COAXIAL FILTER
20190067771 ยท 2019-02-28
Inventors
Cpc classification
H01P1/205
ELECTRICITY
International classification
Abstract
A coaxial filter comprises a housing that surrounds a receiving space. The housing comprises a trough-shaped housing element with sidewalls and a front wall. The housing further comprises a further trough-shaped housing element, wherein the two trough-shaped housing elements are placed on top of one another, thus forming the receiving space; or a lid arrangement which, together with the trough-shaped housing element forms the receiving space. At least one resonator inner conductor arrangement comprises a connecting bridge, with which resonator inner conductors are conductingly connected.
Claims
1. Coaxial filter comprising: a housing that delimits a common receiving space; the housing being made of an electrically conducting material and comprising a trough-shaped housing element that has sidewalls and a front wall, wherein between the sidewalls, a space is closed off by the front wall on one of their sides, and wherein the sidewalls are integral with the front wall; the housing further comprising: a further trough-shaped housing element that comprises sidewalls and a front wall, wherein a further space between the sidewalls is closed off on one of their sides by the front wall, wherein the sidewalls are integral with the front wall, and wherein the two trough-shaped housing elements are placed on top of one another, and so the sidewalls of both trough-shaped housing elements run between the two front walls and surround the receiving space which is formed by the two spaces; or a lid arrangement, wherein the sidewalls run between the front wall and the lid arrangement and surround the receiving space which is formed by the space; in addition, at least one resonator inner conductor arrangement with a one-piece design is provided which is arranged in the receiving space, and which consists of or comprises a punched and/or lasered metal sheet; the at least one resonator inner conductor arrangement comprising a plurality of resonator inner conductors which lie in the same plane and have a first end and a second end spaced apart from the first end; the at least one resonator inner conductor arrangement comprising a connecting bridge, on which the resonator inner conductors are connected to one another with their first end in an electrically conducting manner; at least two adjacent resonator inner conductors of the at least one resonator inner conductor arrangement, which extend in the same direction away from the connecting bridge, being in the line of sight of one another over their entire length or over their predominant length.
2. Coaxial filter according to claim 1, wherein: die resonator inner conductor arrangement is designed as one piece consisting of or comprising a curved and/or milled and/or printed metal sheet; and/or the sidewalls and the front wall of the housing element consist of a cast and/or extruded and/or milled part.
3. Coaxial filter according to claim 1, wherein: the at least one resonator inner conductor arrangement is galvanically separated from the housing, or the at least one resonator inner conductor arrangement is galvanically connected to the housing; and/or the second end of the resonator inner conductors is arranged at a distance from the housing; and/or the at least one resonator inner conductor arrangement runs centrally or outside from the center through the receiving space; and/or the at least one resonator inner conductor arrangement is soldered and/or screwed and/or clamped to the housing.
4. Coaxial filter according to claim 1, further comprising at least one pedestal arrangement, wherein the at least one resonator inner conductor arrangement rests on the at least one pedestal arrangement and is held spaced apart: from the front walls of the trough-shaped housing elements; or the front wall of the trough-shaped housing element and the lid arrangement; or the at least one pedestal arrangement extends in the direction of the at least one resonator inner conductor arrangement and ends at a distance from it.
5. Coaxial filter according to claim 4, wherein: the at least one pedestal arrangement comprises a plurality of individual pedestals spaced apart from one another or a continuous pedestal that extends over at least 50% along the length of a sidewall; the at least one pedestal arrangement consists of or comprises a dielectric material and/or an electrically conducting material.
6. Coaxial filter according to claim 4, wherein: the at least one resonator inner conductor arrangement is: soldered to; and/or screwed to the at least one pedestal arrangement, wherein the at least one pedestal arrangement is at least partially penetrated by a thread, and wherein a screw head of a screw connection is arranged in the receiving space or outside of the housing.
7. Coaxial filter according to claim 6, wherein: a further pedestal arrangement is provided which is formed on the front wall and/or on the sidewall of the further trough-shaped housing element, wherein the at least one resonator inner conductor arrangement is clamped between the two pedestal arrangements, and wherein the screw connection at least to some extent penetrates both pedestal arrangements; or at least one spacer is also arranged between the at least one resonator inner conductor arrangement and the lid arrangement, and so the at least one resonator inner conductor arrangement is clamped between the at least one pedestal arrangement and the at least one spacer, wherein the screw connection at least to some extent penetrates the spacer.
