Claims
- 1. A color cathode ray tube comprising:
- an electron gun including an electron beam generating portion arrayed in a horizontal direction for generating three controlled electron beams, and a main lens electrode for focusing said three electron beams from said electron beam generating portion upon a fluorescent face, said electron beam generating portion and main lens electrode being arranged along the tube axis; and
- a deflection yoke for scanning said three electron beams upon said fluorescent face;
- said main lens electrode including;
- an accelerating electrode for being supplied with an accelerating voltage and having three electron beam passages including a central electron beam passage and side electron beam passages;
- a focusing electrode for being supplied with a focusing voltage and having three electron beam passages including a central electron beam passage and side electron beam passages;
- a final stage of said main lens being formed between said focusing electrode and said accelerating electrode;
- said focusing electrode being divided into at least two focusing electrode parts, said at least two focusing electrode parts including a first focusing electrode part located at a cathode side and having three electron beam passages including a central electron beam passage and side electron beam passages, and a second focusing electrode part located at a fluorescent face side and having three electron beam passages including a central electron beam passage and side electron beam passages;
- wherein one of said first focusing electrode part and said second focusing electrode part has applied thereto one of a first focusing voltage and a second focusing voltage superposed with a dynamic voltage changing according to the deflection of said electron beams;
- wherein a quadrupole electron lens is formed to each electron beam passage of said three electron beam passages between said first focusing electrode part and said second focusing electrode part, and said quadrupole electron lens at the central electron beam passage of said three electron beam passages provides a stronger lens action than a lens action of said quadrupole electron lens at the side electron beam passages of said three electron beam passages in order to balance an astigmatism of the central electron beam with an astigmatism of the side electron beams;
- wherein said focusing electrode which together with said acceleration electrode has said final stage of said main lens formed therebetween has a single aperture at an accelerating electrode direction, said single aperture have a diameter which is larger in a horizontal direction than a diameter thereof in a vertical direction, and said focusing electrode has an electrode plate with an elliptical central electron beam passing hole provided at an interior portion of said focusing electrode; and
- wherein the second focusing voltage is applied to the second focusing electrode part and is a higher voltage than the first focusing voltage applied to the first focusing electrode part, said second focusing electrode part having plate electrodes extending horizontally on the first focusing electrode part side, and said plate electrodes sandwich said three electron beams and are configured so as to extend longer in the axial direction at the center electron beam passage than the extension thereof in the axial direction at the side beam passages.
- 2. A color cathode ray tube comprising:
- an electron gun including an electron beam generating portion arrayed in a horizontal direction for generating three controlled electron beams, and a main lens electrode for focusing said three electron beams from said electron beam generating portion upon a fluorescent face, said electron beam generating portion and main lens electrode being arranged along the tube axis; and
- a deflection yoke for scanning said three electron beams upon said fluorescent face;
- said main lens electrode including;
- an accelerating electrode for being supplied with an accelerating voltage and having three electron beam passages including a central electron beam passage and side electron beam passages;
- a focusing electrode for being supplied with a focusing voltage and having three electron beam passages including a central electron beam passage and side electron beam passages;
- a final stage of said main lens being formed between said focusing electrode and said accelerating electrode;
- said focusing electrode being divided into at least two focusing electrode parts, said at least two focusing electrode parts including a first focusing electrode part located at a cathode side and having three electron beam passages including a central electron beam passage and side electron beam passages, and a second focusing electrode part located at a fluorescent face side and having three electron beam passages including a central electron beam passage and side electron beam passages;
- wherein one of said first focusing electrode part and said second focusing electrode part has applied thereto one of a first focusing voltage and a second focusing voltage superposed with a dynamic voltage changing according to the deflection of said electron beams;
- wherein a quadrupole electron lens is formed to each electron beam passage of said three electron beam passages between said first focusing electrode part and said second focusing electrode part, and said quadrupole electron lens at the central electron beam passage of said three electron beam passages provides a stronger lens action than a lens action of said quadrupole electron lens at the side electron beam passages of said three electron beam passages in order to balance an astigmatism of the central electron beam with an astigmatism of the side electron beams;
- wherein said focusing electrode which together with said acceleration electrode has said final stage of said main lens formed therebetween has a single aperture at an accelerating electrode direction, said single aperture have a diameter which is larger in a horizontal direction than a diameter thereof in a vertical direction, and said focusing electrode has an electrode plate with an elliptical central electron beam passing hole provided at an interior portion of said focusing electrode; and
- wherein the first focusing voltage is applied to the second focusing electrode part and is a higher voltage than the second focusing voltage applied to the first focusing electrode part, said first focusing electrode part having plate electrodes extending horizontally on the second focusing electrode part side, and said plate electrodes sandwich said three electron beams and are configured so as to extend longer in the axial direction at the center electron beam passage than the extension thereof in the axial direction at the side beam passages.
