A planar tightly coupled ultra-wideband dual-polarized phased array antenna

By designing structures such as hangers and adaptable pin blocks, the antenna is suspended and installed using the air conditioner outdoor unit bracket, which solves the problem of requiring additional brackets in the existing technology and achieves a convenient installation process and wide adaptability.

CN120497616BActive Publication Date: 2025-09-09JIANGSU KENLI TECH CO LTD
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Patent Information

Application Number
CN202510994952.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-18
Publication Date
2025-09-09
Estimated Expiration
2045-07-18

AI Technical Summary

Technical Problem

Existing planar tightly coupled ultra-wideband dual-polarization phased array antennas require additional brackets during installation, making the installation process cumbersome and inconvenient.

Method used

A structure including a hanger, an adaptive cross sleeve, an adaptive cross bar, a mounting base, a mounting column, a T-plate and a clamping piece was designed. The original air-conditioning outdoor unit bracket on the building wall was used as the mounting bracket, and the antenna was suspended and installed through the cooperation of the adaptive pin block and the magnet.

Benefits of technology

No additional brackets are required, which simplifies the installation process, improves installation convenience, reduces installation limitations, and is suitable for different types of air conditioner outdoor unit brackets.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of antennas, and in particular to a planar tightly coupled ultra-wideband dual-polarized phased array antenna, comprising an antenna body and a hanger connected to the antenna body, wherein an adaptive cross sleeve is fixedly mounted on the upper end of the hanger, an adaptive cross bar is slidably mounted inside the adaptive cross sleeve, the adaptive cross bar extends through one end of the adaptive cross sleeve, an adaptive clamp is provided between the adaptive cross sleeve and the adaptive cross bar, the end of the adaptive cross bar and the other end of the adaptive cross sleeve are fixedly mounted with a mounting base, and two mounting posts extend from the side of the mounting base. The present invention uses the existing air-conditioning outdoor unit bracket on the building wall as a mounting bracket to install the antenna body, eliminating the need for additional brackets, effectively improving installation convenience, and can also flexibly adapt to plate-shaped or angle steel air-conditioning outdoor unit brackets for installation, effectively reducing limitations and meeting installation requirements.
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Description

Technical Field

[0001] The present invention relates to the field of antennas, and in particular to a planar tightly coupled ultra-wideband dual-polarization phased array antenna. Background Art

[0002] Planar tightly coupled ultra-wideband dual-polarized phased array antennas are a type of antenna with advanced technology and broad application prospects. Based on the principle of tight coupling, the capacitance formed between the element antennas offsets the inductance formed between the element antennas and the ground plane, achieving ultra-wideband characteristics. The perpendicularly intersecting dipole elements enable dual polarization, allowing simultaneous reception or transmission of electromagnetic waves in two orthogonal polarization directions. This improves the antenna's efficiency in utilizing electromagnetic waves and the system's information transmission capacity. Small, planar tightly coupled ultra-wideband dual-polarized phased array antennas are often mounted on building walls to provide directional communication for IoT devices and other applications.

[0003] However, in the actual installation process of existing antennas, since there is no corresponding mounting bracket for the antenna on the building wall, it is necessary to fix the bracket on the wall first before installing the antenna. The installation process requires additional brackets, which is quite cumbersome and makes the installation inconvenient. Summary of the Invention

[0004] The purpose of the present invention is to solve the shortcomings of the background technology and to propose a planar tightly coupled ultra-wideband dual-polarization phased array antenna.

