Claims
- 1. A microwave component configured for satisfying predetermined performance characteristics and comprising:
a channel; a plurality of geometrically-shaped elements having varying dimensions and producing a field response, positioned in spaced relationship within said channel, wherein the number, dimensions and spacing of said elements determine said performance characteristics where said elements are bar shaped.
- 2. A microwave component, according to claim 1, configured for satisfying predetermined performance characteristics and comprising a channel wherein at least one geometrically-shaped element is bar shaped, is positioned within said channel and the dimensions of said channel relative to the dimensions of the said elements determine said performance characteristics.
- 3. A method for making a microwave component, according to claim 1, which satisfies predetermined performance characteristics, said method comprising: providing a waveguide having a channel therein; and positioning in spaced relationship within said channel a plurality of geometrically-shaped elements wherein said elements are bar shaped, wherein the number, dimensions and spacing of said elements determine said performance characteristics.
- 4. A microwave component configured for satisfying predetermined performance characteristics and comprising:
a channel; a plurality of geometrically-shaped elements having varying dimensions and producing a field response, positioned in spaced relationship within said channel, wherein the number, dimensions and spacing of said elements determine said performance characteristics where said elements are pin shaped, and are circular, oval, triangular or polygon in section and are arranged irregularly in said channel.
- 5. A microwave component, according to claim 4, configured for satisfying pre-determined performance characteristics and comprising a channel wherein at least one geometrically-shaped element, being pin-shaped, and is circular, oval, triangular or polygon in section, is positioned within said channel and the dimensions of said channel relative to the dimensions and position of said element determine said performance characteristics.
- 6. A method for making a microwave component, according to claim 4, which satisfies predetermined performance characteristics, said method comprising: providing a waveguide having a channel therein; and positioning in spaced relationship within said channel a plurality of geometrically-shaped elements, wherein said elements are pin shaped, and are circular, oval, triangular or polygon in section and arranged irregularly in said channel wherein the number, dimensions and spacing of said elements determine said performance characteristics.
- 7. A microwave component configured for satisfying predetermined performance characteristics and comprising:
a channel; a plurality of geometrically-shaped elements having varying dimensions and producing a field response, positioned in spaced relationship within said channel, wherein the number, dimensions and spacing of said elements determine said performance characteristics where said elements are bar shaped and vary in height along their length.
- 8. A microwave component, according to claim 7, configured for satisfying predetermined performance characteristics and comprising a channel wherein at least one geometrically-shaped element is bar shaped, having a height which varies along the length of said element, is positioned within said channel and the dimensions of said channel relative to the dimensions of the said elements determine said performance characteristics.
- 9. A method for making a microwave component, according to claim 7, which satisfies predetermined performance characteristics, said method comprising: providing a waveguide having a channel therein; and positioning in spaced relationship within said channel a plurality of geometrically-shaped elements wherein said elements are bar shaped, having a height which varies along the length of said elements, wherein the number, dimensions and spacing of said elements determine said performance characteristics.
- 10. A microwave component configured for satisfying predetermined performance characteristics and comprising:
a channel; a plurality of geometrically-shaped elements having varying dimensions and producing a field response, positioned in spaced relationship within said channel, wherein the number, dimensions and spacing of said elements determine said performance characteristics where said elements are bar shaped and are not perpendicular to the channel length.
- 11. A microwave component, according to claim 10, configured for satisfying predetermined performance characteristics and comprising a channel wherein at least one geometrically-shaped element is bar shaped, and is not perpendicular to the channel length, is positioned within said channel and the dimensions of said channel relative to the dimensions of the said elements determine said performance characteristics.
- 12. A method for making a microwave component, according to claim 10, which satisfies predetermined performance characteristics, said method comprising: providing a waveguide having a channel therein; and positioning in spaced relationship within said channel a plurality of geometrically-shaped elements wherein said elements are bar shaped, and are not perpendicular to the channel length, wherein the number, dimensions and spacing of said elements determine said performance characteristics.
