CN207133497U - Stereoscopic imaging lens - Google Patents
Stereoscopic imaging lens Download PDFInfo
- Publication number
- CN207133497U CN207133497U CN201621383939.1U CN201621383939U CN207133497U CN 207133497 U CN207133497 U CN 207133497U CN 201621383939 U CN201621383939 U CN 201621383939U CN 207133497 U CN207133497 U CN 207133497U
- Authority
- CN
- China
- Prior art keywords
- mirror
- centre
- nut
- reflective mirror
- imaging lens
- 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
Links
Abstract
The utility model discloses a kind of stereoscopic imaging lens, including shell, located at the V-shaped center mirror assembly of housing center, with be respectively arranged on center mirror assembly both sides and the incline direction nearside mirror consistent with side corresponding to the mirror assembly of center and right reflective mirror, also include being used for the angular adjustment component for adjusting left and right reflective mirror angle of inclination, and for adjusting the centre-to-centre spacing adjusting part of centre-to-centre spacing distance between left and right reflective mirror, and spring clip for clamping the electronic equipments such as mobile phone etc..By adjusting each lens position and angle, the light channel of imaging is adjusted to meet eye-observation orientation, the light after adjustment is entered the camera of electronic equipment, shoot the left-right format stereopsis with human eye sense organ.Camera lens of the present utility model, the mobile phone at different size visual angle is suitable for, and shooting effect is good.
Description
Technical field
It the utility model is related to stereoscopic imaging lens.
Background technology
The portable electronic product imaged such as mobile phone at present, due to by many influences such as hardware, size, at present
2D photologgings can only be realized, but with the development of technology, desirably the portable type electronic product such as mobile phone can be shot
3D images, to solve the problems, such as 3D stereoscopic cameras or other equipment cost costlinesses with 3D stereo image-forming functions.
Also there is the camera lens of the three-dimensional imaging of easy light separation conversion in prior art, but because the eyeglass of camera lens is
Fixed mode, and different brands mobile phone respectively uses the camera module of oneself, its imaged viewing angle degree is all different, if using eyeglass
Fixed stereoscopic imaging lens do not meet the position for causing left and right imaging in the rule of the visual imaging of human eye, the figure formed
It can not watch, user experience extreme difference.
Therefore, how to design it is a kind of economical and practical, and can close to professional stereoscopic camera imaging effect stereoscopic imaging lens,
It is industry technical problem urgently to be resolved hurrily.
The content of the invention
The utility model is existing in order to solve the problems, such as, there is provided a kind of stereoscopic imaging lens, including shell, in shell
The V-shaped center mirror assembly of the heart, and it is respectively arranged on center mirror assembly both sides and incline direction and the reflective microscope group in center
The consistent nearside mirror in side corresponding to part and right reflective mirror, in addition to for adjusting the angle at left and right reflective mirror angle of inclination
Adjusting part is spent, and for adjusting the centre-to-centre spacing adjusting part of centre-to-centre spacing distance between left and right reflective mirror.
Angular adjustment component and centre-to-centre spacing adjusting part have multiple embodiments.So as to realize to left and right reflective mirror or V
The angle of inclination of font center mirror assembly and centre-to-centre spacing are adjusted, and the utility model may be mounted at it is all
On smart mobile phone, or on other capture apparatus such as tablet personal computer, camera, and good stereopsis can be generated, can adjusted
It is whole and shoot and meet personal visual angle sense organ(Different people, two centre-to-centre spacing are variant)Stereopsis, shell be provided with auxiliary
Location structure, can quick and precisely clamping.
Brief description of the drawings
Fig. 1 is the sectional view of the utility model first embodiment;
Fig. 2 is the structure diagram of the utility model first embodiment;
Fig. 3 is the schematic rear view that the utility model is connected with mobile phone;
Fig. 4 is the sectional view of second embodiment of the present utility model;
Fig. 5 is the sectional view of 3rd embodiment of the present utility model;
Fig. 6 is the sectional view of fourth embodiment of the present utility model;
Fig. 7 is the sectional view of the 5th embodiment of the present utility model;
Fig. 8 is the sectional view of sixth embodiment of the present utility model.
Embodiment
The utility model is further illustrated with reference to accompanying drawing by taking mobile phone as an example below.
