US3898597A - Pairs of oppositely rotatable ring magnets for a color television display device - Google Patents

Pairs of oppositely rotatable ring magnets for a color television display device Download PDF

Info

Publication number
US3898597A
US3898597A US505657A US50565774A US3898597A US 3898597 A US3898597 A US 3898597A US 505657 A US505657 A US 505657A US 50565774 A US50565774 A US 50565774A US 3898597 A US3898597 A US 3898597A
Authority
US
United States
Prior art keywords
pair
rings
tube
display device
correction device
Prior art date
Legal status (The legal status 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 status listed.)
Expired - Lifetime
Application number
US505657A
Inventor
Renso Vonk
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
US Philips Corp
Original Assignee
US Philips Corp
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 US Philips Corp filed Critical US Philips Corp
Application granted granted Critical
Publication of US3898597A publication Critical patent/US3898597A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01JELECTRIC DISCHARGE TUBES OR DISCHARGE LAMPS
    • H01J29/00Details of cathode-ray tubes or of electron-beam tubes of the types covered by group H01J31/00
    • H01J29/46Arrangements of electrodes and associated parts for generating or controlling the ray or beam, e.g. electron-optical arrangement
    • H01J29/70Arrangements for deflecting ray or beam
    • H01J29/701Systems for correcting deviation or convergence of a plurality of beams by means of magnetic fields at least
    • H01J29/702Convergence correction arrangements therefor
    • H01J29/703Static convergence systems

