JP3734908B2 - Abnormal operation detection circuit for horizontal deflection circuit - Google Patents

Abnormal operation detection circuit for horizontal deflection circuit Download PDF

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Publication number
JP3734908B2
JP3734908B2 JP202497A JP202497A JP3734908B2 JP 3734908 B2 JP3734908 B2 JP 3734908B2 JP 202497 A JP202497 A JP 202497A JP 202497 A JP202497 A JP 202497A JP 3734908 B2 JP3734908 B2 JP 3734908B2
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Japan
Prior art keywords
horizontal deflection
circuit
pulse
microcomputer
output
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.)
Expired - Fee Related
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JP202497A
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Japanese (ja)
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JPH10200779A (en
Inventor
丞 三浦
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 Corp
Panasonic Holdings Corp
Original Assignee
Panasonic Corp
Matsushita Electric Industrial Co Ltd
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Priority to JP202497A priority Critical patent/JP3734908B2/en
Publication of JPH10200779A publication Critical patent/JPH10200779A/en
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Description

【0001】
【発明の属する技術分野】
本発明は、CRTを用い、マイコンで制御されるディスプレイ装置における異常動作検出回路に関するものである。
【0002】
【従来の技術】
従来の技術を図3を用いて説明する。図3において、符号4は水平偏向出力回路、5は水平偏向パルス検出、整流回路、6は遅延用コンデンサーであり、水平偏向出力回路4で発生する水平偏向パルスを、水平偏向パルス検出、整流回路5にて分割整流し、この電圧をマイコンにフィードバックする事で、マイコンが水平偏向回路の異常の有無を認識できるようにしている。
【0003】
【発明が解決しようとする課題】
この様に水平偏向パルスの有無を検出する方法では、電源投入後マイコンがリセットされてから制御を開始しチョッパー電源から安定した電圧が出力されて、規定値の水平偏向パルスが得られる迄の間、また、水平偏向周波数切り替え直後チョッパー電源が切り替え前の電圧から切り替え後の電圧に変動する過渡状態にある間、検出回路からの出力電圧は不安定状態であり、図3中の遅延コンデンサー6等で誤動作防止をしているが、連続的な電源のONーOFFの繰り返し等の不安定状態が継続するような場合マイコンでは、水平偏向回路の異常と誤認識してしまうという問題があった。
【0004】
【課題を解決するための手段】
上記課題を解決するために、本発明の水平偏向回路の異常動作検出回路は、マイコンにて制御されるチョッパー電源の出力を水平偏向回路の電源電圧とする方式のマルチシンクディスプレイ装置において、水平偏向パルスを整流してDC電圧を出力する水平偏向パルス検出回路と、前記マイコンに設けられた入力端子と、電源投入後及び水平偏向周波数切り替え直後から前記チョッパー電源から出力される電圧が安定する迄の期間に前記マイコンから誤動作防止パルスを出力する誤動作防止パルス出力端子と、前記水平偏向パルス検出回路からのDC電圧と前記マイコンの誤動作防止パルス出力端子から出力される誤動作防止パルスとの論理和をとる論理和回路とを備え、前記論理和回路から出力される信号を前記入力端子に入力して前記マイコンへフィードバックして前記水平偏向パルス検出回路からの出力電圧の異常を検出するとともに、電源投入時及び水平偏向周波数切り替え時に前記マイコンから出力される誤動作防止パルスにより、前記誤動作防止パルスが出力されている期間は前記水平偏向回路が正常に動作しているときの信号が前記論理和回路から出力されるようにして、前記水平偏向パルス検出回路からの出力電圧が不安定な状態において検出された異常動作検出電圧が前記マイコンへフィードバックされないようにしたことを特徴とするものである。
【0005】
本発明によれば、水平偏向回路が不安定な状態にある、電源投入直後及び、水平周波数切り替え直後でも誤動作しない水平偏向回路の異常動作検出回路を提供できる。