- 13. A microwave component configured for satisfying predetermined performance characteristics and comprising:
a channel; a plurality of geometrically-shaped elements having varying dimensions and producing a field response, positioned in spaced relationship within said channel, wherein the number, dimensions and spacing of said elements determine said performance characteristics where said elements are pin shaped and vary in height and are arranged irregularly in said channel.
- 14. A method for making a microwave component, according to claim 13, which satisfies predetermined performance characteristics, said method comprising providing a waveguide having a channel therein; and positioning in spaced relationship within said channel a plurality of geometrically-shaped elements, wherein said elements are pin shaped and vary in height and are arranged irregularly in said channel wherein the number, dimensions and spacing of said elements determine said performance characteristics.
- 15. A microwave component configured for satisfying predetermined performance characteristics and comprising:
a channel; a plurality of geometrically-shaped elements having varying dimensions and producing a field response, positioned in spaced relationship within said channel, wherein the number, dimensions and spacing of said elements determine said performance characteristics where said elements are pin shaped, with a profiled tip and are arranged irregularly in said channel.
- 16. A microwave component, according to claim 15, configured for satisfying pre-determined performance characteristics and comprising a channel wherein at least one geometrically-shaped element, being pin-shaped, with a profiled tip, is positioned within said channel and the dimensions of said channel relative to the dimensions and position of said element determine said performance characteristics.
- 17. A method for making a microwave component, according to claim 15, which satisfies predetermined performance characteristics, said method comprising: providing a waveguide having a channel therein; and positioning in spaced relationship within said channel a plurality of geometrically-shaped elements, wherein said elements are pin shaped, with a profiled tip and arranged irregularly in said channel wherein the number, dimensions and spacing of said elements determine said performance characteristics.
- 18. A microwave component configured for satisfying predetermined performance characteristics and comprising:
a channel; a plurality of geometrically-shaped elements having varying dimensions and producing a field response, positioned in spaced relationship within said channel, wherein the number dimensions and spacing of said elements determine said performance characteristics where said elements are bar shaped and vary in height across the width of said element.
- 19. A microwave component, according to claim 18, configured for satisfying predetermined performance characteristics and comprising a channel wherein at least one geometrically-shaped element is bar shaped, having a height which varies across the width of said element, is positioned within said channel and the dimensions of said channel relative to the dimensions of the said elements determine said performance characteristics.
- 20. A method for making a microwave component, according to claim 18, which satisfies predetermined performance characteristics, said method comprising: providing a waveguide having a channel therein; and positioning in spaced relationship within said channel a plurality of geometrically-shaped elements wherein said elements are bar shaped, having a height which varies across the width of said elements, wherein the number, dimensions and spacing of said elements determine said performance characteristics.
- 21. A microwave component configured for satisfying predetermined performance characteristics and comprising:
a channel; a plurality of geometrically-shaped elements having varying dimensions and producing a field response, positioned in spaced relationship within said channel, wherein the number, dimensions and spacing of said elements determine said performance characteristics where said elements are a combination of different element types and/or elements which contain a combination of different element characteristics, where the element types are; Bar shaped elements, bar shaped elements varying in height along their length, bar shaped elements varying in height across their width, bar shaped elements with irregular height profiles, bar shaped elements that are other than straight, bar shaped elements that are other than disposed transverse the channel perpendicular thereto, pin shaped elements which vary in height, pin shaped elements that are round in section, pin shaped elements that are triangular in section, pin shaped elements that are oval in section, pin shaped elements that are polygon in section, pin shaped elements with profiled tips, pin shaped elements that are round in section and having profiled tips, pin shaped elements that are triangular in section and having profiled tips, pin shaped elements that are oval in section and having profiled tips, pin shaped elements that are polygon in section and having profiled tips, pin shaped elements with profiles as shown at elements 80-83, and bar shaped elements having edge profiles in accordance with any of elements 90-93.