Fig. 1 is the structural representation of first embodiment of the present utility model, and Fig. 2 is the province of first embodiment Each part
Slightly view, only remains main building block.In this embodiment, stereoscopic imaging lens include a square shell 10, outside
V-shaped center mirror assembly 20, nearside mirror 31, right reflective mirror 41, angular adjustment component and centre-to-centre spacing is provided with shell 10 to adjust
Save component.
The top of shell 10 is referred to as protecgulum 11, and transparent glasses lens 16 are bonded with protecgulum 11, and the bottom of shell 10 is referred to as
Bottom 13, bottom 13 are provided centrally with light channel hole 60, and the light channel hole is corresponding with the camera of mobile phone 70.
In the present embodiment, V-shaped center mirror assembly 20 is arranged on the center of the bottom of shell, the nearside mirror of both sides
31st, right reflective mirror 41 is respectively towards left and right inclination.The requirement being imaged according to mobile phone camera, the reflective surface of center mirror plate two
Between in the angle between 80 to 120 degree, the spiral-lock of center mirror assembly 20 makes both sides in the spacing position of bone of shell two sides
The center of the intersecting seamed edge alignment mobile phone camera of middle left and middle right two reflective mirror.
Centre-to-centre spacing adjusting part includes nearside mirror seat 30, the right mirror base being hinged respectively with left and right reflective mirror bottom
40, nearside mirror seat 30, right mirror base 40 can be slidably reciprocated left and right on bottom 13, and the upper surface of nearside mirror seat 30 is installed with
Two left adjusting nuts 301, the upper surface of right mirror base 40 are installed with two right adjusting nuts 401, center distance regulating rod 121
Through this four adjusting nuts, it is threadedly coupled with this four adjusting nuts, and left adjusting nut 301 and right adjusting nut 401
Hand of spiral is on the contrary, the one end of center distance regulating rod 121 sets centre-to-centre spacing adjusting knob 12(In other embodiments, centre-to-centre spacing
Adjusting knob 12 can also be arranged on center distance regulating rod and take up an official post the position of meaning, as long as 121 turns of center distance regulating rod can be driven
It is dynamic).Angular adjustment component includes the Left Drive part 19 and right driving member 18 being hinged respectively with left and right reflective mirror epimere, left
The other end of driving member 19 and right driving member 18 is connected to intermediate nut 170, and the second adjusting knob 17 passes through protecgulum 11 and centre
Nut 170 is threadedly coupled.Left spring 32 is connected to the nearside mirror back side and nearside mirror seat upper surface, and same right spring 42 divides
The right reflective mirror back side and right mirror base upper surface are not connected to.When adjusting centre-to-centre spacing, center of rotation is left away from adjusting knob 12
Mirror base 30 and right mirror base 40, can be outwards or to central slides under the drive of center distance regulating rod 121 simultaneously.Rotate
Second adjusting knob 17, the intermediate nut 170 for coordinating rotation stop with the side wall of shell 10 move up and down, and intermediate nut 170 moves down,
The left and right driving member mounted in the side wall of shell 10 is promoted to be moved down by center one end, right driving member 18 passes through rotating shaft knot thereon
Structure 181 rotates, and according to lever principle, the bulge-structure of the right lower section of driving member 18 promotes right reflective mirror 41 around right reflective mirror
Clockwise rotation is done in rotating shaft on seat 40, to change the angle of right reflective mirror 41, while the right spring behind right reflective mirror
42 are compressed.The second adjusting knob 17 is rotated backward, intermediate nut 170 moves up therewith, the right spring 42 behind right reflective mirror 41
Uphold, promote the right rotate counterclockwise of reflective mirror 41, right driving member 18 turns clockwise therewith;Nearside mirror is to close with right reflective mirror
In centrosymmetric, adjust the second adjusting knob 17, the driving member of the left and right sides acts simultaneously, drive at left and right sides of reflective mirror
Change identical angle simultaneously, change the angle of both sides reflective mirror, in order to correct different camera angle differences and cause
Visual difference, its adjusting range is little, generally within 6 degree.