【0006】
【発明の実施の形態】
本発明の請求項1に記載の発明は、マイコンにて制御されるチョッパー電源の出力を水平偏向回路の電源電圧とする方式のマルチシンクディスプレイ装置において、水平偏向パルス検出回路からのDC出力電圧と、前記マイコンからの誤動作防止パルスとの論理和をとることで、誤動作なく水平偏向回路の異常を検出することを特徴としたものであり、電源投入直後及び、水平偏向周波数切り替え直後、水平偏向回路が不安定動作になったときにおいても、誤動作防止パルスにより異常動作と誤認識しないことを実現しうるものである。
【0007】
つぎに、本発明の請求項2に記載の発明は、水平偏向回路の水平偏向パルスを検出する回路と、前記検出回路の検出パルスを整流する回路により、水平偏向回路が正常に動作しているときにDC電圧を出力する水平偏向パルス検出回路と、電源投入直後及び、水平偏向周波数切り替え直後の、水平偏向パルスが安定して出力する迄の一定期間、誤動作防止パルスを出力するマイコンと、前記水平偏向パルス検出回路の出力電圧と、前記マイコンからの誤動作防止パルスとの論理和をとり、この出力電圧をマイコンにフィードバックするAND回路とにより、水平偏向回路の異常を誤動作なく検出する事を特徴としたものであり、電源投入直後及び、水平偏向周波数切り替え直後、水平偏向回路が不安定動作になったときにおいても、誤動作防止パルスにより異常動作と誤認識しないことを実現しうるものである。
【0008】
【実施例】
以下に、本発明の一実施例における水平偏向回路の異常動作検出回路について図1、図2を用いて説明する。
【0009】
(実施例)
図1は本発明の一実施例における水平偏向回路の異常動作検出回路の回路図である。
【0010】
図1において、符号1は水平偏向出力回路、2は水平偏向パルス検出、整流回路、3はAND回路であり、2の水平偏向パルス検出、整流回路の出力と、マイコンからの誤動作防止パルスとの論理和を3のAND回路で、水平偏向回路正常時「L」、異常時「H」として出力し、マイコンにフィードバックしている。
【0011】
図1の各部の電圧波形図を示す図2において、V1はチョッパー回路の出力電圧即ち、水平偏向回路の電源電圧、V2は水平偏向パルス、V3は水平偏向パルス検出、整流回路の出力電圧、V4はマイコンからの誤動作防止パルス、V5はマイコンへフィードバックされる異常動作検出波形である。
【0012】
まず、電源投入T0後マイコンがT1にてリセットされてから、水平偏向パルスが規定値に達し、水平偏向パルス検出、整流回路の出力V3が安定する迄のT2の期間、マイコンから誤動作防止パルスV4は[H]を出力し、AND回路3の出力を強制的に「L」とし、T2の期間は実質上水平偏向回路異常検出を行わない様にする。
【0013】
次に、水平偏向回路が十分に安定してからは、誤動作防止パルスV4は[L]を出力し、AND回路3の出力は水平偏向パルス検出、整流回路2に従うようになり、正常時は[L]を異常時は[H]を出力し、マイコンに異常有無の情報をフィードバックする。
【0014】
尚、誤動作防止パルスV4は、電源投入直後や、水平偏向周波数切り替え直後等のSET動作不安定時にマイコンから制御信号を出し、動作を制御する、VIDEO OFF等の制御信号を流用する事でマイコンの機能追加なく実現することが可能となる。
【0015】
【発明の効果】
このように、本発明の水平偏向回路の異常動作検出回路によれば、水平偏向回路の異常を誤動作なく行えるので、サービスマンが、瞬時に異常箇所をより詳細に特定するシステムを構築する事が可能となり、製品のサービス性を飛躍的に向上させることが可能となる。
【図面の簡単な説明】
【図1】本発明の一実施例における水平偏向回路の異常動作検出回路の回路図
【図2】図1の各部の電圧波形図
【図3】従来の水平偏向回路の異常動作検出回路の回路図
【符号の説明】
1 水平偏向出力回路
2 水平偏向パルス検出、整流回路
3 AND回路
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to an abnormal operation detection circuit in a display device controlled by a microcomputer using a CRT.
[0002]
[Prior art]
A conventional technique will be described with reference to FIG. In FIG. 3, reference numeral 4 denotes a horizontal deflection output circuit, 5 denotes a horizontal deflection pulse detection and rectification circuit, and 6 denotes a delay capacitor. A horizontal deflection pulse generated by the horizontal deflection output circuit 4 is detected as a horizontal deflection pulse detection and rectification circuit. By dividing and rectifying at 5 and feeding back this voltage to the microcomputer, the microcomputer can recognize whether there is an abnormality in the horizontal deflection circuit.
