CN204906536U - Many cameras synchronous telescope's structure - Google Patents

Many cameras synchronous telescope's structure Download PDF

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Publication number
CN204906536U
CN204906536U CN201520732689.7U CN201520732689U CN204906536U CN 204906536 U CN204906536 U CN 204906536U CN 201520732689 U CN201520732689 U CN 201520732689U CN 204906536 U CN204906536 U CN 204906536U
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China
Prior art keywords
camera module
camera
rotation axis
lid
axis portion
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Expired - Fee Related
Application number
CN201520732689.7U
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Chinese (zh)
Inventor
陈志豪
叶嘉勇
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Shenzhen Go6d Science & Technology Co Ltd
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Shenzhen Go6d Science & Technology Co Ltd
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Priority to CN201520732689.7U priority Critical patent/CN204906536U/en
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Abstract

The utility model provides a many cameras synchronous telescope's structure, includes upper cover, lid, rotation axial region and camera module, the interior bottom surface of lid is provided with radial spacing guide slot, the direction of radial spacing guide slot does the radial direction in the centre of a circle, it is a plurality of the camera mould splits do not by the spacing even interval cyclization of radial spacing guide slot sets up, and respectively by its spacing and radially the translation in on the interior bottom surface of lid, the camera mould splits do not through switching portion link in the axial region rotates, it passes through to rotate the rotation of axial region switching portion drives all the motion of camera module, the camera module is followed jointly the restriction direction of radial spacing guide slot removes and realizes that the camera is in downthehole the the stretching out and drawing back of camera lens. The utility model discloses utilize one to rotate the flexible of a plurality of cameras of axial region control, can stretch the visual angle of avoiding the shell to stop the camera to the camera when making a video recording, can the camera withdrawal remove to protect the camera when not taking.

