CN206992289U - Remote control aerial mounting structure - Google Patents
Remote control aerial mounting structure Download PDFInfo
- Publication number
- CN206992289U CN206992289U CN201720692258.1U CN201720692258U CN206992289U CN 206992289 U CN206992289 U CN 206992289U CN 201720692258 U CN201720692258 U CN 201720692258U CN 206992289 U CN206992289 U CN 206992289U
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- head
- remote control
- lead
- controller body
- guide rail
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Abstract
The utility model proposes a kind of remote control aerial mounting structure, including remote controller body, telescopic mechanism and antenna structure;The remote controller body has installation portion;The telescopic mechanism includes pars contractilis and head, and the pars contractilis is arranged on the installation portion, and the head is flexible and the relatively close or remote remote controller body by pars contractilis;The antenna structure is arranged on the head.Remote control aerial mounting structure of the present utility model, interference can be reduced, save space so that overall structure is more compact.
Description
Technical field
It the utility model is related to field of remote-control unit, more particularly to a kind of remote control aerial mounting structure.
Background technology
In some equipment, wirelessly manipulated using remote control, e.g. unmanned plane etc., unmanned plane body with it is distant
Corresponding wireless communication unit is set between control device.It is common, the antenna structure of receiving and transmitting signal can be set on a remote control, it is real
Existing RFDC between remote control and equipment.
The mode of antenna is set on a remote control at present, usually directly antenna is arranged on remote controller body, and by
In antenna structure transmitting/receiving wireless signal, antenna structure is nearer from remote control, the production such as circuit, device, part in remote controller body
Raw signal can be bigger to the generation interference of transmitting/receiving wireless signal, thus this antenna set-up mode has the problem of interference is big.And
If a part with improvement, is stretched out on remote controller body so that antenna structure protrudes and separated with body, although can reduce
Interference, however, the structure of this extended part causes remote control overall volume is larger to be inconvenient to pack, and outward appearance is unsightly,
In addition this extended part is additionally separately provided, and space is not intensive enough, compact for remote control this skinny device.
Utility model content
Technical problem to be solved in the utility model is to provide a kind of remote control aerial mounting structure, can reduce interference,
Save space so that overall structure is more compact.
To solve the above problems, the utility model proposes a kind of remote control aerial mounting structure, including remote controller body, can
Telescoping mechanism and antenna structure;The remote controller body has installation portion;The telescopic mechanism includes pars contractilis and head,
The pars contractilis is arranged on the installation portion, and the head is flexible and the relatively close or remote remote control by pars contractilis
Body;The antenna structure is arranged on the head.
According to one embodiment of the present utility model, the installation portion has the guide rail knot for being directed to pars contractilis telescopic direction
Structure, to guide the telescopic moving of the pars contractilis.
According to one embodiment of the present utility model, the pars contractilis includes movable panel, and the movable panel may move
On the guide rail structure, the movable panel is connected with the head.
According to one embodiment of the present utility model, the pars contractilis includes movable seat and movable panel;It is described removable
Dynamic seat is removable on the guide rail structure;The movable panel is removable on the movable seat, described removable
Plate is connected with the head.
According to one embodiment of the present utility model, in addition to electrical lead, the electrically lead is electrically connected with the day
Circuit board in cable architecture and remote controller body;Wire lead slot is provided with the movable panel, the electrically lead portion is fixed
In in the wire lead slot;The guide rail structure, which has, is used for the lead channels that electrically lead passes through, or described removable
Seat and the guide rail structure are respectively provided with for the lead channels that electrically lead passes through.
According to one embodiment of the present utility model, the end on the remote head of the guide rail structure, use is provided with
To guide the arc guide structure of the electrically lead bending.
According to one embodiment of the present utility model, the end of the guide rail structure is connected with bending stopper, institute
Bending stopper is stated to prevent the electrically lead from tilting.
According to one embodiment of the present utility model, the installation portion is located at the inside of the remote controller body, described to stretch
Contracting portion can bounce back to the inside of the remote controller body.
According to one embodiment of the present utility model, the antenna structure is installed on the position in the head so that head
The front of the antenna structure is towards the front of the remote controller body when portion is stretched out.
According to one embodiment of the present utility model, the head on the remote controller body with being correspondingly arranged on clamping
Block, formed between the grip block relative when the head is stretched out to clamp the clamping position of external equipment.