[0005] In order to achieve the above purpose, the technical solution adopted by the present invention is: a planar tightly coupled ultra-wideband dual-polarized phased array antenna, comprising an antenna body and a hanger connected to the antenna body, the upper end of the hanger is fixedly installed with an adaptive cross sleeve, the interior of the adaptive cross sleeve is slidably installed with an adaptive cross bar, the adaptive cross bar passes through one end of the adaptive cross sleeve, an adaptive clamp is provided between the adaptive cross sleeve and the adaptive cross bar, the end of the adaptive cross bar and the other end of the adaptive cross sleeve are fixedly installed with a mounting seat, and the side of the mounting seat extends with two mounting brackets. The plug-in column, the diameter of the two mounting plug-in columns matches the diameter of the through-hole on the plate-shaped air-conditioning outdoor unit bracket, a connecting plate is fitted on the side of the mounting seat, a T-plate extends from the middle of the connecting plate, a clamping member is provided on the side of the T-plate, and the clamping member is pressed on the mounting seat, an upper L-shaped seat extends horizontally from the upper end of the T-plate, a positioning seat extends vertically from the rear end of the T-plate, and a lower L-shaped seat extends obliquely from the lower end of the T-plate, and the area formed by the upper L-shaped seat, the lower L-shaped seat and the positioning seat matches the triangular area on the angle steel air-conditioning outdoor unit bracket.

[0006] Preferably, a sliding groove is provided on the front end surface of the adaptive cross bar, and a sliding bar extends from the inner surface edge of the adaptive cross sleeve. The sliding bar is slidably installed inside the sliding groove, and two plug holes are provided through the side of the connecting plate, and the two mounting pins are respectively inserted into the inside of the two plug holes.

[0007] Preferably, the adaptation card includes a guide shell extending on the upper end surface of the adaptation transverse sleeve near the edge, and an adaptation pin block is slidably installed inside the guide shell. The adaptation pin block passes through the outer surface of the adaptation transverse sleeve and the outer surface of the adaptation cross bar, and the adaptation pin block is slidably fitted with the adaptation transverse sleeve.

[0008] Preferably, two block grooves are respectively provided on the outer surface of the adaptive cross bar, and the adaptive pin block is inserted into the inside of one of the block grooves. A magnet is embedded throughout the interior of the adaptive pin block, and the upper and lower end faces of the magnet are coplanar with the upper and lower end faces of the adaptive pin block. The magnet is adsorbed on the inner bottom surface of one of the block grooves.

[0009] Preferably, two connecting claws extend symmetrically from the upper end of the adapting pin block, and the connecting claws pass through the upper end of the guide shell. The connecting claws and the guide shell are slidably matched, and a shift post is embedded between the ends of the two connecting claws. A finger shift groove is provided on the upper end surface of the guide shell, and the shift post is located inside the finger shift groove.

[0010] Preferably, the clamping member includes a bent frame fixedly installed on the lower side of the T-plate, a claw column is rotatably installed through the upper corner of the bent frame, one end of the claw column is inlaid with a fork frame, and both ends of the fork frame are extended with assembling claws, the fork frame and the assembling claws are integrally formed, and the assembling claws are pressed on the mounting seat.

[0011] Preferably, the other end of the claw column is inlaid with a push claw ear, and a threaded column is rotatably installed on the end of the bent frame. A threaded sleeve is screwed on the outer surface of the threaded column, and a lug extends on one side of the threaded sleeve. A push claw frame is connected between the lug and the push claw ear.

[0012] Preferably, both ends of the push claw frame are penetrated and embedded with connecting shafts, the end of the lug is rotatably mounted on the outer surface of the connecting shaft below, and the end of the push claw ear is rotatably mounted on the outer surface of the connecting shaft above, and a concave sliding frame extends from the other side of the threaded sleeve, and a guide frame is slidably installed inside the concave sliding frame, and the end of the guide frame is fixed to the bent frame.

