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board designer/xx

  • 1 board designer

    Англо-русский толковый словарь терминов и сокращений по ВТ, Интернету и программированию. > board designer

  • 2 board designer

    Большой англо-русский и русско-английский словарь > board designer

  • 3 board designer

    Англо-русский словарь технических терминов > board designer

  • 4 board designer

    Универсальный англо-русский словарь > board designer

  • 5 designer

    Англо-русский словарь технических терминов > designer

  • 6 board space

    2) площадь, занимаемая микросхемой на печатной плате

    Англо-русский толковый словарь терминов и сокращений по ВТ, Интернету и программированию. > board space

  • 7 PCB designer

    Англо-русский толковый словарь терминов и сокращений по ВТ, Интернету и программированию. > PCB designer

  • 8 разработчик печатных плат

    Большой англо-русский и русско-английский словарь > разработчик печатных плат

  • 9 разработчик печатных плат

    Англо-русский словарь технических терминов > разработчик печатных плат

  • 10 разработчик печатных плат

    Русско-английский политехнический словарь > разработчик печатных плат

  • 11 разработчик печатных плат

    Engineering: board designer

    Универсальный русско-английский словарь > разработчик печатных плат

  • 12 de un golpe

    all at once, in one go
    * * *
    = at one blow, at one whack, at one pull, in one shot, in one lump, in one action, in one go, in one fell swoop, at one fell swoop
    Ex. This approach eliminates, at one blow, both the problems which exercise the designer of a pre-co-ordinate index, that is citation order and reference structure.
    Ex. I am involved with systematic reviews which routinely result in 4,000+ citations at one whack.
    Ex. In this way the whole forme was printed at one pull.
    Ex. Then in one second ten programs could work consecutively, and it will look like the computer is doing all ten in one shot.
    Ex. LCSH revision is continuous, and may be quite large scale, though this is less obvious because it does not take place in one lump every few years.
    Ex. To remove the borrower from all routing lists in one action, enter the code for delete.
    Ex. He jumped in with both feet, opening five stores in one go and declaring his intention to open 30 more within five years.
    Ex. He fired them all, in one fell swoop when he took office as do most all Presidents.
    Ex. Life on board ship is not easy for anyone, least of all for a small child, who is deprived of nursery and toys at one fell swoop.
    * * *
    = at one blow, at one whack, at one pull, in one shot, in one lump, in one action, in one go, in one fell swoop, at one fell swoop

    Ex: This approach eliminates, at one blow, both the problems which exercise the designer of a pre-co-ordinate index, that is citation order and reference structure.

    Ex: I am involved with systematic reviews which routinely result in 4,000+ citations at one whack.
    Ex: In this way the whole forme was printed at one pull.
    Ex: Then in one second ten programs could work consecutively, and it will look like the computer is doing all ten in one shot.
    Ex: LCSH revision is continuous, and may be quite large scale, though this is less obvious because it does not take place in one lump every few years.
    Ex: To remove the borrower from all routing lists in one action, enter the code for delete.
    Ex: He jumped in with both feet, opening five stores in one go and declaring his intention to open 30 more within five years.
    Ex: He fired them all, in one fell swoop when he took office as do most all Presidents.
    Ex: Life on board ship is not easy for anyone, least of all for a small child, who is deprived of nursery and toys at one fell swoop.

    Spanish-English dictionary > de un golpe

  • 13 de una vez

    (de un acto) in one go 2 (definitivamente) once and for all
    ¡acabémoslo de una vez! let's get it over with!
    * * *
    = at one blow, at one time, in one action, in one step, in a single step, at one whack, in a single phase, in one shot, in one fell swoop, at one fell swoop
    Ex. This approach eliminates, at one blow, both the problems which exercise the designer of a pre-co-ordinate index, that is citation order and reference structure.
    Ex. Maximum number of documents which can be charged out at one time.
    Ex. To remove the borrower from all routing lists in one action, enter the code for delete.
    Ex. The program automatically swaps CONFIG.SYS and AUTOEXEC.BAT files and executes a warm boot in one step.
    Ex. BEGIN X combines the BEGIN and EXECUTE STEPS commands in a single step.
    Ex. I am involved with systematic reviews which routinely result in 4,000+ citations at one whack.
    Ex. The new library was built in a single phase, with stock and facilities housed in temporary accommodation during demolition and construction.
    Ex. Then in one second ten programs could work consecutively, and it will look like the computer is doing all ten in one shot.
    Ex. He fired them all, in one fell swoop when he took office as do most all Presidents.
    Ex. Life on board ship is not easy for anyone, least of all for a small child, who is deprived of nursery and toys at one fell swoop.
    * * *
    = at one blow, at one time, in one action, in one step, in a single step, at one whack, in a single phase, in one shot, in one fell swoop, at one fell swoop

    Ex: This approach eliminates, at one blow, both the problems which exercise the designer of a pre-co-ordinate index, that is citation order and reference structure.

    Ex: Maximum number of documents which can be charged out at one time.
    Ex: To remove the borrower from all routing lists in one action, enter the code for delete.
    Ex: The program automatically swaps CONFIG.SYS and AUTOEXEC.BAT files and executes a warm boot in one step.
    Ex: BEGIN X combines the BEGIN and EXECUTE STEPS commands in a single step.
    Ex: I am involved with systematic reviews which routinely result in 4,000+ citations at one whack.
    Ex: The new library was built in a single phase, with stock and facilities housed in temporary accommodation during demolition and construction.
    Ex: Then in one second ten programs could work consecutively, and it will look like the computer is doing all ten in one shot.
    Ex: He fired them all, in one fell swoop when he took office as do most all Presidents.
    Ex: Life on board ship is not easy for anyone, least of all for a small child, who is deprived of nursery and toys at one fell swoop.

