-
1 factory installed equipment
Автомобильный термин: штатное оборудованиеУниверсальный англо-русский словарь > factory installed equipment
-
2 factory-installed equipment
Автомобильный термин: оборудование, устанавливаемое на автомобиль на заводеУниверсальный англо-русский словарь > factory-installed equipment
-
3 factory-installed equipment
оборудование, устанавливаемое на автомобиль на заводеEnglish-russian automobile dictionary > factory-installed equipment
-
4 factory-installed equipment
оборудование, устанавливаемое на автомобиль на заводеАнгло-русский словарь по машиностроению > factory-installed equipment
-
5 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 -
6 equipment
аппаратура; оборудование- acoustical equipment
- ancillary equipment
- assembly equipment
- automotive equipment
- auxiliary equipment
- brake equipment
- cab equipment
- communication equipment
- control equipment
- crash equipment
- electric equipment
- factory-installed equipment
- filling equipment
- fixed equipment
- garage equipment
- greasing equipment
- handling equipment
- hydraulic equipment
- lighting equipment
- loading equipment
- maintenance equipment
- measuring equipment
- optional equipment
- paint equipment
- production equipment
- repair equipment
- safety equipment
- service equipment
- spare equipment
- standard equipment
- standby equipment
- test equipment
- testing equipment
- tool equipment
- transport equipment
- wheel alignment equipment -
7 equipment
nоборудование; снаряжение; оснащение
- advanced equipment
- agricultural equipment
- accessory equipment
- ancillary equipment
- assembly line equipment
- audiovisual equipment
- automated equipment
- automatic equipment
- auxiliary equipment
- basic equipment
- business equipment
- capital equipment
- capitalized equipment
- cargo-handling equipment
- carrier equipment
- cine equipment
- clerical equipment
- commercial equipment
- competitive equipment
- complete equipment
- complex equipment
- construction equipment
- contract equipment
- damaged equipment
- data transmission equipment
- delivered equipment
- defective equipment
- durable equipment
- efficient equipment
- electric equipment
- electrical equipment
- electronic equipment
- electronic payment equipment
- emergency equipment
- erected equipment
- erecting equipment
- exhibition equipment
- factory equipment
- farm equipment
- fast-wearing equipment
- fire-fighting equipment
- first-rate equipment
- food-packaging equipment
- handling equipment
- heavy equipment
- heavy-duty equipment
- high-fi equipment
- hi-fi equipment
- high-precision equipment
- high quality equipment
- high-technology equipment
- hoisting and conveying equipment
- home equipment
- idle equipment
- imported equipment
- incomplete equipment
- industrial equipment
- installed equipment
- labour-displacing equipment
- labour-saving equipment
- lifting equipment
- loading equipment
- loading-unloading equipment
- main equipment
- maintenance equipment
- manufacturing equipment
- materials-handling equipment
- mechanical equipment
- metallurgical equipment
- miscellaneous equipment
- missing equipment
- modern equipment
- modified equipment
- morally obsolete equipment
- mounted equipment
- nondurable equipment
- nonstandard equipment
- nuclear equipment
- obsolete equipment
- office equipment
- operating equipment
- operative equipment
- optional equipment
- ordered equipment
- outdated equipment
- overhaul equipment
- oversized equipment
- packing equipment
- patent equipment
- peripheral equipment
- permanent equipment
- plant equipment
- port equipment
- portable equipment
- power-generating equipment
- process equipment
- process control equipment
- producers' durable equipment
- production equipment
- productive equipment
- purchased equipment
- rapidly-wearing equipment
- repair equipment
- rental equipment
- replaceable equipment
- revenue equipment
- ro-ro equipment
- quick-wearing equipment
- safety equipment
- second-hand equipment
- secondary equipment
- semi-automatic equipment
- service equipment
- serial equipment
- shop equipment
- short-lived equipment
- short-shipped equipment
- sophisticated equipment
- specialized equipment
- special-purpose equipment
- stand equipment
- standard equipment
- standby equipment
- storage equipment
- technical equipment
- technological equipment
- third generation equipment
- transport equipment
- transportation equipment
- unique equipment
- unserviceable equipment
- up-to-date equipment
- used equipment
- weighing equipment
- working equipment
- worn-out equipment
- equipment of high quality
- equipment of home manufacture
- equipment of new generations
- equipment of serial production
- equipment on display
- assemble equipment
- buy equipment
- check equipment
- deal in equipment
- deliver equipment
- design equipment
- dismantle equipment
- erect equipment
- improve equipment
- install equipment
- lease equipment
- manufacture equipment
- market equipment
- modify equipment
- mount equipment
- obtain equipment
- pack equipment
- procure equipment
- produce equipment
- purchase equipment
- put equipment into operation
- reject defective equipment
- rent equipment
- repair equipment
- retain equipment
- secure equipment
- sell equipment
- service equipment
- ship equipment
- supply equipment
- upgrade equipment
- use equipment
- utilize equipmentEnglish-russian dctionary of contemporary Economics > equipment
-
8 equipment
оборудование; снаряжение; оснащениеequipment for the manufacture of asbestos cement — оборудование для производства асбестоцементных изделий
equipment for the manufacture of ceramic products — оборудование для производства керамических материалов
