JPH09163173A - Cathode ray tube drive circuit - Google Patents

Cathode ray tube drive circuit

Info

Publication number
JPH09163173A
JPH09163173A JP31417295A JP31417295A JPH09163173A JP H09163173 A JPH09163173 A JP H09163173A JP 31417295 A JP31417295 A JP 31417295A JP 31417295 A JP31417295 A JP 31417295A JP H09163173 A JPH09163173 A JP H09163173A
Authority
JP
Japan
Prior art keywords
input terminal
video signal
circuit
cathode
voltage
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
JP31417295A
Other languages
Japanese (ja)
Inventor
Yoshio Nishizawa
義男 西澤
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 JP31417295A priority Critical patent/JPH09163173A/en
Publication of JPH09163173A publication Critical patent/JPH09163173A/en
Pending legal-status Critical Current

Links

Landscapes

  • Details Of Television Scanning (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a CRT drive circuit having a spot killer circuit that does not affect stable spot killer operation when a power switch is turned off and the on-screen output time when the power switch is momentarily turned on after turning-off. SOLUTION: A 1st grid G1 of a CRT 1 connects to ground and a diode 8 is connected between a power supply voltage input terminal 3 and a power terminal of a video signal amplifier circuit 4 so that the diode is conductive when the power supply voltage input terminal 3 is positive. Then the cathode of the diode 8 is connected to ground via a capacitor 9 a video signal input terminal 5 and an input terminal of the video signal amplifier circuit 4 are connected via a switch circuit 6 and a control terminal 61 of the switch circuit 6 is connected to the control signal input terminal 7.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【発明の属する技術分野】本発明は、テレビジョン受像
機やCRTディスプレイモニターの陰極線管駆動回路に
関するもので、電源切断時に陰極線管(以下CRTとい
う)の走査が停止したとき、CRTの中央部にビームが
集中して流れることによりCRTの蛍光体が焼損(スポ
ット焼け)することを防止するスッポトキラー回路に特
徴を有するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a cathode ray tube driving circuit for a television receiver or a CRT display monitor, and when the scanning of the cathode ray tube (hereinafter referred to as CRT) is stopped when the power is cut off, the central portion of the CRT is displayed. It is characterized by a spot killer circuit that prevents the phosphor of the CRT from being burnt out (spot burn) due to the concentrated flow of the beam.

【0002】[0002]

【従来の技術】従来より、入力された映像信号を増幅し
CRTのカソードに供給することで、CRTのカソード
から電子ビームを照射しアノード側のスクリーンに映像
を映し出すディスプレイ装置においては、電源スイッチ
をオフ状態にした瞬間にCRTのスポット焼けを防止す
る手段として、電源オン時にコンデンサーを充電するこ
とで蓄えられた電荷を利用し、電源オフ時にCRTの第
1グリッドを負電位に保持することで、CRTのカソー
ドから照射される電子ビームを抑制するスポットキラー
回路を有するCRT駆動回路がある。その概略を図3に
示す。
2. Description of the Related Art Conventionally, in a display device which amplifies an input video signal and supplies it to a cathode of a CRT so that an electron beam is emitted from the cathode of the CRT and an image is displayed on a screen on an anode side, a power switch is used. As a means to prevent spot burning of the CRT at the moment of turning it off, the charge stored by charging the capacitor when the power is turned on is used, and the first grid of the CRT is held at a negative potential when the power is turned off. There is a CRT drive circuit that has a spot killer circuit that suppresses the electron beam emitted from the cathode of the CRT. The outline is shown in FIG.

