-
1 high-technology device
- прибор, изготовленный по современной технологии
- высокотехнологичный прибор
высокотехнологичный прибор
—
[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва, 1999 г.]Тематики
- электротехника, основные понятия
EN
прибор, изготовленный по современной технологии
—
[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва, 1999 г.]Тематики
- электротехника, основные понятия
EN
Англо-русский словарь нормативно-технической терминологии > high-technology device
-
2 high-technology device
1) Техника: высокотехнологичный прибор2) Микроэлектроника: прибор, изготовленный по прогрессивной технологии3) Макаров: прибор, изготовленный по современной технологииУниверсальный англо-русский словарь > high-technology device
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3 high-technology device
прилад, виготовлений за передовою технологієюEnglish-Ukrainian dictionary of microelectronics > high-technology device
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4 high-technology device
прибор, изготовленный с применением высокой технологииThe New English-Russian Dictionary of Radio-electronics > high-technology device
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5 high-technology device
Англо-русский словарь по электроэнергетике > high-technology device
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6 high-technology device
прибор, изготовленный по передовой технологииEnglish-Russian dictionary of microelectronics > high-technology device
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7 device
1) прилад (напр. ІС, транзистор, діод); компонент; елемент 2) пристрій - active device
- add-on device
- analog device
- array device
- attached device
- backup device
- beam-leadeddevice
- beam-leaddevice
- bipolar device
- bipolar-MOS device
- blown-fuse device
- bubble-domain device
- bubble- device
- bucket-brigade device
- bulk асoustic-wave device
- bulk-channel carrier-transfer device
- bulk-effect device
- carrier-transfer device
- charge-coupled device
- charge-domain device
- charge-injection device
- charge-priming device
- charge-transfer device
- chip-and-wire device
- CMOS device
- CMOS/SOS device
- compound-semiconductor device
- contiguous-disk device
- controlled surface device
- custom-designed device
- custom device
- dense device
- depletion-modedevice
- depletiondevice
- dielectric isolation device
- diffused device
- discrete device
- double-diffused MOS device
- elastic-surface-wave device
- electrooptic device
- elementary device
- enchancement-mode device
- enchancement device
- end-use device
- epiplanar device
- epitaxial device
- FAMOS device
- field-effect device
- field-programmable device
- FIMOS device
- functional device
- graded-gap semiconductor device
- graded-gap device
- Gurm-effect device
- Gurm device
- Hall-effectdevice
- Halldevice
- hardeneddevice
- harddevice
- heteroepitaxial device
- heterojunction device
- high-gain device
- high-immunity noise device
- high-technology device
- high-threshold device
- homojunction device
- hybrid high-power device
- identification device
- I2L device
- image [imaging] device
- IMPATT device
- implanted device
- integrated-optic device
- integrated semiconductor device
- integration device
- interdigitated device
- interface device
- Josephson-junctiondevice
- Josephsondevice
- Josephson logic device
- junction-isolated device
- large-scale integrated device
- large-scale integration device
- latch-up free CMOS device
- leaded device
- leadless inverted device
- light-wave device
- locked-in device
- logic array device
- low-power Schottky device
- magnetostatic-wave device
- majority-carrier device
- mask-programmable device
- metal-masked device
- metal-semiconductor device
- microdiscrete device
- microelectronic device
- minority-carrier device
- MIS-type device
- MIS device
- mixed-process device
- mixed device
- molecular-beam epitaxy-based device
- monolithic device
- MOS device
- MTL device
- multilayered device
- multilevel device
- n-channel MOS device
- n-channel device
- negative-resistance device
- non-CPU device
- n–p–n device
- off-chip device
- on-chip device
- optocoupler semiconductor device
- optocoupling device
- passive device
- p-channel MOS device
- p-channel device
- peripheral device
- permalloy bubble device
- permalloy T-bar device
- photo-coupled semiconductor device
- photosensitive device
- piezoelectric device
- piggyback device
- planar device
- plotting device
- plug-in device
- p-n-p device
- positioning device
- printing device
- programmable logic-array device
- programmable device
- quantum device
- quantum-well device
- redundancy device
- resin-molded device
- SAW device
- SAW delay device
- scaled-downdevice
- scaleddevice
- Schottky-barrier device
- Schottky device
- second-source device
- self-aligned semiconductor device
- semiconductor-on-sapphire
- silicon-on-dielectric device
- silicon-on-insulator device
- silicon-on-sapphire device
- single device
- single-crystal device
- slow device
- SLS device
- small-geometry device
- solder-evacuator device
- SOS/MOS device
- stacked semiconductor device
- static-sensitive device
- stripeline device
- submicron-scale MOS device
- superconducting Josephson-junction device
- superconducting quantum interference device
- superconductive quantum interferometric device
- super-lattice functional device
- superstructure device
- surface-acoustic-wave device
- surface charge-transfer device
- surface-mounted device
- switching device
- TAB device
- thermocompression bonded device
- thick-film device
- thin-film device
- transcalent device
- transferred-electron device
- transil-time-negative-resistance device
- trench isolated device
- tunnel -еffect device
- tunnel device
- two-level polysilicon MOS device
- ULA device
- ultrafine-scale device
- ultra-large-scale integrated device
- ultra-submicron device
- uncased device
- vertical-junction device
- very large-scale integrated-circuit device
- very large-scale integration device
- V-groove MOS device
- V-groove device
- wafer-printing device -
8 device
1) прибор; устройство; установка2) компонент; элемент4) фигура речи5) девиз; лозунг•- λ-device- λ-shaped negative-resistance device
- absolute pointing device
- absolute value device
- accumulation-mode charge-coupled device
- acoustic correlation device
- acoustic delay device
- acoustic imaging device
- acoustic-surface-wave device
- acoustic-surface-wave interaction charge-coupled device
- acoustic-volume-wave device
- acoustic-wave device
- acoustooptic device
- acoustoresistive device
- active device
- active medium propagation device
- adaptive device
- add-on device
- all-junction device
- aluminum-gate MOS device
- amorphous semiconductor memory device
- amorphous semiconductor switching device
- analog device
- answer device
- antihunt device
- anti-inrush device
- antijamming device
- anti-pumping device
- antisidetone device
- antistatic device
- antistrike device
- AO device
- arc-control device
- array device
- attached device
- attention device
- audible signal device
- audio device
- audio-response device
- augmentative device
- autocorrelation device
- automatic holding device
- automatic-alarm-signal keying device
- avalanche device
- avalanche-effect device
- backup device
- band-compression device
- beam-expanding device
- beam-lead device
- beam-manipulating device
- beam-narrowing device
- beam-transforming device
- bidirectional device
- bipolar device
- bistable device
- bistable optical device
- block device
- BlueTooth device
- bogey electron device
- bubble device
- bubble domain device
- bubble lattice storage device
- bubble memory device
- bucket-brigade charge-coupled device
- bucket-brigade device
- built-in pointing device
- bulk channel charge-coupled device
- bulk-acoustic-wave device
- bulk-charge-coupled device
- bulk-effect device
- bulk-property device
- bulk-type acoustooptic device
- bunching device
- buried channel charge-coupled device
- burst device
- bus-powered device
- callback port protection device
- calling device
- carrier-operated antinoise device
- cascade charge-coupled device
- cascaded thermoelectric device
- center-bonded device
- CFAR device
- character device
- charge-control device
- charge-coupled device
- charge-coupled imaging device
- charge-coupled line imaging device
- charge-coupled storage device
- charge-injection device
- charge-injection imaging device
- charge-transfer device
- charge-trapping device
- chip device
- chip-and-wire device
- clip-on pointing device
- clustered devices
- CMOS device
- coder device
- coherent electroluminescence device
- color imaging device
- COM device
- complex programmable logic device
- compound device
- computer output microfilm device
- conductively connected charge-coupled device
- constant false-alarm ratio device
- consumer device
- contiguous-disk bubble domain device
- controlled avalanche device
- controlled-surface device
- correlation device
- countermeasure devices
- coupling device
- cross-correlation device
- cross-field device
- cryogenic device
- current-access magnetic bubble device
- current-controlled device
- current-controlled differential-negative-resistance device
- current-controlled DNR device
- current-mode logic device
- current-operated device
- custom device
- data entry device
- data preparation device
- data recording device
- deception devices
- decision-making device
- decoding device
- dedicated device
- deformable-mirror device
- DEFT device
- delay device
- dense device
- depletion-mode device
- detecting device
- DI device
- dielectric isolation device
- diffused device
- digit delay device
- digital device
- digital micromirror device
- diode-array imaging device
- direct electronic Fourier transform device
- direct-access storage device
- direct-view device
- direct-viewing device
- discrete device
- disk device
- display device
- distributed diode device
- distributed interaction device
- division device
- D-MOS device
- domain propagation device
- domain-tip device
- double-negative-resistance-device
- double-quantum stimulated-emission device
- dynamically configurable device
- eavesdropping device
- E-beam fabricated device
- EBS device
- edge-bonded device
- EL device
- elastooptic device
- electrically programmable logic device
- electroluminescence device
- electromagnetic device
- electron device
- electron-beam semiconductor device
- electronic device
- electronic imaging device
- electron-optical device
- electrooptical device
- elementary MOS device
- embedded device
- encoding device
- end device
- energy conversion device
- enhancement-mode device
- epiplanar device
- epitaxial-device
- error-sensing device
- exchange-coupled thin-film memory device
- external control device
- false-echo devices
- Faraday-rotation device
- fast-discharge device
- ferrite device
- ferroelectric device
- FET device
- fiber-laser device
- field-access memory device
- field-effect device
- field-effect transistor device
- field-emission device
- field-programmable interconnect device
- file device
- file-protection device
- fixed tap-weight bucket-brigade device
- floating-gate device
- fluidic-device
- follow-up device
- four-layer device
- four-terminal device
- Frame Relay access device
- free-electron device
- freestanding pointing device
- FS device
- full-speed device
- functional device
- galvanomagnetic device
- galvanomagnetic semiconductor device
- gate-array device
- graphic input device
- graphic output device
- gripping device
- groove locating device
- guided-wave acoustooptic device
- guided-wave AO Bragg device
- Gunn device
- Gunn-effect device
- gyromagnetic device
- Hall device
- Hall-effect device
- harbor echo ranging and listening device
- head-cleaning device
- heteroepitaxial device
- heterojunction device
- high-technology device
- high-threshold device
- homing device
- hot-electron device
- human interface device
- hybrid ferromagnet-semiconductor device
- hybrid integrated-circuit device
- hybrid-type device
- I/O device
- identification device
- image-storage device
- imaging device
- implanted device
- incidental radiation device
- industrial data collection device
- infrared charge-coupled device
- input device
- input-output device
- insulated-gate device
- integrated electron device
- integrated injection device
- integrated optic device
- integrating device
- interface device
- interlocking device
- ion-implantation device
- ion-implanted bubble device
- ion-injection electrostatic plasma confinement device
- jelly-bean device
- Josephson device
- Josephson-effect device
- junction device
- junction-gate device
- keying device
- known-good device
- large-area p-n junction device
- laser annealing device
- laser device
- laser welding device
- laser-beam machining device
- leaded device
- leadless device
- left ventricular assist device
- light-detecting device
- light-emitting device
- linear beam device
- linear imaging device
- locked dynamically configurable device
- logic device
- long-channel device
- low-speed device
- low-threshold device
- LS device
- magnetic bubble device
- magnetic detecting device
- magnetic device
- magnetic flux quantum device
- magnetic tunnel junction memory device
- magnetic-wave device
- magnetoelastic-wave device
- magnetoelectronic device
- magnetooptic bubble-domain device
- magnetostatic-wave device
- magnetostrictive device
- magnetotunneling device
- majority-carrier device
- make-and-break device
- manipulating device
- marginal device
- maser device
- matching device
- measurement device
- mechanical switching device
- memory device
- MEMS device
- MEMS-based device
- metal-gate device
- metal-insulator-metal device
- metal-insulator-piezoelectric semiconductor device
- metal-oxide-silicon device
- metal-semiconductor device
- microcomputer device
- microdiscrete device
- microelectromechanical system device
- microelectromechanical system-based device
- microelectronic device
- microfluidic device
- MIDI device
- minority-carrier device
- MIPS device
- MIS device
- MNOS device
- molecule-sized device
- MOS color imaging device
- MOS device
- MOS memory device
- MSW device
- M-type device
- multiaperture device
- multijunction device
- multilayered memory device
- multilevel storage device
- multiple-tap bucket-brigade device
- multiple-unit semiconductor device
- multiport device
- multistable device
- multiterminal device
- n-channel device
- negation device
- negative-resistance device
- night viewing device
- n-n heterojunction device
- noise-rejection device
- nonburst device
