CN215263648U - 5G test signal shielding box convenient for antenna installation - Google Patents

5G test signal shielding box convenient for antenna installation Download PDF

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Publication number
CN215263648U
CN215263648U CN202121334251.5U CN202121334251U CN215263648U CN 215263648 U CN215263648 U CN 215263648U CN 202121334251 U CN202121334251 U CN 202121334251U CN 215263648 U CN215263648 U CN 215263648U
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CN
China
Prior art keywords
signal shielding
sliding block
sliding
rack
shielding main
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Expired - Fee Related
Application number
CN202121334251.5U
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Chinese (zh)
Inventor
付芳杰
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Suzhou Feiliman Measurement And Control Technology Co ltd
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Suzhou Weiliduo Measurement And Control Technology Co ltd
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Priority to CN202121334251.5U priority Critical patent/CN215263648U/en
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Publication of CN215263648U publication Critical patent/CN215263648U/en
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Abstract

The utility model discloses a 5G test signal shielding box convenient for antenna installation, which comprises a signal shielding main body and an installation unit; the installation unit includes sliding tray one, sliding block one, semicircular clamping groove, rack and power component, sliding tray one has been seted up along the left and right directions in the upside middle part of signal shielding main part, sliding block one is provided with two, a sliding block fixed connection is at the inside right-hand member of sliding tray one, another sliding block sliding connection is at the inside right-hand member of sliding tray one, semicircular clamping groove has been seted up respectively to the inboard of two sliding block one, the front side of the sliding block one of left end is provided with the rack, drive the slip of rack under power component's effect, slide through the rack and drive the inside slip of left end sliding block one at sliding tray one, realize the cooperation between two sliding blocks one through the slip that makes left end sliding block one and connect to realize the tight fixed action of clamp to the antenna under semicircular clamping groove's effect.

