CN219177397U - Wireless communication equipment and bracket assembly thereof - Google Patents

Wireless communication equipment and bracket assembly thereof Download PDF

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Publication number
CN219177397U
CN219177397U CN202222789718.6U CN202222789718U CN219177397U CN 219177397 U CN219177397 U CN 219177397U CN 202222789718 U CN202222789718 U CN 202222789718U CN 219177397 U CN219177397 U CN 219177397U
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China
Prior art keywords
dovetail
fastener
bracket assembly
slider portion
rail
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Active
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CN202222789718.6U
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Chinese (zh)
Inventor
李晓亮
潘明星
明卫军
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Hytera Communications Corp Ltd
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Hytera Communications Corp Ltd
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Priority to CN202222789718.6U priority Critical patent/CN219177397U/en
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Abstract

The application discloses a wireless communication device and a bracket assembly thereof. This bracket component is used for installing external equipment on the pole, and it includes main fastener and adaptor, main fastener be used for the centre gripping in on the pole, it includes first main part and first slider portion, one side of first main part is located to first slider portion, and the adaptor be used for with external equipment is connected and be used for hanging to on the main fastener, be equipped with the second slider portion of the looks slip lock of first slider portion, wherein, the both ends of first slider portion along the assembly direction all have the opening for second slider portion is assembled with first slider portion from any one of the both ends of first slider portion. Through above-mentioned mode, the adaptor of bracket component that this application provided can assemble with the arbitrary end of main fastener to avoided can't be fast with the adaptor installation because of main fastener installation direction mistake, improved installation effectiveness.

