JPS5824281A - Skew distortion correcting device of segment type vtr - Google Patents

Skew distortion correcting device of segment type vtr

Info

Publication number
JPS5824281A
JPS5824281A JP56123451A JP12345181A JPS5824281A JP S5824281 A JPS5824281 A JP S5824281A JP 56123451 A JP56123451 A JP 56123451A JP 12345181 A JP12345181 A JP 12345181A JP S5824281 A JPS5824281 A JP S5824281A
Authority
JP
Japan
Prior art keywords
signal
phase
video
television signal
skew distortion
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
JP56123451A
Other languages
Japanese (ja)
Inventor
Sadanobu Kawabe
川辺 貞信
Yutaka Kaneba
金場 豊
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.)
Mitsubishi Electric Corp
Original Assignee
Mitsubishi Electric Corp
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 Mitsubishi Electric Corp filed Critical Mitsubishi Electric Corp
Priority to JP56123451A priority Critical patent/JPS5824281A/en
Publication of JPS5824281A publication Critical patent/JPS5824281A/en
Pending legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N5/00Details of television systems
    • H04N5/76Television signal recording
    • H04N5/91Television signal processing therefor
    • H04N5/93Regeneration of the television signal or of selected parts thereof
    • H04N5/95Time-base error compensation

Landscapes

  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Television Signal Processing For Recording (AREA)
  • Signal Processing Not Specific To The Method Of Recording And Reproducing (AREA)

Abstract

PURPOSE:To prevent the generation of skew distortion on a reproduction screen with simple constitution, by putting a leading and a succeeding playback video signal in phase through a variable delay line during an overlap period. CONSTITUTION:At outputs of synchronous separating circuits 10 and 13, horizontal synchronizing signals HA and HB reproduced video heads 2 and 3 appear respectively. Those signals HA and HB are phase-compared mutually by a phase comparator 11 during an overlap period from a video signal A to a video signal B, and the error voltage is applied to a variable delay device 7 through a gate holding circuit 14, a switch circuit 28, and a voltage-controlled oscillator 16, thus constituting a phase-lock loop by those circuits. During reproduction, the rotary phases of the heads 2 and 3 are detected at a part 17 to output a gate signal D. This signal D has a high level during the overlap period from the signal A to the signal B. Then, the phase-lock loop operates to synchronize the signal HB of the playback signal of the head 3 with the signal HA of the playback signal of the head 2.

Description

【発明の詳細な説明】 この発明はセグメント式VTRのスキュー補正装置に関
する。
DETAILED DESCRIPTION OF THE INVENTION The present invention relates to a skew correction device for a segment type VTR.

一般にビデオテープレコーダC以下VTRと略す)にお
いては高周波信号をテープに記録するため回転ヘッドが
用いられている。この回転ヘッドはテープ上に切れ切れ
のドブツクを順次記録して行く、ソの場合、テレビジョ
ン信号の1フイ一μド分が1本のトラックに記録される
場合と、何本かのトラックに分割される場合とがある。
In general, a video tape recorder (hereinafter abbreviated as VTR) uses a rotating head to record high frequency signals on tape. This rotating head records bits and pieces on the tape one after another.In the case of the Soviet Union, one frame of the television signal is recorded on one track, and another is divided into several tracks. There are cases where it is done.

前者の方式のVTRをノンセグメント式VTR,後者を
セグメント式VTRと称している。セグメント式はノン
セグメント式に比べて回転ドラムが小さくできるため、
VTR全体が小形化できる特長がある。しかしlフィー
ルド期間の中にトラックの継ぎ目が17.)ラックの時
間ずれによりスキュー歪が生じやすい、従来のセグメン
ト式VTRではスキュー歪を補正するため複雑な水平、
垂直同期サーボ系を用いて再生信号を外部信号に同期さ
せたり、再生したく信号を一度デシタμ人メモリに記憶
したのち安定な外部のクロックで読み出すなどしていた
ので構成が複雑な物になっていた。
The former type of VTR is called a non-segment type VTR, and the latter type is called a segment type VTR. The segment type has a smaller rotating drum than the non-segment type, so
It has the advantage that the entire VTR can be made smaller. However, during the l field period, the track seam is 17. ) Skew distortion tends to occur due to rack time lag.In conventional segment type VTRs, complicated horizontal, horizontal,
The configuration was complicated because a vertical synchronization servo system was used to synchronize the reproduced signal with an external signal, and the signal to be reproduced was once stored in a digital memory and then read out using a stable external clock. was.

