Support for wireless communication device

By designing a support body for a wireless communication device including a fixed part, a rotating part and an elastic component, the space utilization problem and joint impact problems caused by the increase in the number of MIMO antennas are solved, and the flexible adjustment and impact absorption of the device are realized.

CN222880810UActive Publication Date: 2025-05-16KMW INC
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Patent Information

Application Number
CN202421465088.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2023-07-05
Filing Date
2024-06-25
Publication Date
2025-05-16
Estimated Expiration
2034-06-25

AI Technical Summary

Technical Problem

With the development of 5G communication technology, the number of MIMO antennas has increased, resulting in an increase in the number of transmitters and filters. A miniaturized support is required to facilitate the installation and maximize space utilization, and a method is needed to absorb or eliminate impacts caused by joint parts.

Method used

A support body for wireless communication device is designed, the support body including a fixed part, a main body part, a rotating part, a bracket part and an elastic member. Through the design of the rotating part and the bracket part driven by the motor, the position and direction of the wireless communication device can be adjusted, and the impact can be absorbed through the elastic members.

Benefits of technology

The function of setting the wireless communication device on the support rod is realized, the position and direction of the device can be adjusted, and the impact generated by the joint part of the support body is eliminated, thereby extending the service life of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a support body for a wireless communication device. According to one embodiment of the present disclosure, provided is a support body for a wireless communication device, the support body for fixing the wireless communication device to a support bar, the support body comprising: a fixing part having one end fixed to the support bar; a main body part connected to the other end of the fixed part and including a rotating part rotated by a motor; a holder part which is connected to the rotating part, rotates about the rotating part, and is connected to the wireless communication device; the support part is used for supporting the rotating part, the elastic component is used for absorbing impact, the rotating part comprises a containing groove formed in one side, the support part comprises a protruding part formed in one side, the protruding part is arranged on the inner side of the containing groove and has the shape corresponding to that of the containing groove, and the elastic component is arranged between the containing groove and the protruding part.
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Description

Technical Field

[0001] The present disclosure relates to a support body for a wireless communication device. Background Art

[0002] The contents described in this section are merely used to provide background information for the present disclosure and do not constitute prior art.

[0003] Wireless communication devices, such as antennas, are usually placed on the roof or walls of buildings. This arrangement is to maximize the signal propagation range and minimize interference between devices.

[0004] MIMO (Multiple Input Multiple Output) technology used in transceivers improves data transmission performance by using multiple antennas. As the number of transceiver antennas increases, the channel capacity increases, allowing more data to be transmitted. For example, if the number of antennas increases 10 times, the channel capacity can be ensured to be approximately 10 times greater than when a single antenna is used.

[0005] For 4G LTE-advanced, 8 antennas can be used. For 5G, 64 or 128 antennas can be used. As mentioned above, with the commercialization of 5G and the development of communication technology, the number of antennas used is also showing an increasing trend.

[0006] As the number of antennas increases, the number of transmitters and filters in Massive MIMO technology also increases. When MIMO antennas are installed in a limited space, they need to be miniaturized for ease of installation and maximum space utilization.

[0007] The wireless communication device has an optimal angle and arrangement when sending and receiving wireless signals. For example, when the antenna needs to be set on a support pole, a wireless communication device supporter that can adjust the position and direction of the antenna can be used. The wireless communication device supporter may include a portion for setting the wireless communication device and a portion for fixing to the support pole. The wireless communication device supporter may include a joint portion for adjusting the position and direction of the wireless communication device, and the joint portion may be damaged due to repeated use. A method for absorbing or eliminating the impact generated by the joint portion is required in the wireless communication device supporter. Utility Model Content

[0008] 1. Technical issues to be resolved

[0009] Therefore, in order to solve the above-mentioned problem, the present disclosure provides a support body for setting a wireless communication device on a support pole.

[0010] In addition, a main object of the present disclosure is to provide a support body capable of adjusting the position and direction of a wireless communication device.

[0011] In addition, the main purpose of the present disclosure is to provide a method for absorbing or eliminating the impact generated by the joint part of the support body.