- air equipment - air-conditioning equipment - air-humidifying equipment - air-painting equipment - automatic sampling equipment - cargo handling equipment - carrying and lifting equipment - construction equipment - crane equipment - crushing equipment - crushing and concentration equipment - crushing and screening equipment - decontaminating equipment - defective equipment - detritus equipment - direct-chlorine-feed equipment - durable equipment - earthmoving equipment - efficient earthmoving equipment - emergency equipment - erection equipment - exhibition equipment - fire-fighting equipment - fixed equipment - garage-repair equipment - gathering frames equipment - grit-dredging equipment - groundwater level-lowering equipment - handling equipment - hauling equipment - high-fi equipment - hi-fi equipment - homemade fire-fighting equipment - idle equipment - industrial cleaning equipment - installed equipment - kiln car conveying equipment - laboratory equipment - lime-handling equipment - loading and unloading equipment for dryer cars - manufacturing equipment - material mining equipment - measuring and control equipment - mountable pile-driving equipment - non-assembled equipment - nonstandard equipment - operational equipment - outdated equipment - pile-driving equipment - piling equipment - professional drilling equipment - quarry equipment - repair equipment - residential equipment - ripper's equipment - road-building equipment - rope-suspended boom equipment - safety equipment - sampling equipment - snow-cleaning equipment - standby equipment - stressing equipment - supplementary equipment - telescopic equipment - testing equipment - underwater construction equipment - universal equipment - up-to-date construction equipment - used equipment - vandalproof equipment - vehicle greasing equipment - water-purification equipment - water quality monitoring equipment - water-treatment equipment - weighing equipment - weld deposition equipment - welding deposition equipment - welding equipmentequipment for the manufacture of prefabricated reinforced concrete — оборудование для производства сборного железобетона
* * *оборудование- air equipmentequipment found to be damaged — оборудование с обнаруженными неисправностями ( после контрольного осмотра)
- air handling equipment
- application equipment
- automatic points equipment
- automatic spray equipment
- auxiliary building equipment
- carrying and lifting equipment
- compaction equipment
- compressed-air equipment
- concrete equipment
- concrete placing equipment
- construction equipment
- dust separation equipment
- earthmoving equipment
- EDM equipment
- electrical equipment of buildings
- electronic distance measuring equipment
- erecting equipment
- excavating equipment
- factory equipment
- fire control portable equipment
- fire-extinguishing equipment
- fire-protection equipment
- flame-cleaning equipment
- front-end equipment
- grouting equipment
- high-performance equipment
- high-pressure equipment
- hoisting equipment
- hydraulic equipment
- jacking equipment
- jacking equipment for lift slab
- joint sealing equipment
- laboratory equipment
- lifting equipment
- load-and-carry equipment
- load cell weighing equipment
- loading equipment
- materials-handling equipment
- measuring equipment
- mechanical handling equipment
- mobile equipment
- monitoring equipment
- motor-driven equipment
- office equipment
- own equipment
- oxygen flame-grooving equipment
- personal protective equipment
- pile driving equipment
- piling equipment
- play equipment
- pneumatic equipment
- portable equipment
- protective face equipment
- protective head equipment
- refrigeration equipment
- reverse circulating drilling equipment
- road repair equipment
- safety equipment
- scarifying equipment
- self-contained equipment
- service equipment
- shotcrete equipment
- signaling equipment
- site equipment
- snow clearing equipment
- specialized equipment
- spray equipment
- stationary equipment
- stressing equipment
- technical equipment
- tensioning equipment
- testing equipment
- track equipment
- vacuum lifting equipment
- vandal-proof equipment
- vehicle-mounted equipment
- water-borne equipment
- weight-moving equipment
- welding equipment -
9 key
1) (криптографический) ключ2) ключ к замку или запирающему устройству, механический ключ- base key- candidate key- card key- code key- data key- DES key- fake key- file key- good key- hex key- host key- link key- lost key- node key- numeric key- numerical key- pass key- PRN key- safe key- seed key- test key- true key- used key- user key- weak key- work key- zone key -
10 PDM
- широтно-импульсная модуляция
- фазоразностная модуляция
- управление данными об изделии
- поверхностная акустическая волна
- модуляция по длительности импульса
- модуль распределения питания
модуль распределения питания
-
[Интент]
Рис. APC
Модуль для подачи питания на трехфазную нагрузку
Рис. APC
Модуль для подачи питания на однофазные нагрузкиПараллельные тексты EN-RU
Factory assembled and tested Power Distribution Modules include circuit breaker, power cord, power connection, and circuit monitoring.
Собранные и проверенные на заводе-изготовиетеле модули распределения питания включают в себя автоматический выключатель, кабель, кабельную розетку и средства контроля состояния линии питания.
A variety of breaker and connector options can be chosen to supply either three-phase or single-phase power to the load.
Широкий выбор автоматических выключателей и кабельных розеток позволяет легко подобрать нужный модуль для подачи питания на трехфазные и однофазные нагрузки.
When demand rises and expansion becomes necessary, simply plug in new Power Distribution Modules. The factory-assembled modules, which include circuit breaker, power cord, and power connection, can be installed in mere minutes. There are multiple power ratings and power cord lengths for low to high power, guaranteeing compatibility and quick, easy, and convenient installation.
[APC]Когда потребляемая мощность увеличивается и необходимо расширение системы бесперебойного питания, то достаточно просто вставить новые модули распределения питания. Собранные на заводе-изготовителе модули, состоящие из автоматического выключателя, кабеля и кабельной розетки, можно установить за несколько минут. Модули поставляются на различные номинальные токи и с кабелями различной длины, что позволяет легко подобрать нужный модуль, быстро и без особого труда его установить.
[Перевод Интент]
How to install the PDM
Note: Some Power Distribution Units have filler plates installed. When a PDM is to be installed, the filler plate must be removed from the busbar.
1 Press down on the clip.
2 Pull out the plate from the unit. (Do not throw away the filler plate. Keep it for potential later use).3 Verify that all the breakers are in the OFF position.
4 Press the red button to release the latch.
5 Pull open the latch.Vertical Rack Distribution Panel
Horizontal Rack Distribution Panel
6 Feed the cable(s) up through the top opening in the enclosure and into the cable power troughs (if applicable) on top of enclosures.
