JPS60253026A - Index detecting device - Google Patents

Index detecting device

Info

Publication number
JPS60253026A
JPS60253026A JP10885784A JP10885784A JPS60253026A JP S60253026 A JPS60253026 A JP S60253026A JP 10885784 A JP10885784 A JP 10885784A JP 10885784 A JP10885784 A JP 10885784A JP S60253026 A JPS60253026 A JP S60253026A
Authority
JP
Japan
Prior art keywords
optical pickup
index
point
section
indicated
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.)
Granted
Application number
JP10885784A
Other languages
Japanese (ja)
Other versions
JPH0552571B2 (en
Inventor
Shigeru Hagiwara
茂 萩原
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.)
Panasonic Holdings Corp
Original Assignee
Matsushita Electric Industrial 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 Matsushita Electric Industrial Co Ltd filed Critical Matsushita Electric Industrial Co Ltd
Priority to JP10885784A priority Critical patent/JPS60253026A/en
Publication of JPS60253026A publication Critical patent/JPS60253026A/en
Publication of JPH0552571B2 publication Critical patent/JPH0552571B2/ja
Granted legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B27/00Editing; Indexing; Addressing; Timing or synchronising; Monitoring; Measuring tape travel
    • G11B27/10Indexing; Addressing; Timing or synchronising; Measuring tape travel
    • G11B27/102Programmed access in sequence to addressed parts of tracks of operating record carriers
    • G11B27/105Programmed access in sequence to addressed parts of tracks of operating record carriers of operating discs

Abstract

PURPOSE:To detect exactly and quickly an indicated index by providing an optical pickup driving control part, signal demodulating part, and an arithmetic part for calculating a sub-code obtained by demodulating it, and a storage part, to a digital audio disk. CONSTITUTION:A distance between the first point of the next melody of an indicated melody, and the present point is calculated by an operating part 23, and as a result, an optical pickup part 21 is brought to the first point of the next melody of an indicated melody through a driving control part 24. Thereafter, the optical pickup part 21 is made to jump and returned by one track each under the control of the optical pickup driving control part 24, and the last point of the indicated melody is detected. Subsequently, a size of the index obtained at that point and an indicated index is calculated by the arithmetic part 23, the distance is calculated by the part 23 by a length recorded in a storage part 25 from the point where the optical pickup part exists, and the optical pickup part 21 is moved through the driving control part 24. By executing this repetition, the optical pickup part 21 is moved to a point of the indicated index.

Description

【発明の詳細な説明】 産業上の利用分野 本発明はディジタルオーディオディスクプレーヤ、特に
コンパクト・ディスク・プレーヤのインデックス検出装
置に関するものである。
DETAILED DESCRIPTION OF THE INVENTION Field of the Invention The present invention relates to an index detection device for a digital audio disc player, particularly a compact disc player.

従来例の構成とその問題点 近年、オーディオ機器の高音質化にはめざましいものが
あり、レコードもコンバク]・・ディスクの出現によっ
て、その音質ならびに操作性が注目され、普及がのぞま
れている。
Conventional configurations and their problems In recent years, there has been a remarkable improvement in the sound quality of audio equipment, and records have also improved.] With the advent of discs, their sound quality and operability have attracted attention, and their widespread use is expected. .

以下に従来のインデックス検出装置について説明する。A conventional index detection device will be explained below.

第1図は従来のインデックス検出装置の構成図であり、
11はコンパクトディスクより信号を取り出し電気信号
に変換する光ピツクアップ部、12はその電気信号を復
調する信号復調部、13は信号復調部で得られたサブコ
ードの演算を行なう演算部、14は演算部13で演算さ
れた結果をもとに光ピツクアップの駆動制御を行なう光
ピツクアップ駆動制御部である。
FIG. 1 is a block diagram of a conventional index detection device.
11 is an optical pickup unit that extracts a signal from a compact disc and converts it into an electrical signal; 12 is a signal demodulation unit that demodulates the electrical signal; 13 is an arithmetic unit that operates on the subcode obtained by the signal demodulation unit; and 14 is an arithmetic unit. This is an optical pickup drive control section that performs drive control of the optical pickup based on the results calculated by the section 13.

以上のように構成された従来のインデックス検出装置に
ついて、以下その動作を説明する。
The operation of the conventional index detection device configured as described above will be described below.

