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61 MAGIC
1) Компьютерная техника: My Alternate Graphics And Image Code3) Спорт: My Ass Got Infected Coach4) Военный термин: Maritime Air-Ground Intelligence Cell5) Техника: machine for automatic graphics interface to computer, manipulator and gantry intelligent control6) Сокращение: Marine Corps Air-Ground Intelligence Center (USA), Microcomputer Applications of Graphics with Interactive Communications8) Электроника: Mondial Antenna Ground Isolation Circuit9) Транспорт: Mobile Automotive Geographic Information Core10) Фирменный знак: MidAmerica GIS Consortium, Ltd.11) Деловая лексика: Making A Greater Individual Commitment12) Образование: Meaningful Activities For Gifted In The Classroom, Motivating And Affirming The Genius In Children, Multi Age Groupings For Integrating Curriculum13) Сетевые технологии: Media Accelerated Global Information Carrier14) Робототехника: Multi-Autonomous Ground Robotics International Challenge -
62 magic
1) Компьютерная техника: My Alternate Graphics And Image Code3) Спорт: My Ass Got Infected Coach4) Военный термин: Maritime Air-Ground Intelligence Cell5) Техника: machine for automatic graphics interface to computer, manipulator and gantry intelligent control6) Сокращение: Marine Corps Air-Ground Intelligence Center (USA), Microcomputer Applications of Graphics with Interactive Communications8) Электроника: Mondial Antenna Ground Isolation Circuit9) Транспорт: Mobile Automotive Geographic Information Core10) Фирменный знак: MidAmerica GIS Consortium, Ltd.11) Деловая лексика: Making A Greater Individual Commitment12) Образование: Meaningful Activities For Gifted In The Classroom, Motivating And Affirming The Genius In Children, Multi Age Groupings For Integrating Curriculum13) Сетевые технологии: Media Accelerated Global Information Carrier14) Робототехника: Multi-Autonomous Ground Robotics International Challenge -
63 module
модуль - basic building-block module
- bubble module
- bulk data interface module
- desoldering vacuum module
- developing module
- fabricationmodule
- fabmodule
- furnace module
- hardening module
- hybrid module
- integrated-circuit module
- microcircuit module
- microcomputer module
- multichip module
- multifunction module
- process validation module
- remote control module
- self-checking computer module
- self-timed module
- space module
- wafer handling module -
64 unit
1) пристрій; блок; установка 2) елемент (ІС); компонент; прилад - bipolar unit
- bus асcess unit
- carrier unit
- central processing unit
- control unit
- cut-and-form unit
- desoldering unit
- digital unit
- DIP unit
- discrete unit
- field-replaceable unit
- fume-extraction unit
- functional unit
- Gunn-effect unit
- Gunn unit
- hybrid unit
- individual unit
- integrated circuit unit
- interface unit
- lead-forming unit
- lead-frame unit
- lithography unit
- logic unit
- master-slice unit
- memory unit
- microcomputer unit
- nondedicated unit
- pilot production unit
- resist dispenser unit
- screened unit
- SMD assembly unit
- stand-alone unit
- standby unit
- supply unit
- vacuum-coating unit
- wafer-transfer unit -
65 chip
1) кристалл (ИС), проф. чип2) интегральная схема, ИС; микросхема3) стружка (напр. при механической звукозаписи)4) вчт pl конфетти6) элемент сигнала, элементарный сигнал; элементарная посылка•- chip on chip - analog chip
- array chip
- bad chip
- bare chip
- beam-lead chip
- bipolar chip
- Bluetooth chip
- bubble-domain memory chip
- bubble-lattice chip
- bumped chip
- calculator chip
- carbon chip
- charge-coupled device chip
- circuit chip
- Clipper chip
- CMOS chip
- code chip
- color conversion chip
- component chip
- coprocessor chip
- corner chip
- custom chip - dedicated chip
- digital chip
- eight-bit chip
- face-down chip
- factory-programmable chip
- field-programmable chip - flipped chip
- game chip
- garnet chip
- general-purpose chip
- good chip
- imaging chip
- integrated-circuit chip - link chip
- logic chip
- LSI chip
- magnetic chip
- major-minor loop chip
- mask-programmable chip
- master chip
- master-slice chip
- memory chip
- metal-oxide-semiconductor chip
- metal-oxide-silicon chip
- microcomputer chip
- microminiature chip
- microprocessor chip
- mid-array chip
- mixed-signal chip
- monolithic chip
- MOS chip
- naked chip
- N-bit chip
- packaged chip
- passive-circuit chip
- perfect chip
- physical chip
- planar passivated -chip
- processor chip
- RAM chip
- rapid single flux quantum chip
- reprogrammable chip
- resistor chip
- RSFQ chip
- semiconductor chip
- side chip
- silicon chip
- silicon-spacer chip
- single chip
- single-crystal chip
- sixteen-bit chip
- sixty-four-bit chip
- sound chip
- supervisory chip
- support chip
- telephone chip
- thirty-two-bit chip
- transistor chip
- transmitter chip
- unpacked chip
- Viterbi-decoder chip
- Viterbi-encoder chip
- VLSI chip
- watch chip -
66 design
1) проектирование; разработка; конструирование; синтез || проектировать; разрабатывать; конструировать; синтезировать2) проект; конструкция; схема; чертёж3) расчёт4) план; планирование || планировать5) дизайн || заниматься дизайном•- ad hoc design
- AMS design
- analog/mixed signal design