How to install a PDM circuit breaker handle tie1 Locate the handle tie above the circuit breaker handles aligning the two tabs between the three handles.
2 Push the handle tie towards the circuit breaker handles until it snaps into position. Check to make sure that the handle tie is secure.
3 The handle tie can be removed by pulling it from the circuit breaker handles.Тематики
- НКУ (шкафы, пульты,...)
- источники и системы электропитания
EN
модуляция по длительности импульса
широтно-импульсная модуляция
ШИМ
—
[Е.С.Алексеев, А.А.Мячев. Англо-русский толковый словарь по системотехнике ЭВМ. Москва 1993]Тематики
Синонимы
EN
управление данными об изделии
Системы PDM обобщают такие технологии, как:
EDM (engineering data management) - управление инженерными данными,
PIM (product information management) - управление информацией об изделии,
TDM (technical data management) - управление техническими данными,
TIM (technical information management) - управление технической информацией,
а также другие системы, которые используются для манипулирования информацией, всесторонне определяющей конкретное изделие. Короче говоря, любая информация, необходимая на том или ином этапе жизненного цикла изделия, может управляться системой PDM, которая предоставляет корректные данные всем пользователям и всем промышленным информационным системам по мере надобности. Наряду с данными, PDM управляет и проектом - процессом разработки изделия, контролируя собственно информацию об изделии - "продукте", о состоянии объектов данных, об утверждении вносимых изменений, осуществляя авторизацию и другие операции, которые влияют на данные об изделии и режимы доступа к ним каждого конкретного пользователя.
Таким образом, речь идет о полном, централизованном и постоянном автоматизированном контроле за всей совокупностью данных, описывающих как само изделие, так и процессы его конструирования, производства, эксплуатации и утилизации.
[ http://www.morepc.ru/dict/]Тематики
EN
фазоразностная модуляция
—
[Л.Г.Суменко. Англо-русский словарь по информационным технологиям. М.: ГП ЦНИИС, 2003.]Тематики
EN
широтно-импульсная модуляция
ШИМ
Последовательный сигнал, информативным в котором является ширина импульса при постоянной частоте следования.
[ http://www.morepc.ru/dict/]
широтно-импульсная модуляция
-
[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва]Тематики
- электротехника, основные понятия
Синонимы
EN
06.04.13 поверхностная акустическая волна [ surface acoustic wave; SAW]: Электроакустический эффект, используемый в системах автоматической идентификации, когда микроволновые радиосигналы малой мощности с помощью пьезоэлектрического кристалла в радиочастотной метке преобразуются в ультразвуковые поверхностные акустические волны.
Примечание - Информация об уникальной идентификации содержится в фазово-временных вариациях отраженного радиочастотной меткой сигнала.
<2>4 Сокращения
ARQ
Автоматический запрос повтора [Automatic Repeat Request]
ASK
Амплитудная манипуляция [Amplitude Shift Keying]
BPSK
Бинарная фазовая манипуляция [Binary Phase Shift Keying]
CDMA
Множественный доступ с кодовым разделением каналов [Code Division Multiple Access]
CSMA
Множественный доступ с анализом состояния канала передачи данных [Carrier Sense Multiple Access]
CSMA/CD
Множественный доступ с анализом состояния канала передачи данных и обнаружением конфликтов [Carrier Sense Multiple Access with Collision Detection]
DBPSK
Дифференциальная бинарная фазовая манипуляция [Differential binary phase shift keying]
DSSS
Широкополосная модуляция с непосредственной передачей псевдослучайной последовательности [Direct sequence spread spectrum modulation]
EIRP (ЭИИМ)
Эквивалентная изотропно-излучаемая мощность [Equivalent Isotropically Radiated Power]
EMI
Электромагнитная помеха [ElectroMagnetic Interference]
ETR
Технический отчет ETSI [European Telecommunications Report]
ETS
Телекоммуникационный стандарт ETSI [European Telecommunications Standard]
ETSI
Европейский институт по стандартизации в области телекоммуникаций [European Telecommunications Standards Institute]
FHSS
Широкополосная модуляция с дискретной перестройкой несущей частоты [Frequency Hopping Spread Spectrum]
FSK
Частотная манипуляция [Frequency Shift Keying]
GHz (ГГц)
Гигагерц [Gigahertz]
GMSK
Минимальная гауссовская манипуляция [Gaussian Minimum Shift Keying]
kHz (кГц)
Килогерц [Kilohertz]
MSK
Минимальнофазовая частотная манипуляция [Minimum shift keying]
MHz (МГц)
Мегагерц [Megahertz]
OBE
Навесное оборудование [On-Board Equipment]
PDM
Модуляция импульса по длительности, широтно-импульсная модуляция [Pulse Duration Modulation]
PM
Фазовая модуляция [Phase modulation]
PPM (ФИМ)
Фазоимпульсная модуляция [Modulation (pulse position)]
PSK
Фазовая манипуляция [Phase Shift Keying]
PWM
Широтно-импульсная модуляция [Pulse Width Modulation]
RF/DC
Обмен данными системы радиочастотной идентификации [Radio frequency data communication]
RFI
Радиопомеха [Radio frequency interference]
RSSI
Индикатор уровня принимаемого сигнала [Receiving Signal Strength Indicator]
S/N
Отношение сигнала к шуму [Signal/noise ratio]
SAW
Поверхностная акустическая волна [Surface Acoustic Wave]
SIN AD
Отношение сигнала к шуму и искажению [Signal to Noise & Distortion]
SRD
Устройство малого радиуса действия [Short Range Device]
TBR
Технические основы регулирования [Technical Basis for Regulation]
TDD