- 22. A method for making a microwave component, according to claim 21, which satisfies predetermined performance characteristics, said method comprising: providing a waveguide having a channel therein; and positioning in spaced relationship within said channel a plurality of geometrically-shaped elements where said elements are a combination of different element types and/or elements which contain a combination of different element characteristics, where the element types are; bar shaped elements, bar shaped elements varying in height along their length, bar shaped elements varying in height across their width, bar shaped elements with irregular height profiles, bar shaped elements that are other than straight, bar shaped elements that are other than disposed transverse the channel perpendicular thereto, pin shaped elements which vary in height, pin shaped elements that are round in section, pin shaped elements that are triangular in section, pin shaped elements that are oval in section, pin shaped elements that are polygon in section, pin shaped elements with profiled tips, pin shaped elements that are round in section and having profiled tips, pin shaped elements that are triangular in section and having profiled tips, pin shaped elements that are oval in section and having profiled tips, pin shaped elements that are polygon in section and having profiled tips, pin shaped elements with profiles as shown at elements 80-83, and bar shaped elements having edge profiles in accordance with any of elements 90-93.
- 23. A waveguide filter configured for satisfying predetermined filtering characteristics and comprising:
a channel; a plurality of geometrically-shaped elements having varying dimensions and producing a field response, positioned in spaced relationship within said channel, wherein the number, dimensions and spacing of said elements determine said performance characteristics where said where said elements are a combination of different element types and/or elements which contain a combination of different element characteristics, where the element types are, Bar shaped elements, bar shaped elements varying in height along their length, bar shaped elements varying in height across their width, bar shaped elements with irregular height profiles, bar shaped elements that are other than straight, bar shaped elements that are other than disposed transverse the channel perpendicular thereto, pin shaped elements which vary in height pin shaped elements that are round in section, pin shaped elements that are triangular in section, pin shaped elements that are oval in section, pin shaped elements that are polygon in section, pin shaped elements with profiled tips, pin shaped elements that are round in section and having profiled tips, pin shaped elements that are triangular in section and having profiled tips, pin shaped elements that are oval in section and having profiled tips, pin shaped elements that are polygon in section and having profiled tips, pin shaped elements with profiles as shown at elements 80-83, and bar shaped elements having edge profiles in accordance with any of elements 90-93.
- 24. A method for making a waveguide filter, according to claim 23, which satisfies predetermined filtering characteristics, said method comprising: providing a waveguide having a channel therein; and positioning in spaced relationship within said channel a plurality of geometrically-shaped elements where said elements are a combination of different element types and/or elements which contain a combination of different element characteristics, where the element types are: bar shaped elements, bar shaped elements varying in height along their length, bar shaped elements varying in height across their width, bar shaped elements with irregular height profiles, bar shaped elements that are other than straight, bar shaped elements that are other than disposed transverse the channel perpendicular thereto, pin shaped elements which vary in height, pin shaped elements that are round in section, pin shaped elements that are triangular in section, pin shaped elements that are oval in section, pin shaped elements that are polygon in section, pin shaped elements with profiled tips, pin shaped elements that are round in section and having profiled tips, pin shaped elements that are triangular in section and having profiled tips, pin shaped elements that are oval in section and having profiled tips, pin shaped elements that are polygon in section and having profiled tips, pin shaped elements with profiles as shown at elements 80-83, and bar shaped elements having edge profiles in accordance with any of elements 90-93.
- 25. A method for making a waveguide filter according to claim 24 wherein the waveguide filter is an E-plane waveguide filter.
- 26. A microwave component for operating within a predetermined performance tolerance comprising:
a waveguide channel; a plurality of geometrically-shaped elements producing a field response and having known dimensions within a tolerance, the tolerance defining a-random variation from each of the known dimensions and positioned within the channel in spaced relationship one to another, wherein the number, dimensions and spacing of said elements determine performance characteristics of the microwave waveguide, characterized in that if the random variation from each of the known dimensions is a fixed same maximum variation having a fixed same polarity for each of the plurality of geometrically shaped elements, the performance characteristics of the microwave waveguide is a first performance characteristic and if the random variation from each of the known dimensions is a fixed same maximum variation having a fixed other polarity for each of the plurality of geometrically shaped elements, the performance characteristics of the microwave waveguide is a second performance characteristic, and wherein the difference between the first and the second performance characteristics defines a first performance tolerance, the random variation from each of the known dimensions resulting in performance characteristics of the microwave waveguide having an actual performance tolerance substantially less than the first performance tolerance, and wherein the actual performance tolerance is within the predetermined performance tolerance.
