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1 video control room
nTV sala de control de video f (AmL), sala de control de vídeo f (Esp) -
2 video control room
Техника: видеотехническая аппаратная -
3 video control room
Glossaire des termes pour l'organisation d'événements > video control room
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4 video control room
English-Russian dictionary of telecommunications > video control room
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5 production video control room
reżysernia wizjiEnglish-Polish dictionary for engineers > production video control room
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6 video director's control room
Техника: аппаратная видеорежиссёраУниверсальный англо-русский словарь > video director's control room
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7 video recording control room
Техника: аппаратная видеозаписиУниверсальный англо-русский словарь > video recording control room
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8 video recording control room
English-Russian dictionary of telecommunications > video recording control room
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9 video director's control room
English-Russian dictionary of telecommunications > video director's control room
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10 video
nCOMP&DP, TELECOM, TV video m (AmL), vídeo m (Esp) -
11 room
2) мн. ч. квартира3) место; пространство4) горн. камера; очистная выработка5) цех; отделение•-
aircrew briefing room
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ambulance room
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anechoic room
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announcer room
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apparatus room
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assembly room
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assorting room
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audio control room
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autoclave room
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batch room
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bath room
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battery room
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bio clean room
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blending room
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boiler room
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boning room
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bottling room
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breakup room
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butchering room
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cell room
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central apparatus room
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central control room
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change room
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chilling room
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churn room
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class 100 clean room
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clay room
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clean room
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cloth room
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cold room
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compressor room
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computer room
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computerized news room
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coning room
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continuity and presentation room
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continuity room
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control room
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controlled atmosphere storage room
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cooking room
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crew waiting room
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cross-flow clean room
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cupping room
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curing room
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cutting room
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dark room
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dead room
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digester room
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dispatch room
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dough room
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down flow clean room
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dressing room
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dubbing room
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dump room
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echo room
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editing room
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engine room
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equipment room
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fermentation room
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filling room
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film editing room
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finishing room
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fog room
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forming room
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free-field room
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freezer room
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freezing room
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furnace room
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galvanizing-bath room
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galvanizing room
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garbage room
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gowning room
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grain cleaning room
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graphics room
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grinder room
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grinding room
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habitable room
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hard-wall type clean room
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hoist room
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horizontal Laminar flow clean room
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horizontal flow clean room
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instrument room
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jacketed cold-storage room
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jacketed cold room
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knitting room
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lamp room
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leg room
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lift truck battery room
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machine room
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marine cold room
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marine vessel control room
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mill room
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milling room
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mine rescue room
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mixing room
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mobile studio-control room
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modular clean room
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moist room
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monitor room
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nonlaminar clean room
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open production control room
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open control room
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packing room
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pot room
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prefabricated cold room
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prefabricated-type clean room
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preparation room
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presentation control room
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production control room
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pumping room
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quality control room
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quick-freezing room
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racking room
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reduction room
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relay room
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rerecording room
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reverberant room
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review room
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ripening room
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roasting room
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rumbling room
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salting room
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semiclean room
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sharp-freezing room
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shielded room
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smoking room
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sound control room
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soundproof room
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spinning room
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standing room
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sterilizer room
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storage room
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studio control room
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superclean-space room
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sweating room
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switch room
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tank room
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telecine room
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thaw-room
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tooling room
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tunnel clean room
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turbine room
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unit chemical control room
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unit-type clean room
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utility room
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vertical laminar flow clean room
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vertical flow clean room
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video tape recording room
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viewing room
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vision apparatus room
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waiting room
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warming room -
12 VCR
1) Общая лексика: Verification Certificate of Readiness (SEIC)2) Компьютерная техника: видеомагнитофон3) Военный термин: Viet Cong Regiment, visual control room4) Техника: video-cassette recorder, video-cassette recording, vision control room, voltage coefficient of resistance, voltage-controlled resistor, voltage-variable resistor5) Шутливое выражение: Very Cute Rodent, Videos Can Record6) Математика: Virtual Construct Rectangle, Virtual Construct Rectangles7) Бухгалтерия: ваучер/voucher (документ, удостоверяющий оплату товаров и услуг (например, оплаченный счет-фактура, погашенный счет))8) Грубое выражение: Very Corrupt And Rotten, Very Cute Rear9) Кино: Voluntary Content Rating10) Музыка: Very Confusing Record11) Сокращение: Variable Compression Ratio, Vehicule de Combat a Roues (Wheeled combat vehicle (France)), Video Cassette Recorder, videocassette recorder12) Электроника: Video Cassette Reader, Voltage Controlled Resistor13) Нефть: videocassette player14) Иммунология: Virus Contaminated Rat15) Банковское дело: возобновляемая ценная бумага с плавающим купоном (variable coupon renewable note)16) Транспорт: Vertical Control Response17) Фирменный знак: Velocity Car Rentals18) СМИ: Video Computerized Recording19) Бытовая техника: кассетный видеомагнитофон20) Глоссарий компании Сахалин Энерджи: videocassette recorders/player, Verification Certificate of Readiness21) Образование: Very Childish Responses22) Инвестиции: variable coupon renewable23) Автоматика: variable compression-ratio piston24) Химическое оружие: vapor containment room25) Расширение файла: VCR driver (Arvid)26) Чат: Very Cool Resource27) AMEX. Sensory Science Corporation -
