VISIBLE LIGHT STREAK TUBE AND ELECTRON-OPTICAL IMAGING SYSTEM

A visible light streak tube and an electron-optical imaging system. The visible light streak tube comprises a spherical cathode (1), a focusing electrode assembly (2), an anode diaphragm (3) and a planar fluorescent screen (4). The focusing electrode assembly (2) comprises at least two focusing elec...

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Hauptverfasser: ZONG, Fangke, ZHANG, Jingjin, YANG, Qinlao
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Sprache:chi ; eng ; fre
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creator ZONG, Fangke
ZHANG, Jingjin
YANG, Qinlao
description A visible light streak tube and an electron-optical imaging system. The visible light streak tube comprises a spherical cathode (1), a focusing electrode assembly (2), an anode diaphragm (3) and a planar fluorescent screen (4). The focusing electrode assembly (2) comprises at least two focusing electrodes (21, 22). The focusing electrodes (21, 22) are used to adjust a position of an image plane of an electron beam. The focusing electrode assembly (2) and the anode diaphragm (3) are both cylindrical structures. The spherical cathode (1), the focusing electrode assembly (2) and the anode diaphragm (3) are sequentially arranged and spaced apart from each other. The spherical cathode (1) is configured to fit with an electrostatic focusing structure resembling a concentric sphere. The planar fluorescent screen (4) is connected to one end of the anode diaphragm (3) away from the focusing electrode assembly (2) by means of a metal sleeve (5), and is used to receive an electron beam to form an image. L'invention conc
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The visible light streak tube comprises a spherical cathode (1), a focusing electrode assembly (2), an anode diaphragm (3) and a planar fluorescent screen (4). The focusing electrode assembly (2) comprises at least two focusing electrodes (21, 22). The focusing electrodes (21, 22) are used to adjust a position of an image plane of an electron beam. The focusing electrode assembly (2) and the anode diaphragm (3) are both cylindrical structures. The spherical cathode (1), the focusing electrode assembly (2) and the anode diaphragm (3) are sequentially arranged and spaced apart from each other. The spherical cathode (1) is configured to fit with an electrostatic focusing structure resembling a concentric sphere. The planar fluorescent screen (4) is connected to one end of the anode diaphragm (3) away from the focusing electrode assembly (2) by means of a metal sleeve (5), and is used to receive an electron beam to form an image. 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The visible light streak tube comprises a spherical cathode (1), a focusing electrode assembly (2), an anode diaphragm (3) and a planar fluorescent screen (4). The focusing electrode assembly (2) comprises at least two focusing electrodes (21, 22). The focusing electrodes (21, 22) are used to adjust a position of an image plane of an electron beam. The focusing electrode assembly (2) and the anode diaphragm (3) are both cylindrical structures. The spherical cathode (1), the focusing electrode assembly (2) and the anode diaphragm (3) are sequentially arranged and spaced apart from each other. The spherical cathode (1) is configured to fit with an electrostatic focusing structure resembling a concentric sphere. The planar fluorescent screen (4) is connected to one end of the anode diaphragm (3) away from the focusing electrode assembly (2) by means of a metal sleeve (5), and is used to receive an electron beam to form an image. 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language chi ; eng ; fre
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subjects ANALOGOUS ARRANGEMENTS USING OTHER WAVES
BASIC ELECTRIC ELEMENTS
DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES
ELECTRIC DISCHARGE TUBES OR DISCHARGE LAMPS
ELECTRICITY
LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION ORRERADIATION OF RADIO WAVES
MEASURING
PHYSICS
RADIO DIRECTION-FINDING
RADIO NAVIGATION
TESTING
title VISIBLE LIGHT STREAK TUBE AND ELECTRON-OPTICAL IMAGING SYSTEM
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