- noninverting parametric device
- nonreciprocal field-displacement device
- n-p-n device
- n-terminal device
- one-port device
- open-collector device
- optically coupled device
- optically pumped device
- optoelectronic device
- O-type device
- output device
- overlay device
- oxide-passivated device
- P&P device
- parallel device
- parametric device
- passivated device
- passive device
- pattern recognition device
- p-channel device
- p-channel MOS device
- periodic permanent magnet focusing device
- persistent current device
- persistent-image device
- personal communication device
- photoconducting device
- photoelectric device
- photoemissive device
- photosensitive device
- photovoltaic device
- picking device
- piezoelectric device
- piezomagnetic device
- planar device
- planar-doped barrier device
- plasma device
- plasma-coupled semiconductor device
- plotting device
- plug-and-play device
- plug-in device
- PMOS device
- p-n junction device
- PnP device
- p-n-p device
- p-n-p-n device
- point-contact superconducting device
- pointing device
- polysilicon charge-coupled device
- port protection device
- p-p heterojunction device
- PPM focusing device
- programmable device
- programmable logic device
- protective device
- punch-through device
- pyroelectric thermal imaging device
- quantum-dot resonant tunneling device
- quasioptical device
- quenched domain mode device
- radiation-measuring device
- random-access device
- rapid single flux quantum device
- readout device
- reciprocal device
- recognition device
- rectifying device
- regulating device
- relative pointing device
- restricted radiation device
- reverberation device
- ringing device
- robot control device
- rotating-field bubble device
- rotating-field bubble domain device
- RSFQ device
- safety device
- SAW device
- Schottky barrier semiconductor device
- Schottky device
- Schottky-barrier-gate Gunn-effect digital device
- SCSI device
- security device
- self-powered device
- self-reacting device
- self-synchronous device
- semiconductor device
- semiconductor switching device
- semiconductor-magnetic device
- sensing device
- serial device
- shallow-base device
- short-channel device
- short-circuit-stable device
- silicon imaging device
- silicon-gate MOS memory device
- silicon-on-insulating substrate device
- single-junction device
- single-tap bucket-brigade device
- single-unit semiconductor device
- slot device
- snap-on pointing device
- solid-state device
- SOS device
- sound-absorbing device
- spark-quenching device
- speech recognition device
- spin-wave device
- square-law device
- starting device
- static discharge device
- storage device
- storage display device
- storage-charge device
- stream device
- stream-oriented device
- stroke input device
- superconducting device
- superconducting quantum device
- superconducting quantum interference device
- surface acoustic-wave device
- surface charge-transfer device
- surface mount device
- surface-controlled device
- switching device
- symbolic device
- tape device
- tape-moving device
- TE device
- tensoelectric device
- terminal device
- thermoelectric cooling device
- thermoelectric device
- thermoelectric heating device
- thick-film device
- thin-film device
- Tokamak device
- transferred-electron device
- transferred-electron microwave device
- transit-time device
- traveling magnetic domain memory device
- traveling-wave Gunn effect device
- trip-free mechanical switching device
- tse device
- tube device
- tunnel device
- tunnel emission device
- twisted nematic device
- two-junction bipolar device
- two-port device
- two-terminal device
- ULA device
- uncommitted logic array device
- unidirectional device
- unilateral device
- unpacked device
- vacuum tunnel device
- variable grating mode device
- variable inductance cryogenic device
- vertical junction device
- VGM device
- V-groove MOS device
- virtual device
- visual signal device
- VMOS device
- V-MOS device
- voice-operated device
- voice-operated gain-adjusting device
- voltage-controlled device
- voltage-controlled differential-negative-resistance device
- voltage-controlled DNR device
- voltage-operated device
- wafer printing device
- wireless device
- X-ray detecting device
- YIG deviceThe New English-Russian Dictionary of Radio-electronics > device
-
9 circuit
схема; коло; контур (див. т-ж chip, integration) - air-isolation integrated circuit
- all-diffused circuit
- aluminum-gate MOS circuit
- aluminum-gate circuit
- amplifier integrated circuit
- analog integrated circuit
- AND circuit
- AND-OR circuit
- application specific integrated circuit
- array integrated circuit
- asymmetric-chevron bubble circuit
- asymmetric-chevron circuit
- basic circuit
- beam-leaded integrated circuit
- beam-lead integrated circuit
- bipolar circuit
- bipolar-FET integrated circuit
- breadboard circuit
- built-in self-checking monitoring circuit
- bulk-effect integrated circuit
- catalogue integrated circuit
- ceramic-encapsulated integrated circuit
- charge-coupled device circuit
- charge-coupled circuit
- charge-domain integrated circuit
- charge pumping circuit
- charge-transfer device circuit
- charge-transfer circuit
- chip integrated circuit
- CMOS circuit
- commodity integrated circuit
- common-base circuit
- common-collector circuit
- common-emitter circuit
- compatible integrated circuit
- complementary integrated circuit
- complex integrated circuit
- control integrated circuit
- crosspoint integrated circuit
- current mirror integrated circuit
- custom integrated circuit
- customized integrated circuit
- custom-wired integrated circuit
- Darlington-typecircuit
- Darlingtoncircuit
- dead-on-arrival integrated circuit
- dedicated -design circuit
- dedicated circuit
- depletion-mode integrated circuit
- die integrated circuit
- dielectrically-isolated integrated circuit
- digital integrated circuit
- digital sequential circuit
- diode-array integrated circuit
- discrete-chip integrated circuit
- discrete-component circuit
- discrete Fourier transform integrated circuit
- discrete integrated circuit
- distributed-element equivalent circuit
- domain-originated integrated circuit
- dry-processed integrated circuit
- dual in-line integrated circuit
- ECL circuit
- EFL integrated circuit
- elevated-electrode integrated circuit
- encapsulated integrated circuit
- enchancement-mode integrated circuit
- epitaxial integrated circuit
- epitaxial passivated integrated circuit
- equivalent circuit
- face-down integrated circuit
- fanout-free circuit
- fault-free circuit
- fault-tolerant circuit
- faulty circuit
- field-effect transistor integrated circuit
- field-effect integrated circuit
- field-programmable logic integrated circuit
- film-mounted integrated circuit
- fine-line integrated circuit
- fine-pattern integrated circuit
- flat-pack integrated circuit
- flip-chip integrated circuit
- flip-flop circuit
- front-end circuit
- full-custom integrated circuit
- functional integrated circuit
- gang-bonding integrated circuit
- gate-equivalent circuit
- governor integrated circuit
- guard-ring isolated integrated circuit
- Gunn-effect integrated circuit
- heterointegrated circuit
- high-density integrated circuit
- highly integrated circuit
- high-performance circuit
- high-speed integrated circuit
- high-technology integrated circuit
- high-threshold logic circuit
- high-volume circuit
- home-grown integrated circuit
- homointegrated circuit
- hybrid circuit
- hybrid dielectric integrated circuit
- hybrid film [hybrid-type] circuit
- I2L circuit
- infra-red integrated circuit
- insulated-substrate integrated circuit
- integrated circuit
- interface circuit
- isoplanar-based integrated circuit
- Josephson-junctioncircuit
- Josephsoncircuit
- ion-implanted integrated circuit
- junction isolated integrated circuit
- known-good circuit
- ladder-like circuit
- ladder circuit
- laminated integrated circuit
- large-scale integrated circuit
- leading-edge integrated circuit
- linear integrated circuit
- LOCOS integrated circuit
- logic integrated circuit
- low-noise circuit
- low-profile integrated circuit
- LSI circuit
- lumped-element equivalent circuit
- made-to-order integrated circuit
- master-slice integrated circuit
- matrix integrated circuit
- megascale integrated circuit
- MOSBIP integrated circuit
- memory circuit
- merchant integrated circuit
- merged integrated circuit
- microelectronic circuit
- Micronor integrated circuit
- micron-scale integrated circuit
- microprocessor integrated circuit
- molecular integrated circuit
- monobrid circuit
- monolithic circuit
- MOS-transistor circuit
- MOS circuit
- MSI circuit
- multichip circuit
- multilayer integrated circuit
- multilevel integrated circuit
- multiple-chip circuit
- naked integrated circuit
- NAND circuit
- noise-immunity integrated circuit
- nonredundant integrated circuit
- NOR circuit
- off-the-shelf integrated circuit
- one-chip integrated circuit
- one-mask integrated circuit
- open-collector integrated circuit
- optical integrated circuit
- optoelectronic integrated circuit
- OR circuit
- oxide-isolated integrated circuit
- partially self-checking circuit
- photo-integrated circuit
- photonic integrated circuit
- planar integrated circuit
- planar-mounted integrated circuit
- plastic encapsulated integrated circuit
- plastic integrated circuit
- p-n junction isolated integrated circuit
- polymer thick-film circuit
- prediffused integrated circuit
- programmable integrated circuit
- proprietary integrated circuit
- quick Fourier transform circuit
- race-free circuit
- radiation-hardened integrated circuit
- RС circuit
- redundant integrated circuit
- refreshing circuit
- refresh circuit
- sample-hold circuit
- scaled integrated circuit
- scan design circuit
- schematic circuit
- Schottky TTL integrated circuit
- Schottky TTL circuit
- screen-printed integrated circuit
- sealed-junction integrated circuit
- self-aligned integrated circuit
- self-cased LSI circuit
- self-checking [self-testing] integrated circuit
- semiconductor circuit
- semicustom integrated circuit
- semicustomized integrated circuit
- S/H circuit
- single-chipcircuit
- singlecircuit
- skimming-and-reset circuit
- slice circuit
- small-integration circuit
- smart-power integrated circuit
- SOI integrated circuit
- solid-state integrated circuit
- solid integrated circuit
- SOS integrated circuit
- stacked circuit
- standard сеll-based semicustom integrated circuit
- Strassen algorithm LSI circuit
- stripline integrated circuit
- submicron integrated circuit
- subnanosecond integrated circuit
- superconducting integrated circuit
- superconductor integrated circuit
- surface-mounted integrated circuit
- test-manufactured integrated circuit
- thick-film hybrid integrated circuit
- thick-film integrated circuit
- thin-film hybrid integrated circuit
- thin-film integrated circuit
- three-diffusion integrated
- three-dimensional integrated circuit
- transistor circuit
- tri-mask integrated circuit
- UHSI circuit
- uncommitted integrated circuit
- unipolar integrated circuit
- user specified integrated circuit
- vacuum integrated circuit
- VHSI circuit
- VLSI circuit
- wafer-scale integrated circuit
- wired OR circuit
- 3D integrated circuit -
10 equipment
оборудование; снаряжение; оснащение; оснастка (напр. станка); приспособления; приборы; аппаратура; арматура; принадлежности; подвижной состав; воен. материальная часть; боевая техника- equipment arrangement - equipment availability - equipment building - equipment capital costs - equipment casualty - equipment certificate - equipment certification - equipment certification requirement - equipment check - equipment checkout - equipment clock - equipment compatibility - equipment condition data - equipment damage - equipment dependability - equipment depot - equipment design failure - equipment error - equipment facilities - equipment failure - equipment failure information - equipment failure log - equipment for road construction - equipment for the manufacture of asbestos cement - equipment identification register - equipment identity register - equipment in place - equipment inspection - equipment-intermodulation noise - equipment investments - equipment lay-out - equipment layout - equipment lease - equipment leasing - equipment level controller - equipment location - equipment longevity - equipment maintenance facility - equipment maintenance management program - equipment maintenance officer - equipment maintenance ratio - equipment maintenance report - equipment maintenance team - equipment manufacturer code - equipment manufacturing failure - equipment-modification list - equipment monitoring - equipment nomenclature - equipment operating procedure - equipment operation test - equipment package - equipment performance log - equipment performance report - equipment placement - equipment programming - equipment protection device - equipment qualification - equipment rack - equipment ready date - equipment rebuilding - equipment reference book - equipment regulation - equipment reliability - equipment reliability status report - equipment repair time - equipment replacement - equipment replacement network - equipment reservation - equipment revamping - equipment review board - equipment room - equipment safety - equipment salvage - equipment schedule - equipment serviceability criterion - equipment side - equipment specifications - equipment spendings - equipment status board - equipment status chart - equipment status indication - equipment status log - equipment supervision - equipment terminal - equipment unavailability - equipment upgrading - equipment wire - accessory equipment - acoustic emission equipment - acoustical equipment - actuated equipment - add-on equipment - air equipment - air-chucking equipment - air-conditioning equipment - air-humidifying equipment - air-painting equipment - ancillary equipment - answering equipment - assembly equipment - balancing equipment - blasting equipment - board equipment - bolt-on equipment - brake equipment - built-in test equipment - calibration equipment - CAM equipment - capital equipment - cargo handling equipment - carrying and lifting equipment - centrifugal pumping equipment - checking equipment - collective protective equipment - compressor equipment - computer-aided test equipment - computer-automated equipment - concrete-handling equipment - consumption equipment - controllable balancing equipment - conveying equipment - coolant clarification equipment - cost-effective equipment - crane equipment - crane electrical equipment - crushing and screening equipment - data-processing equipment - dedicated equipment - defective equipment - de-icer equipment - demonstration equipment - detection equipment - detritus equipment - diagnosis equipment - diagnostic equipment - digital readout equipment - dimensional-inspection equipment - direction-finding equipment - driven equipment - durable equipment - electrical equipment - electrical discharge equipment - electroheat equipment - electrothermal equipment - emergency equipment - energy equipment - energy-intensive equipment - erection equipment - exhibition equipment - experimental equipment - external test equipment - FA-related equipment - fabricating equipment - fabrication equipment - factory-installed equipment - failed equipment - farming equipment - faulty equipment - feeding equipment - field-balancing equipment - filling equipment - finishing equipment - fire-fighting equipment - fire safety equipment - fixed equipment - fixed path equipment - flatness testing equipment - fuel handling equipment - gaging equipment - garage equipment - garage-repair equipment - gas equipment - gas-welding equipment - gear testing equipment - general-purpose equipment - general test equipment - grading equipment - greasing equipment - grit-dredging equipment - handling equipment - hard automation equipment - haulage equipment - hauling equipment - heat-treating equipment - hi-fi equipment - high-fi equipment - high-technology equipment - higher-horsepower equipment - homemade fire-fighting equipment - hydraulic equipment - hydraulic tracing equipment - idle equipment - ignition equipment - independent equipment - industrial equipment - industrial cleaning equipment - input equipment - inspection equipment - installation equipment - installed equipment - instrumental equipment - instrumented equipment - interconnecting equipment - jaw-type work-holding equipment - joining equipment - laboratory equipment - lifting equipment - lighting equipment - loading equipment - loading and unloading equipment for dryer cars - machine-tool equipment - machining equipment - maintenance equipment - maintenance-and-support equipment - manipulating equipment - manually controlled equipment - manufacturing equipment - material-handling equipment - materials-handling equipment - material mining equipment - MDI equipment - measurement-processing equipment - measuring and control equipment - measuring equipment - mechanical handling equipment - metal-cutting equipment - metering equipment - microprocessing equipment - microwave heating equipment - military equipment - mill-turn equipment - mobile equipment - monitoring equipment - mountable pile-driving equipment - multidimension gaging equipment - multisensor equipment - noise abatement equipment - non-assembled equipment - nonrepairable equipment - nonstandard equipment - off-road equipment - operational equipment - optional equipment - outdated equipment - outmoded equipment - out-of-repair equipment - paint equipment - parts-handling equipment - parts-washing equipment - pattern equipment - peripheral equipment - personal protection equipment - personal protective equipment - pipeline equipment - pipeline-laying equipment - pipeline-scraping equipment - pneumatic equipment - pile-driving equipment - piling equipment - portable jacking equipment - postprocess gaging equipment - preparatory machining equipment - presetting equipment - primary equipment - primary machining equipment - process control monitoring equipment - process equipment - process monitoring equipment - processing equipment - production equipment - production test equipment - professional drilling equipment - protective equipment - proving-and-indicating equipment - pulling-and-running equipment - pump-and-compressor equipment - pumping equipment - quarry equipment - reconditioning equipment - redundant equipment - refrigeration equipment - rejected equipment - reliable equipment - remote control equipment - remove an equipment - repair equipment - repairable equipment - reserve equipment - residential equipment - retrofit equipment - rippers equipment - road-building equipment - rope-suspended boom equipment - rotating equipment - round trip equipment - safeguarding equipment - safety equipment - safety-survival equipment - secondary equipment - self-balancing equipment - sensing equipment - service checkout equipment - service equipment - snow-cleaning equipment - snow-handling equipment - spare equipment - spark erosion equipment - special support equipment - special test equipment - standalone equipment - standard equipment - standby equipment - supervisory equipment - supplementary equipment - support equipment - supporting equipment - surface-measuring equipment - swarf-handling equipment - tank cleaning equipment - telescopic equipment - test equipment - test-and-maintenance equipment - testing equipment - tool equipment - tool-holding equipment - tooling equipment - tool-setting equipment - touch-probe inspection equipment - towing equipment - tracer equipment - traction-type equipment - training equipment - transferring equipment - transport equipment - transportation equipment - turning gaging equipment - unattended equipment - underground equipment - universal equipment - unrepairable equipment - up-to-date construction equipment - used equipment - utility equipment - value-added equipment - vandalproof equipment - vehicle greasing equipment - warehousing equipment - waste-minimization equipment - water-fed equipment - water-purification equipment - water quality monitoring equipment - water-treatment equipment - weed-control equipment - weighing equipment - weld deposition equipment - welding equipment - welding deposition equipment - wheel alignment equipment - work-holding equipment - workover equipment -
11 interface
1) граница раздела; поверхность раздела || разделять; являться границей или поверхностью раздела || граничный; расположенный на границе или поверхности раздела ( двух сред); разделяющий2) вчт интерфейс (программное или аппаратное средство взаимодействия и обмена информацией между устройствами, между программами, между устройствами и программами или между человеком и компьютером) || представлять собой интерфейс; служить интерфейсом; снабжать интерфейсом || интерфейсный3) сопряжение; стык; согласование || сопрягать; стыковать; согласовывать || сопрягающий; стыковочный; согласующий4) устройство сопряжения; стыковочный узел; согласующее устройство5) взаимодействие; связь || взаимодействовать; связывать(ся) || взаимодействующий; связанный6) средство взаимодействия; устройство связи7) смежная область (напр. наук) || смежный; относящийся к смежной области (напр. наук)•- air-epi interface
- Apple desktop interface - broadband interface
- call-level interface
- cathode interface
- CD-ROM interface
- channel interface
- chatbot interface
- command interface
- command-line interface
- common gateway interface - composite video interface - computer-to-cassette interface - desktop management interface
- dielectric interface
- diffuse interface
- digital-multiplexed interface - electrical interface
- enhanced IDE interface - expansion interface
- fiber channel interface - flat panel interface
- FP interface
- friendly user interface
- front-end interface
- general circuit interface - hard disk interface
- hardware interface
- head-disk interface
- heterojunction interface
- high performance parallel interface
- human-computer interface
- human-machine interface
- iconic interface
- IDE interface
- infrared interface
- input/output interface
- integrated device electronics interface
- intelligent interface - inter-carrier interface - intuitive user interface - keyboard interface
- land interface
- layered interface - man-computer interface
- man-machine interface - mouse interface
- multiple document interface - Panasonic interface
- parallel interface
- peripheral interface - p-n junction interface
- physical interface
- planar interface
- plastic interface - processor interface
- processor-to-cassette interface
- program interface
- programmable interface
- programmable communications interface
- programmable peripheral interface
- radar-computer interface - RGB TTL interface
- RS232 interface
- RS232C interface
- RS-422 interface
- satellite interface
- scalable coherent interface - seed-melt interface
- serial interface
- serial communication interface
- serial communication interface plus
- serial peripheral interface - software interface
- Sony interface - standard interface
- status control interface
- studio interface
- subscriber-line interface - system interface
- system programming interface
- tape drive interface
- tape backup drive interface - transmitter-receiver interface - visual interface
- WIMP interface -
12 interface
1) граница раздела; поверхность раздела || разделять; являться границей или поверхностью раздела || граничный; расположенный на границе или поверхности раздела ( двух сред); разделяющий2) вчт. интерфейс (программное или аппаратное средство взаимодействия и обмена информацией между устройствами, между программами, между устройствами и программами или между человеком и компьютером) || представлять собой интерфейс; служить интерфейсом; снабжать интерфейсом || интерфейсный3) сопряжение; стык; согласование || сопрягать; стыковать; согласовывать || сопрягающий; стыковочный; согласующий4) устройство сопряжения; стыковочный узел; согласующее устройство5) взаимодействие; связь || взаимодействовать; связывать(ся) || взаимодействующий; связанный6) средство взаимодействия; устройство связи7) смежная область (напр. наук) || смежный; относящийся к смежной области (напр. наук)•- advanced SCSI programming interface
- advanced technology attachment packet interface
- advanced technology attachment software programming interface
- AES/EBU interface
- air-epi interface
- Apple desktop interface
- application binary interface
- application programming interface
- application transaction management interface
- attachment unit interface
- Audio Engineering Society/European Broadcasting Union interface
- audio interface
- baseband interface
- basic rate interface
- BlueTooth interface
- Borland graphic interface
- brain-machine interface
- broadband interface
- call-level interface
- cathode interface
- CD-ROM interface
- channel interface
- chatbot interface
- command interface
- command-line interface
- common gateway interface
- common programming interface for communications
- communication interface
- composite video interface
- computer graphics interface
- computer interface
- computer-to-cassette interface
- computer-to-PBX interface
- copper distributed data interface
- data trunk interface
- deposit-substrate interface
- desktop management interface
- dielectric interface
- diffuse interface
- digital-multiplexed interface
- direct driver interface
- display control interface
- DOS protected mode interface
- EIA interface
- electrical interface
- enhanced IDE interface
- enhanced integrated device electronics interface
- enhanced small disk interface
- epi-substrate interface
- expansion interface
- fiber channel interface
- fiber distributed data interface
- film-substrate interface
- flat panel interface
- FP interface
- friendly user interface
- front-end interface
- general circuit interface
- graphic device interface
- graphical user interface
- growth interface
- hard disk interface
- hardware interface
- head-disk interface
- heterojunction interface
- high performance parallel interface
- human-computer interface
- human-machine interface
- iconic interface
- IDE interface
- infrared interface
- input/output interface
- integrated device electronics interface
- intelligent instrumentation interface
- intelligent interface
- intelligent peripheral interface
- interactive interface
- inter-carrier interface
- Internet server application programming interface
- inter-network interface
- intuitive user interface
- Java naming and directory interface
- JTAG interface
- keyboard interface
- land interface
- layered interface
- license server application programming interface
- local distributed data interface
- local management interface
- logical interface
- man-computer interface
- man-machine interface
- media control interface
- medium dependent interface
- medium independent interface
- memory interface
- message passing interface
- messaging application programming interface
- Mitsumi interface
- mouse interface
- multiple document interface
- musical instrument digital interface
- network application programming interface
- network terminal interface
- network-to-network interface
- object-oriented interface
- open applications interface
- open data-link interface
- open prepress interface
- Panasonic interface
- parallel interface
- peripheral interface
- phantom interface
- physical interface
- planar interface
- plastic interface
- p-n interface
- p-n junction interface
- portable operating system interface
- primary rate interface
- processor interface
- processor-to-cassette interface
- program interface
- programmable communications interface
- programmable interface
- programmable peripheral interface
- radar-computer interface
- remote desktop management interface
- remote user interface
- RGB analog interface
- RGB TTL interface
- RS232 interface
- RS232C interface
- RS-422 interface
- satellite interface
- scalable coherent interface
- SCSA device programming interface
- SCSI parallel interface
- seed-melt interface
- serial communication interface plus
- serial communication interface
- serial interface
- serial peripheral interface
- server-requestor programming interface
- shielded distributed data interface
- slider-disk interface
- small computer system interface
- social user interface
- software interface
- Sony interface
- Sony/Philips digital interface
- speaker voice identification application programming interface
- speech application programming interface
- speech recognition application programming interface
- standard interface
- status control interface
- studio interface
- subscriber line acoustic processing interface
- subscriber-line interface
- superconducting-normal interface
- system interface
- system programming interface
- tape backup drive interface
- tape drive interface
- telephony application programming interface
- telephony server application programming interface
- terminal interface
- transmitter-receiver interface
- twisted-pair distributed data interface
- user interface
- usernetwork interface
- user-to-network interface
- virtual control program interface
- virtual device interface
- visual interface