8. Coaxial filter according to claim 1, wherein: the at least one resonator inner conductor arrangement is clamped between at least one sidewall of the one trough-shaped housing element and at least one sidewall of the further trough-shaped housing element.
9. Coaxial filter according to claim 1, wherein: the at least one resonator inner conductor arrangement is soldered to a sidewall of the at least one trough-shaped housing element; or the at least one resonator inner conductor arrangement has a segment which is curved at least with regard to the predominant part of the resonator inner conductors in the direction of the front side of the at least one trough-shaped housing element and soldered to said front side, or which is curved at least with regard to the predominant part of the resonator inner conductors in the direction of the lid arrangement and soldered to said lid arrangement.
10. Coaxial filter according to claim 1, wherein: the resonator inner conductors of the at least one resonator inner conductor arrangement extend on both sides away from the connecting bridge.
11. Coaxial filter according to claim 10, wherein: the connecting bridge is divided into different connecting bridge sections, wherein the connecting bridge sections run offset to one another.
12. Coaxial filter according to claim 10, wherein: the at least one resonator inner conductor arrangement is designed so as to be mirror-symmetric, wherein the mirror axis runs through the connecting bridge, and wherein the connecting bridge is many times narrower than at least one or all resonator inner conductors, resulting in a low-pass characteristic.
13. Coaxial filter according to claim 1, wherein: the second end of at least one or all resonator inner conductors of the at least one resonator inner conductor arrangement: runs angled, for example, in an L-shaped manner; or is twice angled, for example, in a T-shaped or U-shaper manner; or has an enlarged width.
14. Coaxial filter according to claim 1, further comprising: at least two resonator inner conductors or all resonator inner conductors of the at least one resonator inner conductor arrangement have over a first partial length, preferably beginning at the first end, a smaller width than over a second partial length, which ends at the second end, wherein the first partial length for at least two resonator inner conductors preferably has a different length, resulting in a band-stop characteristic.
15. Coaxial filter according to claim 1, wherein: at least one capacitive or inductive overcoupling is provided between two resonator inner conductors of the at least one resonator inner conductor arrangement that are not adjacent, wherein the inductive overcoupling is formed by an overcoupling rod that is galvanically connected to the two resonator inner conductors and runs between them and a front wall or the lid arrangement; or the capacitive overcoupling is formed by an overcoupling element, having at least two galvanically connected capacitive coupling surfaces, wherein each of said capacitive coupling surfaces is arranged spaced apart between one of the two resonator inner conductors and a front wall or the lid arrangement, wherein the overcoupling element is galvanically separated from the resonator inner conductors and the housing.
16. Coaxial filter according to claim 1, wherein: one electrically conducting separator each begins on each sidewall of the trough-shaped housing elements placed on top of one another, or on a sidewall of the one trough-shaped housing element and is connected to these or this sidewall galvanically conductingly and protrudes into the receiving space and runs in the direction of a second sidewall and ends there by forming an opening with it, thus dividing the receiving space at least into a first receiving chamber and into a second receiving chamber and the opening which connects the at least two receiving chambers; a plurality of resonator inner conductors of the at least one resonator inner conductor arrangement is arranged in the first and the second receiving chamber of the receiving space.
17. Coaxial filter according to claim 16, wherein: the connecting bridge is: arranged between the two separators; or arranged between the separator and the lid arrangement, wherein the first end of the corresponding resonator inner conductors has a segment that is curved in the direction of the front wall, and so the resonator inner conductors run over the predominant part of their length spaced apart at a predefined distance from the lid arrangement.
18. Coaxial filter according to claim 1, wherein: at least one separating plate is arranged between two adjacent resonator inner conductors of the at least one resonator inner conductor arrangement in order to reduce the coupling of the two resonator inner conductors, wherein the at least one separating plate is galvanically connected to: one sidewall of each of the two trough-shaped housing elements placed on top of one another and/or to at least one front wall of both trough-shaped housing elements placed on top of one another; or one sidewall and/or one front wall of the trough-shaped housing element or the lid arrangement.