【0003】図3において、NPNトランジスタ41の
ベースは映像信号入力端子5に接続され、エミッタは抵
抗42を介して接地され、コレクタはCRT1のカソー
ドKに接続されるとともに抵抗43を介して電源電圧入
力端子3に接続されることで構成された映像信号増幅回
路4と、前記CRT1の第1グリッドG1を、並列に接
続されたダイオード21と放電抵抗22を介して接地す
るとともに直列に接続されたコンデンサー23と電流制
限抵抗24を介して前記電源電圧入力端子3に接続され
ることで構成されたスポットキラー回路2が付加され、
CRT駆動回路が構成されている。
In FIG. 3, the base of the NPN transistor 41 is connected to the video signal input terminal 5, the emitter is grounded via the resistor 42, the collector is connected to the cathode K of the CRT 1 and the power source voltage is supplied via the resistor 43. The video signal amplifier circuit 4 configured by being connected to the input terminal 3 and the first grid G1 of the CRT 1 are grounded via the diode 21 and the discharge resistor 22 which are connected in parallel and are connected in series. A spot killer circuit 2 configured by being connected to the power supply voltage input terminal 3 via a capacitor 23 and a current limiting resistor 24 is added,
A CRT drive circuit is configured.

【0004】図4に、図3の各端子の動作波形図を示
す。同図中、aは前記電源電圧入力端子3の、bは前記
CRT1のカソードKの、cは前記のCRT1の第1グ
リッドG1の電圧波形である。ここで、電源スイッチが
オン状態からオフ状態になると、図4に示すように、前
記電源電圧入力端子3に供給された直流電圧aは零電位
に移行する。この時、前記CRT1のカソードKの電圧
bは、前記の直流電圧aより負荷抵抗43で生じる電圧
降下分だけ低い電圧で零電位に移行する。また、前記第
1グリッドG1の電圧cは、前記のスポットキラー回路
2が動作することで負電圧に移行し、所定の時間を経て
徐々に零電圧になるものである。
FIG. 4 shows an operation waveform diagram of each terminal in FIG. In the figure, a is the voltage waveform of the power supply voltage input terminal 3, b is the cathode K of the CRT1, and c is the voltage waveform of the first grid G1 of the CRT1. Here, when the power switch is turned from the ON state to the OFF state, the DC voltage a supplied to the power source voltage input terminal 3 shifts to zero potential, as shown in FIG. At this time, the voltage b of the cathode K of the CRT 1 shifts to zero potential at a voltage lower than the DC voltage a by the voltage drop generated in the load resistor 43. The voltage c of the first grid G1 shifts to a negative voltage by the operation of the spot killer circuit 2 and gradually becomes zero voltage after a predetermined time.

【0005】従って、前記CRT1のカソードKの余熱
により発生した電子ビームは、前記CRT1のカソード
Kと第1グリッドG1の電圧差によってカットオフさ
れ、前記CRT1のアノードに到達することが出来ない
ため、スポット焼けを防止することが出来るものであ
る。
Therefore, the electron beam generated by the residual heat of the cathode K of the CRT1 is cut off due to the voltage difference between the cathode K of the CRT1 and the first grid G1 and cannot reach the anode of the CRT1. It is possible to prevent spot burning.

【0006】[0006]

【発明が解決しようとする課題】このような従来のスポ
ットキラー回路では、CRTの第1グリッドG1の電圧
cが負電圧から零電圧に復帰するのに時間を要するため
に、電源スイッチがオフ後瞬時に再度オンした場合は、
スクリーンに出画するまでの時間が長くなるという欠点
があった。
In such a conventional spot killer circuit, since it takes time for the voltage c of the first grid G1 of the CRT to return from a negative voltage to zero voltage, after the power switch is turned off. If you turn it on again instantly,
There is a drawback that it takes a long time to display on the screen.