- WIMP interfaceThe New English-Russian Dictionary of Radio-electronics > interface
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13 De Forest, Lee
SUBJECT AREA: Broadcasting, Electronics and information technology, Photography, film and optics, Recording, Telecommunications[br]b. 26 August 1873 Council Bluffs, Iowa, USAd. 30 June 1961 Hollywood, California, USA[br]American electrical engineer and inventor principally known for his invention of the Audion, or triode, vacuum tube; also a pioneer of sound in the cinema.[br]De Forest was born into the family of a Congregational minister that moved to Alabama in 1879 when the father became President of a college for African-Americans; this was a position that led to the family's social ostracism by the white community. By the time he was 13 years old, De Forest was already a keen mechanical inventor, and in 1893, rejecting his father's plan for him to become a clergyman, he entered the Sheffield Scientific School of Yale University. Following his first degree, he went on to study the propagation of electromagnetic waves, gaining a PhD in physics in 1899 for his thesis on the "Reflection of Hertzian Waves from the Ends of Parallel Wires", probably the first US thesis in the field of radio.He then joined the Western Electric Company in Chicago where he helped develop the infant technology of wireless, working his way up from a modest post in the production area to a position in the experimental laboratory. There, working alone after normal working hours, he developed a detector of electromagnetic waves based on an electrolytic device similar to that already invented by Fleming in England. Recognizing his talents, a number of financial backers enabled him to set up his own business in 1902 under the name of De Forest Wireless Telegraphy Company; he was soon demonstrating wireless telegraphy to interested parties and entering into competition with the American Marconi Company.Despite the failure of this company because of fraud by his partners, he continued his experiments; in 1907, by adding a third electrode, a wire mesh, between the anode and cathode of the thermionic diode invented by Fleming in 1904, he was able to produce the amplifying device now known as the triode valve and achieve a sensitivity of radio-signal reception much greater than possible with the passive carborundum and electrolytic detectors hitherto available. Patented under the name Audion, this new vacuum device was soon successfully used for experimental broadcasts of music and speech in New York and Paris. The invention of the Audion has been described as the beginning of the electronic era. Although much development work was required before its full potential was realized, the Audion opened the way to progress in all areas of sound transmission, recording and reproduction. The patent was challenged by Fleming and it was not until 1943 that De Forest's claim was finally recognized.Overcoming the near failure of his new company, the De Forest Radio Telephone Company, as well as unsuccessful charges of fraudulent promotion of the Audion, he continued to exploit the potential of his invention. By 1912 he had used transformer-coupling of several Audion stages to achieve high gain at radio frequencies, making long-distance communication a practical proposition, and had applied positive feedback from the Audion output anode to its input grid to realize a stable transmitter oscillator and modulator. These successes led to prolonged patent litigation with Edwin Armstrong and others, and he eventually sold the manufacturing rights, in retrospect often for a pittance.During the early 1920s De Forest began a fruitful association with T.W.Case, who for around ten years had been working to perfect a moving-picture sound system. De Forest claimed to have had an interest in sound films as early as 1900, and Case now began to supply him with photoelectric cells and primitive sound cameras. He eventually devised a variable-density sound-on-film system utilizing a glow-discharge modulator, the Photion. By 1926 De Forest's Phonofilm had been successfully demonstrated in over fifty theatres and this system became the basis of Movietone. Though his ideas were on the right lines, the technology was insufficiently developed and it was left to others to produce a system acceptable to the film industry. However, De Forest had played a key role in transforming the nature of the film industry; within a space of five years the production of silent films had all but ceased.In the following decade De Forest applied the Audion to the development of medical diathermy. Finally, after spending most of his working life as an independent inventor and entrepreneur, he worked for a time during the Second World War at the Bell Telephone Laboratories on military applications of electronics.[br]Principal Honours and DistinctionsInstitute of Electronic and Radio Engineers Medal of Honour 1922. President, Institute of Electronic and Radio Engineers 1930. Institute of Electrical and Electronics Engineers Edison Medal 1946.Bibliography1904, "Electrolytic detectors", Electrician 54:94 (describes the electrolytic detector). 1907, US patent no. 841,387 (the Audion).1950, Father of Radio, Chicago: WIlcox \& Follett (autobiography).De Forest gave his own account of the development of his sound-on-film system in a series of articles: 1923. "The Phonofilm", Transactions of the Society of Motion Picture Engineers 16 (May): 61–75; 1924. "Phonofilm progress", Transactions of the Society of Motion Picture Engineers 20:17–19; 1927, "Recent developments in the Phonofilm", Transactions of the Society of Motion Picture Engineers 27:64–76; 1941, "Pioneering in talking pictures", Journal of the Society of Motion Picture Engineers 36 (January): 41–9.Further ReadingG.Carneal, 1930, A Conqueror of Space (biography).I.Levine, 1964, Electronics Pioneer, Lee De Forest (biography).E.I.Sponable, 1947, "Historical development of sound films", Journal of the Society of Motion Picture Engineers 48 (April): 275–303 (an authoritative account of De Forest's sound-film work, by Case's assistant).W.R.McLaurin, 1949, Invention and Innovation in the Radio Industry.C.F.Booth, 1955, "Fleming and De Forest. An appreciation", in Thermionic Valves 1904– 1954, IEE.V.J.Phillips, 1980, Early Radio Detectors, London: Peter Peregrinus.KF / JW -
14 printing
1. печать, печатание2. фотографическое копирование; копирование на формную пластину3. печатное издание4. тираж5. полиграфия, полиграфическая промышленность6. различные сорта печатной бумагиprinting together — печатание «со своим оборотом»
printing two-up — печатание двойников, параллельное печатание с двух одинаковых форм
printing verse — печатание на обороте, запечатывание оборотной стороны
address printing — адресование, печатание адреса
arc printing — дуговая печать, печатание с помощью электрической дуги
7. печатание на оборотной стороне прозрачной плёнкиbackground printing — фоновая печать, печатание фона
bible printing — словарная бумага, библьдрук
bichromate printing — печатание с форм, изготовленных с использованием хромированных коллоидов
8. печатание голубой краской; светокопирование9. изготовление синих копий, изготовление «синек»Braille printing — Брайлевская печать, печать для слепых
bronze printing — бронзирование, печатание бронзовой краской
10. печатание на картонных заготовках; печатание на картоне11. производство картонных упаковокcode printing — печатание кодовых меток, печатание кодовых знаков, кодирование, шифрование
12. цветная печатная бумагаcolor process printing — многокрасочное печатание с форм, изготовленных фотомеханическим способом
13. контактная печать14. контактное копированиеprinting lamp — лампа для копирования, копировальная лампа
15. печатание издания в нескольких вариантах с учётом интересов потребителей16. печатание по требованию одного экземпляра издания17. прямое контактное копирование18. прямая печать19. печатание с первичной формы20. печатание изобразительной продукцииprinting contrast — контраст, реализуемый при печатании
21. печатание на прозрачном материалеdot-in-dot printing — печатание с точной приводкой, печатание «точка в точку»
dot matrix character printing — печатание знаков, формируемых точечной матрицей
printing process — печатный процесс; процесс печатания
22. двукратное запечатывание23. комбинирование деталей двух разных негативов на одном позитиве или печатной формеduotone printing — печатание двухкрасочных репродукций с одноцветного оригинала, дуплекс-автотипия
electrophoretic printing — электрофоретическая печать, способ электрофоретической печати
electrostatographic printing — электрография, электрографическая печать
embossed printing for blind — рельефная печать для слепых, Брайлевская печать
facsimile printing — факсимильное воспроизведение, факсимильная печать
ferromagnetic printing — печатание ферромагнитными красками, магнитографская печать, магнитография
flat-bed printing — печатание на плоскопечатных машинах, печатание с плоских форм высокой печати
flexographic printing — флексографская печать, печатание с эластичных форм
form skip printing — печатание формуляров с пропусками отдельных пунктов на последовательно идущих страницах
24. четырёхкрасочная печатьprinting device — печатающее устройство; устройство печати
printing station — пункт вывода на печать; станция печати
25. печатание в четыре краски26. многокрасочная печать всеми основными краскамиgelatin printing — фототипия, печать с желатиновых печатных форм
27. нанесение клеевого слоя28. гуммированиеheat-set printing — печатание красками, закрепляющимися под действием нагрева
helios printing — гелиопечать, гелиография
hot foil printing — горячее тиснение фольгой, тиснение фольгой с использованием нагретого штампа
29. переводной способ копирования30. печатание через промежуточную поверхность; офсетная печать31. ведомственная печать32. внутрифирменная печатьiridescent printing — радужная печать; печать враскат
level impression printing — печатание с равномерным натиском, печатание с равномерным давлением
33. печатание литографским способом, литография34. офсетная печатьmagnetic ink printing — печатание магнитными красками, магнитографская печать, магнитография
35. картографическая печать, картопечатание36. производство картографической продукции37. копирование изображения на металлическую пластину38. печатание на металле39. акцидентная печать40. печатание акцидентной продукции41. однокрасочная печать42. печатание однокрасочной продукцииprinting pressure — давление печатания, натиск
43. многокрасочная печать44. печатание многокрасочной продукцииmultigraph printing — печатание с ручного набора, закреплённого на цилиндре
45. печатание газетно-журнальной продукции46. газетно-журнальное производство47. печатание газет48. газетное производствоoff-register printing — печатание с несовмещением, печатание с нарушением приводки
offset printing — офсет, офсетная печать
49. распечатка информации, хранящейся в базе данных вычислительной системы по требованию50. печатание по требованию51. печатание персонализированных изданий52. оптическая печать53. проекционное копирование54. печатание на упаковочных материалах55. производство упаковкиpackaging printing and converting — печать и изготовление упаковок; печать и изготовление тары
56. фотография57. фотопечать; копированиеphotographic offset printing — офсетная печать с форм, изготовленных фотомеханическим способом
58. глубокая печать59. печатание с гелиогравюрphotolithooffset printing — офсетная печать с форм, изготовленных фотомеханическим способом
60. печатание с форм, изготовленных фотомеханическим способом61. фотомеханический способ размножения62. печатание с гравированных медных пластин63. печатание вкладных иллюстрацийprocess printing — многокрасочная печать с форм, изготовленных фотомеханическим способом
64. печатание издательской продукции65. заключительная стадия печатанияraised printing — печатание с последующим оплавлением рельефа; рельефная печать
66. рефлексное копирование67. рефлексное печатание68. печатание с выворотных форм69. печатание с реверсивным приводом цилиндров; реверсивное печатание70. печатание на обороте, запечатывание оборотной стороныrotary printing — ротационная печать, печатание на ротационных машинах
71. печатание многокрасочных газет «по сырому»72. цветные краски для печатания газет73. растровая печать74. второй завод, допечаткаprinting mistake — опечатка, типографская ошибка
75. второй прогонselective printing — избирательное печатание, печатание с избирательным воспроизведением знаков
76. малотиражная печать77. малотиражное копированиеside-by-side printing — радужная печать, печать враскат
small offset printing — «малый офсет», печатание малоформатной продукции офсетным способом
solid printing — печатание со сплошных форм, печатание плашек
solid color printing — печатание со сплошных форм цветными красками, печатание цветных плашек
solventless printing — печатание красками, не содержащими растворителя
split color printing — радужная печать, печать враскат
78. трафаретная печать79. ротаторная печатьsublimatic heat transfer printing — термодекалькомания, сублимационная печать
test printing — пробное печатание, изготовление пробных оттисков
thermal printing — термопечать, термографская печать, термография; печатание термокрасками
thermographic printing — термопечать, термографская печать, термография, печатание термокрасками
three-color process printing — трёхкрасочная печать с цветоделённых печатных форм, изготовленных фотомеханическим способом
three-over-one printing — печатание красочностью 3+1
80. печатание на тканях81. печатание на тонкой бумаге82. декалькомания, печатание переводных изображений83. печатание с переносом изображенияtrouble-free printing — бесперебойное печатание, печатание без помех и перебоев
vapor printing — «дымовая» печать, печатание паром
water-based ink printing — печатание водными красками, печатание красками на водной основе
web printing — печатание на рулонном материале, рулонная печать
wood block printing — печатание с деревянного клише; ксилография
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15 PDM
- широтно-импульсная модуляция
- фазоразностная модуляция
- управление данными об изделии
- поверхностная акустическая волна
- модуляция по длительности импульса
- модуль распределения питания
модуль распределения питания
-
[Интент]
Рис. APC
Модуль для подачи питания на трехфазную нагрузку
Рис. APC
Модуль для подачи питания на однофазные нагрузкиПараллельные тексты EN-RU
Factory assembled and tested Power Distribution Modules include circuit breaker, power cord, power connection, and circuit monitoring.