19. Coaxial filter according to claim 1, wherein: a further resonator inner conductor arrangement is provided, wherein: the at least one resonator inner conductor arrangement is fastened to the front wall of the trough-shaped housing element, and the further resonator inner conductor arrangement is fastened to the front wall of the further trough-shaped housing element; or an additional trough-shaped housing element is provided, wherein the front wall of the trough-shaped housing element, which is closed with the lid arrangement, is placed onto the sidewalls of the additional trough-shaped housing element, thus forming a further receiving space, wherein the further resonator inner conductor arrangement is arranged in the further receiving space, and wherein at least one coupling opening is introduced in the front wall of the trough-shaped housing element, and so a coupling between the individual resonator inner conductor arrangements in the different receiving spaces is possible.
20. Coaxial filter according to claim 19, wherein: between the resonator inner conductor arrangement and the further resonator inner conductor arrangement, which are arranged in the same receiving space, a separating wall is arranged, having at least one coupling opening, through which the individual resonator inner conductor arrangements are coupled; or the resonator inner conductor arrangement and the further resonator inner conductor arrangement, which are arranged in the same receiving space, are connected to one another by means of a curved connecting section and designed as one piece.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In the following, different embodiments shall be described exemplarily with reference to the drawings. The same objects are denoted with the same reference signs. In detail, the corresponding figures of the drawings show:
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
DETAILED DESCRIPTION OF NON-LIMITING EMBODIMENTS
[0030]
[0031] In this case, the trough-shaped housing element 2a has a rectangular layout, particularly a longitudinal section. The sidewalls 3a.sub.1 to 3a.sub.4 preferably run perpendicularly to the front wall 4a. However, they can also run obliquely to the front wall 4a. In the depicted embodiment, the individual sidewalls 4a.sub.1 to 4a.sub.4 run at a right angle to one another. However, the corners thus formed can also be rounded. Other basic forms are also conceivable. In a top view of a longitudinal section, the coaxial filter 1 can also be designed so as to be square, oval, or circular. The individual side walls 4a.sub.1 to a.sub.4 can also have a stepped profile as is shown in
[0032]
[0033] The two trough-shaped housing elements 2a, 2b are placed on top of one another with their open side facing one another. Preferably, the front sides of the side walls 3a.sub.1 to 3a.sub.4 and 3b.sub.1 to 3b.sub.4 of both trough-shaped housing elements 2a, 2b contact one another. The sidewalls 3a.sub.1 to 3a.sub.4 and 3b.sub.1 to 3b.sub.4 of both trough-shaped housing elements 2a, 2b run between the corresponding front walls 4a, 4b, thus delimiting the receiving space 5 which is formed by the two spaces 5a, 5b. A housing 2 assembled such can be seen, for example, in
[0034] Instead of a further trough-shaped housing element 2b, the one trough-shaped housing element 2a can also be closed with a lid arrangement 2c, wherein the sidewalls 3a.sub.1 to 3a.sub.4 run between the front wall 4a and the lid arrangement 2c and delimit the receiving space 5 which is formed by the space 5a. Such a design of the housing 2 can be seen, for example, in
[0035] In
[0036] The at least one resonator inner conductor arrangement 6, 6a also comprises a (common) connecting bridge 10, at which the resonator inner conductors 7a to 7n are connected in an electrically conducting manner with their first end 8. The individual resonator inner conductors 7a to 7n run parallel to one another and parallel to at least one sidewall 3a.sub.2 or 3a.sub.4.
[0037] The resonator inner conductor arrangement 6, 6a is particularly free of a surrounding frame, in which the plurality of resonator inner conductors 7a, 7b, . . . 7n and the connecting bridge 10 is arranged and which is integral with the connecting bridge 10.
[0038] The connecting bridge 10 of the resonator inner conductor arrangement 6, 6a runs for over more than 60%, 70%, 80%, 90%, or 95% along and parallel to the length of a sidewall 3a.sub.1, 3a.sub.2, 3a.sub.3, and 3a.sub.4, which also forms an outer wall. In particular, the receiving space 5 extends over the entire length and/or width of the coaxial filter 1 (minus the thickness of the respective sidewall 3a.sub.1, 3a.sub.2, 3a.sub.3, and 3a.sub.4).
[0039] The individual resonator inner conductors 7a to 7n are spaced apart from one another by a predefined distance. At least two adjacent resonator inner conductors 7a to 7n, which extend away from the connecting bridge 10 in the same direction, are in the line of sight of one another over their entire length or over their predominant length (more than 50%, 60%, 70%, or 80%). This means that the housing 2 is just not immersed in the clearance between two adjacent resonator inner conductors 7a to 7n which would greatly reduce the coupling between two adjacent resonator inner conductors 7a to 7n.