Definitions

  • ABSTRACT A display device for colour television, comprising a correction device which is to be connected on the neck of a display tube and which comprises two pairs of diametrically magnetized rings in Order to enable separate displacement of the electron beams in the tube in the horizontal and in the vertical direction.
  • the diametrically magnetized rings serve for the displacement, simultaneously and in the same direction, of the three electron beams generated by the electron guns, so that each of the beams is incident on the display screen only at areas where a phosphor is situated which luminesces in the colour associated with the relevant beam (colour purity adjustment).
  • colour purity adjustment Because the phosphors on the display screen of a display tube comprising three electron guns which are situated in one plane (usually the horizontal plane) are usually provided in interrupted or noninterrupted stripes perpendicular to the plane of the electron guns (i.e. vertically extending), it is sufficient for the colour purity adjustment per se to displace the electron beams perpendicular to the course of the phosphor stripes, i.e. in the horizontal direction.
  • the invention has for its object to provide a device in which the two corrections can be simply and quickly performed, independently of each other.
  • the device according to the invention is characterized in that the correction device comprises a second pair of permanently, diametrically magnetized rings which are rotatable about the tube axis, the fixation of the rings allowing only a rotation of the rings of each pair in opposite directions and through identical angles, the arrangement being such that the resultant magnetic field of the first ring pair is always perpendicular to the plane of the electron guns, the resultant magnetic field of the second pair always being parallel to this plane.
  • the first ring pair then exclusively serves for the adjustment of the colour purity, and the second pair for straightening the curved horizontal line.
  • FIG. 1 shows a simplified side elevation of a display device according to the invention.
  • FIGS. 20 and b diagrammatically illustrate the operation of the device according to the invention.
  • FIG. 3 shows a section at an increased scale taken along the line III-III of the device shown in FIG. 1.
  • the colour television display device shown in FIG. 1 comprises a display tube, consisting of a cylindrical neck portion 1 and a flared front portion 3.
  • the neck portion comprises three adjacent electron guns 5 (denoted by broken lines) which are situated in a horizontal plane (perpendicular to the plane of the drawing), whilst the flared portion 3 comprises a colour selection electrode (shadow-mask) 7 and a display screen 9 (also denoted by broken lines).
  • a known deflection device ll is provided about the tube, a correction device 13 being provided therebehind on the tube neck 1.
  • This correction device comprises a pair of convergence rings 15 with permanent four-pole magnetization, a pair of convergence rings 17 with permanent six-pole magnetization, and a first pair of permanently, diametrically magnetized rings 19 (two-pole magnetization) for adjusting the colour purity as described in the said US. Pat. No. 3,725,831.
  • the correction device comprises a second pair of rings 21 with two-pole magnetization which serves for the correction of vertical deviations of the electron beams combined.
  • the resultant magnetic field of the first pair of two-pole rings 19v is always vertically directed, and that of the second pair 21 is always horizontally directed.
  • FIGS. 2a and b This is diagrammatically illustrated in FIGS. 2a and b, in which each time the position of the four poles of a pair of rings is shown with respect to the electron beams 23, 25, 27 generated by the electron guns.
  • FIG. 2a shows that for the ring pair 19 the two north poles N (shown in one plane and on the same circle for the sake of simplicity, even though in reality they are, of course, situated on two different rings) are always situated at the same angular distances a from the vertical, the one north pole being situated to the left and the other north pole being situated to the right of the vertical.
  • the resultant H of the two magnetic field strengths H and H generated by the rings is then also vertically directed, the angle at determining the value of H
  • This vertical field strength causes a horizontal displacement of the electron beams 23, 25, 27 which is equally large for all beams because the field within the ring pair 19 is substantially homogeneous.
  • FIG. 2b shows the second ring pair 21, in which the two north poles N enclose equal and opposed angles B with the horizontal, so that the field strength H resulting from the two field strengths H and H is horizontally directed and is dependent only of B as far as its value is concerned.
  • B the field strength
  • FIG. 3 is a cross-sectional view, taken along the line III-III of FIG. 1, of a feasible structural solution for the fixation of the rings of a pair such that the said conditions are satisfied.
  • a support 29 Connected on the tube neck, using means which are known per se (not shown), is a support 29 which is common to all ring pairs 15, 17, 19, 21, and on which a holder 31 is slid. comprising a recess 33 in which a cam 35 of the support engages so that the holder cannot be rotated with respect to the support and the tube neck.
  • the holder 31 is provided with an annular centring edge 37 with an interruption in which a pinion 41, rotatable about a shaft 39, is situated.
  • a first diametricallyv magnetized ring 43 having exterior teeth 45
  • a second diametrically magnetized ring 47 having interior teeth 49.
  • the teeth 45 and 49 engage the pinion 41, with the result that a rotation of the outer ring 47 automatically causes a rotation of, the inner ring 43 through the same angle, be'it that the latter rotation is in the opposite direction.
  • This construction is. described in detail in the previous Netherlands Rat. Application No. 73,04,887 in the name of applioannSo as to facilitate the rotation of the outer ring 47, it is provided with four radial projections 51, one of which is provided with a notch 53 to indicate the location of thenorth pole N.
  • Mounting is preferably effected such that the north poles N of the two rings 43, 47 are situated directly over the central electron beam 25 when thei notch 53 is situated directly over this beam.
  • the other diametrically magnetized ring pair 21 is ,similarly constructed, be it that the two north poles N are situated in the plane of the three electron beams 23, 25, 27 when they coincide.
  • the correction device (13) com-' prises a second pair (21) of permanently, diametrically magnetized rings which are rotatable about the axis of the tube (1, 3), the fixation of the ringsallowing'only a rotation of the rings of each pair (19, 21) in opposite directions and through identical angles, the arrange ment being such that the resultant magnetic'field (HQ) of the first ring pair (19) is always perpendicular to the plane of the electron guns (5), the resultant magnetic I field (H of the second pair (21) always being parallel to this plane.
  • a correction device for a display device as claimed in claim 1 characterized in that the two ring pairs (19 21 are secured to a common support (29), comprising 7 means for rigidly connecting the correction device (13) to the neck (1) of the tube.

Landscapes

  • Video Image Reproduction Devices For Color Tv Systems (AREA)

Abstract

A display device for colour television, comprising a correction device which is to be connected on the neck of a display tube and which comprises two pairs of diametrically magnetized rings in order to enable separate displacement of the electron beams in the tube in the horizontal and in the vertical direction.