Description

5G test signal shielding box convenient for antenna installation
Technical Field
The utility model relates to a 5G test signal shielded cell technical field specifically is a 5G test signal shielded cell of easy to assemble antenna.
Background
The shielding box is a metal body which is made of conductive or magnetic conductive materials and has various shapes, limits the electromagnetic capacity in a certain space range and is used for inhibiting radiation interference. The conduction and the radiation are processed to realize equipment for providing an interference-free testing environment for the tested wireless communication equipment;
the 5G test signal shielding box convenient for antenna installation, which is provided with application number 202021151469.2 in the prior art, comprises a shielding box body and a signal test device arranged in the shielding box body, wherein the signal test device comprises a mobile phone tray, a support, a 5G low-frequency band antenna and a 5G high-frequency band antenna;
although a 5G multi-stream UE test shielding box in the prior art well realizes the test of the 5G test signal shielding box on signals, the installation of the antenna is not perfect, and the effect of quick disassembly and installation cannot be realized, so that a 5G test signal shielding box convenient for antenna installation is provided.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to overcome current defect, a 5G test signal shielded cell of easy to assemble antenna is provided, the slip of drive rack under power component's effect, the slip through the rack drives left end sliding block one and slides in the inside of sliding tray one, realize the cooperation between two sliding blocks through the slip that makes left end sliding block one and connect to realize the tight fixed action of clamp to the antenna under semicircular groove's effect, can effectively solve the problem in the background art.
In order to achieve the above object, the utility model provides a following technical scheme: A5G test signal shielding box convenient for antenna installation comprises a signal shielding main body and an installation unit;
an installation unit: include sliding tray one, sliding block one, semicircular groove, rack and power component, sliding tray one has been seted up along the left and right sides direction in the upside middle part of signal shielding main part, sliding block one is provided with two, a sliding block fixed connection at the inside right-hand member of sliding tray one, and another sliding block sliding connection is at the inside right-hand member of sliding tray one, and semicircular groove has been seted up respectively to the inboard of two sliding blocks one, and the front side of sliding block one of left end is provided with the rack, the rack is connected with the power component cooperation.
The sliding of the rack is driven under the action of the power assembly, the sliding of the rack drives the first left-end sliding block to slide in the first sliding groove, the first left-end sliding block slides to realize matching connection between the first two sliding blocks, and therefore clamping and fixing effects on the antenna are achieved under the action of the semicircular clamping groove.
Further, power component includes square groove, axis of rotation and rotating gear, the square groove has been seted up to the upside front end of signal shielding main part, the upper and lower both ends side of axis of rotation is rotated with the inside upper and lower both sides in square groove respectively and is connected, the middle part side fixedly connected with rotating gear of axis of rotation, the meshing is connected between rotating gear and the rack.
The rotation of the rotating gear is driven by the rotation of the rotating shaft, and the rack is driven to slide by the rotation of the rotating gear under the meshing connection effect between the rotating gear and the rack.
Further, power component still includes arc fixed block and motor, the motor passes through arc fixed block fixed connection at the upside front end of signal shielding main part, the output shaft of motor and the upper end fixed connection of axis of rotation, the input of motor is connected through the output electricity of external control switch with external power source.
The output shaft of the motor is rotated under the action of an external power supply, and the rotation of the rotating shaft is driven by the rotation of the output shaft of the motor.
The signal shielding device comprises a signal shielding main body, and is characterized by further comprising a supporting unit, a bottom plate and a supporting component, wherein the supporting component is connected to the front side, the rear side, the left side and the right side of the signal shielding main body in a matched mode, the bottom plate is connected to the lower end of the signal shielding main body in a matched mode through the supporting component, and the bottom plate plays a role in supporting the bottom of the signal shielding main body under the effect of the supporting component.
Furthermore, the supporting component comprises a first movable shaft, a first connecting rod, a second movable shaft, a second connecting rod and a pin shaft, wherein the first connecting rod is provided with four ends, one ends of the first four connecting rods are movably connected to the middle parts of the lower ends of the front, back, left and right sides of the signal shielding main body through the first movable shaft respectively, the second connecting rod is provided with four ends, one ends of the second four connecting rods are movably connected to the middle parts of the front, back, left and right sides of the bottom plate through the second movable shaft respectively, and the first connecting rod and the second connecting rod which are on the same side are movably connected through the pin shaft.