[0040] In
[0041] The connecting bridge has length that preferably corresponds to more than 50%, 60%, 70%, 80%, or 90% of the length of the sidewall 3a.sub.1 or 3a.sub.3, to which it runs parallel. However, the connecting bridge 10 is preferably shorter than the corresponding sidewall 3a.sub.1 or 3a.sub.3, to which it runs parallel.
[0042] The width of the connecting bridge 10 is preferably greater than the width of at least one or all of the resonator inner conductors 7a to 7n. However, it could also be equal or smaller.
[0043] In
[0044] The resonator inner conductor arrangement 6, 6a consists of a punched and/or lasered and/or curved and/or milled and/or printed metal sheet. A carrier material for the actual filter structure, as is used in microstrip structures, is not required. This means that the resonator inner conductor arrangement 6, 6a is free of carrier material. Due to the omission of a carrier material, the electric losses are also reduced and the filter is thus improved. In particular, the resonator inner conductor arrangement 6, 6a is circuit board-free.
[0045] The resonator inner conductor arrangement 6, 6a preferably consists of a different material than the housing 2. It could also consist of the same material, such as aluminum. However, the resonator inner conductor arrangement 6, 6a and the housing 2 do not consist of the same part or workpiece. They thus consist of different workpieces. They are not integral with one another. They are produced in separate processes. The resonator inner conductor arrangement 6, 6a and the trough-shaped housing element 2a or 2b or the lid arrangement 2c are not produced from a common workpiece or part. This means that the resonator inner conductor arrangement 6, 6a is produced separately and inserted in the receiving space 5 of the housing 2. The insertion of the resonator inner conductor arrangement 6, 6a into the one trough-shaped housing element 2a is only possible via one opening which is closed by the further trough-shaped housing element 2b or the lid arrangement 2c. All other openings for insertions are closed by the sidewalls 3a.sub.1, 3a.sub.2, 3a.sub.3, and 3a.sub.4 and the front wall 4a.
[0046] The resonator inner conductor arrangement 6, 6a is held spaced apart from the front sides 4a, 4b or the lid arrangement 2c. In particular, the resonator inner conductors 7a to 7n are held spaced apart from the housing 2, particularly from the front walls 4a, 4b or the lid arrangement 2c.
[0047] The resonator inner conductor arrangement 6, 6a is arranged in the receiving space 5 which is directly surrounded by the sidewalls 3a.sub.1, 3a.sub.2, 3a.sub.3, and 3a.sub.4 or 3b.sub.1, 3b.sub.2, 3b3, and 3b.sub.4. The receiving space 5 always comprises boundary walls which are the sidewalls 3a.sub.1, 3a.sub.2, 3a.sub.3, and 3a.sub.4 or 3b.sub.1, 3b.sub.2, 3b3, and 3b.sub.4 and which are also the outer walls of the housing 2.
[0048] As shall be explained further below, the at least one resonator inner conductor arrangement 6, 6a is preferably soldered and/or screwed and/or clamped to the housing 2. Preferably, this is a galvanic connection. However, this is not obligatory. For example, the resonator inner conductor arrangement 6, 6a can also rest on a pedestal arrangement 11. Such a pedestal arrangement 11 shall be explained in detail with regard to
[0049] In
[0050] In
[0051]
[0052] In this case, the at least one resonator inner conductor arrangement 6, 6a rests on the at least one pedestal arrangement 11. Preferably, the resonator inner conductor arrangement 6 rests on the pedestal arrangement 11 only with its connecting bridge 10. This situation is shown, for example, in
[0053]
[0054] In
[0055] In
[0056] The resonator inner conductors 7a to 7n, which extend along one direction away from the common connecting bridge 10, are, along a partial length of the connecting bridge 10, spaced apart at different distances from the sidewall 3a.sub.1 or 3b.sub.1 toward which they extend, while, at a different partial length of the connecting bridge 10, from which they protrude, they are spaced apart at equal distances from the corresponding sidewall 3a.sub.1 or 3b.sub.1 toward which they extend. In addition, those resonator inner conductors 7a to 7n, which extend away on another side of the common connecting bridge 10 in the direction of the corresponding sidewall 3a.sub.3 or 3b.sub.3, are spaced apart from said sidewall 3a.sub.3 or 3b.sub.3 at equal distances.