[0012] (II) Technical solution

[0013] In order to achieve the above-mentioned purpose, according to one embodiment of the present disclosure, there is provided a support body for a wireless communication device, which is used to fix the wireless communication device on a support pole, and the support body includes: a fixing part, one end of which is fixed to the support pole; a main body, which is connected to the other end of the fixing part and includes a rotating part that rotates based on a motor; a bracket part, which is connected to the rotating part and rotates around the rotating part, and is connected to the wireless communication device; and an elastic component, which is used to absorb impact, the rotating part includes a receiving groove formed on one side, the bracket part includes a protruding part formed on one side, the protruding part is arranged on the inner side of the receiving groove and has a shape corresponding to the receiving groove, and the elastic component is arranged between the receiving groove and the protruding part.

[0014] In order to achieve the above-mentioned purpose, according to one embodiment of the present disclosure, a support body for a wireless communication device is provided, which is used to fix the wireless communication device on a support rod, and the support body includes: a fixing part, one end of which is fixed to the support rod; a main body, which is connected to the other end of the fixing part and includes a rotating part based on the rotation of a motor; a bracket part, which is connected to the rotating part and rotates around the rotating part, and is connected to the wireless communication device; an elastic ring, which is arranged on the inner side of the bracket part and is used to absorb impact; and a bolt, which is used to pass through the bracket part and the elastic ring, the rotating part includes a seating part formed on one side, the bracket part includes a sliding part formed on one side, the sliding part has a shape corresponding to the seating part and is arranged on the seating part, and the bolt and the rotating part are bolted to each other.

[0015] (III) Beneficial effects

[0016] As described above, according to the present embodiment, the wireless communication device support body has the effect of being able to install the wireless communication device on the support pole.

[0017] In addition, there is an effect that the position and direction of the wireless communication device can be adjusted.

[0018] In addition, there is an effect of being able to eliminate the impact generated in the rotating part and the bracket part of the wireless communication device support body. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 1 is a perspective view of a support body for a wireless communication device according to a first embodiment of the present disclosure.

[0020] Figure 2 1 is an exploded perspective view of a support body for a wireless communication device according to a first embodiment of the present disclosure.

[0021] Figure 3 is a perspective view of a rotating portion according to a first embodiment of the present disclosure.

[0022] Figure 4 is a cross-sectional view of a support body for a wireless communication device according to a first embodiment of the present disclosure.

[0023] Figure 5 It is a perspective view of a support body for a wireless communication device according to a second embodiment of the present disclosure.

[0024] Figure 6 It is an exploded perspective view of a support body for a wireless communication device according to a second embodiment of the present disclosure.

[0025] Figure 7 is a perspective view of a rotating portion according to a second embodiment of the present disclosure.

[0026] Figure 8 4 is a cross-sectional view of a support body for a wireless communication device according to a second embodiment of the present disclosure.

[0027] Figure 9a and Figure 9b 2 is a schematic diagram of the movement of the sliding part according to the second embodiment of the present disclosure.

[0028] Description of reference numerals:

[0029] 100: wireless communication device support 110: fixing portion

[0030] 130: Main body 160: Bracket

[0031] 210: Rotating part 211: Accommodating groove

[0032] 212: first surface 213: inner circumferential surface

[0033] 215: Ring 220: Rotating disk

[0034] 221: protrusion 230: elastic member

[0035] 223: First supporting member 224: Second supporting member

[0036] 250: Gear box 251: Motor

[0037] 270: Housing 500: Support body for wireless communication device

[0038] 510: fixing part 530: main body

[0039] 560: bracket part 610: rotating part

[0040] 611: seating portion 612: first surface

[0041] 613: Second surface 614: Inclined surface

[0042] 616: hole 620: rotating disk

[0043] 621: Sliding part 630: Elastic ring

[0044] 680: Bolt DETAILED DESCRIPTION

[0045] Below, some embodiments of the present disclosure are described in detail through the accompanying drawings. When assigning reference numerals to the components in the accompanying drawings, the same reference numerals are used as much as possible for the same components even when they are marked in another drawing. Moreover, in the process of describing the present disclosure, if it is considered that the detailed description of the relevant known structure or function will confuse the main purpose of the present disclosure, its detailed description will be omitted.

