Termination feedthrough unit with ceramic insulator for vacuum and corrosive applications
US-11993547-B2 · May 28, 2024 · US
US10991569B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10991569-B2 |
| Application number | US-202016799876-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 25, 2020 |
| Priority date | Feb 25, 2019 |
| Publication date | Apr 27, 2021 |
| Grant date | Apr 27, 2021 |
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An electrode arrangement for a discharge lamp is provided, including an electrode unit including an electrode and an electrode plate, and a conductive connection unit for coupling to an energy source. The connection unit includes a connection unit plate. The arrangement includes a cylinder composed of a nonconductive material, said cylinder arranged between the electrode plate and the connection unit plate, and at least one conduction film which is arranged on an outer side of the cylinder and extends from the connection unit plate as far as the electrode plate and connects the connection unit plate and the electrode plate to one another. The arrangement includes a cap-shaped and integrally embodied protective film arranged on the electrode plate or connection unit plate, such that the film covers a plate side facing away from the cylinder and an outer lateral surface of the electrode plate or of the connection unit plate.
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What is claimed is: 1. An electrode arrangement for a discharge lamp, the electrode arrangement comprising: an electrically conductive electrode unit comprising an electrode and an electrode plate, on which the electrode is arranged; an electrically conductive connection unit for coupling to an energy source, wherein the connection unit comprises a connection unit plate; a cylinder composed of an electrically nonconductive material, said cylinder being arranged between the electrode plate and the connection unit plate; and at least one electrically conductive conduction film which is arranged on at least one part of an outer side of the cylinder and extends from the connection unit plate as far as the electrode plate and electrically conductively connects the connection unit plate and the electrode plate to one another; wherein the electrode arrangement comprises a cap-shaped and integrally embodied protective film arranged on the electrode plate or connection unit plate, such that the protective film at least for the most part covers a plate side facing away from the cylinder and an outer lateral surface of the electrode plate or of the connection unit plate. 2. The electrode arrangement of claim 1 , wherein the protective film comprises a relief structure. 3. The electrode arrangement of claim 1 , wherein the protective film comprises a first film part, which is arranged on the plate side facing away from the cylinder and which is embodied in a ring-shaped fashion and has a central circular through opening, through which runs the axis of rotational symmetry of the electrode plate and/or of the connection unit plate. 4. The electrode arrangement of claim 1 , wherein the protective film comprises a second film part for covering the outer lateral surface, wherein the second film part comprises a plurality of film strips which are connected to one another via the first film part and which are arranged in a manner at least adjoining one another or overlapping one another in a circumferential direction around the outer lateral surface. 5. The electrode arrangement of claim 1 , wherein the protective film comprises a second film part for covering the outer lateral surface, said second film part being formed from a completely continuous material section adjacent to the first film part, wherein the second film part has material overlaps, the extent of which increases with increasing distance from the first film part. 6. A gas discharge lamp, comprising: at least one electrode arrangement, comprising: an electrically conductive electrode unit comprising an electrode and an electrode plate, on which the electrode is arranged; an electrically conductive connection unit for coupling to an energy source, wherein the connection unit comprises a connection unit plate; a cylinder composed of an electrically nonconductive material, said cylinder being arranged between the electrode plate and the connection unit plate; and at least one electrically conductive conduction film which is arranged on at least one part of an outer side of the cylinder and extends from the connection unit plate as far as the electrode plate and electrically conductively connects the connection unit plate and the electrode plate to one another; wherein the electrode arrangement comprises a cap-shaped and integrally embodied protective film arranged on the electrode plate or connection unit plate, such that the protective film at least for the most part covers a plate side facing away from the cylinder and an outer lateral surface of the electrode plate or of the connection unit plate. 7. A protective film for an electrode arrangement, the electrode arrangement comprising: an electrically conductive electrode unit comprising an electrode and an electrode plate, on which the electrode is arranged; an electrically conductive connection unit for coupling to an energy source, wherein the connection unit comprises a connection unit plate; a cylinder composed of an electrically nonconductive material, said cylinder being arranged between the electrode plate and the connection unit plate; and at least one electrically conductive conduction film which is arranged on at least one part of an outer side of the cylinder and extends from the connection unit plate as far as the electrode plate and electrically conductively connects the connection unit plate and the electrode plate to one another; wherein the electrode arrangement comprises a cap-shaped and integrally embodied protective film arranged on the electrode plate or connection unit plate, such that the protective film at least for the most part covers a plate side facing away from the cylinder and an outer lateral surface of the electrode plate or of the connection unit plate; wherein the protective film is embodied integrally and in a cap-shaped fashion, such that it is able to be arranged on the electrode plate or the connection unit plate in such a way that the protective film at least for the most part covers a plate side facing away from the cylinder and an outer lateral surface of the electrode plate or of the connection unit plate. 8. A method for providing a protective film on an electrode arrangement for a discharge lamp, the method comprising: providing the electrode arrangement, which comprises: an electrode unit comprising an electrode and an electrode plate, on which the electrode is arranged; a connection unit for coupling to an energy source, wherein the connection unit comprises a connection unit plate; a cylinder composed of an electrically nonconductive material, said cylinder being arranged between the electrode plate and the connection unit plate; and at least one conduction film which is arranged on at least one part of an outer side of the cylinder and extends from the connection unit plate as far as the electrode plate and electrically conductively connects the connection unit plate and the electrode plate to one another; embodying the protective film integrally and in a cap-shaped fashion and arranging on the electrode plate or the connection unit plate in such a way that the protective film at least for the most part covers a plate side facing away from the cylinder and an outer lateral surface of the electrode plate or of the connection unit plate. 9. The method of claim 8 , wherein prior to being arranged the protective film is provided in the form of a first film part and a second film part, wherein the first film part is embodied in a ring-shaped fashion and has a central circular through opening, and the second film part is directly adjacent to the first film part in a radial direction and comprises a plurality of film strips which extend radially outward and which are connected to one another only via the first film part, wherein in each case two edge boundaries facing one another of two neighboring film strips form an angle with one another that is dimensioned such that when the film strips are bent over around an imaginary separating line between the first film part and the second film part by 90 degrees in order to form a cap shape of the protective film, the two edge boundaries facing one another of the respective two neighboring film strips at least bear against one another or overlap. 10. The method of claim 8 , wherein prior to being arranged the protective film is provided in the form of a first film part and a second film part, wherein the first film part is embodied in a ring-shaped fashion and has a central circular through opening, and the second film part is likewise embodied in a ring-shaped fashion and is directly adjacent to the first film part in a radial direction, wherein that edge of the protective film which is formed by the se
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