CN203590320U - Rotatable camera - Google Patents

Rotatable camera Download PDF

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Publication number
CN203590320U
CN203590320U CN201320752098.7U CN201320752098U CN203590320U CN 203590320 U CN203590320 U CN 203590320U CN 201320752098 U CN201320752098 U CN 201320752098U CN 203590320 U CN203590320 U CN 203590320U
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CN
China
Prior art keywords
camera module
electrically connected
binding post
electric connection
groove
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201320752098.7U
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Chinese (zh)
Inventor
王宏梅
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KEEN HIGH TECHNOLOGIES Ltd
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KEEN HIGH TECHNOLOGIES Ltd
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Priority to CN201320752098.7U priority Critical patent/CN203590320U/en
Application granted granted Critical
Publication of CN203590320U publication Critical patent/CN203590320U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model provides a rotatable camera, relating to camera equipment. The rotatable camera comprises a camera module, a PCB and a terminal, wherein the camera module can rotate for 360 degree around the axis thereof, the PCB is electrically connected with the camera module, and the terminal is electrically connected with the camera module and the PCB. The terminal is annularly provided multiple electrical connecting grooves which maintain electrical connection between the camera module and the PCB during rotation of the camera module, and each electrical connecting groove is vertical to the rotary axis of the camera module. According to the utility model, the camera module is electrically connected to the PCB via the terminal instead of in an direct way; when the camera module rotates, the electrical connecting grooves maintain electrical connection between the camera module and the PCB; and the terminal is cylindrical, and prevented from distortion and deformation due to strong torsional force generated during rotation of the camera module, the service life of the terminal can be ensured, and further the stability of electrical connection between the camera module and the PCB is ensured.