[0046] In the process of describing the components of the present invention, symbols such as first, second, A), B), (a), (b) etc. may be used. The symbols are only used to distinguish the component from other components, and the symbols cannot limit the nature, order or sequence of the corresponding components.

[0047] When a certain constituent element is described as being “connected”, “combined” or “in contact with” another constituent element, it should be understood that the certain constituent element is directly connected or in contact with the other constituent element, and also includes the situation where the two are “connected with”, “combined with” or “in contact with” another constituent element.

[0048] Throughout the entire specification, if a constituent element “includes” or “has” another constituent element, unless otherwise specifically stated, it can be understood that the one constituent element also includes the other constituent element rather than that the one constituent element excludes the other constituent element.

[0049] The terms “unit”, “module”, etc. described in the specification refer to a unit capable of performing at least one function, which may be implemented by hardware, software, or a combination of hardware and software.

[0050] It should be noted that, unless otherwise stated, the description of any one embodiment is also applicable to another embodiment.

[0051] The following description of the present invention given with reference to the accompanying drawings is intended to describe exemplary embodiments of the present invention, rather than to provide the only embodiment for implementing the present invention.

[0052] Figure 1 1 is a perspective view of a support body for a wireless communication device according to a first embodiment of the present disclosure.

[0053] Figure 2 1 is an exploded perspective view of a support body for a wireless communication device according to a first embodiment of the present disclosure.

[0054] Figure 3 is a perspective view of a rotating portion according to a first embodiment of the present disclosure.

[0055] Figure 4 is a cross-sectional view of a support body for a wireless communication device according to a first embodiment of the present disclosure.

[0056] Reference Figures 1 to 4 According to the first embodiment of the present disclosure, the supporter for wireless communication apparatus 100 is combined with a support pole 195 and fixed in position. A wireless communication apparatus 197 is connected to one side of the supporter for wireless communication apparatus 100. The supporter for wireless communication apparatus 100 includes a rotating part 210 described later, so that the position and angle of the wireless communication apparatus 197 can be adjusted. The supporter for wireless communication apparatus 100 includes an elastic member 230 described later, so that impact can be absorbed.

[0057] The wireless communication device support body 100 may include a fixing unit 110 (fixing unit), a body unit 130 (body unit), a bracket unit 160 (bracket unit), and a plurality of elastic members 230 (elastic members).

[0058] One end of the fixing portion 110 may be combined with the support rod 195. The other end of the fixing portion 110 may be combined with the main body 130. The fixing portion 110 may be arranged between the support rod 195 and the main body 130. The fixing portion 110 may play a role in connecting the support rod 195 and the main body 130. The shape of the fixing portion 110 is not limited to the shape shown in the drawings. Any shape that can be combined with the support rod 195 may be used as the shape of the fixing portion 110. Any shape that can be combined with the main body 130 may be used as the shape of the fixing portion 110.

[0059] The main body 130 plays a role in rotating the bracket 160 described later. The main body 130 can be combined with the fixing part 110. The main body 130 can be combined with the bracket 160. The main body 130 may include a housing 270 (housing), a plurality of ring members 215 (ring members), a rotation unit 210 (rotation unit), a motor 251 (motor) and a gear box 250 (gear box).

[0060] The housing 270 may form the outer shape of the main body 130. The housing 270 may contain a plurality of components. The housing 270 may include a first housing 270A and a second housing 270B. The first housing 270A and the second housing 270B may have different shapes from each other. The shape of the housing 270 is not limited to the shape shown in the drawings.

[0061] The motor 251 is arranged inside the housing 270. The motor 251 provides power to drive the rotating part 210 to rotate. The motor 251 transmits power to the gear box 250, and the gear box 250 drives the rotating part 210 to rotate. The gear box 250 may include a plurality of worm and worm gears. The gear box 250 contacts the rotating part 210.