【0007】[0007]

【課題を解決するための手段】本発明のCRT駆動回路
は、上記の課題を解決するために、電源電圧入力端子と
映像信号増幅回路の間に、ダイオードを電源電圧入力端
子側が正電圧になと導通する方向に付加し、前記ダイオ
ードの映像信号増幅回路側をコンデンサーを介して接地
するとともに、映像信号入力端子と前記映像信号増幅回
路の入力端子間にスイッチ回路を付加し、電源スイッチ
がオフ状態になった時に前記スイッチ回路を開く手段を
設け、前記映像信号増幅回路の増幅用トランジスタをカ
ットオフさせるものである。
In order to solve the above problems, the CRT drive circuit of the present invention has a diode between the power supply voltage input terminal and the video signal amplifier circuit, in which the power supply voltage input terminal side has a positive voltage. And the video signal amplifier circuit side of the diode is grounded via a capacitor, and a switch circuit is added between the video signal input terminal and the input terminal of the video signal amplifier circuit to turn off the power switch. A means for opening the switch circuit when the state is brought is provided to cut off the amplification transistor of the video signal amplification circuit.

【0008】上記の構成により、電源スイッチがオフ状
態になった時、増幅用トランジスタをカットオフさせ、
映像信号増幅回路側に付加したコンデンサーの充電電圧
がCRTのカソードに印加されるため、CRTのカソー
ド電圧は大ならしめられ保持され、CRTのカソードの
余熱で発生した電子ビームをカットオフすることが出来
る。
With the above structure, when the power switch is turned off, the amplifying transistor is cut off,
Since the charging voltage of the capacitor added to the video signal amplifier circuit side is applied to the cathode of the CRT, the cathode voltage of the CRT is kept large, and the electron beam generated by the residual heat of the cathode of the CRT can be cut off. I can.

【0009】[0009]

【発明の実施の形態】本発明の請求項1に記載のCRT
駆動回路は、 カソードに供給された信号を走査してス
クリーンに映し出す陰極線管と、映像信号入力端子に入
力された信号を増幅して前記陰極線管のカソードに供給
する映像信号増幅回路からなる陰極線管駆動回路におい
て、電源電圧入力端子と前記映像信号増幅回路の電源端
子間にダイオードを前記電源電圧入力端子が正電圧にな
ると導通する方向に接続するとともに、前記ダイオード
のカソード側をコンデンサーを介して接地し、前記映像
信号入力端子と前記映像信号増幅回路の間にスイッチ回
路を付加し、前記電源スイッチのオフ時に、前記スイッ
チ回路を開き前記映像信号増幅回路をカットオフさせる
ことで、前記陰極線管のカソードと第一グリッド間の電
圧差を大ならしめることを特徴とするスポットキラー回
路を有するものであり、電源スイッチがオフ状態になっ
た時、増幅用トランジスタをカットオフさせ、映像信号
増幅回路側に付加したコンデンサーの充電電圧がCRT
のカソードに印加されるため、CRTのカソード電圧は
大ならしめられ保持され、CRTのカソードの余熱で発
生した電子ビームをカットオフすることが出来る。
DETAILED DESCRIPTION OF THE INVENTION A CRT according to claim 1 of the present invention.
The drive circuit is a cathode ray tube including a cathode ray tube that scans the signal supplied to the cathode and displays it on the screen, and a video signal amplifier circuit that amplifies the signal input to the video signal input terminal and supplies it to the cathode of the cathode ray tube. In the drive circuit, a diode is connected between the power supply voltage input terminal and the power supply terminal of the video signal amplifier circuit in a direction in which it conducts when the power supply voltage input terminal becomes a positive voltage, and the cathode side of the diode is grounded via a capacitor. Then, a switch circuit is added between the video signal input terminal and the video signal amplifier circuit, and when the power switch is turned off, the switch circuit is opened to cut off the video signal amplifier circuit. It has a spot killer circuit characterized by increasing the voltage difference between the cathode and the first grid. When the power switch is turned off, the amplification transistor is cut off, and the charging voltage of the capacitor added to the video signal amplification circuit side becomes CRT.
Since it is applied to the cathode of the CRT, the cathode voltage of the CRT is kept large and held, and the electron beam generated by the residual heat of the cathode of the CRT can be cut off.

