US2228978A - Electron discharge device - Google Patents

Electron discharge device Download PDF

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Publication number
US2228978A
US2228978A US275408A US27540839A US2228978A US 2228978 A US2228978 A US 2228978A US 275408 A US275408 A US 275408A US 27540839 A US27540839 A US 27540839A US 2228978 A US2228978 A US 2228978A
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grid
cathode
electron discharge
discharge device
wires
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Expired - Lifetime
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US275408A
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Otto H Schade
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RCA Corp
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RCA Corp
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Priority claimed from US187626A external-priority patent/US2175704A/en
Application filed by RCA Corp filed Critical RCA Corp
Priority to US275408A priority Critical patent/US2228978A/en
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01JELECTRIC DISCHARGE TUBES OR DISCHARGE LAMPS
    • H01J19/00Details of vacuum tubes of the types covered by group H01J21/00
    • H01J19/28Non-electron-emitting electrodes; Screens
    • H01J19/38Control electrodes, e.g. grid
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01JELECTRIC DISCHARGE TUBES OR DISCHARGE LAMPS
    • H01J2893/00Discharge tubes and lamps
    • H01J2893/0001Electrodes and electrode systems suitable for discharge tubes or lamps
    • H01J2893/0012Constructional arrangements
    • H01J2893/0015Non-sealed electrodes

Definitions

  • My invention relates to electron discharge devices, more particularly to improvements in socalled beam type tubes and grids for such tubes.
  • the present application is a division of my copending application, Serial No. 187,626, filed January 29, 1938, and assigned to the same assignee as the present application.
  • the mount includes a specially formed cathode comprising longitudinal parallel tubular members having on opposite sides electron emitting material for providing electron beams and an anode for receiving the electrons, and positioned between the cathode and the anode a plurality of flat grids having aligned slotted apertures, the electrode nearest the cathode preferably being used as the control grid.
  • Such a tube is very eflicient and provides low screen current but in some cases the transconductance of the tube is not as high as is desirable and in some cases a lower input capacity of the control electrode is desired, that is a lower capacity to cathode and screen. While more sensitive control may be obtained and hence transconductance of the tube increased by making the slots of the control grid narrower, increasing the number of slots and decreasing electrode spacings in proportion such a tube results in other undesirable characteristics such as higher input capacity due to decreased spacing of the control electrode to other electrodes and greater difficulty in manufacture.
  • I provide between the cathode and the slotted electrodes an electrode provided with wires tranverse to the longitudinal slots.
  • This grid may be separate from the others or may be a combined control and beam forming electrode made of specially formed channel shaped members or longitudinal rods with specially formed transverse grid wires.
  • FIG. 3 is a perspective showing details of construction of a grid made according to my invention
  • Figure 4 is a transverse section of an electron discharge device employing a still further modification of my invention
  • Figure 5 is a perspective of a grid employed in the construction shown in Figure l
  • Figure 6 is a perspective view of a modification of U the grid shown in Figure 5.
  • the electron discharge device comprises a cathode formed of a plurality of tubular members H coated on opposite sides for providing oppositely disposed beams of electrons which flow to the anode I2.
  • a cathode and anode Positioned between the cathode and anode are a plurality of parallel slot type grids specially formed from flat plates for forming the electrons into beams and controlling the flow of electrons between the cathode and the anode. They may comprise a beam forming electrode I3, an accelerating electrode [4 and a suppressor [5 with longitudinal slots l3, l4 and I5 in alignment.
  • I position between the electrodes I 3, l4 and [5 a grid comprising side rods iii and the transverse grid wires H.
  • the grid may be helically wound and transverse to the slots and the ribbon-like electron beams between the cathode and the anode.
  • This arrangement provides a beam type tube having a high transconductance, low input capacity and low screen current.
  • a minimum interaction between the controlled beam formation of the slotted grids and the natural beam formation by the control. grid wires results, permitting closer spacing between the focusing or beam forming electrode and the control electrode over that permitted when only wire grids were used.
  • FIG 2 I show an electron discharge device employing a modified form of control electrode made according to my invention.
  • the control electrode is adjacent the cathode ll comprises a member having longitudinally extending U-shaped channel members 18' to the closed bottoms of which are secured to transverse wires 19.
  • the channel members l8 may be provided with lips 2t forming well defined slots for assisting in the beam formation.
  • the control electrode is provided with transverse wires l9 adjacent the emitting surfaces of the cathode II, the lips being on the opposite side of the wires 19 from the cathode.
  • This arrangement provides an electrode which gives the tube a high transconductance characteristic while at the same time having a beam forming function, making it also possible to eliminate a grid, if desired, and; still. produce the same results. as the construction shown in Figure 1.
  • These transverse wires may be welded or brazed to the channel members.
  • FIGs 4 and 5 I show an electron discharge device and a detailed view of the grid employed in this modification.
  • the grid includes a plurality of longitudinally extending rods 22 having trans,- verse wires 23.
  • the transverse wires 23 are formed so that the transverse sections lie in a plane tangent to one side of the longitudinal wires.
  • This grid may be made in the conventional manner as a helical grid and then out along one side rod and formed to shape as shown in Fig. 5.
  • the longitudinal wires function in the manner of the channel members to provide beams between the rods.
  • An electron discharge device having a cathode for providing a plurality of beams of electrons and an anode for receiving said beams of electrons, and a plurality of slotted electrodes positioned between the cathode and the anode, each of said electrodes having a plurality of slots, the slots in each electrode being aligned and registering with said beams, and a grid positioned between the cathode and the slotted electrodes and comprising a plurality of longitudinally extending support rods parallel to the cathode and providing between said support rods apertures equal in number registering with the slots in said slotted electrodes, said plurality of longitudinally extending support rods supporting transverse wires, the
  • transverse wires lying in a plane tangent to the surfaces of the rods adjacent the cathode, and fiat strips secured to said longitudinally extending rods and parallel with said rods, said transverse Wires being secured between the longitudinally extending rods and strips.