Дуплексная связь с временным разделением каналов [Time Division Duplexing]
TDM
Временное разделение каналов [Time Division Multiplexing]
<2>Библиография
[1]
МЭК 60050-713
(IEC 60050-713)
Международный электротехнический словарь. Часть 713. Радиосвязь: приемники, передатчики, сети и их режим работы
( International Electrotechnical Vocabulary - Part 713: Radiocommunications: transmitters, receivers, networks and operation)
[2]
МЭК 60050-705
(IEC 60050-705)
Международный электротехнический словарь. Глава 705: Распространение радиоволн ( International Electrotechnical Vocabulary - Chapter 705: Radio wave propagation)
[3]
МЭК 60050-702
(IEC 60050-702)
Международный электротехнический словарь. Глава 702: Колебания, сигналы и соответствующие устройства
( International Electrotechnical Vocabulary - Chapter 702: Oscillations, signals and related devices)
[4]
МЭК 60050-121
(IEC 60050-121)
Международный электротехнический словарь. Глава 121: Электромагнетизм ( International Electrotechnical Vocabulary - Part 121: Electromagnetism)
[5]
МЭК 60050-712
(IEC 60050-712)
Международный электротехнический словарь. Глава 712: Антенны ( International Electrotechnical Vocabulary - Chapter 712: Antennas)
[6]
МЭК 60050-221
(IEC 60050-221)
Международный электротехнический словарь. Глава 221: Магнитные материалы и компоненты
( International Electrotechnical Vocabulary - Chapter 221: Magnetic materials and components)
[7]
ИСО/МЭК 2382-9:1995
(ISO/IEC2382-9:1995)
Информационная технология. Словарь. Часть 9. Обмен данными ( Information technology - Vocabulary - Part 9: Data communication)
[8]
МЭК 60050-725
(IEC 60050-725)
Международный электротехнический словарь. Глава 725: Космическая радиосвязь ( International Electrotechnical Vocabulary - Chapter 725: Space radiocommunications)
[9]
МЭК 60050-714
(IEC 60050-714)
Международный электротехнический словарь. Глава 714: Коммутация и сигнализация в электросвязи
( International Electrotechnical Vocabulary - Chapter 714: Switching and signalling in telecommunications)
[10]
МЭК 60050-704
(IEC 60050-704)
Международный Электротехнический словарь. Глава 704. Техника передачи ( International Electrotechnical Vocabulary - Chapter 704: Transmission)
[11]
МЭК 60050-161
(IEC 60050-161)
Международный электротехнический словарь. Глава 161: Электромагнитная совместимость ( International Electrotechnical Vocabulary. Chapter 161: Electromagnetic compatibility)
[12]
ИСО/МЭК 8824-1
(ISO/IEC 8824-1)
Информационные технологии. Абстрактная синтаксическая нотация версии один
(АСН.1). Часть 1. Спецификация основной нотации
(Information technology - Abstract Syntax Notation One (ASN.1): Specification of basic notation)1)
[13]
ИСО/МЭК 9834-1
(ISO/IEC 9834-1)
Информационные технологии. Взаимосвязь открытых систем. Процедуры действий уполномоченных по регистрации ВОС. Часть 1. Общие процедуры и верхние дуги дерева идентификатора объекта АСН.1
( Information technology - Open Systems Interconnection - Procedures for the operation of OSI Registration Authorities: General procedures and top arcs of the ASN. 1 Object Identifier tree)
[14]
ИСО/МЭК 15962]
(ISO/IEC 15962)
Информационные технологии. Радиочастотная идентификация (RFID) для управления предметами. Протокол данных: правила кодирования данных и функции логической памяти
( Information technology - Radio frequency identification ( RFID) for item management - Data protocol: data encoding rules and logical memory functions)
[15]
ИСО/МЭК 19762-1
(ISO/IEC 19762-1)
Информационные технологии. Технологии автоматической идентификации и сбора данных (АИСД). Гармонизированный словарь. Часть 1. Общие термины в области АIDC ( Information technology - Automatic identification and data capture ( AIDC) techniques - Harmonized vocabulary - Part 1: General terms relating to AIDC)
[16]
ИСО/МЭК 19762-2
(ISO/IEC 19762-2)
Информационные технологии. Технологии автоматической идентификации и сбора данных (АИСД). Гармонизированный словарь. Часть 2. Оптические носители данных (ОНД)
( Information technology - Automatic identification and data capture ( AIDC) techniques - Harmonized vocabulary - Part 2: Optically readable media ( ORM))
[17]
ИСО/МЭК 19762-3
(ISO/IEC 19762-3)
Информационные технологии. Технологии автоматической идентификации и сбора данных (АИСД). Гармонизированный словарь. Часть 3. Радиочастотная идентификация (РЧИ)
( Information technology - Automatic identification and data capture ( AIDC) techniques - Harmonized vocabulary - Part 3: Radio frequency identification ( RFID))
[18]
ИСО/МЭК 19762-5
(ISO/IEC 19762-5)
Информационные технологии. Технологии автоматической идентификации и сбора данных (АИСД). Гармонизированный словарь. Часть 5. Системы определения места нахождения
( Information technology - Automatic identification and data capture ( AIDC) techniques - Harmonized vocabulary - Part 5: Locating systems)
[19]
ИСО/МЭК 18000-6
(ISO/IEC 18000-6)
Информационные технологии. Радиочастотная идентификация для управления предметами. Часть 6. Параметры радиоинтерфейса для диапазона частот 860 - 960 МГц ( Information technology - Radio frequency identification for item management - Part 6: Parameters for air interface communications at 860 MHz to 960 MHz)
_____________
1)В оригинале ИСО/МЭК 19762-4 стандарты [12] - [19] включены в раздел «Библиография», однако следует учитывать, что в основном тексте стандарта ссылок на них нет.
