CN102590975A - Image acquisition mechanism - Google Patents

Image acquisition mechanism Download PDF

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Publication number
CN102590975A
CN102590975A CN2011100855631A CN201110085563A CN102590975A CN 102590975 A CN102590975 A CN 102590975A CN 2011100855631 A CN2011100855631 A CN 2011100855631A CN 201110085563 A CN201110085563 A CN 201110085563A CN 102590975 A CN102590975 A CN 102590975A
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CN
China
Prior art keywords
platform
platform group
eyeglass seat
group
plane
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Granted
Application number
CN2011100855631A
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Chinese (zh)
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CN102590975B (en
Inventor
吴瑞德
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Asia Optical Co Inc
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Asia Optical Co Inc
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Publication date
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Publication of CN102590975A publication Critical patent/CN102590975A/en
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Publication of CN102590975B publication Critical patent/CN102590975B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The invention relates to an image capturing mechanism, which comprises a platform group and two lens seats, wherein the platform group is provided with an image sensor, the platform group is movably arranged on a base, the platform group is provided with a top pulling part, the two lens seats are movably close to or far away from the platform group, one lens seat is provided with a positioning part, when the lens seat with the positioning part is close to the platform group, the positioning part pushes the top pulling part of the platform group, so that the platform group moves to form a retreat space between the lens seats and the base, and partial area of the other lens seat can move into the retreat space.