13 VCR
1. variable compression ratio - переменная степень сжатия; переменный коэффициент сжатия;2. variable compression-ratio piston - поршень, допускающий изменение степени сжатия;3. video-cassette recorder - кассетный видеомагнитофон; КВМ;4. video-cassette recording - кассетная магнитофонная видеозапись;5. vision control room - видеотехническая аппаратная;6. voltage coefficient of resistance - коэффициент изменения сопротивления в зависимости от напряжения;7. voltage-controlled resistor - резистор, управляемый напряжением;7. voltage-variable resistor - варистор -
14 VCR
I сокр. от variable compression ratioпеременная степень сжатияII сокр. от
video cassette recorder III сокр. от vision control room -
15 system
1) система; комплекс2) метод; способ3) канал•- acoustic alarm system
- acoustic image system
- acoustic systems
- actiontrack system
- active IR-system
- actuator system
- adaptive communication system
- adaptive teleinformation system
- adaptive telemetering system
- advanced information system
- Afsatcom system
- air system
- aircraft intercommunication system
- airfield communication system
- air-ground automatic system
- airline reservation system
- air-to-ground TV system
- alarm signal system
- alarm system
- all-channel signaling system
- ALL-IN-ONE system
- alphanumeric system
- amplified speaker system
- amplitude shift-keying system
- AMPS system
- analog cellular communication system
- analog cellular system
- analog component video system
- analog television system
- analog tropospheric system
- anisochronous system
- antenna system
- antitheft system
- AR system
- Arabsat system
- ASK system
- associated channel analog system
- asynchronous address communication system
- audio recording system
- Aurora system
- Aussat system
- automatic communication system
- automatic connection establishment system
- automatic control system
- automatic data acquisition system
- automatic telegraphy system
- automatic telephone system
- automatic tuning system
- automatized cellular system
- auxiliary alarm system
- balanced cable transmission system
- band sharing system
- base station system
- baseband system
- basic input/output system
- bass-reflex speaker system
- batch processing system
- batch transmission system
- batch-and-forward system
- batteryless system
- bilateral CTV system
- binary tariff system
- biocontrol system
- bit parallel interface system
- bit transport system
- bridge duplex system
- broadband mobile system
- broadcast satellite system
- broadcasting delivery media systems
- burglar alarm system
- byte-serial interface system
- cabinet system
- cabinetless system
- cable distribution system
- cable TV system
- call-accounting system
- call-answering system
- call-counting system
- call-distributing system
- call-processing system
- call-queueing system
- camp-on system
- CAPTAIN system
- car component audio system
- carrier reinsertion system
- carrier system
- carrier-communication system
- carrier-current communication system
- Cassegrain-Schmidt system
- cassette recording system
- cassette reproducing system
- CATRIN system
- caution system
- CD 900 system
- cellular system
- cellular-radio system
- central-battery system
- centralized control system
- chirp binary telegraph system
- cipher system
- circuit switched telecommunication system
- circuit switching telecommunication system
- circular telecontrol system
- clock system
- closed-circuit communication system
- closed-circuit telegraph system
- closed-numbering system
- code-dependent system
- code-division multiple access system
- code-independent system
- code-insensitive system
- code-sensitive system
- coding system
- coherent fiber-optic system
- collimating system
- collocated system
- color separating system
- combined numbering system
- combined power supply system
- combined satellite communication system
- common-battery system
- common-carrier system
- common-channel signaling system
- common-engineering communication system
- common-purpose cellular system
- common-using band system
- common-using cordless telephone system
- common-using paging system
- communication system
- communication traffic system
- communications system
- community antenna system
- community antenna television system
- community TV-system
- commununication switching system
- compact disk digital audio system
- compatible color television system
- compatible single sideband system
- compatible single-band system
- compatible TV-system
- complex radio communication system
- computer vision system
- computer-telephone system
- Comsar system
- Comsat system
- Conax system
- concentrated-insonation system
- conference system
- conference-communication system
- congested system
- congress-class system
- constant-current system
- control generating system
- conventional television system
- Conversant system
- cordless-communication system
- crossbar system
- crossed-coincident microphone system
- Crosspoint system
- CSE system
- C-system
- cubical video projecting system
- data processing system
- data system
- data transport system
- data-collection system
- data-compression system
- data-exchange system
- dataflow system
- data-gathering system
- data-handling system
- data-measuring system
- data-reduction system
- data-transmission system
- Decca Navigator system
- DECfax system
- decision-feedback system
- dedicated control channel system
- dedicated multimedia system
- delta-sigma system
- deluxe presentation system
- departmental communication system
- desktop-video system
- DFS/Copernicus system
- dial-telephone system
- differential phase shift-keying system
- differential-duplex system
- differential-magnetic system
- digital camera system
- digital hybrid-key telephone system
- digital mass storage system
- digital microwave radio transmission system
- digital telephone communication system
- digital transmission system
- digital TV-communication system
- Digital UNIX system
- digital-analog system
- digital-cellular system
- digital-data modulation system
- digital-effect system
- digital-message entry system
- digital-termination system
- direct-broadcasting satellite system
- directing system
- direct-modulation system
- direct-sequence system
- direct-telephone communication system
- discrete communication system
- discrete sound system
- discrete-addressing system
- disk-operating system
- DISOSS system
- dispatch telephone communication system
- dispatch-center system
- dispersed-insonation system
- distributed-insonation system
- distributed-processing system
- documental-type communication system
- Dolby systems
- domestic satellite communication system
- double-band telephone communication system
- double-channel transmission system
- double-current transmission system
- double-pole communication system
- double-sideband large carrier system
- DSCS system
- D-system
- dual-cable system
- dual-reflector system
- duplexed system
- Earth-to-space transmission system
- ECM system
- electric communication system
- electronic antishock system
- electronic data-gathering system
- electronic data-processing system
- electronic-message system
- electronic-scanning system
- electronic-switching system
- Ellipso system
- emergency telephone communication system
- emergency-broadcast system
- EMX system
- equidistant system
- error-correction system
- error-detection system
- Eutelsat system
- extensible system
- external paging system
- facsimile system
- fast-acting servicing system
- fault-tolerant system
- fax communication system
- fax transmitting system
- feed system
- fiber transmission system
- fiber-optic transmission system
- field-sequential system
- final mile system
- finishing system
- fire alarm system
- fire warning system
- first generation cellular system
- five-channel communication system
- fixed satellite system
- Flexcam system
- flexible access system
- Flitsatcom system
- focusing system
- four-channel sound system
- four-dimensional system
- four-wire telephone communication system
- frame-sequential system
- frequency shift-keying system
- frequency-carrier system
- frequency-control system
- front-bass reflex speaker system
- fully digital system
- gate system
- Gaussian system
- generalized system
- generating dynamic system
- generator-dc-motor system
- GIGASET radio system
- global positioning system
- Global system
- Gopher system
- grandfathered system
- group-alerting and dispatching system
- guide system
- hard-wired CCTV system
- hazard system
- helical-scan system
- HF-synchronizing system
- high-precision navigating system
- Hi-linear system
- home system
- home-telephone system
- home-type system
- homing-guidance system
- host system
- hydroacoustic system
- ideal communication system
- idealized system
- image informaion system
- image-forming system
- immedial servicing system
- incompatible system
- independent system
- information retrieval system
- information system radio system
- information system
- information-feedback system
- information-measuring system
- infrared alarm system
- Inmarsat system
- Inmarsat-A system
- Inmarsat-B system
- Inmarsat-C system
- Inmarsat-D system
- Inmarsat-M system
- Inmarsat-P system
- integrated telephone system
- integrated videographic teleconferencing system
- integrated-antenna system
- integrated-communication system
- integrated-modulation system
- integrated-office system
- Intelsat system
- interactive system
- intercarrier-sound system
- intercommunication system
- intercontinental tropospheric system
- interlock system
- intermachine exchange system
- intermediate system
- international communication system
- interphone system
- Intervision system
- intraband signaling system
- intruder alarm system
- inward-outward dialing system
- ionoscatter system
- ionosphere sounder system
- ionospheric system
- Iridium system
- isolated system
- Italsat system
- J-carrier system
- joint-multichannel trunking and switching system
- K-carrier system
- key system
- key-telephone system
- land satellite communication system
- large-grained communication system
- laser communication system
- L-band satellite system
- L-carrier system
- Leasat system
- lightning protection system
- limited distortion system
- line amplifiers system
- link system
- little-channel relay system
- local alarm system
- local battery system
- local communication system
- local radio paging system
- long-haul system
- long-range system
- loop system
- loud-speaking communication system
- low-traffic system
- magnetic tape recording system
- Mail system
- management-information system
- manual cellular system system
- manual telephone set system
- Marisat system
- master television system
- master-antenna television system
- matrix sound system
- message feedback system
- message procession system
- message registration system
- message-switched system
- meteor radio system
- Metrobus system
- micro component system
- Micro Press Cluster Printing system
- micro-lens system
- microprocessor system
- microwave relay system
- midi system
- mine radio telephone system
- mini system
- mixed media system
- mixed numbering system
- mobile cellular communication system
- mobile land communication system
- mobile radio system
- mobile relay system
- mobile system
- modulated system
- monetary mobile system
- MS-Mail system
- multiareal system
- multicassette system
- multichannel telephone system
- multicomputer system
- multidisk system
- multiformat recording system
- multifrequency tone signaling system
- multiguard system
- multilevel mixed system
- multimedia system
- multiple-channel system
- multiqueue system
- Multiscrypt system
- multistandard system
- multitrack editing system
- mutibeam antenna system
- muting system
- Nagravision system
- NAMTS system
- narrow-angle TV system
- national communication system
- navigation system
- n-channel communication system
- n-channel DPSK system
- n-channel transmission system
- network standalone system
- network system
- network-operation system
- networks numbering system
- neutral direct-current telegraph system
- n-head video system
