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1 nivottu näyttö
• interlaced display -
2 дисплей с чересстрочной разверткой
Русско-английский индекс к Англо-русскому толковому словарю терминов и сокращений по ВТ, Интернету и программированию > дисплей с чересстрочной разверткой
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3 дисплей с черезстрочной разверткой
дисплей с черезстрочной разверткой
Сначала отображаются все нечетные строки, а потом все четные. Скорость вывода изображения увеличивается, а качество несколько снижается.
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Русско-английский словарь нормативно-технической терминологии > дисплей с черезстрочной разверткой
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4 lomittamaton näyttö
• de-interlaced display• non interlaced display -
5 дисплей с чересстрочной развёрткой
Information technology: interlaced displayУниверсальный русско-английский словарь > дисплей с чересстрочной развёрткой
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6 табло с характеристиками целей
Military: interlaced displayУниверсальный русско-английский словарь > табло с характеристиками целей
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7 limittämätön näyttö
• de-interlaced display -
8 развертка
deflection тлв, broach(ing) bit, reamer bit, scan, scanning, ( инструмент) reamer, sweep* * *развё́ртка ж.1. ( металлорежущий инструмент) reamer2. ( представление сложной пространственной поверхности на плоскости) developmentиме́ть развё́ртку — be developableне име́ть развё́ртки — be nondevelopable3. ( чертёж) developed views4. ( во времени)1) тлв. ( изображение) scan(ning); ( движение луча) sweep2) ( в фототелеграфии) scan(ning)в развё́ртке наблюда́ется разреже́ние и сгуще́ние — the copy shows grouping of the recorded lineво вре́мя обра́тного хо́да развё́ртки — during flyback, during retraceво вре́мя прямо́го хо́да развё́ртки — during trace, during scanосуществля́ть развё́ртку масс-спе́ктров по магни́тному по́лю — scan the mass spectra by varying the magnetic field5. осцил. time-base, sweepрастя́гивать развё́ртку, напр. в 5 раз — expand the time-base [sweep] by, e. g., 5, extend the time-scale by, e. g., a factor of 56. рлк. ( движение луча по экрану) sweep; (изображение, рисуемое лучом на экране) display, indication, representation; (след, оставляемый развёрткой) sweep traceразвё́ртка а́зимута — azimuth sweepразвё́ртка враща́ющейся при́змой тлв. — rotating-prism scan(ning)временна́я развё́ртка рлк. — time-baseразвё́ртка да́льности рлк. — range sweepжду́щая развё́ртка осцил. — triggered time-base, triggered sweepзаде́ржанная развё́ртка осцил., рлк. — delayed sweepка́дровая развё́ртка тлв. — frame [vertical] scanкольцева́я развё́ртка1. осцил. circular sweep2. рлк. ( иногда неверно называется круговая) ( изображение) type I-display; ( движение луча) circular sweepкони́ческая развё́ртка — tapered reamerлине́йная развё́ртка1. рлк. ( изображение) A-display; ( движение луча) A-sweep2. осцил. linear sweepразвё́ртка листа́ — developmentмаши́нная развё́ртка — machine reamerмехани́ческая развё́ртка — mechanical scanningнасадна́я развё́ртка — shell reamerразвё́ртка нелине́йная развё́ртка — non-linear time-base, non-linear sweepнепреры́вная развё́ртка осцил. — ( без синхронизации) free-running sweep; ( с синхронизацией) synchronized sweepоднора́зовая развё́ртка — single-sweep time-base, single sweepопти́ческая развё́ртка — optical scan(ning)периоди́ческая развё́ртка осцил. — ( без синхронизации) free-running sweep; ( с синхронизацией) synchronized sweepплоскостна́я развё́ртка ( в фототелеграфии) — flat-bed scan(ning)после́довательная развё́ртка тлв. — line-sequential scanningпрямолине́йная развё́ртка — rectilinear scan(ning)радиа́льно-кругова́я развё́ртка — ( изображение) type P-display; ( движение луча) P-sweepрадиа́льно-кругова́я развё́ртка со смещё́нным це́нтром ( изображение) — off-centre type-P displayрадиа́льно-кругова́я развё́ртка с растя́нутым це́нтром ( изображение) — open-centre type-P displayразжи́мная развё́ртка — expansion reamerра́стровая развё́ртка1. рлк. ( изображение) two-dimensional [type-B] display; ( движение луча) two-dimensional sweep[b]2. тлв. raster scan(ning)растя́нутая развё́ртка рлк. — expanded sweepрегули́руемая развё́ртка — adjustable reamerручна́я развё́ртка — hand reamerразвё́ртка с винтовы́ми зу́бьями — helically-fluted reamerсе́кторная развё́ртка ( изображение) — sector displayразвё́ртка с неравноме́рным масшта́бом — deformed displayспира́льная развё́ртка ( движение луча) осцил., рлк. — spiral sweepразвё́ртка с прямы́ми зу́бьями — straight-fluted reamerразвё́ртка с равноме́рным масшта́бом — undeformed displayстартсто́пная развё́ртка ( в фототелеграфии) — start-stop scan(ning)стро́чная развё́ртка1. рлк. ( изображение) two-dimensional [type-B] display; ( движение луча) two-dimensional sweep[b]2. тлв. line [horizontal] scan(ning)развё́ртка ти́па «бегу́щий луч» тлв. — flying-spot scan(ning)развё́ртка ти́па МПМ [ти́па микропла́н ме́стности] — (type) micro-B displayтру́бная развё́ртка — pipe reamerразвё́ртка угла́ ме́ста рлк. — elevation sweepцилиндри́ческая развё́ртка — straight reamerчересстро́чная развё́ртка тлв. — interlaced scan(ning)чернова́я развё́ртка — roughing reamerчистова́я развё́ртка — finishing reamerэкспоненциа́льная развё́ртка осцил. — exponential sweepэлектро́нная развё́ртка — electronic scan(ning)эллипти́ческая развё́ртка — elliptical time-base* * *1) development; 2) broaching bit -