この発明は従来のような複雑な構成によらずにスキュー
歪の補正を行うようにしたものである。
According to the present invention, skew distortion can be corrected without using a complicated configuration as in the prior art.

第1図はこの発明の一実施例のブロック図、第2mは再
生時のスキュー歪を示す図で1図中(7)は可変遅延装
@%―は遅延量制御装置である。
FIG. 1 is a block diagram of an embodiment of the present invention, and 2m is a diagram showing skew distortion during reproduction. In FIG. 1, (7) is a variable delay device @%- is a delay amount control device.

ここで用いるVTRは2ヘッド式であるが、ドラムの回
転数はNTSC式信号の場合毎分3600回転である。
The VTR used here is a two-head type, and the drum rotation speed is 3600 revolutions per minute for NTSC signals.

すなわち1フイーμドのビデオ信号は2本のトラックに
分割して記録される。そのため従来のVTRと同じへラ
ドテープ間相対速度を得るためにはドラム(1)の直径
は1/2でよい、しかし再生画の中央にヘッドのつぎ目
があるため、第2図に示すように画面中央にスキュー歪
が発生する。
That is, one feed μ-feed video signal is divided into two tracks and recorded. Therefore, in order to obtain the same relative speed between tapes as in a conventional VTR, the diameter of the drum (1) can be reduced to 1/2, but since the head seam is located in the center of the reproduced image, as shown in Figure 2. Skew distortion occurs in the center of the screen.

この実検例では次の様にしてこの歪を補正する。In this actual test example, this distortion is corrected as follows.

まずビデオヘッド(匂はlブイ−μドの前半、ビデオヘ
ッド(3)は後半の記録再生を担当しているものとする
First, it is assumed that the video head (3) is in charge of recording and reproducing the first half of the video and the video head (3) is in charge of recording and reproducing the second half.

まず記録時においては、スイッチ回路(2)@翰および
(ハ)の可動接点は記録側接点Rに倒される。録画すべ
きビデオ信号は映像入力端子−に加えられ、変調器り9
にてFM変調される。この信号は増巾器−とスイッチ(
2)を通じて、ビデオヘッド(3)と、スイッチ翰、可
変遅延装置(7)、増巾器(財)及びスイッチ−を経て
ビデオヘッド(匂とに加えられる。可変遅延装置(7)
は例えばCCD Ccb自tg@ CoupledDe
vIce)で構成され、その遅延量τは電圧制御発振器
Hの発生するクロックの周波数で決定される。記録時に
おいては電圧源−の電圧により、上記クロック周波数は
一定に保たれ、上記遅延量Tは例えばH(Hは水平同期
信号の周期)に固定されている。
First, during recording, the movable contacts of the switch circuits (2) and (c) are pushed down to the recording side contact R. The video signal to be recorded is applied to the video input terminal - and the modulator 9
The signal is FM modulated. This signal is transmitted through the amplifier and switch (
2), the video head (3), the switch wire, the variable delay device (7), the amplifier, and the switch.
For example, CCD Ccbselftg@CoupledDe
vIce), and its delay amount τ is determined by the frequency of the clock generated by the voltage controlled oscillator H. During recording, the clock frequency is kept constant by the voltage of the voltage source, and the delay amount T is fixed to, for example, H (H is the period of the horizontal synchronizing signal).

ここで磁気テープ(図示せず)はドラム〇)に1806
よりも若干多く巻回されているので、ビデオヘッド(2
1および(3)による各記録トラックには、第3図ω、
■に示すようにつぎ目の部分において、オーパフツブ期
間りを有して、順次、テープにそれぞれ信号Q、■・・
・とじて記録される。
Here, the magnetic tape (not shown) is placed on the drum 〇).
The video head (2
Each recording track according to 1 and (3) has ω,
As shown in ■, in the next part, there is an opening period, and the signals Q, ■...
・It is recorded as a staple.

ところで、ビデオヘッド(乃で記録される信号社、1τ
だけ遅延しているので、オーバラップ部の信号について
見れば信号■中の時刻1.に相当するビデオ信号は、信
号■中では図示のようにτだけ遅延している。
By the way, video head (recorded by Signal Company, 1τ
Therefore, if we look at the signal in the overlap part, time 1. in signal ■ is delayed. The video signal corresponding to is delayed by τ in the signal ■ as shown in the figure.

以上のようにして、ビデオ信号は磁気テープに。As described above, the video signal is transferred to magnetic tape.

