JPH0385077A - Magnetic recording and reproducing device - Google Patents
Magnetic recording and reproducing deviceInfo
- Publication number
- JPH0385077A JPH0385077A JP1221117A JP22111789A JPH0385077A JP H0385077 A JPH0385077 A JP H0385077A JP 1221117 A JP1221117 A JP 1221117A JP 22111789 A JP22111789 A JP 22111789A JP H0385077 A JPH0385077 A JP H0385077A
- Authority
- JP
- Japan
- Prior art keywords
- voltage
- image quality
- picture quality
- fluctuation
- resistor
- 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
Links
Landscapes
- Television Signal Processing For Recording (AREA)
Abstract
Description
【発明の詳細な説明】
〔産業上の利用分野〕
この発明は磁気記録再生装置に関し、特に家庭用VTR
における再生画の明暗変動に応じて周波数特性(以下、
F特と略す)を可変コントロールするようにしたものに
関するものである。[Detailed Description of the Invention] [Field of Industrial Application] The present invention relates to a magnetic recording/reproducing device, and particularly to a home VTR.
The frequency characteristics (hereinafter referred to as
This relates to a device that allows variable control of the F-Spec.
第2図は従来の磁気記録再生装置の画質コントロール回
路の回路図であり、図において、1は輝度信号処理回路
(ICL2は画質調整用可変抵抗である。FIG. 2 is a circuit diagram of an image quality control circuit of a conventional magnetic recording/reproducing apparatus. In the figure, 1 is a luminance signal processing circuit (ICL2 is a variable resistor for adjusting image quality).
次に動作について説明する。Next, the operation will be explained.
従来の磁気記録再生装置(以下、VTRと略す)の再生
において、使用者が画質のF特であるシャープネスをコ
ントロールする場合は、一般に第2図に示すように輝度
信号処理ICIの端子の入力DC電圧を画質調整可変抵
抗2を介して調整する。When a user wants to control sharpness, which is an F characteristic of image quality, in the reproduction of a conventional magnetic recording/reproducing device (hereinafter abbreviated as VTR), the input DC of the terminal of the luminance signal processing ICI is generally used as shown in Fig. 2. The voltage is adjusted via an image quality adjustment variable resistor 2.
すなわち、使用者の設定した画質調整位置に上記端子の
DC電圧を可変することであった。従来の場合、画面の
明るさ暗さに関係なく、F特は一律に可変されて・画質
をシャープにしていた。そのため、暗い部分においての
S/N感が悪くなっていた。すなわち、第3図(a)、
(b)に示すように、画面の明るさ、暗さに関係なく
同じようなF特処理を行うと、図(a)のような100
1 RE ((Institute of Radio
Bng、による単位で、11 RE=0゜714Vを
表す)の明るい画面に対してノイズ電圧が21REであ
ると仮定した場合、この場合のS/Nは、
201og (2/100)=−34dBであった。That is, the DC voltage at the terminal was varied to the image quality adjustment position set by the user. In the past, F-special was uniformly varied to sharpen the image quality, regardless of the brightness or darkness of the screen. Therefore, the S/N feeling in dark areas was poor. That is, FIG. 3(a),
As shown in (b), if the same F special processing is performed regardless of the brightness or darkness of the screen, the 100
1 RE ((Institute of Radio
Assuming that the noise voltage is 21 RE for a bright screen of 11 RE = 0°714 V, the S/N in this case is 201 og (2/100) = -34 dB. there were.
一方、図(b)のようなl0IREの暗い画面に対して
もノイズ電圧は2IREであり、S/Nは
201og (2/10)= 14dBとなり、暗
い画面におけるノイズのS/N比は悪くなる。このよう
に画面の明暗レベルであるAPL (Average
Picture Level)の明暗変化に対応するこ
となしに、−律にF特処理を行なうと暗い部分でのS/
Nは劣化する。On the other hand, even for a dark screen with 10IRE as shown in Figure (b), the noise voltage is 2IRE, and the S/N is 201og (2/10) = 14 dB, so the S/N ratio of noise on a dark screen is poor. . In this way, the APL (Average
If F special processing is performed without responding to changes in brightness and darkness of Picture Level), the S/
N deteriorates.
従来のVTRは以上のように構成されているため、上記
VTRによる再生は、明るい画面と暗い画面においても
画面の明るさのレベル、すなわちAPLの明暗変化にか
かわらずビデオ信号のF特の処理を一律に行なっていた
ため、暗い部分のS/N感を劣化させ、明るい部分のS
/N感と差を生じさせるという問題点があった。Since the conventional VTR is configured as described above, the playback by the VTR requires F-special processing of the video signal regardless of the brightness level of the screen, that is, the brightness/darkness change of the APL, even in bright and dark screens. Because this was done uniformly, the S/N sensitivity in dark areas deteriorated and the S/N in bright areas deteriorated.