Собранные и проверенные на заводе-изготовиетеле модули распределения питания включают в себя автоматический выключатель, кабель, кабельную розетку и средства контроля состояния линии питания.
A variety of breaker and connector options can be chosen to supply either three-phase or single-phase power to the load.
Широкий выбор автоматических выключателей и кабельных розеток позволяет легко подобрать нужный модуль для подачи питания на трехфазные и однофазные нагрузки.
When demand rises and expansion becomes necessary, simply plug in new Power Distribution Modules. The factory-assembled modules, which include circuit breaker, power cord, and power connection, can be installed in mere minutes. There are multiple power ratings and power cord lengths for low to high power, guaranteeing compatibility and quick, easy, and convenient installation.
[APC]Когда потребляемая мощность увеличивается и необходимо расширение системы бесперебойного питания, то достаточно просто вставить новые модули распределения питания. Собранные на заводе-изготовителе модули, состоящие из автоматического выключателя, кабеля и кабельной розетки, можно установить за несколько минут. Модули поставляются на различные номинальные токи и с кабелями различной длины, что позволяет легко подобрать нужный модуль, быстро и без особого труда его установить.
[Перевод Интент]
How to install the PDM
Note: Some Power Distribution Units have filler plates installed. When a PDM is to be installed, the filler plate must be removed from the busbar.
1 Press down on the clip.
2 Pull out the plate from the unit. (Do not throw away the filler plate. Keep it for potential later use).3 Verify that all the breakers are in the OFF position.
4 Press the red button to release the latch.
5 Pull open the latch.Vertical Rack Distribution Panel
Horizontal Rack Distribution Panel
6 Feed the cable(s) up through the top opening in the enclosure and into the cable power troughs (if applicable) on top of enclosures.
How to install a PDM circuit breaker handle tie1 Locate the handle tie above the circuit breaker handles aligning the two tabs between the three handles.
2 Push the handle tie towards the circuit breaker handles until it snaps into position. Check to make sure that the handle tie is secure.
3 The handle tie can be removed by pulling it from the circuit breaker handles.Тематики
- НКУ (шкафы, пульты,...)
- источники и системы электропитания
EN
модуляция по длительности импульса
широтно-импульсная модуляция
ШИМ
—
[Е.С.Алексеев, А.А.Мячев. Англо-русский толковый словарь по системотехнике ЭВМ. Москва 1993]Тематики
Синонимы
EN
управление данными об изделии
Системы PDM обобщают такие технологии, как:
EDM (engineering data management) - управление инженерными данными,
PIM (product information management) - управление информацией об изделии,
TDM (technical data management) - управление техническими данными,
TIM (technical information management) - управление технической информацией,
а также другие системы, которые используются для манипулирования информацией, всесторонне определяющей конкретное изделие. Короче говоря, любая информация, необходимая на том или ином этапе жизненного цикла изделия, может управляться системой PDM, которая предоставляет корректные данные всем пользователям и всем промышленным информационным системам по мере надобности. Наряду с данными, PDM управляет и проектом - процессом разработки изделия, контролируя собственно информацию об изделии - "продукте", о состоянии объектов данных, об утверждении вносимых изменений, осуществляя авторизацию и другие операции, которые влияют на данные об изделии и режимы доступа к ним каждого конкретного пользователя.
Таким образом, речь идет о полном, централизованном и постоянном автоматизированном контроле за всей совокупностью данных, описывающих как само изделие, так и процессы его конструирования, производства, эксплуатации и утилизации.
[ http://www.morepc.ru/dict/]Тематики
EN
фазоразностная модуляция
—
[Л.Г.Суменко. Англо-русский словарь по информационным технологиям. М.: ГП ЦНИИС, 2003.]Тематики
EN
широтно-импульсная модуляция
ШИМ
Последовательный сигнал, информативным в котором является ширина импульса при постоянной частоте следования.
[ http://www.morepc.ru/dict/]
широтно-импульсная модуляция
-
[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва]Тематики
- электротехника, основные понятия
Синонимы
EN
06.04.13 поверхностная акустическая волна [ surface acoustic wave; SAW]: Электроакустический эффект, используемый в системах автоматической идентификации, когда микроволновые радиосигналы малой мощности с помощью пьезоэлектрического кристалла в радиочастотной метке преобразуются в ультразвуковые поверхностные акустические волны.
Примечание - Информация об уникальной идентификации содержится в фазово-временных вариациях отраженного радиочастотной меткой сигнала.
<2>4 Сокращения
ARQ
Автоматический запрос повтора [Automatic Repeat Request]
ASK
Амплитудная манипуляция [Amplitude Shift Keying]
BPSK
Бинарная фазовая манипуляция [Binary Phase Shift Keying]
CDMA
Множественный доступ с кодовым разделением каналов [Code Division Multiple Access]
CSMA
Множественный доступ с анализом состояния канала передачи данных [Carrier Sense Multiple Access]
CSMA/CD
Множественный доступ с анализом состояния канала передачи данных и обнаружением конфликтов [Carrier Sense Multiple Access with Collision Detection]
DBPSK
Дифференциальная бинарная фазовая манипуляция [Differential binary phase shift keying]
DSSS
Широкополосная модуляция с непосредственной передачей псевдослучайной последовательности [Direct sequence spread spectrum modulation]
EIRP (ЭИИМ)
Эквивалентная изотропно-излучаемая мощность [Equivalent Isotropically Radiated Power]
EMI
Электромагнитная помеха [ElectroMagnetic Interference]
ETR
Технический отчет ETSI [European Telecommunications Report]
ETS
Телекоммуникационный стандарт ETSI [European Telecommunications Standard]
ETSI
Европейский институт по стандартизации в области телекоммуникаций [European Telecommunications Standards Institute]
FHSS
Широкополосная модуляция с дискретной перестройкой несущей частоты [Frequency Hopping Spread Spectrum]
FSK
Частотная манипуляция [Frequency Shift Keying]
GHz (ГГц)
Гигагерц [Gigahertz]
GMSK
Минимальная гауссовская манипуляция [Gaussian Minimum Shift Keying]
kHz (кГц)
Килогерц [Kilohertz]
MSK
Минимальнофазовая частотная манипуляция [Minimum shift keying]
MHz (МГц)
Мегагерц [Megahertz]
OBE
Навесное оборудование [On-Board Equipment]
PDM
Модуляция импульса по длительности, широтно-импульсная модуляция [Pulse Duration Modulation]
PM
Фазовая модуляция [Phase modulation]
PPM (ФИМ)
Фазоимпульсная модуляция [Modulation (pulse position)]
PSK
Фазовая манипуляция [Phase Shift Keying]
PWM
Широтно-импульсная модуляция [Pulse Width Modulation]
RF/DC
Обмен данными системы радиочастотной идентификации [Radio frequency data communication]
RFI
Радиопомеха [Radio frequency interference]
RSSI
Индикатор уровня принимаемого сигнала [Receiving Signal Strength Indicator]
S/N
Отношение сигнала к шуму [Signal/noise ratio]
SAW
Поверхностная акустическая волна [Surface Acoustic Wave]
SIN AD
Отношение сигнала к шуму и искажению [Signal to Noise & Distortion]
SRD
Устройство малого радиуса действия [Short Range Device]
TBR
Технические основы регулирования [Technical Basis for Regulation]
TDD
Дуплексная связь с временным разделением каналов [Time Division Duplexing]
TDM
Временное разделение каналов [Time Division Multiplexing]
<2>Библиография
[1]
МЭК 60050-713
(IEC 60050-713)
Международный электротехнический словарь. Часть 713. Радиосвязь: приемники, передатчики, сети и их режим работы
( International Electrotechnical Vocabulary - Part 713: Radiocommunications: transmitters, receivers, networks and operation)
[2]
МЭК 60050-705
(IEC 60050-705)
Международный электротехнический словарь. Глава 705: Распространение радиоволн ( International Electrotechnical Vocabulary - Chapter 705: Radio wave propagation)
[3]
МЭК 60050-702
(IEC 60050-702)
Международный электротехнический словарь. Глава 702: Колебания, сигналы и соответствующие устройства
( International Electrotechnical Vocabulary - Chapter 702: Oscillations, signals and related devices)
[4]
МЭК 60050-121
(IEC 60050-121)
Международный электротехнический словарь. Глава 121: Электромагнетизм ( International Electrotechnical Vocabulary - Part 121: Electromagnetism)
[5]
МЭК 60050-712
(IEC 60050-712)
Международный электротехнический словарь. Глава 712: Антенны ( International Electrotechnical Vocabulary - Chapter 712: Antennas)
[6]
МЭК 60050-221
(IEC 60050-221)
Международный электротехнический словарь. Глава 221: Магнитные материалы и компоненты
( International Electrotechnical Vocabulary - Chapter 221: Magnetic materials and components)
[7]
ИСО/МЭК 2382-9:1995
(ISO/IEC2382-9:1995)
Информационная технология. Словарь. Часть 9. Обмен данными ( Information technology - Vocabulary - Part 9: Data communication)
[8]
МЭК 60050-725
(IEC 60050-725)
Международный электротехнический словарь. Глава 725: Космическая радиосвязь ( International Electrotechnical Vocabulary - Chapter 725: Space radiocommunications)
[9]
МЭК 60050-714
(IEC 60050-714)
Международный электротехнический словарь. Глава 714: Коммутация и сигнализация в электросвязи
( International Electrotechnical Vocabulary - Chapter 714: Switching and signalling in telecommunications)
[10]
МЭК 60050-704
(IEC 60050-704)
Международный Электротехнический словарь. Глава 704. Техника передачи ( International Electrotechnical Vocabulary - Chapter 704: Transmission)
[11]
МЭК 60050-161
(IEC 60050-161)
Международный электротехнический словарь. Глава 161: Электромагнитная совместимость ( International Electrotechnical Vocabulary. Chapter 161: Electromagnetic compatibility)
[12]
ИСО/МЭК 8824-1
(ISO/IEC 8824-1)
Информационные технологии. Абстрактная синтаксическая нотация версии один
(АСН.1). Часть 1. Спецификация основной нотации
(Information technology - Abstract Syntax Notation One (ASN.1): Specification of basic notation)1)
[13]
ИСО/МЭК 9834-1
(ISO/IEC 9834-1)
Информационные технологии. Взаимосвязь открытых систем. Процедуры действий уполномоченных по регистрации ВОС. Часть 1. Общие процедуры и верхние дуги дерева идентификатора объекта АСН.1
( Information technology - Open Systems Interconnection - Procedures for the operation of OSI Registration Authorities: General procedures and top arcs of the ASN. 1 Object Identifier tree)
[14]
ИСО/МЭК 15962]
(ISO/IEC 15962)
Информационные технологии. Радиочастотная идентификация (RFID) для управления предметами. Протокол данных: правила кодирования данных и функции логической памяти
( Information technology - Radio frequency identification ( RFID) for item management - Data protocol: data encoding rules and logical memory functions)
[15]
ИСО/МЭК 19762-1
(ISO/IEC 19762-1)
Информационные технологии. Технологии автоматической идентификации и сбора данных (АИСД). Гармонизированный словарь. Часть 1. Общие термины в области АIDC ( Information technology - Automatic identification and data capture ( AIDC) techniques - Harmonized vocabulary - Part 1: General terms relating to AIDC)
[16]
ИСО/МЭК 19762-2
(ISO/IEC 19762-2)
Информационные технологии. Технологии автоматической идентификации и сбора данных (АИСД). Гармонизированный словарь. Часть 2. Оптические носители данных (ОНД)
( Information technology - Automatic identification and data capture ( AIDC) techniques - Harmonized vocabulary - Part 2: Optically readable media ( ORM))
[17]
ИСО/МЭК 19762-3
(ISO/IEC 19762-3)
Информационные технологии. Технологии автоматической идентификации и сбора данных (АИСД). Гармонизированный словарь. Часть 3. Радиочастотная идентификация (РЧИ)