    Spanish-English dictionary > de una vez

  • 14 Stevenson, Robert

    [br]
    b. 8 June 1772 Glasgow, Scotland
    d. 12 July 1850 Edinburgh, Scotland
    [br]
    Scottish lighthouse designer and builder.
    [br]
    After his father's death when he was only 2 years old, Robert Stevenson was educated at a school for children from families in reduced circumstances. However, c. 1788 his mother married again, to Thomas Smith, Engineer to the Northern Lighthouse Board. Stevenson then served an apprenticeship under his new stepfather. The Board, which is still an active force in the 1990s, was founded in 1786 to oversee the lights and buoyage in some of the wildest waters in Western Europe, the seas around the coasts of Scotland and the Isle of Man.
    After studies at Andersen's College (now the University of Strathclyde) and later at Edinburgh University, Stevenson assumed responsibility in the field for much of the construction work sanctioned by the Board. After some years he succeeded Smith as Engineer to the Board and thereby the long connection between the Northern Lights and the Stevenson family commenced.
    Stevenson became Engineer to the Board when he was about 30 years old, remaining in that office for the best part of half a century. During these years he improved catoptric lighting, adopted the central lamp refracting system and invented the intermittent flashing light. While these developments were sufficient to form a just memorial to the man, he was involved in greater endeavours in the construction of around twenty lighthouses, most of which had ingenious forms of construction. The finest piece was the Bell Rock Lighthouse, built on a reef off the Scottish East Coast. This enterprise took five years to complete and can be regarded as the most important construction of his life.
    His interests fitted in with those of the other great men living in and around Edinburgh at the time, and included oceanography, astronomy, architecture and antiquarian studies. He designed several notable bridges, proposed a design for the rails for railways and also made a notable study of marine timber borers. He contributed to Encyclopaedia Britannica and to many journals.
    His grandson, born in the year of his death, was the famous author Robert Louis Stevenson (1850–94).
    [br]
    Principal Honours and Distinctions
    FRS Edinburgh.
    Further Reading
    Sir Walter Scott, 1982, Northern Lights, Hawick.
    FMW

    Biographical history of technology > Stevenson, Robert

  • 15 switchboard

    1. распределительный щит
    2. распределительное устройство
    3. НКУ распределения и управления
    4. коммутационный щит
    5. коммутаторная панель
    6. коммутатор

     

    коммутатор
    Устройство, обеспечивающее посредством включения, отключения и переключения электрических цепей выбор требуемой выходной цепи и соединение с ней входной цепи
    [Терминологический словарь по строительству на 12 языках (ВНИИИС Госстроя СССР)]

    Тематики

    • аппарат, изделие, устройство...

    EN

    DE

    FR

     

    коммутаторная панель
    распределительный щит

    Устройство, конструктивно объединяющее несколько коммутационных элементов, предназначенных для включения, отключения и переключения электрических цепей и каналов связи в ручном режиме.
    [Л.М. Невдяев. Телекоммуникационные технологии. Англо-русский толковый словарь-справочник. Под редакцией Ю.М. Горностаева. Москва, 2002]

    Тематики

    • электросвязь, основные понятия

    Синонимы

    EN

     

    коммутационный щит

    [Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва, 1999 г.]

    Тематики

    • электротехника, основные понятия

    EN

     

    низковольтное устройство распределения и управления (НКУ)
    Низковольтные коммутационные аппараты и устройства управления, измерения, сигнализации, защиты, регулирования, собранные совместно, со всеми внутренними электрическими и механическими соединениями и конструктивными элементами.
    [ ГОСТ Р МЭК 61439-1-2012]

    низковольтное устройство распределения и управления

    Комбинация низковольтных коммутационных аппаратов с устройствами управления, измерения, сигнализации, защиты, регулирования и т. п., полностью смонтированных изготовителем НКУ (под его ответственность на единой конструктивной основе) со всеми внутренними электрическими и механическими соединениями с соответствующими конструктивными элементами
    Примечания
    1. В настоящем стандарте сокращение НКУ используют для обозначения низковольтных комплектных устройств распределения и управления.
    2. Аппараты, входящие в состав НКУ, могут быть электромеханическими или электронными.
    3. По различным причинам, например по условиям транспортирования или изготовления, некоторые операции сборки могут быть выполнены на месте установки, вне предприятия-изготовителя.
    [ ГОСТ Р 51321. 1-2000 ( МЭК 60439-1-92)]