- NMT system
- noise-reduction system
- nonhoming tuning system
- noninterlaced television system
- nonsegmented system
- Norsat system
- n-satellite system system
- n-tone DPSK system
- n-tone MFSK system
- NTSC system
- NTT system
- obligatory message system
- Odyssey system
- off-line system
- on-line computer system
- on-line secured system
- open numbering system
- open system
- operative-engineering communication system
- opposite signals system
- optical-communication system
- optical-information system
- optical-projection system
- optoelectronic system
- oscillating system
- oscillation system
- outband signaling system
- package-and-resource tracking system
- pagemaster system
- paging system
- PAL system
- parametric system
- PATHWORKS system
- pattern recognition system
- personal holding guard system
- phase shift-keying system
- phone system
- Piccolo system
- pilot-controller system
- polar direct-current telegraph system
- portable mobile system
- power control system
- power controlling system
- power-line carrier system
- power-supply system
- press-to-talk system
- Prestel system
- primary-supply system
- privacy system
- private branch paging system
- private movable system
- private videodata system
- private videotex system
- process-interface system
- PROFS system
- programmable cross-connect system
- programmable cross-connected system
- programmed radio system
- prompting system
- protected wireline distribution system
- protection system
- pseudoquadraphony system
- pseudotrunking system
- public videodata system
- public videotex system
- pulse-code system
- pulse-frequency system
- pulse-time system
- quadraphonic sound system
- quadruple-diversity system
- R1 system
- R2 system
- radio buoy system
- radio command system
- radio communication system
- Radio Data system
- radio facsimile system
- Radiocom 2000 system
- radio-control system
- radio-paging system
- radio-relay system
- radiosonde-radio-wind system
- radio-telemetering system
- real time pulse-echo system
- real time system
- receiver lockout system
- recording system
- recovery system
- redundant system
- reference-information system
- regional electronic payment system
- relay-radio system
- remote concentrating system
- remote control system
- remote diagnostic system
- remote information system
- remote semiconcentrating system
- remote sensing system
- remote signaling system
- rendering system
- rerecording system
- reserved servicing system
- RF/Transmission system
- rotary system
- safety alarm system
- safety system
- Satcom system
- satellite comminication system
- satellite marine comminication system
- Satellite Master Antenna Television system
- satellite radio system
- satellite-aircraft communication system
- SB-communication system
- SBL communication system
- scalable system
- scanning trunking system
- SCO UNIX system
- searchless identification system
- seat reservation system
- SECAM system
- second generation cellular system
- second room system
- secondary supply system
- secrecy system
- section communication system
- security system
- segmented system
- seismic system
- selective calling system
- selective frequency base station system
- selective protective system
- selective telephone system
- self-adjusting system
- self-balancing differential system
- self-contained system
- self-test system
- selsyn system
- semiautomatic-switching system
- semiautomatized cellular system
- sensory system
- servo system
- shadow-batch system
- short-haul microwave system
- Sicral system
- Sigma Servo system
- signal system
- simplex movable system
- single-band transmission system
- single-busbar system
- single-cable communication system
- single-cable system
- single-channel system
- single-current transmission system
- single-pulse tracking system
- Skynet system
- small-grained communication system
- SmarTrunk II radio communication system
- solid-state uninterruptible power battery system
- Sony bus system
- sound alarm system
- sound equalization system
- sound navigation system
- sound reinforcement system
- sound warning system
- space-division system
- space-switched system
- spark-safe system
- speaker system
- special communication system
- speech-processing system
- speech-recognition system
- split-speaker system
- spread-spectrum system
- stabilizing system
- stage monitoring system
- standalone double point system
- star-circuit system
- STAREX CMX system
- starting communication system
- start-stop system
- stationary satellite system
- step-by-step system
- stereo sound system
- stereophonic sound system
- storage system
- storage-and-retrieval system
- Strowger system
- submarine fiber-optic system
- subprimary digital transmission system
- subscriber carrier system
- subscriber switching system
- suffix system
- Supersat system
- supervisory control system
- surround sound system
- switched telecommunication system
- switching system
- sync communication system
- synchro system
- synchronous communication system
- synchronous digital system
- TAGS system
- tandem system
- tariffication system
- T-carrier system
- TDF system
- teleautomatic system
- Telecom system
- telecommunication system
- telecommunications system
- telecommunication-service priority system
- telecommunications-service priority system
- telecontrol system
- telemechanic system
- telemetering system
- telemetry system
- telephone system
- telephone-answering system
- telephone-communication system
- telephone-communications system
- teleprocessing system
- Telesat system
- teletex system
- teletypewriter system
- television-telephone system
- Tele-X system
- Telsar system
- terminal system
- terrestrial radio-relay system
- theft-prevention system
- thin-route system
- third generation communication system
- three-axle stabilizing system
- three-channel HF-telephone system
- three-channel transmission system
- three-color system
- three-lens optical system
- three-primary system
- three-wire system
- time-dissemination system
- time-frequency hopping system
- time-switched system
- total access communication system
- total area coverage system
- transmission system
- trichromatic system
- triple-interlace system
- triplex system
- trunk communication system
- TV-observation system
- twelve-channel transmission system
- two-arm system
- two-band system
- two-color system
- two-roller transfer system
- two-step control system
- two-way CATV system
- two-way system
- two-wire telephone communication system
- ultra-match system
- ULTRIX system
- unified radioaccess system
- unilateral-control system
- unilateral-synchronization system
- uninterruptible-power system
- Unisat system
- universal alarm system
- universal-battery system
- universal-electronic system
- universal-movable system
- Uniworks system
- vestigial-sideband system
- video editing system
- video home system
- video recording system
- videocom system
- videoteleconference system
- videotex system
- virtual studio system
- vision system
- vocoder system
- voice dialog system
- voice frequency carrier telegraph system
- voice modulation system
- voice post system
- volume control system
- waiting system
- warning system
- watch system
- watching system
- waterside facsimile communication system
- wave-propagating system
- wide-angle TV system
- Winfax Pro system
- wired broadcasting system
- wireless CCTV system
- wireless home system
- wireless infrared speaker system
- wire-radio communication system
- XY system
- zone-selective protection system
- zoning systemEnglish-Russian dictionary of telecommunications and their abbreviations > system
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16 modular data center
модульный центр обработки данных (ЦОД)
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[Интент]Параллельные тексты EN-RU
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Data Centers are a hot topic these days. No matter where you look, this once obscure aspect of infrastructure is getting a lot of attention. For years, there have been cost pressures on IT operations and this, when the need for modern capacity is greater than ever, has thrust data centers into the spotlight. Server and rack density continues to rise, placing DC professionals and businesses in tighter and tougher situations while they struggle to manage their IT environments. And now hyper-scale cloud infrastructure is taking traditional technologies to limits never explored before and focusing the imagination of the IT industry on new possibilities.
В настоящее время центры обработки данных являются широко обсуждаемой темой. Куда ни посмотришь, этот некогда малоизвестный аспект инфраструктуры привлекает все больше внимания. Годами ИТ-отделы испытывали нехватку средств и это выдвинуло ЦОДы в центр внимания, в то время, когда необходимость в современных ЦОДах стала как никогда высокой. Плотность серверов и стоек продолжают расти, все больше усложняя ситуацию для специалистов в области охлаждения и организаций в их попытках управлять своими ИТ-средами. И теперь гипермасштабируемая облачная инфраструктура подвергает традиционные технологии невиданным ранее нагрузкам, и заставляет ИТ-индустрию искать новые возможности.
At Microsoft, we have focused a lot of thought and research around how to best operate and maintain our global infrastructure and we want to share those learnings. While obviously there are some aspects that we keep to ourselves, we have shared how we operate facilities daily, our technologies and methodologies, and, most importantly, how we monitor and manage our facilities. Whether it’s speaking at industry events, inviting customers to our “Microsoft data center conferences” held in our data centers, or through other media like blogging and white papers, we believe sharing best practices is paramount and will drive the industry forward. So in that vein, we have some interesting news to share.
В компании MicroSoft уделяют большое внимание изучению наилучших методов эксплуатации и технического обслуживания своей глобальной инфраструктуры и делятся результатами своих исследований. И хотя мы, конечно, не раскрываем некоторые аспекты своих исследований, мы делимся повседневным опытом эксплуатации дата-центров, своими технологиями и методологиями и, что важнее всего, методами контроля и управления своими объектами. Будь то доклады на отраслевых событиях, приглашение клиентов на наши конференции, которые посвящены центрам обработки данных MicroSoft, и проводятся в этих самых дата-центрах, или использование других средств, например, блоги и спецификации, мы уверены, что обмен передовым опытом имеет первостепенное значение и будет продвигать отрасль вперед.
Today we are sharing our Generation 4 Modular Data Center plan. This is our vision and will be the foundation of our cloud data center infrastructure in the next five years. We believe it is one of the most revolutionary changes to happen to data centers in the last 30 years. Joining me, in writing this blog are Daniel Costello, my director of Data Center Research and Engineering and Christian Belady, principal power and cooling architect. I feel their voices will add significant value to driving understanding around the many benefits included in this new design paradigm.
Сейчас мы хотим поделиться своим планом модульного дата-центра четвертого поколения. Это наше видение и оно будет основанием для инфраструктуры наших облачных дата-центров в ближайшие пять лет. Мы считаем, что это одно из самых революционных изменений в дата-центрах за последние 30 лет. Вместе со мной в написании этого блога участвовали Дэниел Костелло, директор по исследованиям и инжинирингу дата-центров, и Кристиан Белади, главный архитектор систем энергоснабжения и охлаждения. Мне кажется, что их авторитет придаст больше веса большому количеству преимуществ, включенных в эту новую парадигму проектирования.
Our “Gen 4” modular data centers will take the flexibility of containerized servers—like those in our Chicago data center—and apply it across the entire facility. So what do we mean by modular? Think of it like “building blocks”, where the data center will be composed of modular units of prefabricated mechanical, electrical, security components, etc., in addition to containerized servers.
Was there a key driver for the Generation 4 Data Center?Наши модульные дата-центры “Gen 4” будут гибкими с контейнерами серверов – как серверы в нашем чикагском дата-центре. И гибкость будет применяться ко всему ЦОД. Итак, что мы подразумеваем под модульностью? Мы думаем о ней как о “строительных блоках”, где дата-центр будет состоять из модульных блоков изготовленных в заводских условиях электрических систем и систем охлаждения, а также систем безопасности и т.п., в дополнение к контейнеризованным серверам.
Был ли ключевой стимул для разработки дата-центра четвертого поколения?