- 27. A microwave component according to claim 26, wherein the at least a geometrically-shaped element comprises a plurality of geometrically shaped elements.
- 28. A microwave component according to claim 26, wherein some of the at least a geometrically-shaped element are bar shaped.
- 29. A microwave component, according to claim 28, wherein the microwave component is for satisfying predetermined performance characteristics.
- 30. A microwave component, according to claim 29, wherein all of the at least a geometrically-shaped element are bar shaped.
- 31. A microwave component according to claim 30, wherein some of the at least a geometrically-shaped element are other than perpendicular to the channel length.
- 32. A microwave component according to claim 31, wherein some of the at least a geometrically-shaped element are positioned transverse said channel.
- 33. A microwave component according to claim 30, wherein the bar-shaped element varies in height along its length.
- 34. A microwave component according to claim 33, wherein the bar-shaped element is other than perpendicular to the channel length.
- 35. A microwave component according to claim 34, wherein the bar-shaped element is positioned transverse said channel.
- 36. A microwave component according to claim 30, wherein a bar-shaped element varies in height across the width of said element.
- 37. A microwave component according to claim 36, wherein the bar-shaped element is other than perpendicular to the channel length.
- 38. A microwave component according to claim 37, wherein the bar-shaped element is positioned transverse said channel.
- 39. A microwave component, according to claim 28, wherein all of the at least a geometrically-shaped element are bar shaped.
- 40. A microwave component according to claim 39, wherein the at least a geometrically-shaped element is other than perpendicular to the channel length.
- 41. A microwave component according to claim 40, wherein the at least a geometrically-shaped element is positioned transverse said channel.
- 42. A microwave component according to claim 39, wherein the at least a geometrically-shaped element that is bar-shaped varies in height along its length.
- 43. A microwave component according to claim 42, wherein the at least a geometrically-shaped element is disposed other than perpendicular to the channel length.
- 44. A microwave component according to claim 43, wherein the at least a geometrically-shaped element is disposed transverse said channel.
- 45. A microwave component according to claim 39, wherein the at least a geometrically-shaped element varies in height across the width of said element.
- 46. A microwave component according to claim 45, wherein the at least a geometrically-shaped element is other than perpendicular to the channel length.
- 47. A microwave component according to claim 46, wherein the at least a geometrically-shaped element are positioned transverse said channel.
- 48. A microwave component according to claim 26, wherein at least one of the at least a geometrically-shaped element is pin shaped.
- 49. A microwave component according to claim 26, wherein the at least a geometrically-shaped element comprises a plurality of pin shaped elements.
- 50. A microwave component according to claim 49, wherein the pin-shaped elements are arranged other than regularly spaced in the waveguide channel.
- 51. A microwave component, according to claim 50, wherein the microwave component is for satisfying predetermined performance characteristics.
- 52. A microwave component according to claim 51, wherein the pin-shaped elements are circular in section.
- 53. A microwave component according to claim 51, wherein the pin-shaped elements are oval in section.
- 54. A microwave component according to claim 51, wherein the pin-shaped elements are polygon in section.
- 55. A microwave component according to claim 54, wherein the pin-shaped elements are triangular in section.
- 56. A microwave component according to claim 48, wherein the pin-shaped elements have a section about their longitudinal axis, the section varying proximate a tip thereof, the tip located proximate an end of the pin-shaped element opposite a wall of the waveguide cavity.
- 57. A microwave component according to claim 48, wherein the pin-shaped elements vary in dimensions thereof, the variation other than accounted for based on manufacturing tolerances of the pin-shaped elements.
- 58. A microwave component according to claim 26, wherein the at least a geometrically-shaped element includes a plurality of different geometrically shaped elements some of which have different geometric cross sections attributable to other than effects of manufacturing tolerances.