/N feeling.
この発明は上記のような問題点を解消するためになされ
たもので、再生の信号のAPLの明暗変化に応じて、ビ
デオ信号のF特の処理を可変することのできる磁気記録
再生装置を得ることを目的とする。This invention has been made to solve the above-mentioned problems, and provides a magnetic recording and reproducing device that can vary the processing of the F characteristic of a video signal in accordance with the brightness change of the APL of the reproduced signal. The purpose is to
この発明に係る磁気記録再生装置は、再生ビデオ信号を
画質の明暗変動に対応する電圧変動に変換し、その電圧
変動を画質調整設定電圧に混合するようにしたものであ
る。The magnetic recording and reproducing apparatus according to the present invention converts a reproduced video signal into voltage fluctuations corresponding to brightness and darkness fluctuations in image quality, and mixes the voltage fluctuations into an image quality adjustment setting voltage.
この発明においては、再生ビデオ信号を画質の明暗変動
に対応する電圧変動に変換し、その電圧変動を画質調整
設定電圧に混合するようにしたので、再生画の明暗レベ
ルに応じて、再生画の明るい部分はよりシャープにし、
暗い部分はS/N感を劣化させないように画質コントロ
ールを行うことができる。In this invention, the reproduced video signal is converted into a voltage fluctuation corresponding to the brightness/darkness fluctuation of the image quality, and the voltage fluctuation is mixed with the image quality adjustment setting voltage. Make bright areas sharper,
Image quality can be controlled in dark areas so as not to degrade the S/N sense.
以下、この発明の一実施例を図について説明する。 An embodiment of the present invention will be described below with reference to the drawings.
第1図は本発明の一実施例による磁気記録再生装置の画
質コントロール回路の回路図を示し、図において、1及
び2は従来と同一のものである。FIG. 1 shows a circuit diagram of an image quality control circuit of a magnetic recording/reproducing apparatus according to an embodiment of the present invention, and in the figure, 1 and 2 are the same as the conventional one.
3はビデオ信号、4はクランプ回路、5はDCアンプ、
6は抵抗、7はコンデンサ、8は反転アンプ、9はバッ
ファアンプ、10は抵抗である。3 is a video signal, 4 is a clamp circuit, 5 is a DC amplifier,
6 is a resistor, 7 is a capacitor, 8 is an inverting amplifier, 9 is a buffer amplifier, and 10 is a resistor.
次に動作について説明する。Next, the operation will be explained.
ビデオ信号3はクランプ回路4に入力され、第4図(a
)に示すように、5YNCチフブにてOvよりある電圧
Voを持つように設定され、さらに、DCアンプ5によ
り2Vpp(100IRE時)に増幅された後、抵抗6
及びコンデンサ7により積分され、第4図山)のように
水平同期信号及び水平期間の信号の変化は除去され、−
垂直期間における明るさの変化のDC電圧変動に変換さ
れ、反転アンプ8、バッファアンプ9、及び抵抗10を
介して画質可変抵抗2を介して設定されたDC電圧に混
合され、輝度処理ICIの端子に入力される。The video signal 3 is input to a clamp circuit 4, and is shown in FIG.
), the 5YNC chip is set to have a voltage Vo that is higher than Ov, and after being amplified to 2Vpp (at 100 IRE) by the DC amplifier 5, the resistor 6
The signal is integrated by the capacitor 7, and the horizontal synchronization signal and the change in the signal during the horizontal period are removed as shown in Fig. 4 (mountain), and -
The change in brightness in the vertical period is converted into a DC voltage fluctuation, which is mixed with the DC voltage set through the image quality variable resistor 2 via an inverting amplifier 8, a buffer amplifier 9, and a resistor 10, and is applied to the terminal of the brightness processing ICI. is input.
第5図に示すように、画質可変抵抗2を介して設定され
たDC!C電圧レベル点鎖線11のレベルとすると、1
垂直期間の明るさの変化のDC電圧変動が上記DC電圧
レベルに混合され、該輝度処理ICIの端子への電圧は
実線12のようになる。この電圧曲線からもわかるよう
に、曲線の緩急に応じてF特処理を行い、明るい部分は
鮮明度の高い画像となり、暗い部分は曲線がほぼ一定と
なってF特が抑えられ、S/N感が向上される。As shown in FIG. 5, the DC! If the C voltage level is the level of the dot-dashed line 11, then 1
The DC voltage variation of the brightness change in the vertical period is mixed into the DC voltage level, and the voltage to the terminals of the brightness processing ICI becomes like the solid line 12. As can be seen from this voltage curve, F-special processing is performed depending on the steepness or steepness of the curve, and bright areas produce images with high clarity, while dark areas have a nearly constant curve, suppressing F-special, and S/N. The feeling is improved.
