Ir-coated dispenser cathodes for CRTs
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- Higuchi Toshiharu
- Toshiba Corporation, Electron Tubes & Devices Division
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- Matsumoto Sadao
- Toshiba Corporation, Electron Tubes & Devices Division
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- Yakabe Toru
- Toshiba Corporation, Electron Tubes & Devices Division
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- Sugawara Shigeru
- Toshiba Corporation, Cathode Ray Tube Division
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- Fukui Tuneo
- Toshiba Corporation, Cathode Ray Tube Division
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Abstract
Strong demand exists for the development of high-current-density and long-1ife cathodes for use in cathode ray tubes (CRTs). In response to this demand, the authors have developed and implemented the mass production of two types of Ir-coated 411 type dispenser cathodes having a heater power of 1.31 W and 0.76 W, respectively. These cathodes were designed by computer simulation, and have astructure that allows them to be assembled in electron guns configured for conventional oxide cathodes. The following three types of life tests were carried out in order to confirm the reliability of the cathodes : (1) To investigate temperature changes during the life of the cathodes, a life test of approximately 40, 000 h was conducted. The resultant temperature change was small, confirming that the reliability of the cathodes is satisfactory. (2) To investigate emission life, a 32, 000 h life test was conducted. The stability of the emission current was thereby confirmed. (3) To investigate heater life, 39, 000 h life tests were conducted at several heater temperature levels with a voltage of 300 V applied between the heater and the cathode. From the results of these tests, the minimum life of the heater is estimated to be 80, 000 h. The results obtained in the above tests confirm that these cathodes possess good reliability.
Journal
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- ITE Technical Report
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ITE Technical Report 23.27 (0), 33-36, 1999
The Institute of Image Information and Television Engineers
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Details 詳細情報について
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- CRID
- 1390001204524572032
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- NII Article ID
- 110003686758
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- NII Book ID
- AN1059086X
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- ISSN
- 24241970
- 13426893
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- NDL BIB ID
- 4779117
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- Text Lang
- en
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- Data Source
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- JaLC
- NDL
- CiNii Articles
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- Abstract License Flag
- Disallowed