、 ベースバンドの色信号を微分して色信号の変化の方向も
含め、この変化に対応する微分信号を形成する微分回路
と、 前記微分信号の絶対値をとることにより色信号の変化の
大きさにのみ対応する絶対値信号を形成する絶対値検波
回路と、 FM変調された搬送色信号に絶対値信号を掛け合わせて
搬送輝度信号と混合する搬送色信号のレベルが色信号の
変化の大きさに対応して変化するよう補正する掛算器と
を有することを特徴とする。
<Means for Solving the Problems> The configuration of the present invention that achieves the above object is as follows: A carrier color video signal obtained by mixing an FM-modulated carrier color signal with a carrier luminance signal is recorded on a recording medium via a magnetic head. A magnetic recording device for color video signals, which is configured to perform a color video signal, comprises: a differentiation circuit that differentiates a baseband color signal and forms a differential signal corresponding to the change including the direction of change in the color signal; and the differential signal. An absolute value detection circuit that forms an absolute value signal that corresponds only to the magnitude of change in the color signal by taking the absolute value of The present invention is characterized in that it has a multiplier that corrects the level of the carrier color signal to change in accordance with the magnitude of change in the color signal.

く作   用〉 上記構成の本発明によれば、色信号の変化部ではその変
化の程度に対応してFM変調された搬送色信号のレベル
が大きくなる。このため、色信号の変化部でのC/Nを
大きくすることができる。
Effects> According to the present invention having the above configuration, the level of the FM-modulated carrier color signal increases in the color signal change portion in accordance with the extent of the change. Therefore, it is possible to increase the C/N at the color signal change portion.

く実 施 例〉 以下本発明の実施例を図面に基づき詳細に説明する。Example of implementation Embodiments of the present invention will be described in detail below based on the drawings.

第1図は本発明の実施例を示すブロック線図である。本
実施例は入力信号としてNTSC方式のカラー映像信号
を入力しており、このカラー映像信号を色差線順次方式
及び低域FM重畳方式によりフロッピーディスクに記録
する装置である。
FIG. 1 is a block diagram showing an embodiment of the present invention. In this embodiment, an NTSC color video signal is input as an input signal, and the device records this color video signal on a floppy disk using a color difference line sequential method and a low frequency FM superimposition method.

第1図に示すように、入力端子1にはNTSC方式のカ
ラー映像信号v1が供給される。くし形フィルタ2は前
記カラー映像信号■1を輝度信号Y1と副搬送波で変調
された副搬送輝度信号C1とに分離する。
As shown in FIG. 1, an NTSC color video signal v1 is supplied to an input terminal 1. The comb filter 2 separates the color video signal 1 into a luminance signal Y1 and a subcarrier luminance signal C1 modulated by a subcarrier.

輝度信号Y1は、プリエンファシス回路3でプリエンフ
ァシスをかけた後、FM変調器4でFM変調し、このF
M変調により搬送輝度信号Yとしてアンプ5に供給する
ようになっている。
The luminance signal Y1 is pre-emphasized by a pre-emphasis circuit 3, then FM-modulated by an FM modulator 4, and then
The carrier luminance signal Y is supplied to the amplifier 5 by M modulation.

副搬送輝度信号C1はデコーダ6で、−旦ベースバンド
の輝度信号R−Y、B−Yに復調し、線順次回路7で線
順次化することによφ色差線順次信号C2となる。この
色差線順次信号C1は、プリエンファシス回路8でプリ
エンファシスをかけた後、FM変調N9でFM変調する
ことにより搬送輝度信号C3となる。この搬送輝度信号
C3のキャリアの中心周波数は搬送輝度信号Y2のそれ
よりも低い周波数を選定しである。
The sub-carrier luminance signal C1 is first demodulated into baseband luminance signals R-Y and B-Y by a decoder 6, and then line-sequentialized by a line-sequential circuit 7 to become a φ color-difference line-sequential signal C2. This color difference line sequential signal C1 is subjected to pre-emphasis by a pre-emphasis circuit 8 and then subjected to FM modulation by an FM modulation N9 to become a carrier luminance signal C3. The carrier center frequency of this carrier luminance signal C3 is selected to be a lower frequency than that of the carrier luminance signal Y2.