[0062] The plurality of ring members 215 may be arranged to surround the outer circumferential surface of the rotating part 210. The plurality of ring members 215 may support the rotating part 210. The plurality of ring members 215 assist the rotation of the rotating part 210. According to one embodiment, the plurality of ring members 215 may include a first ring member 215A to a third ring member 215C. The shape and arrangement of the plurality of ring members 215 are not limited to those shown in the drawings.

[0063] The rotating part 210 and the bracket part 160 may be connected to each other. Specifically, the receiving groove 211 formed on the rotating part 210 and the protruding part 221 formed on the bracket part 160 may be connected to each other. The receiving groove 211 and the protruding part 221 will be described later.

[0064] The rotating part 210 can rotate the bracket part 160. The rotating part 210 can rotate based on the motor 251. The rotating part 210 rotates around the rotation center axis R1 (axis of rotation). The rotating part 210 is arranged inside the housing 270. The arrangement and shape of the rotating part 210 are not limited to those shown in the drawings.

[0065] The rotating part 210 may include a reception groove 211 formed on one side. The reception groove 211 may be located at both ends of the rotating part 210. The rotating part 210 may include a plurality of reception grooves 211. The reception groove 211 may have a shape corresponding to the protrusion 221 and / or the elastic member 230 described later. The central portion of the reception groove 211 may include a first surface 212. The first surface 212 may be a plane perpendicular to the rotation center axis R1. The reception groove 211 may include a plurality of inner circumferential surfaces 213. The plurality of inner circumferential surfaces 213 may be formed to be inclined with respect to the rotation center axis R1. In this case, the plurality of inner circumferential surfaces 213 may have a certain inclination.

[0066] The rotating portion 210 may include a first acceptance groove 211A at one end and a second acceptance groove 211B at the other end. The first acceptance groove 211A and the second acceptance groove 211B may have the same shape as each other.

[0067] The elastic member 230 and the protrusion 221 may be disposed inside the receiving groove 211. In this case, the elastic member 230 may be disposed between the receiving groove 211 and the protrusion 221.

[0068] The bracket portion 160 may be combined with the main body portion 130. The bracket portion 160 may be combined with the wireless communication device 197. The bracket portion 160 may rotate around the rotating portion 210. The bracket portion 160 receives power from the rotating portion 210 and rotates. When the bracket portion 160 rotates, the position and angle of the wireless communication device 197 combined with the bracket portion 160 will change. The shape of the bracket portion 160 is not limited to the shape shown in the drawings.

[0069] The bracket part 160 may include a plurality of rotation plates 220 (rotation plates) that rotate based on the rotating part 210. The plurality of rotation plates 220 may include a first rotation plate 220A (first rotation plate) and a second rotation plate 220B (second rotation plate). The bracket part 160 may include a first support member 223 (first support member) and a second support member 224 (second support member). The first support member 223 and the second support member 224 may be arranged between the first rotation plate 220A and the second rotation plate 220B. The shapes of the first support member 223 and the second support member 224 are not limited to those shown in the drawings.

[0070] The bracket portion 160 may include a protrusion portion 221 (protrusion portion) formed on one side. The protrusion portion 221 may extend and be formed from the rotating disk 220 to one side of the rotating portion 210. The bracket portion 160 may include a plurality of protrusion portions 221. The plurality of protrusion portions 221 may include a pair of protrusion portions 221. For example, the first rotating disk 220A may include a first protrusion portion 221A (first protrusion portion). The second rotating disk 220B may include a second protrusion portion 221B (second protrusion portion). The first protrusion portion 221A is arranged on the inner side of the first receiving groove 211A. The second protrusion portion 221B is arranged on the inner side of the second receiving groove 211B. As described above, when the plurality of protrusion portions 221 include a pair of protrusion portions 221, the pair of protrusion portions 221 may have the same shape as each other. The pair of protrusion portions 221 are respectively on the same line as the rotation center axis R1. The pair of protrusions 221 can rotate around the rotation center axis R1 respectively.