( Information technology - Automatic identification and data capture ( AIDC) techniques - Harmonized vocabulary - Part 3: Radio frequency identification ( RFID))
[18]
ИСО/МЭК 19762-5
(ISO/IEC 19762-5)
Информационные технологии. Технологии автоматической идентификации и сбора данных (АИСД). Гармонизированный словарь. Часть 5. Системы определения места нахождения
( Information technology - Automatic identification and data capture ( AIDC) techniques - Harmonized vocabulary - Part 5: Locating systems)
[19]
ИСО/МЭК 18000-6
(ISO/IEC 18000-6)
Информационные технологии. Радиочастотная идентификация для управления предметами. Часть 6. Параметры радиоинтерфейса для диапазона частот 860 - 960 МГц ( Information technology - Radio frequency identification for item management - Part 6: Parameters for air interface communications at 860 MHz to 960 MHz)
_____________
1)В оригинале ИСО/МЭК 19762-4 стандарты [12] - [19] включены в раздел «Библиография», однако следует учитывать, что в основном тексте стандарта ссылок на них нет.
<2>
Источник: ГОСТ Р ИСО/МЭК 19762-4-2011: Информационные технологии. Технологии автоматической идентификации и сбора данных (АИСД). Гармонизированный словарь. Часть 4. Общие термины в области радиосвязи оригинал документа
Англо-русский словарь нормативно-технической терминологии > PDM
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16 cutting
стружка; опилки; лоскутки; обрезки; обрезь; обрезок (пиломатериал); нарезание; насечка; резание; резка (напр. газовая); разрезка; разрезание; срезание; перерезание; строжка; обработка резанием; фрезерование; гранение; выемка (бульдозером); разъединение; разрыв; отсоединение; отключение; выключение; отсечка (тока); запирание (цепи); отсечение; вырезание; отбрасывание стр. выемка грунта; лес. подрубка; врубка; рубка; тесание; распиливание; с.х. косьба; кошение; покос; отросток; отводок; черенок- cutting accuracy - cutting amperage - cutting and bending - cutting-and-mixing machine - cutting-and-molding machine - cutting and shearing plant - cutting angle - cutting apparatus - cutting area - cutting area work - cutting assemblage - cutting axis - cutting-back - cutting band - cutting-bit head - cutting burrs - cutting by blowtorch - cutting by waterjet - cutting cam - cutting capability - cutting ceramics - cutting chain - cutting chute - cutting conditions - cutting coolant - cutting-cooling medium - cutting cycle - cutting depth - cutting device - cutting diamond - cutting die - cutting divider - cutting down - cutting-down - cutting drag - cutting drum - cutting-edge - cutting edge - cutting edge angle - cutting edge configuration - cutting edge form - cutting edge inclination - cutting edge length - cutting edge normal plane - cutting edge of a knife - cutting edge of machining technology - cutting edge package - cutting-edge seal - cutting edge sharpness - cutting edge technology - cutting-edge technology - cutting edge tip - cutting effect - cutting efficiency - cutting effort - cutting electrode - cutting emulsion - cutting end - cutting end shape - cutting energy - cutting engagement - cutting equipment - cutting face - cutting feed rate - cutting feed speed - cutting flame - cutting fluid - cutting-fluid recycling - cutting flute - cutting force - cutting force component - cutting force deflection - cutting force dynamometer - cutting force-induced error - cutting force per unit area of cut - cutting force per unit width of cut - cutting forceps - cutting frame - cutting from the solid - cutting gage - cutting gas - cutting geometry - cutting giant - cutting grade - cutting head - cutting head assembly - cutting-head-height-and-collision sensor - cutting heat - cutting height - cutting-in - cutting in a smooth pattern - cutting in a spiral pattern - cutting-in speed - cutting-in speed of over drive - cutting-in time - cutting inaccuracies - cutting insert - cutting installation - cutting instrument - cutting interval - cutting iron - cutting jet - cutting jib - cutting job - cutting knife - cutting laser tool - cutting length - cutting life - cutting line - cutting liquid - cutting load - cutting load signal - cutting-loading machine - cutting lubricant - cutting machine - cutting machine scratch - cutting machine tool technology - cutting machine with coordinate drive - cutting material - cutting mechanics - cutting mechanism - cutting medium - cutting member - cutting metal - cutting mode - cutting motion - cutting movement - cutting nippers - cutting noise - cutting nozzle - cutting of fuel oils - cutting-off-abrasive wheel - cutting-off - cutting-off bit tool - cutting-off EDM - cutting-off grinding - cutting-off lathe - cutting-off machine - cutting-off saw - cutting-off tool - cutting oil - cutting-oil deflector - cutting oil freshener - cutting oil separator - cutting operation - cutting orientation - cutting out - cutting-out - cutting-out of rivets - cutting out of square - cutting-out press - cutting oxygen - cutting oxygen tube - cutting parameters - cutting part - cutting pass - cutting path - cutting path supporting points - cutting pattern - cutting performance - cutting period - cutting perpendicular force - cutting pick - cutting plan - cutting plane - cutting plane line - cutting plate - cutting platform - cutting pliers - cutting point - cutting-point angle - cutting position - cutting power - cutting-practice rules - cutting press - cutting profile - cutting program - cutting prong - cutting propagation - cutting pulse - cutting punch - cutting quality - cutting radius - digging radius - cutting rate - cutting region - cutting relief angle - cutting resistance - cutting resistance per tooth - cutting rib - cutting right to size - cutting rim - cutting ring - cutting ring coupling - cutting roll - cutting room - cutting rotor - cutting rule - cutting run - cutting scallops - cutting sequence - cutting-shearing drilling bit - cutting shoe - cutting simulation - cutting size - cutting size of core diamond bit - cutting speed - cutting speed chart plate - cutting speed control mechanism - cutting speed for milling - cutting speed indicator - cutting spindle - cutting stretch - cutting stroke - cutting stroke drive - cutting surface - cutting table - cutting tap - cutting technology - cutting technology routine - cutting teeth - cutting temperature - cutting test - cutting the loop - cutting-through of a tunnel - cutting thrust - cutting thrust force - cutting time - cutting-time monitor - cutting tip - cutting to a shoulder - cutting to length - cutting to size - cutting tool - cutting tool assembly - cutting tool body - cutting tool cartridge - cutting tool collet - cutting tool contact indicator - cutting tool control macro - cutting tool data - utting tool edge - cutting tool engineering - cutting tool force - cutting tool holder - cutting tool industry - cutting tool insert - cutting tool lubricant - cutting tool materials - cutting tool measurement system - cutting tool outlet - cutting tool technology - cutting tool with inserted blades - cutting tooth - cutting torch - cutting torque - cutting-type core drilling bit - cutting-type drilling bit - cutting unit - cutting up - cutting-up line - cutting value - cutting waste - cutting wear - cutting wedge - cutting wheel - cutting wheel carrier - cutting width - cutting-winning machine - cutting with preheating - cutting work - cutting zone - abrasive cutting - abrasive cutting-off - abrasive waterjet cutting - accretion cutting - across cutting - adaptive control cutting - air-arc cutting - air plasma cutting - angle cutting - approach cutting - arc cutting - arc-oxygene cutting - back-off cutting - bottom cutting - burrless cutting - cable cutting - cam cutting - carbide cutting - carbon-arc cutting - cleaning cutting - climb cutting - composite cutting - consecutive tool cutting - creep cutting - cross-cutting - cryogenic cutting - curved cutting - 2D profile cutting - 3D profile cutting - deep cutting - deskill cutting - diagonal cutting - diamond cutting - double cutting - double-roll cutting - double-roll tooth cutting - drill cuttings - dry cutting - ED cutting-off - ED wire cutting - edge cutting - electric arc-gas jet cutting - electrochemical hole cutting - electrochemical wire cutting - electroerosion cutting - end cutting - fabric cutting - finishing cutting - flame cutting - flux injetion cutting - form cutting - form tooth cutting - friction cutting - fusion cutting - gas cutting - gas metal cutting - gas-shielded arc cutting - gas-shielded tungsten-arc cutting - gas tungsten cutting - gear cutting - grass cutting - groove cutting - guided hand cutting - hand cutting - heavy cutting - high-pressure water-assisted cutting - hoisting and drilling load cuttings - hydraulic cutting - hydrogene cutting - in-line cutting - inserted carbide cutting - internal cutting - internally fed wet cutting - interrupted cutting - irregular depth cutting - keyway cutting - lance cutting - laser cutting - lateral cutting - length cutting - light cutting - little-and-often cutting - low-rpm cutting - machine cutting - manual air-plasma jet cutting - measure cutting - metal cutting - metal-arc cutting - metal powder cutting - miter cutting - multipass cutting - multiple milling cutting - multiple thread cutting - multitool cutting - oblique cutting - orthogonal cutting - oxy-arc cutting - oxygene-arc cutting - oxy-fuel cutting - oxy-fuel gas cutting - oxyacetylene cutting - oxyacetylene flame cutting - oxygen arc cutting - oxygen assisted laser cutting - oxygene lance cutting - oxyhydrogen cutting - oxy-propane cutting - part cutting - percussion cutting - peritheral cutting - pipe cuttings - plasma arc cutting - plasma flame cutting - plasma-jet cutting - playback laser cutting - plunge cutting - press cutting - polygon cutting - polygonal cutting - profile cutting - punch cutting - railway cutting - right-angle cutting - rotary cutting - rough cutting - round cutting - sample cutting - screw cutting - scroll cutting - see-saw cutting - setable minimum cutting - shape cutting - shear cuttings - shear-speed cutting - shielded metal arc cutting - side cutting - sideways cutting - single-pass cutting - single-point cutting - single-point thread cutting - skip cutting - slice cutting - solid cutting - spark cutting - spiral cuttings - spiral-bevel-gear cutting - spur-gear cutting - stack cutting - steel cuttings - straight line cutting - taper cutting - thermal cutting - thread cutting - tooth cutting - torch cutting - transverse cutting - tungsten-arc cutting - two-way cutting - ultrasonic cutting - up cutting - waterjet cutting - waterjet-assisted mechanical cutting - wet cutting - wire cutting -
17 Marey, Etienne-Jules