    EN

    power switchgear and controlgear assembly (PSC-assembly)
    low-voltage switchgear and controlgear assembly used to distribute and control energy for all types of loads, intended for industrial, commercial and similar applications where operation by ordinary persons is not intended
    [IEC 61439-2, ed. 1.0 (2009-01)]

    low-voltage switchgear and controlgear assembly
    combination of one or more low-voltage switching devices together with associated control, measuring, signalling, protective, regulation equipment, etc., completely assembled under the responsibility of the manufacturer with all the internal electrical and mechanical interconnections and structural parts.
    [IEC 61892-3, ed. 2.0 (2007-11)]

    switchgear and controlgear
    a general term covering switching devices and their combination with associated control, measuring, protective and regulating equipment, also assemblies of such devices and equipment with associated interconnections, accessories, enclosures and supporting structures
    [IEV number 441-11-01]

    switchgear and controlgear

    electric equipment intended to be connected to an electric circuit for the purpose of carrying out one or more of the following functions: protection, control, isolation, switching
    NOTE – The French and English terms can be considered as equivalent in most cases. However, the French term has a broader meaning than the English term and includes for example connecting devices, plugs and socket-outlets, etc. In English, these latter devices are known as accessories.
    [IEV number 826-16-03 ]

    switchboard
    A large single electric control panel, frame, or assembly of panels on which are mounted (either on the back or on the face, or both) switches, overcurrent and other protective devices, buses, and usually instruments; not intended for installation in a cabinet but may be completely enclosed in metal; usually is accessible from both the front and rear.
    [ McGraw-Hill Dictionary of Architecture & Construction]

    switchboard
    One or more panels accommodating control switches, indicators, and other apparatus for operating electric circuits
    [ The American Heritage Dictionary of the English Language]

    FR

    ensemble d'appareillage de puissance (ensemble PSC)
    ensemble d'appareillage à basse tension utilisé pour répartir et commander l'énergie pour tous les types de charges et prévu pour des applications industrielles, commerciales et analogues dans lesquelles l'exploitation par des personnes ordinaires n'est pas prévue
    [IEC 61439-2, ed. 1.0 (2009-01)]

    appareillage, m
    matériel électrique destiné à être relié à un circuit électrique en vue d'assurer une ou plusieurs des fonctions suivantes: protection, commande, sectionnement, connexion
    NOTE – Les termes français et anglais peuvent être considérés comme équivalents dans la plupart des cas. Toutefois, le terme français couvre un domaine plus étendu que le terme anglais, et comprend notamment les dispositifs de connexion, les prises de courant, etc. En anglais, ces derniers sont dénommés "accessories".
    [IEV number 826-16-03 ]

    appareillage
    terme général applicable aux appareils de connexion et à leur combinaison avec des appareils de commande, de mesure, de protection et de réglage qui leur sont associés, ainsi qu'aux ensembles de tels appareils avec les connexions, les accessoires, les enveloppes et les charpentes correspondantes
    [IEV number 441-11-01]


    A switchboard as defined in the National Electrical Code is a large single panel, frame, or assembly of panels on which are mounted, on the face or back or both switches, overcurrent and other protective devices, buses, and, usually, instruments.
    Switchboards are generally accessible from the rear as well as from the front and are not intended to be installed in cabinets.
    The types of switchboards, classified by basic features of construction, are as follows:
    1. Live-front vertical panels
    2. Dead-front boards
    3. Safety enclosed boards( metal-clad)


    [American electricians’ handbook]

    Параллельные тексты EN-RU

    The switchboard plays an essential role in the availability of electric power, while meeting the needs of personal and property safety.

    Its definition, design and installation are based on precise rules; there is no place for improvisation.

    The IEC 61439 standard aims to better define " low-voltage switchgear and controlgear assemblies", ensuring that the specified performances are reached.

    It specifies in particular:

    > the responsibilities of each player, distinguishing those of the original equipment manufacturer - the organization that performed the original design and associated verification of an assembly in accordance with the standard, and of the assembly manufacturer - the organization taking responsibility for the finished assembly;

    > the design and verification rules, constituting a benchmark for product certification.

    All the component parts of the electrical switchboard are concerned by the IEC 61439 standard.


    Equipment produced in accordance with the requirements of this switchboard standard ensures the safety and reliability of the installation.

    A switchboard must comply with the requirements of standard IEC 61439-1 and 2 to guarantee the safety and reliability of the installation.

    Managers of installations, fully aware of the professional and legal liabilities weighing on their company and on themselves, demand a high level of safety for the electrical installation.

    What is more, the serious economic consequences of prolonged halts in production mean that the electrical switchboard must provide excellent continuity of service, whatever the operating conditions.

    [Schneider Electric]

    НКУ играет главную роль в обеспечении электроэнергией, удовлетворяя при этом всем требованиям по безопасности людей и сохранности имущества.

    Выбор конструкции, проектирование и монтаж основаны на чётких правилах, не допускающих никакой импровизации.

    Требования к низковольтным комплектным устройствам распределения и управления сформулированы в стандарте МЭК 61439 (ГОСТ Р 51321. 1-2000).

    В частности, он определяет:

    > распределение ответственности между изготовителем НКУ - организацией, разработавшей конструкцию НКУ и проверившей его на соответствие требованиям стандарта, и сборщиком – организацией, выполнившей сборку НКУ;

    > конструкцию, технические характеристики, виды и методы испытаний НКУ.

    В стандарте МЭК 61439 (ГОСТ Р 51321. 1-2000) описываются все компоненты НКУ.

    Оборудование, изготовленное в соответствии с требованиями этого стандарта, обеспечивает безопасность и надежность электроустановки.

    Для того чтобы гарантировать безопасность эксплуатации и надежность работы электроустановки, распределительный щит должен соответствовать требованиям стандарта МЭК 61439-1 и 2.