[0071] The protrusion 221 is arranged inside the receiving groove 211 and the elastic member 230. The protrusion 221 may have a shape corresponding to the receiving groove 211 and / or the elastic member 230. For example, the first protrusion 221A may have a shape corresponding to the first receiving groove 211A and / or the first elastic member 230A. The second protrusion 221B may have a shape corresponding to the second receiving groove 211B and / or the second elastic member 230B.

[0072] The protrusion 221 may include a hexagonal column. In this case, the elastic member 230 and / or the receiving groove 211 may have a shape corresponding to the hexagonal column.

[0073] The outer peripheral surface forming the hexagonal prism may be formed to be inclined with respect to the rotation center axis R1. In this case, the outer peripheral surface may have a certain inclination. For example, the area of ​​the end surface perpendicular to the length direction of the hexagonal prism increases or decreases linearly along the length direction.

[0074] The elastic component 230 may be arranged on one side of the rotating part 210. There may be a plurality of elastic components 230. For example, the elastic component 230 may include a first elastic component 230A and a second elastic component 230B. The first elastic component 230A and the second elastic component 230B may have the same shape. The elastic component 230 is arranged between the receiving groove 211 and the protrusion 221. For example, the first elastic component 230A may be arranged between the first receiving groove 211A and the first protrusion 221A. The second elastic component 230B may be arranged between the second receiving groove 211B and the second protrusion 221B.

[0075] The elastic member 230 may absorb an impact based on an external force. The elastic member 230 may maintain an elastic deformation state based on the receiving groove 211. That is, the elastic member 230 may have a size greater than the inner space of the receiving groove 211.

[0076] When an external force acts on the wireless communication device support 100 , the first protrusion 221A and / or the second protrusion 221B may move. For example, the protrusion 221 may move up, down, left, and right in the inner space of the elastic member 230 .

[0077] When an external force acts, the elastic member 230 will be elastically deformed, and the elastic member 230 absorbs the impact to prevent the protrusion 221 and the rotating part 210 from being damaged.

[0078] If the external force is removed, the first protrusion 221A and / or the second protrusion 221B returns to the original position based on the elastic force of the first elastic component 230A and / or the second elastic component 230B. The original position refers to the position before the external force acts. When the first protrusion 221A and / or the second protrusion 221B returns to the original position, the elastic component 230 also returns to its original shape.

[0079] The first elastic member 230A and the second elastic member 230B may have the same shape. One side 400 of the elastic member 230 may have a shape corresponding to the shape of the protrusion 221. For example, when the protrusion 221 includes a hexagonal prism, one side 400 of the elastic member 230 may be hexagonal to correspond to the hexagonal prism.

[0080] The elastic member 230 may include a plurality of extension portions 410. The plurality of extension portions 410 may be formed and extended from one surface 400 of the elastic member 230. The plurality of extension portions 410 may include first to sixth extension portions.

[0081] The plurality of extensions 410 may be formed so that the length of the inner circumference is greater than the length of the outer circumference. In this case, based on the length difference between the inner circumference and the outer circumference, the plurality of extensions 410 may be curved along the length direction. The plurality of extensions 410 may be formed so that there is no contact portion with each other.

[0082] The plurality of extensions 410 may be elastically deformed based on the receiving groove 211. Specifically, when the size of the plurality of extensions 410 is larger than the space of the receiving groove 211, the plurality of extensions 410 may be inserted into the receiving groove 211 in an elastically deformed state.

[0083] The elastic member 230 may be made of metal material. The first elastic member 230A and the second elastic member 230B may be made of the same metal.

[0084] Figure 5 It is a perspective view of a support body for a wireless communication device according to a second embodiment of the present disclosure.

[0085] Figure 6 It is an exploded perspective view of a support body for a wireless communication device according to a second embodiment of the present disclosure.

[0086] Figure 7 is a perspective view of a rotating portion according to a second embodiment of the present disclosure.

[0087] Figure 8 4 is a cross-sectional view of a support body for a wireless communication device according to a second embodiment of the present disclosure.

[0088] Reference Figures 5 to 8 The wireless communication device support 500 according to the second embodiment of the present disclosure is coupled to the support rod 195 and fixed in position. The wireless communication device 197 is coupled to one side of the wireless communication device support 500. The wireless communication device support 500 includes a rotating portion 610 that can adjust the position and angle of the wireless communication device 197. The wireless communication device support 500 includes an elastic ring 630 described later that can absorb impact.