If we were to summarize the promise of our Gen 4 design into a single sentence it would be something like this: “A highly modular, scalable, efficient, just-in-time data center capacity program that can be delivered anywhere in the world very quickly and cheaply, while allowing for continued growth as required.” Sounds too good to be true, doesn’t it? Well, keep in mind that these concepts have been in initial development and prototyping for over a year and are based on cumulative knowledge of previous facility generations and the advances we have made since we began our investments in earnest on this new design.Если бы нам нужно было обобщить достоинства нашего проекта Gen 4 в одном предложении, это выглядело бы следующим образом: “Центр обработки данных с высоким уровнем модульности, расширяемости, и энергетической эффективности, а также возможностью постоянного расширения, в случае необходимости, который можно очень быстро и дешево развертывать в любом месте мира”. Звучит слишком хорошо для того чтобы быть правдой, не так ли? Ну, не забывайте, что эти концепции находились в процессе начальной разработки и создания опытного образца в течение более одного года и основываются на опыте, накопленном в ходе развития предыдущих поколений ЦОД, а также успехах, сделанных нами со времени, когда мы начали вкладывать серьезные средства в этот новый проект.
One of the biggest challenges we’ve had at Microsoft is something Mike likes to call the ‘Goldilock’s Problem’. In a nutshell, the problem can be stated as:
The worst thing we can do in delivering facilities for the business is not have enough capacity online, thus limiting the growth of our products and services.Одну из самых больших проблем, с которыми приходилось сталкиваться Майкрософт, Майк любит называть ‘Проблемой Лютика’. Вкратце, эту проблему можно выразить следующим образом:
Самое худшее, что может быть при строительстве ЦОД для бизнеса, это не располагать достаточными производственными мощностями, и тем самым ограничивать рост наших продуктов и сервисов.The second worst thing we can do in delivering facilities for the business is to have too much capacity online.
А вторым самым худшим моментом в этой сфере может слишком большое количество производственных мощностей.
This has led to a focus on smart, intelligent growth for the business — refining our overall demand picture. It can’t be too hot. It can’t be too cold. It has to be ‘Just Right!’ The capital dollars of investment are too large to make without long term planning. As we struggled to master these interesting challenges, we had to ensure that our technological plan also included solutions for the business and operational challenges we faced as well.
So let’s take a high level look at our Generation 4 designЭто заставило нас сосредоточиваться на интеллектуальном росте для бизнеса — refining our overall demand picture. Это не должно быть слишком горячим. И это не должно быть слишком холодным. Это должно быть ‘как раз, таким как надо!’ Нельзя делать такие большие капиталовложения без долгосрочного планирования. Пока мы старались решить эти интересные проблемы, мы должны были гарантировать, что наш технологический план будет также включать решения для коммерческих и эксплуатационных проблем, с которыми нам также приходилось сталкиваться.
Давайте рассмотрим наш проект дата-центра четвертого поколенияAre you ready for some great visuals? Check out this video at Soapbox. Click here for the Microsoft 4th Gen Video.
It’s a concept video that came out of my Data Center Research and Engineering team, under Daniel Costello, that will give you a view into what we think is the future.
From a configuration, construct-ability and time to market perspective, our primary goals and objectives are to modularize the whole data center. Not just the server side (like the Chicago facility), but the mechanical and electrical space as well. This means using the same kind of parts in pre-manufactured modules, the ability to use containers, skids, or rack-based deployments and the ability to tailor the Redundancy and Reliability requirements to the application at a very specific level.
Посмотрите это видео, перейдите по ссылке для просмотра видео о Microsoft 4th Gen:
Это концептуальное видео, созданное командой отдела Data Center Research and Engineering, возглавляемого Дэниелом Костелло, которое даст вам наше представление о будущем.
С точки зрения конфигурации, строительной технологичности и времени вывода на рынок, нашими главными целями и задачами агрегатирование всего дата-центра. Не только серверную часть, как дата-центр в Чикаго, но также системы охлаждения и электрические системы. Это означает применение деталей одного типа в сборных модулях, возможность использования контейнеров, салазок, или стоечных систем, а также возможность подстраивать требования избыточности и надежности для данного приложения на очень специфичном уровне.Our goals from a cost perspective were simple in concept but tough to deliver. First and foremost, we had to reduce the capital cost per critical Mega Watt by the class of use. Some applications can run with N-level redundancy in the infrastructure, others require a little more infrastructure for support. These different classes of infrastructure requirements meant that optimizing for all cost classes was paramount. At Microsoft, we are not a one trick pony and have many Online products and services (240+) that require different levels of operational support. We understand that and ensured that we addressed it in our design which will allow us to reduce capital costs by 20%-40% or greater depending upon class.
Нашими целями в области затрат были концептуально простыми, но трудно реализуемыми. В первую очередь мы должны были снизить капитальные затраты в пересчете на один мегаватт, в зависимости от класса резервирования. Некоторые приложения могут вполне работать на базе инфраструктуры с резервированием на уровне N, то есть без резервирования, а для работы других приложений требуется больше инфраструктуры. Эти разные классы требований инфраструктуры подразумевали, что оптимизация всех классов затрат имеет преобладающее значение. В Майкрософт мы не ограничиваемся одним решением и располагаем большим количеством интерактивных продуктов и сервисов (240+), которым требуются разные уровни эксплуатационной поддержки. Мы понимаем это, и учитываем это в своем проекте, который позволит нам сокращать капитальные затраты на 20%-40% или более в зависимости от класса.For example, non-critical or geo redundant applications have low hardware reliability requirements on a location basis. As a result, Gen 4 can be configured to provide stripped down, low-cost infrastructure with little or no redundancy and/or temperature control. Let’s say an Online service team decides that due to the dramatically lower cost, they will simply use uncontrolled outside air with temperatures ranging 10-35 C and 20-80% RH. The reality is we are already spec-ing this for all of our servers today and working with server vendors to broaden that range even further as Gen 4 becomes a reality. For this class of infrastructure, we eliminate generators, chillers, UPSs, and possibly lower costs relative to traditional infrastructure.
Например, некритичные или гео-избыточные системы имеют низкие требования к аппаратной надежности на основе местоположения. В результате этого, Gen 4 можно конфигурировать для упрощенной, недорогой инфраструктуры с низким уровнем (или вообще без резервирования) резервирования и / или температурного контроля. Скажем, команда интерактивного сервиса решает, что, в связи с намного меньшими затратами, они будут просто использовать некондиционированный наружный воздух с температурой 10-35°C и влажностью 20-80% RH. В реальности мы уже сегодня предъявляем эти требования к своим серверам и работаем с поставщиками серверов над еще большим расширением диапазона температур, так как наш модуль и подход Gen 4 становится реальностью. Для подобного класса инфраструктуры мы удаляем генераторы, чиллеры, ИБП, и, возможно, будем предлагать более низкие затраты, по сравнению с традиционной инфраструктурой.
Applications that demand higher level of redundancy or temperature control will use configurations of Gen 4 to meet those needs, however, they will also cost more (but still less than traditional data centers). We see this cost difference driving engineering behavioral change in that we predict more applications will drive towards Geo redundancy to lower costs.
Системы, которым требуется более высокий уровень резервирования или температурного контроля, будут использовать конфигурации Gen 4, отвечающие этим требованиям, однако, они будут также стоить больше. Но все равно они будут стоить меньше, чем традиционные дата-центры. Мы предвидим, что эти различия в затратах будут вызывать изменения в методах инжиниринга, и по нашим прогнозам, это будет выражаться в переходе все большего числа систем на гео-избыточность и меньшие затраты.
Another cool thing about Gen 4 is that it allows us to deploy capacity when our demand dictates it. Once finalized, we will no longer need to make large upfront investments. Imagine driving capital costs more closely in-line with actual demand, thus greatly reducing time-to-market and adding the capacity Online inherent in the design. Also reduced is the amount of construction labor required to put these “building blocks” together. Since the entire platform requires pre-manufacture of its core components, on-site construction costs are lowered. This allows us to maximize our return on invested capital.
Еще одно достоинство Gen 4 состоит в том, что он позволяет нам разворачивать дополнительные мощности, когда нам это необходимо. Как только мы закончим проект, нам больше не нужно будет делать большие начальные капиталовложения. Представьте себе возможность более точного согласования капитальных затрат с реальными требованиями, и тем самым значительного снижения времени вывода на рынок и интерактивного добавления мощностей, предусматриваемого проектом. Также снижен объем строительных работ, требуемых для сборки этих “строительных блоков”. Поскольку вся платформа требует предварительного изготовления ее базовых компонентов, затраты на сборку также снижены. Это позволит нам увеличить до максимума окупаемость своих капиталовложений.