    Лица, ответственные за электроустановки, должны быть полностью осведомлены о профессиональной и юридической ответственности, возложенной на их компанию и на них лично, за обеспечение высокого уровня безопасности эксплуатации этих электроустановок.

    Кроме того, поскольку длительные перерывы производства приводят к серьезным экономическим последствиям, электрический распределительный щит должен обеспечивать надежную и бесперебойную работу независимо от условий эксплуатации.

    [Перевод Интент]

     

    LV switchgear assemblies are undoubtedly the components of the electric installation more subject to the direct intervention of personnel (operations, maintenance, etc.) and for this reason users demand from them higher and higher safety requirements.

    The compliance of an assembly with the state of the art and therefore, presumptively, with the relevant technical Standard, cannot be based only on the fact that the components which constitute it comply with the state of the art and therefore, at least presumptively, with the relevant technical standards.

    In other words, the whole assembly must be designed, built and tested in compliance with the state of the art.

    Since the assemblies under consideration are low voltage equipment, their rated voltage shall not exceed 1000 Va.c. or 1500 Vd.c. As regards currents, neither upper nor lower limits are provided in the application field of this Standard.

    The Standard IEC 60439-1 states the construction, safety and maintenance requirements for low voltage switchgear and controlgear assemblies, without dealing with the functional aspects which remain a competence of the designer of the plant for which the assembly is intended.

    [ABB]

    Низковольтные комплектные устройства (НКУ), вне всякого сомнения, являются частями электроустановок, которые наиболее подвержены непосредственному вмешательству оперативного, обслуживающего и т. п. персонала. Вот почему требования потребителей к безопасности НКУ становятся все выше и выше.

    Соответствие НКУ современному положению дел и вследствие этого, гипотетически, соответствующим техническим стандартам, не может основываться только на том факте, что составляющие НКУ компоненты соответствуют современному состоянию дел и поэтому, по крайней мере, гипотетически, - соответствующим техническим стандартам

    Другими словами, НКУ должно быть разработано, изготовлено и испытано в соответствии с современными требованиями.

    Мы рассматриваем низковольтные комплектные устройства и это означает, что их номинальное напряжение не превышает 1000 В переменного тока или 1500 В постоянного тока. Что касается тока, то ни верхнее, ни нижнее значение стандартами, относящимися к данной области, не оговариваются

    Стандарт МЭК 60439-1 устанавливает требования к конструкции, безопасности и техническому обслуживанию низковольтных комплектных устройств без учета их функций, полагая, что функции НКУ являются компетенцией проектировщиков электроустановки, частью которых эти НКУ являются.

    [Перевод Интент]

    Тематики

    • НКУ (шкафы, пульты,...)

    Классификация

    >>>

    Действия

    Синонимы

    Сопутствующие термины

    EN

    DE

    • Schaltanlagen und/oder Schaltgeräte

    FR

     

    распределительное устройство
    Распределительным устройством (РУ) называется электроустановка, служащая для приема и распределения электроэнергии и содержащая сборные и соединительные шины, коммутационные аппараты, вспомогательные устройства (компрессорные, аккумуляторные и др.), а также устройства защиты, автоматики и измерительные приборы.
    [РД 34.20.185-94]

    распределительное устройство

    Электроустановка, предназначенная для приема и распределения электрической энергии на одном напряжении и содержащая коммутационные аппараты и соединяющие их сборные шины [секции шин], устройства управления и защиты.
    Примечание. К устройствам управления относятся аппараты и связывающие их элементы обеспечивающие контроль, измерение, сигнализацию и выполнение команд.
    [ ГОСТ 24291-90]
    [ ГОСТ Р 53685-2009]

    электрическое распределительное устройство
    распределительное устройство
    Устройство, предназначенное для приема и распределения электроэнергии на одном напряжении и содержащее коммутационные аппараты и соединяющие их сборные соединительные устройства.
    Примечание. В состав распределительного устройства дополнительно могут входить устройства защиты и управления
    [ОСТ 45.55-99]

    распределительное устройство
    Электроустановка, служащая для приема и распределения электроэнергии и содержащая коммутационные аппараты, сборные и соединительные шины, вспомогательные устройства (компрессорные, аккумуляторные и др.), а также устройства защиты, автоматики и измерительные приборы.
    [ПОТ Р М-016-2001]
    [РД 153-34.0-03.150-00]

    устройство распределительное
    Совокупность аппаратов и приборов для приёма и распределения электроэнергии одного напряжения, вырабатываемой электростанцией или преобразуемой подстанцией
    [Терминологический словарь по строительству на 12 языках (ВНИИИС Госстроя СССР)]

    EN

    switching substation
    a substation which includes switchgear and usually busbars, but no power transformers
    [IEV number 605-01-02]

    FR

    poste de sectionnement
    poste de coupure

    poste comprenant des organes de manoeuvre et généralement des jeux de barres, à l'exclusion de transformateurs de puissance
    [IEV number 605-01-02]

    В качестве РУ 6—10 кВ используется сборка высокого напряжения с однополюсными разъединителями и вертикальным расположением фаз одного присоединения и одна камера КСО с выключателем нагрузки и предохранителями для подключения трансформатора. Для РУ 0,4 кВ применяются сборки низкого напряжения с предохранителями и вертикальным расположением фаз одного присоединения.
    На ПС применяются открытые (ОРУ), закрытые (ЗРУ) или комплектные (КРУ) распределительные устройства.

