Claims
- 1. An electronic device comprising means for generating a contained bundle of charged particles and for causing the bundle to propagate along a path, and a charge particle multiplier positioned along the path to be responsive to the charged particles in the bundle.
- 2. The device of claim 1 wherein the charged particles in the bundle are predominantly electrons and the charged particle multiplier is an electron multiplier responsive to electrons in the bundle.
- 3. An electronic device comprising means for generating plural contained bundles of charged particles and for causing the bundles to propagate along a path, the path including a first segment and a second re-entrant segment, the first segment supplying bundles from the means for generating to the second segment, and means for selectively coupling bundles propagating in the first segment to the second segment during a first interval and for selectively coupling bundles propagating in the second segment to the first segment during a second interval.
- 4. The device of claim 3 wherein the second segment includes reactances for affecting the speed of the bundles propagating therein.
- 5. The device of claim 4 wherein the reactance include inductances and capacitances.
- 6. The device of claim 5 wherein the second segment includes a metal structure enclosing the bundles so that the structure is spaced from the bundles.
- 7. The device of claim 6 wherein the structure includes metal wall means surrounding the path, and metal fingers extending radially from the wall means toward the path.
- 8. An electronic device comprising means for generating plural contained bundles of charged particles and for causing the bundles to propagate along a path, and electric shield means surrounding the path.
- 9. The device of claim 8 wherein the shield means includes gaps transparent to electromagnetic radiation for coupling electromagnetic radiation resulting from the bundles propagating along the path to a region outside of the shield means.
- 10. An electronic device comprising means for generating plural contained bundles of charged particles and for causing the bundles to propagate along a path, and means for coupling electromagnetic energy resulting from the bundles propagating along the path to a region outside of the path.
- 11. The device of claim 16 wherein a metal structure encloses the bundles so that the structure is spaced from the bundles.
- 12. The device of claim 11 wherein the structure includes metal wall means surrounding the path, and metal fingers extending radially from the wall means toward the path.
- 13. The device of claim 12 wherein the structure includes gaps transparent to electromagnetic radiation, the gaps being included in the means for coupling electromagnetic radiation.
- 14. The device of claim 10 further including means positioned along the path for causing the bundles to undulate spatially as they propagate along the path.
- 15. The device of claim 14 wherein the undulations are parasitic.
- 16. An electronic device comprising means for generating plural contained bundles of charged particles and for causing the bundles to propagate along a path, and means positioned along the path for causing the bundles to undulate spatially as they propagate along the path.
- 17. An electronic device comprising means for generating plural contained bundles of charged particles and for causing the bundles to propagate along a path, means coupled to the path for sensing movement of each bundle past a region in the path, and means responsive to said movement sensing means for controlling propagation of the bundles in the path.
- 18. An electronic device comprising means for generating plural contained bundles of charged particles and for causing the bundles to propagate along a path, said path including a region having an input port and an output port for said bundles, and means in the path between said input and output ports for controlling the propagation of the bundles between said ports.
- 19. The device of claim 18 wherein said means for controlling includes means for selectively deflecting bundles propagating in the region to selectively control the propagation of bundles in the region to said output port.
- 20. The device of claim 19 wherein said region includes only a single output port.
- 21. The device of claim 19 wherein said means for deflecting, input port and output port are arranged so that the bundles propagate to the output port when the bundles are not deflected by said means for deflecting.
- 22. The device of claim 19 wherein said region includes a second output port, said means for deflecting selectively deflecting the bundles to both said output ports so that certain of the bundles are deflected to one of the output ports and others of the bundles are deflected to the other output port.
- 23. The device of claim 32 wherein said means for deflecting includes:
- means for sensing movement of each bundle through an output port of said plural output ports, and means responsive to the sensed movement for controlling through which of said output ports subsequent bundles move.
- 24. The device of claim 23, wherein said means for controlling movement of the bundles causes a first of the bundles to move through one of said one output ports and the bundle next following the first bundle to move through said other output ports.
- 25. The device of claim 24 wherein the means for sensing senses movement of the bundles through said one output port.
- 26. The device of claim 23 wherein said means for controlling movement of the bundles causes successive ones of the bundles to move alternatively through said one and other output ports.