Description

Wireless communication equipment and bracket assembly thereof
Technical Field
The present disclosure relates to the field of communications devices, and in particular, to a wireless communications device and a bracket assembly thereof.
Background
In the prior art, the adapting piece can only be assembled with one end of the main fastening piece, when the main fastening piece and the auxiliary fastening piece are installed on the holding pole, the installation direction of each other needs to be distinguished in the installation of the main fastening piece or the installation of the adapting piece, the main fastening piece can be installed and fixed on the holding pole or the device of the required holding pole through the pretension piece, the installation efficiency is lower, when the holding pole of the device is positioned at high altitude, the installer is required to work at high altitude, the longer the operation time of the installer is, the higher the danger coefficient of the installer is, and the operation under the high altitude state is unfavorable.
Disclosure of Invention
The application provides a bracket component to solve the installation of bracket component and armful pole and thereby the problem of installation effectiveness is influenced to the mistake easily.
In order to solve the technical problems, one technical scheme adopted by the application is as follows: there is provided a bracket assembly for mounting an external device on a pole, comprising:
the main fastener is used for being clamped on the holding pole and comprises a first main body and a first sliding buckle part, and the first sliding buckle part is arranged on one side of the first main body;
the adapter is used for being connected with the external equipment and being hung on the main fastener, and is provided with a second sliding buckle part which is in sliding buckling with the first sliding buckle part;
the two ends of the first sliding buckle part along the assembly direction are provided with openings, so that the second sliding buckle part is assembled with the first sliding buckle part from any one of the two ends of the first sliding buckle part.
In some embodiments, the two ends of the first main body are further provided with positioning grooves, the two positioning grooves are located at the two ends of the first sliding buckle portion, the adaptor is further provided with a positioning block, the positioning block is arranged at one end of the second sliding buckle portion, and the positioning block is in positioning fit with any one of the two positioning grooves.
In some embodiments, the locating block is further secured to the first body by a fastener.
In some embodiments, the first slider portion includes a first dovetail rail, the second slider portion includes a first dovetail chute, and the first dovetail rail and the first dovetail chute are slidingly assembled.
In some embodiments, the first slider part further includes two guide rails separately disposed at two sides of the dovetail slide rail, and the two guide rails and one side of the dovetail slide rail form a second dovetail slide groove respectively;
the second slide fastener part comprises two second dovetail slide rails which are matched to form the first dovetail slide groove;
in some embodiments, the second dovetail rail is slidingly assembled with the second dovetail rail.
In some embodiments, the edges at two sides of the second dovetail slide rail respectively comprise a first inclined edge and a second inclined edge, and the distance between the first inclined edge and the second inclined edge gradually increases along the assembly direction of the first sliding buckle part and the second sliding buckle part;
the first dovetail sliding rail is provided with a third inclined edge towards one side of the guide rail, the guide rail is provided with a fourth inclined edge towards one side of the first dovetail sliding rail, and the third inclined edge and the fourth inclined edge are respectively matched with the first inclined edge and the second inclined edge.
In some embodiments, the bracket assembly further comprises a secondary fastener, the primary fastener and the secondary fastener being cooperatively clamped to the pole;
the auxiliary fastener comprises a second main body and second clamping parts which are spaced apart, and the second clamping parts are arranged on one side of the second main body;
the main fastener further comprises a first clamping part, and the first sliding buckle part and the first clamping part are arranged on two sides of the first main body;
under the state of being assembled with the holding pole, the first main body and the second main body are respectively arranged on two sides of the holding pole, and the first clamping part and the second clamping part are respectively clamped with the holding pole and clamped on the holding pole through connection.
In some embodiments, the first clamping portion is provided with a plurality of first teeth portions, the second clamping portion is provided with a plurality of second teeth portions, and the plurality of first teeth portions and the plurality of second teeth portions are clamped on the holding pole in a matching manner.
In some embodiments, the bracket assembly further comprises a connector connected between the first body and the second body.
In some embodiments, the first main body is provided with two first through holes, and the second main body is provided with a second through hole and a U-shaped opening; the connecting piece comprises two connecting rods, wherein one connecting rod is connected with one first through hole and one second through hole, and the other connecting rod is connected with the other first through hole and the U-shaped opening.
In order to solve the technical problems, one technical scheme adopted by the application is as follows: there is provided a wireless communication device comprising a wireless means and a bracket assembly as described above, the wireless means being connected to the adaptor and to the primary fastener via the adaptor.