[0057] In
[0058] Two of these coupling and/or decoupling devices 12a, 12b penetrate a sidewall 3a1 to 3a4 or 3b1 to 3b4, while the third coupling and/or decoupling device 12c penetrates a front wall 4a or 4b or the lid arrangement 2c. The first and the second coupling and/or decoupling device 12a, 12b are preferably coupled with the resonator inner conductors 7a, 7n which are arranged at the beginning and the end of the common connecting bridge 10. The third coupling and/or decoupling device 12c, which is arranged preferably perpendicularly to the other coupling and/or decoupling devices 12a, 12b, is coupled with a resonator inner conductor that is located between the outermost resonator inner conductors 7a, 7n (particularly in the middle).
[0059] The distance of the individual coupling and/or decoupling devices 12a, 12b, 12c to the corresponding resonator inner conductor is preferably less than 5 cm, 4 cm, 3 cm, 2c m, 1 cm, 0.5 cm. The coaxial filter 1 preferably operates as a duplex filter.
[0060] The coupling and/or decoupling devices 12a, 12b, 12c can also be called coupling and/or decoupling connections 12a, 12b, 12c. They are preferably sockets or plugs that are placed from the outside and screwed onto the housing 2. Preferably, no circuit board is arranged between the coupling and/or decoupling devices 12a, 12b, 12c and the at least one resonator inner conductor arrangement 6, 6a.
[0061] In the following,
[0062] At least one or all of the resonator inner conductors 7a to 7n of the at least one resonator inner conductor arrangement 6, 6a extend obliquely away from the common connecting bridge 10. The smaller angle between the resonator inner conductors 7a to 7n and the common connecting bridge 10 is greater than 10, 20, 30, 40, 50, 60, 70, 80, but smaller than 85, 75, 65, 55, 45, 35, 25, 15, 5. Each of the resonator inner conductors 7a to 7n can be divided into individual sections which in turn run toward one another at an angle. In such case, the corresponding resonator inner conductors would be bent. However, all of these sections run toward the connecting bridge 10 at an angle smaller than 90.
[0063] In
[0064] According to
[0065] Basically, it would also be possible that the angled sections with the second end 9 of the resonator inner conductors 7a to 7n also run at an angle unequal 90 with regard to the remaining section of the resonator inner conductor 7a to 7n.
[0066]
[0067]
[0068]
[0069]
[0070] It basically also applies that the common connecting bridge 10 is approximately as wide as the resonator inner conductor 7a to 7n. The term approximately means that a deviation of less than 25%, 20%, 15%, 10%, or less than 5% is included.
[0071]
[0072] The structure of the resonator inner conductor arrangement 6, 6a in
[0073]
[0074] An inductive overcoupling would also be possible, wherein it would be formed by an overcoupling rod (not depicted). Said overcoupling rod would be galvanically connected, for example, soldered, to two resonator inner conductors 7a to 7n that are not adjacent. The arrangement would be similar to that of the overcoupling element 14.
[0075] Two adjacent resonator inner conductors 7a to 7n could also be inductively coupled in that the connecting bridge 10 between those two resonator inner conductors 7a to 7n is wider than between two other resonator inner conductors 7a to 7n.
[0076] In general, a coupling between two adjacent resonator inner conductors 7a to 7n exists both over their line of sight and the corresponding part of the connecting bridge 10. The coupling can also be varied, for example, by changing the distances of the adjacent resonator inner conductors 7a to 7n, or by varying the position (closer toward the bottom or closer toward the open end), or by varying the shape (e.g. thinner or thicker) of the corresponding connecting bridge section 10a to 10n.
[0077]
[0078]
[0079] In the event that only one trough-shaped housing element 2a is used, which is closed off by the lid arrangement 2c and surrounds the receiving space 5, it has a separator 20 that runs from one sidewall 3a1 to 3a4 in the direction of the opposite sidewall 3a1 to 3a4, where it ends at a distance from said sidewall 3a1 to 3a4, while forming an opening 21. The separator 20 is once again electrically conducting, and preferably integral with the sidewall 3a1 to 3a4.
[0080] The common connecting bridge 10 preferably rests on the separator 20. The individual resonator inner conductors 7a to 7n of the at least one resonator inner conductor arrangement 10 thus extend into the first and the second receiving chamber 5.sub.1, 5.sub.2 of the receiving space 5.