[0013] Compared with the prior art, the present invention has the following beneficial effects:

[0014] 1. Insert the T-plate at the end of the adaptive horizontal sleeve into the triangular area of ​​one of the angle steel air-conditioning outdoor unit brackets. At this time, the upper L-shaped seat is close to the upper angle steel corner of the triangular area, the positioning seat is close to the vertical side of the triangular area, and the lower L-shaped seat is close to the oblique frame of the triangular area. Then pull the adaptive horizontal bar out of the adaptive horizontal sleeve so that the T-plate on the adaptive horizontal bar can be inserted into the triangular area of ​​another angle steel air-conditioning outdoor unit bracket and close to it. At this time, the adaptive pin block is inserted into one of the block grooves under its own gravity and the attraction of the magnet to fix the extended adaptive horizontal bar, so that the adaptive horizontal bar and the T-plate at the end of the adaptive horizontal sleeve can be clamped in the triangular area of ​​the angle steel air-conditioning outdoor unit bracket to suspend the antenna body for installation. The process uses the original air-conditioning outdoor unit bracket on the building wall as a mounting bracket to install the antenna body, without the need for additional brackets, which effectively improves the convenience of installation.

[0015] 2. By rotating the threaded column, the threaded sleeve can be driven to move upward, thereby driving the lug to move upward to push the push claw frame, so that the push claw frame moves to drive the push claw ear to rotate, and then drive the claw column to rotate, so that the assembly claw is separated from the mounting seat, so that the mounting seat and the connecting plate can be separated under the pressure of the assembly claw, thereby exposing the mounting pins on the mounting seat. Then the adaptive cross bar can be pulled out from the adaptive cross sleeve, so that the adaptive cross bar and the mounting seat on the adaptive cross sleeve can be pressed against the opposite surfaces of the two plate-shaped air conditioner outdoor unit brackets. At the same time, the two mounting pins on the mounting seat are inserted into the through holes on the plate-shaped air conditioner outdoor unit bracket. At this time, the adaptive pin block is inserted into the other block groove under its own gravity and the attraction of the magnet to fix the extended adaptive cross bar, so that the mounting pin can be clamped in the through hole on the plate-shaped air conditioner outdoor unit bracket to suspend the antenna body, thereby achieving the purpose of flexibly adapting to the installation of the plate-shaped air conditioner outdoor unit bracket and the angle steel air conditioner outdoor unit bracket, effectively reducing the limitations and meeting the installation requirements. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0017] Figure 2 For the present invention Figure 1 A magnified view of middle A;

[0018] Figure 3 It is a cross-sectional view of the guide shell of the present invention;

[0019] Figure 4 This is a schematic diagram of the T-plate of the present invention;

[0020] Figure 5 An exploded view of the connecting plate and the mounting base of the present invention;

[0021] Figure 6 This is a schematic diagram of the bending frame of the present invention;

[0022] Figure 7 This is a view of the installation of the present invention and a plate-shaped air conditioner outdoor unit bracket;

[0023] Figure 8 This is an installation view of the present invention and the angle steel air conditioner outdoor unit bracket;

[0024] Figure 9 This is a schematic diagram of the T-plate of the present invention being clamped to the triangular area of ​​the angle steel air conditioner outdoor unit bracket.

[0025] In the figure: 1. Antenna body; 2. Hanger; 3. Adaptive cross bar; 4. Adaptive cross sleeve; 5. T-plate; 6. Guide shell; 7. Finger-dial slot; 8. Dial post; 9. Connecting claw; 10. Connecting shaft; 11. Connecting plate; 12. Mounting seat; 13. Assembling claw; 14. Bend frame; 15. Slide groove; 16. Slide bar; 17. Adaptive pin block; 18. Block groove; 19. Magnet; 20. Upper L-shaped seat; 21. Lower L-shaped seat; 22. Positioning seat; 23. Plug-in hole; 24. Fork-shaped frame; 25. Mounting post; 26. Claw post; 27. Push claw ear; 28. Push claw frame; 29. ​​Lug; 30. Threaded sleeve; 31. Concave sliding frame; 32. Guide frame; 33. Threaded post; 34. Plate-shaped air-conditioning outdoor unit bracket; 35. Angle steel air-conditioning outdoor unit bracket. DETAILED DESCRIPTION

[0026] The following description is intended to disclose the present invention so that those skilled in the art can implement the present invention. The preferred embodiments described below are merely examples, and those skilled in the art may conceive of other obvious variations.