1/2フイ−Mドづつ異なる記録トラックに順次記録さ
れていく。
1/2 feeds are sequentially recorded on different recording tracks.

次に再生時においては、スイッチ回路(財)@翰および
(社)の可動接点は再生側接点Pに倒される。ビデオヘ
ッド(匂の再生信号はスイッチ回路−1増巾器(4)を
経て、またビデオヘッド(ωの再生信号はスイッチ回路
−,増巾器(6)、スイッチ回路(ハ)、可変遅延装置
(7)を経てスイッチ回路(8)でつなぎ合わされて合
成され、復調器−で映像信号となって出力に得られる。
Next, at the time of reproduction, the movable contact of the switch circuit (Incorporated)@Kan and Co., Ltd. is pushed down to the reproduction side contact P. The video head (the odor playback signal goes through the switch circuit-1 amplifier (4), and the video head (ω playback signal goes through the switch circuit-, amplifier (6), switch circuit (c), variable delay device (7), are connected and synthesized by a switch circuit (8), and are output as a video signal by a demodulator.

第4図は各部の信号波形図で、同図伽)は増巾器14)
の出力信号A、同図(b)は増巾器(+1)の出力信号
B、同図ω)は垂直同期信号Vで、ヘッドの出力がビデ
オ信号BからAへ切替る点にある。
Figure 4 is a signal waveform diagram of each part. Figure 4) shows the amplifier 14).
(b) is the output signal B of the amplifier (+1), and ω) is the vertical synchronizing signal V, which is at the point where the output of the head switches from video signal B to video signal A.

第5図は第4図のビデオ信号AからBへの切替え点附近
を拡大した波形図である。第1図において同期分離回路
+101 、 Q3の出力にはそれぞれビデオヘッド(
2) 、 (3)から再生した水平同期信号H^、H!
I (第5図(e) 、 (f)に示す)が得られる0
位相検波器(IIIはこれらの水平同期信号HA、HB
をビデオ信号AからBへのオーバーラツプ期間において
位相比較し。
FIG. 5 is an enlarged waveform diagram of the vicinity of the switching point from video signal A to B in FIG. In Figure 1, the outputs of the sync separation circuit +101 and Q3 are connected to video heads (
2), horizontal synchronization signal H^, H! reproduced from (3).
I (shown in Figure 5(e) and (f)) is obtained.
Phase detector (III detects these horizontal synchronization signals HA, HB
The phases of the video signals A and B are compared during the overlap period.