Мы все подвергаем сомнениюIn our design process, we questioned everything. You may notice there is no roof and some might be uncomfortable with this. We explored the need of one and throughout our research we got some surprising (positive) results that showed one wasn’t needed.
В своем процессе проектирования мы все подвергаем сомнению. Вы, наверное, обратили внимание на отсутствие крыши, и некоторым специалистам это могло не понравиться. Мы изучили необходимость в крыше и в ходе своих исследований получили удивительные результаты, которые показали, что крыша не нужна.
Серийное производство дата центров
In short, we are striving to bring Henry Ford’s Model T factory to the data center. http://en.wikipedia.org/wiki/Henry_Ford#Model_T. Gen 4 will move data centers from a custom design and build model to a commoditized manufacturing approach. We intend to have our components built in factories and then assemble them in one location (the data center site) very quickly. Think about how a computer, car or plane is built today. Components are manufactured by different companies all over the world to a predefined spec and then integrated in one location based on demands and feature requirements. And just like Henry Ford’s assembly line drove the cost of building and the time-to-market down dramatically for the automobile industry, we expect Gen 4 to do the same for data centers. Everything will be pre-manufactured and assembled on the pad.Мы хотим применить модель автомобильной фабрики Генри Форда к дата-центру. Проект Gen 4 будет способствовать переходу от модели специализированного проектирования и строительства к товарно-производственному, серийному подходу. Мы намерены изготавливать свои компоненты на заводах, а затем очень быстро собирать их в одном месте, в месте строительства дата-центра. Подумайте о том, как сегодня изготавливается компьютер, автомобиль или самолет. Компоненты изготавливаются по заранее определенным спецификациям разными компаниями во всем мире, затем собираются в одном месте на основе спроса и требуемых характеристик. И точно так же как сборочный конвейер Генри Форда привел к значительному уменьшению затрат на производство и времени вывода на рынок в автомобильной промышленности, мы надеемся, что Gen 4 сделает то же самое для дата-центров. Все будет предварительно изготавливаться и собираться на месте.
Невероятно энергоэффективный ЦОД
And did we mention that this platform will be, overall, incredibly energy efficient? From a total energy perspective not only will we have remarkable PUE values, but the total cost of energy going into the facility will be greatly reduced as well. How much energy goes into making concrete? Will we need as much of it? How much energy goes into the fuel of the construction vehicles? This will also be greatly reduced! A key driver is our goal to achieve an average PUE at or below 1.125 by 2012 across our data centers. More than that, we are on a mission to reduce the overall amount of copper and water used in these facilities. We believe these will be the next areas of industry attention when and if the energy problem is solved. So we are asking today…“how can we build a data center with less building”?А мы упоминали, что эта платформа будет, в общем, невероятно энергоэффективной? С точки зрения общей энергии, мы получим не только поразительные значения PUE, но общая стоимость энергии, затраченной на объект будет также значительно снижена. Сколько энергии идет на производство бетона? Нам нужно будет столько энергии? Сколько энергии идет на питание инженерных строительных машин? Это тоже будет значительно снижено! Главным стимулом является достижение среднего PUE не больше 1.125 для всех наших дата-центров к 2012 году. Более того, у нас есть задача сокращения общего количества меди и воды в дата-центрах. Мы думаем, что эти задачи станут следующей заботой отрасли после того как будет решена энергетическая проблема. Итак, сегодня мы спрашиваем себя…“как можно построить дата-центр с меньшим объемом строительных работ”?
Строительство дата центров без чиллеровWe have talked openly and publicly about building chiller-less data centers and running our facilities using aggressive outside economization. Our sincerest hope is that Gen 4 will completely eliminate the use of water. Today’s data centers use massive amounts of water and we see water as the next scarce resource and have decided to take a proactive stance on making water conservation part of our plan.
Мы открыто и публично говорили о строительстве дата-центров без чиллеров и активном использовании в наших центрах обработки данных технологий свободного охлаждения или фрикулинга. Мы искренне надеемся, что Gen 4 позволит полностью отказаться от использования воды. Современные дата-центры расходуют большие объемы воды и так как мы считаем воду следующим редким ресурсом, мы решили принять упреждающие меры и включить экономию воды в свой план.
By sharing this with the industry, we believe everyone can benefit from our methodology. While this concept and approach may be intimidating (or downright frightening) to some in the industry, disclosure ultimately is better for all of us.
Делясь этим опытом с отраслью, мы считаем, что каждый сможет извлечь выгоду из нашей методологией. Хотя эта концепция и подход могут показаться пугающими (или откровенно страшными) для некоторых отраслевых специалистов, раскрывая свои планы мы, в конечном счете, делаем лучше для всех нас.
Gen 4 design (even more than just containers), could reduce the ‘religious’ debates in our industry. With the central spine infrastructure in place, containers or pre-manufactured server halls can be either AC or DC, air-side economized or water-side economized, or not economized at all (though the sanity of that might be questioned). Gen 4 will allow us to decommission, repair and upgrade quickly because everything is modular. No longer will we be governed by the initial decisions made when constructing the facility. We will have almost unlimited use and re-use of the facility and site. We will also be able to use power in an ultra-fluid fashion moving load from critical to non-critical as use and capacity requirements dictate.
Проект Gen 4 позволит уменьшить ‘религиозные’ споры в нашей отрасли. Располагая базовой инфраструктурой, контейнеры или сборные серверные могут оборудоваться системами переменного или постоянного тока, воздушными или водяными экономайзерами, или вообще не использовать экономайзеры. Хотя можно подвергать сомнению разумность такого решения. Gen 4 позволит нам быстро выполнять работы по выводу из эксплуатации, ремонту и модернизации, поскольку все будет модульным. Мы больше не будем руководствоваться начальными решениями, принятыми во время строительства дата-центра. Мы сможем использовать этот дата-центр и инфраструктуру в течение почти неограниченного периода времени. Мы также сможем применять сверхгибкие методы использования электрической энергии, переводя оборудование в режимы критической или некритической нагрузки в соответствии с требуемой мощностью.
Gen 4 – это стандартная платформаFinally, we believe this is a big game changer. Gen 4 will provide a standard platform that our industry can innovate around. For example, all modules in our Gen 4 will have common interfaces clearly defined by our specs and any vendor that meets these specifications will be able to plug into our infrastructure. Whether you are a computer vendor, UPS vendor, generator vendor, etc., you will be able to plug and play into our infrastructure. This means we can also source anyone, anywhere on the globe to minimize costs and maximize performance. We want to help motivate the industry to further innovate—with innovations from which everyone can reap the benefits.
Наконец, мы уверены, что это будет фактором, который значительно изменит ситуацию. Gen 4 будет представлять собой стандартную платформу, которую отрасль сможет обновлять. Например, все модули в нашем Gen 4 будут иметь общепринятые интерфейсы, четко определяемые нашими спецификациями, и оборудование любого поставщика, которое отвечает этим спецификациям можно будет включать в нашу инфраструктуру. Независимо от того производите вы компьютеры, ИБП, генераторы и т.п., вы сможете включать свое оборудование нашу инфраструктуру. Это означает, что мы также сможем обеспечивать всех, в любом месте земного шара, тем самым сводя до минимума затраты и максимальной увеличивая производительность. Мы хотим создать в отрасли мотивацию для дальнейших инноваций – инноваций, от которых каждый сможет получать выгоду.
Главные характеристики дата-центров четвертого поколения Gen4To summarize, the key characteristics of our Generation 4 data centers are:
Scalable
Plug-and-play spine infrastructure
Factory pre-assembled: Pre-Assembled Containers (PACs) & Pre-Manufactured Buildings (PMBs)
Rapid deployment
De-mountable
Reduce TTM
Reduced construction
Sustainable measuresНиже приведены главные характеристики дата-центров четвертого поколения Gen 4:
Расширяемость;
Готовая к использованию базовая инфраструктура;
Изготовление в заводских условиях: сборные контейнеры (PAC) и сборные здания (PMB);
Быстрота развертывания;
Возможность демонтажа;
Снижение времени вывода на рынок (TTM);
Сокращение сроков строительства;
Экологичность;Map applications to DC Class
We hope you join us on this incredible journey of change and innovation!
Long hours of research and engineering time are invested into this process. There are still some long days and nights ahead, but the vision is clear. Rest assured however, that we as refine Generation 4, the team will soon be looking to Generation 5 (even if it is a bit farther out). There is always room to get better.
Использование систем электропитания постоянного тока.
Мы надеемся, что вы присоединитесь к нам в этом невероятном путешествии по миру изменений и инноваций!