【0010】(実施の形態)図1は、本発明のCRT駆
動回路の実施の形態を示すブロック図であり、図3にに
示す従来構成と同一部分には同一符号を付している。異
なる点は、前記CRT1の第1グリッドG1を接地し、
前記の電源電圧入力端子3と前記映像信号増幅回路4を
構成する負荷抵抗43との間にダイオード8を、前記電
源電圧入力端子3側が正電圧になると導通するように接
続し、前記ダイオード8のカソード側をコンデンサー9
を介して接地するとともに、前記映像信号入力端子5と
前記映像信号増幅回路4を構成する前記NPNトランジ
スタ41のベースをスイッチ回路6を介して接続し、前
記のスイッチ回路6の制御端子61は制御信号入力端子
7に接続されるように接続されるよう構成した点にあ
る。
(Embodiment) FIG. 1 is a block diagram showing an embodiment of a CRT drive circuit of the present invention, and the same parts as those of the conventional configuration shown in FIG. 3 are designated by the same reference numerals. The difference is that the first grid G1 of the CRT1 is grounded,
A diode 8 is connected between the power supply voltage input terminal 3 and a load resistor 43 forming the video signal amplifier circuit 4 so as to conduct when the power supply voltage input terminal 3 side becomes a positive voltage, and the diode 8 Capacitor 9 on the cathode side
And the video signal input terminal 5 and the base of the NPN transistor 41 forming the video signal amplifier circuit 4 are connected via a switch circuit 6, and the control terminal 61 of the switch circuit 6 is controlled. It is configured to be connected to the signal input terminal 7.

【0011】上記の構成において、電源スイッチがオン
状態になると、前記電源電圧入力端子3及び前記の映像
信号入力端子5には、それぞれ予め定められた所定の直
流電圧と映像信号が入力される。従って、コンデンサー
9は、入力された直流電圧とほぼ同じ電圧に充電され
る。
In the above structure, when the power switch is turned on, a predetermined direct current voltage and a video signal are input to the power supply voltage input terminal 3 and the video signal input terminal 5, respectively. Therefore, the capacitor 9 is charged to almost the same voltage as the input DC voltage.

【0012】また、前記のスイッチ回路6は、前記の制
御信号入力端子7よりの制御信号によりスイッチが閉じ
るよう制御されている。次に、電源スイッチがオフ状態
になると、前記の電源電圧入力端子3と前記の映像信号
入力端子5の電圧は、所定の電圧から零電圧に移行す
る。この時、前記のスイッチ回路6は、前記の制御信号
入力端子7よりの制御信号によりスイッチが開くよう制
御せしめられている。従って、前記NPNトランジスタ
41はカットオフし、前記CRT1のカソードKは前記
コンデンサー9の充電電圧でバイアスされることにな
る。
The switch circuit 6 is controlled so that the switch is closed by a control signal from the control signal input terminal 7. Next, when the power switch is turned off, the voltages of the power supply voltage input terminal 3 and the video signal input terminal 5 shift from a predetermined voltage to zero voltage. At this time, the switch circuit 6 is controlled to open by a control signal from the control signal input terminal 7. Therefore, the NPN transistor 41 is cut off, and the cathode K of the CRT 1 is biased by the charging voltage of the capacitor 9.

