![]() Colour television receiver
专利摘要:
Apparatus is disclosed in a video signal processing system for automatically controlling the blanking (black) current level of an image reproducing kinescope having cathode and grid intensity control electrodes. During measuring intervals when cathode blanking current is to be monitored, a fixed voltage is applied to the cathode over the entire measuring interval, and a locally generated auxiliary signal is applied to the grid electrode during a portion of the measuring interval. A version of the grid signal appears as a cathode output signal proportional to the level of cathode blanking current conduction. A voltage responsive sensing network coupled to the cathode provides an output difference voltage proportional to the difference in cathode current conducted over the measuring interval. This voltage is utilized to modify the cathode bias in a direction to produce the desired cathode blanking current level at or in the vicinity of kinescope cut-off. 公开号:SU1237094A3 申请号:SU802877106 申请日:1980-01-29 公开日:1986-06-07 发明作者:Хинн Вернер 申请人:Рка Корпорейшн (Фирма); IPC主号:
专利说明:
No sweep. At the same time, according to the control signal of the control pulse generator 11, the key 7 closes c, not skipping the signal from the matrix unit 2. At this time, a positive pulse is supplied from the control pulse generator 11 to the control electrode of the color kinescope 6 unit. The invention relates to the field of television and can be used in devices for automatically controlling the bias voltage of a kinescope in a video signal processing system, such as a color television receiver, or in an equivalent system in order to set appropriate levels of blanking current for each of the electronic kinescope projectors. . The purpose of the invention is to improve the quality of the image by automatically stabilizing the levels of quenching of a vibrant color kinescope. Figure 1 shows the proposed receiver; on {{ig. 2 - diagrams that show the operation of the receiver. The color TV receiver (FIG. 1) contains a high-frequency block 1 with a luminance and chrominance channel, a matrixing unit 2, three identical signal processing units 3-5, a color kinescope unit 6, a key 7, an output amplifier 8, a gated comparator 9, a unit 10 memory, driver P for control pulses and voltage divider 12. The device works as follows. At the output of high-frequency block 1 (Fig. 1), luminance (y) and chrominance (s) signals are formed from a full TV signal, which are converted into color signals of red R, green G and blue B colors in block 2 of matrixing. These signals are processed and amplified in blocks 3-5 and are fed to the corresponding control electrodes of the color kinescope 6 unit. At the input of the driver 11, the personnel pulses are received (Fig. 2a) 237094 reference impulse. The output signal of the VU 8 through the input voltage divider 12 is supplied to the IC 9. If the cathode quenching current is excessive, the differential voltage from the IC 9 is fed to the memory unit 10 and then to the control input of the VU 8 to establish the required level of the cathodic quenching current. 2 Il. and lowercase (Fig. 2b) damping pulses which are converted to gating pulses (Fig. 2c and d), a reference pulse (Fig. 2e) and a key control pulse 7 (Fig. 2e). The electron beam current control of the kinescope (Figures 1 and 2) is controlled during each blanking period of the vertical sweep after the end of the reverse sweep of the vertical sweep at time t (, but before the start of the vertical sweep of the vertical sweep. This time interval is p. There are several horizontal periods that do not contain information in the image. The cathode current control at this time does not produce any visible effects on the reproduced image, since the electron beam is a kinescope and is rejected at this time outside the screen of the kinescope. Key 7 is closed by the corresponding γ-pulse (Fig. 2e) and stops the supply of the signal R from the matrix unit 2 to the input of the output amplifier, 8. This occurs during the measurement between times 1 and f: and tg (Fig. 2) corresponding to the two first periods of horizontal reversing after the end of the reverse course of vertical scanning. At this time (2m operating level of the output signal of the output amplifier 8 and, thus, the cathode offset is set at a fixed reference level determined by the bias circuit inside the output amplifier 8. At the same time, the positive reference pulse of a relatively low voltage UL (fit. 2e It is supplied to the control electrode of the block 6 of a color kinescope. 