The beneficial effects of this application are: unlike the prior art, the present application discloses a wireless communication device and a bracket assembly thereof. Through setting up first slider portion on the main fastener, set up second slider portion on the adaptor, first slider portion all has the opening along the both ends of assembly direction, consequently, second slider portion can be assembled with it from the arbitrary end of first slider portion, thereby need not to distinguish the direction of main fastener when main fastener and staple bolt are installed, just can guarantee that the adaptor must can assemble into main fastener, the condition emergence that can't lead to the adaptor to assemble smoothly with main fastener because of the installation direction mistake of main fastener has been avoided, make the installation step simpler and easy, workman's installation operation has also reduced workman overhead working's time, finally, installation effectiveness has been improved, the security of installation has also been promoted. In the actual use process, before the equipment is installed, the equipment is required to be connected with the adapter, and then the equipment is installed on the holding pole through the cooperation of the adapter and the main fastener.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described below, it being obvious that the drawings in the following description are only some embodiments of the present application, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic view of an embodiment of a bracket assembly provided herein;
FIG. 2 is a schematic illustration of the assembly of the main fastener and adapter of the bracket assembly of FIG. 1;
FIG. 3 is a schematic view of the structure of the primary fasteners in the bracket assembly of FIG. 1;
FIG. 4 is a schematic view of the construction of the adapter in the bracket assembly of FIG. 1;
FIG. 5 is a schematic view of the primary fastener of FIG. 3 from another perspective;
fig. 6 is a schematic view of the structure of the snap fastener in the bracket assembly of fig. 1.
Detailed Description
The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. It will be apparent that the described embodiments are only some, but not all, of the embodiments of the present application. All other embodiments, which can be made by one of ordinary skill in the art without undue burden from the present disclosure, are within the scope of the present disclosure.
Reference herein to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment may be included in at least one embodiment of the present application. The appearances of such phrases in various places in the specification are not necessarily all referring to the same embodiment, nor are separate or alternative embodiments mutually exclusive of other embodiments. Those of skill in the art will explicitly and implicitly appreciate that the embodiments described herein may be combined with other embodiments.
Referring to fig. 1, fig. 1 is a schematic structural diagram of an embodiment of a bracket assembly provided in the present application.
The present embodiment provides a bracket assembly 100, wherein the bracket assembly 100 is configured to be mounted on a pole, and comprises a main fastener 10, an adapter 20 and an auxiliary fastener 30, wherein the main fastener 10 and the auxiliary fastener 30 are connected to clamp the pole, and the adapter 20 is configured to be detachably connected with the main fastener 10.
The adaptor 20 can be mounted on a wireless device, and the wireless device can be conveniently mounted on the holding pole through the mounting of the adaptor 20 and the main fastener 10.
Specifically, as shown in fig. 1, the main fastener 10 includes a first main body 12, a first slider portion 14, and a plurality of first engaging portions 16 spaced apart from each other, the first slider portion 14 and the plurality of first engaging portions 16 being disposed on both sides of the first main body 12; the adaptor 20 is provided with a second slide fastener part 24 which is in sliding fastening with the first slide fastener part 14; the auxiliary fastener 30 comprises a second main body 32 and a plurality of second clamping parts 36 which are spaced apart, wherein the second clamping parts 36 are arranged on one side of the second main body 32; the first main body 12 and the second main body 32 are respectively arranged at two sides of the holding pole, and the plurality of first clamping parts 16 and the plurality of second clamping parts 36 are respectively clamped on the holding pole through connection; wherein the second slider portion 24 is assembled with the first slider portion 14 from either one of both ends of the first slider portion 14.
Alternatively, the first slider portion 14 and the second slider portion 24 may be one of a slide rail and a slide groove, respectively, the first slider portion 14 and the second slider portion 24 are slidably assembled, or the first slider portion 14 and the second slider portion 24 may also be one of a guide rod and a guide hole, respectively, the first slider portion 14 and the second slider portion 24 are penetratingly assembled.
In this embodiment, the first slider portion 14 of the main fastener 10 is a sliding rail, and the second slider portion 24 of the adapter 20 is a sliding slot. The first slider portion 14 is located at a middle portion of one side of the main fastener 10, the second slider portion 24 is also located at a middle portion of one side of the adapter 20, and the first slider portion 14 and the second slider portion 24 are slidably assembled in a vertical direction.
In other embodiments, the first and second slider portions 14, 24 may also be slidingly assembled in a horizontal direction.
Referring to fig. 2 to 4 in combination, fig. 2 is a schematic structural view of the assembly of the main fastener and the adapter in the bracket assembly shown in fig. 1, fig. 3 is a schematic structural view of the main fastener in the bracket assembly shown in fig. 1, and fig. 4 is a schematic structural view of the adapter in the bracket assembly shown in fig. 1.