【0013】図2に、図1の各端子の動作波形図を示
す。同図中、aは前記の電源電圧入力端子3の、dは前
記CRT1のカソードKの電圧波形である。ここで、電
源スイッチがオン状態からオフ状態になると、図2に示
すように、前記の電源電圧入力端子3に供給された直流
電圧aは零電圧に移行し、前記CRT1のカソードKの
電圧dは、前記のスイッチ回路8が開くことで前記NP
Nトランジスタ41がカットオフするため、前記コンデ
ンサー9の充電電圧が印加される。また、電源スイッチ
がオフ後瞬時にオンされても、直流電圧aは立ち上った
時点では、前記の電圧dも所定の電圧に復帰することが
出来る。
FIG. 2 shows an operation waveform diagram of each terminal in FIG. In the figure, a is a voltage waveform of the power supply voltage input terminal 3, and d is a voltage waveform of the cathode K of the CRT 1. Here, when the power switch is switched from the ON state to the OFF state, as shown in FIG. 2, the DC voltage a supplied to the power source voltage input terminal 3 shifts to zero voltage, and the voltage d of the cathode K of the CRT 1 is changed. Is opened when the switch circuit 8 is opened.
Since the N-transistor 41 is cut off, the charging voltage of the capacitor 9 is applied. Further, even if the power switch is instantly turned on after being turned off, the voltage d can be restored to a predetermined voltage when the DC voltage a rises.

【0014】[0014]

【発明の効果】以上のように本発明の構成によれば、電
源スイッチがオフ状態になったとき、前記CRT1のカ
ソードKと第1グリッドG1の間に、CRTのカットオ
フ電圧より大きな電圧差を確保することが出来るため、
安定したスポットキラー動作が可能になる。また、電源
スイッチがオフ後瞬時にオンされても、直流電圧aが立
ち上った時点では、前記CRT1のカソードKの電圧d
も所定の電圧に復帰することが出来るため、出画時間も
短くでき実用上きわめて有効である。
As described above, according to the configuration of the present invention, when the power switch is turned off, the voltage difference between the cathode K of the CRT 1 and the first grid G1 is larger than the cutoff voltage of the CRT. Can be secured,
Enables stable spot killer operation. Even if the power switch is instantly turned on after being turned off, when the DC voltage a rises, the voltage d of the cathode K of the CRT 1 is increased.
Since it can return to a predetermined voltage, the image output time can be shortened, which is extremely effective in practice.

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

【図1】本発明の実施の形態におけるCRT駆動回路の
要部を示すブロック図
FIG. 1 is a block diagram showing a main part of a CRT drive circuit according to an embodiment of the present invention.

【図2】同実施の形態におけるCRT駆動回路の要部の
動作波形図
FIG. 2 is an operation waveform diagram of a main part of the CRT drive circuit according to the same embodiment.

【図3】従来のCRT駆動回路の要部を示すブロック図FIG. 3 is a block diagram showing a main part of a conventional CRT drive circuit.

【図4】従来のCRT駆動回路の要部の動作波形図FIG. 4 is an operation waveform diagram of a main part of a conventional CRT drive circuit.

【符号の説明】[Explanation of symbols]

1 CRT 2 スポットキラー回路 3 電源電圧入力端子 4 映像信号増幅回路 5 映像信号入力端子 6 スイッチ回路 7 制御信号入力端子 8 ダイオード 9 コンデンサー 21 ダイオード 22 放電抵抗 23 スポットキラー用コンデンサー 24 電流制限抵抗 41 NPNトランジスタ 42 抵抗 43 負荷抵抗 1 CRT 2 Spot killer circuit 3 Power supply voltage input terminal 4 Video signal amplification circuit 5 Video signal input terminal 6 Switch circuit 7 Control signal input terminal 8 Diode 9 Capacitor 21 Diode 22 Discharge resistance 23 Spot killer capacitor 24 Current limiting resistance 41 NPN transistor 42 resistance 43 load resistance