- 3. A color cathode ray tube comprising:
- an electron gun including an electron beam generating portion arrayed in a horizontal direction for generating three controlled electron beams, and a main lens electrode for focusing said three electron beams from said electron beam generating portion upon a fluorescent face, said electron beam generating portion and main lens electrode being arranged along the tube axis; and
- a deflection yoke for scanning said three electron beams upon said fluorescent face;
- said main lens electrode including;
- an accelerating electrode for being supplied with an accelerating voltage and having three electron beam passages including a central electron beam passage and side electron beam passages;
- a focusing electrode for being supplied with a focusing voltage and having three electron beam passages including a central electron beam passage and side electron beam passages;
- a final stage of said main lens being formed between said focusing electrode and said accelerating electrode;
- said focusing electrode being divided into at least two focusing electrode parts, said at least two focusing electrode parts including a first focusing electrode part located at a cathode side and having three electron beam passages including a central electron beam passage and side electron beam passages, and a second focusing electrode part located at a fluorescent face side and having three electron beam passages including a central electron beam passage and side electron beam passages;
- wherein one of said first focusing electrode part and said second focusing electrode part has applied thereto one of a first focusing voltage and a second focusing voltage superposed with a dynamic voltage changing according to the deflection of said electron beams;
- wherein a quadrupole electron lens is formed to each electron beam passage of said three electron beam passages between said first focusing electrode part and said second focusing electrode part, and said quadrupole electron lens at the central electron beam passage of said three electron beam passages provides a stronger lens action than a lens action of said quadrupole electron lens at the side electron beam passages of said three electron beam passages in order to balance an astigmatism of the central electron beam with an astigmatism of the side electron beams;
- wherein said focusing electrode which together with said acceleration electrode has said final stage of said main lens formed therebetween has a single aperture at an accelerating electrode direction, said single aperture have a diameter which is larger in a horizontal direction than a diameter thereof in a vertical direction, and said focusing electrode has an electrode plate with an elliptical central electron beam passing hole provided at an interior portion of said focusing electrode; and
- wherein the first focusing voltage is applied to the second focusing electrode part and is a higher voltage than the second focusing voltage applied to the first focusing electrode part, and a vertical dimension of the central beam passage of the second focusing electrode part is smaller than a vertical dimension of the side beam passages of the second focusing electrode part.