The first connecting rod moves up and down through the movable connection between the first movable shaft and the first connecting rod, the second connecting rod moves up and down through the movable connection between the second connecting rod and the second movable shaft, the first connecting rod and the second connecting rod are movably connected through the pin shaft, and the position between the bottom plate and the lower side of the signal shielding main body is adjusted by pulling the bottom plate.
Further, still include the chucking unit, the chucking unit includes sliding tray two, sliding block two, handle and tooth, the front side middle part at the signal shielding main part is seted up along upper and lower direction to sliding tray two, the inside sliding connection of sliding tray two has sliding block two, the front end of sliding block two is provided with the handle, the left end of the connecting rod one of signal shielding main part front side evenly is provided with a row of tooth, the cooperation is connected between the lower extreme of sliding block two and the tooth.
The second sliding block slides in the second sliding groove by pulling the handle, and the lower end of the second sliding block is connected with the teeth in a matched mode to fix the position between the bottom plate and the lower side of the signal shielding main body.
Compared with the prior art, the beneficial effects of the utility model are that: this 5G test signal shielded cell of easy to assemble antenna has following benefit:
1. the 5G test signal shielding box convenient for mounting the antenna is provided with a clamping unit, a second sliding block slides in a second sliding groove by pulling a handle, and the lower end of the second sliding block is matched and connected with the teeth to fix the position between the bottom plate and the lower side of the signal shielding main body;
2. the 5G test signal shielding box convenient for mounting the antenna is provided with a mounting unit, an output shaft of a motor is rotated under the action of an external power supply, a rotating shaft is driven to rotate through the rotation of the output shaft of the motor, so that a rotating gear is driven to rotate, and a rack is driven to slide through the rotation of the rotating gear;
3. the sliding of the rack is driven under the action of the power assembly, the sliding of the rack drives the first left-end sliding block to slide in the first sliding groove, the first left-end sliding block slides to realize matching connection between the first two sliding blocks, and therefore clamping and fixing effects on the antenna are achieved under the action of the semicircular clamping groove.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of a partial enlarged structure at A in FIG. 1 according to the present invention;
fig. 3 is a schematic view of a part of the enlarged structure at B in fig. 2 according to the present invention.
In the figure: the signal shielding device comprises a signal shielding main body 1, a mounting unit 2, a first sliding groove 21, a first sliding block 22, a semicircular clamping groove 23, a rack 24, a square groove 25, a rotating shaft 26, a rotating gear 27, an arc-shaped fixed block 28, a motor 29, a supporting unit 3, a bottom plate 31, a first movable shaft 32, a first connecting rod 33, a second movable shaft 34, a second connecting rod 35, a pin shaft 36, a clamping unit 4, a second sliding groove 41, a second sliding block 42, a handle 43 and teeth 44.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3, the present embodiment provides a technical solution: A5G test signal shielding box convenient for antenna installation comprises a signal shielding main body 1 and an installation unit 2;
the mounting unit 2: include sliding tray one 21, sliding block one 22, semicircular clamping groove 23, rack 24 and power component, sliding tray one 21 has been seted up along the left right direction in the upside middle part of signal shielding main part 1, sliding block one 22 is provided with two, a sliding block one 22 fixed connection is at the inside right-hand member of sliding tray one 21, another sliding block one 22 sliding connection is at the inside right-hand member of sliding tray one 21, semicircular clamping groove 23 has been seted up respectively to two sliding block one 22's inboard, the front side of the sliding block one 22 of left end is provided with rack 24, rack 24 is connected with the power component cooperation.
The rack 24 is driven to slide under the action of the power assembly, the left-end sliding block I22 is driven to slide in the sliding groove I21 through the sliding of the rack 24, the sliding of the left-end sliding block I22 is matched and connected between the two sliding blocks I22, and therefore the clamping and fixing effect on the antenna is achieved under the action of the semicircular clamping groove 23.
Power component includes square groove 25, axis of rotation 26 and rotating gear 27, and square groove 25 has been seted up to the upside front end of signal shielding main part 1, and the upper and lower both ends side of axis of rotation 26 rotates with the inside upper and lower both sides of square groove 25 respectively to be connected, and the middle part side fixedly connected with rotating gear 27 of axis of rotation 26 meshes between rotating gear 27 and the rack 24 and is connected.
The rotation of the rotating gear 27 is driven by the rotation of the rotating shaft 26, and the sliding of the rack 24 is driven by the rotation of the rotating gear 27 under the meshing connection between the rotating gear 27 and the rack 24.