[br]b. 5 March 1830 Beaune, Franced. 15 May 1904 Paris, France[br]French physiologist and pioneer of chronophotography.[br]At the age of 19 Marey went to Paris to study medicine, becoming particularly interested in the problems of the circulation of the blood. In an early communication to the Académie des Sciences he described a much improved device for recording the pulse, the sphygmograph, in which the beats were recorded on a smoked plate. Most of his subsequent work was concerned with methods of recording movement: to study the movement of the horse, he used pneumatic sensors on each hoof to record traces on a smoked drum; this device became known as the Marey recording tambour. His attempts to study the wing movements of a bird in flight in the same way met with limited success since the recording system interfered with free movement. Reading in 1878 of Muybridge's work in America using sequence photography to study animal movement, Marey considered the use of photography himself. In 1882 he developed an idea first used by the astronomer Janssen: a camera in which a series of exposures could be made on a circular photographic plate. Marey's "photographic gun" was rifle shaped and could expose twelve pictures in approximately one second on a circular plate. With this device he was able to study wing movements of birds in free flight. The camera was limited in that it could record only a small number of images, and in the summer of 1882 he developed a new camera, when the French government gave him a grant to set up a physiological research station on land provided by the Parisian authorities near the Porte d'Auteuil. The new design used a fixed plate, on which a series of images were recorded through a rotating shutter. Looking rather like the results provided by a modern stroboscope flash device, the images were partially superimposed if the subject was slow moving, or separated if it was fast. His human subjects were dressed all in white and moved against a black background. An alternative was to dress the subject in black, with highly reflective strips and points along limbs and at joints, to produce a graphic record of the relationships of the parts of the body during action. A one-second-sweep timing clock was included in the scene to enable the precise interval between exposures to be assessed. The fixed-plate cameras were used with considerable success, but the number of individual records on each plate was still limited. With the appearance of Eastman's Kodak roll-film camera in France in September 1888, Marey designed a new camera to use the long rolls of paper film. He described the new apparatus to the Académie des Sciences on 8 October 1888, and three weeks later showed a band of images taken with it at the rate of 20 per second. This camera and its subsequent improvements were the first true cinematographic cameras. The arrival of Eastman's celluloid film late in 1889 made Marey's camera even more practical, and for over a decade the Physiological Research Station made hundreds of sequence studies of animals and humans in motion, at rates of up to 100 pictures per second. Marey pioneered the scientific study of movement using film cameras, introducing techniques of time-lapse, frame-by-frame and slow-motion analysis, macro-and micro-cinematography, superimposed timing clocks, studies of airflow using smoke streams, and other methods still in use in the 1990s. Appointed Professor of Natural History at the Collège de France in 1870, he headed the Institut Marey founded in 1898 to continue these studies. After Marey's death in 1904, the research continued under the direction of his associate Lucien Bull, who developed many new techniques, notably ultra-high-speed cinematography.[br]Principal Honours and DistinctionsForeign member of the Royal Society 1898. President, Académie des Sciences 1895.Bibliography1860–1904, Comptes rendus de l'Académie des Sciences de Paris.1873, La Machine animale, Paris 1874, Animal Mechanism, London.1893, Die Chronophotographie, Berlin. 1894, Le Mouvement, Paris.1895, Movement, London.1899, La Chronophotographie, Paris.Further Reading1905, Travaux de l'Association de l'Institut Marey, Paris. Brian Coe, 1981, History of Movie Photography, London.——1992, Muybridge and the Chronophotographers, London. Jacques Deslandes, 1966, Histoire comparée du cinéma, Vol. I, Paris.See also: Demenÿ, GeorgesBC / MG -
18 automation technologies
технологии для автоматизации
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[Интент]Параллельные тексты EN-RU
Automation technologies: a strong focal point for our R&D
Технологии для автоматизации - одна из главных тем наших научно исследовательских разработок
Automation is an area of ABB’s business with an extremely high level of technological innovation.
Автоматика относится к одной из областей деятельности компании АББ, для которой характерен исключительно высокий уровень технических инноваций.
In fact, it may be seen as a showcase for exhibiting the frontiers of development in several of today’s emerging technologies, like short-range wireless communication and microelectromechanical systems (MEMS).
В определенном смысле ее можно уподобить витрине, в которой выставлены передовые разработки из области только еще зарождающихся технологий, примерами которых являются ближняя беспроводная связь и микроэлектромеханические системы (micro electromechanical systems MEMS).
Mechatronics – the synthesis of mechanics and electronics – is another very exciting and rapidly developing area, and the foundation on which ABB has built its highly successful, fast-growing robotics business.
Еще одной исключительно интересной быстро развивающейся областью и в то же время фундаментом, на котором АББ в последнее время строит свой исключительно успешный и быстро расширяющийся бизнес в области робототехники, является мехатроника - синтез механики с электроникой.
Robotic precision has now reached the levels we have come to expect of the watch-making industry, while robots’ mechanical capabilities continue to improve significantly.
Точность работы робототехнических устройств достигла сегодня уровней, которые мы привыкли ожидать только на предприятиях часовой промышленности. Большими темпами продолжают расти и механические возможности роботов.
Behind the scenes, highly sophisticated electronics and software control every move these robots make.
А за кулисами всеми перемещениями робота управляют сложные электронные устройства и компьютерные программы.
Throughout industry today we see a major shift of ‘intelligence’ to lower levels in the automation system hierarchy, leading to a demand for more communication within the system.
Во всех отраслях промышленности сегодня наблюдается интенсивный перенос "интеллекта" на нижние уровни иерархии автоматизированных систем, что требует дальнейшего развития внутрисистемных средств обмена.
‘Smart’ transmitters, with powerful microprocessors, memory chips and special software, carry out vital operations close to the processes they are monitoring.
"Интеллектуальные" датчики, снабженные высокопроизводительными микропроцессорами, мощными чипами памяти и специальным программно-математическим обеспечением, выполняют особо ответственные операции в непосредственной близости от контролируемых процессов.
And they capture and store data crucial for remote diagnostics and maintenance.
Они же обеспечивают возможность измерения и регистрации информации, крайне необходимой для дистанционной диагностики и дистанционного обслуживания техники.
The communication highway linking such systems is provided by fieldbuses.
В качестве коммуникационных магистралей, связывающих такого рода системы, служат промышленные шины fieldbus.
In an ideal world there would be no more than a few, preferably just one, fieldbus standard.
В идеале на промышленные шины должно было бы существовать небольшое количество, а лучше всего вообще только один стандарт.
However, there are still too many of them, so ABB has developed ‘fieldbus plugs’ that, with the help of translation, enable devices to communicate across different standards.
К сожалению, на деле количество их типов продолжает оставаться слишком разнообразным. Ввиду этой особенности рынка промышленных шин компанией АББ разработаны "штепсельные разъемы", которые с помощью средств преобразования обеспечивают общение различных устройств вопреки границам, возникшим из-за различий в стандартах.
This makes life easier as well as less costly for our customers. Every automation system is dependent on an electrical network for distributing – and interrupting, when necessary – the power needed to carry out its various functions.
Это, безусловно, не только облегчает, но и удешевляет жизнь нашим заказчикам. Ни одна система автоматики не может работать без сети, обеспечивающей подачу, а при необходимости и отключение напряжения, необходимого для выполнения автоматикой своих задач.
Here, too, we see a clear trend toward more intelligence and communication, for example in traditional electromechanical devices such as contactors and switches.
И здесь наблюдаются отчетливо выраженные тенденции к повышению уровня интеллектуальности и расширению возможностей связи, например, в таких традиционных электромеханических устройствах, как контакторы и выключатели.
We are pleased to see that our R&D efforts in these areas over the past few years are bearing fruit.
Мы с удовлетворением отмечаем, что научно-исследовательские разработки, выполненные нами за последние годы в названных областях, начинают приносить свои плоды.
Recently, we have seen a strong increase in the use of wireless technology in industry.
В последнее время на промышленных предприятиях наблюдается резкое расширение применения техники беспроводной связи.
This is a key R&D area at ABB, and several prototype applications have already been developed.
В компании АББ эта область также относится к числу одной из ключевых тем научно-исследовательских разработок, результатом которых стало создание ряда опытных образцов изделий практического направления.
At the international Bluetooth Conference in Amsterdam in June 2002, we presented a truly ‘wire-less’ proximity sensor – with even a wireless power supply.
На международной конференции по системам Bluetooth, состоявшейся в Амстердаме в июне 2002 г., наши специалисты выступили с докладом о поистине "беспроводном" датчике ближней локации, снабженном опять-таки "беспроводным" источником питания.
This was its second major showing after the launch at the Hanover Fair.
На столь крупном мероприятии это устройство демонстрировалось во второй раз после своего первого показа на Ганноверской торгово-промышленной ярмарке.
Advances in microelectronic device technology are also having a profound impact on the power electronics systems around which modern drive systems are built.
Достижения в области микроэлектроники оказывают также глубокое влияние на системы силовой электроники, лежащие в основе современных приводных устройств.
The ABB drive family ACS 800 is visible proof of this.
Наглядным тому доказательством может служить линейка блоков регулирования частоты вращения электродвигателей ACS-800, производство которой начато компанией АББ.
Combining advanced trench gate IGBT technology with efficient cooling and innovative design, this drive – for motors rated from 1.1 to 500 kW – has a footprint for some power ranges which is six times smaller than competing systems.
Предназначены они для двигателей мощностью от 1,1 до 500 кВт. В блоках применена новейшая разновидность приборов - биполярные транзисторы с изолированным желобковым затвором (trench gate IGBT) в сочетании с новыми конструктивными решениями, благодаря чему в отдельных диапазонах мощностей габариты блоков удалось снизить по сравнению с конкурирующими изделиями в шесть раз.
To get the maximum benefit out of this innovative drive solution we have also developed a new permanent magnet motor.
Стремясь с максимальной пользой использовать новые блоки регулирования, мы параллельно с ними разработали новый двигатель с постоянными магнитами.
It uses neodymium iron boron, a magnetic material which is more powerful at room temperature than any other known today.
В нем применен новый магнитный материал на основе неодима, железа и бора, характеристики которого при комнатной температуре на сегодняшний день не имеют себе равных.
