ПРИСТРІЙ ДЛЯ ВИРОБНИЦТВА ЕЛЕКТРОМАГНІТНИХ ХВИЛЬ

    公开(公告)号:UA127016U

    公开(公告)日:2018-07-10

    申请号:UAU201801849

    申请日:2018-02-23

    Abstract: Пристрійдлявиробництваелектромагнітниххвильміститькубічнукоробкуз дванадцятимачемв центрі, якаміститьподвійнуобкладинкуз просторомміжстінкамишириною 12 мм, останніз'єднаніміжсобоюзадопомогоюсистемижорсткихдірчастихперегородок. Простірміжстінкамизаповнюєтьсягазомаргономпритиску 0,18 Паабонебільшевказаноївеличини.

    24.
    发明专利
    未知

    公开(公告)号:FR2324032B1

    公开(公告)日:1979-09-28

    申请号:FR7626501

    申请日:1976-09-02

    Abstract: An ionography imaging chamber for use in X-ray systems wherein dielectric receptor sheets are introduced into an interelectrode gap of the imaging chamber and the gap is filled with compressed high Z gas during imaging of an object onto a sheet in the chamber so that the sheet is provided with a latent image of the object. The chamber has a gate defining an arcuate channel for introduction of receptor sheets into and evacuation of sheets from the interelectrode gap. In order to prevent escape of high Z gas into the atmosphere and/or penetration of air into the gap, the gate has one or more orifices for admission of a compressed buffer gas (for example, CO2 gas) which is readily separable from the high Z gas whereby the buffer gas flows toward and away from the gap and mixes with high Z gas which tends to escape from the gap by way of the channel. The gate is further formed with one or more second orifices which evacuate the mixture of buffer gas and high Z gas from the channel between the first orifice or orifices and the gap. The gap is sealed from the inlet of the channel by one or more inflatable seals before the pressure of high Z gas in the gap is raised preparatory to exposure of a receptor sheet to X-rays.

    IONOGRAPHY IMAGING CHAMBER
    25.
    发明专利

    公开(公告)号:CA1056071A

    公开(公告)日:1979-06-05

    申请号:CA260755

    申请日:1976-09-08

    Abstract: An ionography imaging chamber for use in X-ray systems wherein dielectric receptor sheets are introduced into an interelectrode gap of the imaging chamber and the gap is filled with compressed high Z gas during imaging of an object onto a sheet in the chamber so that the sheet is provided with a latent image of the object. The chamber has a gate defining an arcuate channel for introduction of receptor sheets into and evacuation of sheets from the interelectrode gap. In order to prevent escape of high Z gas into the atmosphere and/or penetration of air into the gap, the gate has one or more orifices for admission of a compressed buffer gas (for example, CO2 gas) which is readily separable from the high Z gas whereby the buffer gas flows toward and away from the gap and mixes with high Z gas which tends to escape from the gap by way of the channel. The gate is further formed with one or more second orifices which evacuate the mixture of buffer gas and high Z gas from the channel between the first orifice or orifices and the gap. The gap is sealed from the inlet of the channel by one or more inflatable seals before the pressure of high Z gas in the gap is raised preparatory to exposure of a receptor sheet to X-rays.

    26.
    发明专利
    未知

    公开(公告)号:NL7610012A

    公开(公告)日:1977-02-28

    申请号:NL7610012

    申请日:1976-09-09

    Abstract: An ionography imaging chamber for use in X-ray systems wherein dielectric receptor sheets are introduced into an interelectrode gap of the imaging chamber and the gap is filled with compressed high Z gas during imaging of an object onto a sheet in the chamber so that the sheet is provided with a latent image of the object. The chamber has a gate defining an arcuate channel for introduction of receptor sheets into and evacuation of sheets from the interelectrode gap. In order to prevent escape of high Z gas into the atmosphere and/or penetration of air into the gap, the gate has one or more orifices for admission of a compressed buffer gas (for example, CO2 gas) which is readily separable from the high Z gas whereby the buffer gas flows toward and away from the gap and mixes with high Z gas which tends to escape from the gap by way of the channel. The gate is further formed with one or more second orifices which evacuate the mixture of buffer gas and high Z gas from the channel between the first orifice or orifices and the gap. The gap is sealed from the inlet of the channel by one or more inflatable seals before the pressure of high Z gas in the gap is raised preparatory to exposure of a receptor sheet to X-rays.

    ГАЗОРАЗРЯДНЫЙ АВТОЭМИССИОННЫЙ КАТОД, МИКРОРАЗМЕРНАЯ ЭЛЕКТРОННАЯ ЛАМПА НА ЕГО ОСНОВЕ

    公开(公告)号:RU2011108425A

    公开(公告)日:2012-09-10

    申请号:RU2011108425

    申请日:2011-03-04

    Abstract: 1. Автоэмиссионныйострийныйкатоддлямикроразмерныхэлектронныхламп, одиночныйилипредставляющийсобойлинейкуилиматрицуострий, горизонтальнойиливертикальнойконструкции, отличающийсятем, чтоонизготовленизнеокисляющегосятугоплавкогометаллаи работаетв атмосфереинертногогазаприповышенномдавлении. ! 2. Микроразмернаяэлектроннаялампас автоэмиссионнымкатодом, указаннымв п.1, включающаявнутреннююрабочуюполость, катод, анод, управляющиеэлектродыи диэлектрическуюизоляцию, отличающаясятем, чтовнутренняярабочаяполостьзаполненаинертнымгазомприповышенномдавлении, атакжеприменениемспециальныхматериалови конструкциейуправляющихэлектродови анода.

    Entladungslampe
    28.
    发明专利

    公开(公告)号:DE102009057546A1

    公开(公告)日:2010-09-16

    申请号:DE102009057546

    申请日:2009-12-09

    Abstract: Die Erfindung betrifft eine Entladungslampe mit einem Entladungsgefäß (1), in dem eine Kathode (5) und eine Anode (4) in der Röhrenachsrichtung des Entladungsgefäßes (1) gegenüberliegend angeordnet sind, wobei die Kathode (5) aus einem Material gebildet ist, bei dem ein Grundstoff aus metallischem Wolfram ein Lanthanoxid und ein Zirkoniumoxid enthält. Im Kathoden-Grundstoff aus metallischem Wolfram ist zudem Kohlenstoff in Form einer festen Lösung vorhanden.

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