The power assembly further comprises an arc-shaped fixing block 28 and a motor 29, the motor 29 is fixedly connected to the front end of the upper side of the signal shielding main body 1 through the arc-shaped fixing block 28, an output shaft of the motor 29 is fixedly connected to the upper end of the rotating shaft 26, and an input end of the motor 29 is electrically connected to an output end of an external power supply through an external control switch.
The output shaft of the motor 29 is rotated by the external power source, and the rotation of the output shaft of the motor 29 drives the rotation of the rotation shaft 26.
Still include supporting element 3, bottom plate 31 and supporting component, the supporting component cooperation is connected at four sides all around of signal shielding main part 1, and bottom plate 31 passes through the supporting component cooperation to be connected at the lower extreme of signal shielding main part 1, makes bottom plate 31 play the supporting role to signal shielding main part 1 bottom under supporting component's effect.
The supporting component comprises a first movable shaft 32, a first connecting rod 33, a second movable shaft 34, a second connecting rod 35 and a pin shaft 36, wherein the first connecting rod 33 is four, one end of each of the first four connecting rods 33 is movably connected to the middle of the lower end of the front side, the rear side, the left side and the right side of the signal shielding main body 1 through the first movable shaft 32, the second connecting rod 35 is four, one end of each of the second four connecting rods 35 is movably connected to the middle of the front side, the rear side, the left side and the right side of the bottom plate 31 through the second movable shaft 34, and the first connecting rod 33 and the other end of the second connecting rod 35 on the same side are movably connected through the pin shaft 36.
The vertical movement of the first connecting rod 33 is realized through the movable connection between the first movable shaft 32 and the first connecting rod 33, the vertical movement of the second connecting rod 35 is realized through the movable connection between the second connecting rod 35 and the second movable shaft 34, the movable connection between the first connecting rod 33 and the second connecting rod 35 is realized through the pin shaft 36, and the position between the bottom plate 31 and the lower side of the signal shielding main body 1 is adjusted by pulling the bottom plate 31.
Still include chucking unit 4, chucking unit 4 includes sliding tray two 41, two sliding blocks 42, handle 43 and tooth 44, and sliding tray two 41 are seted up at the front side middle part of signal shielding main part 1 along the up-down direction, and the inside sliding connection of sliding tray two 41 has two sliding blocks 42, and the front end of sliding block two 42 is provided with handle 43, and the left end of connecting rod one 33 of signal shielding main part 1 front side evenly is provided with a row of tooth 44, and the cooperation is connected between the lower extreme of sliding block two 42 and the tooth 44.
The second sliding block 42 slides in the second sliding groove 41 by pulling the handle 43, and the lower end of the second sliding block 42 is connected with the teeth 44 in a matching manner to fix the position between the bottom plate 31 and the lower side of the signal shielding main body 1.
The utility model provides a pair of 5G test signal shielded cell of easy to assemble antenna's theory of operation as follows:
the output shaft of the motor 29 is rotated under the action of an external power supply, the rotation of the output shaft of the motor 29 drives the rotation of the rotating shaft 26, the rotation of the rotating gear 27 is driven by the rotation of the output shaft of the motor 29, the rotation of the rotating gear 27 drives the sliding of the rack 24, the sliding of the left-end sliding block 22 in the sliding groove 21 is driven by the sliding of the rack 24, the matching connection between the two sliding blocks 22 is realized by the sliding of the left-end sliding block 22, so that the clamping and fixing action on the antenna is realized under the action of the semicircular clamping groove 23, the up-and-down movement of the connecting rod 33 is realized by the movable connection between the movable shaft I32 and the connecting rod I33, the up-and-down movement of the connecting rod II 35 is realized by the movable connection between the connecting rod II 35 and the movable connection between the connecting rod II 35 through the pin shaft 36, the position between the bottom plate 31 and the lower side of the signal shielding main body 1 is adjusted by pulling the bottom plate 31, the second sliding block 42 slides in the second sliding groove 41 by pulling the handle 43, and the position between the bottom plate 31 and the lower side of the signal shielding main body 1 is fixed by matching and connecting the lower end of the second sliding block 42 and the teeth 44.
It should be noted that the signal shielding main body 1 disclosed in the above embodiments is selected as the CBox-05 RF testing shielding box, the motor 29 is selected as the servo motor, and the control switch controls the signal shielding main body 1 and the motor 29 to operate by a method commonly used in the prior art.
The above only is the embodiment of the present invention, not limiting the scope of the present invention, all the equivalent structures or equivalent processes of the present invention are used in the specification and the attached drawings, or directly or indirectly applied to other related technical fields, and the same principle is included in the protection scope of the present invention.