- 59. A microwave component for operating within a predetermined performance tolerance comprising:
a waveguide channel having a length; at least a geometrically-shaped element producing a field response and having known dimensions within a tolerance, the tolerance defining a random variation from each of the known dimensions and positioned within the channel in spaced relationship one to another, wherein the number, dimensions and spacing of the at least a geometrically-shaped element determine performance characteristics of the microwave waveguide, characterized in that if the random variation from each of the known dimensions along an axis defined relative to a longitudinal axis of the element and in a direction defined from a center of the element is a fixed same maximum variation for each of the at least a of geometrically shaped element, the performance characteristics of the microwave waveguide is a first performance characteristic and if the random variation from each of the known dimensions along an axis defined relative to a longitudinal axis of the element and in a direction defined from a center of the element is a fixed same minimum variation for each of the at least a geometrically shaped element, the performance characteristics of the microwave waveguide is a second performance characteristic and wherein the difference between the first and the second performance characteristics defines a first performance tolerance, the random variation from each of the known dimensions resulting in performance characteristics of the microwave waveguide having an actual performance tolerance substantially less than the first performance tolerance and wherein the actual performance tolerance is within the predetermined performance tolerance.
- 60. A waveguide filter configured for satisfying predetermined filtering characteristics and comprising:
a channel; a plurality of geometrically-shaped elements having varying dimensions and producing a field response, positioned in spaced relationship within said channel, wherein the number, dimensions and spacing of said elements determine said filtering characteristics where said elements are bar shaped having a height which increases from one end to the other end of said element, wherein the number, dimensions and spacing of said elements determine said performance characteristics.
- 61. A method for making a waveguide component according to claim 60 wherein and comprising the step of:
positioning in spaced relationship within said channel a slotted structure, wherein the number, dimensions and spacing of said elements and said slotted structure determine said performance characteristics.
- 62. A method for making waveguide filter according to claim 60 wherein the filter is an E-plane filter and comprising the step of:
positioning in spaced relationship within said channel a slotted structure, wherein the number, dimensions and spacing of said elements and said slotted structure determine said filtering characteristics.
- 63. A microwave component configured for satisfying predetermined performance characteristics and comprising:
a channel; a slotted structure; a plurality of geometrically-shaped elements having varying dimensions and producing a field response, positioned in spaced relationship within said channel wherein said geometrically-shaped elements are a combination of any element type and/or elements which contain a combination of different element characteristics, where the element types are: bar shaped elements, bar shaped elements varying in height along their length, bar shaped elements varying in height across their width, bar shaped elements with irregular height profiles, bar shaped elements that are other than straight, bar shaped elements that are other than disposed transverse the channel perpendicular thereto, pin shaped elements which vary in height, pin shaped elements that are round in section, pin shaped elements that are triangular in section, pin shaped elements that are oval in section, pin shaped elements that are polygon in section, pin shaped elements with profiled tips, pin shaped elements that are round in section and having profiled tips, pin shaped elements that are triangular in section and having profiled tips, pin shaped elements that are oval in section and having profiled tips, pin shaped elements that are polygon in section and having profiled tips, pin shaped elements with profiles as shown at elements 80-83, and bar shaped elements having edge profiles in accordance with any of elements 90-93.
- 64. A method for making a waveguide filter, according to claim 63, which satisfies predetermined filtering characteristics, said method comprising: providing a waveguide having a channel therein; and positioning in spaced relationship within said channel; a slotted structure and a plurality of geometrically-shaped elements where said elements are any combination of element types and/or elements which contain a combination of different element characteristics where the element types are: bar shaped elements, bar shaped elements varying in height along their length, bar shaped elements varying in height across their width, bar shaped elements with irregular height profiles, bar shaped elements that are other than straight, bar shaped elements that are other than disposed transverse the channel perpendicular thereto, pin shaped elements which vary in height, pin shaped elements that are round in section, pin shaped elements that are triangular in section, pin shaped elements that are oval in section, pin shaped elements that are polygon in section, pin shaped elements with profiled tips, pin shaped elements that are round in section and having profiled tips, pin shaped elements that are triangular in section and having profiled tips, pin shaped elements that are oval in section and having profiled tips, pin shaped elements that are polygon in section and having profiled tips, pin shaped elements with profiles as shown at elements 80-83, and bar shaped elements having edge profiles in accordance with any of elements 90-93.