Further, as shown in fig. 1 and 2, the first slider portion 14 includes a first dovetail rail 140, and the second slider portion 24 includes a plurality of second dovetail rails 240 and a first dovetail rail 242, the first dovetail rail 242 being located between adjacent second dovetail rails 240. The first dovetail rail 140 may be slidably fitted into the first dovetail chute 242 in a vertical direction.
In this embodiment, as shown in fig. 3 and 4, the first slider portion 14 includes a first dovetail rail 140, and the first dovetail rail 140 is located at the middle of the first slider portion 14; the second slider portion 24 includes two second dovetail sliding rails 240 and a first dovetail sliding groove 242, the second dovetail sliding rails 240 are plate-shaped and are separately disposed on the second slider portion 24, one ends of the two second dovetail sliding rails 240 are connected by a connecting section 244, and the second dovetail sliding rails 240 and the connecting section 244 together enclose the first dovetail sliding groove 242. The first dovetail rail 140 is slidably assembled into the first dovetail groove 242, and when the main fastener 10 and the adapter 20 are assembled, the two second dovetail rails 240 are located at two sides of the first dovetail rail 140, and the connecting section 244 is propped against the upper end of the first dovetail rail 140.
In other embodiments, the second slider portion 24 may include a plurality of second dovetail rails 240 and a plurality of first dovetail slots 242, and the first slider portion 14 may also include a first dovetail rail 140 corresponding to the plurality of first dovetail slots 242.
With continued reference to fig. 2 and 3, the first slider portion 14 further includes two guide rails 142 disposed on two sides of the first dovetail rail 140, where the two guide rails 142 and one side of the first dovetail rail 140 form a second dovetail chute 144 respectively. The two second dovetail sliding grooves 144 are respectively arranged at two sides of the first dovetail sliding rail 140 and are slidably assembled with the second dovetail sliding rail 240. The height that guide rail 142 and first forked tail slide rail 140 protrude in first main part 12 is unanimous with the thickness of second forked tail slide rail 240, and when second forked tail slide rail 240 sliding fit was advanced to second forked tail spout 144, guide rail 142 and first forked tail slide rail 140 can tightly laminate second forked tail slide rail 240 in first main part 12 one side, and the setting of guide rail 142 can further let adapter 20 and main fastener 10 closely laminate convenient assembly.
The edges on both sides of the second dovetail rail 240 may be sloped edges, i.e., the edges on both sides of the second dovetail rail 240 include a first sloped edge 246 and a second sloped edge 248, respectively. The spacing between the first inclined edge 246 and the second inclined edge 248 increases gradually in the fitting direction of the first slider portion 14 and the second slider portion 24, specifically, in the direction away from the connecting section 244, the greater the spacing between the first inclined edge 246 and the second inclined edge 248. The first dovetail slide rail 140 is equipped with the third inclined edge 146 towards one side of guide rail 142, and guide rail 142 is equipped with the fourth inclined edge 148 towards one side of first dovetail slide rail 140, and third inclined edge 146 and fourth inclined edge 148 cooperate with first inclined edge 246 and second inclined edge 248 respectively, and the design on inclined edge is in order to increase the area of contact of main fastener 10 and adaptor 20 under the assembled state, gives the better holding power of adaptor 20, also can play the effect of centering, reduces rocking between main fastener 10 and the adaptor 20.
In this embodiment, the main fastener 10 is symmetrical about the center, so that there are four pairs of third inclined edges 146 and fourth inclined edges 148 which are matched one by one, and the form of the second dovetail groove 144 with the smallest space therebetween is presented, so that the adaptor 20 can be provided with better supporting force regardless of which end of the adaptor 20 is assembled into the main fastener 10 from above and below.
In other embodiments, the primary fastener 10 may be provided with only two pairs of third and fourth angled edges 146, 148, with the two pairs of angled edges being symmetrical about the first dovetail rail 140.
Further, one of the first body 12 and the adaptor 20 is provided with a positioning groove 122, and the other is provided with a positioning block 202, and the positioning block 202 can cooperate with the positioning groove 122 to define the relative positions of the first body 12 and the adaptor 20.
Specifically, with continued reference to fig. 3 and 4, the two ends of the first main body 12 are provided with the positioning grooves 122, the two positioning grooves 122 are located at the two ends of the first slider portion 14, the adaptor 20 is provided with the positioning block 202, the positioning block 202 is located at one end of the second slider portion 24, the positioning block 202 is matched with any one of the two positioning grooves 122 in a positioning manner, the two ends are provided with the positioning grooves 122, so that the main fastener 10 has a consistent vertical structure, no matter which end of the main fastener 10 faces upwards, the adaptor 20 can be assembled with the main fastener 10, the time for an operator to distinguish the installation direction of the main fastener 10 is reduced, the installation efficiency is improved, and the situation that the operator needs to be reassembled due to incorrect installation is avoided.