Claims (6)

1. The utility model provides a 5G test signal shielded cell of easy to assemble antenna which characterized in that: comprises a signal shielding main body (1) and a mounting unit (2);
mounting unit (2): include sliding tray (21), sliding block (22), semicircular clamping groove (23), rack (24) and power component, sliding tray (21) have been seted up along left right direction in the upside middle part of signal shielding main part (1), sliding block (22) are provided with two, and a sliding block (22) fixed connection is at the inside right-hand member of sliding tray (21), and semicircular clamping groove (23) have been seted up respectively to the inside right-hand member of another sliding block (22) sliding connection in sliding tray (21), two sliding block (22), and the front side of sliding block (22) of left end is provided with rack (24), rack (24) are connected with the power component cooperation.
2. The 5G test signal shielding box convenient for antenna installation of claim 1, wherein: the power assembly includes square groove (25), axis of rotation (26) and rotating gear (27), square groove (25) have been seted up to the upside front end of signal shielding main part (1), the upper and lower both ends side of axis of rotation (26) is rotated with the inside upper and lower both sides of square groove (25) respectively and is connected, the middle part side fixedly connected with rotating gear (27) of axis of rotation (26), the meshing is connected between rotating gear (27) and rack (24).
3. The 5G test signal shielding box convenient for antenna installation of claim 2, wherein: the power component still includes arc fixed block (28) and motor (29), motor (29) pass through arc fixed block (28) fixed connection at the upside front end of signal shielding main part (1), the upper end fixed connection of the output shaft of motor (29) and axis of rotation (26), the input of motor (29) is connected through the output electricity of external control switch with external power source.
4. The 5G test signal shielding box convenient for antenna installation of claim 1, wherein: the signal shielding device is characterized by further comprising a supporting unit (3), a bottom plate (31) and supporting components, wherein the supporting components are connected to the front side, the rear side, the left side and the right side of the signal shielding main body (1) in a matched mode, and the bottom plate (31) is connected to the lower end of the signal shielding main body (1) in a matched mode through the supporting components.
5. The 5G test signal shielding box convenient for antenna installation of claim 4, wherein: the supporting component comprises a first movable shaft (32), a first connecting rod (33), a second movable shaft (34), a second connecting rod (35) and a pin shaft (36), wherein the first connecting rod (33) is provided with four ends, one ends of the first four connecting rods (33) are respectively movably connected to the lower end middle parts of the front, back, left and right sides of the signal shielding main body (1) through the first movable shaft (32), the second connecting rods (35) are provided with four ends, one ends of the second four connecting rods (35) are respectively movably connected to the middle parts of the front, back, left and right sides of the bottom plate (31) through the second movable shaft (34), and the first connecting rods (33) and the other ends of the second connecting rods (35) on the same side are movably connected through the pin shaft (36).
6. The 5G test signal shielding box convenient for antenna installation of claim 5, wherein: still include chucking unit (4), chucking unit (4) include sliding tray two (41), two (42) of sliding block, handle (43) and tooth (44), the front side middle part at signal shielding main part (1) is seted up along upper and lower direction in sliding tray two (41), the inside sliding connection of sliding tray two (41) has two (42) of sliding block, the front end of two (42) of sliding block is provided with handle (43), the left end of the connecting rod (33) of signal shielding main part (1) front side evenly is provided with a row of tooth (44), the cooperation is connected between the lower extreme of two (42) of sliding block and tooth (44).
CN202121334251.5U 2021-06-16 2021-06-16 5G test signal shielding box convenient for antenna installation Expired - Fee Related CN215263648U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121334251.5U CN215263648U (en) 2021-06-16 2021-06-16 5G test signal shielding box convenient for antenna installation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121334251.5U CN215263648U (en) 2021-06-16 2021-06-16 5G test signal shielding box convenient for antenna installation

Publications (1)

Publication Number Publication Date
CN215263648U true CN215263648U (en) 2021-12-21

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ID=79480065

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121334251.5U Expired - Fee Related CN215263648U (en) 2021-06-16 2021-06-16 5G test signal shielding box convenient for antenna installation

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114665985A (en) * 2022-03-03 2022-06-24 深圳市百泰实业股份有限公司 5G test shielding box

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114665985A (en) * 2022-03-03 2022-06-24 深圳市百泰实业股份有限公司 5G test shielding box
CN114665985B (en) * 2022-03-03 2023-08-04 深圳市百泰实业股份有限公司 5G test shielding box

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Date Code Title Description
GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20230707

Address after: Room 1702-15, building 1, rice Internet Industrial Park, No. 399 Xiarong street, East Taihu ecotourism Resort (Taihu new town), Wujiang District, Suzhou City, Jiangsu Province 215000

Patentee after: Suzhou Feiliman Measurement and Control Technology Co.,Ltd.

Address before: 215000 Room 201, second floor, building 3, No. 2, zone 3, No. 20, Datong Road, high tech Zone, Suzhou, Jiangsu Province

Patentee before: Suzhou weiliduo measurement and Control Technology Co.,Ltd.

TR01 Transfer of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20211221