- 65. A method for making a waveguide filter according to claim 64 wherein the filter is an E-plane waveguide filter.
- 66. A microwave component configured for satisfying predetermined performance characteristics and comprising:
a channel; a slotted structure; and a single geometrically-shaped element, wherein said single geometrically-shaped element is any combination of different element characteristics and/or the same element characteristics, where the element types are: bar shaped elements, bar shaped elements varying in height along their length, bat shaped elements varying in height across their width, bar shaped elements with irregular height profiles, bar shaped elements that are other than straight, bar shaped elements that are other than disposed transverse the channel perpendicular thereto, pin shaped elements which vary in height, pin shaped elements that are round in section, pin shaped elements that are triangular in section, pin shaped elements that are oval in section, pin shaped elements that are polygon in section, pin shaped elements with profiled tips, pin shaped elements that are round in section and having profiled tips, pin shaped elements that are triangular in section and having profiled tips, pin shaped elements that are oval in section and having profiled tips, pin shaped elements that are polygon in section and having profiled tips, pin shaped elements with profiles as shown at elements 80-83, and bar shaped elements having edge profiles in accordance with any of elements 90-93.
- 67. A method for making a waveguide filter according to claim 66, for satisfying predetermined filtering characteristics, said method comprising:
providing a waveguide having a channel therein; and positioning in spaced relationship within said channel a slotted structure and a single geometrically-shaped element, where said single element is any combination of different element characteristics and/or the same element characteristics, where the element types are: bar shaped elements, bar shaped elements varying in height along their length, bar shaped elements varying in height across their width, bar shaped elements with irregular height profiles, bar shaped elements that are other than straight, bar shaped elements that are other than disposed transverse the channel perpendicular thereto, pin shaped elements which vary in height, pin shaped elements that are round in section, pin shaped elements that are triangular in section, pin shaped elements that are oval in section, pin shaped elements that are polygon in section, pin shaped elements with profiled tips, pin shaped elements that are round in section and having profiled tips, pin shaped elements that are triangular in section and having profiled tips, pin shaped elements that are oval in section and having profiled tips, pin shaped elements that are polygon in section and having profiled tips, pin shaped elements with profiles as shown at elements 80-83, and bar shaped elements having edge profiles in accordance with any of elements 90-93.
- 68. A method for making an E-plane waveguide filter, according to claim 66, for satisfying predetermined filtering characteristics, said method comprising: providing a waveguide having a channel therein; and positioning in spaced relationship within said channel, a slotted structure and a single geometrically-shaped element, where said single element is any combination of different element characteristics and/or the same element characteristics, where the element types are, bar shaped elements varying in height along their length, bar shaped elements varying in height across their width, bar shaped elements with irregular height profiles, bar shaped elements that are other than straight, bar shaped elements that are other than disposed transverse the channel perpendicular thereto, pin shaped elements which vary in height, pin shaped elements that are round in section, pin shaped elements that are triangular in section, pin shaped elements that are oval in section, pin shaped elements that are polygon in section, pin shaped elements with profiled tips, pin shaped elements that are round in section and having profiled tips, pin shaped elements that are triangular in section and having profiled tips, pin shaped elements that are oval in section and having profiled tips, pin shaped elements that are polygon in section and having profiled tips, pin shaped elements with profiles as shown at elements 80-83, and bar shaped elements having edge profiles in accordance with any of elements 90-93.
- 69. A microwave component configured for satisfying predetermined performance characteristics and comprising:
a channel; a slotted structure and a plurality of geometrically-shaped elements; wherein said elements are bar shaped, and the number, dimensions and spacing of said elements and the slotted structure determine said performance characteristics.
- 70. A method for making an E-plane filter according to claim 69, for satisfying predetermined filtering characteristics, said method comprising: providing a waveguide having a channel therein; and positioning in spaced relationship within said channel a plurality of geometrically-shaped elements and a slotted structure (septum), where said elements are bar shaped, wherein the number, dimensions and spacing of said elements and the septum determine said performance characteristics.