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  • Gas-Filled Discharge Tubes (AREA)

Description

Jan. 14, 1941. o. H. SCHADE ELECTRON DISCHARGE DEVICE Original Filed Jan. 29, 193B INVENTOR. 0770 H. SCH/10E A TTORNEY.
Patented Jan. 14, 1941 ELECTRON DISCHARGE DEVICE Otto H. Schade, West Caldwell, N. J., assignor to Radio Corporation of America, a corporation of Delaware Original application January 29, 1938, Serial No. 187,626. Divided and this application May 24,
1939, Serial No. 275,408
1 Claim.
My invention relates to electron discharge devices, more particularly to improvements in socalled beam type tubes and grids for such tubes. The present application is a division of my copending application, Serial No. 187,626, filed January 29, 1938, and assigned to the same assignee as the present application.
In one form of beam tube, such as shown and described in my co-pending application, Serial No. 150,891 filed June 29, 1937, and assigned to the same assignee as the present application, the mount includes a specially formed cathode comprising longitudinal parallel tubular members having on opposite sides electron emitting material for providing electron beams and an anode for receiving the electrons, and positioned between the cathode and the anode a plurality of flat grids having aligned slotted apertures, the electrode nearest the cathode preferably being used as the control grid. Such a tube is very eflicient and provides low screen current but in some cases the transconductance of the tube is not as high as is desirable and in some cases a lower input capacity of the control electrode is desired, that is a lower capacity to cathode and screen. While more sensitive control may be obtained and hence transconductance of the tube increased by making the slots of the control grid narrower, increasing the number of slots and decreasing electrode spacings in proportion such a tube results in other undesirable characteristics such as higher input capacity due to decreased spacing of the control electrode to other electrodes and greater difficulty in manufacture.
It is, therefore, a principal object of my invention to provide an electron discharge device of the so-called beam type having high transconductance, low inter-electrode and input capacity, and low screen currents, desirable characteristics for low noise radio frequency amplifier tubes. More specifically, it is an object of my invention to provide a tube of the type described having improved grid construction for improving the characteristics of electron discharge devices of the beam type.
According to my invention I provide between the cathode and the slotted electrodes an electrode provided with wires tranverse to the longitudinal slots. This grid may be separate from the others or may be a combined control and beam forming electrode made of specially formed channel shaped members or longitudinal rods with specially formed transverse grid wires.
The novel features which I believe to be characteristic of my invention are set forth with particularity in the appended claim, but the invention itself will best be understood by reference to the following description taken in connection with the accompanying drawing in which Figure 1 is a transverse section of an electron discharge device b employing my invention, Figure 2 isa transverse section of an electron discharge device embodying.
a modification of my invention,- Figure 3 isa perspective showing details of construction of a grid made according to my invention, Figure 4 is a transverse section of an electron discharge device employing a still further modification of my invention; Figure 5 is a perspective of a grid employed in the construction shown in Figure l, and Figure 6 is a perspective view of a modification of U the grid shown in Figure 5.
As shown in Figure 1 the electron discharge device comprises a cathode formed of a plurality of tubular members H coated on opposite sides for providing oppositely disposed beams of electrons which flow to the anode I2. Positioned between the cathode and anode are a plurality of parallel slot type grids specially formed from flat plates for forming the electrons into beams and controlling the flow of electrons between the cathode and the anode. They may comprise a beam forming electrode I3, an accelerating electrode [4 and a suppressor [5 with longitudinal slots l3, l4 and I5 in alignment. In accordance with my invention I position between the electrodes I 3, l4 and [5 a grid comprising side rods iii and the transverse grid wires H. The grid may be helically wound and transverse to the slots and the ribbon-like electron beams between the cathode and the anode. This arrangement provides a beam type tube having a high transconductance, low input capacity and low screen current. Furthermore, a minimum interaction between the controlled beam formation of the slotted grids and the natural beam formation by the control. grid wires results, permitting closer spacing between the focusing or beam forming electrode and the control electrode over that permitted when only wire grids were used.
In Figure 2 I show an electron discharge device employing a modified form of control electrode made according to my invention. As best shown in Figures 2 and 3 the control electrode is adjacent the cathode ll comprises a member having longitudinally extending U-shaped channel members 18' to the closed bottoms of which are secured to transverse wires 19. The channel members l8 may be provided with lips 2t forming well defined slots for assisting in the beam formation. In the arrangement shown the control electrode is provided with transverse wires l9 adjacent the emitting surfaces of the cathode II, the lips being on the opposite side of the wires 19 from the cathode. This arrangement provides an electrode which gives the tube a high transconductance characteristic while at the same time having a beam forming function, making it also possible to eliminate a grid, if desired, and; still. produce the same results. as the construction shown in Figure 1. These transverse wires may be welded or brazed to the channel members.
In Figures 4 and 5 I show an electron discharge device and a detailed view of the grid employed in this modification. The grid includes a plurality of longitudinally extending rods 22 having trans,- verse wires 23. To give the grid a control as well as a beam forming characteristic, the transverse wires 23 are formed so that the transverse sections lie in a plane tangent to one side of the longitudinal wires. This grid may be made in the conventional manner as a helical grid and then out along one side rod and formed to shape as shown in Fig. 5. The longitudinal wires function in the manner of the channel members to provide beams between the rods. It may be desirable to obtain a more well defined beam action and this may be done as shown in Figure 6 where strips 24 are secured to the longitudinal rods 22 with the transverse wires 23 in between. The form shown in Figures 5 and 6 reduces the input capacity over the form shown in Figure 3 without sacrificing good heat conductivity. The form shown in Figures 5 and 6 could also be made, for example, continuously as fiat members by a continuous process where the side rods or strips are fed and secured to the transverse wires as the transverse wires are being fed through a machine. My invention may be applied to single or multi-beam tubes.
While I have indicated the preferred embodiments of my invention of which I am now aware and have also indicated only one specific application for which my invention may be employed, it will be. apparent that my invention is. by no means limited to the exact forms illustrated or the use indicated, but that many variations may be made in the particular structure used and the purpose for which it is employed without departing from the scope oi my invention as set forth in the appended claim.
What I claim as new is:
An electron discharge device having a cathode for providing a plurality of beams of electrons and an anode for receiving said beams of electrons, and a plurality of slotted electrodes positioned between the cathode and the anode, each of said electrodes having a plurality of slots, the slots in each electrode being aligned and registering with said beams, and a grid positioned between the cathode and the slotted electrodes and comprising a plurality of longitudinally extending support rods parallel to the cathode and providing between said support rods apertures equal in number registering with the slots in said slotted electrodes, said plurality of longitudinally extending support rods supporting transverse wires, the
transverse wires lying in a plane tangent to the surfaces of the rods adjacent the cathode, and fiat strips secured to said longitudinally extending rods and parallel with said rods, said transverse Wires being secured between the longitudinally extending rods and strips.
OTTO l-I. SCHADE.
US275408A 1938-01-29 1939-05-24 Electron discharge device Expired - Lifetime US2228978A (en)