- 4. A color cathode ray tube comprising:
- an electron gun including an electron beam generating portion arrayed in a horizontal direction for generating three controlled electron beams, and a main lens electrode for focusing said three electron beams from said electron beam generating portion upon a fluorescent face, said electron beam generating portion and main lens electrode being arranged along the tube axis; and
- a deflection yoke for scanning said three electron beams upon said fluorescent face;
- said main lens electrode including;
- an accelerating electrode for being supplied with an accelerating voltage and having three electron beam passages including a central electron beam passage and side electron beam passages;
- a focusing electrode for being supplied with a focusing voltage and having three electron beam passages including a central electron beam passage and side electron beam passages;
- a final stage of said main lens being formed between said focusing electrode and said accelerating electrode;
- said focusing electrode being divided into at least two focusing electrode parts, said at least two focusing electrode parts including a first focusing electrode part located at a cathode side and having three electron beam passages including a central electron beam passage and side electron beam passages, and a second focusing electrode part located at a fluorescent face side and having three electron beam passages including a central electron beam passage and side electron beam passages;
- wherein one of said first focusing electrode part and said second focusing electrode part has applied thereto one of a first focusing voltage and a second focusing voltage superposed with a dynamic voltage changing according to the deflection of said electron beams;
- wherein a quadrupole electron lens is formed to each electron beam passage of said three electron beam passages between said first focusing electrode part and said second focusing electrode part, and said quadrupole electron lens at the central electron beam passage of said three electron beam passages provides a stronger lens action than a lens action of said quadrupole electron lens at the side electron beam passages of said three electron beam passages in order to balance an astigmatism of the central electron beam with an astigmatism of the side electron beams;
- wherein said focusing electrode which together with said acceleration electrode has said final stage of said main lens formed therebetween has a single aperture at an accelerating electrode direction, said single aperture have a diameter which is larger in a horizontal direction than a diameter thereof in a vertical direction, and said focusing electrode has an electrode plate with an elliptical central electron beam passing hole provided at an interior portion of said focusing electrode; and
- wherein the second focusing voltage is applied to the first focusing electrode part and is a lower voltage than the first focusing voltage applied to the second focusing electrode part, and a vertical dimension of the central beam passage of the first focusing electrode part is larger than a vertical dimension of the side beam passages of the first focusing electrode part.
- 5. A color cathode ray tube comprising;
- an electron gun including an electron beam generating portion arrayed in a horizontal direction for generating three controlled electron beams, and a main lens electrode for focusing said three electron beams from said electron beam generating portion upon a fluorescent face, said electron beam generating portion and main lens electrode being arranged along the tube axis; and
- a deflection yoke for scanning said three electron beams upon said fluorescent face;
- said main lens electrode including;
- an accelerating electrode for being supplied with an accelerating voltage and having three electron beam passages including a central electron beam passage and side electron beam passages;
- a focusing electrode for being supplied with a focusing voltage and having three electron beam passages including a central electron beam passage and side electron beam passages;
- a final stage of said main lens being formed between said focusing electrode and said accelerating electrode;
- said focusing electrode being divided into at least two focusing electrode parts, said at least two focusing electrode parts including a first focusing electrode part located at a cathode side and having three electron beam passages including a central electron beam passage and side electron beam passages, and a second focusing electrode part located at a fluorescent face side and having three electron beam passages including a central electron beam passage and side electron beam passages;
- wherein one of said first focusing electrode part and said second focusing electrode part has applied thereto one of a first focusing voltage and a second focusing voltage superposed with a dynamic voltage changing according to the deflection of said electron beams;
- wherein a quadrupole electron lens is formed to each electron beam passage of said three electron beam passages between said first focusing electrode part and said second focusing electrode part, and said quadrupole electron lens at the central electron beam passage of said three electron beam passages provides a stronger lens action than a lens action of said quadrupole electron lens at the side electron beam passages of said three electron beam passages in order to balance an astigmatism of the central electron beam with an astigmatism of the side electron beams;
- wherein said focusing electrode which together with said acceleration electrode has said final stage of said main lens formed therebetween has a single aperture at an accelerating electrode direction, said single aperture have a diameter which is larger in a horizontal direction than a diameter thereof in a vertical direction, and said focusing electrode has an electrode plate with an elliptical central electron beam passing hole provided at an interior portion of said focusing electrode; and
- wherein the first focusing voltage is applied to the first focusing electrode part and is a lower voltage than the second focusing voltage applied to the second focusing electrode part, and a vertical dimension of the central beam passage of the first focusing electrode part is larger than a vertical dimension of the side beam passages of the first focusing electrode part.