3, 1 The voltage U (Fig. 2g) is proportional to the difference in cathode currents conducted during the entire measurement period t. - t ,, allows you to determine if the electron microscope spotlight is locked or conducts an excessive quench current. In the measurement mode, the color kinescope of unit 6 is a cathode follower, on the cathode of which a pulse appears that corresponds to the control pulse V. This pulse, whose magnitude is proportional to the cathode current through the voltage divider 12, is fed to the input of the gated comparator 9, where compared with reference voltage. When the cathode quench current is at the required quench level, the amplitude of the cathode pulse is very small. If the cathode quenching current is excessive, then the differential voltage is fed to the memory unit 10 after corresponding processing in the gated comparator 9. The output signal of the unit 10 is fed to the bias control input of the output amplifier 8 dp of changing its operating point in direct current (offset) so that the level of the bias voltage at the output of the output amplifier 8 is sufficient to obtain the desired level of cathodic quenching current. At the end of the measurement period, the key 7 opens after time point t (Fig. 2), and the color signals from the output of the matrix unit 2 are again fed to the input of the output amplifier 8. 370944 Formula of the invention A color television receiver containing a high-frequency block, the outputs of the luminance channels and the chromaticity of which are connected to the corresponding inputs of the matrixing unit, three identical signal processing units, each of which contains a key and 10 gated comparator, the output of which is connected to the control input through the memory unit output amplifier; the first control input of the switch is connected to the first output of the control puller, the second and third inputs of which are connected to the first and second control inputs gated comparator, respectively, as well as a color kinescope unit, characterized in that, in order to improve image quality by automatically stabilizing the color kinescope quenching levels, the information key input is an input to the signal processing unit and connected to the corresponding output the matrix unit, and the output is connected to the input of a single amplifier, the output of which through the input voltage divider is connected to the input of the gated comparator, is the output of the signal processing unit and connected to the corresponding cathode of a color 3 kinescope unit, the modulator of which is connected to the fourth output of the control pulse shaper. FIG. SH I -P-P-rUII) . I g R, g 4 Editor N. Yatsola I -N l 1. V f e wx well i:; I t and l-ki / Tl: i II; to tfti tjU tjiftf (f) U3.2 Compiled by G.Rosatkevich Tehred O. Sopko Proofreader A. Obruchar Order 3102/60 Circulation 624 Subscription VNIIPI USSR State Committee for inventions and discoveries 113035, Moscow, Zh-35, Raushsk nab., 4/5 Production and printing company, Uzhgorod, Proektna st, 4 Tm l-ki / I; ftf
权利要求:
Claims (1) [1] Claim A color television receiver containing a high-frequency unit, the outputs of the luminance and color channels of which are connected to the corresponding inputs of the matrixing unit, three identical signal processing units, each of which contains a key and a gated comparator, the output of which is connected through a memory unit to the control input of the output amplifier, while the first key control input is connected to the first output of the control pulse shaper, the second and third outputs of which are connected to the first and second control inputs of the strobe of the comparator, respectively, as well as a color picture tube unit, distinguishing with the fact that, in order to improve image quality by automatically stabilizing the damping levels of the color picture tube rays, the information input of the key is the input of the signal processing unit and connected to the corresponding output of the matrixing unit, and the output connected to the input of the output amplifier, the output of which through the input voltage divider is connected to the input of the gated comparator, is the output of the signal processing unit and connected to the corresponding The existing cathode of the color tube block, the modulator of which is connected to the fourth output of the control pulse generator. FIG. < ♦ σ ----— Ig Τ 'Π - ϋ / p If if tj. fi g. 2 —P-V _L-2 !!; Wr
类似技术:
公开号 | 公开日 | 专利标题 SU1237094A3|1986-06-07|Colour television receiver US4682231A|1987-07-21|Brightness and contrast adjusting apparatus GB555565A|1943-08-27|Improvements in and relating to colour television GB1517041A|1978-07-05|Amplifier suitable for use as a colour kinescope driver CA1171956A|1984-07-31|Television receiver on-screen alphanumeric display US4287531A|1981-09-01|Deflection control apparatus for a beam index color cathode ray tube US3558809A|1971-01-26|Automatic dark current control system for pickup tubes employing a light inhibiting strip mounted on the pickup tube face plate FI73110C|1987-08-10|Television receivers with a selectively useful system for displaying characters on the frame. US3062914A|1962-11-06|Electron discharge device circuits US4490739A|1984-12-25|Color image reproducing apparatus US4514664A|1985-04-30|Color television receiver GB1315970A|1973-05-09|Colour facsimile transmission system US2969426A|1961-01-24|Color television