<2>
Источник: ГОСТ Р ИСО/МЭК 19762-4-2011: Информационные технологии. Технологии автоматической идентификации и сбора данных (АИСД). Гармонизированный словарь. Часть 4. Общие термины в области радиосвязи оригинал документа
Англо-русский словарь нормативно-технической терминологии > PDM
-
11 Armstrong, Sir William George, Baron Armstrong of Cragside
[br]b. 26 November 1810 Shieldfield, Newcastle upon Tyne, Englandd. 27 December 1900 Cragside, Northumbria, England[br]English inventor, engineer and entrepreneur in hydraulic engineering, shipbuilding and the production of artillery.[br]The only son of a corn merchant, Alderman William Armstrong, he was educated at private schools in Newcastle and at Bishop Auckland Grammar School. He then became an articled clerk in the office of Armorer Donkin, a solicitor and a friend of his father. During a fishing trip he saw a water-wheel driven by an open stream to work a marble-cutting machine. He felt that its efficiency would be improved by introducing the water to the wheel in a pipe. He developed an interest in hydraulics and in electricity, and became a popular lecturer on these subjects. From 1838 he became friendly with Henry Watson of the High Bridge Works, Newcastle, and for six years he visited the Works almost daily, studying turret clocks, telescopes, papermaking machinery, surveying instruments and other equipment being produced. There he had built his first hydraulic machine, which generated 5 hp when run off the Newcastle town water-mains. He then designed and made a working model of a hydraulic crane, but it created little interest. In 1845, after he had served this rather unconventional apprenticeship at High Bridge Works, he was appointed Secretary of the newly formed Whittle Dene Water Company. The same year he proposed to the town council of Newcastle the conversion of one of the quayside cranes to his hydraulic operation which, if successful, should also be applied to a further four cranes. This was done by the Newcastle Cranage Company at High Bridge Works. In 1847 he gave up law and formed W.G.Armstrong \& Co. to manufacture hydraulic machinery in a works at Elswick. Orders for cranes, hoists, dock gates and bridges were obtained from mines; docks and railways.Early in the Crimean War, the War Office asked him to design and make submarine mines to blow up ships that were sunk by the Russians to block the entrance to Sevastopol harbour. The mines were never used, but this set him thinking about military affairs and brought him many useful contacts at the War Office. Learning that two eighteen-pounder British guns had silenced a whole Russian battery but were too heavy to move over rough ground, he carried out a thorough investigation and proposed light field guns with rifled barrels to fire elongated lead projectiles rather than cast-iron balls. He delivered his first gun in 1855; it was built of a steel core and wound-iron wire jacket. The barrel was multi-grooved and the gun weighed a quarter of a ton and could fire a 3 lb (1.4 kg) projectile. This was considered too light and was sent back to the factory to be rebored to take a 5 lb (2.3 kg) shot. The gun was a complete success and Armstrong was then asked to design and produce an equally successful eighteen-pounder. In 1859 he was appointed Engineer of Rifled Ordnance and was knighted. However, there was considerable opposition from the notably conservative officers of the Army who resented the intrusion of this civilian engineer in their affairs. In 1862, contracts with the Elswick Ordnance Company were terminated, and the Government rejected breech-loading and went back to muzzle-loading. Armstrong resigned and concentrated on foreign sales, which were successful worldwide.The search for a suitable proving ground for a 12-ton gun led to an interest in shipbuilding at Elswick from 1868. This necessitated the replacement of an earlier stone bridge with the hydraulically operated Tyne Swing Bridge, which weighed some 1450 tons and allowed a clear passage for shipping. Hydraulic equipment on warships became more complex and increasing quantities of it were made at the Elswick works, which also flourished with the reintroduction of the breech-loader in 1878. In 1884 an open-hearth acid steelworks was added to the Elswick facilities. In 1897 the firm merged with Sir Joseph Whitworth \& Co. to become Sir W.G.Armstrong Whitworth \& Co. After Armstrong's death a further merger with Vickers Ltd formed Vickers Armstrong Ltd.In 1879 Armstrong took a great interest in Joseph Swan's invention of the incandescent electric light-bulb. He was one of those who formed the Swan Electric Light Company, opening a factory at South Benwell to make the bulbs. At Cragside, his mansion at Roth bury, he installed a water turbine and generator, making it one of the first houses in England to be lit by electricity.Armstrong was a noted philanthropist, building houses for his workforce, and endowing schools, hospitals and parks. His last act of charity was to purchase Bamburgh Castle, Northumbria, in 1894, intending to turn it into a hospital or a convalescent home, but he did not live long enough to complete the work.[br]Principal Honours and DistinctionsKnighted 1859. FRS 1846. President, Institution of Mechanical Engineers; Institution of Civil Engineers; British Association for the Advancement of Science 1863. Baron Armstrong of Cragside 1887.Further ReadingE.R.Jones, 1886, Heroes of Industry', London: Low.D.J.Scott, 1962, A History of Vickers, London: Weidenfeld \& Nicolson.IMcNBiographical history of technology > Armstrong, Sir William George, Baron Armstrong of Cragside
-
12 Lawrence, Richard Smith
SUBJECT AREA: Weapons and armour[br]b. 22 November 1817 Chester, Vermont, USAd. 10 March 1892 Hartford, Connecticut, USA[br]American gunsmith and inventor.[br]Richard S.Lawrence received only an elementary education and as a young man worked on local farms and later in a woodworking shop. His work there included making carpenters' and joiners' tools and he spent some of his spare time in a local gunsmith's shop. After a brief period of service in the Army, he obtained employment in 1838 with N.Kendall \& Co. of Windsor, Vermont, making guns at the Windsor prison. Within six months he was put in charge of the work, continuing in this position until 1842 when the gun-making ceased; he remained at the prison for a time in charge of the carriage shop. In 1843 he opened a gun shop in Windsor in partnership with Kendall, and the next year S.E. Robbins, a businessman, helped them obtain a contract from the Federal Government for 10,000 rifles. A new company, Robbins, Kendall \& Lawrence, was formed and a factory was built at Windsor. Three years later Kendall's share of the business was purchased by his partners and the firm became Robbins \& Lawrence. Lawrence supervised the design and production and, to improve methods of manufacture, developed