Description

United States Patent Vonk 1 Aug. 5, 1975 [54] PAIRS 0F OPPOSITELY ROTATABLE RING 3,341,729 9/1967 Saari 335/212 X MAGNETS FOR A COLOR TELEVISION Z1 Qmhony e 3/35/212 ,7- 3 197 arbin 335 210 x DISPLAY DEVICE 3,808,570 4/1974 Thompson et al. 335/212 Renso Vonk, Emmasingel, Eindhoven, Netherlands Inventor:
Assignee: U.S. Philips Corporation, New
York, NY.
Filed: Sept. 13, 1974 Appl. No.: 505,657
Foreign Application Priority Data Sept, 14, 1973 Netherlands 7312741 U.S. Cl 335/212; 335/210 Int. Cl. HOlf 7/00 Field of Search 335/210, 212, 213; 313/77 References Cited UNITED STATES PATENTS 10/1950 Loughren 335/212 UX Primary ExaminerG. Harris Attorney, Agent, or Firm-Frank R. Trifari; Henry I. Steckler [57] ABSTRACT A display device for colour television, comprising a correction device which is to be connected on the neck of a display tube and which comprises two pairs of diametrically magnetized rings in Order to enable separate displacement of the electron beams in the tube in the horizontal and in the vertical direction.
2 Claims, 4 Drawing Figures PAIRS OF OPPOSITELY ROTATABLE RING MAGNETS FOR A COLOR TELEVISION DISPLAY DEVICE A display device of this kind is known, for example,
from US. Pat. No. 3,725,831. The diametrically magnetized rings serve for the displacement, simultaneously and in the same direction, of the three electron beams generated by the electron guns, so that each of the beams is incident on the display screen only at areas where a phosphor is situated which luminesces in the colour associated with the relevant beam (colour purity adjustment). Because the phosphors on the display screen of a display tube comprising three electron guns which are situated in one plane (usually the horizontal plane) are usually provided in interrupted or noninterrupted stripes perpendicular to the plane of the electron guns (i.e. vertically extending), it is sufficient for the colour purity adjustment per se to displace the electron beams perpendicular to the course of the phosphor stripes, i.e. in the horizontal direction. However, it was found that a deviation of the beams in the vertical direction causes a completely different error, which becomes significant when a pattern comprising horizontal lines is displayed by the display device. In that case the horizontal lines displayed appear to be curved. This curvature can be eliminated by displacing the electron beams together in the vertical direction. It is theoretically possible to realize all combinations of horizontal and vertical displacements using two diametrically magnetized rings. However, it was found in practice that mutual influencing of the two corrections makes it very difficult to perform the two corrections satisfactorily within a reasonable period of time. Therefore, the correction is generally limited to the colour purity, and the correction of the curved horizontal line is omitted.
The invention has for its object to provide a device in which the two corrections can be simply and quickly performed, independently of each other. To this end, the device according to the invention is characterized in that the correction device comprises a second pair of permanently, diametrically magnetized rings which are rotatable about the tube axis, the fixation of the rings allowing only a rotation of the rings of each pair in opposite directions and through identical angles, the arrangement being such that the resultant magnetic field of the first ring pair is always perpendicular to the plane of the electron guns, the resultant magnetic field of the second pair always being parallel to this plane.
The first ring pair then exclusively serves for the adjustment of the colour purity, and the second pair for straightening the curved horizontal line.
The invention will be described in detail hereinafter with reference to the drawing.
FIG. 1 shows a simplified side elevation of a display device according to the invention.
FIGS. 20 and b diagrammatically illustrate the operation of the device according to the invention, and
FIG. 3 shows a section at an increased scale taken along the line III-III of the device shown in FIG. 1.
The colour television display device shown in FIG. 1 comprises a display tube, consisting of a cylindrical neck portion 1 and a flared front portion 3. The neck portion comprises three adjacent electron guns 5 (denoted by broken lines) which are situated in a horizontal plane (perpendicular to the plane of the drawing), whilst the flared portion 3 comprises a colour selection electrode (shadow-mask) 7 and a display screen 9 (also denoted by broken lines). At the area of the transition between the two tube portions a known deflection device ll is provided about the tube, a correction device 13 being provided therebehind on the tube neck 1. This correction device comprises a pair of convergence rings 15 with permanent four-pole magnetization, a pair of convergence rings 17 with permanent six-pole magnetization, and a first pair of permanently, diametrically magnetized rings 19 (two-pole magnetization) for adjusting the colour purity as described in the said US. Pat. No. 3,725,831.