その誤差電圧はゲートホールド回路041.スイッチ回
路(至)、電圧制御発振器−を通じて可変遅延装置()
)に支えられ1位相同期V−プが構成される。ここで、
再生ビデオ信号Aの信号内容は、既に記録時に述べた操
作により、遅延量が与えられているので、再生時におい
てビデオ信号AとBとを連続的に接続するためにはビデ
オ信号Bの信号内容を可変遅延装置(71によって遅延
させる。この遅延量はIHを中心とじて可変できるよう
に構成されるものとする。ところで、画面上部に相当す
るビデオ信号Aを一定量τだけ遅延させるのは、ビデオ
信号Aに対してビデオ信号Bが、進相となるようなスキ
ュー歪が生じた場合は、ビデオ信号Bを上記可変遅延装
置(7)で遅らすことにより補正できるが、ビデオ信号
Aに対して、ビデオ信号Bが遅相となるようなスキュー
歪が生じた場合は、補正できなくなるからである。αG
は遅延回路で、ビデオヘッド(2) 、 (3)の回転
位相を検出する検出ヘッド071の検出信号からゲート
信号D(第4図@、第5図(d)に示す、)を得る。ゲ
ート信号りはビデオ信号AからBへのオーバーラツプ期
間中高レベ〃となる。この期間中は位相同期V−プが動
作し、ビデオヘッド(2)の再生信号による水平同期信
号Hムにビデオヘッド(3)の再生信号による水平同期
信号H!Iが同期する。G(第5図@に示す)は位相検
波器(11)の誤着信号出力である。このようにしてオ
ーバーラツプ期間中に両方のヘッドの水平同期の位相が
一致するように制御されるため画面中央のスキュー歪は
解消する(第5図(ロ)のA 、 B’として示す、)
オーパーツツブ期間がすぎると電圧制御発振器6gはホ
ーμドされ、可変遅延装置(71の遅延時間は一定に保
たれる。なおこの例ではヘッド(粉から(3)(即チヒ
デオ信号AからB)へのつぎ目のスキュー歪は補正され
るがヘッド(3)から(匂(即ちビデオ信号BからA)
へのスキュー歪は補正しない、その理由はビデオ信号B
からAへの継ぎ目は垂直グフンキング期間は目に見えな
い上、スキュー歪の大きさも1フイ一μド分が積分され
るにもかかわラスノンセグメント式の場合のスキュー歪
と変ワらず、補正する必要がないからである。
The error voltage is applied to the gate hold circuit 041. Switch circuit (to), voltage controlled oscillator - through variable delay device ()
) to form a one-phase synchronized V-p. here,
The signal content of the reproduced video signal A has already been given a delay amount by the operation described at the time of recording, so in order to connect video signals A and B continuously during playback, the signal content of the video signal B is is delayed by a variable delay device (71).The delay amount is configured to be variable around IH.By the way, delaying the video signal A corresponding to the upper part of the screen by a certain amount τ is as follows. If skew distortion occurs such that video signal B is phase-advanced relative to video signal A, it can be corrected by delaying video signal B with the variable delay device (7). , if a skew distortion occurs that causes the video signal B to have a delayed phase, it cannot be corrected. αG
is a delay circuit, which obtains a gate signal D (shown in FIG. 4@ and FIG. 5(d)) from the detection signal of the detection head 071 that detects the rotational phase of the video heads (2) and (3). The gate signal is at a high level during the overlap period from video signal A to B. During this period, the phase synchronization V-p operates, and the horizontal synchronization signal H! produced by the reproduction signal of the video head (3) is added to the horizontal synchronization signal H! produced by the reproduction signal of the video head (3). I synchronize. G (shown in FIG. 5@) is the erroneous arrival signal output of the phase detector (11). In this way, the horizontal synchronization phases of both heads are controlled to match during the overlap period, so the skew distortion at the center of the screen is eliminated (shown as A and B' in Figure 5 (b)).
When the Opart Stub period has passed, the voltage controlled oscillator 6g is held, and the delay time of the variable delay device (71) is kept constant. The next skew distortion is corrected, but from the head (3) (i.e. video signal B to A)
The skew distortion is not corrected because the video signal B
The seam from A to A is not visible during the vertical goofing period, and the magnitude of the skew distortion is the same as the skew distortion in the case of the lath non-segment method, even though 1 field and 1 μd are integrated. This is because there is no need to do so.

上記実施例では水平同期信号を用いて補正したがこれに
限らずバースト信号、/<イロツ)信号など他の周期信
号を用いてもよい。
In the above embodiment, the horizontal synchronization signal is used for correction, but the present invention is not limited to this, and other periodic signals such as a burst signal and a signal may also be used.

また、1フイーμドの分割数は2に限らずN分割(N2
2)シてもよい。
In addition, the number of divisions of one feed μ feed is not limited to 2, but is divided into N (N2
2) You can do it.

例えば、N==3の場合について、第6図を用いて簡単
に説明する。
For example, the case where N==3 will be briefly explained using FIG. 6.

この場合、画面上部に相当する最先区分のビデオ信号A
は記録時に於て1例えばIHだけ遅延させて記録したと
すると、再生時には、ビデオ信号Aとこれに続く区分の
ビデオ信号BおよびCとの関係は第6図のω、■、(C
)に示すような模式図となる。但しここでは第3図で説
明したオーバラップは省略して図示しである。
In this case, video signal A of the earliest section corresponding to the top of the screen
When recording is delayed by 1, for example, IH, during playback, the relationship between video signal A and video signals B and C of the following sections is as shown in Fig. 6, ω, ■, (C
) is the schematic diagram shown. However, the overlap explained in FIG. 3 is omitted here.

まずビデオ信号AとBのオーバラップ部において1両者
の位相比較を行い、両者の位相が合うように、ビデオ信
号Bの遅延量を加減する0次いで。
First, the phases of video signals A and B are compared in the overlapped portion, and the delay amount of video signal B is adjusted or decreased so that the phases of the two match.

ビデオ信号BとCのオーバラップ部において両者の位相
比較を行い、両者の位相が合うように、ビデオ信号Cの
遅延量を加減する。このようにしてビデオ信号AとB、
およびBとCのつぎ口部のスキュー歪を補正した後、同
図りに示すような連続するビデオ信号A 、 B’、 
C’CB’、 C’はそれぞれB。
The phases of video signals B and C are compared in the overlapped portion, and the delay amount of video signal C is adjusted so that the phases of the two match. In this way, video signals A and B,
After correcting the skew distortion at the end of B and C, continuous video signals A, B', and
C'CB' and C' are respectively B.