まず光ピツクアップ部11によりコンパクトディスクに
記録されている信号を電気信号に変換し、その電気信号
を信号復調部12で復調し、サブコードを演算部13に
信号を送る。あらかじめ指示されたインデックスがディ
スク上のどの場所に存在するか前もって調べる手段がな
いため、演算部13ではあらかじめ決めておいた本数だ
けディスク上のトラックをジャンプするように光ピツク
アップ駆動制御部14に指示を出し、トラックジャンプ
を行なわせる。また光ピツクアップ部11によりディス
クの信号を読み取り、指示されたインデックスと異なっ
た場合、再びトラックジャンプを行なわせ、指示された
インデックスの点捷で光ピツクアップを進1せる。壕だ
指示された曲の次の曲まで光ピンクアンプが進んだ場合
、指示されたインデックスがエラーであることを検出す
る。
First, the signal recorded on the compact disc is converted into an electrical signal by the optical pickup section 11, the electrical signal is demodulated by the signal demodulation section 12, and the subcode is sent to the calculation section 13. Since there is no way to check in advance where on the disk a specified index exists, the calculation section 13 instructs the optical pickup drive control section 14 to jump a predetermined number of tracks on the disk. and have them do a track jump. Further, the optical pickup section 11 reads the signal from the disk, and if the index differs from the designated index, the track jump is performed again, and the optical pickup is advanced by 1 at the designated index. If the light pink amplifier advances to the next song after the specified song, it will detect that the specified index is an error.

しかしながら上記の従来の構成では、曲の最初の点より
一定数のトラックジャンプを行なうので、指示されたイ
ンデックスがエラーであった場合、その判定に時間がか
かり、また曲の後半に存在するインデックスを指示され
た場合、その検出に時間がかかるなどの問題点を有して
いた。
However, in the above conventional configuration, a certain number of track jumps are performed from the first point of the song, so if the specified index is an error, it takes time to determine the error, and the index existing in the second half of the song is When an instruction is given, there are problems in that it takes time to detect the instruction.

発明の目的 本発明は上記従来の問題点を解消するもので、指示され
たインデックスを正確に速く検出し、その点に光ピツク
アップを移動させることのできるインデックス検出装置
を提供することを目的とする。
OBJECTS OF THE INVENTION The present invention solves the above-mentioned conventional problems, and aims to provide an index detection device that can accurately and quickly detect a specified index and move an optical pickup to that point. .

発明の構成 本発明はディジタルオーディオディスクに記録された信
号を電気信号に変換する光ビワ2フ、1部と、その駆動
制御をする光ピツクアップ駆動制御部と、光ピンクアッ
プ部で得られた信号を復調する信号復調部と、復調して
得られたサブコードの演算を行なう演算部と、演算され
た結果を記憶しておく記憶部とを備えたインデックス検
出装置あり、サブコートを用いた演算結果を記憶してお
くこと(てより、正確かつ速く指示されたインデックス
を検出するものである。
Structure of the Invention The present invention comprises an optical pickup drive control section that converts signals recorded on a digital audio disk into electrical signals, an optical pickup drive control section that controls the drive thereof, and a signal obtained by the optical pickup section. There is an index detection device that includes a signal demodulation section that demodulates the subcode, a calculation section that performs calculations on the subcode obtained by demodulation, and a storage section that stores the calculation result. (which allows us to accurately and quickly detect the indicated index.

実施例の説明 第2図は本発明の一実施例におけるインデックス検出装
置のブロック図を示すものである。第2図において21
はコンパクトディスクに記録された信号を取り出し電気
信号に変換する光ピツクアップ部、22はその電気信号
を復調する信号復調部、23は復調された信号のサブコ
ードを用いて演算する演算部、24は光ビワ2フフ1部
の駆動制御を行なう光ピツクアップ駆動制御部、25は
演算部23で演算された結果を記録しておく記憶部であ
る。
DESCRIPTION OF THE EMBODIMENT FIG. 2 shows a block diagram of an index detection device in an embodiment of the present invention. 21 in Figure 2
22 is a signal demodulation unit that demodulates the electrical signal; 23 is a calculation unit that performs calculations using the subcode of the demodulated signal; An optical pickup drive control section 25 controls the drive of the optical beer 2 fufu 1 section, and 25 is a storage section that records the results of calculations performed by the calculation section 23.