На этот проект уже потрачены долгие часы исследований и проектирования. И еще предстоит потратить много дней и ночей, но мы имеем четкое представление о конечной цели. Однако будьте уверены, что как только мы доведем до конца проект модульного дата-центра четвертого поколения, мы вскоре начнем думать о проекте дата-центра пятого поколения. Всегда есть возможность для улучшений.So if you happen to come across Goldilocks in the forest, and you are curious as to why she is smiling you will know that she feels very good about getting very close to ‘JUST RIGHT’.
Generations of Evolution – some background on our data center designsТак что, если вы встретите в лесу девочку по имени Лютик, и вам станет любопытно, почему она улыбается, вы будете знать, что она очень довольна тем, что очень близко подошла к ‘ОПИМАЛЬНОМУ РЕШЕНИЮ’.
Поколения эволюции – история развития наших дата-центровWe thought you might be interested in understanding what happened in the first three generations of our data center designs. When Ray Ozzie wrote his Software plus Services memo it posed a very interesting challenge to us. The winds of change were at ‘tornado’ proportions. That “plus Services” tag had some significant (and unstated) challenges inherent to it. The first was that Microsoft was going to evolve even further into an operations company. While we had been running large scale Internet services since 1995, this development lead us to an entirely new level. Additionally, these “services” would span across both Internet and Enterprise businesses. To those of you who have to operate “stuff”, you know that these are two very different worlds in operational models and challenges. It also meant that, to achieve the same level of reliability and performance required our infrastructure was going to have to scale globally and in a significant way.
Мы подумали, что может быть вам будет интересно узнать историю первых трех поколений наших центров обработки данных. Когда Рэй Оззи написал свою памятную записку Software plus Services, он поставил перед нами очень интересную задачу. Ветра перемен двигались с ураганной скоростью. Это окончание “plus Services” скрывало в себе какие-то значительные и неопределенные задачи. Первая заключалась в том, что Майкрософт собиралась в еще большей степени стать операционной компанией. Несмотря на то, что мы управляли большими интернет-сервисами, начиная с 1995 г., эта разработка подняла нас на абсолютно новый уровень. Кроме того, эти “сервисы” охватывали интернет-компании и корпорации. Тем, кому приходится всем этим управлять, известно, что есть два очень разных мира в области операционных моделей и задач. Это также означало, что для достижения такого же уровня надежности и производительности требовалось, чтобы наша инфраструктура располагала значительными возможностями расширения в глобальных масштабах.
It was that intense atmosphere of change that we first started re-evaluating data center technology and processes in general and our ideas began to reach farther than what was accepted by the industry at large. This was the era of Generation 1. As we look at where most of the world’s data centers are today (and where our facilities were), it represented all the known learning and design requirements that had been in place since IBM built the first purpose-built computer room. These facilities focused more around uptime, reliability and redundancy. Big infrastructure was held accountable to solve all potential environmental shortfalls. This is where the majority of infrastructure in the industry still is today.
Именно в этой атмосфере серьезных изменений мы впервые начали переоценку ЦОД-технологий и технологий вообще, и наши идеи начали выходить за пределы общепринятых в отрасли представлений. Это была эпоха ЦОД первого поколения. Когда мы узнали, где сегодня располагается большинство мировых дата-центров и где находятся наши предприятия, это представляло весь опыт и навыки проектирования, накопленные со времени, когда IBM построила первую серверную. В этих ЦОД больше внимания уделялось бесперебойной работе, надежности и резервированию. Большая инфраструктура была призвана решать все потенциальные экологические проблемы. Сегодня большая часть инфраструктуры все еще находится на этом этапе своего развития.
We soon realized that traditional data centers were quickly becoming outdated. They were not keeping up with the demands of what was happening technologically and environmentally. That’s when we kicked off our Generation 2 design. Gen 2 facilities started taking into account sustainability, energy efficiency, and really looking at the total cost of energy and operations.
Очень быстро мы поняли, что стандартные дата-центры очень быстро становятся устаревшими. Они не поспевали за темпами изменений технологических и экологических требований. Именно тогда мы стали разрабатывать ЦОД второго поколения. В этих дата-центрах Gen 2 стали принимать во внимание такие факторы как устойчивое развитие, энергетическая эффективность, а также общие энергетические и эксплуатационные.
No longer did we view data centers just for the upfront capital costs, but we took a hard look at the facility over the course of its life. Our Quincy, Washington and San Antonio, Texas facilities are examples of our Gen 2 data centers where we explored and implemented new ways to lessen the impact on the environment. These facilities are considered two leading industry examples, based on their energy efficiency and ability to run and operate at new levels of scale and performance by leveraging clean hydro power (Quincy) and recycled waste water (San Antonio) to cool the facility during peak cooling months.
Мы больше не рассматривали дата-центры только с точки зрения начальных капитальных затрат, а внимательно следили за работой ЦОД на протяжении его срока службы. Наши объекты в Куинси, Вашингтоне, и Сан-Антонио, Техас, являются образцами наших ЦОД второго поколения, в которых мы изучали и применяли на практике новые способы снижения воздействия на окружающую среду. Эти объекты считаются двумя ведущими отраслевыми примерами, исходя из их энергетической эффективности и способности работать на новых уровнях производительности, основанных на использовании чистой энергии воды (Куинси) и рециклирования отработанной воды (Сан-Антонио) для охлаждения объекта в самых жарких месяцах.
As we were delivering our Gen 2 facilities into steel and concrete, our Generation 3 facilities were rapidly driving the evolution of the program. The key concepts for our Gen 3 design are increased modularity and greater concentration around energy efficiency and scale. The Gen 3 facility will be best represented by the Chicago, Illinois facility currently under construction. This facility will seem very foreign compared to the traditional data center concepts most of the industry is comfortable with. In fact, if you ever sit around in our container hanger in Chicago it will look incredibly different from a traditional raised-floor data center. We anticipate this modularization will drive huge efficiencies in terms of cost and operations for our business. We will also introduce significant changes in the environmental systems used to run our facilities. These concepts and processes (where applicable) will help us gain even greater efficiencies in our existing footprint, allowing us to further maximize infrastructure investments.
Так как наши ЦОД второго поколения строились из стали и бетона, наши центры обработки данных третьего поколения начали их быстро вытеснять. Главными концептуальными особенностями ЦОД третьего поколения Gen 3 являются повышенная модульность и большее внимание к энергетической эффективности и масштабированию. Дата-центры третьего поколения лучше всего представлены объектом, который в настоящее время строится в Чикаго, Иллинойс. Этот ЦОД будет выглядеть очень необычно, по сравнению с общепринятыми в отрасли представлениями о дата-центре. Действительно, если вам когда-либо удастся побывать в нашем контейнерном ангаре в Чикаго, он покажется вам совершенно непохожим на обычный дата-центр с фальшполом. Мы предполагаем, что этот модульный подход будет способствовать значительному повышению эффективности нашего бизнеса в отношении затрат и операций. Мы также внесем существенные изменения в климатические системы, используемые в наших ЦОД. Эти концепции и технологии, если применимо, позволят нам добиться еще большей эффективности наших существующих дата-центров, и тем самым еще больше увеличивать капиталовложения в инфраструктуру.
This is definitely a journey, not a destination industry. In fact, our Generation 4 design has been under heavy engineering for viability and cost for over a year. While the demand of our commercial growth required us to make investments as we grew, we treated each step in the learning as a process for further innovation in data centers. The design for our future Gen 4 facilities enabled us to make visionary advances that addressed the challenges of building, running, and operating facilities all in one concerted effort.
Это определенно путешествие, а не конечный пункт назначения. На самом деле, наш проект ЦОД четвертого поколения подвергался серьезным испытаниям на жизнеспособность и затраты на протяжении целого года. Хотя необходимость в коммерческом росте требовала от нас постоянных капиталовложений, мы рассматривали каждый этап своего развития как шаг к будущим инновациям в области дата-центров. Проект наших будущих ЦОД четвертого поколения Gen 4 позволил нам делать фантастические предположения, которые касались задач строительства, управления и эксплуатации объектов как единого упорядоченного процесса.