[0003]
[Problems to be solved by the invention]
In this way, in the method of detecting the presence or absence of a horizontal deflection pulse, the control is started after the microcomputer is reset after the power is turned on until the stable voltage is output from the chopper power source until the horizontal deflection pulse of the specified value is obtained. In addition, while the chopper power supply is in a transient state in which the voltage before switching is changed from the voltage before switching to the voltage after switching immediately after the horizontal deflection frequency is switched, the output voltage from the detection circuit is unstable, and the delay capacitor 6 in FIG. In the case where an unstable state such as continuous ON / OFF of the power supply continues, the microcomputer erroneously recognizes that the horizontal deflection circuit is abnormal.
[0004]
[Means for Solving the Problems]
In order to solve the above problems, an abnormal operation detection circuit for a horizontal deflection circuit according to the present invention includes a horizontal deflection circuit in a multi-sink display device using a chopper power supply output controlled by a microcomputer as a power supply voltage of the horizontal deflection circuit. A horizontal deflection pulse detection circuit that rectifies pulses and outputs a DC voltage, an input terminal provided in the microcomputer , and after the power is turned on and immediately after the horizontal deflection frequency is switched until the voltage output from the chopper power source is stabilized. A logical sum of a malfunction prevention pulse output terminal for outputting a malfunction prevention pulse from the microcomputer during a period, a DC voltage from the horizontal deflection pulse detection circuit and a malfunction prevention pulse output from the malfunction prevention pulse output terminal of the microcomputer is taken. and a logical sum circuit, the Ma and receives the signal outputted from the OR circuit to the input terminal Together with feedback to Con detecting an abnormality in the output voltage from the horizontal deflection pulse detection circuit, the malfunction prevention pulse output from the microcomputer during and at the horizontal deflection frequency switching power on, the malfunction prevention pulse is outputted periods are is as signal when the horizontal deflection circuit is operating normally is output from the OR circuit, the output voltage from the horizontal deflection pulse detection circuit is detected in the unstable state The abnormal operation detection voltage is not fed back to the microcomputer.
[0005]
According to the present invention, it is possible to provide an abnormal operation detection circuit for a horizontal deflection circuit in which the horizontal deflection circuit is in an unstable state, and does not malfunction even immediately after power-on and immediately after switching the horizontal frequency.
[0006]
DETAILED DESCRIPTION OF THE INVENTION
According to a first aspect of the present invention, there is provided a multi-sync display device using a chopper power supply output controlled by a microcomputer as a power supply voltage of a horizontal deflection circuit, and a DC output voltage from a horizontal deflection pulse detection circuit. The horizontal deflection circuit is characterized by detecting an abnormality of the horizontal deflection circuit without malfunction by taking a logical sum with a malfunction prevention pulse from the microcomputer, and immediately after turning on the power and immediately after switching the horizontal deflection frequency. Even when the operation becomes unstable, it can be realized that the erroneous operation prevention pulse does not erroneously recognize the abnormal operation.
[0007]
Next, in the invention according to claim 2 of the present invention, the horizontal deflection circuit is normally operated by the circuit for detecting the horizontal deflection pulse of the horizontal deflection circuit and the circuit for rectifying the detection pulse of the detection circuit. A horizontal deflection pulse detection circuit that sometimes outputs a DC voltage, a microcomputer that outputs a malfunction prevention pulse for a certain period immediately after the power is turned on and immediately after the horizontal deflection frequency is switched until the horizontal deflection pulse is stably output, A logical sum of the output voltage of the horizontal deflection pulse detection circuit and the malfunction prevention pulse from the microcomputer is detected, and an abnormality of the horizontal deflection circuit is detected without malfunction by an AND circuit that feeds back the output voltage to the microcomputer. Even if the horizontal deflection circuit becomes unstable immediately after turning on the power and immediately after switching the horizontal deflection frequency, malfunction prevention is possible. Those which can realize that not erroneously recognized as abnormal operation by a pulse.