[0027] like Figures 1-9The planar tightly coupled ultra-wideband dual-polarized phased array antenna shown includes an antenna body 1 and a hanger 2 connected to the antenna body 1. Since the planar tightly coupled ultra-wideband dual-polarized phased array antenna, i.e., the antenna body 1, is an existing technology and has been widely used, it is not elaborated on here. The hanger 2 serves to suspend the antenna body 1. An adaptive horizontal sleeve 4 is fixedly installed on the upper end of the hanger 2. An adaptive horizontal rod 3 is slidably installed inside the adaptive horizontal sleeve 4. The adaptive horizontal rod 3 passes through one end of the adaptive horizontal sleeve 4. The adaptive horizontal sleeve 4 and the adaptive horizontal rod 3 serve to be suspended on the air-conditioning outdoor unit bracket. An adaptive clip is provided between the adaptive horizontal sleeve 4 and the adaptive horizontal rod 3. The end of the adaptive horizontal rod 3 and the other end of the adaptive horizontal sleeve 4 are fixedly installed with a mounting seat 12. Two mounting plugs 25 extend from the side of the mounting seat 12. The mounting seat 12 serves to support the mounting plugs 25. The diameters of the two mounting plugs 25 match the diameters of the through holes on the plate-shaped air-conditioning outdoor unit bracket 34, which can ensure that the mounting plugs 25 and the through holes will not shake after being inserted. Phenomenon, the installation plug 25 plays the role of connecting the mounting seat 12 and the connecting plate 11 together on the one hand, and plays the role of inserting into the through hole on the plate-shaped air-conditioning outdoor unit bracket 34 to install the antenna body 1. The side of the mounting seat 12 is fitted with a connecting plate 11, and a T-plate 5 extends from the middle of the connecting plate 11. The connecting plate 11 plays the role of supporting the T-plate 5. A pressing piece is provided on the side of the T-plate 5, and the pressing piece is pressed on the mounting seat 12. The upper end of the T-plate 5 is horizontally extended with an upper L-shaped seat 20, and the rear end of the T-plate 5 A positioning seat 22 extends vertically, and a lower L-shaped seat 21 extends obliquely from the lower end of the T-plate 5. The area formed by the upper L-shaped seat 20, the lower L-shaped seat 21, and the positioning seat 22 matches the triangular area on the angle steel air-conditioning outdoor unit bracket 35, which can ensure that when the T-plate 5 is inserted into the triangular area of ​​the angle steel air-conditioning outdoor unit bracket 35, the upper L-shaped seat 20 can be tightly attached to the upper angle steel corner of the triangular area, the positioning seat 22 can be tightly attached to the vertical edge of the triangular area, and the lower L-shaped seat 21 can be tightly attached to the inclined frame of the triangular area to avoid shaking after installation.

[0028] A slide groove 15 is provided on the front end surface of the adaptive cross bar 3, and a slide bar 16 extends from the inner surface edge of the adaptive cross sleeve 4. The slide groove 15 and the slide bar 16 can prevent the adaptive cross bar 3 from rotating. The slide bar 16 is slidably installed inside the slide groove 15. Two plug holes 23 are provided on the side of the connecting plate 11. Two installation pins 25 are respectively inserted into the inside of the two plug holes 23. The plug holes 23 can allow the installation pins 25 to pass through, so that the mounting seat 12 and the connecting plate 11 can be tightly attached together.

[0029] The adaptive card includes a guide shell 6 extending near the edge of the upper end face of the adaptive transverse sleeve 4, and an adaptive pin block 17 is slidably installed inside the guide shell 6. The guide shell 6 serves to support the adaptive pin block 17. The adaptive pin block 17 passes through the outer surface of the adaptive transverse sleeve 4 and the outer surface of the adaptive cross bar 3. The adaptive pin block 17 serves to fix the adaptive transverse sleeve 4 and the adaptive cross bar 3 together, and the adaptive pin block 17 slides with the adaptive transverse sleeve 4.