In order that stereoscopic imaging lens conveniently can be fixed on mobile phone, the lower section of bottom 13 is also equipped with being used to clamp mobile phone
Spring clip 14, spring clip 14 clamp the screen of mobile phone 70 one end equipped with soft silica gel 15 be used for protect screen not weighed wounded, simultaneously
Serve anti-skidding.In use, at pressing spring clip 14 handle position, the camera center of mobile phone 70 against bottom light channel
Mobile phone is clipped at hole 60, makes the long side of mirror head outer shell parallel with the long side of handset, opens mobile phone camera preview mode, mobile phone
On left and right image split screen display available, then the position of trickle moving lens and mobile phone, the left and right split screen two for going out screen preview occurs
Hem width is narrow of substantially equal;Because of the mobile phone of different brands different model, the visual angle size of its camera is substantially all different, therefore
The angle of left and right reflective mirror is adjusted using by the second adjusting knob 17 first, it is true according to the characteristics of pictures of screen preview
Fixed whether modulated integrate is fitted, if modulated integrate is fitted.As shown in figure 3, several pieces can be pasted along handset edge in bottom plane
Locating piece 901, when such later stage shoots, camera lens is with mobile phone clamping with regard to energy rapid-aligning, the good camera lens of quick-clamping.If now clap
When the image taken out is watched in VR virtual units, find to have than the material object actually seen and further or push away remote phenomenon, can lead to
Cross and adjust the centre-to-centre spacing adjusting knob 12 on camera lens to change the centre-to-centre spacing of two reflective mirrors of left and right, and coordinate the second adjusting knob
17, the orientation shooting consistent with presence can be adjusted to.
Fig. 4 is the structure and first such as second embodiment of the present utility model, its shell, spring clip and angular adjustment component
Embodiment is identical, but the structure of its centre-to-centre spacing adjusting part is different from first embodiment, in the present embodiment, centre-to-centre spacing regulation group
Part uses lever principle, and nearside mirror seat, right mirror base, center mirror assembly are respectively equipped with left and right reflective mirror bottom
Top shell is provided with centre-to-centre spacing knob 172, and the outer periphery threads of centre-to-centre spacing knob 172 are connected to centre-to-centre spacing nut 173, centre-to-centre spacing spiral shell
Female 173 both sides respectively connected lever left, one end of right lever 174, and the other end of left and right lever passes through bulge-structure respectively
175 are connected with nearside mirror seat, right mirror base.By pivot away from knob 172, the axle of rotation stop centre-to-centre spacing nut 173 is driven
To displacement, the movement of centre-to-centre spacing nut 173, then pass through right lever 174(Left side is similarly)Stir convex on right reflective mirror base 40
Structure 175 is played, reaches the purpose of the position of adjustment reflective mirror base 40, spring springing, gear drive, rack band can also be used in addition
A variety of conventionally forms such as move, directly stir to adjust.
Fig. 5 is that the structure such as 3rd embodiment of the present utility model, its shell, spring clip is identical with first embodiment, still
There is no centre-to-centre spacing adjusting part, it is equal with first, second embodiment which show the organization plan of two kinds of angular adjustment components, and
It is different.Wherein the first scheme is:Angular adjustment component is the bulge-structure stirred for being respectively arranged on left and right reflective mirror side
181, by stirring bulge-structure 181, left and right reflective mirror upper end can be controlled to swing within the specific limits, so as to reflective mirror
Angle is finely adjusted.Second scheme is:Angular adjustment component includes the left rotation stop spiral shell being connected respectively with left and right reflective mirror epimere
It is female(Not shown in figure), right rotation stop nut 184, the both ends of a middle screw rod 183 respectively with left rotation stop nut, right rotation stop nut
184 threaded connections, the stage casing of middle screw rod 183 sets the runner 182 that can rotate middle screw rod 183.During rotation is fastened on
Between runner 182 on screw rod 183 drive right rotation stop nut 184(Left side is similarly)Axial displacement, the bulge-structure on right reflective mirror
By the guide groove on right rotation stop nut 184, the change in angle is produced.
What Fig. 6 was provided is the structure such as fourth embodiment of the present utility model, its shell, spring clip and first embodiment phase
Together, but there is no centre-to-centre spacing adjusting part, the angular adjustment component of the present embodiment include both ends respectively with left and right reflective mirror epimere
Be hinged intermediate connecting rod, the stage casing of intermediate connecting rod set toggle 186, and toggle 186 can come along perpendicular to the direction on bottom surface
Clawback moves, and stirs toggle 186 and slides up and down, and drives the left and right driving member being attached thereto while acts, for changing left and right simultaneously
The angle of reflective mirror;Spring springing, gear drive equally can also be used, rack drives, a variety of conventionally forms such as directly stir and do
Regulation.
