Claims
- 1. A method of manufacturing an electronic tube in which among electron beams irradiated from an electron gun, only those passing through a plurality of apertures of a metal shadow mask are projected to a fluorescent screen to generate a visible light, characterized in thatan electron reflection coat is formed on the electron gun side surface of said shadow mask to an amount of coating of less than 0.2 mg/cm2 by painting a paint mainly comprising a solated metal oxide of an element with an atomic number not lower than 40.
- 2. The method of manufacturing an electronic tube according to claim 1, wherein one of a group consisting of sodium silicate, potassium silicate and lithium silicate or a mixture thereof is used as a binder.
- 3. The method of manufacturing an electronic tube according to claim 1, wherein water is used as a solvent for a paint.
- 4. A method of manufacturing an electronic tube in which among electron beams irradiated from an electron gun, only those passing through a plurality of apertures of a metal shadow mask are projected to a fluorescent screen to generate a visible light, characterized in thatan electron reflection coat is formed on the electron gun side surface of said shadow mask to an amount of coating of less than 0.2 mg/cm2 by painting a paint mainly comprising a metal alkoxide of an element with an atomic number not lower than 40.
- 5. The method of manufacturing an electronic tube according to any one of claims 1 to 4, wherein the electron reflection coat is formed by a spray method or a spin coating method.
- 6. A method of manufacturing an electronic tube for manufacturing an electronic tube in which among electron beams irradiated from an electron gun, only those passing through a plurality of apertures of a metal shadow mask are projected to a fluorescent screen to generate a visible light, characterized in thatan electron reflection coat mainly comprising an element with an atomic number not lower than 40 is formed on the electron gun side surface of said shadow mask to an amount of coating of less than 0.2 mg/cm2.
- 7. The method of manufacturing an electronic tube according to claim 6, wherein the electron reflection coat is formed by a sputtering method or a vapor deposition method.
- 8. A method of manufacturing an electronic tube in which among electron beams irradiated from an electron gun, only those passing through a plurality of apertures of a metal shadow mask are projected to a fluorescent screen to generate a visible light, characterized in thatan electron reflection coat is formed on the electron gun side surface of said shadow mask to an amount of coating of not less than 0.2 mg/cm2 and less than 2 mg/cm2 by painting a paint mainly comprising a solated metal oxide of an element with an atomic number from 40 to 69.
- 9. A method of manufacturing an electronic tube in which among electron beams irradiated from an electron gun, only those passing through a plurality of apertures of a metal shadow mask are projected to a fluorescent screen to generate a visible light, characterized in thatan electron reflection coat is formed on the electron gun side surface of said shadow mask to an amount of coating of not less than 0.2 mg/cm2 and less than 2 mg/cm2 by painting a paint mainly comprising a metal alkoxide of an element with an atomic number from 40 to 69.
Priority Claims (1)
Number |
Date |
Country |
Kind |
9-132689 |
May 1997 |
JP |
|
Parent Case Info
This is a Division of application Ser. No. 09/081,813 filed May 21, 1998. Now U.S. Pat. No. 6,172,449.
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Number |
Date |
Country |
9-17349 |
Jan 1997 |
JP |