- 27. The device of claim 26 wherein the means for sensing senses movement of the bundles through said one output port.
- 28. The device of claim 18 wherein the control means includes a photoconductor responsive to optical energy in bundles propagating in the region.
- 29. The device of claim 18 wherein the control means includes a diode responsive to an electric field associated with bundles propagating in the region.
- 30. The device of claim 18 wherein the control means includes a photoconductor responsive to optical energy in bundles propagating along the path.
- 31. The device of claim 18 wherein the control means includes a diode responsive to an electric field associated with bundles propagating along the path.
- 32. The device of claim 18 wherein the region includes plural input ports through which different ones of the bundles pass and plural output ports, the means for controlling causing different ones of the bundles passing through different ones of the input ports to traverse the region to different ones of the output ports.
- 33. The device of claim 32 wherein the means for controlling causes all of the bundles flowing through one of the input ports always to pass through the same output port.
- 34. The device of claim 33 wherein one of the input ports is positioned to supply bundles to the region for testing which of the output ports most recently had a bundle move through it.
- 35. The device of claim 32 wherein one of the input ports is positioned to supply bundles to the region for testing which of the output ports most recently had a bundle move through it.
- 36. The device of claim 18 further including a plurality of said regions coupled to each other so that bundles passing through a port of one of said regions passes through a port of another of said regions.
- 37. The device of claim 36 wherein N of said regions are cascaded with each other so bundles passing through an output port of region k are coupled to and pass through an input port of region (k+1), and bundles passing through the output port region (N-1) are coupled to the input port of region M, where N is an integer greater than one and k is selectively every integer from 1 to N.
- 38. The device of claim 37 further including means for supplying a bilevel data indicating deflection force to the bundles in region N to control the state of the bundles in region N to one of two states, and means responsive to the state of the bundles in region N for controlling the state of the bundles in region (N-1).
- 39. The device of claim 37 further including means for supplying a bilevel data indicating deflection force to the bundles in region N to control the state of the bundles in region N to one of two states, means responsive to the state of the bundles in region N for controlling the state of the bundles in region (N-1), and means responsive to the state of the bundles in region m for controlling the state of the bundles in region (M-1), where m is every integer from 2 to (N-1).
- 40. The device of claim 37 further including means for supplying a bilevel data indicating deflection force to bundle b in region N to control the state of the bundles in region N to one of two states, and means responsive to the state of bundle b in region N for controlling the state of bundle (b+1) in region (N-1), where bundles b and (b+1) are successive bundles supplied to the input port of region 1.
- 41. The device of claim 37, further including means for supplying a bilevel data indicating deflection force to the bundles in certain of the regions to control the state of the bundles in said certain regions to one of two states, and means responsive to the state of the bundles in said certain regions for controlling the state of the bundles in others of said regions.
- 42. The device of claim 37 wherein each region includes signal responsive means for controlling in which of plural tracks the bundles propagate in the particular region, the regions being constructed so that the track of the bundles does not change even though a signal is no longer supplied to the signal responsive means.
- 43. The device of claim 42 wherein region N includes a data responsive electrode for controlling the track of bundles in region N, and means responsive to the propagation of the bundles in the regions for transferring the data from region N to region N-1.
- 44. The device of claim 43 wherein region N includes a first electrode for collecting some charged particles in the bundles propagating in one of the tracks, region (N-1) including a second electrode for controlling the particle propagation path in region (N-1), the first and second electrodes being connected so that the charge collected on the first electrode in response to bundle p controls the track of bundle (p+1) in region (N-1).
- 45. The device of claim 42 wherein region N includes a data responsive electrode for controlling the propagation track of bundles in region N, and means responsive to the propagation of the bundles in the regions for sequentially transferring the data from region N to region 1.
- 46. The device of claim 45 wherein each region includes a first electrode for collecting some charged particles in the bundles propagating in one of the tracks of the region and a second electrode for controlling the particle propagation track in the region, the first electrode of region k being connected to the second electrode of region (k-1) so that the charge collected on the first electrode of region k in response to bundle p propagating through region k controls the track of bundle (p+1) in region (k-1).