Fig. 7 is the structure such as the 5th embodiment of the present utility model, its shell, spring clip and centre-to-centre spacing adjusting part and the
One embodiment is identical, but the structure of its angular adjustment component is different from first embodiment, in the present embodiment, angular adjustment component
Including left connecting rod 505 and right connecting rod 605 be hinged with nearside mirror 31, the epimere of right reflective mirror 41 respectively, respectively with left and right connecting rod
Be hinged left sliding nut 504 and right sliding nut 604, the left spiral shell being threadedly coupled respectively with left sliding nut, right sliding nut
Bar 503, right screw rod 603, through the square drive bar 501 of left and right screw rod(I.e. left and right pitch is provided with square hole), it is connected to
First adjusting knob 502 of the one end of square drive bar 501(In other embodiments, the first adjusting knob 502 can also be arranged on
Arbitrary position on square drive bar 501, as long as square drive bar 501 can be driven to rotate).Left sliding nut 504 is embedding
Enter in the groove of nearside mirror seat 30, likewise, right sliding nut is embedded in right mirror base 40.The left left end of screw rod 503
Spacing hanging platform in another groove of nearside mirror seat 30 for axial gap coordinate.During regulation, the first adjusting knob is rotated
502, square drive bar 501 is stirred left screw rod 503 and right screw rod 603 while rotated simultaneously, and left screw rod 503 is with right screw rod 603
Two kinds of oppositely oriented screw threads, matched left and right sliding nut is driven during rotation to move outwards or inwards simultaneously, two simultaneously
Sliding nut moves, and drives be hinged left and right connecting rod, promotes the reflective mirror of both sides while change angle, because of square drive bar 501
It is slidably matched with left and right screw rod for square hole, therefore rotates the centre-to-centre spacing adjusting knob 12 for adjusting the reflective microscope group centre-to-centre spacing in both sides
When, the centre-to-centre spacing of the only reflective microscope group in both sides can change, and the angle of reflective mirror will not change, implementation that so can be than Fig. 1, Fig. 3
Example is more quick, and the centre-to-centre spacing that can quickly adjust the reflective microscope group in both sides is identical with the centre-to-centre spacing of photographer's human eye.
Fig. 8 is sixth embodiment of the present utility model, and in this embodiment, V-shaped center mirror assembly is by two pieces of phases
Mutually be hinged reflective mirror 201 is formed, and two pieces of reflective mirrors 201 are hinged by the rotating shaft 205 being fixed on shell, and two is anti-
Light microscopic can be rotated with around the shaft 205.Can be to the angle of two pieces of reflective mirrors of V-shaped center mirror assembly there is provided one
Spend the structure that is adjusted, the shell above the mirror assembly of center is provided with centre mirror adjusting knob 203, and centre mirror regulation is revolved
The outer periphery threads of button 203 are connected to nut block 204, and the both ends of nut block are anti-with V-shaped center respectively by centre mirror driving member 202
Two tops of light microscopic component are hinged.In use, drive nut block 204 to move axially by pivot mirror adjusting knob 203, spiral shell
Mother tuber promotes two reflective mirrors 201 205 to be rotated around the shaft respectively by two be hinged centre mirror driving members 202, so as to change
Become the reflecting angle of reflective mirror 201;If also to change the upper-lower position of center microscope group, sliding block can be used to drive rotating shaft about 205
It is mobile to can be achieved.
Two reflective mirrors of the utility model center mirror assembly are divided into imaging light on the left side that two-way reflexes to both sides
On reflective mirror and right reflective mirror, the reflective mirrors of both sides changes light channel to the same direction for clapping object, both sides it is reflective
The centre-to-centre spacing of mirror is most important to being imaged with angle, and centre-to-centre spacing simulates the centre-to-centre spacing of individual human eye, is to influence view stereoscopic sense
One of key factor, the angle of the reflective mirror of both sides, two direction soon of simulation is determined, and influence the view stereoscopic sense of reality
One of key factor, if the visual angle of mobile phone camera is in different size, pass through the side of the light channel after the reflective mirror of both sides
To can also change therewith, this just needs the angle of the reflective mirror by adjusting both sides to give to correct, the imaging effect that can be only achieved
Fruit, the centre-to-centre spacing and angle of the reflective mirror of both sides can be finely adjusted by above-mentioned adjustment mechanism, so as to realize preferably
Stereoscopic shooting effect.