After adopting the above technical scheme, the utility model has the advantages that compared with prior art:
By the way that antenna structure is arranged on telescopic mechanism, head can be stretched out with antenna structure when in use,
So as to be separated by a distance with remote controller body, signal interference of the remote controller body internal components for antenna structure is reduced,
And head can be retracted with antenna structure when not in use, and be unlikely to protrude or protrude from very much remote controller body, make
The overall more compact structure of remote control is obtained, more intensive space, volume miniaturization, is easy to packed and transported;
Connection may move by the mutual cooperation of movable panel, movable seat and guide rail structure, realize segmentation stretching, extension or return
Contracting so that head it is extended apart from farther, so as to reduce interference as much as possible, while be segmented retraction and will not then cause the shape that bounces back
The pars contractilis of state is long, and remote control volume can be avoided excessive;Wire lead slot and lead channels are set, can enable electrical lead
Pass freely through and by certain space constraint, avoid card line or circuit in disorder.
Brief description of the drawings
Fig. 1 is the structural representation of the remote control aerial mounting structure retracted state of the embodiment of the utility model one;
Fig. 2 is that the remote control aerial mounting structure of the embodiment of the utility model one stretches out the structural representation of state;
Fig. 3 is the cross-sectional view of the remote control aerial mounting structure retracted state of the embodiment of the utility model one;
Fig. 4 is the part-structure schematic diagram of the remote control aerial mounting structure of the embodiment of the utility model one.
Description of symbols in figure:
1- remote controller bodies, 2- telescopic mechanisms, 3- antenna structures, the electrical leads of 4-, 5- circuit boards, 11- guide rail structures,
12- bends stopper, 13- arc guide structures, 14- wind springs, 21- heads, 22- movable panels, 23- movable seats, 221- leads
Groove.
Embodiment
To enable above-mentioned purpose of the present utility model, feature and advantage more obvious understandable, below in conjunction with the accompanying drawings to this
The embodiment of utility model is described in detail.
Many details are elaborated in the following description in order to fully understand the utility model.But this practicality is new
Type can be to be much different from other manner described here to implement, and those skilled in the art can be new without prejudice to this practicality
Similar popularization is done in the case of type intension, therefore the utility model is not limited by following public specific implementation.
In one embodiment, remote controller body 1, telescopic mechanism are included referring to Fig. 1-3, remote control aerial mounting structure
2nd, antenna structure 3.The remote control of the utility model embodiment can be with the matching used equipment of unmanned plane, as unmanned plane
Remote control equipment, but be not limited to this, other needs, which are used, sets remote controls of antenna structure to be applicable, for example, can also be with it is distant
Control the matching used equipment such as automobile.
Remote controller body 1 has installation portion.Telescopic mechanism 2 includes pars contractilis and head 21, and pars contractilis is arranged on installation
In portion, head 21 is flexible and relatively close or remote remote controller body 1 by pars contractilis.The specific configuration of installation portion and pars contractilis
It is not intended as limiting, as long as can realize that head 21 can be closer or far from respect to remote controller body 1.
Antenna structure 3 is arranged on head 21.The specific configuration on head 21 is not also limited, as long as realizing antenna structure 3
Installation.The type of antenna structure 3 is unlimited, can be selected accordingly according to needed for communication module.For it is preferred that, the antenna
Structure 3 is directional antenna arrangement, such as can be 5.5GHz directional aerials.
, can be when in use by head 21 with antenna structure 3 by the way that antenna structure 3 is arranged on telescopic mechanism 2
Stretch out, so as to be separated by a distance with remote controller body 1, reduce letter of the internal components of remote controller body 1 for antenna structure 3
Number interference, and when not in use can retract on head 21 with antenna structure 3, and be unlikely to protrude or protrude from very much remote control
Device body 1 so that the overall more compact structure of remote control, more intensive space, volume miniaturization, be easy to packed and transported.
Referring to Fig. 3, it is preferred that the inside of head 21 has accommodating cavity, and antenna structure 3 is fixed in the accommodating cavity on head 21.
Head 21 can be connected to form the accommodating cavity by least two parts, and antenna structure 3 first can be fixed in a part,
And latter two part is connected to reinforce antenna structure.3
Antenna structure 3 is built in head 21, fixation, ensures the stability of antenna structure 3 itself so that receiving and transmitting signal
It is more stable;It further, since antenna structure 3 is built in version, thus can be arranged in the form of bare board in head 21, pass through head
Protection is played to antenna structure 3, without extra antenna protection structure.