以上のように構成された本実施例のインデックス検出装
置について以下その動作を説明する。
The operation of the index detecting device of this embodiment configured as described above will be explained below.

1ず、コンパクトディスクに記録された信号を光ピツク
アップ部21で取り出し電気信号に変換する。その電気
信号を信号復調部22で復調し、復調された信号のサブ
コードを演算部23に送る。
First, the signal recorded on the compact disc is extracted by the optical pickup unit 21 and converted into an electrical signal. The electrical signal is demodulated by the signal demodulation section 22 and the subcode of the demodulated signal is sent to the calculation section 23.

演算部23において、送られてきたサブコードのTOC
データを記憶部25に記録する。なお、TOCデータと
はTable of contentsの略であり、デ
ィスクに記録された名曲の最初の点を時間で表わしたデ
ータである。そして指示された曲の次の曲の最初の点を
記憶部25に記録しておいたTOCデータから取9出し
、現在点との距離を演算部23で計算し、その結果より
光ピツクアップ駆動制御部24を介し光ピツクアップ部
21を指示された曲の次の曲の最初の点に持ってくる。
In the calculation unit 23, the TOC of the sent subcode
The data is recorded in the storage section 25. Note that TOC data is an abbreviation for Table of Contents, and is data that represents the first point of a masterpiece recorded on a disc in terms of time. Then, the first point of the song next to the instructed song is extracted from the TOC data recorded in the storage section 25, the distance from the current point is calculated by the calculation section 23, and the optical pickup drive control is performed based on the result. The optical pickup section 21 is brought to the first point of the song next to the instructed song via the section 24.

そののち光ピツクアップ駆動制御部24の制御により1
トラツクずつ光ピツクアップ部21をジャンプして戻し
、指示された曲の最後の点を見つける。
Then, under the control of the optical pickup drive control section 24, 1
The optical pickup unit 21 is jumped back track by track to find the last point of the designated song.

そしてその点で得られたインデックスと指示されたイン
デックスの大小を演算部23で演算し、指示されたイン
テックス数の方が大きい場合、指示誤りであると判断す
る。指示されたインデックス数の方が小さい場合、演算
部23でTOCデータより指示された曲の長さを計算し
、さらにそのAの長さを計算して3己憶部25に記録す
る。次に光ピツクアップ部のいる点から記憶部25に記
録された長さだけ演算部23で距離を計算し、光ピツク
アップ部21を光ピツクアップ駆動制御部24を介して
移動させ、その点の記録された信号を取り出し、信号復
調部22全通してサブコードを演算部23に送り、演算
823では指示されたインデックスと現点でのインデッ
クスの大小を言1算する。指示されたインデックスの方
が大きかった場合、記憶部25に記録されていた長さの
棒の長さを計算をしてそれにあった距離だけ光ピツクア
ップ部21を光ピツクアップ駆動制御部24を介して進
ませる。指示されたインデックスの方が小さかった場合
、同様に光ピンクアップ部21を戻す。
Then, the calculation unit 23 calculates the magnitude of the index obtained at that point and the designated index, and if the designated index number is larger, it is determined that the designation is incorrect. If the designated index number is smaller, the calculation unit 23 calculates the length of the designated song from the TOC data, and further calculates the length of A and records it in the third memory unit 25. Next, the calculation unit 23 calculates the distance from the point where the optical pickup unit is located by the length recorded in the storage unit 25, and the optical pickup unit 21 is moved via the optical pickup drive control unit 24, and the distance recorded at that point is The subcode is sent through the signal demodulation section 22 to the calculation section 23, and in calculation 823, the magnitude of the indicated index and the index at the current point are calculated. If the specified index is larger, the length of the rod recorded in the storage unit 25 is calculated, and the optical pickup unit 21 is moved by the distance corresponding to the length of the rod via the optical pickup drive control unit 24. Proceed. If the designated index is smaller, the optical pink-up section 21 is returned in the same way.

この繰り返しを行なうことによって光ピツクアップ部2
1を指示されたインデックスの点に移動させることがで
きる。
By repeating this process, the optical pickup section 2
1 can be moved to the point at the indicated index.