- architectural design
- artwork design
- balanced design
- batch circuit design
- bipolar design
- bottom-up design
- brain-dead design
- chip design
- circuit design
- compositional design - conceptual database design
- cooperative design
- coplanar design
- custom design
- data design
- data-structure design
- dedicated design
- designer-directed semiautomatic design
- detailed design
- differential design
- digital design
- digital logic design
- discrete-circuit design
- distributed design
- down-top design - experimental design
- factorial design
- fail-safe design
- flip-chip design
- forms design
- functional design
- hardware design
- hierarchical design
- high-level design
- incomplete design
- in-house design - integrated-circuit design
- inverted T-design for cursor keys
- keyswitch design
- layout design - logical design
- logical data design
- man-machine design
- manual design with computer aids
- mask design - mixed signal design
- modular design
- multichip design - optimization-based design
- organizational design
- orthogonal design
- page design
- participatory design
- photomask design
- physical design
- procedural design
- random design
- randomized block design
- random logic design
- scan design
- signal design
- software design
- solid-state level design - structured design
- structured systems design
- system design
- system-on-chip design
- top-down design
- topography design
- worst-case design -
67 chip
1) кристалл (ИС), проф. чип2) интегральная схема, ИС; микросхема3) стружка (напр. при механической звукозаписи)4) вчт.; pl. конфетти6) элемент сигнала, элементарный сигнал; элементарная посылка•- analog chip
- array chip
- bad chip
- bare chip
- beam-lead chip
- bipolar chip
- Bluetooth chip
- bubble-domain memory chip
- bubble-lattice chip
- bumped chip
- calculator chip
- carbon chip
- charge-coupled device chip
- chip on board
- chip on ceramic
- chip on chip
- chip on flex
- circuit chip
- Clipper chip
- CMOS chip
- code chip
- color conversion chip
- component chip
- coprocessor chip
- corner chip
- custom chip
- data processing chip
- data-link control chip
- dedicated chip
- digital chip
- eight-bit chip
- face-down chip
- factory-programmable chip
- field-programmable chip
- field-programmable interconnect chip
- flip chip
- flipped chip
- game chip
- garnet chip
- general-purpose chip
- good chip
- imaging chip
- integrated-circuit chip
- intelligent network termination chip
- inverting chip
- link chip
- logic chip
- LSI chip
- magnetic chip
- major-minor loop chip
- mask-programmable chip
- master chip
- master-slice chip
- memory chip
- metal-oxide-semiconductor chip
- metal-oxide-silicon chip
- microcomputer chip
- microminiature chip
- microprocessor chip
- mid-array chip
- mixed-signal chip
- monolithic chip
- MOS chip
- naked chip
- N-bit chip
- packaged chip
- passive-circuit chip
- perfect chip
- physical chip
- planar passivated-chip
- processor chip
- RAM chip
- rapid single flux quantum chip
- reprogrammable chip
- resistor chip
- RSFQ chip
- semiconductor chip
- side chip
- silicon chip
- silicon-spacer chip
- single chip
- single-crystal chip
- sixteen-bit chip
- sixty-four-bit chip
- sound chip
- supervisory chip
- support chip
- telephone chip
- thirty-two-bit chip
- transistor chip
- transmitter chip
- unpacked chip
- Viterbi-decoder chip
- Viterbi-encoder chip
- VLSI chip
- watch chipThe New English-Russian Dictionary of Radio-electronics > chip
-
68 design
1) проектирование; разработка; конструирование; синтез || проектировать; разрабатывать; конструировать; синтезировать2) проект; конструкция; схема; чертёж3) расчёт4) план; планирование || планировать5) дизайн || заниматься дизайном•- AMS design
- analog/mixed signal design
- architectural design
- artwork design
- balanced design
- batch circuit design
- bipolar design
- bottom-up design
- brain-dead design
- chip design
- circuit design
- compositional design
- computer-aided control system design
- computer-aided design
- conceptual database design
- conceptual design
- cooperative design
- coplanar design
- custom design
- data design
- data-structure design
- dedicated design
- design for assembly
- design for manufacturability
- design of experiments
- designer-directed semiautomatic design
- detailed design
- differential design
- digital design
- digital logic design
- discrete-circuit design
- distributed design
- down-top design
- electronic computer-aided design
- engineering design
- experimental design
- factorial design
- fail-safe design
- flip-chip design
- forms design
- functional design
- hardware design
- hierarchical design
- high-level design
- incomplete design
- in-house design
- in-situ testability design
- instructional design
- integrated-circuit design
- inverted T-design for cursor keys
- keyswitch design
- layout design
- level-sensitive scan design
- logic design
- logical data design
- logical design
- man-machine design
- manual design with computer aids
- mask design
- mechanical computer-aided design
- microcomputer-based design
- mixed signal design
- modular design
- multichip design
- object-oriented design
- on-line design