Referring to Fig. 3 and Fig. 4, in one embodiment, installation portion has the guide rail structure for being directed to pars contractilis telescopic direction
11, to guide the telescopic moving of pars contractilis.In other words, connection is may move between pars contractilis and guide rail structure 11.It is removable to connect
The mode connect has a variety of, e.g. slip, rolling connection etc..
In the illustrated embodiment, the guide rail structure 11 is slide rail, and accordingly, pars contractilis can be slide construction, so as to stretch
Contracting portion can slide on guide rail structure 11.Optionally, the slip between pars contractilis and guide rail structure 11 can be tight slip, also
It is to slide with larger frictional force being present, so, pars contractilis fixes the pars contractilis of stretching, extension without fixed component after stretching out, and stretches
Portion can equally keep the posture of stretching, extension;After pars contractilis retraction in the case where not acted on by external force, it will not also stretch easily.When
So, the slip between pars contractilis and guide rail structure 11 can also be that very little is frictionally slided, by fixed component come to retract or
The head of stretching positioned, or realizes head positioning by other means.
In one embodiment, pars contractilis can include movable panel, and movable panel is removable on guide rail structure 11,
Movable panel is connected with head 21.Guide rail structure 11 is played to the effect of the mobile guide of movable panel, the rail of guide rail structure 11 to
It is consistent with the telescopic direction of movable panel.Slidable connection between movable panel and guide rail structure 11.When movable panel needs to stretch
When going out, slided on guide rail structure 11 toward away from the direction of remote controller body 1, drive head 21 accordingly to move so that head 21 is remote
From remote controller body 1;When movable panel needs to retract, when on guide rail structure 11 toward close to the slip of the direction of remote controller body 1,
Head 21 is driven accordingly to move so that head 21 is close to remote controller body 1.It is also suitable certainly for other move modes.
Remote control aerial mounting structure can also include electrical lead 4.Electrical lead 4 is electrically connected with antenna structure 3 and distant
Control the circuit board 5 in device body 1.The thus mutual cooperation of movable panel and guide rail structure 11, it is also necessary to consider electrical lead
Offering question.
Optionally, wire lead slot can be provided with movable panel, the position of wire lead slot does not influence movable panel and guide rail knot
The removable connection of structure 11.The electrical part of lead 4 is fixedly arranged in wire lead slot, and the electrical lead 4 of the part can be adhesively fixed
In wire lead slot.Guide rail structure 11, which has, is used for the lead channels that pass through of electrical lead 4, and the electrical lead 4 of remainder can be with
It is freely movable in the lead channels of guide rail structure 11.The lead channels can be pipe-like, for example, circular pipe or
Square pipe, electrical lead 4 have certain spatial margin that can be movable up and down wherein.
In one embodiment, movable seat 23 and movable panel 22 are included referring to Fig. 2-Fig. 4, pars contractilis.Movable seat
23 is removable on guide rail structure 11.Movable panel 22 is removable on movable seat 23, movable panel 22 and head 21
Connection.In other words, movable seat 23 can move on guide rail structure 11, and movable panel 22 can move up in movable seat 23
It is dynamic.In order that head 21 is obtained as much as possible toward extension at a distance, movable seat 23 and the movable direction best one of movable panel 22
Cause.Certainly, if the consideration of otherwise consideration, such as directionality, movable seat 23 are removable with movable panel 22
Direction can also be inconsistent, such as is mutually perpendicular to.
Likewise, remote control aerial mounting structure can also include electrical lead 4.Thus movable panel 22, movable seat
23 and the mutual cooperation of guide rail structure 1, it is also desirable to consider the offering question of electrical lead 4.
Optionally, with continued reference to Fig. 4, wire lead slot 221 is provided with movable panel 22, the electrical part of lead 4, which is fixedly arranged on, draws
In wire casing 221, set-up mode can be identical with the related content in previous embodiment.Due in telescopic process, the electrical meeting of lead 4
By movable seat 23 and guide rail structure 11, thus movable seat 23 and guide rail structure 11 are respectively provided with and passed through for electrical lead 4
Lead channels.Electrical lead 4 can be freely movable in the lead channels of guide rail structure 11.The lead channels can be with
It is pipe-like, such as circular pipe or square pipe, electrical lead 4 have more than certain space that can be movable up and down wherein
Amount.