According to the invention, the correction device comprises a second pair of rings 21 with two-pole magnetization which serves for the correction of vertical deviations of the electron beams combined. The resultant magnetic field of the first pair of two-pole rings 19v is always vertically directed, and that of the second pair 21 is always horizontally directed.
This is diagrammatically illustrated in FIGS. 2a and b, in which each time the position of the four poles of a pair of rings is shown with respect to the electron beams 23, 25, 27 generated by the electron guns. FIG. 2a shows that for the ring pair 19 the two north poles N (shown in one plane and on the same circle for the sake of simplicity, even though in reality they are, of course, situated on two different rings) are always situated at the same angular distances a from the vertical, the one north pole being situated to the left and the other north pole being situated to the right of the vertical. The resultant H of the two magnetic field strengths H and H generated by the rings is then also vertically directed, the angle at determining the value of H This vertical field strength causes a horizontal displacement of the electron beams 23, 25, 27 which is equally large for all beams because the field within the ring pair 19 is substantially homogeneous.
FIG. 2b shows the second ring pair 21, in which the two north poles N enclose equal and opposed angles B with the horizontal, so that the field strength H resulting from the two field strengths H and H is horizontally directed and is dependent only of B as far as its value is concerned. As a result, an equal, vertical displacement of the three electron beams 23, 25, 27 is realized.
FIG. 3 is a cross-sectional view, taken along the line III-III of FIG. 1, of a feasible structural solution for the fixation of the rings of a pair such that the said conditions are satisfied. Connected on the tube neck, using means which are known per se (not shown), is a support 29 which is common to all ring pairs 15, 17, 19, 21, and on which a holder 31 is slid. comprising a recess 33 in which a cam 35 of the support engages so that the holder cannot be rotated with respect to the support and the tube neck. The holder 31 is provided with an annular centring edge 37 with an interruption in which a pinion 41, rotatable about a shaft 39, is situated.
Present within the centring edge 37 is a first diametricallyv magnetized ring 43 having exterior teeth 45, and situated outside the centring edge is a second diametrically magnetized ring 47 having interior teeth 49. The teeth 45 and 49 engage the pinion 41, with the result that a rotation of the outer ring 47 automatically causes a rotation of, the inner ring 43 through the same angle, be'it that the latter rotation is in the opposite direction. This construction is. described in detail in the previous Netherlands Rat. Application No. 73,04,887 in the name of applioannSo as to facilitate the rotation of the outer ring 47, it is provided with four radial projections 51, one of which is provided with a notch 53 to indicate the location of thenorth pole N. Mounting is preferably effected such that the north poles N of the two rings 43, 47 are situated directly over the central electron beam 25 when thei notch 53 is situated directly over this beam. The other diametrically magnetized ring pair 21 is ,similarly constructed, be it that the two north poles N are situated in the plane of the three electron beams 23, 25, 27 when they coincide.
Besides the described construction, there are a variety of other possibilities of satisfying the requirements imposed as regards the movement of the two rings, for example, the arrangement of the rings one behind the other with an intermediate pinion, or the coupling of the movement of the rings by meansof a b'elt f lection electrode and a display screen, the neck portion having provided thereon a correction device comprising a first pair of permanently, diametrically'magnetized rings which are rotatable about the tube axis,
characterized in that the correction device (13) com-' prises a second pair (21) of permanently, diametrically magnetized rings which are rotatable about the axis of the tube (1, 3), the fixation of the ringsallowing'only a rotation of the rings of each pair (19, 21) in opposite directions and through identical angles, the arrange ment being such that the resultant magnetic'field (HQ) of the first ring pair (19) is always perpendicular to the plane of the electron guns (5), the resultant magnetic I field (H of the second pair (21) always being parallel to this plane.
2. A correction device for a display device as claimed in claim 1, characterized in that the two ring pairs (19 21 are secured to a common support (29), comprising 7 means for rigidly connecting the correction device (13) to the neck (1) of the tube.