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】カソードに供給された信号を走査してスク
リーンに映し出す陰極線管と、映像信号入力端子に入力
された信号を増幅して前記陰極線管のカソードに供給す
る映像信号増幅回路からなる陰極線管駆動回路におい
て、電源電圧入力端子と前記映像信号増幅回路の電源端
子間にダイオードを前記電源電圧入力端子が正電圧にな
ると導通する方向に接続するとともに、前記ダイオード
のカソード側をコンデンサーを介して接地し、前記映像
信号入力端子と前記映像信号増幅回路の間にスイッチ回
路を付加し、前記電源スイッチのオフ時に、前記スイッ
チ回路を開き前記映像信号増幅回路をカットオフさせる
ことで、前記陰極線管のカソードと第一グリッド間の電
圧差を大ならしめることを特徴とするスポットキラー回
路を有した陰極線管駆動回路。
1. A cathode ray tube comprising a cathode ray tube for scanning a signal supplied to a cathode and displaying it on a screen, and a video signal amplifier circuit for amplifying a signal inputted to a video signal input terminal and supplying the amplified signal to a cathode of the cathode ray tube. In the tube drive circuit, a diode is connected between a power supply voltage input terminal and a power supply terminal of the video signal amplifier circuit in a direction in which the diode becomes conductive when the power supply voltage input terminal becomes a positive voltage, and the cathode side of the diode is connected via a capacitor. The cathode ray tube is grounded, a switch circuit is added between the video signal input terminal and the video signal amplifier circuit, and when the power switch is turned off, the switch circuit is opened to cut off the video signal amplifier circuit. Cathode ray tube with a spot killer circuit characterized by increasing the voltage difference between the cathode and the first grid Dynamic circuit.
JP31417295A 1995-12-01 1995-12-01 Cathode ray tube drive circuit Pending JPH09163173A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP31417295A JPH09163173A (en) 1995-12-01 1995-12-01 Cathode ray tube drive circuit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP31417295A JPH09163173A (en) 1995-12-01 1995-12-01 Cathode ray tube drive circuit

Publications (1)

Publication Number Publication Date
JPH09163173A true JPH09163173A (en) 1997-06-20

Family

ID=18050123

Family Applications (1)

Application Number Title Priority Date Filing Date
JP31417295A Pending JPH09163173A (en) 1995-12-01 1995-12-01 Cathode ray tube drive circuit

Country Status (1)

Country Link
JP (1) JPH09163173A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100339356B1 (en) * 1999-11-08 2002-06-03 구자홍 A Circuit for protecting arc of a display device
KR20030019157A (en) * 2001-08-31 2003-03-06 톰슨 라이센싱 에스.에이. Cathode ray tube phosphor protection

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100339356B1 (en) * 1999-11-08 2002-06-03 구자홍 A Circuit for protecting arc of a display device
KR20030019157A (en) * 2001-08-31 2003-03-06 톰슨 라이센싱 에스.에이. Cathode ray tube phosphor protection

Similar Documents

Publication Publication Date Title
US4045742A (en) High voltage shutdown circuit responsive to excessive beam current and high voltage
JPH05110886A (en) Grid-bias controlling method for image tube
JPH0746424A (en) Cathode-ray tube screen protective circuit
US5920339A (en) Spot killer circuit for a cathode ray tube
JPH04229771A (en) Video display device
JPH09163173A (en) Cathode ray tube drive circuit
JPH09154030A (en) Crt driving circuit
US6285143B1 (en) Video display protection circuit
KR100689973B1 (en) Television apparatus with supplementary kinescope blanking and spot burn protection circuitry
US5463289A (en) First grid muting circuit
US6137245A (en) Circuit for generating control grid voltage for cathode ray tube
JP3044858U (en) CRT drive circuit
JPH0537579Y2 (en)
KR960006107Y1 (en) Muting circuit
JP2828650B2 (en) Video output circuit of television receiver
KR100648385B1 (en) Video display protection circuit
JP2835080B2 (en) Video amplification circuit
KR100244775B1 (en) A circuit for compensating rgb signals in case of abl in a monitor
KR100285934B1 (en) Spot killer circuit of a video display appliance
JP2002077663A (en) Crt display device
JPH0998304A (en) Spot killer circuit
KR100466325B1 (en) Unstable screen removal device
JPH05347718A (en) Spot killer circuit
JPS63158974A (en) Spot killer circuit
KR200175684Y1 (en) Spot killer circuit of display device