Description

Rotatable camera head
Technical field
The utility model relates to picture pick-up device, relates in particular to a kind of rotatable camera head.
Background technology
Conventionally camera is comprised of camera module and pcb board two parts, and for making camera have good angular field of view, camera all has spinfunction mostly, by rotating to regulate camera module to suitable visual angle.In rotatable camera head, camera module has camera function and rotatable, for data processing, it is fixing to pcb board, adopt soft arranging wire to connect to carry out transfer of data between the two, in the process of camera module rotation, will inevitably cause curving of soft arranging wire like this, in the course of time may there is the situation of fracture in soft arranging wire, makes the electric connection between camera module and pcb board unstable, and then affect the useful life of camera.
Utility model content
The purpose of this utility model is to provide a kind of rotatable camera head, is intended to, for solving the process soft arranging wire easy fracture of existing camera in rotation, make camera module and pcb board be electrically connected unsettled problem.
For solving the problems of the technologies described above, the technical solution of the utility model is: a kind of rotatable camera head is provided, comprise the camera module that can rotate around self axis 360 degree and the pcb board being electrically connected with described camera module, also comprise the binding post that is electrically connected described camera module and described pcb board, while being equipped with described camera module rotation on described binding post, can make described camera module and described pcb board keep the some electric connection grooves that are electrically connected, described in each, be electrically connected the rotation of groove perpendicular to described camera module.
Particularly, the axis of symmetry of described binding post coincides with on the rotation of described camera module.
Particularly, described binding post is fixedly connected with described camera module and each described electric connection groove and the electric connection of described camera module, described pcb board and described binding post are electrically connected by the first connecting band, when described the first connecting band has described camera module rotation, can slide and keep the first connector being electrically connected along each described electric connection groove.
Further, be equipped with some the first coils on described binding post, each described the first coil is electrically connected one by one with each described electric connection groove respectively, and each described the first coil and described camera module plate are all electrically connected.
Further, be equipped with some the first grooves on described binding post, each described the first coil is all embedded in each described the first groove.
Particularly, described the first connector has one by one corresponding being slidedly arranged in each described electric connection groove and with each described electric connection groove and keeps some the first thimbles that are electrically connected.
Particularly, each described electric connection groove and described pcb board are electrically connected, described camera module and described binding post are electrically connected by the second connecting band, when described the second connecting band has described camera module rotation, can slide and keep the second connector being electrically connected along each be electrically connected groove.
Further, be equipped with some the second coils on described binding post, each described the second coil is electrically connected one by one with each described electric connection groove respectively, and each described the second coil and described pcb board are all electrically connected.
Further, be equipped with some the second grooves on described binding post, each described the second coil homogeneous one correspondence is embedded in each the second groove.
Particularly, described the second connector has one by one corresponding being slidedly arranged in each described electric connection groove and with each described electric connection groove and keeps some the second thimbles that are electrically connected.
The utlity model has following technique effect:
In the utility model, camera module can rotate around self axis within the scope of 360 degree, between itself and pcb board, by a binding post, be electrically connected, on binding post, be equipped with some electric connection grooves, when camera module rotates, each groove that is electrically connected can make to keep being electrically connected between camera module and pcb board, is respectively electrically connected groove all vertical with the rotation of camera module.Between camera module and pcb board, be not directly electrically connected, but electrically conduct by binding post, binding post is column structure again, at camera module during around the rotation of axis 360 degree, by the effect of each electric connection groove, make to keep being electrically connected between camera module and pcb board, binding post is that column is difficult to produce larger torsion and makes its distortion can not affect like this useful life of binding post, makes can remain between camera module and pcb board the stability of electric connection.
Accompanying drawing explanation
Fig. 1 is the utility model embodiment rotatable camera head structural representation;
Fig. 2 is the structural representation of the first version of the rotatable camera head of Fig. 1;
Fig. 3 is the explosive view of the second version of the rotatable camera head of Fig. 1.
Embodiment
In order to make the purpose of this utility model, technical scheme and advantage clearer, below in conjunction with drawings and Examples, the utility model is further elaborated.Should be appreciated that specific embodiment described herein is only in order to explain the utility model, and be not used in restriction the utility model.
Referring to Fig. 1, the utility model embodiment provides a kind of rotatable camera head, comprise camera module 1 and pcb board 2, electrically conduct between the two, the signal that camera module 1 is produced is passed on pcb board 2, camera module 1 can carry out the rotation of 360 degree around self axis, camera also comprises a binding post 3, between binding post 3 and camera module 1 and pcb board 2, be all electrically connected, on binding post 3, be equipped with and be electrically connected groove 31, each electric connection groove 31 is all vertical with the rotation of camera module 1, when camera module 1 rotates, be electrically connected groove 31 and can make to remain between camera module 1 and pcb board 2 good electric connection, owing to thering is many barss transmission line between camera module 1 and pcb board 2, to this, number that is electrically connected groove 31 is also made as some, each electric connection groove 31 is corresponding one by one with each signal transmssion line.In the present embodiment, between camera module 1 and pcb board 2, be not directly electrically connected, but indirectly electrically conduct by a binding post 3, and when can making camera module 1360 degree rotate arbitrarily, the some electric connection grooves 31 that arrange on this binding post 3 are effectively electrically connected between camera module 1 and pcb board 2 always, the rotation of camera module 1 can be directly to pcb board 2 generation effects, simultaneously again because binding post 3 is column structure, when camera module 1 rotates, be difficult to produce stronger torsion and make its torsional deformation, can not affect the useful life of binding post 3, thereby guaranteed the stability being electrically connected between camera module 1 and pcb board 2.Be electrically connected groove 31 and can, for to be directly opened in the open slot on binding post 3, on the inwall of open slot, be equipped with copper layer, or can be also the open slot of being located on a coil, then this coil is fixed on binding post 3.