Claims (2)

1. A display device for colour television, comprising a display tube having a cylindrical neck portion in which three electron guns are adjacently arranged in one plane, and a flared portion, comprising a colour selection electrode and a display screen, the neck portion having provided thereon a correction device comprising a first pair of permanently, diametrically magnetized rings which are rotatable about the tube axis, characterized in that the correction device (13) comprises a second pair (21) of permanently, diametrically magnetized rings which are rotatable about the axis of the tube (1, 3), the fixation of the rings allowing only a rotation of the rings of each pair (19, 21) in opposite directions and through identical angles, the arrangement being such that the resultant magnetic field (H19) of the first ring pair (19) is always perpendicular to the plane of the electron guns (5), the resultant magnetic field (H21) of the second pair (21) always being parallel to this plane.
2. A correction device for a display device as claimed in claim 1, characterized in that the two ring pairs (19, 21) are secured to a common support (29), comprising means for rigidly connecting the correction device (13) to the neck (1) of the tube.
US505657A 1973-09-14 1974-09-13 Pairs of oppositely rotatable ring magnets for a color television display device Expired - Lifetime US3898597A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
NL7312741.A NL160427B (en) 1973-09-14 1973-09-14 DISPLAY FOR COLOR TELEVISION.

Publications (1)

Publication Number Publication Date
US3898597A true US3898597A (en) 1975-08-05

Family

ID=19819613

Family Applications (1)

Application Number Title Priority Date Filing Date
US505657A Expired - Lifetime US3898597A (en) 1973-09-14 1974-09-13 Pairs of oppositely rotatable ring magnets for a color television display device

Country Status (13)

Country Link
US (1) US3898597A (en)
JP (1) JPS5615103B2 (en)
AR (1) AR201387A1 (en)
BE (1) BE819845A (en)
BR (1) BR7407572D0 (en)
CA (1) CA999912A (en)
ES (1) ES429985A1 (en)
FR (1) FR2244256B1 (en)
GB (1) GB1479466A (en)
IT (1) IT1020768B (en)
NL (2) NL160427B (en)
SE (1) SE389943B (en)
ZA (1) ZA745645B (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4050042A (en) * 1976-10-13 1977-09-20 Tracor, Inc. Static convergence devices for color television picture tubes
US4117433A (en) * 1977-04-25 1978-09-26 Rca Corporation Static convergence device including magnetic corrector apparatus
US4388602A (en) * 1981-09-18 1983-06-14 Rca Corporation Electron beam influencing apparatus incorporating vertical beam movement function
US4490703A (en) * 1982-07-28 1984-12-25 Ball Corporation Multipole magnet for electron beam correction
EP0843333A2 (en) * 1996-11-14 1998-05-20 Hitachi, Ltd. Color cathode ray tube provided with a beam convergence adjustment device

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5165830A (en) * 1974-12-05 1976-06-07 Yamauchi Rubber Ind Co Ltd JUZOKANYOJIKITEKIBIIMUCHOSEISOCHI
JPS6148202A (en) * 1984-08-15 1986-03-08 Nippon Telegr & Teleph Corp <Ntt> Microwave power distributor
JPS6140007U (en) * 1984-08-15 1986-03-13 日本電信電話株式会社 unequal power divider
MX2019009375A (en) 2017-06-01 2019-09-23 Wenger Mfg High specific mechanical energy extrusion screw assembly.

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2525919A (en) * 1948-07-01 1950-10-17 Hazeltine Research Inc Centering arrangement for cathode-ray tubes
US3341729A (en) * 1966-01-26 1967-09-12 Illinois Tool Works Device for laterally shifting one of a plurality of electron beams relative to the remainder in a color television tube
US3605053A (en) * 1969-08-27 1971-09-14 Tracor Convergence- and purity-adjusting device for color television picture tube
US3725831A (en) * 1972-01-14 1973-04-03 Rca Corp Magnetic beam adjusting arrangements
US3808570A (en) * 1972-03-20 1974-04-30 Rca Corp Static convergence device for electron beams

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2525919A (en) * 1948-07-01 1950-10-17 Hazeltine Research Inc Centering arrangement for cathode-ray tubes
US3341729A (en) * 1966-01-26 1967-09-12 Illinois Tool Works Device for laterally shifting one of a plurality of electron beams relative to the remainder in a color television tube
US3605053A (en) * 1969-08-27 1971-09-14 Tracor Convergence- and purity-adjusting device for color television picture tube
US3725831A (en) * 1972-01-14 1973-04-03 Rca Corp Magnetic beam adjusting arrangements
US3808570A (en) * 1972-03-20 1974-04-30 Rca Corp Static convergence device for electron beams