以上は従来技術と同構成であるが、本実施例には新たに
、微分回路10、絶対値検波回路11及び掛算器12が
追加されている。これらのうち、微分回路10はベース
バンドの色差線順次信号C2を微分してこの色差線順次
信号C2の変化の方向も含め、この変化に対応する微分
信号S1を形成するものである。絶対値検波回路11は
前記微分信号S1の絶対値をとることにより色差線順次
信号C2の変化の大きさにのみ対応する絶対値信号S2
を形成するものである。掛算M12は、搬送輝度信号C
3に絶対値信号S2を掛け合わせ、搬送輝度信号C1の
レベルが色差線順次信号C2の変化の大きさに対応して
変化するよう補正するものである。
Although the above configuration is the same as that of the prior art, this embodiment newly adds a differentiating circuit 10, an absolute value detection circuit 11, and a multiplier 12. Among these, the differentiating circuit 10 differentiates the baseband color difference line sequential signal C2 and forms a differential signal S1 corresponding to the change in the color difference line sequential signal C2, including the direction of change. The absolute value detection circuit 11 obtains an absolute value signal S2 corresponding only to the magnitude of change in the color difference line sequential signal C2 by taking the absolute value of the differential signal S1.
It forms the The multiplication M12 is the carrier luminance signal C
3 by the absolute value signal S2, and the level of the carrier luminance signal C1 is corrected to change in accordance with the magnitude of change in the color difference line sequential signal C2.

上記掛算器12で形成する補正搬送色差信号C4はロー
パスフィルタ13を通った後、記録アンプ5に供給する
ようになっている。かくして、記録アンプ5は搬送輝度
信号Y2と補正搬送輝度信号C4とを混合し、磁気ヘッ
ド14を介してフロッピーディスク15に前記搬送輝度
信号Y2及び補正搬送輝度信号C4を記録する。
The corrected transport color difference signal C4 formed by the multiplier 12 is supplied to the recording amplifier 5 after passing through a low-pass filter 13. Thus, the recording amplifier 5 mixes the carrier luminance signal Y2 and the corrected carrier luminance signal C4, and records the carrier luminance signal Y2 and the corrected carrier luminance signal C4 on the floppy disk 15 via the magnetic head 14.

かかる本実施例において、第2図(a)に示すような色
差線順次信号C2を微分回路10で微分することにより
、第2図(blに示すような微分信号S1を得る。この
微分信号S1に基づき絶対値検波回路11で絶対値をと
ることにより、第2図(e)に示すような絶対値信号S
2を得る。この絶対値信号S2を掛算器12で搬送輝度
信号C3と掛け合わせることにより、第2図(d)に示
すような補正搬送輝度信号C4を得る。
In this embodiment, by differentiating the color difference line sequential signal C2 as shown in FIG. 2(a) by the differentiating circuit 10, a differential signal S1 as shown in FIG. 2(bl) is obtained. By taking the absolute value based on the absolute value detection circuit 11, an absolute value signal S as shown in FIG. 2(e) is obtained.
Get 2. By multiplying this absolute value signal S2 by the carrier luminance signal C3 in the multiplier 12, a corrected carrier luminance signal C4 as shown in FIG. 2(d) is obtained.

この補正搬送輝度信号C4は搬送輝度信号C3のレベル
が色差線順次信号C2の変化の大きさに対応して変化す
る信号となっている。すなわち、搬送色差線順次信号C
2の変化部ではその変化の大きさに応じて補正搬送輝度
信号C2のレベルが大きくなり、この変化部でのC/N
を大きくすることができる。
This corrected carrier luminance signal C4 is a signal in which the level of the carrier luminance signal C3 changes in accordance with the magnitude of change in the color difference line sequential signal C2. That is, the conveyed color difference line sequential signal C
At the change section 2, the level of the corrected carrier luminance signal C2 increases according to the magnitude of the change, and the C/N at this change section increases.
can be made larger.

上記補正搬送輝度信号C2はローパスフィルタ13を経
て記録アンプ5に供給されて搬送−度信号Y2と混合さ
れる。かくして、フロッピーディスク15には補正搬送
輝度信号C2が、搬送輝度信号Y2よりも低域の周波数
帯域で、この搬送輝度信号Y2とともに磁気ヘッド14
により記録される。
The corrected carrier luminance signal C2 is supplied to the recording amplifier 5 through a low-pass filter 13 and mixed with the carrier intensity signal Y2. In this way, the corrected carrier luminance signal C2 is transmitted to the floppy disk 15 along with the carrier luminance signal Y2 in a frequency band lower than that of the carrier luminance signal Y2.
recorded by.