In this embodiment, the same positioning grooves 122 are formed at two vertically opposite ends of the first body 12, a positioning block 202 is disposed at one end of the adapter 20, and the positioning block 202 is located at the end of the sliding assembly stroke of the first slider 14 and the second slider 24. During the sliding assembly, the positioning block 202 gradually snaps into the positioning groove 122. The cooperation of the positioning block 202 and the positioning groove 122 not only can limit the positions of the first main body 12 and the adaptor 20, but also can provide a supporting force in the vertical direction for the rotation of the adaptor 20, so that the adaptor 20 can be more stably assembled on the main fastener 10.
Further, the positioning groove 122 is further provided with a fixing hole 124, the positioning block 202 is correspondingly provided with a connecting hole 204, the fastener 206 fixes the main fastener 10 and the adapter 20 through the connecting hole 204 and the fixing hole 124, and further limits the adapter 20 to the main fastener 10, and the fastener 206 can be a screw or a pin.
In other embodiments, the first slider portion 14 and the second slider portion 24 are assembled in a horizontal sliding manner, and the positioning grooves 122 may be provided on opposite ends in the horizontal direction; the first slider portion 14 and the second slider portion 24 are assembled by inserting, the positioning groove 122 can be disposed at any position on the side of the first body 12 facing the adapter 20, and the positioning block 202 is also disposed at a corresponding position on the side of the adapter 20 facing the first body 12.
Referring to fig. 5 and 6, fig. 5 is a schematic structural view of the main fastener shown in fig. 3 from another perspective, and fig. 6 is a schematic structural view of the auxiliary fastener in the bracket assembly shown in fig. 1.
The first body 12 is provided with a plurality of first through holes 126, which are arranged at two ends of the first body 12 and are symmetrical with respect to the first dovetail slide rail 140, and the second body 32 is provided with a second through hole 320 and a U-shaped opening 322 corresponding to the first through holes 126, which correspond to the positions of the first through holes 126. The bracket assembly 100 further includes a connecting member 40, where the connecting member 40 is in a rod shape and is used to pass through the second through hole 320 and the first through hole 126 corresponding to the second through hole, and the U-shaped opening 322 and the first through hole 126 corresponding to the U-shaped opening, so as to clamp and clamp the first main body 12 and the second main body 32 on two sides of the holding pole. In this embodiment, the first main body 12 is provided with two second through holes 320, and the two second through holes 320 are disposed at two ends of the first main body 12 and are symmetrical with respect to the first dovetail rail 140.
Alternatively, four or six first through holes 126 may be provided on the first body 12, and the second body 32 is provided with second through holes 320 and U-shaped openings 322 corresponding to the number of the first through holes 126, which is not particularly limited in this application.
As shown in fig. 5 and 6, the first main body 12 further includes a first clamping portion 16, the second main body 32 further includes a second clamping portion 36, the first clamping portion 16 is disposed on one side facing away from the first dovetail sliding rail 140, a plurality of first teeth portions 162 are disposed on the first clamping portion 16, a plurality of second teeth portions 362 are disposed on the second clamping portion 36, the first teeth portions 162 and the second teeth portions 362 are all arc-shaped strips attached to the outer shape of the holding pole, the first teeth portions 162 and the second teeth portions 362 are clamped on the holding pole in a matching manner, friction force between the main fastener 10 and the auxiliary fastener 30 is increased, and the main fastener and the auxiliary fastener can be clamped on the holding pole more firmly.
In the present embodiment, three first teeth 162 are disposed in parallel on the first engaging portion 16, and three second teeth 362 are disposed in parallel on the second engaging portion 36. In other embodiments, the plurality of first teeth 162 or the plurality of second teeth 362 may be mutually sloped or even intersecting.
Based on this, the present application further provides a wireless communication device, where the wireless communication device includes the stand assembly 100 as described above, and the stand assembly 100 may also be applied to other structures that need to be assembled, which is not specifically limited in this application.
Through setting up first slider portion and first card portion on main fastener, set up second slider portion on the adaptor, first slider portion all has the opening along the both ends of assembly direction, therefore second slider portion can be assembled with it from the arbitrary end of first slider portion, thereby need not to distinguish the direction of main fastener when main fastener and pole installation, just can guarantee that the adaptor must can assemble into main fastener, avoided leading to the condition emergence that the adaptor can't assemble smoothly with main fastener because of the installation direction mistake of main fastener, make the installation step simpler and more easy, workman's installation operation has also reduced workman's overhead operation's time, finally, installation effectiveness has been improved, the security of installation has also been promoted. In the actual use process, before the equipment is installed, the equipment is required to be connected with the adapter, and then the equipment is installed on the holding pole through the cooperation of the adapter and the main fastener.
The foregoing description is only exemplary embodiments of the present application, and is not intended to limit the scope of the patent application, but is intended to cover any equivalents of the structures or equivalent processes described in the specification and drawings, or any other related application, directly or indirectly, as may be included in the scope of the present application.