Description

A kind of structure of multi-cam synchronization telescope
Technical field
The utility model relates to concentric panorama camera, particularly relates to a kind of structure of multi-cam synchronization telescope.
Background technology
Panoramic picture is a kind of image expression way of 360 ° of ultra-wide angle visuals field, and it to contain than image sequence more intuitively, more complete scene information.At present, full-view image can be divided into the methods such as image mosaic, fish eye lens, with one heart panorama camera, line sweep panorama camera, the comprehensive camera of catadioptric, multiple-sensor integration according to the difference of obtaining means or technology path.
Current its video camera of concentric panorama camera is generally fixing mounting means, in order to avoid shell stops the visual angle of camera, its camera generally exposes and protrudes from outside shell body, but camera is not when using, its camera also can expose always and protrude from outside shell body, in the process deposited or shift, easily collide camera, cause the damage of camera, therefore, need a kind of structure being applied to the multi-cam synchronization telescope of concentric panorama camera at present badly.
Utility model content
The purpose of this utility model is the structure proposing the simple multi-cam synchronization telescope of a kind of structure; a rotation axis portion is utilized to control the flexible of multiple camera; camera can be stretched the visual angle avoiding shell to stop camera during shooting, when not taking, protection camera can be shunk back by camera.
For reaching this object, the utility model by the following technical solutions:
A structure for multi-cam synchronization telescope, comprises upper cover, lid, rotation axis portion and camera module, and described camera module is at least provided with two;
The inner bottom surface of described lid is provided with radial limit guide groove, described lid Nei Yiqi center is the center of circle, the radial direction being directed to the described center of circle of described radial limit guide groove, the quantity that described radial limit guide groove is arranged is consistent with the quantity of described camera module, multiple described camera module becomes ring to arrange by the spacing uniform intervals of described radial limit guide groove respectively, and spacing by it respectively and can radial translation on the inner bottom surface of described lid; The camera lens that the sidewall of described lid corresponds to described camera module offers camera aperture, and the camera lens of described camera module is extended or be hidden in described camera aperture;
Described upper cover covers the top being installed on described lid;
The axes normal in described rotation axis portion is in the inner bottom surface of described lid, and the rotating center being arranged at described lid, described rotation axis portion, described camera module is linked in described rotation axis portion respectively by switching part, the described switching part that rotates through in described rotation axis portion drives whole described camera module motion, and described camera module moves along the restricted guidance of described radial limit guide groove jointly;
The top ends in described rotation axis portion protrudes from described upper cover through the through hole of described upper cover.
Further description, described camera module is provided with three, and the image captured by three described camera modules is full-view image.
Further description, described radial limit guide groove comprises base limited impression, the bottom of described camera module is provided with spacing prominent groove, and the spacing prominent groove that described base limited impression corresponds to described camera module is arranged, and described spacing prominent groove is slidably in described limited impression.
Further description, described radial limit guide groove comprises side limit guide groove, and described side limit guide groove is the corresponding both sides being arranged at described camera module respectively, and carry out spacing to its both sides.
Further description, described upper cover corresponds to after the afterbody of described camera module is provided with and moves stopper protrusion.
Further description, the center of the inner bottom surface of described lid is provided with installation portion, and described rotation axis portion is nested in described installation portion by rotating.
Further description, the upper end of the sidewall in described rotation axis portion is provided with spacing ring, and the external diameter size of described spacing ring is greater than the diameter of described through hole, and described spacing ring is butted on the interior of described upper cover mutually and supports ring.
Further description, the outer wall of the top ends in described rotation axis portion is provided with anti-slip veins.
Further description, the outer of the through hole of described upper cover is provided with rotation status mark.
Further description, the length of described switching part be described camera module tail end to described rotation axis portion distance of shaft centers from.
The beneficial effects of the utility model: utilize a rotation axis portion to control the flexible of multiple camera, camera can be stretched the visual angle avoiding shell to stop camera during shooting, protection camera can be shunk back by camera when not taking.
Accompanying drawing explanation
Fig. 1 is the fractionation structural representation of an embodiment of the present utility model;
Fig. 2 is the cross-sectional view of an embodiment of the present utility model.
Wherein: upper cover 1, lid 2, rotation axis portion 3, camera module 4, switching part 5, interior support ring 101, outer 111, through hole 11, after move stopper protrusion 12, radial limit guide groove 21, side limit guide groove 211, base limited impression 212, camera aperture 22, axis 301, top ends 302, installation portion 23, spacing ring 31, spacing prominent groove 41.
Embodiment
The technical solution of the utility model is further illustrated by embodiment below in conjunction with accompanying drawing.
As Figure 1-Figure 2, a kind of structure of multi-cam synchronization telescope, comprises upper cover 1, lid 2, rotation axis portion 3 and camera module 4, and described camera module 4 is at least provided with two;