9 строчная развёртка
1. рлк. two-dimensional display; two-dimensional sweepрадиально-круговая развёртка — type P-display; P-sweep
линейная развёртка — A-display; A-sweep
2. тлв. line scanразвёртка типа «бегущий луч» — flying-spot scan
Русско-английский большой базовый словарь > строчная развёртка
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10 растровая развёртка
1. рлк. two-dimensional display; two-dimensional sweepлинейная развёртка — A-display; A-sweep
радиально-круговая развёртка — type P-display; P-sweep
2. тлв. raster scanразвёртка типа «бегущий луч» — flying-spot scan
Русско-английский большой базовый словарь > растровая развёртка
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11 Goldmark, Peter Carl
[br]b. 2 December 1906 Budapest, Hungaryd. 7 December 1977 Westchester Co., New York, USA[br]Austro-Hungarian engineer who developed the first commercial colour television system and the long-playing record.[br]After education in Hungary and a period as an assistant at the Technische Hochschule, Berlin, Goldmark moved to England, where he joined Pye of Cambridge and worked on an experimental thirty-line television system using a cathode ray tube (CRT) for the display. In 1936 he moved to the USA to work at Columbia Broadcasting Laboratories. There, with monochrome television based on the CRT virtually a practical proposition, he devoted his efforts to finding a way of producing colour TV images: in 1940 he gave his first demonstration of a working system. There then followed a series of experimental field-sequential colour TV systems based on segmented red, green and blue colour wheels and drums, where the problem was to find an acceptable compromise between bandwidth, resolution, colour flicker and colour-image breakup. Eventually he arrived at a system using a colour wheel in combination with a CRT containing a panchromatic phosphor screen, with a scanned raster of 405 lines and a primary colour rate of 144 fields per second. Despite the fact that the receivers were bulky, gave relatively poor, dim pictures and used standards totally incompatible with the existing 525-line, sixty fields per second interlaced monochrome (black and white) system, in 1950 the Federal Communications Commission (FCC), anxious to encourage postwar revival of the industry, authorized the system for public broadcasting. Within eighteen months, however, bowing to pressure from the remainder of the industry, which had formed its own National Television Systems Committee (NTSC) to develop a much more satisfactory, fully compatible system based on the RCA three-gun shadowmask CRT, the FCC withdrew its approval.While all this was going on, Goldmark had also been working on ideas for overcoming the poor reproduction, noise quality, short playing-time (about four minutes) and limited robustness and life of the long-established 78 rpm 12 in. (30 cm) diameter shellac gramophone record. The recent availability of a new, more robust, plastic material, vinyl, which had a lower surface noise, enabled him in 1948 to reduce the groove width some three times to 0.003 in. (0.0762 mm), use a more lightly loaded synthetic sapphire stylus and crystal transducer with improved performance, and reduce the turntable speed to 33 1/3 rpm, to give thirty minutes of high-quality music per side. This successful development soon led to the availability of stereophonic recordings, based on the ideas of Alan Blumlein at EMI in the 1930s.In 1950 Goldmark became a vice-president of CBS, but he still found time to develop a scan conversion system for relaying television pictures to Earth from the Lunar Orbiter spacecraft. He also almost brought to the market a domestic electronic video recorder (EVR) system based on the thermal distortion of plastic film by separate luminance and coded colour signals, but this was overtaken by the video cassette recorder (VCR) system, which uses magnetic tape.[br]Principal Honours and DistinctionsInstitute of Electrical and Electronics Engineers Morris N.Liebmann Award 1945. Institute of Electrical and Electronics Engineers Vladimir K. Zworykin Award 1961.Bibliography1951, with J.W.Christensen and J.J.Reeves, "Colour television. USA Standard", Proceedings of the Institute of Radio Engineers 39: 1,288 (describes the development and standards for the short-lived field-sequential colour TV standard).1949, with R.Snepvangers and W.S.Bachman, "The Columbia long-playing microgroove recording system", Proceedings of the Institute of Radio Engineers 37:923 (outlines the invention of the long-playing record).Further ReadingE.W.Herold, 1976, "A history of colour television displays", Proceedings of the Institute of Electrical and Electronics Engineers 64:1,331.See also: Baird, John LogieKF
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