    [ http://energy-ua.com/elektricheskie-p/klassifikatsiya.html]


    КЛАССИФИКАЦИЯ

    В общем случае ПС и РУ являются составной частью электроустановок, которые различаются:

    • по назначению:
      • генерирующие,
      • преобразовательно-распределительные,
      • потребительские.

        Генерирующие электроустановки служат для выработки электроэнергии, преобразовательно-распределительные электроустановки преобразуют электроэнергию в удобный для передачи и потребления вид, передают ее и распределяют между потребителями;

     Шкала номинальных напряжений ограничена сравнительно небольшим числом стандартных значений, благодаря чему изготавливается небольшое число типоразмеров машин и оборудования, а электросети выполняются более экономичными. В установках трехфазного тока номинальным напряжением принято считать напряжение между фазами (междуфазовое напряжение). Согласно ГОСТ 29322—92 установлена следующая шкала номинальных напряжений:

    для электросетей переменного тока частотой 50 Гц междуфазовое напряжение должно быть: 12, 24, 36, 42, 127, 220, 380 В; 3, 6, 10, 20, 35, 110, 150, 220, 330, 500, 750 и 1150 кВ;
    для электросетей постоянного тока: 12, 24, 36, 48, 60, 110, 220, 440, 660, 825, 3000 В и выше.

    Тупиковые ПС получают питание по одной или двум тупиковым ВЛ.

    Ответвительные ПС присоединяются ответвлением к одной или двум проходящим ВЛ с односторонним или двухсторонним питанием.

    Проходные ПС включаются в рассечку одной или двух проходящих ВЛ с односторонним или двухсторонним питанием.

    Узловые ПС кроме питающих имеют отходящие радиальные или транзитные ВЛ.

    • по способу управления ПС могут быть:
      • только с телесигнализацией,
      • телеуправляемыми с телесигнализацией,
      • с телесигнализацией и управлением с общеподстанционного пункта управления (ОПУ).


    Подстанции оперативно обслуживаются постоянным дежурным персоналом на щите управления, дежурными на дому или оперативно-выездными бригадами (ОВБ). Ремонт ПС осуществляется специализированными выездными бригадами централизованного ремонта или местным персоналом подстанции.

    В РУ напряжением до 1000 В провода, шины, аппараты, приборы и конструкции выбирают как по нормальным условиям работы (напряжению и току), так и по термическим и динамическим воздействиям токов коротких замыканий (КЗ) или предельно допустимой отключаемой мощности.

    В РУ и ПС напряжением выше 1000 В расстояния между электрооборудованием, аппаратами, токоведущими частями, изоляторами, ограждениями и конструкциями устанавливаются так, чтобы при нормальном режиме работы электроустановки возникающие физические явления (температура нагрева, электрическая дуга, выброс газов, искрение и др.) не могли привести к повреждению оборудования и КЗ.

    [ http://energy-ua.com/elektricheskie-p/klassifikatsiya.html]
     



    Several different classifications of switchgear can be made:

    A single line-up may incorporate several different types of devices, for example, air-insulated bus, vacuum circuit breakers, and manually operated switches may all exist in the same row of cubicles.

    Ratings, design, specifications and details of switchgear are set by a multitude of standards. In North America mostly IEEE and ANSI standards are used, much of the rest of the world uses IEC standards, sometimes with local national derivatives or variations.

    [Robert W. Smeaton (ed) Switchgear and Control Handbook 3rd Ed., Mc Graw Hill, new York 1997]
    [ http://en.wikipedia.org/wiki/High_voltage_switchgear]

    Тематики

    Синонимы

    EN

    DE

    FR

     

    распределительный щит
    Комплектное устройство, содержащее различную коммутационную аппаратуру, соединенное с одной или более отходящими электрическими цепями, питающееся от одной или более входящих цепей, вместе с зажимами для присоединения нейтральных и защитных проводников.
    [ ГОСТ Р МЭК 60050-826-2009]

    щит распределительный
    Электротехническое устройство, объединяющее коммутационную, регулирующую и защитную аппаратуру, а также контрольно-измерительные и сигнальные приборы
    [Терминологический словарь по строительству на 12 языках (ВНИИИС Госстроя СССР)]

    распределительный щит

    [А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]

    EN

    distribution board
    assembly containing different types of switchgear and controlgear associated with one or more outgoing electric circuits fed from one or more incoming electric circuits, together with terminals for the neutral and protective conductors.
    [IEV number 826-16-08]

    FR

    tableau de répartition, m
    ensemble comportant différents types d'appareillage associés à un ou plusieurs circuits électriques de départ alimentés par un ou plusieurs circuits électriques d'arrivée, ainsi que des bornes pour les conducteurs neutre et de protection.
    [IEV number 826-16-08]

    Параллельные тексты EN-RU

    Distribution switchboards, including the Main LV Switchboard (MLVS), are critical to the dependability of an electrical installation. They must comply with well-defined standards governing the design and construction of LV switchgear assemblies

    A distribution switchboard is the point at which an incoming-power supply divides into separate circuits, each of which is controlled and protected by the fuses or switchgear of the switchboard. A distribution switchboard is divided into a number of functional units, each comprising all the electrical and mechanical elements that contribute to the fulfilment of a given function. It represents a key link in the dependability chain.