[0030] Two block grooves 18 are respectively provided on the outer surface of the adaptive cross bar 3, and the adaptive pin block 17 is inserted into the inside of one of the block grooves 18, which can position the spacing between the two T-plates 5, so that the two T-plates 5 can adapt to the spacing between the two angle steel air-conditioning outdoor unit brackets 35 for installation. When the adaptive pin block 17 is inserted into the inside of the other block groove 18, the spacing between the two mounting seats 12 can be positioned, so that the two mounting seats 12 can adapt to the spacing between the two plate-shaped air-conditioning outdoor unit brackets 34 for installation. The interior of the adaptive pin block 17 is inlaid with a magnet 19, and the upper and lower end faces of the magnet 19 are coplanar with the upper and lower end faces of the adaptive pin block 17. The magnet 19 is adsorbed on the inner bottom surface of one of the block grooves 18, and the magnet 19 serves to fix the adaptive pin block 17 in the block groove 18.

[0031] The upper end of the adaptation pin block 17 extends symmetrically with two connecting claws 9, which extend from the upper end of the guide housing 6. The connecting claws 9 play a connecting role, and the connecting claws 9 slide with the guide housing 6. A shift column 8 is embedded between the ends of the two connecting claws 9. The shift column 8 serves to facilitate pulling the adaptation pin block 17 out of the block groove 18. The upper end surface of the guide housing 6 is provided with a finger shift groove 7. The shift column 8 is located inside the finger shift groove 7. The finger shift groove 7 serves to accommodate the shift column 8 and facilitate grabbing the shift column 8.

[0032] The clamping part includes a bent frame 14 fixedly installed on the lower side of the T-plate 5, and a claw column 26 is rotatably installed at the upper corner of the bent frame 14. The bent frame 14 plays a role in supporting the claw column 26 and the threaded column 33. One end of the claw column 26 is inlaid with a fork frame 24, and both ends of the fork frame 24 are extended with assembling claws 13. The fork frame 24 plays a role in supporting the assembling claws 13. The fork frame 24 and the assembling claws 13 are integrally formed. The assembling claws 13 are pressed tightly on the mounting seat 12, which can make the mounting seat 12 and the connecting plate 11 stick together. At the same time, with the cooperation of the mounting column 25 and the plug hole 23, the mounting seat 12 and the connecting plate 11 are fixed together.

[0033] The other end of the claw post 26 is inlaid with a push claw ear 27, and a threaded column 33 is rotatably installed at the end of the bent frame 14. The outer surface of the threaded column 33 is tightened with a threaded sleeve 30, and the threaded column 33 plays the role of driving the threaded sleeve 30 to move. A lug 29 is extended on one side of the threaded sleeve 30, and a push claw frame 28 is connected between the lug 29 and the push claw ear 27. The threaded column 33 is rotated to drive the threaded sleeve 30 to move upward, thereby driving the lug 29 to move upward, pushing the push claw frame 28, so that the push claw frame 28 moves to drive the push claw ear 27 to rotate, and then drive the claw post 26 to rotate, so that the assembling claw 13 is separated from the mounting seat 12, so that the mounting seat 12 and the connecting plate 11 can be separated without the pressure of the assembling claw 13, thereby exposing the mounting pin 25 on the mounting seat 12 to the outside.

[0034] Both ends of the push claw frame 28 are penetrated and inlaid with a connecting shaft 10, the end of the lug 29 is rotatably mounted on the outer surface of the connecting shaft 10 below, and the end of the push claw ear 27 is rotatably mounted on the outer surface of the connecting shaft 10 above. The connecting shaft 10 serves to facilitate connection. A concave sliding frame 31 extends from the other side of the threaded sleeve 30, and a guide frame 32 is slidably installed inside the concave sliding frame 31. The end of the guide frame 32 is fixed to the bent frame 14. The concave sliding frame 31 and the guide frame 32 can strengthen the guidance of the threaded sleeve 30.