- optimization-based design
- organizational design
- orthogonal design
- page design
- participatory design
- photomask design
- physical design
- procedural design
- random design
- random logic design
- randomized block design
- scan design
- signal design
- software design
- solid-state level design
- space structure computer-aided design
- structural design
- structured design
- structured systems design
- system design
- system-on-chip design
- top-down design
- topography design
- worst-case designThe New English-Russian Dictionary of Radio-electronics > design
-
69 CP/M
сокр. от Control Program/Microcomputerоперационная система СР/М (для микроЭВМ)English-Russian dictionary of computer science and programming > CP/M
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70 concept
arresting gear concept (of strategy) — стратегическая концепция постепенного сдерживания наступления противника до полного прекращения его продвижения (по принципу действия аэрофинишера на авианосце)
elevated trunnion concept (for tanks) — принцип конструирования башни танка с повышенным расположением цапф пушки
— fly-before-buy procurement concept— fuzeless shell concept— high-low mix concept -
71 peripheral
1. периферия2. периферийное устройство3. периферийный -
72 robot peripheral
English-Russian big polytechnic dictionary > robot peripheral
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73 Noyce, Robert
SUBJECT AREA: Electronics and information technology[br]b. 12 December 1927 Burlington, Iowa, USA[br]American engineer responsible for the development of integrated circuits and the microprocessor chip.[br]Noyce was the son of a Congregational minister whose family, after a number of moves, finally settled in Grinnell, some 50 miles (80 km) east of Des Moines, Iowa. Encouraged to follow his interest in science, in his teens he worked as a baby-sitter and mower of lawns to earn money for his hobby. One of his clients was Professor of Physics at Grinnell College, where Noyce enrolled to study mathematics and physics and eventually gained a top-grade BA. It was while there that he learned of the invention of the transistor by the team at Bell Laboratories, which included John Bardeen, a former fellow student of his professor. After taking a PhD in physical electronics at the Massachusetts Institute of Technology in 1953, he joined the Philco Corporation in Philadelphia to work on the development of transistors. Then in January 1956 he accepted an invitation from William Shockley, another of the Bell transistor team, to join the newly formed Shockley Transistor Company, the first electronic firm to set up shop in Palo Alto, California, in what later became known as "Silicon Valley".From the start things at the company did not go well and eventually Noyce and Gordon Moore and six colleagues decided to offer themselves as a complete development team; with the aid of the Fairchild Camera and Instrument Company, the Fairchild Semiconductor Corporation was born. It was there that in 1958, contemporaneously with Jack K. Wilby at Texas Instruments, Noyce had the idea for monolithic integration of transistor circuits. Eventually, after extended patent litigation involving study of laboratory notebooks and careful examination of the original claims, priority was assigned to Noyce. The invention was most timely. The Apollo Moon-landing programme announced by President Kennedy in May 1961 called for lightweight sophisticated navigation and control computer systems, which could only be met by the rapid development of the new technology, and Fairchild was well placed to deliver the micrologic chips required by NASA.In 1968 the founders sold Fairchild Semicon-ductors to the parent company. Noyce and Moore promptly found new backers and set up the Intel Corporation, primarily to make high-density memory chips. The first product was a 1,024-bit random access memory (1 K RAM) and by 1973 sales had reached $60 million. However, Noyce and Moore had already realized that it was possible to make a complete microcomputer by putting all the logic needed to go with the memory chip(s) on a single integrated circuit (1C) chip in the form of a general purpose central processing unit (CPU). By 1971 they had produced the Intel 4004 microprocessor, which sold for US$200, and within a year the 8008 followed. The personal computer (PC) revolution had begun! Noyce eventually left Intel, but he remained active in microchip technology and subsequently founded Sematech Inc.[br]Principal Honours and DistinctionsFranklin Institute Stuart Ballantine Medal 1966. National Academy of Engineering 1969. National Academy of Science. Institute of Electrical and Electronics Engineers Medal of Honour 1978; Cledo Brunetti Award (jointly with Kilby) 1978. Institution of Electrical Engineers Faraday Medal 1979. National Medal of Science 1979. National Medal of Engineering 1987.Bibliography1955, "Base-widening punch-through", Proceedings of the American Physical Society.30 July 1959, US patent no. 2,981,877.Further ReadingT.R.Reid, 1985, Microchip: The Story of a Revolution and the Men Who Made It, London: Pan Books.KF
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