[0081] When two trough-shaped housing elements 2a, 2b are used, the common connecting bridge 10 is preferably arranged between the two separators 20 and further preferably crimped and/or screwed and/or soldered to them.
[0082] In the event that only one trough-shaped housing element 2a is used, the common connecting bridge 10 is preferably arranged between the separator 20 and the lid arrangement 2c, and further preferably crimped and/or soldered and/or screwed to them. The first end 8 of the corresponding resonator inner conductors 7a to 7n comprises, for example, a segment that is curved in the direction of the front wall 4a, and so the resonator inner conductors 7a to 7n run over the predominant part of their length at a predefined distance from the lid arrangement 2c. The distance to the lid arrangement 2c is preferably more than 10% or 20% or 30% or 40% of the distance between the front side 4a and the lid arrangement 2c.
[0083] In
[0084]
[0085] In
[0086] The pedestal arrangement 11 is at least partially penetrated by a fastening opening 28 and preferably has a thread. A screw 26 with a screw body 26a and a screw head 26b engages in the two pedestal arrangements 11. By tightening the screw connection, the two pedestal arrangements 11, i.e. both trough-shaped housing elements 2a, 2b, are pressed toward one another. For that purpose, only the pedestal arrangement 11 of the two pedestal arrangements 11, which is spaced further apart from the screw head 26b, is provided with a thread. The screw body 26a also penetrates the resonator inner conductor arrangement 6, 6a which is preferably designed to be exclusively thread-free. In the depicted example, the opening 27 in the resonator inner conductor arrangement 6, 6a is greater than the diameter of the screw body 26a.
[0087] The screw head 26b is arranged outside of the housing 2. In the depicted embodiment, the housing 2, particularly the further trough-shaped housing element 2b, comprises a recess, in which the screw head 26b is arranged, and so it does not protrude over the remaining front wall 4b of the housing element 2b. Therefore, the screw head 26b is recessed in a receiving space, which is accessible from the outside, in one of the two housing elements 2a, 2b.
[0088] In the embodiment, the openings, particularly the fastening openings 28, penetrate both pedestal arrangements 11 completely. The pedestal arrangements 11 are preferably individually integral with the corresponding front walls 4a, 4b and spaced apart from the sidewalls 3a.sub.1, 3a.sub.2, 3a.sub.3, 3a.sub.4, 3b.sub.1, 3b.sub.2, 3b.sub.3, 3b.sub.4 of the trough-shaped housing elements 2a, 2b. The pedestal arrangements 11 touch (contact) preferably directly the resonator inner conductor arrangement 6, 6a without an additional dielectric material being arranged in between.
[0089]
[0090] A spacer 30 is also arranged between the resonator inner conductor arrangement 6, 6a and the housing lid 2c. The at least one resonator inner conductor arrangement 6, 6a is thus clamped between the pedestal arrangement 11 and the at least one spacer 30. The spacer 30 can consist of a dielectric material or an electrically conducting material. The fastening opening 28, in which the screw connection 26 at least partially engages, extends through the resonator inner conductor arrangement 6, 6a and the at least one spacer 30 and the lid arrangement 2c. The screw body enters from the outside of the housing 2 through the fastening opening 28 into the lid arrangement 2c and penetrates the spacer 30 and the resonator inner conductor arrangement 6, 6a completely and the pedestal arrangement 11 at least to some extent. The screw head 26b is arranged outside of the housing 2 on an outer side of the lid arrangement 2c.
[0091]
[0092]
[0093] In
[0094]
[0095]
[0096]
[0097] As was described with reference to the embodiments of
[0098]
[0099]
[0100] With reference to
[0101]
[0102] The screw 26 can be an electrically conducting screw or a screw 26 made of a dielectric material.
[0103]
[0104] By contrast,
[0105] The embodiments of
[0106]
[0107]
[0108] It is also possible to insert a plurality of coupling openings 15 that can have different dimensions and shapes (e.g. square, rectangular, slotted, round, oval).
[0109]
[0110]
[0111]
[0112] In order to reduce the coupling, a separating element can additionally be inserted between the two resonator inner conductor arrangements 6, 6a, 6b.
[0113] It is further possible to screw adjusting elements in the form of adjusting screws from outside of the housing 2 at varying depths into the receiving space 5 in order to be able to adjust the coaxial filter 1.