- 71. A method for making a microwave component, according to claim 21, which satisfies predetermined performance characteristics, said method comprising: providing a waveguide having a channel therein; and positioning in spaced relationship within said channel a single element is any combination of different element characteristics and/or the same element characteristics, where the element types are; bar shaped elements varying in height along their length, bar shaped elements varying in height across their width, bar shaped elements with irregular height profiles, bar shaped elements that are other than straight, bar shaped elements that are other than disposed transverse the channel perpendicular thereto, pin shaped elements which vary in height, pin shaped elements that are round in section, pin shaped elements that are triangular in section, pin shaped elements that are oval in section, pin shaped elements that are polygon in section, pin shaped elements with profiled tips, pin shaped elements that are round in section and having profiled tips, pin shaped elements that are triangular in section and having profiled tips, pin shaped elements that are oval in section and having profiled tips, pin shaped elements that are polygon in section and having profiled tips, pin shaped elements with profiles as shown at elements 80-83, and bar shaped elements having edge profiles in accordance with any of elements 90-93.
- 72. A method for making a waveguide filter, according to claim 23, which satisfies predetermined performance characteristics, said method comprising: providing a waveguide having a channel therein; and positioning in spaced relationship within said channel a single geometrically-shaped element, where said single element contains a combination of two or more characteristics of the following element types: bar shaped elements, bar shaped elements varying in height along their length, bar shaped elements varying in height across their width, bar shaped elements with irregular height profiles, bar shaped elements that are other than straight, bar shaped elements that are other than disposed transverse the channel perpendicular thereto, pin shaped elements which vary in height, pin shaped elements that are round in section, pin shaped elements that are triangular in section, pin shaped elements that are oval in section, pin shaped elements that are polygon in section, pin shaped elements with profiled tips, pin shaped elements that are round in section and having profiled tips, pin shaped elements that are triangular in section and having profiled tips, pin shaped elements that are oval in section and having profiled tips, pin shaped elements that are polygon in section and having profiled tips, pin shaped elements with profiles as shown at elements 80-83, and bar shaped elements having edge profiles in accordance with any of elements 90-93.
- 73. A method for making a waveguide filter according to claim 71 wherein the filter is an E-plane filter and comprising the step of:
positioning in spaced relationship within said channel a slotted structure, wherein the number, dimensions and spacing of said elements and said slotted structure determine said filtering characteristics.
- 74. A method for making a waveguide component according to claim 1 and comprising the step of:
positioning in spaced relationship within said channel a slotted structure, wherein the number, dimensions and spacing of said elements and said slotted structure determine said performance characteristics.
- 75. A method for making a waveguide component according to claim 4 and comprising the step of:
positioning in spaced relationship within said channel a slotted structure, wherein the number, dimensions and spacing of said elements and said slotted structure determine said performance characteristics.
- 76. A method for making a waveguide component according to claim 7 and comprising the step of:
positioning in spaced relationship within said channel a slotted structure, wherein the number, dimensions and spacing of said elements and said slotted structure determine said performance characteristics.
- 77. A method for making a waveguide component according to claim and comprising the step of:
positioning in spaced relationship within said channel a slotted structure, wherein the number, dimensions and spacing of said elements and said slotted structure determine said performance characteristics.
- 78. A method for making a waveguide component according to claim 13 and comprising the step of:
positioning in spaced relationship within said channel a slotted structure, wherein the number, dimensions and spacing of said elements and said slotted structure determine said performance characteristics.
- 79. A method for making a waveguide component according to claim 15 and comprising the step of:
positioning in spaced relationship within said channel a slotted structure, wherein the number, dimensions and spacing of said elements and said slotted structure determine said performance characteristics.
- 80. A method for making a waveguide component according to claim 18 and comprising the step of:
positioning in spaced relationship within said channel a slotted structure, wherein the number, dimensions and spacing of said elements and said slotted structure determine said performance characteristics.
Parent Case Info
[0001] This application is a continuation-in-part of U.S. patent application 09/685,213 filed Oct. 11, 2000.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09685213 |
Oct 2000 |
US |
Child |
10232590 |
Sep 2002 |
US |