    Consequently, the type of distribution switchboard must be perfectly adapted to its application. Its design and construction must comply with applicable standards and working practises.

    [Schneider Electric]

    Распределительные щиты, включая главный распределительный щит низкого напряжения (ГРЩ), играют решающую роль в обеспечении надежности электроустановки. Они должны отвечать требованиям соответствующих стандартов, определяющих конструкцию и порядок изготовления НКУ распределения электроэнергии.

    В распределительном щите выполняется прием электроэнергии и ее распределение по отдельным цепям, каждая из которых контролируется и защищается плавкими предохранителями или автоматическими выключателями.
    Распределительный щит состоит из функциональных блоков, включающих в себя все электрические и механические элементы, необходимые для выполнения требуемой функции. Распределительный щит представляет собой ключевое звено в цепи обеспечения надежности.

    Тип распределительного щита должен соответствовать области применения. Конструкция и изготовление распределительного щита должны удовлетворять требованиям применимых стандартов и учитывать накопленную практику применения.

    [Перевод Интент]

     

    5654

    Рис. Schneider Electric

    With Prisma Plus G you can be sure to build 100% Schneider Electric switchboards that are safe, optimised:

    > All components (switchgear, distribution blocks, prefabricated connections, etc.) are perfectly rated and coordinated to work together;

    > All switchboard configurations, even the most demanding ones, have been tested.

    You can prove that your switchboard meets the current standards, at any time.

    You can be sure to build a reliable electrical installation and give your customers full satisfaction in terms of dependability and safety for people and the installation.

    Prisma Plus G with its discreet design, blends harmoniously into all tertiary and industrial buildings, including in entrance halls and passageways.

    With Prisma Plus G you can build just the right switchboard for your customer, sized precisely to fit costs and needs.

    With this complete, prefabricated and tested system, it's easy to upgrade your installation and still maintain the performance levels.

    > The wall-mounted and floor-standing enclosures combine easily with switchboards already in service.

    > Devices can be replaced or added at any time.

    [Schneider Electric]

    С помощью оболочек Prisma Plus G можно создавать безопасные распределительные щиты, на 100 % состоящие из изделий Schneider Electric:

    > все изделия (коммутационная аппаратура, распределительные блоки, готовые заводские соединения и т. д.) полностью совместимы механически и электрически;

    > все варианты компоновки распределительных щитов, в том числе для наиболее ответственных применений, прошли испытания.

    В любое время вы можете доказать, что ваши распределительные щиты полностью соответствуют требованиям действующих стандартов.

    Вы можете быть полностью уверены в том, что создаете надежные электроустановки, удовлетворяющие всем требованиям безопасности для людей и оборудования

    Благодаря строгому дизайну, распределительные щиты Prisma Plus G гармонично сочетаются с интерьером любого общественного или промышленного здания. Они хорошо смотрятся и в вестибюле, и в коридоре.

    Применяя оболочки Prisma Plus G можно создавать распределительные щиты, точно соответствующие требованиям заказчика как с точки зрения технических характеристик, так и стоимости.

    С помощью данной испытанной системы, содержащей все необходимые компоненты заводского изготовления можно легко модернизировать существующую электроустановку и поддерживать её уровни производительности.

    > Навесные и напольные оболочки можно легко присоединить к уже эксплуатируемым распределительным щитам.

    > Аппаратуру можно заменять или добавлять в любое время.

    [Перевод Интент]

     

    The switchboard, central to the electrical installation.

    Both the point of arrival of energy and a device for distribution to the site applications, the LV switchboard is the intelligence of the system, central to the electrical installation.

    [Schneider Electric]

    Распределительный щит – «сердце» электроустановки.

    Низковольтное комплектное устройство распределения является «сердцем» электроустановки, поскольку именно оно принимает электроэнергию из сети и распределяет её по территориально распределенным нагрузкам.

    [Перевод Интент]