Cを遅延させたもの)を得るようにすれば、再生画面内
のスキュー歪は生じない。
If a delayed version of C) is obtained, skew distortion within the playback screen will not occur.

N:4 、5 、・・・の場合についても上記と同様な
考え方でスキュー歪が補正できる。N22の場合可変遅
延装置はN−1個必要でおるが、常時動作するものは2
個に限られるので切替えて使用すれば2個を用意するだ
けでよい。
In the case of N:4, 5, . . ., skew distortion can be corrected using the same concept as above. In the case of N22, N-1 variable delay devices are required, but two that operate constantly.
Since it is limited to 1 piece, if you switch and use it, you only need to prepare 2 pieces.

また可変遅延装置は上記半導体遅延線の代シに可変容量
とインダクタンスによる可変遅延線を用いてもよい。
Further, the variable delay device may use a variable delay line using variable capacitance and inductance instead of the semiconductor delay line.

以上のべたようにこの発明によれば半導体遅延線などの
可変遅延線を用いてオーパーツツブ期間に、先行する再
生ビデオ信号と後続する再生ビデオ信号との位相合わせ
を行ない、オーバラツブ期間外では時間軸操作を施さな
いようにしたので。
As described above, according to the present invention, a variable delay line such as a semiconductor delay line is used to align the phase of the preceding playback video signal and the following playback video signal during the overlap period, and time axis operation is performed outside the overlap period. I decided not to apply it.

従来のセグメント式VTRのように外部信号に常時同期
させるものに比べて構成が著しく簡単であり、時間軸補
正系に混入する雑音により画面の安定性が損なわれるお
それがない。
The configuration is significantly simpler than that of a conventional segment type VTR that is always synchronized with an external signal, and there is no risk that the stability of the screen will be impaired due to noise entering the time axis correction system.

また垂直帰線期間にある継ぎ目の補正を省略したため半
導体遅延線が1個ですむ特長力4る。
In addition, since the correction of the joint in the vertical retrace period is omitted, only one semiconductor delay line is required.

この発明はテレビジョン信号の1ブイ−μドを複数に分
割して磁気テープにそれぞれ異なる記録トラックに記録
し、再生時に先行する区分の再生テレビジョン信号とこ
れにつづく区分の再生テレビジョン信号との位相を一致
させてスキュー歪を補正するものにおいて、最先区分の
テレビジョン信号を所定量遅延させて磁気テープに記録
する遅延装置と、再生時に最先区分につづく各区分のテ
レビジョン信号を順次遅延させる可変遅延装置と。
This invention divides one broadcast signal of a television signal into a plurality of parts and records them on different recording tracks on a magnetic tape, so that during reproduction, the reproduced television signal of the preceding division and the reproduced television signal of the following division are separated. A device that corrects skew distortion by matching the phases of the television signals includes a delay device that delays the television signal of the first section by a predetermined amount and records it on the magnetic tape, and a delay device that delays the television signal of the first section by a predetermined amount and records it on the magnetic tape, and a television signal of each section following the first section during playback. A variable delay device that delays sequentially.

先行区分の再生テレビジョン信号とこれにつづく区分の
再生テレビジョンの位相を比較し両信号の位相を一致さ
せるように上記可変遅延装置の遅延量を加減して当該後
続区分の再生テレビジョン信号の遅延量を変える遅延量
制御装置とを備えたことを特徴とするもので、セグメン
ト式VTRのスキュー歪の補正を簡単な構成で行うこと
ができる。
The phase of the reproduced television signal of the preceding division and the reproduced television signal of the following division are compared, and the delay amount of the variable delay device is adjusted so that the phases of the two signals match. The present invention is characterized in that it includes a delay amount control device that changes the amount of delay, and it is possible to correct skew distortion of a segment type VTR with a simple configuration.