Further, the rotation of camera module 1 is through binding post 3, the axis of symmetry that is in particular binding post 3 overlaps with the rotation of camera module 1, like this, binding post 3 is positioned at the revolution space of camera module 1, can effectively guarantee that the overall structure of camera module 1 and binding post 3 is less.
Particularly, camera there is two schemes so that when camera module 1 rotates each stability that is electrically connected groove 31 and can guarantees electric connection between camera module 1 and pcb board 2.
Scheme one
Referring to Fig. 2, binding post 3a is fixed on camera module 1, binding post 3a can be synchronizeed and rotate around axis with camera module 1, each electric connection groove 3a1 and camera module 1 are electrically connected, like this when camera module 1 rotates, camera module 1 is relative static with the electric connection point of each electric connection groove 3a1, it can not affect electric connection state between the two, between pcb board 2 and binding post 3a, by the first connecting band 3a2, be electrically connected, the first connecting band 3a2 has and the first connector 3a3 that is electrically connected groove 3a1 electric connection, and when camera module 1 and binding post 3a synchronous rotary, the first connector 3a3 can slide and keep electrically conducting always along each electric connection groove 3a1.The first connector 3a3 has part-structure and stretches in each electric connection groove 3a1 and contact formation with the inwall that is electrically connected groove 3a1 and electrically conduct, owing to being electrically connected groove 3a1, be located on binding post 3a, at binding post 3a when axis rotates, the first connector 3a3 slides around its inwall in electric connection groove 3a1, and both keep electric connection state always.
Further, be also equipped with some the first coil 3a4 on binding post 3a, each the first coil 3a4 and each electric connection groove 3a1 are electrically connected one by one, and each the first coil 3a4 and camera module 1 are all electrically connected.It is inner fixing that binding post 3a stretches into camera module 1 along an axis part, the first coil 3a4 be located at binding post 3a compared with lower end, be positioned at camera module 1 inside, by be electrically connected groove 3a1 be located at binding post 3a compared with upper end, be positioned at outside camera module 1, be conveniently electrically connected with pcb board 2, by electric wire, along binding post 3a, connect one to one between the two, this structure can conveniently realize the connection of each connection line, and methodization is more clear simultaneously, is unlikely to occur the disorder of circuit.
Further, on binding post 3a, be equipped with some circle the first groove 3a5, each the first coil 3a4 one by one correspondence is embedded in each the first groove 3a5, and this is mainly convenient fixing to each the first coil 3a4, to avoid each the first coil 3a4 to connect unstable on binding post 3a.Further, on binding post 3a, be provided with a through hole 3a6, each the first groove 3a5 is all located on the inwall of through hole 3a6, this each first coil 3a4 is also all located in through hole 3a6 to the first coil 3a4 and be electrically connected and be connected also all the fit inwall of through hole 3a6 being connected with the inwall of electric connection groove 3a1 through binding post 3a of electric wire between groove 3a1.Like this, the first coil 3a4 and the electric wire that is connected being electrically connected between groove 3a1 can be hidden, avoid its outer surface along binding post 3a to be connected with electric connection groove 3a1.
Particularly, the first connector 3a3 has several the first thimbles 3a31 for being electrically connected, each the first thimble 3a31 all stretches into correspondingly each electric connection groove 3a1 and contacts with its inwall, and in the process of binding post 3a rotation, each the first thimble 3a31 all can slide along electric connection groove 3a1 separately, so that the first connecting band 3a2 can not produce distortion, guarantees the first connecting band 3a2 simultaneously and is electrically connected the stability being electrically connected between groove 3a1.For being electrically connected groove 3a1, also can be located on the inwall of through hole 3a6, the first connector 3a3 is also equipped with some electric connection circle (not shown)s, the first connector 3a3 is stretched in the through hole 3a6 of binding post 3a, each electric connection is enclosed correspondence one by one and is sticked in each electric connection groove 3a1, and when binding post 3a rotates, each electric connection between circle and the inwall of each electric connection groove 3a1 produces relative sliding, and the rotation of binding post 3a does not produce interaction force to the first connector 3a3.
Scheme two
Referring to Fig. 3, binding post 3b is not fixed on camera module 1, and binding post 3b can be with camera module 1 synchronous rotary.Each electric connection groove 3b1 and pcb board 2 are electrically connected, camera module 1 is electrically connected by the second connecting band 3b2 with binding post 3b, the second connecting band 3b2 is provided with the second connector 3b3, when camera module 1 rotates, the second connector 3b3 can slide and guarantee the stability being electrically connected between camera module 1 and the second connecting band 3b2 along each electric connection groove 3b1.The second connector 3b3 has part-structure and can stretch in each electric connection groove 3b1 and contact formation electric connection with its inwall, when camera module 1 rotates, it drives the second connector 3b3 of the second connecting band 3b2 to produce rotation, make the second connector 3b3 slide and guarantee along each electric connection groove 3b1 and also can not produce active force by pairs of posts 3b by the good of electric connection between the two simultaneously.
Further, be equipped with some the second coil 3b4 that are electrically connected with pcb board 2 on binding post 3b, each the second coil 3b4 and each electric connection groove 3b1 are electrically connected one by one, can make each connection line logic stronger, are unlikely to get muddled.Further, be also equipped with some circle the second groove 3b5 on binding post 3b, each the second coil 3b4 homogeneous one correspondence is embedded in each the second groove 3b5, and convenient formation is fixing on binding post 3b to each the second coil 3b4, prevents that it is by coming off on binding post 3b.
Further, the second connector 3b3 is provided with some the second thimble 3b31, each the second thimble 3b31 one by one correspondence stretches in each electric connection groove 3b1 and contacts with its inwall, when camera module 1 rotates, the second connector 3b3 drives each the second thimble 3b31 to slide along being electrically connected separately in groove 3b1, the second thimble 3b31 contacts maintenance electric connection with being electrically connected groove 3b1 inwall, and the second thimble 3b31 can not produce active force by pairs of posts 3b.In like manner on the second connector 3b3, also can comprise built-in some electric connection circle (not shown)s, the second connector 3b3 is sheathed on binding post 3b, each electric connection circle homogeneous one correspondence is stretched in each electric connection groove 3b1, when camera module 1 rotates, the second connector 3b3 rotation makes to be electrically connected circle and produces relative sliding with being electrically connected groove 3b1, is electrically connected circle simultaneously and can produce active force to being electrically connected groove 3b1.
The foregoing is only the utility model preferred embodiment; its structure is not limited to the above-mentioned shape of enumerating; all any modifications of doing within spirit of the present utility model and principle, be equal to and replace and improvement etc., within all should being included in protection range of the present utility model.