[0089] The wireless communication device support 500 may include a fixing portion 510 , a main body portion 530 , a bracket portion 560 , a plurality of elastic rings 630 , and a plurality of bolts 680 (bolts).

[0090] One end of the fixing portion 510 may be combined with the support rod 195. The other end of the fixing portion 510 may be combined with the main body 530. The fixing portion 510 may be arranged between the support rod 195 and the main body 530. The fixing portion 510 may play a role in connecting the support rod 195 and the main body 530. The shape of the fixing portion 510 is not limited to the shape shown in the drawings. Any shape that can be combined with the support rod 195 may be used as the shape of the fixing portion 510. Any shape that can be combined with the main body 530 may be used as the shape of the fixing portion 510.

[0091] The main body 530 plays a role in rotating the bracket 560. The main body 530 may be combined with the fixing part 510. The main body 530 may be combined with the bracket 560. The main body 530 may include a housing 670, a plurality of rings 815, a rotating part 610, a motor 651, and a gear box 650.

[0092] Contents related to the housing 670 , the plurality of rings 815 , the motor 651 , and the gear box 650 according to the second embodiment of the present disclosure may be replaced by descriptions of the housing 270 , the plurality of rings 215 , the motor 251 , and the gear box 250 according to the first embodiment.

[0093] The rotating part 610 may be connected to the bracket part 560. Specifically, the seating part 611 formed on the rotating part 610 and the sliding part 621 formed on the bracket part 560 may be connected to each other. The seating part 611 and the sliding part 621 will be described later.

[0094] The rotating part 610 can rotate the bracket part 560. The rotating part 610 can rotate based on the motor 651. The rotating part 210 rotates around the rotation center axis R2 (axis of rotation). The rotating part 210 is arranged inside the housing 670. The arrangement and shape of the rotating part 610 are not limited to those shown in the drawings.

[0095] The rotating portion 610 may include a cradling portion 611 formed on one side. The cradling portion 611 may be located at both ends of the rotating portion 610. The rotating portion 610 may include a plurality of cradling portions 611. The rotating portion 610 may include a first cradling portion 611A and a second cradling portion 611B. The cradling portion 611 may have a shape corresponding to a sliding portion 621 described later. For example, the first cradling portion 611A may have a shape corresponding to the first sliding portion 621A. The second cradling portion 611B may have a shape corresponding to the second sliding portion 621B. The shapes of the first cradling portion 611A and the second cradling portion 611B may have the same shape. The bolt 680 and the cradling portion 611 may be bolted to each other.

[0096] The seating portion 611 may include a plurality of inclined surfaces 614 (slope), a plurality of first surfaces 612 (first surfaces), a plurality of second surfaces 613 (second surfaces), and a hole 616 (hole).

[0097] The inclined surface 614 may form a certain angle with the rotation center axis R2. The placement portion 611 may include first to sixth inclined surfaces. Each inclined surface 614 is disposed between the first surface 612 and the second surface 613.

[0098] A height difference is formed between the first surface 612 and the second surface 613. The first surface 612 and the second surface 613 may be perpendicular to the rotation center axis R2. The placement portion 611 may include three first surfaces 612. The placement portion 611 may include three second surfaces 613. The sliding portion 621 described later may slide along at least one of the inclined surfaces 614.

[0099] A hole 616 is formed in the center of the placement portion 611. The central axis of the hole 616 may coincide with the rotational central axis R2. The hole 616 may be a screw hole. The rotating portion 610 may be screw-coupled with the first bolt 680A or the second bolt 680B described later through the hole 616.

[0100] The bolt 680 may be coupled to the placement portion 611. The wireless communication device support 500 may include a plurality of bolts 680. The wireless communication device support 500 may include a first bolt 680A and a second bolt 680B. In this case, the first bolt 680A may be coupled to the first placement portion 611A by bolts. The second bolt 680B may be coupled to the second placement portion 611B by bolts.