[0008]
【Example】
An abnormal operation detection circuit for a horizontal deflection circuit according to an embodiment of the present invention will be described below with reference to FIGS.
[0009]
(Example)
FIG. 1 is a circuit diagram of an abnormal operation detection circuit of a horizontal deflection circuit in one embodiment of the present invention.
[0010]
In FIG. 1, reference numeral 1 denotes a horizontal deflection output circuit, 2 denotes a horizontal deflection pulse detection, rectification circuit, and 3 denotes an AND circuit, which includes two horizontal deflection pulse detection, output from the rectification circuit, and a malfunction prevention pulse from the microcomputer. The logical sum is output as “L” when the horizontal deflection circuit is normal and “H” when the horizontal deflection circuit is normal, and is fed back to the microcomputer.
[0011]
In FIG. 2 showing the voltage waveform diagram of each part of FIG. 1, V1 is the output voltage of the chopper circuit, that is, the power supply voltage of the horizontal deflection circuit, V2 is the horizontal deflection pulse, V3 is the horizontal deflection pulse detection, the output voltage of the rectifier circuit, V4 Is a malfunction prevention pulse from the microcomputer, and V5 is an abnormal operation detection waveform fed back to the microcomputer.
[0012]
First, after the power is turned on T0, the microcomputer is reset at T1, the horizontal deflection pulse reaches the specified value, and during the period T2 until the horizontal deflection pulse is detected and the output V3 of the rectifying circuit is stabilized, the malfunction prevention pulse V4 is output from the microcomputer. Outputs [H], forcibly sets the output of the AND circuit 3 to “L”, and does not substantially detect the horizontal deflection circuit abnormality during the period T2.
[0013]
Next, after the horizontal deflection circuit is sufficiently stabilized, the malfunction prevention pulse V4 outputs [L], and the output of the AND circuit 3 follows the horizontal deflection pulse detection and rectification circuit 2; When [L] is abnormal, [H] is output, and information on the presence or absence of abnormality is fed back to the microcomputer.
[0014]
The malfunction prevention pulse V4 outputs a control signal from the microcomputer when the SET operation is unstable, such as immediately after turning on the power or immediately after switching the horizontal deflection frequency, and diverts a control signal such as VIDEO OFF to control the operation. This can be realized without adding functions.
[0015]
【The invention's effect】
As described above, according to the abnormal operation detection circuit of the horizontal deflection circuit of the present invention, the abnormality of the horizontal deflection circuit can be performed without malfunction, so that a serviceman can construct a system for instantly specifying the abnormal part in more detail. This makes it possible to dramatically improve the serviceability of the product.
[Brief description of the drawings]
1 is a circuit diagram of an abnormal operation detection circuit of a horizontal deflection circuit in an embodiment of the present invention. FIG. 2 is a voltage waveform diagram of each part of FIG. 1. FIG. 3 is a circuit of an abnormal operation detection circuit of a conventional horizontal deflection circuit. Figure [Explanation of symbols]
1 horizontal deflection output circuit 2 horizontal deflection pulse detection, rectifier circuit 3 AND circuit

Claims (2)