The inner bottom surface of described lid 2 is provided with radial limit guide groove 21, described lid 2 Nei Yiqi center is the center of circle, the radial direction being directed to the described center of circle of described radial limit guide groove 21, the quantity that described radial limit guide groove 21 is arranged is consistent with the quantity of described camera module 4, multiple described camera module 4 becomes ring to arrange by the spacing uniform intervals of described radial limit guide groove 21 respectively, and spacing by it respectively and can radial translation on the inner bottom surface of described lid 2; The camera lens that the sidewall of described lid 2 corresponds to described camera module 4 offers camera aperture 22, and the camera lens of described camera module 4 is extended or be hidden in described camera aperture 22;
Described upper cover 1 covers the top being installed on described lid 2;
The axis 301 in described rotation axis portion 3 is perpendicular to the inner bottom surface of described lid 2, and the rotating center being arranged at described lid 2, described rotation axis portion 3, described camera module 4 is linked in described rotation axis portion 3 respectively by switching part 5, the described switching part 5 that rotates through in described rotation axis portion 3 drives whole described camera module 4 to move, and described camera module 4 moves along the restricted guidance of described radial limit guide groove 21 jointly;
The top ends 302 in described rotation axis portion 3 protrudes from described upper cover 1 through the through hole 11 of described upper cover 1.
Multiple camera module 4 is by the linking upwards of the Different Diameter with same rotation axis portion 3, the distance between switching part 5 end to Coupling Shaft portion 3 is jointly changed by the rotation in rotation axis portion 3, and the camera module 4 driving its end to link radially limit guide groove 21 move, make that camera is scalable to be exposed or be hidden in camera aperture 22, realize the synchronization telescope of multi-cam, in addition, the control rotating shaft shared by structure and its of same components realizes the accuracy of camera synchronization telescope, if camera is the deviation of each autokinesis that exists of athletic meeting separately, multiple deviation combines and the Interconnection error between captured photo can be caused larger, make its focal distance possibility of the image captured by multi-cam inconsistent, the utility model multi-cam synchronization telescope structure can effectively solve the problem.
In addition, camera is not when using, and its camera lens is scalable to be hidden in lid 2; can not expose protrudes from outside shell body always; avoid easily colliding camera in the process deposited or shift, cause the problem that camera damages, the utility model plays a good protection to camera.
More excellent, described camera module 4 is provided with three, and the image captured by three described camera modules 4 is full-view image.
Angle between camera module 4 is 120 °, the panorama of shooting 360 ° that can be good, forms seamless connection.
More excellent, described radial limit guide groove 21 comprises base limited impression 212, the bottom of described camera module 4 is provided with spacing prominent groove 41, the spacing prominent groove 41 that described base limited impression 212 corresponds to described camera module 4 is arranged, and described spacing prominent groove 41 is slidably in described limited impression 212.
The bottom of camera module 4 and lid 2 is provided with the spacing prominent groove 41 and base limited impression 212 that cooperatively interact, and camera module 4 can be displaced in lid 2 more stably.
More excellent, described radial limit guide groove 21 comprises side limit guide groove 211, and described side limit guide groove 211 is the corresponding both sides being arranged at described camera module 4 respectively, and carry out spacing to its both sides.The arranging of side limit guide groove 211 effectively prevents the skew of camera module 4 both sides to the left and right, stationarity during lifter motion.
More excellent, move stopper protrusion 12 after the afterbody that described upper cover 1 corresponds to described camera module 4 is provided with.After move the scope of stopper protrusion 12 for the movement backward of spacing camera module 4, move after avoiding camera module 4 and exit radial limit guide groove 21, avoid camera module 4 not to be limited in lid 2, avoid it mutually to collide in lid 2.
More excellent, the center of the inner bottom surface of described lid 2 is provided with installation portion 23, and described rotation axis portion 3 is nested in described installation portion 23 by rotating.By the limit mounting of installation portion 23, make the installation in rotation axis portion 3 more accurate, avoid the control of camera module 4 inconsistent.
More excellent, the upper end of the sidewall in described rotation axis portion 3 is provided with spacing ring 31, and the external diameter size of described spacing ring 31 is greater than the diameter of described through hole 11, and described spacing ring 31 is butted on the interior of described upper cover 1 mutually and supports ring 101.The setting of spacing ring 31 is used for preventing rotation axis portion 3 via through holes 11 from departing from lid 2, guarantees integrally-built steadiness.
More excellent, the outer wall of the top ends 302 in described rotation axis portion 3 is provided with anti-slip veins.Make the rotating operation in rotation axis portion 3 easier.
More excellent, the outer 111 of the through hole 11 of described upper cover 1 is provided with rotation status mark.Be provided with rotation status be marked be beneficial to user to operation understanding.
More excellent, the length of described switching part 5 be described camera module 4 tail end to described rotation axis portion 3 distance of shaft centers from.This length is set to the length of transmission effect optimum, saves material, and its structure is also have stronger stability simultaneously, processes simple and easy, also makes internal structure more succinct in addition.
Below know-why of the present utility model is described in conjunction with specific embodiments.These describe just in order to explain principle of the present utility model, and can not be interpreted as the restriction to the utility model protection range by any way.Based on explanation herein, those skilled in the art does not need to pay performing creative labour can associate other embodiment of the present utility model, and these modes all will fall within protection range of the present utility model.