[0101] The bolt 680 may pass through the elastic ring 630 described later. The bolt 680 may pass through the sliding portion 621 described later. The bolt 680 may be bolted to the seating portion 611 in a state of passing through the elastic ring 630 and the sliding portion 621 .

[0102] The bracket portion 560 can be combined with the main body portion 530. The bracket portion 560 can be combined with the wireless communication device 197. The bracket portion 560 can rotate around the rotating portion 610. The bracket portion 560 receives power from the rotating portion 610 and rotates. When the bracket portion 560 rotates, the position and angle of the wireless communication device 197 combined with the bracket portion 560 will change. The shape of the bracket portion 560 is not limited to the shape shown in the drawings.

[0103] The support part 560 may include a plurality of rotating disks 620 that rotate based on the rotating part 210. The support part 560 may include a first rotating disk 620A and a second rotating disk 620B. The support part 560 may include a support plate 625. The support plate 625 may be arranged between the first sliding part 621A and the second sliding part 621B. The shape of the support plate 625 is not limited to the shape shown in the drawings.

[0104] The bracket part 560 may include a sliding part 621 formed on one side. The sliding part 621 may receive power from the placement part 611 and rotate. The sliding part 621 may extend and be formed from one side of the rotating disk 620 to one side of the rotating part 610. The bracket part 560 may include a first sliding part 621A and a second sliding part 621B. The first sliding part 621A is arranged on the first placement part 611A. The second sliding part 621B is arranged on the second placement part 611B.

[0105] The sliding portion 621 may have a shape corresponding to the seating portion 611. For example, the first sliding portion 621A may have a shape corresponding to the first seating portion 611A. The second sliding portion 621B may have a shape corresponding to the second seating portion 611B.

[0106] Figure 9a and Figure 9b 2 is a schematic diagram of the movement of the sliding part according to the second embodiment of the present disclosure.

[0107] Figure 9a The figure shows the sliding part and the elastic ring before the external force is applied. Figure 9b The slide part and the elastic ring after the external force is applied are shown.

[0108] Reference Figures 5 to 9a and Figure 9b , the sliding part 621 can slide along a plurality of inclined surfaces 614 formed on the seating part 611. The shape and number of the inclined surfaces 614 are not limited to those shown in the drawings. For example, when an external force acts, the sliding part 621 can move along the inclined surface 614. When the sliding part 621 moves, the elastic ring 630 can be elastically deformed. Specifically, the bolt 680 and the rotating part 610 are bolted together and fixed, so the position does not change. The sliding part 621 is not bolted together, so it can move up, down, left and right between the elastic ring 630 and the rotating part 610. The sliding part 621 can move along the inclined surface 614 of the seating part 611. Refer to Figure 9b The embodiment discloses a state in which the sliding portion 621 moves from the original position and the elastic ring 630 is elastically deformed.

[0109] The wireless device support 500 may include a plurality of elastic rings 630. The wireless device support 500 may include a first elastic ring 630A and a second elastic ring 630B. The elastic ring 630 may be penetrated by a bolt 680. The elastic ring 630 may be arranged on the inner side of the sliding portion 621. The elastic ring 630 may be arranged between the bolt 680 and the sliding portion 621. For example, the first elastic ring 630A may be arranged between the first bolt 680A and the first sliding portion 621A. The second elastic ring 630B may be arranged between the second bolt 680B and the second sliding portion 621B.

[0110] The elastic ring 630 absorbs the impact due to the external force. The elastic ring 630 may be elastically deformed when the sliding part 621 moves. The first sliding part 621A and / or the second sliding part 621B may move due to the external force. Specifically, the sliding part 621 may move along the inclined surface 614 formed on the placement part 611. In this case, the elastic ring 630 is elastically deformed. The elastic ring 630 absorbs the impact to prevent the sliding part 621 from being damaged.

[0111] If the external force is removed, the first sliding portion 621A and / or the second sliding portion 621B returns to the original position based on the elastic force of the first elastic ring 630A and / or the second elastic ring 630B. The original position refers to the position before the external force acts. If the first sliding portion 621A and / or the second sliding portion 621B returns to the original position, the elastic ring 630 also returns to its original shape.