[0114] In principle, separating plates that are preferably galvanically connected to the housing 2 can also be used. Such a separating plate is pushed between the clearance of two adjacent resonator inner conductors 7a to 7n in order to at least partially reduce the direct coupling. It is also possible that they are only formed on the sidewalls 3a.sub.1 to 3a.sub.4 or 3b.sub.1 to 3b.sub.4 and/or on the front walls 4a, 4b in order to slightly reduce the volume. However, it still applies that two adjacent resonator inner conductors 7a to 7n are in the line of sight of one another over their entire length or over their predominant length.
[0115] The coaxial filter 1 can have any dimensions which differ depending on the frequency range used. For such a coaxial filter 1, the application frequency ranges typically lie between 500 MHz and 4500 MHz. A use above or below said ranges is also conceivable.
[0116] The housing 2 of the coaxial filter 1 can have side lengths that are greater than 20 mm, 50 mm, 75 mm, 100 mm, 150 mm, 200 mm, 250, or 300 mm, and that are preferably smaller than 400 mm, 375 mm, 325 mm, 275 mm, 225 mm, 175 mm, 125 mm, 90 mm, 70 mm, or 40 mm. These side lengths apply particularly in X- or Y-direction, i.e. along the corresponding sidewalls 3a.sub.1, 3a.sub.2, 3a.sub.3, 3a.sub.4 or 3b.sub.1, 3b.sub.2, 3b.sub.3, 3b.sub.4.
[0117] The housing 2 of the coaxial filter 1 can have a thickness that is preferably greater than 3 mm, 5 mm, 7 mm, 9 mm, 11 mm, 13 mm, or 15 mm, and which is further preferably smaller than 30 mm, 25 mm, 20 mm, 17 mm, 13 mm, 12 mm, 10 mm, 6 mm, or 4 mm. Most commonly, it lies between 7 mm and 10 mm. The wall thickness of metal sheets (e.g. the resonator inner conductors 7a, . . . , 7n) and/or of the housing elements 2a, 2b and/or of the lid arrangement 2c and/or of the front walls 4a, 4b is preferably greater than 0.5 mm, 1 mm, 1.5 mm, 2 mm, 2.5 mm, 3 mm, 3.5 mm, 4 mm, 4.5 mm, or 5 mm, and further preferably smaller than 7 mm, 6 mm, 4.8 mm, 3.8 mm, 2.8 mm, 1.8 mm, or 0.8 mm. Most commonly, it lies in a range between 1 mm to 2 mm.
[0118] In the following, some specific embodiments of the coaxial filter 1 shall be highlighted separately:
[0119] One embodiment is characterized by the following features: [0120] the at least one pedestal arrangement 11 is integral with: [0121] a) at least one front wall 4a, 4b and/or the at least one sidewall 3a.sub.1, 3a.sub.2, 3a.sub.3, 3a.sub.4, 3b.sub.1, 3b.sub.2, 3b.sub.3, 3b.sub.4 of at least one trough-shaped housing element 2a, 2b; and/or [0122] b) the lid arrangement 2c.
[0123] A further embodiment is characterized by the following features: [0124] the two trough-shaped housing elements 2a, 2b are connected to one another by at least one screw connection 26, wherein the at least one screw connection 26 runs through the at least one resonator inner conductor arrangement 6, 6a and at least partially through one sidewall 3a.sub.1, 3a.sub.2, 3a.sub.3, 3a.sub.4, 3b.sub.1, 3b.sub.2, 3b.sub.3, 3b.sub.4 of each of the two trough-shaped housing elements 2a, 2b.
[0125] Another embodiment is characterized by the following features: [0126] at least one or all of the resonator inner conductors 7a, . . . , 7n of the at least one resonator inner conductor arrangement 6, 6a extend obliquely or at a right angle away from the connecting bridge 10; and/or [0127] at least two or all resonator inner conductors 7a, . . . , 7n of the at least one resonator inner conductor arrangement 6, 6a have the same length or have different lengths.
[0128] An additional embodiment is characterized by the following features: [0129] at least a first and a second and a third coupling and/or decoupling device 12a, 12b, 12c are provided which are arranged at different points of the housing 2, and protrude from outside the housing 2 into the receiving space 5, and create a capacitive or inductive or galvanic coupling to different resonator inner conductors 7a, . . . , 7n of the at least one resonator inner conductor arrangement 6, 6a.
[0130] The invention is not limited to the embodiments described. Within the scope of the invention, any combination of all the features described and/or drawn is possible.