new machine tools with the aid of F.W. Howe. In 1850 Lawrence introduced the lubrication of bullets, which practice ensured the success of the breech-loading rifle. Also in 1850, the company undertook to manufacture railway cars, but this involved them in a considerable financial loss. The company took to the Great Exhibition of 1851 in London, England, a set of rifles built on the interchangeable system. The interest this created resulted in a visit of some members of the British Royal Small Arms Commission to America and subsequently an order for 150 machine tools, jigs and fixtures from Robbins \& Lawrence, to be installed at the small-arms factory at Enfield. In 1852 the company contracted to manufacture Sharps rifles and carbines at a new factory to be built at Hartford, Connecticut. Lawrence moved to Hartford in 1853 to superintend the building and equipment of the plant. Shortly afterwards, however, a promised order for a large number of rifles failed to materialize and, following its earlier financial difficulties, Robbins \& Lawrence was forced into bankruptcy. The Hartford plant was acquired by the Sharps Rifle Company in 1856 and Lawrence remained there as Superintendent until 1872. From then he was for many years Superintendent of Streets in the city of Hartford and he also served on the Water Board, the Board of Aldermen and as Chairman of the Fire Board.[br]Further ReadingJ.W.Roe, 1916, English and American Tool Builders, New Haven; repub. 1926, New York; and 1987, Bradley, Ill. (provides biographical information and includes in an Appendix (pp. 281–94) autobiographical notes written by Richard S.Lawrence in 1890).Merritt Roe Smith, 1974, "The American Precision Museum", Technology and Culture 15 (3): 413–37 (for information on Robbins \& Lawrence and products).RTSBiographical history of technology > Lawrence, Richard Smith
-
13 Priestman, William Dent
SUBJECT AREA: Steam and internal combustion engines[br]b. 23 August 1847 Sutton, Hull, Englandd. 7 September 1936 Hull, England[br]English oil engine pioneer.[br]William was the second son and one of eleven children of Samuel Priestman, who had moved to Hull after retiring as a corn miller in Kirkstall, Leeds, and who in retirement had become a director of the North Eastern Railway Company. The family were strict Quakers, so William was sent to the Quaker School in Bootham, York. He left school at the age of 17 to start an engineering apprenticeship at the Humber Iron Works, but this company failed so the apprenticeship was continued with the North Eastern Railway, Gateshead. In 1869 he joined the hydraulics department of Sir William Armstrong \& Company, Newcastle upon Tyne, but after a year there his father financed him in business at a small, run down works, the Holderness Foundry, Hull. He was soon joined by his brother, Samuel, their main business being the manufacture of dredging equipment (grabs), cranes and winches. In the late 1870s William became interested in internal combustion engines. He took a sublicence to manufacture petrol engines to the patents of Eugène Etève of Paris from the British licensees, Moll and Dando. These engines operated in a similar manner to the non-compression gas engines of Lenoir. Failure to make the two-stroke version of this engine work satisfactorily forced him to pay royalties to Crossley Bros, the British licensees of the Otto four-stroke patents.Fear of the dangers of petrol as a fuel, reflected by the associated very high insurance premiums, led William to experiment with the use of lamp oil as an engine fuel. His first of many patents was for a vaporizer. This was in 1885, well before Ackroyd Stuart. What distinguished the Priestman engine was the provision of an air pump which pressurized the fuel tank, outlets at the top and bottom of which led to a fuel atomizer injecting continuously into a vaporizing chamber heated by the exhaust gases. A spring-loaded inlet valve connected the chamber to the atmosphere, with the inlet valve proper between the chamber and the working cylinder being camoperated. A plug valve in the fuel line and a butterfly valve at the inlet to the chamber were operated, via a linkage, by the speed governor; this is believed to be the first use of this method of control. It was found that vaporization was only partly achieved, the higher fractions of the fuel condensing on the cylinder walls. A virtue was made of this as it provided vital lubrication. A starting system had to be provided, this comprising a lamp for preheating the vaporizing chamber and a hand pump for pressurizing the fuel tank.Engines of 2–10 hp (1.5–7.5 kW) were exhibited to the press in 1886; of these, a vertical engine was installed in a tram car and one of the horizontals in a motor dray. In 1888, engines were shown publicly at the Royal Agricultural Show, while in 1890 two-cylinder vertical marine engines were introduced in sizes from 2 to 10 hp (1.5–7.5 kW), and later double-acting ones up to some 60 hp (45 kW). First, clutch and gearbox reversing was used, but reversing propellers were fitted later (Priestman patent of 1892). In the same year a factory was established in Philadelphia, USA, where engines in the range 5–20 hp (3.7–15 kW) were made. Construction was radically different from that of the previous ones, the bosses of the twin flywheels acting as crank discs with the main bearings on the outside.On independent test in 1892, a Priestman engine achieved a full-load brake thermal efficiency of some 14 per cent, a very creditable figure for a compression ratio limited to under 3:1 by detonation problems. However, efficiency at low loads fell off seriously owing to the throttle governing, and the engines were heavy, complex and expensive compared with the competition.Decline in sales of dredging equipment and bad debts forced the firm into insolvency in 1895 and receivers took over. A new company was formed, the brothers being excluded. However, they were able to attend board meetings, but to exert no influence. Engine activities ceased in about 1904 after over 1,000 engines had been made. It is probable that the Quaker ethics of the brothers were out of place in a business that was becoming increasingly cut-throat. William spent the rest of his long life serving others.[br]Further ReadingC.Lyle Cummins, 1976, Internal Fire, Carnot Press.C.Lyle Cummins and J.D.Priestman, 1985, "William Dent Priestman, oil engine pioneer and inventor: his engine patents 1885–1901", Proceedings of the Institution ofMechanical Engineers 199:133.Anthony Harcombe, 1977, "Priestman's oil engine", Stationary Engine Magazine 42 (August).JBBiographical history of technology > Priestman, William Dent
-
14 power center
главный распределительный щит (ГРЩ)
Распределительный щит, через который снабжается электроэнергией все здание или его обособленная часть. Роль ГРЩ может выполнять ВРУ или щит низкого напряжения подстанции.