Claims (10)

1. a structure for multi-cam synchronization telescope, is characterized in that: comprise upper cover, lid, rotation axis portion and camera module, and described camera module is at least provided with two;
The inner bottom surface of described lid is provided with radial limit guide groove, described lid Nei Yiqi center is the center of circle, the radial direction being directed to the described center of circle of described radial limit guide groove, the quantity that described radial limit guide groove is arranged is consistent with the quantity of described camera module, multiple described camera module becomes ring to arrange by the spacing uniform intervals of described radial limit guide groove respectively, and spacing by it respectively and can radial translation on the inner bottom surface of described lid; The camera lens that the sidewall of described lid corresponds to described camera module offers camera aperture, and the camera lens of described camera module is extended or be hidden in described camera aperture;
Described upper cover covers the top being installed on described lid;
The axes normal in described rotation axis portion is in the inner bottom surface of described lid, and the rotating center being arranged at described lid, described rotation axis portion, described camera module is linked in described rotation axis portion respectively by switching part, the described switching part that rotates through in described rotation axis portion drives whole described camera module motion, and described camera module moves along the restricted guidance of described radial limit guide groove jointly;
The top ends in described rotation axis portion protrudes from described upper cover through the through hole of described upper cover.
2. the structure of a kind of multi-cam synchronization telescope according to claim 1, is characterized in that: described camera module is provided with three, the image captured by three described camera modules is full-view image.
3. the structure of a kind of multi-cam synchronization telescope according to claim 1, it is characterized in that: described radial limit guide groove comprises base limited impression, the bottom of described camera module is provided with spacing prominent groove, the spacing prominent groove that described base limited impression corresponds to described camera module is arranged, and described spacing prominent groove is slidably in described limited impression.
4. the structure of a kind of multi-cam synchronization telescope according to claim 1 or 3, it is characterized in that: described radial limit guide groove comprises side limit guide groove, described side limit guide groove is the corresponding both sides being arranged at described camera module respectively, and carry out spacing to its both sides.
5. the structure of a kind of multi-cam synchronization telescope according to claim 1, is characterized in that: described upper cover corresponds to after the afterbody of described camera module is provided with and moves stopper protrusion.
6. the structure of a kind of multi-cam synchronization telescope according to claim 1, is characterized in that: the center of the inner bottom surface of described lid is provided with installation portion, and described rotation axis portion is nested in described installation portion by rotating.
7. the structure of a kind of multi-cam synchronization telescope according to claim 1, it is characterized in that: the upper end of the sidewall in described rotation axis portion is provided with spacing ring, the external diameter size of described spacing ring is greater than the diameter of described through hole, and described spacing ring is butted on the interior of described upper cover mutually and supports ring.
8. the structure of a kind of multi-cam synchronization telescope according to claim 1, is characterized in that: the outer wall of the top ends in described rotation axis portion is provided with anti-slip veins.
9. the structure of a kind of multi-cam synchronization telescope according to claim 1, is characterized in that: the outer of the through hole of described upper cover is provided with rotation status mark.
10. the structure of a kind of multi-cam synchronization telescope according to claim 1, is characterized in that: the length of described switching part be described camera module tail end to described rotation axis portion distance of shaft centers from.
CN201520732689.7U 2015-09-21 2015-09-21 Many cameras synchronous telescope's structure Expired - Fee Related CN204906536U (en)

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CN201520732689.7U CN204906536U (en) 2015-09-21 2015-09-21 Many cameras synchronous telescope's structure

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Application Number Priority Date Filing Date Title
CN201520732689.7U CN204906536U (en) 2015-09-21 2015-09-21 Many cameras synchronous telescope's structure

Publications (1)

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CN204906536U true CN204906536U (en) 2015-12-23

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106990498A (en) * 2016-05-26 2017-07-28 深圳市圆周率软件科技有限责任公司 A kind of lens location micromatic setting of many camera lens panorama cameras
CN114900603A (en) * 2022-06-24 2022-08-12 灵优智学(深圳)科技有限公司 Camera device
CN115134504A (en) * 2022-09-01 2022-09-30 张家港市长江五金锁业有限公司 Domestic intelligent monitoring equipment

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106990498A (en) * 2016-05-26 2017-07-28 深圳市圆周率软件科技有限责任公司 A kind of lens location micromatic setting of many camera lens panorama cameras
CN114900603A (en) * 2022-06-24 2022-08-12 灵优智学(深圳)科技有限公司 Camera device
CN114900603B (en) * 2022-06-24 2024-04-19 灵优智学(深圳)科技有限公司 Image pickup device
CN115134504A (en) * 2022-09-01 2022-09-30 张家港市长江五金锁业有限公司 Domestic intelligent monitoring equipment
CN115134504B (en) * 2022-09-01 2022-11-08 张家港市长江五金锁业有限公司 Domestic intelligent monitoring equipment

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GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20151223

Termination date: 20210921