以上の様に本実施例によれば、光ピツクアップを移動さ
せる距離を一定としないことにより早く指示されたイン
デックスのエラーを判断でき、速く指示されたインデッ
クスの位置に光ピツクアップを移動させることができる
As described above, according to this embodiment, by making the distance over which the optical pickup is moved not constant, it is possible to quickly determine an error in the specified index, and it is possible to quickly move the optical pickup to the position of the specified index. .

なお本実施例の演算部をマイクロコンピュータ−構成す
ることもできる。
Note that the arithmetic unit of this embodiment can also be configured as a microcomputer.

発明の効果 本発明は指示されたインデックスを検出するのに演算部
を用いて一定でない光ピツクアップ部の移動を行なわせ
ることにより、正確でかつ速いインデックス検出をする
ことができるものである。
Effects of the Invention According to the present invention, an arithmetic unit is used to detect a specified index, and the optical pickup unit is moved non-uniformly, thereby making it possible to detect an index accurately and quickly.

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

第1図は従来のインデックス検出装置のブロック図、第
2図は本発明の一実施例におけるインデックス検出装置
のブロック図である。 11・・・・光ピツクアップ部、12 ・信号復調部、
13 ・・・演算部、14・・・光ピツクアップ駆動制
御部、21・・・・・光ピツクアップ部、22・ ・信
号復調部、23・・・演算部、24 ・・光ピツクアッ
プ駆動制御部、25・・・記憶部。
FIG. 1 is a block diagram of a conventional index detection device, and FIG. 2 is a block diagram of an index detection device according to an embodiment of the present invention. 11... Optical pickup unit, 12 - Signal demodulation unit,
13... Arithmetic unit, 14... Optical pickup drive control unit, 21... Optical pickup unit, 22... Signal demodulation unit, 23... Arithmetic unit, 24... Optical pickup drive control unit, 25...Storage section.

Claims (1)

【特許請求の範囲】[Claims] ディジタルオーディオディスクに記録された信号を電気
信号に変換する光ビワ2フ11部と、その光ピツクアッ
プ部を駆動制御する光ピツクアップ駆動制御部と、上記
光ピツクアップ部で得られた信号を復調する信号復調部
と、その信号復調部で復調された信号のうちサブコード
の演算を行なう演算部と、この演算部で演算された結果
を記憶しておく記憶部とを備えたことを特徴とするイン
デックス検出装置。
An optical pickup drive controller 11 that converts signals recorded on a digital audio disk into electrical signals, an optical pickup drive control section that drives and controls the optical pickup section, and a signal that demodulates the signal obtained by the optical pickup section. An index comprising: a demodulation section; a calculation section for calculating a subcode of the signal demodulated by the signal demodulation section; and a storage section for storing the results calculated by the calculation section. Detection device.
JP10885784A 1984-05-29 1984-05-29 Index detecting device Granted JPS60253026A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP10885784A JPS60253026A (en) 1984-05-29 1984-05-29 Index detecting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP10885784A JPS60253026A (en) 1984-05-29 1984-05-29 Index detecting device

Publications (2)

Publication Number Publication Date
JPS60253026A true JPS60253026A (en) 1985-12-13
JPH0552571B2 JPH0552571B2 (en) 1993-08-05

Family

ID=14495353

Family Applications (1)

Application Number Title Priority Date Filing Date
JP10885784A Granted JPS60253026A (en) 1984-05-29 1984-05-29 Index detecting device

Country Status (1)

Country Link
JP (1) JPS60253026A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7106749B1 (en) 1999-11-10 2006-09-12 Nds Limited System for data stream processing
US7756201B2 (en) 2001-07-23 2010-07-13 Nds Limited System for random access to content

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS58108857A (en) * 1981-12-23 1983-06-29 Fujitsu Ltd Overcurrent protecting circuit
JPS58171730A (en) * 1982-03-31 1983-10-08 Sony Corp Disc reproducing device

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS58108857A (en) * 1981-12-23 1983-06-29 Fujitsu Ltd Overcurrent protecting circuit
JPS58171730A (en) * 1982-03-31 1983-10-08 Sony Corp Disc reproducing device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7106749B1 (en) 1999-11-10 2006-09-12 Nds Limited System for data stream processing
US7580416B2 (en) 1999-11-10 2009-08-25 Nds Limited System for data stream processing
US7756201B2 (en) 2001-07-23 2010-07-13 Nds Limited System for random access to content

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Publication number Publication date
JPH0552571B2 (en) 1993-08-05

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