- 6. A color cathode ray tube comprising:
- an electron gun including an electron beam generating portion arrayed in a horizontal direction for generating three controlled electron beams, and a main lens electrode for focusing said three electron beams from said electron beam generating portion upon a fluorescent face, said electron beam generating portion and main lens electrode being arranged along the tube axis; and
- a deflection yoke for scanning said three electron beams upon said fluorescent face;
- said main lens electrode including;
- an accelerating electrode for being supplied with an accelerating voltage and having three electron beam passages including a central electron beam passage and side electron beam passages;
- a focusing electrode for being supplied with a focusing voltage and having three electron beam passages including a central electron beam passage and side electron beam passages;
- a final stage of said main lens being formed between said focusing electrode and said accelerating electrode;
- said focusing electrode being divided into at least two focusing electrode parts, said at least two focusing electrode parts including a first focusing electrode part located at a cathode side and having three electron beam passages including a central electron beam passage and side electron beam passages, and a second focusing electrode part located at a fluorescent face side and having three electron beam passages including a central electron beam passage and side electron beam passages;
- wherein one of said first focusing electrode part and said second focusing electrode part has applied thereto one of a first focusing voltage and a second focusing voltage superposed with a dynamic voltage changing according to the deflection of said electron beams;
- wherein a quadrupole electron lens is formed to each electron beam passage of said three electron beam passages between said first focusing electrode part and said second focusing electrode part, and said quadrupole electron lens at the central electron beam passage of said three electron beam passages provides a stronger lens action than a lens action of said quadrupole electron lens at the side electron beam passages of said three electron beam passages in order to balance an astigmatism of the central electron beam with an astigmatism of the side electron beams;
- wherein said first focusing electrode part is supplied with the first focusing voltage, said second focusing electrode part is supplied with the second focusing voltage;
- said quadrupole electron lens is formed for each electron beam passage of said three electron beam passages, between said first focusing electrode part and said second focusing electrode part having horizontal plate electrodes extending toward said first focusing electrode part, said first focusing electrode part having three electron beam passage upper and lower portions of said electron beam passage holes being rectangular.
- 7. A color cathode ray tube comprising:
- an electron gun including an electron beam generating portion arrayed in a horizontal direction for generating three controlled electron beams, a focusing electrode for being supplied with focusing voltage and having three electron beam passages including a central electron beam passage and side electron beam passages, and an accelerating electrode for being supplied with an accelerating voltage and having three electron beam passages including a central electron beam passage and side electron beam passages;
- said electron beam generating portion, said focusing electrode and said accelerating electrode being arranged along the tube axis;
- said focusing electrode being divided into at least two focusing electrode parts, said at least two focusing electrodes parts including:
- a first focusing electrode part located at a cathode side and having three electron beam passages including central electron beam passage and side electron beam passages; and
- a second focusing electrode part located at a fluorescent face side and having three electron beam passages including a central electron beam passage and side electron beam passages;
- wherein one of said first focusing electrode part and said second focusing electrode part has one of a first focusing voltage and a second focusing voltage superposed with a dynamic voltage changing according to the deflection of said electron beams applied thereto; and
- wherein a quadrupole electron lens is formed for each electron beam passage of said three electron beam passages between said first focusing electrode part and said second focusing electrode part, said quadrupole electron lens fluctuates a static convergence, the quadrupole electron lens at the central electron beam passage of said three electron beam passages provides a stronger lens action than the quadrupole electron lens at the side electron beam passages of said three electron beam passages in order to balance an astigmatism of the central electron beam with an astigmatism of the side electron beams, and said first focusing electrode part having three electron beam passage holes, upper and lower portions of said electron beam passage holes being rectangular.
Priority Claims (1)
Number |
Date |
Country |
Kind |
6-161333 |
Jul 1994 |
JPX |
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CROSS REFERENCE TO RELATED APPLICATION
This is a continuation of U.S. application Ser. No. 08/499,927, filed Jul. 10, 1995, now U.S. Pat. No. 5,739,630, the subject matter of which is incorporated by reference herein.
US Referenced Citations (12)
Continuations (1)
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Number |
Date |
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Parent |
499927 |
Jul 1995 |
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