なお、上記実施例は色差線順次記録方式及び低域FM重
畳記録方式の装置としたが、本発明は、これらの方式に
限定されるものでは勿論ない。少なくとも色信号をFM
変調する記録方式には全て適用でき、適用した場合には
、上記実施例と同様の作用・効果を得ることができる。
In the above embodiments, the apparatus uses a color difference line sequential recording method and a low frequency FM superimposed recording method, but the present invention is of course not limited to these methods. At least the color signal is FM
The present invention can be applied to any recording method that modulates, and when applied, it is possible to obtain the same functions and effects as those of the above embodiments.

〈発明の効果〉 以上実施例とともに具体的に説明したように、本発明に
よれば、記録媒体に記録する搬送色信号のうち、色信号
の変化部に対応する部分のC/Nを大きくして記録する
ことができるので、この記録信号の再生時の再生画面に
おけろ色反転を防止することができ、再生画像の画質の
向上に寄与し得ろ。
<Effects of the Invention> As specifically explained above in conjunction with the embodiments, according to the present invention, the C/N of the portion corresponding to the changing portion of the color signal of the conveyed color signal recorded on the recording medium is increased. Since it is possible to record the recorded signal, it is possible to prevent color reversal on the playback screen when the recorded signal is played back, and this can contribute to improving the image quality of the playback image.

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

第1図は本発明の実施例を示すブロック線図、第2図は
その各部の波形を示す波形図である。 図面中、 10は微分回路、 11は絶対値検波回路、 12は掛算器、 14は磁気ヘッド、 15はフロッピーディスク、 C2は色差線順次信号、 C3は搬送輝度信号、 C4は補正搬送輝度信号、 S□は微分信号、 S2は絶対値信号である。 特  許  出  願 人 富士写真フィルム株式会社 代    理    人
FIG. 1 is a block diagram showing an embodiment of the present invention, and FIG. 2 is a waveform diagram showing waveforms of each part thereof. In the drawing, 10 is a differential circuit, 11 is an absolute value detection circuit, 12 is a multiplier, 14 is a magnetic head, 15 is a floppy disk, C2 is a color difference line sequential signal, C3 is a carrier luminance signal, C4 is a corrected carrier luminance signal, S□ is a differential signal, and S2 is an absolute value signal. Patent application Agent: Fuji Photo Film Co., Ltd.

Claims (1)

【特許請求の範囲】 FM変調した搬送色信号を搬送輝度信号と混合して得る
搬送カラー映像信号を、磁気ヘッドを介して記録媒体に
記録するようになっているカラー映像信号の磁気記録装
置において、 ベースバンドの色信号を微分して色信号の変化の方向も
含め、この変化に対応する微分信号を形成する微分回路
と、 前記微分信号の絶対値をとることにより色信号の変化の
大きさにのみ対応する絶対値信号を形成する絶対値検波
回路と、 FM変調された搬送色信号に絶対値信号を掛け合わせて
搬送輝度信号と混合する搬送色信号のレベルが色信号の
変化の大きさに対応して変化するよう補正する掛算器と
を有することを特徴とするカラー映像信号の磁気記録装
置。
[Claims] In a magnetic recording device for color video signals, which records a transport color video signal obtained by mixing an FM-modulated transport color signal with a transport luminance signal onto a recording medium via a magnetic head. , a differentiation circuit that differentiates the baseband color signal and forms a differential signal corresponding to the change including the direction of change in the color signal; and a differentiation circuit that differentiates the baseband color signal and forms a differential signal corresponding to this change, and calculates the magnitude of the change in the color signal by taking the absolute value of the differential signal. An absolute value detection circuit that forms an absolute value signal corresponding only to 1. A magnetic recording device for a color video signal, comprising a multiplier for correcting the change in accordance with the change in the color video signal.
JP2269314A 1990-10-09 1990-10-09 Magnetic recording device for color video signal Pending JPH04150187A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2269314A JPH04150187A (en) 1990-10-09 1990-10-09 Magnetic recording device for color video signal

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2269314A JPH04150187A (en) 1990-10-09 1990-10-09 Magnetic recording device for color video signal

Publications (1)

Publication Number Publication Date
JPH04150187A true JPH04150187A (en) 1992-05-22

Family

ID=17470622

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2269314A Pending JPH04150187A (en) 1990-10-09 1990-10-09 Magnetic recording device for color video signal

Country Status (1)

Country Link
JP (1) JPH04150187A (en)

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