- 47. The device of claim 45 wherein certain of said regions include a first electrode for collecting some charged particles in the bundles propagating in one of the tracks of the region and a second electrode for controlling the particle propagation track in the region, the first electrode of region k being connected to the second electrode of region m so that the charge collected on the first electrode of region k in response to bundle p propagating through region k controls the track of bundle (p+m) in region, where k, m and p are integers, and k is greater than m.
- 48. An electronic device comprising means for generating plural contained bundles of charged particles and for causing the bundles to propagate along a path, and a photoconductor responsive to optical energy to bundles propagating along the path.
- 49. An electronic device comprising means for generating plural contained bundles of charged particles and for causing the bundles to propagate along a path, a diode responsive to an electric field associated with bundles propagating along the path.
- 50. A storage device comprising means for generating contained moving bundles of charged particles, means for causing a first of the bundles to traverse a first of plural paths and for causing all of the bundles subsequent to the first bundle to transverse said first path until a force outside of the bundles is applied to one of said paths to cause the bundles to traverse a second of said paths, and means for sensing which of the paths said bundles are traversing.
- 51. The device of claim 50 wherein said means for causing includes means responsive to the bundles traversing the first path for applying a force to the subsequent bundles to cause the subsequent bundles to traverse the first path until the outside force is applied to said one path.
- 52. The device of claim 50 wherein the means for sensing includes a solid dielectric coupled to each of the paths to be charged by the bundles moving in each of the paths, the solid dielectric storing charge resulting from the bundles moving in the paths, the bundles moving path the solid dielectric often enough to make up for charge having a tendency to be lost by the dielectric in the interval between adjacent bundle moving past the solid dielectric.
- 53. A display comprising means for generating contained first bundles of charged particles including electrons moving along a first path, means for selectively deflecting some electrons from the bundles propagating along the first path without substantially affecting the remainder of the charged particles in the bundles propagating along the first path, the deflected electrons propagating in a track substantially at right angles to the first path; and phosphorescent means positioned in the track to be responsive to the deflected electrons for emitting optical energy in response to the electrons being incident thereon.
- 54. The display of claim 53 wherein the means for deflecting includes solid dielectric means having a second path extending in generally the same direction as the first path and responsive to a source of charged particles, electrodes for the second path interacting with the charged particles for causing second bundles of charged particles to propagate in the second path, deflection control electrodes for electrons in the first bundles electrostatically coupled to the second bundles and the electrons in the first bundles, said deflection control electrodes being positioned between the first path and the phosphorescent means.
- 55. The display of claim 53 wherein the means for deflecting includes means for establishing plural second paths along which different contained charged particle bundles propagate, the second paths extending generally in the same direction as the first path, plural deflection control electrodes for electrons in the first bundles electrostatically coupled to the second bundles and the electrons in the first bundles, different ones of the deflection control electrodes being positioned along a single track and at different distances between the first track and the phosphorescent means.
- 56. A display responsive to a signal source comprising means for generating contained bundles of charged particles including electrons and for causing different ones of the bundles to propagate along plural paths extending in generally the same direction, means responsive to the signal source for selectively deflecting some electrons from the paths without substantially affecting the propagation direction of other charged particles in the paths, the deflected electrons propagating in a track substantially at right angles to the path; and phosphorescent means positioned in the track to be responsive to the deflected electrons for emitting optical energy in response to the electrons being incident thereon.
- 57. The display of claim 41 wherein the display includes multiple pixels defined by intersections of the paths and multiple lines extending generally at right angles to the paths, the signal being supplied to the pixels, each of said pixels including a separate means for selectively deflecting.
- 58. A display comprising means for generating contained bundles of charged particles including electrons and for causing the bundles to propagate along a first path, means for selectively deflecting some electrons from the bundles propagating along the path without substantially affecting the remainder of the charged particles in the bundles propagating along the path, the deflected electrons propagating in a track substantially at right angles to the path, each of said tracks being at a different longitudinal region along the path, different ones of the regions being spaced from each other; and phosphorescent means positioned in the track to be responsive to the deflected electrons for emitting optical energy in response to the electrons being incident thereon.