Тематики
Синонимы
EN
Англо-русский словарь нормативно-технической терминологии > modular data center
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17 rent
1. noun 2. transitive verb1) (use) mieten [Haus, Wohnung usw.]; pachten [Land]; mieten [Auto, Gerät]2) (let) vermieten [Haus, Wohnung, Auto etc.] (to Dat., an + Akk.); verpachten [Land] (to Dat., an + Akk.)Phrasal Verbs:- academic.ru/109382/rent_out">rent out* * *I 1. [rent] noun(money paid, usually regularly, for the use of a house, shop, land etc which belongs to someone else: The rent for this flat is $50 a week.) die Miete2. verb(to pay or receive rent for the use of a house, shop, land etc: We rent this flat from Mr Smith; Mr Smith rents this flat to us.) (ver-)mieten- rental- rent-a-car
- rent-free 3. adjective(for which rent does not need to be paid: a rent-free flat.) mietfrei- rent outII [rent] noun(an old word for a tear (in clothes etc).) der Riß* * *rent1[rent]I. n Riss mrent2[rent]I. n (for accommodation, business premises or objects) Miete f; (esp for land and business) Pacht f; (for accommodation and especially business premises) Mietzins m SÜDD, ÖSTERR, SCHWEIZ\rent ceiling Höchstmiete f\rent control Mietpreisbindung f\rent controls Mietgesetze pl\rent-a-room AM Mietraum m\rent-a-room company Zimmervermittlung fmonthly \rent of £55 Monatsmiete f von 55 Pfundto pay \rent Miete bezahlento raise \rents [or AM the \rent] die Mieten erhöhento be behind with the \rent mit der Miete in Verzug [o im Rückstand] sein▪ for \rent AM zu vermietenII. vt▪ to \rent sth1. (let) flat, house, office etw vermieten2. (hire) etw mietento \rent land Land pachtento \rent sth from sb etw von jdm mietenIII. vi vermietet werden* * *I [rent]1. n(for house, room) Miete f; (for farm, factory) Pacht ffor rent (US) — zu vermieten/verpachten/verleihen
2. vt1) house, room mieten; farm, factory pachten; TV, car etc leihen; video sich (dat) ausleihen, ausleihen2) vermieten; verpachten; verleihen;3. vi(= rent house, room) mieten; (= rent farm, factory) pachten; (= rent TV etc) leasen; (= rent video) ausleihen II pret, ptp of rend Riss m; (in rock) Spalte f* * *rent1 [rent]A s1. a) (Wohnungs)Miete f, Mietzins mlet for rent verpachten;take at rent pachten;2. besonders US Leihgebühr f, Miete f:for rent zu vermieten, zu verleihen ( → A 1)B v/t1. vermieten2. verpachten3. mieten:4. pachten5. Miete oder Pacht verlangen von6. besonders USrent a car sich einen Leih- oder Mietwagen nehmen;rented car Leih-, Mietwagen mrent2 [rent] s1. Riss m2. Spalt m, Spalte f3. fig Spaltung f* * *1. noun 2. transitive verb1) (use) mieten [Haus, Wohnung usw.]; pachten [Land]; mieten [Auto, Gerät]2) (let) vermieten [Haus, Wohnung, Auto etc.] (to Dat., an + Akk.); verpachten [Land] (to Dat., an + Akk.)Phrasal Verbs:- rent out* * *adj.pachten adj.vermieten adj. n.Hausmiete f.Miete -n f.Mietpreis m.Pacht -en f.Pachtzins m. -
18 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 -
19 facility
1) устройство; установка2) мн. ч. оборудование; аппаратура, аппаратное обеспечение; технические средства; производственные мощности4) канал связи•-
air navigation facilities
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aircraft facility
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aircraft manufacturing facilities
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aircraft standby facilities
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airways facilities
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altitude test facility
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approach facilities
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aquatic photovoltaic facility
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at-reactor dry storage facility
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audio transfer facility
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blending facilities
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blocked facility
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bundling facilities
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cable facilities
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canned cycle facilities
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capsule cleaning facilities
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car production facility
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car repair facility
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cargo handling facilities
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centralized video tape facilities
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charging facilities
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clean room facilities
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coal-cleaning facilities
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coal-storage facility
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coke-quenching facilities
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cold-storage facilities
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combined outlet facility
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communications facilities
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communication facilities
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communications security facilities
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communication security facilities
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comprehensive facilities
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computer facility
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computer-aided design facilities
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computer-aided manufacturing facilities
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conditioning facilities
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control facilities
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cryogenic facilities
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custom facilities
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cutter compensation facility
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debugging facilities
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deep space instrumentation facility
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degassing facility
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discharge facility
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dishwashing facility
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display facilities
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diversion facility
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DNC facilities
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drying facilities
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dual-purpose energy facility
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editing facility
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effluent-disposal facilities
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electrical distribution facilities
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electrical facility
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fabrication facilities
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fault tracing facilities
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field facilities
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field-test facilities
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finishing facilities
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firing facilities
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fish facility
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fuel-reprocessing facility
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gathering facilities
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generalized facilities
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ground handling facilities
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hot extrusion facilities
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in-house facilities
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interface facilities
-
intermodal facility
-
investment casting facility
-
job-shop production facilities
-
ladle-degassing facility
-
landline facilities
-
library facilities
-
lighting facilities
-
limited facilities
-
lining facilities
-
locomotive facility
-
locomotive servicing facility
-
machining facilities
-
maintenance facility
-
management facilities
-
manufacturing facilities
-
MDH facility
-
melting facility
-
metal-degassing facility
-
mirror fusion test facility
-
mooring facility
-
multilayering facility
-
navigation facility
-
navigational facilities
-
office facilities
-
oil field facility
-
oil handling facilities
-
oil servicing facilities
-
oil-loading facilities
-
orbital facility
-
orderwire facilities
-
pallet off-loading facility
-
patching facilities
-
peripheral facilities
-
photovoltaic facility
-
photovoltaic test facility
-
post-irradiation examination facility
-
power facility
-
power reactor facility
-
process facilities
-
production facilities
-
pumping facility
-
radio facilities
-
ramp facilities
-
reactor facility
-
reception facility
-
repair facilities
-
reprographic facilities
-
sanitation facility
-
satellite transmission facilities
-
scrap-handling facilities
-
scrap-processing facilities
-
security facilities
-
service facility
-
shop lining facilities
-
slaughtering facilities
-
solar simulator facility
-
standby facility
-
steam-degassing facilities
-
storage facility
-
studio facilities
-
surface facility
-
switching facilities
-
tank cleaning facility
-
tank farm facilities
-
tape recording facility
-
tar-distillation facilities
-
television facilities
-
television-production facility
-
television-switching facilities
-
terminal facility
-
test facilities
-
thorium-uranium reprocessing facility
-
threading facility
-
toilet facility
-
tool call-up facility
-
tool offset facility
-
tool presetting facility
-
topping facility
-
transmission facility
