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SU143479A1 - Electrostatic deflection system for cathode ray tubes - Google Patents

Electrostatic deflection system for cathode ray tubes

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Publication number
SU143479A1
SU143479A1 SU692520A SU692520A SU143479A1 SU 143479 A1 SU143479 A1 SU 143479A1 SU 692520 A SU692520 A SU 692520A SU 692520 A SU692520 A SU 692520A SU 143479 A1 SU143479 A1 SU 143479A1
Authority
SU
USSR - Soviet Union
Prior art keywords
cathode ray
ray tubes
deflection system
electrostatic deflection
plates
Prior art date
Application number
SU692520A
Other languages
Russian (ru)
Inventor
Б.Э. Бонштедт
Original Assignee
Б.Э. Бонштедт
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Б.Э. Бонштедт filed Critical Б.Э. Бонштедт
Priority to SU692520A priority Critical patent/SU143479A1/en
Application granted granted Critical
Publication of SU143479A1 publication Critical patent/SU143479A1/en

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Description

Известны отк;1оп ю1дие системы электронно-лучевых трубок, осуществл юидие одновременное отклоненне луча в обоих направлени х. Пч) добные системы эффективно работают в электронных приборах с фокусировкой продольным магнитным полем. Недостаток известных систем состоит в том. что сложна  форма дефекторной отклон юн1ей системы затрудн ет ее изготовление и применение.There are known openings of the system of cathode-ray tubes, carrying out the simultaneous deflection of the beam in both directions. PCs similar systems work effectively in electronic devices with focusing by a longitudinal magnetic field. A disadvantage of the known systems is. that the complex shape of the deflecting rejection of a system’s system makes it difficult to manufacture and use.

В описываемой электростатической отклон ющей системе отклон ющие пластины расположены на внутренней поверхности цилиндра или конуса. Пластины выполнены в виде р да полос, параллельных образующим, и расположены так, что обеспечивают максимальную однородность отклон ющего пол . Это существенно упрощает форму отклон ющих электродов. Поэтому отклон юща  система молчет быть использована в укороченных элекгронных трубках, а также в приборах с фокусировкой продольным магнитным полем.In the described electrostatic deflection system, deflection plates are located on the inner surface of a cylinder or a cone. The plates are made in the form of a series of bands parallel to the generators, and are arranged so that they ensure maximum homogeneity of the deflecting floor. This greatly simplifies the shape of the deflecting electrodes. Therefore, the deflection system is silent to be used in shortened electron tubes, as well as in devices with focusing by a longitudinal magnetic field.

Схема расположени  полос дл  случа  делени  каждой пластины на три электрода приведена на фиг. 1, а дл  случа  делени  на п ть электродов - на фиг. 2.The strip layout for the case of dividing each plate into three electrodes is shown in FIG. 1, and for the case of division into five electrodes, in FIG. 2

Электростатическа  отклон юща  система выполнена в виде совокупности электродов, нанесенных на внутреннюю поверхность изолирующего цилиндра параллельно его образующим. При этом кажда  отклон юща  пластина представ.п ег собой гребенку, зубь  которой вложены между зубь ми гребенок, составл ющих другие пластины. При оптимальном подборе щирииы полос можно добитьс  однородного отклон ющего пол  каждой пары пластин. Сложение полей обеих пар пластин дает также однородное поле, отклон юща  траектори  получаетс  плоской, а угол отклонени  пропорционален полю.The electrostatic deflection system is made as a set of electrodes deposited on the inner surface of an insulating cylinder parallel to its generator. In this case, each deflecting plate is represented by a comb, the teeth of which are inserted between the teeth of the dies constituting the other plates. With an optimal selection of band widths, a uniform floor deflection of each pair of plates can be achieved. The addition of the fields of both pairs of plates also gives a uniform field, the deflecting path is flat and the deflection angle is proportional to the field.

В случае делени  пластин на три электрода (фиг. 1) оптимальным  вл етс  угол 6 20°. В случае делени  пластин на п ть электродов (фиг. 2) оптимальными будут углы в| 33°20 и в2 23°39. Диаметр 1тклон ющей системы может бь1ть выбран равным рассто нию междуIn the case of dividing the plates into three electrodes (Fig. 1), an angle of 6-20 ° is optimal. In the case of dividing the plates into five electrodes (Fig. 2), the angles at | 33 ° 20 and B2 23 ° 39. The diameter of the 1-declining system may be chosen equal to the distance between

SU692520A 1961-01-09 1961-01-09 Electrostatic deflection system for cathode ray tubes SU143479A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
SU692520A SU143479A1 (en) 1961-01-09 1961-01-09 Electrostatic deflection system for cathode ray tubes

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
SU692520A SU143479A1 (en) 1961-01-09 1961-01-09 Electrostatic deflection system for cathode ray tubes

Publications (1)

Publication Number Publication Date
SU143479A1 true SU143479A1 (en) 1961-11-30

Family

ID=48299239

Family Applications (1)

Application Number Title Priority Date Filing Date
SU692520A SU143479A1 (en) 1961-01-09 1961-01-09 Electrostatic deflection system for cathode ray tubes

Country Status (1)

Country Link
SU (1) SU143479A1 (en)

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