[ПУЭ]
главный распределительный щит
Электрощит в здании, обеспечивающий распределение энергии между подключенными к нему нагрузками и включение аварийных систем при падении напряжения.
[ ГОСТ Р 51321. 3-99 ( МЭК 60439-3-90)]
[ ГОСТ Р 50571.28-2006]EN
main distribution board
board in the building which fulfils all the functions of a main electrical distribution for the supply building area assigned to it and where the voltage drop is measured for operating the safety services
[IEC 60364-7-710, ed. 1.0 (2002-11)]FR
tableau général de distribution
tableau de distribution dans le bâtiment remplissant toutes les fonctions d’un tableau général de distribution pour l’alimentation de la zone qui lui est dédiée et où la chute de tension est mesurée pour le fonctionnement des services de sécurité
[IEC 60364-7-710, ed. 1.0 (2002-11)]
Главный распределительный щит (ГРЩ) на ток 6300 А
[http://www.uzoelectro.ru/catalogue/group-383/product-36465/ ]Тематики
- НКУ (шкафы, пульты,...)
- электроснабжение в целом
- электроустановки
Синонимы
EN
- feeder switchboard
- m.s.b.
- main distributing frame
- main distribution board
- main distribution switchboard
- Main Low Voltage Switchboard
- main low-voltage distribution switchboard
- main switchboard
- MLVS
- MSB
- power center
FR
комплектное устройство первичного распределения электроэнергии
-
[Интент]
Рис. ABBПараллельные тексты EN-RU
They are usually installed on the load side of MV/LV transformers or generators.
These assemblies include one or more incoming units, bus ties and a relatively reduced number of outgoing units.
There are also present measuring instruments and other switching and control equipment.
These assemblies have a sturdy structure to withstand the electrodynamic stresses and the weight of big sized apparatus.
As a matter of fact peculiar characteristics of the power center are high rated currents and shortcircuit currents.
The constructional type is a cubicle structure, with metal enclosure and sections divided into compartments with selective access.
[ABB]Такие устройства обычно подключают на стороне нагрузки СВ/НВ трансформаторов или генераторов.
В их состав входят один или несколько блоков ввода, шины и относительно небольшое число блоков вывода.
В состав комплектного устройства первичного распределения электроэнергии входят также измерительные приборы, коммутационные устройства и средства контроля состояния.
Данные комплектные устройства имеют прочную конструкцию, способную выдерживать электродинамическое действие токов и вес крупногабаритной аппаратуры.
Центры распределения электроэнергии характеризуются высокими номинальным током и током короткого замыкания.
С точки зрения конструктивного исполнения они представляют собой многошкафное комплектное устройство в металлической оболочке, состоящее из секций, каждая из которых разделена на отсеки с независимым доступом.
[Перевод Интент]Safety enclosed boards are used for most new installations. Common terms used to designate equipment of this type are metal-enclosed switchgear and metal-clad switchgear.
Most safety enclosed boards are of the unit or sectional type. They consist of a combination of the desired number and type of standardized unit sections.
Each section is a standard factory-assembled combination of a formed steel panel and apparatus mounted on a steel framework.
Safety enclosed switchgear may be classified with respect to purpose of application as follows:
1. General medium- or high-voltage switchgear
2. Primary unit substations
3. Rectifier unit substations
4. Secondary unit substations or power centers
5. General low-voltage switchgear
6. Low-voltage distribution switchboards
7. Motor-control-center switchboards
[American electricians’ handbook]Тематики
- НКУ (шкафы, пульты,...)
- комплектное распред. устройство (КРУ)
EN
Англо-русский словарь нормативно-технической терминологии > power center
-
15 primary distribution switchgear
комплектное устройство первичного распределения электроэнергии
-
[Интент]
Рис. ABBПараллельные тексты EN-RU
They are usually installed on the load side of MV/LV transformers or generators.
These assemblies include one or more incoming units, bus ties and a relatively reduced number of outgoing units.
There are also present measuring instruments and other switching and control equipment.
These assemblies have a sturdy structure to withstand the electrodynamic stresses and the weight of big sized apparatus.
As a matter of fact peculiar characteristics of the power center are high rated currents and shortcircuit currents.
The constructional type is a cubicle structure, with metal enclosure and sections divided into compartments with selective access.
[ABB]Такие устройства обычно подключают на стороне нагрузки СВ/НВ трансформаторов или генераторов.
В их состав входят один или несколько блоков ввода, шины и относительно небольшое число блоков вывода.
В состав комплектного устройства первичного распределения электроэнергии входят также измерительные приборы, коммутационные устройства и средства контроля состояния.
Данные комплектные устройства имеют прочную конструкцию, способную выдерживать электродинамическое действие токов и вес крупногабаритной аппаратуры.
Центры распределения электроэнергии характеризуются высокими номинальным током и током короткого замыкания.
С точки зрения конструктивного исполнения они представляют собой многошкафное комплектное устройство в металлической оболочке, состоящее из секций, каждая из которых разделена на отсеки с независимым доступом.