[0112] The elastic ring 630 may be in a cylindrical shape with a hole formed in the center. The first elastic ring 630A and the second elastic ring 630B may have the same shape as each other.

[0113] The elastic ring 630 may be made of rubber material. The first elastic ring 630A and the second elastic ring 630B are made of the same material, which may be rubber.

[0114] The above description is only used to illustrate the technical idea of ​​the present embodiment. For those with general knowledge in the technical field to which the present embodiment belongs, various modifications and variations can be made within the scope of the essential features of the present embodiment. Therefore, the present embodiment is not used to limit the technical idea of ​​the present embodiment but is used for illustration, and the scope of the technical idea of ​​the present embodiment is not limited by the present embodiment. The protection scope of the present embodiment shall be interpreted based on the attached claims, and all technical ideas within the scope equivalent to them shall be interpreted as belonging to the scope of rights of the present embodiment.

Claims

1. A support body for a wireless communication device, the support body being used to fix the wireless communication device on a support rod, characterized in that: The support body comprises: A fixing portion, one end of which is fixed to the support rod; a main body connected to the other end of the fixing part and including a rotating part that rotates based on the motor; a bracket portion connected to the rotating portion and rotating about the rotating portion, and connected to the wireless communication device; and Elastic components, which are used to absorb shock, The rotating part includes a receiving groove formed on one side, The bracket portion includes a protrusion formed on one side, The protrusion is arranged inside the receiving groove and has a shape corresponding to the receiving groove. The elastic component is arranged between the accommodating groove and the protruding portion.

2. The wireless communication device support according to claim 1, wherein: When the protrusion moves due to an external force, if the external force is removed, the protrusion returns to its original position due to the elastic force of the elastic member. The original position is the position before the external force acts.

3. The wireless communication device support according to claim 1, wherein: The protrusion includes a hexagonal prism.

4. The wireless communication device support according to claim 3, wherein: The area of ​​the end faces of the hexagonal prism that are perpendicular to the length direction of the hexagonal prism increases or decreases linearly along the length direction.

5. The wireless communication device support according to claim 3, wherein: One side of the elastic component is hexagonal to correspond to the hexagonal column.

6. The wireless communication device support according to claim 5, wherein: The elastic component includes a plurality of extension portions extending from the one surface.

7. The wireless communication device support according to claim 6, wherein: The plurality of extensions include first to sixth extensions.

8. The wireless communication device support according to claim 6, wherein: The plurality of extension portions have inner circumferential surfaces whose lengths are greater than outer circumferential surfaces and are curved along the length direction.

9. The wireless communication device support according to claim 1, wherein: The elastic component is made of metal material.

10. A support body for a wireless communication device, the support body being used to fix the wireless communication device to a support pole, characterized in that: The support body comprises: A fixing portion, one end of which is fixed to the support rod; a main body connected to the other end of the fixing part and including a rotating part that rotates based on the motor; a bracket part connected to the rotating part and rotating around the rotating part, and connected to the wireless communication device; an elastic ring disposed inside the bracket portion and used to absorb impact; and a bolt, which is used to penetrate the bracket part and the elastic ring, The rotating part includes a seating part formed on one side, The bracket portion includes a sliding portion formed on one side, The sliding portion has a shape corresponding to the seating portion and is arranged on the seating portion, The bolt and the rotating part are bolted to each other.

11. The wireless communication device support according to claim 10, wherein: When the sliding portion slides from the seating portion due to an external force, if the external force is removed, the sliding portion returns to an original position due to the elastic force of the elastic ring, and the original position is a position before the external force acts.

12. The wireless communication device support according to claim 10, wherein: The seating portion includes a plurality of inclined surfaces, and the sliding portion slides along at least one of the plurality of inclined surfaces.

13. The wireless communication device support according to claim 12, wherein: The plurality of inclined surfaces include first to sixth inclined surfaces.

14. The wireless communication device support according to claim 10, wherein: The elastic ring is made of rubber material.