Description

Image capture mechanism
Technical field
The present invention is relevant with camera or the employed image capture of other optical articles mechanism, is meant the image capture mechanism that a kind of overall volume is more dwindled especially.
Background technology
Utilize long focal length to photograph; Or take pictures in the occasion that environment can rock in the position; Regular meeting produces because of camera rocks the phenomenon that makes image fog unclear, thereby current camera mostly has image stabilization function (Image Stabilizer), utilizes image sensor is arranged at movably platform group; Collocation is in order to the gyro sensor of detecting camera shaking degree, and then control platform group is along with the corresponding movable image sensor of state of camera.When camera was unlocked use, the inner dolly camera of camera can stretch out fuselage, and was projected to image sensor with receiving the ambient light line stabilization, kept image definition.And after camera cut out, each lens group of dolly camera then can fold each other one on top of anotherly, and is accommodated in fuselage interior with the position that is adjacent to the platform group.
Because more and more lighting of camera; Each spare part volume of camera also must change thereupon; Common mode is more and more littler with structural design; Or the content that is disclosed like japanese kokai publication hei 07-199019 patent, its each lens group with dolly camera is designed to turning structure, makes that the lens group after taking in is more effectively utilized the finite space in the fuselage.
Though the mode reduced volume of dolly camera above-mentioned change mechanism design capable of using; And in order to prevent that dolly camera from interfering with the platform group that is used for stable image; Still can let and have the gap between dolly camera and the platform group; Avoid operating the instability or the situation of damage, but above-mentioned gap has increased the overall volume of camera also, and camera can't more be dwindled.
Summary of the invention
The technical matters that the present invention will solve is, can increase the defective of the overall volume of camera to image capture of the prior art mechanism, and a kind of image capture mechanism is provided, and the integral thickness after it is taken in is thinner, reduces to be arranged at the inner shared space of camera.
The technical scheme that the present invention is adopted for its technical matters of solution is, the image capture mechanism that provides includes platform group and two eyeglass seats, and this platform group is provided with image sensor, and this platform group is located at pedestal movably, and this platform group has top supporting part; These two eyeglass seats movably near or be away from this platform group; Wherein this eyeglass seat has the location division; When the eyeglass seat with this location division during near this platform group; The top supporting part of this platform group of this location division pushing and pressing moves this platform group and between this eyeglass seat and this pedestal, forms out and keep out of the way the space, and another this eyeglass seat can move into this and keep out of the way the space.
For this platform group can be shifted really; This top supporting part has first inclined-plane; This location division has second inclined-plane, and the vergence direction on this second inclined-plane is corresponding to the vergence direction on this first inclined-plane, when this location division is resisted against this top supporting part; This second inclined-plane of contact, this first inclined-plane is pushed this platform group and displacement and fixing.
The image capture mechanism of embodiment of the present invention has following beneficial effect: the integral thickness after taking in is thinner, reduces it and is arranged at the camera volume inside.
Description of drawings
Fig. 1 is the three-dimensional combination figure of the present invention's one preferred embodiment;
Fig. 2 is the three-dimensional exploded view of the present invention's one preferred embodiment;
Fig. 3 is the part three-dimensional exploded view of the present invention's one preferred embodiment, mainly demonstrates the platform group and the first eyeglass seat;
Fig. 4 is the front elevation of the present invention's one preferred embodiment;
Fig. 5 is the partial sectional view of the present invention's one preferred embodiment, mainly demonstrates the first eyeglass seat and is connected to first platform;
Fig. 6 is the synoptic diagram for the present invention's one preferred embodiment, shows that mainly revolving meber is positioned at the second place;
Fig. 7 is analogous to Fig. 6, shows that mainly the first eyeglass seat pushes against the state of first platform; And
Fig. 8 is analogous to Fig. 6, shows that mainly revolving meber is positioned at primary importance.
Embodiment
Relevant detailed construction provided by the present invention, characteristics, assembling or use-pattern will be described in follow-up embodiment specifies.Yet in field of the present invention, having common knowledge the knowledgeable should be able to understand, and the specific embodiment that these detailed descriptions and embodiment of the present invention are cited only is used to explain the present invention, is not in order to limit patent claim of the present invention.
Below cooperate some accompanying drawings to specify technology contents of the present invention and characteristic now, wherein each brief description of drawings is following:
Fig. 1 is the three-dimensional combination figure of the present invention's one preferred embodiment;
Fig. 2 is the three-dimensional exploded view of the present invention's one preferred embodiment;
Fig. 3 is the part three-dimensional exploded view of the present invention's one preferred embodiment, mainly demonstrates the platform group and the first eyeglass seat;
Fig. 4 is the front elevation of the present invention's one preferred embodiment;
Fig. 5 is the partial sectional view of the present invention's one preferred embodiment, mainly demonstrates the first eyeglass seat and is connected to first platform;
Fig. 6 is the synoptic diagram for the present invention's one preferred embodiment, shows that mainly revolving meber is positioned at the second place;
Fig. 7 is analogous to Fig. 6, shows that mainly the first eyeglass seat pushes against the state of first platform; And
Fig. 8 is analogous to Fig. 6, shows that mainly revolving meber is positioned at primary importance.
See also Fig. 1 and shown in Figure 2, the image capture mechanism that the present invention's one preferred embodiment is provided comprises pedestal 10, platform group 20, the first eyeglass seat 30 and the second eyeglass seat 40, and pedestal 10 has two first guide rails 12 at interval that are parallel to each other.
Extremely shown in Figure 4 like Fig. 2; This platform group 20 has first platform 21 and second platform 22; Two relative sides 23 of first platform 21 are arranged in two first guide rails 12 of pedestal 10 respectively, and first platform 21 can be moved towards first direction 24 relative to pedestal 10 along first guide rail 12.First platform 21 is provided with two second guide rails 25 that are parallel to each other and are provided with at interval, and the bearing of trend of each second guide rail 25 is vertical each other with first direction 24.Second platform, 22 central authorities are provided with image sensor 26; Two second guide rails 25 of first platform 21 wear the position of second platform 22 with respect to image sensor 26 both sides respectively; Make image sensor 26 be positioned at first platform, 21 central authorities, second platform 22 can move along the second direction 27 perpendicular to first direction 24.Image sensor 26 moves via first platform 21 and second platform 22 each other, in order to control the hand shake phenomenon that is caused because of camera rocks with compensation.
The first eyeglass seat 30 has body 31, and body 31 central authorities have first lens set 32, and connecting portion 33 is established at body 31 edges, and connecting portion 33 has the locating shaft 34 in order to guide the first eyeglass seat 30.The second eyeglass seat 40 has ring frame 42, the ring revolving meber 44 that is pivoted in the frame 42, and revolving meber 44 is provided with second lens set 46, and revolving meber 44 can be driven and encircled frame 42 deflection between the primary importance (as shown in Figure 7) and the second place (as shown in Figure 6) relatively.The first eyeglass seat 30 is arranged at platform group 20 adjacent sides with the mode of first lens set, 32 corresponding image sensors 26; The ring frame 42 of second lens set 46 is adjacent to the first eyeglass seat, 30 outsides, make first and second eyeglass seat 30,40 along with the user mode of camera along optical axis 50 near or be away from platform group 20, when camera is unlocked when using; As shown in Figure 6; First and second eyeglass seat 30,40 moves towards the direction away from platform group 20, and the revolving meber 44 of the second eyeglass seat 40 goes to the second place simultaneously, first lens set 32, second lens set 46; Coaxial with image sensor 26 in optical axis; Make light can see through first and second lens set 32,46 and be projected to image sensor 26, close and work as camera, like Fig. 7 and shown in Figure 8; First and second eyeglass seat 30,40 can be respectively towards the direction near platform group 20 move and coincide each other near, 44 of revolving mebers go back to primary importance.
Like Fig. 3 and shown in Figure 5, first platform 21 is provided with extension 52 in the outside of one second guide rail 25 wherein, and the outside of another second guide rail 25 is provided with hollow storage tank 54.The external end edge place of extension 52 is provided with top supporting part 56, top supporting part 56 protrusion first platform 21 surfaces, and the vergence direction with 58, the first inclined-planes 58, first inclined-plane is same as first direction 24.Connecting portion 33 medial surfaces of the first eyeglass seat 30 have location division 36, and location division 36 is shaped the vergence direction on 38, the second inclined-planes 38, second inclined-plane corresponding to the vergence direction on first inclined-plane 58.
Like Fig. 7 and shown in Figure 8; When camera cuts out when making that each eyeglass seat 30,40 folds; The first eyeglass seat 30 moves towards platform group 20; Location division 36 is resisted against the top supporting part 56 of first platform 21, utilizes contact second inclined-plane 38, first inclined-plane 58, first platform 21 is pushed and towards first direction 24 displacement preset distances and fix; Form out between the second eyeglass seat 40 and second platform 22 and keep out of the way space 60, revolving meber 44 goes to primary importance can be accommodated in storage tank 54 inside of keeping out of the way the space 60 and first platform 21 later on.
By above-mentioned explanation; Owing to utilize the location division 36 of the first eyeglass seat 30 to promote the top supporting part 56 of first platform 21; Make platform group 20 skew optical axises 50 and be positioned the fixed position; Platform group 20 can avoid being positioned at revolving meber 44 positions of interfering the second eyeglass seat 40, and the second eyeglass seat 40, the first eyeglass seat 30 can reduce with the gap between the platform group 20 again, and while revolving meber 44 is movable to storage tank 54 inside of first platform 21; Make the composition mode that the submission IPN is inserted between each member, dwindle overall volume more.
Therefore, utilize above-mentioned technical characterictic, the integral thickness that the present invention can reach after taking in is thinner, reduces the purpose that it is arranged at the camera inner space.