The utility model can also be clamped in the production of the portable electronics such as tablet personal computer in addition to it can be clamped on mobile phone
On product, if being applied to motion DV, digital camera, the lens bodies and motion DV, the retained part of digital camera need to be only changed, instead
The size of light microscopic piece and correlation needs to do corresponding increasing, and the regulation form of its reflex reflector lens is the same.
Only to illustrate design of the present utility model, one of ordinary skill in the art's specific embodiment above exists
Various deformation and change can be made under design of the present utility model, these deformations and change are included in guarantor of the present utility model
Within the scope of shield.
Claims (10)
1. a kind of stereoscopic imaging lens, including shell, located at the V-shaped center mirror assembly of housing center, and it is respectively arranged on
The center mirror assembly both sides and incline direction nearside mirror consistent with side corresponding to the mirror assembly of center and the right side are anti-
Light microscopic, it is characterised in that also include being used for the angular adjustment component for adjusting left and right reflective mirror angle of inclination.
2. stereoscopic imaging lens as claimed in claim 1, it is characterised in that the angular adjustment component include respectively with it is left,
The be hinged left connecting rod of right reflective mirror epimere and right connecting rod, the left sliding nut with left and right rod hinge connection and right sliding nut respectively,
Left screw rod, the right screw rod being threadedly coupled respectively with left sliding nut, right sliding nut, through the square biography of the left and right screw rod
Lever, the first adjusting knob that the square drive bar can be driven to rotate.
3. stereoscopic imaging lens as claimed in claim 1, it is characterised in that the angular adjustment component include respectively with it is left,
The be hinged Left Drive part of right reflective mirror epimere and right driving member, the intermediate nut of left and right driving member is connected, with the intermediate nut
Second adjusting knob of threaded connection, and it is respectively supported at the left spring at the left and right reflective mirror back side and right spring.
4. stereoscopic imaging lens as claimed in claim 1, it is characterised in that the angular adjustment component includes toggle, respectively
Connect Left Drive part and the right driving member of toggle both sides and left and right reflective mirror epimere, the left and right driving member respectively with it is left and right
Reflective mirror is hinged.
5. stereoscopic imaging lens as claimed in claim 1, it is characterised in that the angular adjustment component is described to be respectively arranged on
The bulge-structure stirred of left and right reflective mirror side.
6. stereoscopic imaging lens as claimed in claim 1, it is characterised in that the angular adjustment component include respectively with it is left,
Left rotation stop nut, the right rotation stop nut of right reflective mirror epimere connection, both ends respectively with the left rotation stop nut, right rotation stop nut spiral shell
The middle screw rod of line connection, it is arranged on the runner in the middle screw rod stage casing.
7. the stereoscopic imaging lens as described in claims 1 to 3 any one claim, it is characterised in that also include being used for
Adjust the centre-to-centre spacing adjusting part of centre-to-centre spacing distance between left and right reflective mirror.
8. stereoscopic imaging lens as claimed in claim 7, it is characterised in that the centre-to-centre spacing adjusting part include respectively with
The be hinged nearside mirror seat in left and right reflective mirror bottom, right mirror base, it is separately fixed at nearside mirror seat, on right mirror base
At least one left adjusting nut and right adjusting nut, the center distance regulating rod being threadedly coupled with the left and right adjusting nut can
The centre-to-centre spacing adjusting knob that driving center distance regulating rod rotates.
9. stereoscopic imaging lens as claimed in claim 5, it is characterised in that also include being used to adjust between left and right reflective mirror
The centre-to-centre spacing adjusting part of centre-to-centre spacing distance;The centre-to-centre spacing adjusting part includes what is be connected respectively with left and right reflective mirror bottom
Nearside mirror seat, right mirror base, the centre-to-centre spacing knob above centrally disposed mirror assembly on shell, with centre-to-centre spacing knob
The centre-to-centre spacing nut of threaded connection, one end are connected to the lever left of the centre-to-centre spacing nut both sides and right lever, the left and right thick stick
The other end of bar is connected by the bulge-structure with the nearside mirror seat, right mirror base respectively.