It is appreciated that when pars contractilis stretches, the wire lead slot 221 of movable panel 22, the lead channels of movable seat 23 and
The lead channels of guide rail structure 11 are interconnected, and are moved smoothly through with electron-donating lead 4;And when pars contractilis bounces back, it may move
The lead channels of the wire lead slot 221 of plate 22, the lead channels of movable seat 23 and guide rail structure 11 are mutually folded to set or is set in one
Rise.It is that the lead channels of movable seat 23 and guide rail structure 11 can be independently formed or coordinate with remote controller body 1
Formed.For example, movable seat 23 and guide rail structure 11 be provided with 221 corresponding slot structure of wire lead slot, by slot structure
It is upper that cover plate is set and forms lead channels.
Connection may move by the mutual cooperation of movable panel 22, movable seat 23 and guide rail structure 11, realize that segmentation is stretched
Exhibition or retraction so that head 21 it is extended apart from farther, so as to reduce interference as much as possible, while be segmented retraction and will not then lead
Cause the pars contractilis of retracted state long, remote control volume can be avoided excessive;Wire lead slot 221 and lead channels are set, can be caused
Electrical lead 4 can pass freely through and by certain space constraint, avoid card line or electrical lead in disorder.
Preferably, there is arc guide structure 13 referring to Fig. 4, the end set on the remote head 21 of guide rail structure 11, specifically
The lead channels outlet of guide rail structure 11 is provided in, the arc guide structure 13 bends to draw conductive pins 4.Accordingly
, the circuit board 5 being connected with electrical lead 4 is located on the direction of electrical lead 4 bending.
Because the inner space of remote controller body 1 is limited, thus set arc guide structure 13 that the electrical trend of lead 4 is turned
It is individual curved, on the one hand, circuit board 5 can be arranged on one side of guide rail structure 11, be advantageous to the reasonable disposition of accommodation space, the opposing party
Face, under retracted state, the electrical lead 4 of remainder can take advantage of a situation turning lopping under the guiding of arc guide structure 13, keep away
The problems such as exempting from the in disorder accumulation of circuit and card line occur in stretching, extension.
Preferably, the end of guide rail structure 11 is connected with bending stopper 12, bends stopper 12 to prevent electrical lead 4
Tilt.Bending stopper 12 can be used for keeping out electrical lead 4 so that electrical 4 generation plain bendings of lead, without sticking up
Rise, be further ensured that circuit storage problem during retraction.
Electrical lead 4 is preferably circular in cross-section structure, reduces friction or the possibility being blocked.Can possess in addition certain
Hardness so that its can arc guide structure 13 guiding under smoothly turn.
In one embodiment, installation portion is located at the inside of remote controller body 1, and pars contractilis can bounce back to remote controller body
1 inside.Under retracted state completely in storage to remote controller body 1, head 21 can connect pars contractilis with remote controller body 1
Close so that appearance consistency is high, more attractive, and make it that remote control volume is smaller, packed and transported of being more convenient for.
In one embodiment, antenna structure 3 is installed on the position in head 21 so that antenna structure when head 21 is stretched out
3 front is towards the front of remote controller body 1.Antenna structure 3 is plate-like, and head 21 can be accordingly plate-like so that day knot
Structure 3 is kept flat in head 21.Antenna direction is more preferable towards front, receiving directivity.
In one embodiment, head 21 on remote controller body 1 with being correspondingly arranged on grip block, to be stretched out on head 21
When, formed to clamp the clamping position of external equipment between relative grip block, two grip blocks can be block rubber, avoid
Press from both sides bad.Pass through grip block corresponding to the setting on head 21 and remote controller body 1 so that telescopic mechanism 2 is simultaneously as clamping
Mechanism, or in other words, for itself just needing to set the remote control of hold assembly, antenna structure 3 is built in folder
Hold in the head of part, make full use of the available unit of remote control, space is more intensive.External equipment is, for example, mobile phone etc..
Optionally, elastomeric element can be set on the installation portion of remote controller body 1, pars contractilis connects the elastomeric element,
The clamping force between grip block is provided by elastic telescopic, when external equipment is clamped on clamping position, is also realized simultaneously
The positioning on head.Elastomeric element is, for example, the wind spring 14 shown in Fig. 4, naturally it is also possible to is other elastomeric elements, e.g. extension spring.
Although the utility model is disclosed as above with preferred embodiment, it is not for limiting claim, Ren Heben
Art personnel are not being departed from spirit and scope of the present utility model, can make possible variation and modification, therefore
The scope of protection of the utility model should be defined by the scope that the utility model claims are defined.