[0035] During installation, insert the T-plate 5 at the end of the adaptable horizontal sleeve 4 into the triangular area of ​​one of the angle steel air-conditioning outdoor unit brackets 35. At this time, the upper L-shaped seat 20 is close to the upper angle steel corner of the triangular area, the positioning seat 22 is close to the vertical side of the triangular area, and the lower L-shaped seat 21 is close to the oblique frame of the triangular area. Then pull the adaptable cross bar 3 out of the adaptable horizontal sleeve 4 so that the T-plate 5 on the adaptable cross bar 3 can be inserted into the triangular area of ​​another angle steel air-conditioning outdoor unit bracket 35 and close to it. At this time, the adaptable pin block 17 is on itself. Under the attraction of gravity and magnet 19, it is inserted into one of the block grooves 18 to fix the extended adaptive cross bar 3, so that the T-plate 5 at the end of the adaptive cross bar 3 and the adaptive cross sleeve 4 can be clamped in the triangular area of ​​the angle steel air-conditioning outdoor unit bracket 35 to suspend the antenna body 1, that is, to install the antenna body 1 on the outer wall of the building for use. If the bracket required is a plate-shaped air-conditioning outdoor unit bracket 34, the threaded column 33 can be rotated to drive the threaded sleeve 30 to move upward, thereby driving the lug 29 to move upward, so as to The push claw frame 28 is pushed to move the push claw frame 28 to drive the push claw ear 27 to rotate, and then drive the claw column 26 to rotate, so that the assembling claw 13 is separated from the mounting seat 12, so that the mounting seat 12 and the connecting plate 11 can be separated without the pressure of the assembling claw 13, so that the mounting column 25 on the mounting seat 12 is exposed to the outside, and then the adaptable cross bar 3 can be pulled out from the adaptable cross sleeve 4, so that the adaptable cross bar 3 and the mounting seat 12 on the adaptable cross sleeve 4 can be pressed against the opposite surfaces of the two plate-shaped air conditioner outdoor unit brackets 34, and at the same time When the two mounting pins 25 on the mounting seat 12 are inserted into the through holes on the plate-shaped air-conditioning outdoor unit bracket 34, the adaptable pin block 17 is inserted into another block groove 18 under its own gravity and the attraction of the magnet 19 to fix the extended adaptable cross bar 3, so that the mounting pins 25 can be clamped in the through holes on the plate-shaped air-conditioning outdoor unit bracket 34 to suspend and install the antenna body 1, thereby flexibly adapting to the installation of the plate-shaped or angle steel air-conditioning outdoor unit bracket, effectively reducing limitations and meeting installation requirements.

[0036] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions merely illustrate the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. A planar tightly coupled ultra-wideband dual-polarized phased array antenna, comprising an antenna body (1) and a hanger (2) connected to the antenna body (1), characterized in that: The upper end of the hanger (2) is fixedly mounted with an adaptable transverse sleeve (4), and an adaptable transverse bar (3) is slidably mounted inside the adaptable transverse sleeve (4). The adaptable transverse bar (3) extends from one end of the adaptable transverse sleeve (4), and an adaptable clamp is provided between the adaptable transverse sleeve (4) and the adaptable transverse bar (3). The end of the adaptable transverse bar (3) and the other end of the adaptable transverse sleeve (4) are both fixedly mounted with a mounting seat (12), and two mounting plugs (25) are extended from the side of the mounting seat (12). The diameters of the two mounting plugs (25) match the diameters of the through holes on the plate-shaped air conditioner outdoor unit bracket. The side of the mounting seat (12) is fitted with a connecting plate (11), a T-plate (5) is extended from the middle of the connecting plate (11), a pressing member is provided on the side of the T-plate (5), and the pressing member is pressed on the mounting seat (12), an upper L-shaped seat (20) is horizontally extended from the upper end of the T-plate (5), a positioning seat (22) is vertically extended from the rear end of the T-plate (5), and a lower L-shaped seat (21) is obliquely extended from the lower end of the T-plate (5), and the area formed by the upper L-shaped seat (20), the lower L-shaped seat (21) and the positioning seat (22) matches the triangular area on the angle steel air conditioner outdoor unit bracket.