10. stereoscopic imaging lens as claimed in claim 1, it is characterised in that V-shaped center reflective mirror is reflective by two pieces
Mirror is be hinged to be formed, and the stereoscopic imaging lens also include the centre mirror regulation rotation above centrally disposed mirror assembly on shell
Button, the nut block being threadedly coupled with the centre mirror adjusting knob, by the both ends of the nut block respectively with the V-shaped center
The be hinged centre mirror driving member in two tops of mirror assembly.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201621383939.1U CN207133497U (en) | 2016-12-16 | 2016-12-16 | Stereoscopic imaging lens |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201621383939.1U CN207133497U (en) | 2016-12-16 | 2016-12-16 | Stereoscopic imaging lens |
Publications (1)
Publication Number | Publication Date |
---|---|
CN207133497U true CN207133497U (en) | 2018-03-23 |
Family
ID=61630028
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201621383939.1U Expired - Fee Related CN207133497U (en) | 2016-12-16 | 2016-12-16 | Stereoscopic imaging lens |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN207133497U (en) |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109856895A (en) * | 2018-12-29 | 2019-06-07 | 中国科学技术大学 | One camera binocular vision device |
KR102056660B1 (en) * | 2018-08-29 | 2019-12-17 | 주식회사 레미드 | 3D stereoscopic image lens module clip device for mobile terminal |
CN110836645A (en) * | 2019-11-01 | 2020-02-25 | 东莞市亿辉光电科技有限公司 | Projection type horizontal measuring instrument |
-
2016
- 2016-12-16 CN CN201621383939.1U patent/CN207133497U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR102056660B1 (en) * | 2018-08-29 | 2019-12-17 | 주식회사 레미드 | 3D stereoscopic image lens module clip device for mobile terminal |
CN109856895A (en) * | 2018-12-29 | 2019-06-07 | 中国科学技术大学 | One camera binocular vision device |
CN110836645A (en) * | 2019-11-01 | 2020-02-25 | 东莞市亿辉光电科技有限公司 | Projection type horizontal measuring instrument |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN102289144B (en) | Intelligent three-dimensional (3D) video camera equipment based on all-around vision sensor | |
CN201298141Y (en) | A wheel base adjustable portable stereo image shooting device | |
CN101424863B (en) | Stereoscopic camera and parallax self-adapting regulating method thereof | |
EP2919067B1 (en) | Multi-planar camera apparatus | |
CN207133497U (en) | Stereoscopic imaging lens | |
CN102243432A (en) | Panoramic three-dimensional photographing device | |
CN107561831A (en) | The implementation method that a kind of one camera multi-angle oblique for airborne vehicle is photographed | |
CN103365064A (en) | Stereo video shooting device | |
CN102665087A (en) | Automatic shooting parameter adjusting system of three dimensional (3D) camera device | |
US9106901B2 (en) | Imagery axle turning method for stereo vision and apparatus thereof | |
CN108900737B (en) | Camera device and electronic equipment | |
CN101916036B (en) | Computer-controlled physical three-dimensional automatic imaging device with light and horizontal rotating table | |
CN202003135U (en) | Three-dimensional photographing and picture viewing screen device | |
TWM521202U (en) | Imaging rotation calibration device with linear and rotating synchronous linkage | |
CN208688988U (en) | Full vision detection device for display screen | |
CN204650348U (en) | Rotary electric subset | |
CN202563240U (en) | Dual-camera rotary shooting device for three-dimensional imaging | |
CN207488610U (en) | 3D surgical operation microscope optical main mirrors | |
CN106210701A (en) | A kind of mobile terminal for shooting VR image and VR image capturing apparatus thereof | |
CN102466947A (en) | Tilt-shift photography device and photography method applied to digital camera or video camera | |
CN104747877B (en) | A kind of The Cloud Terrace for camera automatic shooting | |
CN102323713A (en) | Portable 360-DEG circular-screen 3D theatre system | |
CN102043322A (en) | Portable type 360-degree circular-screen theater system | |
CN202003094U (en) | Three-dimensional screen viewing device | |
CN104880905A (en) | Device and method for tilt-shift stereoscopic photography |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20180323 Termination date: 20211216 |
|
CF01 | Termination of patent right due to non-payment of annual fee |