-
transuranic waste treatment facility
-
truck-loading facilities
-
unloading facilities
-
utility-installed photovoltaic facility
-
vacant facility
-
video facilities
-
video-switching facilities
-
wagon washout facility
-
waste handling facility
-
waste-water treatment facility
-
water flood facilities
-
water intake facility
-
water treating facility
-
waterworks facility
-
weightless environment training facility
-
withdrawal-roll facility -
20 mode
1) модаа) нормальный тип колебаний, собственный тип колебаний; нормальный тип волн, собственный тип волн3) способ; метод4) тип; форма ( выражения или проявления чего-либо)6) ак. лад; тональность•- π-mode- 1284 compliance mode
- 32-bit mode
- 32-bit transfer mode
- 8086 real mode
- accelerated transit mode
- accumulation-layer mode
- acoustic mode
- active mode
- address mode
- adjacent modes
- all points addressable mode
- alpha mode
- alphanumeric mode
- alternate mode
- AN mode
- analog mode
- angular dependent mode
- angular mode
- anomalous mode
- answer mode
- antiferrodistortive mode
- antiferromagnetic mode
- anti-Stokes mode
- antisymmetric mode
- APA mode
- aperiodic mode
- asymmetric mode
- asynchronous balanced mode
- asynchronous response mode
- asynchronous transfer mode
- auto-answer mode
- auto-dial mode
- avalanche mode
- axial mode
- background mode
- backward mode
- beam mode
- beam-waveguide mode
- Bi-Di mode
- bidirectional mode
- BIOS video mode
- birefringent mode
- bistable mode
- bitmap mode
- black-and-white mode
- block mode
- block-multiplex mode
- blow-up mode
- browse mode
- burst mode
- byte mode
- calculator mode
- central mode
- characteristic mode
- chat mode
- chip test mode
- CHS mode
- circle-dot mode
- circular mode
- circularly polarized mode
- circularly symmetric mode
- clockwise mode
- CMY mode
- CMYK mode
- collective modes
- color mode
- command mode
- common mode
- communications mode
- compatibility mode
- competing modes
- concert hall reverberation mode
- configuration mode
- constant-frequency mode
- contention mode
- continuous-wave mode
- contour modes
- control mode
- conversational mode
- cooked mode
- correlator mode
- counter mode
- counterclockwise mode
- coupled modes
- crossover mode
- current mode
- cutoff mode
- cw mode
- cyclotron mode
- cylinder-head-sector mode
- damped mode
- data-in mode
- data-out mode
- Debye mode
- Debye-like mode
- defocus-dash mode
- defocus-focus mode
- degenerate mode
- delayed domain mode
- depletion mode
- deposition mode
- difference mode
- differential mode
- diffusive mode
- digital mode
- dipole mode
- direct memory access transfer mode
- disk-at-once mode
- display mode
- dissymmetric mode
- DMA transfer mode
- domain mode
- dominant mode
- dot-addressable mode
- dot-dash mode
- doze mode
- draft mode
- drift mode
- ducted mode
- duotone mode
- duplex mode
- dynamic mode
- dynamic scattering mode
- E mode
- Emn mode
- ECHS mode
- ECP mode
- edge mode
- edit mode
- eigen mode
- electromagnetic mode
- elementary mode
- elliptically polarized mode
- embedded mode
- end-fire mode
- enhanced parallel port mode
- enhanced virtual 8086 mode
- enhanced virtual 86 mode
- enhancement mode
- EPP mode
- equiamplitude modes
- EV8086 mode
- EV86 mode
- evanescent mode
- even mode
- even-order mode
- even-symmetrical mode
- exchange mode
- exchange-dominated mode
- excited mode
- exciting mode
- extended capability port mode
- extended cylinder-head-sector mode
- extensional mode
- extraordinary mode
- FA mode
- face shear modes
- failure mode
- fast mode
- fast-forward mode
- ferrite-air mode
- ferrite-dielectric mode
- ferrite-guided mode
- ferrite-metal mode
- ferrodistortive mode
- ferroelectric mode
- file mode
- first mode
- FM mode
- forbidden mode
- force mode
- foreground mode
- forward mode
- forward-bias mode
- forward-propagating mode
- forward-scattered mode
- four-color mode
- four-output mode
- free-running mode
- full on mode
- fundamental mode
- gate mode
- Gaussian mode
- Goldstone mode
- graphic display mode
- graphic mode
- gray-level mode
- grayscale mode
- guided mode
- guided-wave mode
- Gunn mode
- gyromagnetic mode
- H mode
- Hmn mode
- half-duplex mode
- half-tone mode
- hard mode
- harmonic mode
- helicon mode
- Hermite-Gaussian mode
- higher mode
- higher-order mode
- HLS mode
- HSB mode
- HSV mode
- hybrid mode
- idling mode
- impact avalanche transit-time mode
- IMPATT mode
- indexed color mode
- inhibited domain mode
- initialization mode
- injection locked mode
- insert mode
- interactive mode
- internally-trapped mode
- interstitial diffusion mode
- ion-implantation channel mode
- ion-sound mode
- kernel mode
- kiosk mode
- L*a*b* mode
- landscape mode
- large disk mode
- lasing mode
- lattice mode
- laying mode
- LBA mode
- LCH mode
- leaky mode
- left-hand polarized mode
- left-handed polarized mode
- length modes
- letter mode
- LH mode
- limited space-charge accumulation mode
- line art mode
- local mode
- lock mode
- logical block addressing mode
- log-periodically coupled modes
- longitudinal mode
- loopback mode
- lowest mode
- lowest-order mode
- low-power mode
- LSA mode
- magnetic mode
- magnetodynamical mode
- magnetoelastic mode
- magnetosonic mode
- magnetostatic mode
- magnetron mode
- main mode
- masing mode
- master/slave mode
- mixed mode
- mode of excitation
- mode of operation
- modified semistatic mode
- modulated transit-time mode
- module test mode
- mono mode
- mono/stereo mode
- monopulse mode
- moving-target indication mode
- MTI mode
- multi mode
- multichannel mode
- multimode mode
- multiple sector mode
- multiplex mode
- mutual orthogonal modes
- native mode
- natural mode
- near-letter mode
- nibble mode
- nondegenerated mode
- non-privileged mode
- nonpropagating mode
- nonresonant mode
- nonuniform processional mode
- normal mode
- normal-incidence mode
- odd mode
- odd-order mode
- odd-symmetrical mode
- off mode
- off-axial mode
- off-line mode
- omni mode
- on mode
- on-line mode
- operation mode
- optical mode
- ordinary mode
- original mode
- originate mode
- orthogonal modes
- OS/2 compatible mode
- overdamped mode
- overtype mode
- packet mode
- packet transfer mode
- page mode
- parallel port FIFO mode
- parametric mode
- parasitic mode
- pedestal-current stabilized mode
- penetration mode
- persistent-current mode
- perturbated mode
- phonon mode
- pi mode
- PIO mode
- plane mode
- plane polarized mode
- plasma mode
- plasma-guide mode
- playback mode
- polarized mode
- poly mode
- portrait mode
- preferred mode
- principal mode
- privileged mode
- programmed input/output mode
- promiscuous mode
- protected mode
- protected virtual address mode
- proton mode
- pseudo-Rayleigh mode
- pseudospin mode
- pseudospin-wave mode
- pulse mode
- quadrupole mode
- quadtone mode
- quasi-degenerated mode
- quenched domain mode
- quenched multiple-domain mode
- quenched single-domain mode
- question-and-answer mode
- radial mode
- radiating mode
- radiation mode
- Raman active mode
- ranging mode
- rare mode
- raw mode
- RB mode
- read multiple mode
- read-mostly mode
- real address mode
- real mode
- real-time mode
- receive mode
- reflected mode
- reflection mode
- refracted mode
- rehearse mode
- relaxational mode
- resonant mode
- return-beam mode
- reverberation mode
- reverse-bias mode
- rewind mode
- RGB mode
- RH mode
- rho-rho mode
- right-hand polarized mode
- right-handed polarized mode
- safe mode
- saturated-off mode of operation
- saturation mode
- saving mode
- scan mode
- search mode
- secondary-emission pedestal mode
- second-breakdown mode
- self-localized mode
- self-locked mode
- semistatic mode
- shear mode
- shutdown mode
- side modes
- simplex mode
- single mode
- single-vortex cycle mode
- slave mode
- sleep mode
- slow mode
- small room reverberation mode
- soft mode
- softened mode
- sorcerer's apprentice mode
- space-charge feedback mode
- space-charge mode
- spatially orthogonal modes
- special fully nested mode
- spiking mode
- spin mode
- spin-wave mode
- SPP mode
- spurious mode
- spurious pulse mode
- stable mode
- stable-negative-resistance mode
- standard parallel port mode - stationary mode
- Stokes mode
- stop clock mode
- stop mode
- stream mode
- subharmonic mode
- substitutional-diffusion mode
- subsurface mode
- sum mode
- superradiant mode
- supervisor mode
- surface skimming mode
- surface-wave mode
- suspend mode
- SVGA mode
- switching mode
- symmetric mode
- symmetry breaking mode
- symmetry restoring mode
- system management mode
- system test mode
- Tmnp wave resonant mode
- task mode
- TE mode
- TEmnp wave resonant mode
- tearing mode
- telegraph mode
- TEM mode
- terminal mode
- test mode
- text mode
- thermal mode
- thickness modes
- three-color mode
- through mode
- time-difference mode
- time-sharing mode
- TM mode
- TMmnp wave resonant mode
- torsional modes
- total-internal reflection mode
- track-at-once mode
- transfer mode
- transient mode
- transit-time domain mode
- transit-time mode
- transmission mode
- transmitted mode
- transmitting mode
- transverse electric mode
- transverse electromagnetic mode
- transverse magnetic mode
- transverse mode
- transversely polarized mode
- transverse-symmetrical mode
- TRAPATT mode
- trapped mode
- trapped plasma avalanche transit-time mode
- trapped-domain mode
- traveling space-charge mode
- traveling-wave mode
- tristate test mode
- tritone mode
- truncated mode
- twist mode
- twisted nematic mode
- TXT mode
- typeover mode
- uncoupled modes
- undamped mode
- underdamped mode
- unguided mode
- unidirectional mode
- unilateral mode
- unperturbed mode
- unreal mode
- unstable mode
- unwanted mode
- user mode
- V8086 mode
- V86 mode
- VGA mode
- vibration mode
- video mode
- virtual 8086 mode
- virtual 86 mode
- virtual real mode
- volume magnetostatic mode
- wait for key mode
- waiting mode
- Walker mode
- walk-off mode
- wave mode
- waveguide mode
- whispering-gallery mode
- whistler mode
- width modes
- write mode
- write multiple mode
- zero-frequency mode
- zero-order modeThe New English-Russian Dictionary of Radio-electronics > mode
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