    Тематики

    EN

    DE

    FR

    Англо-русский словарь нормативно-технической терминологии > switchboard

  • 16 Camm, Sir Sydney

    [br]
    b. 5 August 1893 Windsor, Berkshire, England
    d. 12 March 1966 Richmond, Surrey, England
    [br]
    English military aircraft designer.
    [br]
    He was the eldest of twelve children and his father was a journeyman carpenter, in whose footsteps Camm followed as an apprentice woodworker. He developed an early interest in aircraft, becoming a keen model maker in his early teens and taking a major role in founding a local society to this end, and in 1912 he designed and built a glider able to carry people. During the First World War he worked as a draughtsman for the aircraft firm Martinsyde, but became increasingly involved in design matters as the war progressed. In 1923 Camm was recruited by Sopwith to join his Hawker Engineering Company as Senior Draughtsman, but within two years had risen to be Chief Designer. His first important contribution was to develop a method of producing metal aircraft, using welded steel tubes, and in 1926 he designed his first significant aircraft, the Hawker Horsley torpedo-bomber, which briefly held the world long-distance record before it was snatched by Charles Lindbergh in his epic New York-Paris flight in 1927. His Hawker Hart light bomber followed in 1928, after which came his Hawker Fury fighter.
    By the mid-1930s Camm's reputation as a designer was such that he was able to wield significant influence on the Air Ministry when Royal Air Force (RAF) aircraft specifications were being drawn up. His outstanding contribution came, however, with the unveiling of his Hawker Hurricane in 1935. This single-seater fighter was to prove one of the backbones of the RAF during 1939–45, but during the war he also designed two other excellent fighters: the Tempest and the Typhoon. After the Second World War Camm turned to jet aircraft, producing in 1951 the Hawker Hunter fighter/ground-attack aircraft, which saw lengthy service in the RAF and many other air forces. His most revolutionary contribution was the design of the Harrier jump-jet, beginning with the P.1127 prototype in 1961, followed by the Kestrel three years later. These were private ventures, but eventually the Government saw the enormous merit in the vertical take-off and landing concept, and the Harrier came to fruition in 1967. Sadly Camm, who was on the Board of Sopwith Hawker Siddeley Group, died before the aircraft came into service. He is permanently commemorated in the Camm Memorial Hall at the RAF Museum, Hendon, London.
    [br]
    Principal Honours and Distinctions
    CBE 1941. Knighted 1953. Associate Fellow of the Royal Aeronautical Society 1918, Fellow 1932, President 1954–5, Gold Medal 1958. Daniel Guggenheim Medal (USA) 1965.
    Further Reading
    Alan Bramson, 1990, Pure Luck: The Authorized Biography of Sir Thomas Sopwith, 1888–1989, Wellingborough: Patrick Stephens (provides information about Camm and his association with Sopwith).
    Dictionary of National Biography, 1961–70.
    CM

    Biographical history of technology > Camm, Sir Sydney

  • 17 Mole, Lancelot de

    SUBJECT AREA: Weapons and armour
    [br]
    b. 13 March 1880 Adelaide, Australia
    d. 6 May 1950 Sydney, Australia
    [br]
    Australian engineer and early tank designer.
    [br]
    De Mole's father was an architect and surveyor and he himself followed a similar avenue as a draughtsman working on mining, surveying and engineering projects in Australia. It was in 1911, while surveying in particularly rough terrain in Western Australia, that he first conceived the idea of the tank as a tracked, armoured vehicle capable of traversing the most difficult ground. He drew up detailed plans and submitted them to the War Office in London the following year, but although they were rejected, not all the plans were returned to him. When war broke out in 1914 he tried without success to interest the Australian authorities, even after he had constructed a model at their request. A further blow came in 1916, when the first tanks, built by the British, appeared on the battlefields of France and looked remarkably similar in design to his own. Believing that he could play a significant role in further tank development, but lacking the funds to travel to Britain, de Mole eventually succeeded, after an initial rejection by a medical board, in enlisting in the Australian Army, which got him to England at the beginning of 1918. He immediately took his model to the British Inventions Committee, who were sufficiently impressed to pass it to the Tank Board, who promptly mislaid it for six weeks. Meanwhile, in March 1918, Private de Mole was ordered to France and was unable to take matters further. On his return to England in early 1919 he made a formal claim for a reward for his invention, but this was turned down on the grounds that no direct link could be established between his design and the first tanks that were built. Even so, the Inventions Committee did authorize a sum of money to cover his expenses, and in 1920 de Mole was a made a Commander of the Order of the British Empire.
    Returning to Australia, de Mole worked as an engineer in the design branch of the Sydney Water Board. He continued to invent, but none of his designs, which covered a wide range of items, were ever taken up.
    [br]
    Principal Honours and Distinctions
    CBE 1920.
    Further Reading
    Australian Dictionary of Biography, 1918, Vol. 8.
    A.J.Smithers, 1986, A New Excalibur: The Development of the Tank 1909–1939, London: Leo Cooper (for illustrations of the model of his tank).
    Mention of his invention is made in a number of books on the history of the tank.
    CM

    Biographical history of technology > Mole, Lancelot de

  • 18 Fox, Uffa

    SUBJECT AREA: Ports and shipping
    [br]
    b. 15 January 1898 Cowes, Isle of Wight, England
    d. 27 October 1972 Isle of Wight (?), England
    [br]
    English yacht designer.
    [br]
    Coming from a family that had originated in East Anglia, his first name was that of an early British king and was to typify his unusual and refreshing zest for life. Fox commenced his professional career as an apprentice with the flying boat and high-speed craft builders Messrs S.E.Saunders, and shortly after the outbreak of the First World War he was conscripted into the Royal Naval Air Service. In 1920 he made his first transatlantic crossing under sail, a much greater adventure then than now, and returned to the United Kingdom as deck-hand on a ship bound for Liverpool. He was to make the crossing under sail twice more. Shortly after his marriage in 1925, he purchased the old Floating Bridge at Cowes and converted it to living accommodation, workshops and drawing offices. By the 1930s his life's work was in full swing, with designs coming off his drawing board for some of the most outstanding mass-produced craft ever built, as well as for some remarkable one-off yachts. His experimentation with every kind of sailing craft, and even with the Eskimo kayak, gave him the knowledge and experience that made his name known worldwide. During the Second World War he designed and produced the world's first airborne parachuted lifeboat. Despite what could be described as a robust lifestyle, coupled with interests in music, art and horseriding, Fox continued to produce great designs and in the late 1940s he introduced the Firefly, followed by the beautiful Flying Fifteen class of racing keel boats. One of his most unusual vessels was Britannia, the 24 ft (7.3 m) waterline craft that John Fairfax was to row across the Atlantic. Later came Britannia II, which Fairfax took across the Pacific!
    [br]
    Principal Honours and Distinctions
    CBE 1959. Royal Designer to Industry (RDI).
    Bibliography
    Fox produced a series of yachting books, most first published in the late 1930s, and some more lighthearted volumes of reminiscences in the 1960s. Some of the best-known titles are: Sail and Power, Racing and Cruising Design, Uffa Fox's Second Book and The Crest of the Wave.
    Further Reading
    J.Dixon, 1978, Uffa Fox. A Personal Biography, Brighton: Angus \& Robertson.
    FMW