Claims (4)

1. an image capture mechanism is characterized in that, includes:
The platform group is provided with image sensor, and this platform group is located at pedestal movably, and this platform group has top supporting part; And
The first eyeglass seat and the second eyeglass seat; Movably near or be away from this platform group; This first eyeglass seat has the location division, when this first eyeglass seat during near this platform group, and the top supporting part of this this platform group of location division pushing and pressing; This platform group is moved and between this first eyeglass seat and this pedestal, form out and keep out of the way the space, the subregion of this second eyeglass seat can move into this and keep out of the way the space.
2. image capture as claimed in claim 1 mechanism is characterized in that this platform group has first platform, and a side of this first platform is provided with extension, and this top supporting part is located at this extension.
3. image capture as claimed in claim 2 mechanism is characterized in that this first platform is provided with the hollow storage tank with respect to the opposite side of this extension.
4. image capture as claimed in claim 1 mechanism; It is characterized in that this top supporting part has first inclined-plane, this location division has second inclined-plane; The vergence direction on this second inclined-plane is corresponding to the vergence direction on this first inclined-plane; When this location division was resisted against this top supporting part, this second inclined-plane of contact, this first inclined-plane was pushed this platform group and displacement and fixing.
CN201110085563.1A 2011-01-17 2011-04-06 Image acquisition mechanism Expired - Fee Related CN102590975B (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
TW100101676A TW201232027A (en) 2011-01-17 2011-01-17 Image pickup mechanism
TW100101676 2011-01-17

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CN102590975A true CN102590975A (en) 2012-07-18
CN102590975B CN102590975B (en) 2014-11-05

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105589164A (en) * 2014-10-24 2016-05-18 信泰光学(深圳)有限公司 Optical device and stabilizing method for component

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI514022B (en) * 2014-02-26 2015-12-21 Sintai Optical Shenzhen Co Ltd Optical mechanism

Citations (5)

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Publication number Priority date Publication date Assignee Title
JPH07199019A (en) * 1994-01-10 1995-08-04 Canon Inc Lens barrel
CN1892295A (en) * 2005-06-20 2007-01-10 佳能株式会社 Optical apparatus having image-blur correction/reduction system
US20070047937A1 (en) * 2005-08-24 2007-03-01 Asia Optical Co., Inc. Retractable lens and swingable lens retracting device thereof
CN101126832A (en) * 2006-08-18 2008-02-20 奥林巴斯映像株式会社 Lens barrel
CN101533205A (en) * 2008-03-13 2009-09-16 Hoya株式会社 Imaging device

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Publication number Priority date Publication date Assignee Title
JP4417234B2 (en) * 2004-12-01 2010-02-17 Hoya株式会社 Imaging device
TW200905279A (en) * 2007-07-27 2009-02-01 Asia Optical Co Inc Retractable lens system and its retraction mechanism thereof

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07199019A (en) * 1994-01-10 1995-08-04 Canon Inc Lens barrel
CN1892295A (en) * 2005-06-20 2007-01-10 佳能株式会社 Optical apparatus having image-blur correction/reduction system
US20070047937A1 (en) * 2005-08-24 2007-03-01 Asia Optical Co., Inc. Retractable lens and swingable lens retracting device thereof
CN101126832A (en) * 2006-08-18 2008-02-20 奥林巴斯映像株式会社 Lens barrel
CN101533205A (en) * 2008-03-13 2009-09-16 Hoya株式会社 Imaging device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105589164A (en) * 2014-10-24 2016-05-18 信泰光学(深圳)有限公司 Optical device and stabilizing method for component

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CN102590975B (en) 2014-11-05
TWI425246B (en) 2014-02-01
TW201232027A (en) 2012-08-01

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Granted publication date: 20141105