Claims (11)

1. A bracket assembly for mounting an external device on a pole, comprising:
the main fastener is used for being clamped on the holding pole and comprises a first main body and a first sliding buckle part, and the first sliding buckle part is arranged on one side of the first main body;
the adapter is used for being connected with the external equipment and being hung on the main fastener, and is provided with a second sliding buckle part which is in sliding buckling with the first sliding buckle part;
the two ends of the first sliding buckle part along the assembly direction are provided with openings, so that the second sliding buckle part is assembled with the first sliding buckle part from any one of the two ends of the first sliding buckle part.
2. The bracket assembly according to claim 1, wherein two ends of the first main body are further provided with positioning grooves, two positioning grooves are located at two ends of the first slide fastener portion, the adaptor is further provided with a positioning block, the positioning block is disposed at one end of the second slide fastener portion, and the positioning block is in positioning fit with any one of the two positioning grooves.
3. The bracket assembly of claim 2, wherein the locating block is further secured to the first body by a fastener.
4. The bracket assembly of claim 1, wherein the first slider portion comprises a first dovetail rail and the second slider portion comprises a first dovetail runner, the first dovetail rail and the first dovetail runner being slidably assembled.
5. The bracket assembly of claim 4, wherein the first slider portion further comprises two guide rails respectively arranged at two sides of the first dovetail slide rail, and the two guide rails respectively form a second dovetail slide groove with one side of the first dovetail slide rail;
the second slide fastener part comprises two second dovetail slide rails which are matched to form the first dovetail slide groove;
the second dovetail sliding rail is assembled with the second dovetail sliding groove in a sliding mode.
6. The bracket assembly of claim 5, wherein edges on both sides of the second dovetail rail include a first inclined edge and a second inclined edge, respectively, and a distance between the first inclined edge and the second inclined edge increases gradually along an assembling direction of the first slider portion and the second slider portion;
the first dovetail sliding rail is provided with a third inclined edge towards one side of the guide rail, the guide rail is provided with a fourth inclined edge towards one side of the first dovetail sliding rail, and the third inclined edge and the fourth inclined edge are respectively matched with the first inclined edge and the second inclined edge.
7. The bracket assembly of claim 1, further comprising a secondary fastener, the primary fastener and the secondary fastener cooperatively clamped to the pole;
the auxiliary fastener comprises a second main body and second clamping parts which are spaced apart, and the second clamping parts are arranged on one side of the second main body;
the main fastener further comprises a first clamping part, and the first sliding buckle part and the first clamping part are arranged on two sides of the first main body;
under the state of being assembled with the holding pole, the first main body and the second main body are respectively arranged on two sides of the holding pole, and the first clamping part and the second clamping part are respectively clamped with the holding pole and clamped on the holding pole through connection.
8. The bracket assembly of claim 7, wherein the first clamping portion is provided with a plurality of first teeth, the second clamping portion is provided with a plurality of second teeth, and the plurality of first teeth and the plurality of second teeth are cooperatively clamped on the pole.
9. The bracket assembly of claim 7 further comprising a connector connected between the first body and the second body.
10. The bracket assembly of claim 9, wherein the first body is provided with two first through holes, and the second body is provided with a second through hole and a U-shaped opening;
the connecting piece comprises two connecting rods, wherein one connecting rod is connected with one first through hole and one second through hole, and the other connecting rod is connected with the other first through hole and the U-shaped opening.
11. A wireless communication device comprising a wireless means and a bracket assembly as claimed in any one of claims 1 to 10, wherein the wireless means is connected to the adaptor and to the primary fastener via the adaptor.
CN202222789718.6U 2022-10-20 2022-10-20 Wireless communication equipment and bracket assembly thereof Active CN219177397U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222789718.6U CN219177397U (en) 2022-10-20 2022-10-20 Wireless communication equipment and bracket assembly thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222789718.6U CN219177397U (en) 2022-10-20 2022-10-20 Wireless communication equipment and bracket assembly thereof

Publications (1)

Publication Number Publication Date
CN219177397U true CN219177397U (en) 2023-06-13

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222789718.6U Active CN219177397U (en) 2022-10-20 2022-10-20 Wireless communication equipment and bracket assembly thereof

Country Status (1)

Country Link
CN (1) CN219177397U (en)

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