    Biographical history of technology > Fox, Uffa

  • 19 Herreshoff, Nathaniel Greene

    SUBJECT AREA: Ports and shipping
    [br]
    b. 18 March 1848 Bristol, Rhode Island, USA
    d. 2 June 1938 Bristol, Rhode Island, USA
    [br]
    American naval architect and designer of six successful America's Cup defenders.
    [br]
    Herreshoff, or, as he was known, Captain Nat, was seventh in a family of nine, four of whom became blind in childhood. Association with such problems may have sharpened his appreciation of shape and form; indeed, he made a lengthy European small-boat trip with a blind brother. While working on yacht designs, he used three-dimensional models in conjunction with the sheer draught on the drawing-board. With many of the family being boatbuilders, he started designing at the age of 16 and then decided to make this his career. As naval architecture was not then a graduating subject, he studied mechanical engineering at Massachusetts Institute of Technology. While still studying, c.1867, he broke new ground by preparing direct reading time handicapping tables for yachts up to 110 ft (33.5 m) long. After working with the Corliss Company, he set up the Herreshoff Manufacturing Company, in partnership with J.B.Herreshoff, as shipbuilders and engineers. Over the years their output included steam machinery, fishing vessels, pleasure craft and racing yachts. They built the first torpedo boat for the US Navy and another for the Royal Navy, the only such acquisition in the late nineteenth century. Herreshoff designed six of the world's greatest yachts, of the America's Cup, between 1890 and 1920. His accomplishments included new types of lightweight wood fasteners, new systems of framing, hollow spars and better methods of cutting sails. He continued to work full-time until 1935 and his work was internationally acclaimed. He maintained cordial relations with his British rivals Fife, Nicholson and G.L. Watson, and enjoyed friendship with his compatriot Edward Burgess. Few will ever match Herreshoff as an all-round engineer and designer.
    [br]
    Principal Honours and Distinctions
    Herreshoff was one of the very few, other than heads of state, to become an Honorary Member of the New York Yacht Club.
    Further Reading
    L.F.Herreshoff, 1953, Capt. Nat Herreshoff. The Wizard of Bristol, White Plains, NY: Sheridan House; 2nd edn 1981.
    FMW

    Biographical history of technology > Herreshoff, Nathaniel Greene

  • 20 Johnson, Clarence Leonard (Kelly)

    SUBJECT AREA: Aerospace
    [br]
    b. 27 February 1910 Michigan, USA
    d. 21 December 1990 Burbank County, California, USA
    [br]
    American aircraft designer responsible for many outstanding Lockheed aircraft over a period of almost forty-eight years.
    [br]
    The large and successful Lockheed Aircraft Corporation grew out of a small company founded by Allan and Malcolm Loughhead (pronounced "Lockheed") in 1913. The company employed many notable designers such as Jack Northrop, Jerry Vultee and Lloyd Stearman, but the most productive was "Kelly" Johnson. After studying aeronautical engineering at the University of Michigan, Johnson joined Lockheed in 1933 and gained experience in all the branches of the design department. By 1938 he had been appointed Chief Research Engineer and became involved with the design of the P-38 Lightning twin-boom fighter and the Constellation airliner. In 1943 he set up a super-secret research and development organization called Advanced Development Projects, but this soon became known as the "Skunk Works": the name came from a very mysterious factory which made potions from skunks in the popular comic strip Li'lAbner. The first aircraft designed and built by Johnson's small hand-picked team was the XP-80 Shooting Star prototype jet fighter, which was produced in just 143 days: it became the United States' first production jet fighter. At this stage the Skunk Works produced a prototype, then the main Lockheed factories took over the production run. The F-104 Starfighter and the C-130 Hercules transport were produced in this way and became widely used in many countries. In 1954 work began on the U-2 reconnaissance aircraft which was so secret that production was carried out within the Skunk Works. This made the headlines in 1960 when one was shot down over Russia. Probably the most outstanding of Johnson's designs was the SR-71 Blackbird of 1964, a reconnaissance aircraft capable of flying at Mach 3 (three times the speed of sound). Johnson was not only a great designer, he was also an outstanding manager, and his methods—including his "14 Rules"—have been widely followed. He retired from the Lockheed board in 1980, having been involved in the design of some forty aircraft.
    [br]
    Principal Honours and Distinctions
    National Medal of Freedom (the highest United States award for a civilian) 1964.
    Further Reading
    Obituary, 1991, Aerospace (Royal Aeronautical Society) (March).
    B.R.Rich, 1989, "The Skunk Works" management style: it's no secret', Aerospace (Royal Aeronautical Society) (March) (Rich was Johnson's successor).
    Details of Lockheed aircraft can be found in several publications, e.g.: R.J.Francillon, 1982, Lockheed Aircraft since 1913, London.
    JDS

    Biographical history of technology > Johnson, Clarence Leonard (Kelly)

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