The combination of new drive and new motor reduces losses by as much as 30%, lowering energy costs and improving sustainability – both urgently necessary – at the same time.
Совместное использование нового блока регулирования частоты вращения с новым двигателем снижает потери мощности до 30 %, что позволяет решить сразу две исключительно актуальные задачи:
сократить затраты на электроэнергию и повысить уровень безотказности.These innovations are utilized most fully, and yield the maximum benefit, when integrated by means of our Industrial IT architecture.
Потенциал перечисленных выше новых разработок используется в наиболее полной степени, а сами они приносят максимальную выгоду, если их интеграция осуществлена на основе нашей архитектуры IndustrialIT.
Industrial IT is a unique platform for exploiting the full potential of information technology in industrial applications.
IndustrialIT представляет собой уникальную платформу, позволяющую в максимальной степени использовать возможности информационных технологий применительно к задачам промышленности.
Consequently, our new products and technologies are Industrial IT Enabled, meaning that they can be integrated in the Industrial IT architecture in a ‘plug and produce’ manner.
Именно поэтому все наши новые изделия и технологии выпускаются в варианте, совместимом с архитектурой IndustrialIT, что означает их способность к интеграции с этой архитектурой по принципу "подключи и производи".
We are excited to present in this issue of ABB Review some of our R&D work and a selection of achievements in such a vital area of our business as Automation.
Мы рады представить в настоящем номере "АББ ревю" некоторые из наших научно-исследовательских разработок и достижений в такой жизненно важной для нашего бизнеса области, как автоматика.
R&D investment in our corporate technology programs is the foundation on which our product and system innovation is built.
Вклад наших разработок в общекорпоративные технологические программы группы АББ служит основой для реализации новых технических решений в создаваемых нами устройствах и системах.
Examples abound in the areas of control engineering, MEMS, wireless communication, materials – and, last but not least, software technologies. Enjoy reading about them.
[ABB Review]Это подтверждается многочисленными примерами из области техники управления, микроэлектромеханических систем, ближней радиосвязи, материаловедения и не в последнюю очередь программотехники. Хотелось бы пожелать читателю получить удовольствие от чтения этих материалов.
[Перевод Интент]
Тематики
EN
Англо-русский словарь нормативно-технической терминологии > automation technologies
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19 center
центр; пункт; пост; узел; середина; научпо-иселсдовагсльскпй центр, НИЦ; выводить на середину; арт. корректировать; центрировать;air C3 center — центр руководства, управления и связи ВВС
general supply (commodity) center — центр [пункт] снабжения предметами общего предназначения
hard launch (operations) control center — ркт. центр [пункт] управления пуском, защищенный от (поражающих факторов) ЯВ
launch (operations) control center — ркт. пункт управления стартового комплекса [пуском ракет]
tactical fighter weapons (employment development) center — центр разработки способов боевого применения оружия истребителей ТА
— all-sources intelligence center— C center— combat control center— educational center— logistical operations center— logistics services center— operational center— secured communications center— skill development center -
20 Edison, Thomas Alva
SUBJECT AREA: Architecture and building, Automotive engineering, Electricity, Electronics and information technology, Metallurgy, Photography, film and optics, Public utilities, Recording, Telecommunications[br]b. 11 February 1847 Milan, Ohio, USAd. 18 October 1931 Glenmont[br]American inventor and pioneer electrical developer.[br]He was the son of Samuel Edison, who was in the timber business. His schooling was delayed due to scarlet fever until 1855, when he was 8½ years old, but he was an avid reader. By the age of 14 he had a job as a newsboy on the railway from Port Huron to Detroit, a distance of sixty-three miles (101 km). He worked a fourteen-hour day with a stopover of five hours, which he spent in the Detroit Free Library. He also sold sweets on the train and, later, fruit and vegetables, and was soon making a profit of $20 a week. He then started two stores in Port Huron and used a spare freight car as a laboratory. He added a hand-printing press to produce 400 copies weekly of The Grand Trunk Herald, most of which he compiled and edited himself. He set himself to learn telegraphy from the station agent at Mount Clements, whose son he had saved from being run over by a freight car.At the age of 16 he became a telegraphist at Port Huron. In 1863 he became railway telegraphist at the busy Stratford Junction of the Grand Trunk Railroad, arranging a clock with a notched wheel to give the hourly signal which was to prove that he was awake and at his post! He left hurriedly after failing to hold a train which was nearly involved in a head-on collision. He usually worked the night shift, allowing himself time for experiments during the day. His first invention was an arrangement of two Morse registers so that a high-speed input could be decoded at a slower speed. Moving from place to place he held many positions as a telegraphist. In Boston he invented an automatic vote recorder for Congress and patented it, but the idea was rejected. This was the first of a total of 1180 patents that he was to take out during his lifetime. After six years he resigned from the Western Union Company to devote all his time to invention, his next idea being an improved ticker-tape machine for stockbrokers. He developed a duplex telegraphy system, but this was turned down by the Western Union Company. He then moved to New York.Edison found accommodation in the battery room of Law's Gold Reporting Company, sleeping in the cellar, and there his repair of a broken transmitter marked him as someone of special talents. His superior soon resigned, and he was promoted with a salary of $300 a month. Western Union paid him $40,000 for the sole rights on future improvements on the duplex telegraph, and he moved to Ward Street, Newark, New Jersey, where he employed a gathering of specialist engineers. Within a year, he married one of his employees, Mary Stilwell, when she was only 16: a daughter, Marion, was born in 1872, and two sons, Thomas and William, in 1876 and 1879, respectively.He continued to work on the automatic telegraph, a device to send out messages faster than they could be tapped out by hand: that is, over fifty words per minute or so. An earlier machine by Alexander Bain worked at up to 400 words per minute, but was not good over long distances. Edison agreed to work on improving this feature of Bain's machine for the Automatic Telegraph Company (ATC) for $40,000. He improved it to a working speed of 500 words per minute and ran a test between Washington and New York. Hoping to sell their equipment to the Post Office in Britain, ATC sent Edison to England in 1873 to negotiate. A 500-word message was to be sent from Liverpool to London every half-hour for six hours, followed by tests on 2,200 miles (3,540 km) of cable at Greenwich. Only confused results were obtained due to induction in the cable, which lay coiled in a water tank. Edison returned to New York, where he worked on his quadruplex telegraph system, tests of which proved a success between New York and Albany in December 1874. Unfortunately, simultaneous negotiation with Western Union and ATC resulted in a lawsuit.Alexander Graham Bell was granted a patent for a telephone in March 1876 while Edison was still working on the same idea. His improvements allowed the device to operate over a distance of hundreds of miles instead of only a few miles. Tests were carried out over the 106 miles (170 km) between New York and Philadelphia. Edison applied for a patent on the carbon-button transmitter in April 1877, Western Union agreeing to pay him $6,000 a year for the seventeen-year duration of the patent. In these years he was also working on the development of the electric lamp and on a duplicating machine which would make up to 3,000 copies from a stencil. In 1876–7 he moved from Newark to Menlo Park, twenty-four miles (39 km) from New York on the Pennsylvania Railway, near Elizabeth. He had bought a house there around which he built the premises that would become his "inventions factory". It was there that he began the use of his 200- page pocket notebooks, each of which lasted him about two weeks, so prolific were his ideas. When he died he left 3,400 of them filled with notes and sketches.Late in 1877 he applied for a patent for a phonograph which was granted on 19 February 1878, and by the end of the year he had formed a company to manufacture this totally new product. At the time, Edison saw the device primarily as a business aid rather than for entertainment, rather as a dictating machine. In August 1878 he was granted a British patent. In July 1878 he tried to measure the heat from the solar corona at a solar eclipse viewed from Rawlins, Wyoming, but his "tasimeter" was too sensitive.Probably his greatest achievement was "The Subdivision of the Electric Light" or the "glow bulb". He tried many materials for the filament before settling on carbon. He gave a demonstration of electric light by lighting up Menlo Park and inviting the public. Edison was, of course, faced with the problem of inventing and producing all the ancillaries which go to make up the electrical system of generation and distribution-meters, fuses, insulation, switches, cabling—even generators had to be designed and built; everything was new. He started a number of manufacturing companies to produce the various components needed.In 1881 he built the world's largest generator, which weighed 27 tons, to light 1,200 lamps at the Paris Exhibition. It was later moved to England to be used in the world's first central power station with steam engine drive at Holborn Viaduct, London. In September 1882 he started up his Pearl Street Generating Station in New York, which led to a worldwide increase in the application of electric power, particularly for lighting. At the same time as these developments, he built a 1,300yd (1,190m) electric railway at Menlo Park.On 9 August 1884 his wife died of typhoid. Using his telegraphic skills, he proposed to 19-year-old Mina Miller in Morse code while in the company of others on a train. He married her in February 1885 before buying a new house and estate at West Orange, New Jersey, building a new laboratory not far away in the Orange Valley.Edison used direct current which was limited to around 250 volts. Alternating current was largely developed by George Westinghouse and Nicola Tesla, using transformers to step up the current to a higher voltage for long-distance transmission. The use of AC gradually overtook the Edison DC system.In autumn 1888 he patented a form of cinephotography, the kinetoscope, obtaining film-stock from George Eastman. In 1893 he set up the first film studio, which was pivoted so as to catch the sun, with a hinged roof which could be raised. In 1894 kinetoscope parlours with "peep shows" were starting up in cities all over America. Competition came from the Latham Brothers with a screen-projection machine, which Edison answered with his "Vitascope", shown in New York in 1896. This showed pictures with accompanying sound, but there was some difficulty with synchronization. Edison also experimented with captions at this early date.In 1880 he filed a patent for a magnetic ore separator, the first of nearly sixty. He bought up deposits of low-grade iron ore which had been developed in the north of New Jersey. The process was a commercial success until the discovery of iron-rich ore in Minnesota rendered it uneconomic and uncompetitive. In 1898 cement rock was discovered in New Village, west of West Orange. Edison bought the land and started cement manufacture, using kilns twice the normal length and using half as much fuel to heat them as the normal type of kiln. In 1893 he met Henry Ford, who was building his second car, at an Edison convention. This started him on the development of a battery for an electric car on which he made over 9,000 experiments. In 1903 he sold his patent for wireless telegraphy "for a song" to Guglielmo Marconi.In 1910 Edison designed a prefabricated concrete house. In December 1914 fire destroyed three-quarters of the West Orange plant, but it was at once rebuilt, and with the threat of war Edison started to set up his own plants for making all the chemicals that he had previously been buying from Europe, such as carbolic acid, phenol, benzol, aniline dyes, etc. He was appointed President of the Navy Consulting Board, for whom, he said, he made some forty-five inventions, "but they were pigeonholed, every one of them". Thus did Edison find that the Navy did not take kindly to civilian interference.In 1927 he started the Edison Botanic Research Company, founded with similar investment from Ford and Firestone with the object of finding a substitute for overseas-produced rubber. In the first year he tested no fewer than 3,327 possible plants, in the second year, over 1,400, eventually developing a variety of Golden Rod which grew to 14 ft (4.3 m) in height. However, all this effort and money was wasted, due to the discovery of synthetic rubber.In October 1929 he was present at Henry Ford's opening of his Dearborn Museum to celebrate the fiftieth anniversary of the incandescent lamp, including a replica of the Menlo Park laboratory. He was awarded the Congressional Gold Medal and was elected to the American Academy of Sciences. He died in 1931 at his home, Glenmont; throughout the USA, lights were dimmed temporarily on the day of his funeral.[br]Principal Honours and DistinctionsMember of the American Academy of Sciences. Congressional Gold Medal.Further ReadingM.Josephson, 1951, Edison, Eyre \& Spottiswode.R.W.Clark, 1977, Edison, the Man who Made the Future, Macdonald \& Jane.IMcN
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