- 59. The display of claim 58 wherein the means for deflecting includes means for establishing a second path along which different second contained charged particle bundles propagate the second path extending in the same general direction as the first path, plural deflection control electrodes for electrons in the first bundles electrostatically coupled to the second bundles and the electrons in the first bundles, different ones of the deflection control electrodes being positioned along a single track and at different distances between the first track and the phosphorescent means.
- 60. An electronic device comprising means for generating plural contained bundles of charged particles and for causing the bundles to propagate along a path, an analog to digital converter responsive to the bundles, the converter including means responsive to an analog signal source for deflecting the bundles into at least multiple selector guides, each of said guides including mean for deriving a digital signal unique to the particular guides in response to a bundle being deflected to it.
- 61. The device of claim 60 wherein the means for selecting includes means for controlling the deflection angle of the bundles.
- 62. The device of claim 61 wherein the means for selecting includes a pair of spaced deflector electrodes extending longitudinally generally in the propagation direction of bundles derived by the means for generating and positioned on opposite sides of an axis for charged particles derived by the means for generating.
- 63. A video display responsive to a video signal comprising means for generating contained moving bundles of charged particles including electrons, a flat panel display responsive to the bundles, the display including a phosphorescent panel and an x-y array of columns and rows defining a pair of coordinate directions so there is a pixel on the panel at intersections of the columns and rows;
- means responsive to the bundles for selecting the pixels in a sequential ordered manner; said selecting means including a solid dielectric having at least several parallel channels extending in one of the coordinate directions; electrode means and the several parallel channels guiding the bundles along the solid dielectric;
- the panel being superposed with and extending in a plane parallel to the several parallel channels; and
- means responsive to the video signal for selectively deflecting some electrons from the bundles propagation along the several parallel channels onto the pixels on the panel without substantially affecting the remainder of the charged particles in the bundles propagating along the several parallel channels.
- 64. The display of claim 63 wherein the mean for deflecting includes a solid dielectric having plural channels for each of the several parallel channels, the plural channels extending in the same direction as the several parallel channels and being located in stacked relation between the several parallel channels and the phosphorescent panel so that at each pixel there is a path for electrons in the bundles from the bundles propagating in the several parallel channels to the panel, the amplitude of the video signal controlling the propagation of the bundles in the plural channels and thereby controlling the electrons deflected from the bundles propagating in the plural channels to control the intensity of optical energy at each pixel.
- 65. An electronic device comprising means for generating contained moving bundles of charged particles, means responsive to the bundles for sequentially selecting one of plural (N) outputs, said selecting means including first and second sets of N cascaded registered stages, each including an electrode means for guiding the bundles; the first and second sets of stages being respectively responsive to said bundles propagating at first and second different frequencies, where the second frequency is an integral multiple of the first frequency, each of said stages selectively coupling the bundles coupled to it to one of first and second paths so that while the bundles propagate in the first and second paths the particular stage is in first and second states, respectively, the stages of the first set including electrodes connected to sequential stages of the first set for transferring the state of a first stage to an adjacent second stage in response to the bundles propagating in the first stage, the electrodes of the stages of the first set being connected to electrodes of corresponding stages of the second set to transfer the states of the stages of the first set to the corresponding stages of the second set, the stages of the second set being responsive to the bundles propagating at the second frequency to read out, the states of the second stages to the N outputs.
- 66. An electronic device comprising means for deriving moving contained bundles of charged particles, and means responsive to the bundles for establishing an intersection of a pair of paths along which the differing ones of the bundles propagate; the occurrence times of the bundles, the propagation velocity of the bundles and the position of the intersection of the paths being such that the bundles do not collide at the intersection.
Parent Case Info
This application is a continuation of application Ser. No. 07/523,294 filed May 14, 1990, now U.S. Pat. No. 5,054,097 which in turn is a continuation application of prior application Ser. No. 07/183,506, filed on May 3, 1988, now abandoned which in turn is a continuation-in-part of Ser. No. 07/137,244, filed on Jan. 6, 1988 now abandoned.
US Referenced Citations (5)
Non-Patent Literature Citations (5)
Entry |
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Continuations (2)
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523294 |
May 1990 |
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183506 |
May 1988 |
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Continuation in Parts (1)
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137244 |
Jan 1988 |
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