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4050042A (en) * 1976-10-13 1977-09-20 Tracor, Inc. Static convergence devices for color television picture tubes
US4065737A (en) * 1976-10-13 1977-12-27 Tracor, Inc. Static convergence devices for color television picture tubes
US4117433A (en) * 1977-04-25 1978-09-26 Rca Corporation Static convergence device including magnetic corrector apparatus
US4388602A (en) * 1981-09-18 1983-06-14 Rca Corporation Electron beam influencing apparatus incorporating vertical beam movement function
US4490703A (en) * 1982-07-28 1984-12-25 Ball Corporation Multipole magnet for electron beam correction
EP0843333A2 (en) * 1996-11-14 1998-05-20 Hitachi, Ltd. Color cathode ray tube provided with a beam convergence adjustment device
EP0843333A3 (en) * 1996-11-14 1999-06-02 Hitachi, Ltd. Color cathode ray tube provided with a beam convergence adjustment device

Also Published As

Publication number Publication date
JPS5615103B2 (en) 1981-04-08
BE819845A (en) 1975-03-12
AU7320574A (en) 1976-03-18
CA999912A (en) 1976-11-16
NL7312741A (en) 1975-03-18
NL160427C (en)
FR2244256B1 (en) 1979-02-09
AR201387A1 (en) 1975-03-07
ZA745645B (en) 1976-04-28
NL160427B (en) 1979-05-15
DE2442867A1 (en) 1975-04-03
GB1479466A (en) 1977-07-13
SE389943B (en) 1976-11-22
IT1020768B (en) 1977-12-30
SE7411444L (en) 1975-03-17
FR2244256A1 (en) 1975-04-11
BR7407572D0 (en) 1975-07-08
DE2442867B2 (en) 1975-12-18
ES429985A1 (en) 1976-09-16
JPS5057725A (en) 1975-05-20

Similar Documents

Publication Publication Date Title
US3725831A (en) Magnetic beam adjusting arrangements
US3898597A (en) Pairs of oppositely rotatable ring magnets for a color television display device
US3808570A (en) Static convergence device for electron beams
US3290532A (en) Conjointly-movable, plural magnet means for blue lateral correction in color kinescopes
US3887833A (en) Color purity adjusting device for a color picture tube
NO782440L (en) MAGNETIZATION DEVICE AND PROCEDURE FOR USING IT WHEN CORRECTING THE COLOR UNIT IN A CATODY RADIATOR
US2501516A (en) Deflecting and focusing device for cathode-ray apparatus
US3290533A (en) Conjointly-movable cam-actuated support means for magnets in color kinescopes
US3375389A (en) Adjustable convergence magnets
CA1093625A (en) Apparatus producing static eight-pole magnetic field for correcting raster distortion in a television picture tube
US4310819A (en) Magnetic beam adjusting arrangement
EP0073005B1 (en) Color cathode ray tube device
US3290534A (en) Eccentrically mounted beam position adjusting device
US3098942A (en) Magnetic centering device for cathode ray tubes
US2317989A (en) Television
US3789258A (en) Electron beam and deflection yoke alignment for producing convergence of plural in-line beams
GB2181888A (en) Blue bow correction for crt raster
GB1003165A (en)
US4100518A (en) Eccentric convergence apparatus for in-line beam cathode ray tubes
US4045754A (en) Eccentrically mounted six-pole rings for a static convergence unit
US4117379A (en) Method of adjusting a magnetic deflection unit of a cathode ray tube, cathode ray tube having a deflection unit or reference points adjusted according to said method, and a deflection unit provided with reference points adjusted according to said method
US3624573A (en) Blue lateral magnet structure
KR790001775B1 (en) Magnetic correction device for a cathode ray tube
KR0133797Y1 (en) Purity convergence magnet of color crt
KR890002587B1 (en) Deflection apparatus of electron beam