2. The planar tightly coupled ultra-wideband dual-polarized phased array antenna according to claim 1, characterized in that: A slide groove (15) is provided on the front end surface of the adaptive cross bar (3), and a slide bar (16) extends from the edge of the inner surface of the adaptive cross sleeve (4). The slide bar (16) is slidably installed inside the slide groove (15). Two plug holes (23) are provided through the side surface of the connecting plate (11), and the two mounting posts (25) are respectively inserted into the inside of the two plug holes (23).

3. The planar tightly coupled ultra-wideband dual-polarized phased array antenna according to claim 1, characterized in that: The adaptable card comprises a guide housing (6) extending from the upper end surface of the adaptable transverse sleeve (4) near the edge, an adaptable pin block (17) is slidably mounted inside the guide housing (6), the adaptable pin block (17) passes through the outer surface of the adaptable transverse sleeve (4) and the outer surface of the adaptable cross bar (3), and the adaptable pin block (17) is slidably engaged with the adaptable transverse sleeve (4).

4. The planar tightly coupled ultra-wideband dual-polarized phased array antenna according to claim 3, characterized in that: The outer surface of the adaptable cross bar (3) is provided with two block grooves (18), the adaptable pin block (17) is inserted into the interior of one of the block grooves (18), and a magnet (19) is embedded in the interior of the adaptable pin block (17), and the upper and lower end surfaces of the magnet (19) are coplanar with the upper and lower end surfaces of the adaptable pin block (17), and the magnet (19) is adsorbed on the inner bottom surface of one of the block grooves (18).

5. The planar tightly coupled ultra-wideband dual-polarized phased array antenna according to claim 3, characterized in that: Two connecting claws (9) are symmetrically extended from the upper end of the adapting pin block (17), and the connecting claws (9) extend through the upper end of the guide shell (6). The connecting claws (9) and the guide shell (6) are slidably matched, and a shifting post (8) is embedded between the ends of the two connecting claws (9). The upper end surface of the guide shell (6) is provided with a finger shifting groove (7), and the shifting post (8) is located inside the finger shifting groove (7).

6. The planar tightly coupled ultra-wideband dual-polarized phased array antenna according to claim 1, characterized in that: The pressing member comprises a bent frame (14) fixedly mounted on the lower side of the T-plate (5), a claw column (26) being rotatably mounted through the upper corner of the bent frame (14), a fork frame (24) being embedded at one end of the claw column (26), and assembling claws (13) extending from both ends of the fork frame (24), the fork frame (24) and the assembling claws (13) being integrally formed, and the assembling claws (13) being pressed against the mounting seat (12).

7. The planar tightly coupled ultra-wideband dual-polarized phased array antenna according to claim 6, characterized in that: The other end of the claw column (26) is inlaid with a push claw ear (27), and the end of the bent frame (14) is rotatably mounted with a threaded column (33), the outer surface of the threaded column (33) is screwed with a threaded sleeve (30), and a lug (29) extends from one side of the threaded sleeve (30), and a push claw frame (28) is connected between the lug (29) and the push claw ear (27).

8. The planar tightly coupled ultra-wideband dual-polarized phased array antenna according to claim 7, characterized in that: Both ends of the push claw frame (28) are penetrated and embedded with a connecting shaft (10), the end of the lug (29) is rotatably mounted on the outer surface of the lower connecting shaft (10), and the end of the push claw ear (27) is rotatably mounted on the outer surface of the upper connecting shaft (10). A concave sliding frame (31) extends from the other side of the threaded sleeve (30), and a guide frame (32) is slidably mounted inside the concave sliding frame (31), and the end of the guide frame (32) is fixed to the bent frame (14).

Citation Information

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