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

第1図はこの発明の一実施例のブロック図、第2図はス
キュー歪を示す図、第3図はビデオ信AとBの関係を示
す図、第4図はこの実施例の各部の信号波形図、第5図
はこの実施例の再生ビデオ信号のオーバーラツプ部分を
拡大して示した信号波形図、第6図は他の実施例の信号
波形図である。 図において(7)は可変遅延装置Sl!01 、04G
は同期分離回路、 (Illは位相比較器、 Q4はゲ
ートホールド回路、(1Gは電圧制御発振器、(31は
遅延量制御装置である。 代理人 葛野信−(外1名) 第5図 第6図
FIG. 1 is a block diagram of an embodiment of the present invention, FIG. 2 is a diagram showing skew distortion, FIG. 3 is a diagram showing the relationship between video signals A and B, and FIG. 4 is a diagram showing signals of various parts of this embodiment. FIG. 5 is a signal waveform diagram showing an enlarged overlap portion of the reproduced video signal of this embodiment, and FIG. 6 is a signal waveform diagram of another embodiment. In the figure (7) is the variable delay device Sl! 01,04G
is a synchronous separation circuit, (Ill is a phase comparator, Q4 is a gate hold circuit, (1G is a voltage controlled oscillator, (31 is a delay amount control device. figure

Claims (1)

【特許請求の範囲】[Claims] (1)テレビジョン信号のlフィーμドを複数に分割し
て磁気テープにそれぞれ異なる記録トラックに記録し、
再生時に先行する区分の再生テレビジョン信号とこれに
つづく区分の再生テレビジョン信号との位相を一致させ
てスキュー歪を補正するものにおいて、最先区分のテレ
ビジ3ン信号を所定量遅延させて磁気テープに記録する
遅延装置と。 再生時に最先区分につづく各区分のテレビジョン信号を
順次遅延させる可変遅延装置と、先行区分の再生テレビ
ジョン信号とこれにつづく区分の再生テレビジョンの位
相を比較し両信号の位相を一致させるように上記可変遅
延装置の遅延量を加減して当該後続区分の再生テレビジ
ョン信号の遅延量を変える遅延量制御装置とを備えたこ
とを特徴とするセグメント式VTRのスキュー歪補正装
置。
(1) Divide the l-feed μ of the television signal into multiple parts and record them on different recording tracks on the magnetic tape,
In a device that corrects skew distortion by matching the phase of the reproduced television signal of the preceding section and the reproduced television signal of the following section during reproduction, the television signal of the first section is delayed by a predetermined amount and the magnetic and a delay device that records on tape. A variable delay device that sequentially delays the television signal of each section following the first section during reproduction, and compares the phase of the reproduced television signal of the preceding section and the reproduced television signal of the following section to match the phases of both signals. A skew distortion correction device for a segment type VTR, comprising: a delay amount control device that adjusts the delay amount of the variable delay device to change the delay amount of the reproduced television signal of the subsequent section.
JP56123451A 1981-08-05 1981-08-05 Skew distortion correcting device of segment type vtr Pending JPS5824281A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP56123451A JPS5824281A (en) 1981-08-05 1981-08-05 Skew distortion correcting device of segment type vtr

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP56123451A JPS5824281A (en) 1981-08-05 1981-08-05 Skew distortion correcting device of segment type vtr

Publications (1)

Publication Number Publication Date
JPS5824281A true JPS5824281A (en) 1983-02-14

Family

ID=14860927

Family Applications (1)

Application Number Title Priority Date Filing Date
JP56123451A Pending JPS5824281A (en) 1981-08-05 1981-08-05 Skew distortion correcting device of segment type vtr

Country Status (1)

Country Link
JP (1) JPS5824281A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS59147582A (en) * 1983-02-10 1984-08-23 Olympus Optical Co Ltd Picture recording and reproducing device
WO1986003920A1 (en) * 1984-12-21 1986-07-03 Mitsubishi Denki Kabushiki Kaisha Magnetic recording/reproducing apparatus
JPS63131671A (en) * 1986-11-20 1988-06-03 Sanyo Electric Co Ltd Segment recording type video tape recorder
EP0421486A2 (en) * 1984-06-26 1991-04-10 Hitachi, Ltd. Skew error correction circuit for video signal reproducing apparatus

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS59147582A (en) * 1983-02-10 1984-08-23 Olympus Optical Co Ltd Picture recording and reproducing device
EP0421486A2 (en) * 1984-06-26 1991-04-10 Hitachi, Ltd. Skew error correction circuit for video signal reproducing apparatus
WO1986003920A1 (en) * 1984-12-21 1986-07-03 Mitsubishi Denki Kabushiki Kaisha Magnetic recording/reproducing apparatus
GB2178924A (en) * 1984-12-21 1987-02-18 Mitsubishi Electric Corp Magnetic recording/reproducing apparatus
US4809097A (en) * 1984-12-21 1989-02-28 Mitsubishi Denki Kabushiki Kaisha Magnetic recording and reproducing apparatus
JPS63131671A (en) * 1986-11-20 1988-06-03 Sanyo Electric Co Ltd Segment recording type video tape recorder

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