以上のようにこの発明によれば、再生のビデオ信号を画
質の明暗変動に対応する電圧変動に変換し、該電圧変動
を画質調整設定電圧に混合し、画面の明暗変動に対応し
て画質をコントロールするようにしたので、暗い部分の
F特処理を抑えてS/Nの劣化を防止することができ、
一方明るい部分は鮮明度の高い画像とすることができる
効果がある。As described above, according to the present invention, the reproduced video signal is converted into voltage fluctuations corresponding to the brightness/darkness fluctuations of the image quality, the voltage fluctuations are mixed with the image quality adjustment setting voltage, and the image quality is adjusted in response to the brightness/darkness fluctuations of the screen. Since it is controlled, it is possible to suppress F special processing in dark areas and prevent S/N deterioration.
On the other hand, bright parts have the effect of being able to produce images with high clarity.
第1図は本発明の一実施例による磁気記録再生装置の画
質コントロール回路の回路図、第2図は従来の磁気記録
再生装置の画質コントロール回路の回路図、第3図はA
PLの明暗によるS/N比のビデオ信号を示す図、第4
図はビデオ信号のクランプ波形、及びそれの積分波形を
示す図、第5図は本発明による画質コントロールの混合
電圧を示す図である。
1は輝度処理回路(IC)、2は画質可変抵抗、3はビ
デオ信号、4はクランプ回路、5はDCアンプ、6は抵
抗、7はコンデンサ、8は反転アンプ、9はバッファア
ンプ、lOは抵抗、11は設定DC電圧レベル、12は
輝度処理ICIの端子電圧である。
なお図中同一符号は同−又は相当部分を示す。FIG. 1 is a circuit diagram of an image quality control circuit of a magnetic recording/reproducing apparatus according to an embodiment of the present invention, FIG. 2 is a circuit diagram of an image quality control circuit of a conventional magnetic recording/reproducing apparatus, and FIG.
Diagram showing video signal of S/N ratio depending on brightness and darkness of PL, 4th
The figure shows a clamp waveform of a video signal and its integral waveform, and FIG. 5 shows a mixed voltage for image quality control according to the present invention. 1 is a brightness processing circuit (IC), 2 is an image quality variable resistor, 3 is a video signal, 4 is a clamp circuit, 5 is a DC amplifier, 6 is a resistor, 7 is a capacitor, 8 is an inverting amplifier, 9 is a buffer amplifier, IO is A resistor, 11 is a set DC voltage level, and 12 is a terminal voltage of the brightness processing ICI. Note that the same reference numerals in the figures indicate the same or equivalent parts.
Claims (1)
圧に基づいて周波数特性を制御する輝度処理回路を有す
る磁気記録再生装置において、再生ビデオ信号を画質の
明暗変動に対応する電圧変動に変換する手段と、 該電圧変動を上記画質調整設定電圧に混合し、その混合
出力を上記輝度処理回路に入力する混合手段とを備えた
ことを特徴とする磁気記録再生装置。(1) In a magnetic recording and reproducing device that has a brightness processing circuit that controls frequency characteristics based on an image quality adjustment voltage set via a variable resistor for image quality adjustment, the reproduced video signal is converted into voltage fluctuations that correspond to brightness and darkness fluctuations in image quality. A magnetic recording/reproducing apparatus comprising: means for mixing the voltage fluctuation with the image quality adjustment setting voltage and inputting the mixed output to the brightness processing circuit.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP1221117A JPH0385077A (en) | 1989-08-28 | 1989-08-28 | Magnetic recording and reproducing device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP1221117A JPH0385077A (en) | 1989-08-28 | 1989-08-28 | Magnetic recording and reproducing device |
Publications (1)
Publication Number | Publication Date |
---|---|
JPH0385077A true JPH0385077A (en) | 1991-04-10 |
Family
ID=16761743
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP1221117A Pending JPH0385077A (en) | 1989-08-28 | 1989-08-28 | Magnetic recording and reproducing device |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPH0385077A (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE4239994A1 (en) * | 1991-11-27 | 1993-06-03 | Hitachi Ltd | Video signal processing equipment for automatic control of picture quality - receives luminance signal by average level detector and noise detector to control voltage shift stage coupled to picture quality unit |
-
1989
- 1989-08-28 JP JP1221117A patent/JPH0385077A/en active Pending
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE4239994A1 (en) * | 1991-11-27 | 1993-06-03 | Hitachi Ltd | Video signal processing equipment for automatic control of picture quality - receives luminance signal by average level detector and noise detector to control voltage shift stage coupled to picture quality unit |
US5436729A (en) * | 1991-11-27 | 1995-07-25 | Hitachi, Ltd. | Video signal processing apparatus with automatic picture quality control function and signal processing circuit |
DE4239994C2 (en) * | 1991-11-27 | 1995-11-23 | Hitachi Ltd | Video signal processing device |
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