Claims
- 1. An article of manufacture having a configuration for use in a gaseous discharge device and comprising a dielectric material body having surfaces facing in opposite directions, a plurality of spaced electrically conductive elements on one of said surfaces, and on the other of said surfaces a surface deposit containing a source of at least one element selected from the group consisting of phosphorus, arsenic, and antimony in an amount sufficient to provide uniform operating voltages and minimize aging cycle time, said source being an oxide of said element.
- 2. The invention of claim 1 wherein the thickness of said deposit is at least about 100 angstrom units.
- 3. An article of manufacture having a configuration for use in a gaseous discharge device and comprising a dielectric material body having surfaces facing in opposite directions, a plurality of spaced electrically conductive elements on one of said surfaces, and on the other of said surfaces a surface deposit containing a source of the element phosphorus, said source being a compound selected from the group consisting of phospham, phosphomolybdic acid, phosphonium bromide, phosphonium chloride, phorphorium iodide, phosphoramide, black phosphorus, phosphorus pentabromide, phosphorus dibromide trichloride, phorphorus heptabromide dichloride, phosphorus monobromide tetrachloride, phosphorus bromide nitride, phosphorus pentachloride, phosphorus trichloride diiodide, phosphorus triiodide, phosphorus pentaoxide, phosphorus tetraoxide, phosphorus sesquioxide, phosphorus oxybromide, phosphorus trioxide, phosphorus oxysulfide, tetraphosphorus triselenide, tetraphosphorus heptasulfide, phosphorus pentasulfide, phosphorus sesquisulfide, phosphorus thiobromide, phosphotungstic acid and ortho-phosphorous acid in an amount sufficient to provide uniform operating voltages and minimize aging cycle time.
- 4. The invention of claim 3 wherein the thickness of said deposit is at least about 100 angstrom units.
- 5. An article of manufacture having a configuration for use in a gaseous discharge device and comprising a dielectric material body having surfaces facing in opposite directions, a plurality of spaced electrically conductive elements on one of said surfaces, and on the other of said surfaces a surface deposit containing a source of the element arsenic, said source being a compound selected from the group consisting of arsenic acid, arsenic tribromide, arsenic diiodide, arsenic pentaiodide, arsenic triiodide, arsenic pentaoxide, arsenic trioxide, arsenic oxychloride, arsenic monophosphide, arsenic disulfide, arsenic selenide, arsenic pentasulfide and arsenic trisulfide in an amount sufficient to provide uniform operating voltages and minimize aging cycle time.
- 6. The invention of claim 5 wherein the thickness of said deposit is at least about 100 angstrom units.
- 7. An article of manufacture having a configuration for use in a gaseous discharge device and comprising a dielectric material body having surfaces facing in opposite directions, a plurality of spaced electrically conductive elements on one of said surfaces, and on the other of said surfaces a surface deposit containing a source of the element antimony, said source being a compound selected from the group consisting of antimony tribromide, antimony trichloride, antimony trifluoride, antimony pentaiodide, antimony triiodide, antimony iodosulfide, antimony chlorosulfide, antimony basic nitrate, antimony nitride, antimony pentaoxide, antimony tetraoxide, antimony trioxide, antimony oxychloride, antimony oxyhydrate, antimony oxysulfate, antimony potassium tartrate, antimony selenide, antimony sulfate, antimony pentasulfide, antimony trisulfide and antimony tritelluride in an amount sufficient to provide uniform operating voltages and minimize aging cycle time.
- 8. The invention of claim 7 wherein the thickness of said deposit is at least about 100 angstrom units.
- 9. A method of using a dielectric body in a gaseous discharge device to provide uniform operating voltages and minimize aging cycle time, said body comprising a surface deposit containing a source of at least one element selected from the group consisting of phosphorus, arsenic, and antimony in an amount sufficient to provide uniform operating voltages and minimize aging cycle time, said source being an oxide of said element.
- 10. A method of using a dielectric body in a gaseous discharge device to provide uniform operating voltages and minimize aging cycle time, said body comprising a surface deposit containing a source of the element phosphorus, said source being a compound selected from the group consisting of of phospham, phosphomolybdic acid, phosphonium bromide, phosphonium chloride, phosphorium iodide, phosphoramide, black phosphrous, phosphorus pentabromide, phosphorus dibromide trichloride, phosphorus heptabromide dichloride, phosphorus monobromide tetrachloride, phosphorus bromide nitride, phosphorus pentachloride, phosphorus trichloride diiodide, phosphorus triiodide, phosphorus pentaoxide, phosphorus tetraoxide, phosphorus sesquioxide, phosphorus oxybromide, phosphorus trioxide, phosphorus oxysulfide, tetraphosphorus triselenide, tetraphosphorus heptasulfide, phosphorus pentasulfide, phosphorus sesquisulfide, phosphorus thiobromide, phosphotungstic acid and ortho-phosphorous acid in an amount sufficient to provide uniform operating voltages and minimize aging cycle time.
- 11. A method of using a dielectric body in a gaseous discharge device to provide uniform operating voltages and minimize aging cycle time, said body comprising a surface deposit containing a source of the element arsenic, said source being a compound selected from the group consisting of arsenic acid, arsenic tribromide, arsenic diiodide, arsenic pentaiodide, arsenic triiodide, arsenic pentaoxide, arsenic trioxide, arsenic oxychloride, arsenic monophosphide, arsenic disulfide, arsenic selenide, arsenic pentasulfide and arsenic trisulfide in an amount sufficient to provide uniform operating voltages and minimize aging cycle time.
- 12. A method of using a dielectroc body in a gaseous discharge device to provide uniform operating voltages and minimize aging cycle time, said body comprising a surface deposit containing a source of the element antimony, said source being a compound selected from the group consisting of antimony tribromide, antimony trichloride, antimony trifluoride, antimony pentaiodide, antimony triiodide, antimony iodiosulfide, antimony chlorosulfide, antimony basic nitrate, antimony nitride, antimony pentaoxide, antimony tetraoxide, antimony trioxide, antimony oxychloride, antimony oxyhydrate, antimony oxysulfate, antimony potassium tartrate, antimony selenide, antimony sulfate, antimony pentasulfide, antimony trisulfide and antimony tritelluride in an amount to provide uniform operating voltages and minimize aging cycle time.
Parent Case Info
This is a continuation of application Ser. No. 204,818 filed Dec. 6, 1971, now abandoned.
US Referenced Citations (10)
Foreign Referenced Citations (1)
Number |
Date |
Country |
691795 |
May 1953 |
GBX |
Non-Patent Literature Citations (1)
Entry |
Handbook of Chemistry & Physics, pp. 3062-3063, 44th Edition, edited by C. D. Hogsman (1962-1963). |
Continuations (1)
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Number |
Date |
Country |
Parent |
204818 |
Dec 1971 |
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