マイコンにて制御されるチョッパー電源の出力を水平偏向回路の電源電圧とする方式のマルチシンクディスプレイ装置において、水平偏向パルスを整流してDC電圧を出力する水平偏向パルス検出回路と、前記マイコンに設けられた入力端子と、電源投入後及び水平偏向周波数切り替え直後から前記チョッパー電源から出力される電圧が安定する迄の期間に前記マイコンから誤動作防止パルスを出力する誤動作防止パルス出力端子と、前記水平偏向パルス検出回路からのDC電圧と前記マイコンの誤動作防止パルス出力端子から出力される誤動作防止パルスとの論理和をとる論理和回路とを備え、前記論理和回路から出力される信号を前記入力端子に入力して前記マイコンへフィードバックして前記水平偏向パルス検出回路からの出力電圧の異常を検出するとともに、電源投入時及び水平偏向周波数切り替え時に前記マイコンから出力される誤動作防止パルスにより、前記誤動作防止パルスが出力されている期間は前記水平偏向回路が正常に動作しているときの信号が前記論理和回路から出力されるようにして、前記水平偏向パルス検出回路からの出力電圧が不安定な状態において検出された異常動作検出電圧が前記マイコンへフィードバックされないようにしたことを特徴とする水平偏向回路の異常動作検出回路。In a multi-sink display device using a chopper power supply output controlled by a microcomputer as a power supply voltage for a horizontal deflection circuit, a horizontal deflection pulse detection circuit for rectifying a horizontal deflection pulse and outputting a DC voltage is provided in the microcomputer. an input terminal which is a lockout pulse output terminal voltage outputted immediately after and the horizontal deflection frequency switching after power from the chopper power source outputs a malfunction prevention pulse from the microcomputer in the period until the stable, the horizontal deflection A logical sum circuit that takes a logical sum of a DC voltage from a pulse detection circuit and a malfunction prevention pulse output from the malfunction prevention pulse output terminal of the microcomputer, and a signal output from the OR circuit is applied to the input terminal The input voltage is fed back to the microcomputer and the output voltage from the horizontal deflection pulse detection circuit is adjusted. Detects the normal, the malfunction prevention pulse output from the microcomputer during and at the horizontal deflection frequency switching power on period in which the malfunction prevention pulse is being output, when the horizontal deflection circuit is operating normally The abnormal operation detection voltage detected when the output voltage from the horizontal deflection pulse detection circuit is unstable is not fed back to the microcomputer. An abnormal operation detection circuit of the horizontal deflection circuit. マイコンにて制御されるチョッパー電源の出力を水平偏向回路の電源電圧とする方式のマルチシンクディスプレイ装置において、前記水平偏向回路から出力される水平偏向パルスを検出するとともに検出パルスを整流してDC電圧を出力する水平偏向パルス検出回路と、前記マイコンに設けられた入力端子と、前記マルチシンクディスプレイ装置の電源投入直後及び水平偏向周波数切り替え直後から前記チョッパー電源の出力電圧が安定する迄の期間に誤動作防止パルスが出力される前記マイコンの誤動作防止パルス出力端子と、前記水平偏向パルス検出回路からのDC電圧と前記マイコンからの誤動作防止パルスとの論理和をとる論理和回路とを備え、前記誤動作防止パルス出力端子から誤動作防止パルスが出力されている期間は前記水平偏向回路が正常に動作しているときに前記論理和回路から出力される信号を前記入力端子に入力して前記マイコンへフィードバックすることにより、前記水平偏向パルスが安定して出力される迄の一定期間において前記水平偏向パルス検出回路により検出された異常動作検出電圧が前記マイコンへフィードバックされないようにしたことを特徴とする水平偏向回路の異常動作検出回路。In a multi-sink display device using a chopper power supply output controlled by a microcomputer as a power supply voltage of a horizontal deflection circuit, a horizontal deflection pulse output from the horizontal deflection circuit is detected, and the detection pulse is rectified to be a DC voltage. a horizontal deflection pulse detection circuit for outputting an input terminal provided on the microcomputer, malfunctions in the period immediately after power-on of the multi-sync display apparatus and immediately after the horizontal deflection frequency switching until the output voltage of the chopper power supply is stabilized comprising a lockout pulse output terminal of the microcomputer preventing pulse is output, and an OR circuit which takes the logical sum of the malfunction prevention pulses from DC voltage and the microcomputer from the horizontal deflection pulse detection circuit, the malfunction prevention period lockout pulse from the pulse output terminal is output, the water By the feeding back a signal output from the OR circuit to the microcomputer is input to the input terminal when the deflection circuit is operating normally, constant up to the horizontal deflection pulse is stably output An abnormal operation detection circuit for a horizontal deflection circuit, wherein the abnormal operation detection voltage detected by the horizontal deflection pulse detection circuit during a period is not fed back to the microcomputer.
JP202497A 1997-01-09 1997-01-09 Abnormal operation detection circuit for horizontal deflection circuit Expired - Fee Related JP3734908B2 (en)

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Application Number Priority Date Filing Date Title
JP202497A JP3734908B2 (en) 1997-01-09 1997-01-09 Abnormal operation detection circuit for horizontal deflection circuit

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JP3734908B2 true JP3734908B2 (en) 2006-01-11

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