Claims (10)
1. a kind of remote control aerial mounting structure, it is characterised in that including remote controller body, telescopic mechanism and antenna structure;
The remote controller body has installation portion;The telescopic mechanism includes pars contractilis and head, and the pars contractilis is arranged on described
On installation portion, the head is flexible and the relatively close or remote remote controller body by pars contractilis;The antenna structure peace
On the head.
2. remote control aerial mounting structure as claimed in claim 1, it is characterised in that the installation portion, which has, to be directed to stretch
The guide rail structure of portion's telescopic direction, to guide the telescopic moving of the pars contractilis.
3. remote control aerial mounting structure as claimed in claim 2, it is characterised in that the pars contractilis includes movable panel,
The movable panel is removable on the guide rail structure, and the movable panel is connected with the head.
4. remote control aerial mounting structure as claimed in claim 3, it is characterised in that the pars contractilis include movable seat and
Movable panel;The movable seat is removable on the guide rail structure;The movable panel is removable located at described removable
On dynamic seat, the movable panel is connected with the head.
5. remote control aerial mounting structure as claimed in claim 3, it is characterised in that described electrical also including electrical lead
Lead is electrically connected with the circuit board in the antenna structure and remote controller body;Wire lead slot, institute are provided with the movable panel
Electrical lead portion is stated to be fixedly arranged in the wire lead slot;The guide rail structure has to be led to for the lead that lead passes through described electrically
Road, or the movable seat and the guide rail structure are respectively provided with for the lead channels that electrically lead passes through.
6. remote control aerial mounting structure as claimed in claim 5, it is characterised in that the remote head of the guide rail structure
The end in portion, it is provided with to guide the arc guide structure of the electrically lead bending.
7. remote control aerial mounting structure as claimed in claim 6, it is characterised in that the end of the guide rail structure
Bending stopper is connected with, it is described to bend stopper to prevent the electrically lead from tilting.
8. the remote control aerial mounting structure as described in any one in claim 1-4, it is characterised in that the installation portion is set
In the inside of the remote controller body, the pars contractilis can bounce back to the inside of the remote controller body.
9. the remote control aerial mounting structure as described in any one in claim 1-4, it is characterised in that the antenna structure
The position being installed in the head so that the front of the antenna structure is towards before the remote controller body when head is stretched out
Side.
10. the remote control aerial mounting structure as described in any one in claim 1-4, it is characterised in that the head with
Grip block is correspondingly arranged on the remote controller body, is formed between the grip block relative when the head is stretched out to press from both sides
Hold the clamping position of external equipment.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201720692258.1U CN206992289U (en) | 2017-06-14 | 2017-06-14 | Remote control aerial mounting structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201720692258.1U CN206992289U (en) | 2017-06-14 | 2017-06-14 | Remote control aerial mounting structure |
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CN206992289U true CN206992289U (en) | 2018-02-09 |
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ID=61395539
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CN201720692258.1U Active CN206992289U (en) | 2017-06-14 | 2017-06-14 | Remote control aerial mounting structure |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112771721A (en) * | 2020-04-27 | 2021-05-07 | 深圳市大疆创新科技有限公司 | Antenna, antenna assembly and wireless communication equipment |
CN113168760A (en) * | 2020-04-27 | 2021-07-23 | 深圳市大疆创新科技有限公司 | Antenna module, remote controller and remote control system |
CN114786383A (en) * | 2022-04-14 | 2022-07-22 | 泉州信息工程学院 | Intelligent control walking robot device |
-
2017
- 2017-06-14 CN CN201720692258.1U patent/CN206992289U/en active Active
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112771721A (en) * | 2020-04-27 | 2021-05-07 | 深圳市大疆创新科技有限公司 | Antenna, antenna assembly and wireless communication equipment |
CN113168760A (en) * | 2020-04-27 | 2021-07-23 | 深圳市大疆创新科技有限公司 | Antenna module, remote controller and remote control system |
WO2021217384A1 (en) * | 2020-04-27 | 2021-11-04 | 深圳市大疆创新科技有限公司 | Antenna assembly, remote controller and remote control system |
WO2021217369A1 (en) * | 2020-04-27 | 2021-11-04 | 深圳市大疆创新科技有限公司 | Antenna, antenna assembly, and wireless communication device |
CN114786383A (en) * | 2022-04-14 | 2022-07-22 | 泉州信息工程学院 | Intelligent control walking robot device |
CN114786383B (en) * | 2022-04-14 | 2023-04-14 | 泉州信息工程学院 | Intelligent control walking robot device |
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