[Перевод Интент]Safety enclosed boards are used for most new installations. Common terms used to designate equipment of this type are metal-enclosed switchgear and metal-clad switchgear.
Most safety enclosed boards are of the unit or sectional type. They consist of a combination of the desired number and type of standardized unit sections.
Each section is a standard factory-assembled combination of a formed steel panel and apparatus mounted on a steel framework.
Safety enclosed switchgear may be classified with respect to purpose of application as follows:
1. General medium- or high-voltage switchgear
2. Primary unit substations
3. Rectifier unit substations
4. Secondary unit substations or power centers
5. General low-voltage switchgear
6. Low-voltage distribution switchboards
7. Motor-control-center switchboards
[American electricians’ handbook]Тематики
- НКУ (шкафы, пульты,...)
- комплектное распред. устройство (КРУ)
EN
Англо-русский словарь нормативно-технической терминологии > primary distribution switchgear
-
16 primary unit substation
комплектное устройство первичного распределения электроэнергии
-
[Интент]
Рис. ABBПараллельные тексты EN-RU
They are usually installed on the load side of MV/LV transformers or generators.
These assemblies include one or more incoming units, bus ties and a relatively reduced number of outgoing units.
There are also present measuring instruments and other switching and control equipment.
These assemblies have a sturdy structure to withstand the electrodynamic stresses and the weight of big sized apparatus.
As a matter of fact peculiar characteristics of the power center are high rated currents and shortcircuit currents.
The constructional type is a cubicle structure, with metal enclosure and sections divided into compartments with selective access.
[ABB]Такие устройства обычно подключают на стороне нагрузки СВ/НВ трансформаторов или генераторов.
В их состав входят один или несколько блоков ввода, шины и относительно небольшое число блоков вывода.
В состав комплектного устройства первичного распределения электроэнергии входят также измерительные приборы, коммутационные устройства и средства контроля состояния.
Данные комплектные устройства имеют прочную конструкцию, способную выдерживать электродинамическое действие токов и вес крупногабаритной аппаратуры.
Центры распределения электроэнергии характеризуются высокими номинальным током и током короткого замыкания.
С точки зрения конструктивного исполнения они представляют собой многошкафное комплектное устройство в металлической оболочке, состоящее из секций, каждая из которых разделена на отсеки с независимым доступом.
[Перевод Интент]Safety enclosed boards are used for most new installations. Common terms used to designate equipment of this type are metal-enclosed switchgear and metal-clad switchgear.
Most safety enclosed boards are of the unit or sectional type. They consist of a combination of the desired number and type of standardized unit sections.
Each section is a standard factory-assembled combination of a formed steel panel and apparatus mounted on a steel framework.
Safety enclosed switchgear may be classified with respect to purpose of application as follows:
1. General medium- or high-voltage switchgear
2. Primary unit substations
3. Rectifier unit substations
4. Secondary unit substations or power centers
5. General low-voltage switchgear
6. Low-voltage distribution switchboards
7. Motor-control-center switchboards
[American electricians’ handbook]Тематики
- НКУ (шкафы, пульты,...)
- комплектное распред. устройство (КРУ)
EN
Англо-русский словарь нормативно-технической терминологии > primary unit substation
См. также в других словарях:
Emergency vehicle equipment — is the equipment fitted to, or carried by, an emergency vehicle, which is additional to any equipment such as headlights, steering wheels or windshield/windscreens that a standard non emergency vehicle is fitted with.Visual warning… … Wikipedia
Miracle Recreation Equipment Company — File:Miracle Logo.png Miracle Recreation Logo Miracle Recreation is one of the oldest commercial playground manufacturers in the U.S. Providing children s playground equipment and amenities for parks and schools, throughout the world. Claude… … Wikipedia
stock car — A car as built by the factory (i.e., production car). Usually one that is raced without any modifications beyond factory installed equipment. Also see super stock … Dictionary of automotive terms
Business and Industry Review — ▪ 1999 Introduction Overview Annual Average Rates of Growth of Manufacturing Output, 1980 97, Table Pattern of Output, 1994 97, Table Index Numbers of Production, Employment, and Productivity in Manufacturing Industries, Table (For Annual… … Universalium
Pontiac GTO — Infobox Automobile name = Pontiac GTO manufacturer = Pontiac parent company = General Motors class = Muscle car production = 1964 ndash;1974 2004 ndash;2006 predecessor = Pontiac Grand Prix Coupe successor = Pontiac G8 (2008) layout = FR… … Wikipedia
Subaru Legacy — Infobox Automobile name = Subaru Legacy aka = Subaru Liberty Subaru B4 Subaru Legacy B4 Subaru Legacy Touring Wagon manufacturer = Subaru predecessor = none parent company = Fuji Heavy Industries production = 1989 present class = Mid size (1989… … Wikipedia
Honda Legend — This page is about this vehicle s Japanese model. See Acura Legend and Acura RL for information on the North American model. Sections of this article are translated from Japanese Wikipedia. Honda Legend … Wikipedia
Chevrolet Corvette — 2010 Chevrolet Corvette Grand Sport Edition. Manufacturer Chevrolet Division of General Motors … Wikipedia
HD Radio — HD Radio, which originally stood for Hybrid Digital , is the trademark for iBiquity s in band on channel (IBOC) digital radio technology used by AM and FM radio stations to transmit audio and data via a digital signal in conjunction with their… … Wikipedia
Honda Accord — Infobox Automobile name=Honda Accord manufacturer=Honda production=1976 ndash;present predecessor=Honda 1300 class=Compact (1976 ndash;1993) Mid size (1994 ndash;2007) Full size (2008 ndash;present) layout=FF layoutThe Honda Accord is series of… … Wikipedia
Dodge Dart — Manufacturer Chrysler Corporation Production 1960–1976 Predecessor Dodge Lancer (For compact version) … Wikipedia