receiver with signal modifying system US3524013A|1970-08-11|Stable monochrome balance circuit for single gun display tube KR850005204A|1985-08-21|DC level stabilization system GB1431800A|1976-04-14|Video signal recording apparatus CA1170797A|1984-07-10|Display video apparatus US3887938A|1975-06-03|IC color demodulator with single external picture control US2855457A|1958-10-07|Color-image-reproducing apparatus RU2014749C1|1994-06-15|Device for formation of pseudorandom image on screen of black-and-white cathode-ray tube US3033920A|1962-05-08|Color television receiver with random color line selector KR850005210A|1985-08-21|Control device for luminance and chroma signal processing US3767845A|1973-10-23|Color image reproducing apparatus SU530478A2|1976-09-30|A device for reproducing a black and white television image in conventional colors SU1401650A1|1988-06-07|Device for displaying information on color crt screen
同族专利:
公开号 | 公开日 FR2448270B1|1983-04-22| PT70711A|1980-02-01| NL8000553A|1980-08-01| FI800194A|1980-07-31| DK148229B|1985-05-06| FI68490B|1985-05-31| JPS55102986A|1980-08-06| AT383926B|1987-09-10| HK16987A|1987-03-06| GB2042308A|1980-09-17| DK37780A|1980-07-31| AU5486880A|1980-08-07| MY8500723A|1985-12-31| BE881415A|1980-05-16| GB2042308B|1982-10-13| FR2448270A1|1980-08-29| DE3003322A1|1980-08-07| SE443273B|1986-02-17| AU525920B2|1982-12-09| ES488069A1|1980-10-01| IT8019280D0|1980-01-17| JPH0145276B2|1989-10-03| ATA46180A|1987-01-15| US4263622A|1981-04-21| CA1138100A|1982-12-21| SE8000550L|1980-07-31| FI68490C|1985-09-10| PL221660A1|1980-11-03| DK148229C|1985-09-23| DE3003322C2|1983-02-24| PL126133B1|1983-07-30| NZ192739A|1983-09-30| IT1129551B|1986-06-11|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题 NL158343B|1967-06-16|1978-10-16|Philips Nv|TELEVISION RECEIVER WITH AN IMAGE DISPLAY TUBE AND A BEAM CURRENT METER CONNECTED TO A CATHODE OF THIS TUBE.| NL6903362A|1969-03-05|1970-09-08| JPS562820B2|1971-12-24|1981-01-21| US4012775A|1975-04-28|1977-03-15|Thomson Csf Laboratories, Inc.|System for stabilizing cathode ray tube operation|ES8303868A1|1981-01-26|1983-02-01|Rca Corp|Arrangement for automatically controlling the bias voltage of a picture tube| US4387405A|1971-01-26|1983-06-07|Rca Corporation|Automatic kinescope bias control system with digital signal processing| US4277798A|1979-04-18|1981-07-07|Rca Corporation|Automatic kinescope biasing system with increased interference immunity| US4342048A|1980-08-18|1982-07-27|Zenith Radio Corporation|Automatic CRT tracking circuit| US4435729A|1982-02-26|1984-03-06|Rca Corporation|Television receiver with selectively disabled on-screen character display system| US4502073A|1982-04-06|1985-02-26|Rca 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GB8420537D0|1984-08-13|1984-09-19|Rca Corp|Automatic kinescope biasing| JPH0666897B2|1984-08-13|1994-08-24|アールシーエートムソンライセンシングコーポレイシヨン|Video signal processor| EP0174738B1|1984-08-13|1990-10-24|Rca Licensing Corporation|Display device bias sensing circuit| US4599655A|1984-08-27|1986-07-08|Rca Corporation|Kinescope driver with high frequency compensation| US4600950A|1984-10-01|1986-07-15|Rca Corporation|Kinescope bias sensing circuit| DE3437952A1|1984-10-17|1986-04-17|Philips Patentverwaltung Gmbh, 2000 Hamburg|CIRCUIT ARRANGEMENT FOR CONTROLLING A PICTURE TUBE| US4633321A|1985-04-23|1986-12-30|Rca Corporation|Automatic kinescope bias control system| GB8524197D0|1985-10-01|1985-11-06|Rca Corp|Triggering system| GB8524198D0|1985-10-01|1985-11-06|Rca Corp|Brightness controlled akb system| GB8524196D0|1985-10-01|1985-11-06|Rca Corp|Hold circuit| US4660093A|1986-05-09|1987-04-21|Rca Corporation|Television receiver with delayed display| US4723158A|1986-05-14|1988-02-02|Zenith Electronics Corporation|Method and apparatus for performing scan line diagnostic testing in a video monitor during a last-line overscan of a normal display raster| JP3127963B2|1990-12-26|2001-01-29|株式会社日立製作所|Cathode ray tube display| US5410222A|1993-08-31|1995-04-25|Thomson Consumer Electronics, Inc.|Sample pulse generator for automatic kinescope bias system| CA2145901C|1994-04-28|2000-02-22|Anton Werner Keller|Kinescope driver apparatus with gamma correction| US5488417A|1994-05-19|1996-01-30|Thomson Consumer Electronics, Inc.|Automatic kinescope bias control system| JP2877072B2|1996-05-20|1999-03-31|日本電気株式会社|Cathode current detection circuit| GB9704536D0|1997-03-05|1997-04-23|Thomson Consumer Electronics|CTC195 kine driver with peak beam current limiting| US6211908B1|1999-05-27|2001-04-03|Thomson Multimedia Licensing S.A.|Television apparatus with supplementary kinescope blanking and spot burn protection circuitry| US6433524B1|2001-03-15|2002-08-13|Rosemount Aerospace Inc.|Resistive bridge interface circuit| KR100823512B1|2006-09-11|2008-04-21|삼성에스디아이 주식회사|Plasma display and voltage generator thereof| CN103533259B|2013-09-29|2016-06-22|长春长光辰芯光电技术有限公司|Line-log response image sensor pixel and signal handover control method thereof|
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