Claims (10)

1. a rotatable camera head, comprise the camera module that can rotate around self axis 360 degree and the pcb board being electrically connected with described camera module, it is characterized in that: also comprise the binding post that is electrically connected described camera module and described pcb board, while being equipped with described camera module rotation on described binding post, can make described camera module and described pcb board keep the some electric connection grooves that are electrically connected, described in each, be electrically connected the rotation of groove perpendicular to described camera module.
2. rotatable camera head as claimed in claim 1, is characterized in that: the axis of symmetry of described binding post coincides with on the rotation of described camera module.
3. rotatable camera head as claimed in claim 1 or 2, it is characterized in that: described binding post is fixedly connected with described camera module and each described electric connection groove and the electric connection of described camera module, described pcb board and described binding post are electrically connected by the first connecting band, when described the first connecting band has described camera module rotation, can slide and keep the first connector being electrically connected along each described electric connection groove.
4. rotatable camera head as claimed in claim 3, it is characterized in that: on described binding post, be equipped with some the first coils, each described the first coil is electrically connected one by one with each described electric connection groove respectively, and each described the first coil and described camera module plate are all electrically connected.
5. rotatable camera head as claimed in claim 4, is characterized in that: on described binding post, be equipped with some the first grooves, each described the first coil is all embedded in each described the first groove.
6. rotatable camera head as claimed in claim 3, is characterized in that: described the first connector has corresponding being slidedly arranged in each described electric connection groove and with each described electric connection groove one by one and keeps some the first thimbles that are electrically connected.
7. rotatable camera head as claimed in claim 1 or 2, it is characterized in that: each described electric connection groove and described pcb board are electrically connected, described camera module and described binding post are electrically connected by the second connecting band, when described the second connecting band has described camera module rotation, can slide and keep the second connector being electrically connected along each be electrically connected groove.
8. rotatable camera head as claimed in claim 7, it is characterized in that: on described binding post, be equipped with some the second coils, each described the second coil is electrically connected one by one with each described electric connection groove respectively, and each described the second coil and described pcb board are all electrically connected.
9. rotatable camera head as claimed in claim 8, is characterized in that: on described binding post, be equipped with some the second grooves, each described the second coil homogeneous one correspondence is embedded in each the second groove.
10. rotatable camera head as claimed in claim 7, is characterized in that: described the second connector has corresponding being slidedly arranged in each described electric connection groove and with each described electric connection groove one by one and keeps some the second thimbles that are electrically connected.
CN201320752098.7U 2013-11-25 2013-11-25 Rotatable camera Expired - Fee Related CN203590320U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320752098.7U CN203590320U (en) 2013-11-25 2013-11-25 Rotatable camera

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320752098.7U CN203590320U (en) 2013-11-25 2013-11-25 Rotatable camera

Publications (1)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104092073A (en) * 2014-07-16 2014-10-08 天地融科技股份有限公司 Electric connection structure, electronic device and electronic key device
CN104852238A (en) * 2015-05-25 2015-08-19 浙江维尔科技股份有限公司 Rotary physical interface and electronic device
CN111883993A (en) * 2020-07-30 2020-11-03 Oppo广东移动通信有限公司 Electronic device
CN114597724A (en) * 2020-11-19 2022-06-07 昆达电脑科技(昆山)有限公司 Electric connecting device and photographic equipment

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104092073A (en) * 2014-07-16 2014-10-08 天地融科技股份有限公司 Electric connection structure, electronic device and electronic key device
CN104852238A (en) * 2015-05-25 2015-08-19 浙江维尔科技股份有限公司 Rotary physical interface and electronic device
CN111883993A (en) * 2020-07-30 2020-11-03 Oppo广东移动通信有限公司 Electronic device
WO2022022189A1 (en) * 2020-07-30 2022-02-03 Oppo广东移动通信有限公司 Electronic apparatus
CN114597724A (en) * 2020-11-19 2022-06-07 昆达电脑科技(昆山)有限公司 Electric connecting device and photographic equipment
CN114597724B (en) * 2020-11-19 2023-05-09 昆达电脑科技(昆山)有限公司 Electric connection device and photographic equipment

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140507

Termination date: 20141125

EXPY Termination of patent right or utility model