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US187626A US2175704A (en) 1938-01-29 1938-01-29 Electron discharge device
US275408A US2228978A (en) 1938-01-29 1939-05-24 Electron discharge device

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2459792A (en) * 1944-07-08 1949-01-25 Standard Telephones Cables Ltd Beam type electron discharge device
US2755411A (en) * 1952-02-02 1956-07-17 Hartford Nat Bank & Trust Co Device of the kind comprising an energy amplifying tube having a pentode characteristic curve
US2793317A (en) * 1954-10-22 1957-05-21 Chromatic Television Lab Inc Electron focusing structure
US2857544A (en) * 1955-10-21 1958-10-21 Gen Electric Electron discharge device anode structure
DE1116831B (en) * 1958-03-26 1961-11-09 Sylvania Electric Prod Tension grids for electron discharge devices and methods for their manufacture
US3217203A (en) * 1962-04-05 1965-11-09 Gen Electric Beam plate structure having suppressor grid characteristics

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2459792A (en) * 1944-07-08 1949-01-25 Standard Telephones Cables Ltd Beam type electron discharge device
US2755411A (en) * 1952-02-02 1956-07-17 Hartford Nat Bank & Trust Co Device of the kind comprising an energy amplifying tube having a pentode characteristic curve
US2793317A (en) * 1954-10-22 1957-05-21 Chromatic Television Lab Inc Electron focusing structure
US2857544A (en) * 1955-10-21 1958-10-21 Gen Electric Electron discharge device anode structure
DE1116831B (en) * 1958-03-26 1961-11-09 Sylvania Electric Prod Tension grids for electron discharge devices and methods for their manufacture
US3217203A (en) * 1962-04-05 1965-11-09 Gen Electric Beam plate structure having suppressor grid characteristics

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