CN201594155U - High-precision automatic focusing device - Google Patents
High-precision automatic focusing device Download PDFInfo
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- CN201594155U CN201594155U CN2009202021651U CN200920202165U CN201594155U CN 201594155 U CN201594155 U CN 201594155U CN 2009202021651 U CN2009202021651 U CN 2009202021651U CN 200920202165 U CN200920202165 U CN 200920202165U CN 201594155 U CN201594155 U CN 201594155U
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- lens
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Abstract
The utility model discloses a high-precision automatic focusing device which mainly solves the problems of the existing automatic focusing device of high precision requirements, difficult processing, large noise, poor short-focus and long-focus imaging quality and inconvenient assembling, and is characterized in that a lens cone (7) is internally provided with two guide rods (10); a zoom component (3) and a compensating component (4) are arranged in the lens cone (7) and can slide vertically along the guide rods (10); the zoom component (3) and the compensating component (4) are respectively connected with a zoom driving component (5) and a compensating driving component (6) which are arranged outside the lens cone (7) and are in lead screw drive; the lens cone (7) is externally provided with a displacement transducer (11) connected with the zoom component (3); and an auto iris (15) is arranged between the compensating component (4) and a rear fixed lens component (2). The high-precision automatic focusing device improves imaging quality and focusing precision, ensures stable image quality, has convenient assembly, and is convenient for lens cleaning or replacing.
Description
Technical field:
The utility model relates to a kind of automatic focusing mechanism, is specifically related to a kind of High Precision Automatic focusing mechanism that is used for low eyesight electronic viewing aid device.
Background technology:
At present, typoscope mainly is divided into two big class, i.e. optical visual aid and electronic viewing aids.Optical visual aid is a kind of effect by optical property, to improve the device of low eyesight patient visual activity level.Electronic viewing aid claims the closed-circuit television typoscope again, be to equal the nineteen fifty-nine first Application in low eyesight patient, do not cause the attention of the low vision professionals in various countries at that time, after about 10 years by Potts, because the work of Weed and Genensky etc. just makes electronic viewing aid progressively obtain promoting.Electronic viewing aid basic structure comprises the file platform that varifocal phtographic lens, CCD, display and two dimension move etc.The electronic viewing aid majority is desk-top, and minority is portable or hand-held, and at present state-of-the art is the helmet-type design.
The part of most critical is the zoom system, pancreatic system device in the electronic viewing aid, and existing common zoom lens control device all is mechanically to realize autozoom, and the other drive unit (as motor) that adds of group drives the zoom bucket becoming doubly, realizes mechanical zoom.This Automatic zoom lens focusing device comprises guide cylinder, optical zoom bucket, motor and gear, holder is fixed in motor on the optical zoom bucket, realize becoming carrying out synchronously of times assembly and compensation assembly by the band transmission between motor and the optical zoom bucket, requirement on machining accuracy for the zoom bucket is higher, and the band transmission is skidded easily, noise is big, therefore there is following shortcoming in existing focusing mechanism: 1, mechanical precision requires height, and difficulty of processing is big; 2, noise is big; 3, short burnt and long burnt image quality is relatively poor; 4, assembling is inconvenient.
The utility model content:
In order to overcome existing Automatic zoom lens focusing device accuracy requirement height, difficulty of processing is big, noise is big, weak point is burnt and long burnt image quality difference and the inconvenient deficiency of assembling, the utility model provides a kind of High Precision Automatic focusing mechanism, this High Precision Automatic focusing mechanism has improved image quality and focusing precision, guaranteed that picture element is stable, easy to assembly, be convenient to lens cleaning or replacing.
The technical solution of the utility model is: before this High Precision Automatic focusing mechanism comprises, back fixed lens assembly, become times assembly, compensation assembly and lens barrel, fixed lens assembly before the upper end of lens barrel connects by the focusing coupling ring, the lower end of lens barrel connects back fixed lens assembly and CCD interface cover successively, be provided with 2 guide rods in the lens barrel, change times assembly and compensation assembly are located in the lens barrel and all can slide up and down along guide rod, becoming times assembly and compensation assembly links to each other with change times driven unit that is arranged on the outer lead screw transmission of lens barrel and compensation driven unit respectively, lens barrel is outside equipped with and becomes the displacement transducer that times assembly links to each other, and is provided with auto iris between described compensation assembly and the back fixed lens assembly.
A described change times driven unit comprises change times driving lever, becomes times leading screw and becomes times step motor, becomes times driving lever and links to each other with a change times leading screw screw thread cooperation, becomes times leading screw and links to each other with the output shaft that becomes times step motor, becomes times driving lever and is connected with a change times assembly; The compensation driven unit comprises compensation driving lever, compensation leading screw and compensation step motor, and the compensation driving lever cooperates with compensation leading screw screw thread and links to each other, and the compensation leading screw links to each other with the output shaft of compensation step motor, and the compensation driving lever is connected with compensation assembly.
Described change times assembly is mainly formed by becoming times balsaming lens, Zoom lens, change multiplication of voltage circle and a change times picture frame, becomes parallel being installed in the change times picture frame and by becoming the multiplication of voltage circle of times balsaming lens and Zoom lens and locks, and the edge that becomes the multiplication of voltage circle is provided with 2 gap; The front that becomes times picture frame is provided with 2 through holes that pass guide rod, and the not ipsilateral that becomes times picture frame is established open slot and blind hole respectively, and displacement transducer is provided with the pin that is plugged in the blind hole, becomes a times driving lever and is installed in this open slot.
Described compensation assembly comprises compensation trim ring, compensation balsaming lens, compensation picture frame, compensation back-up ring and offset lens, in the coaxial successively compensation picture frame of packing into of offset lens, compensation back-up ring and compensation balsaming lens and by the locking of compensation trim ring, the edge of compensation trim ring is provided with 2 gap, the front of compensation picture frame is provided with 2 through holes that pass guide rod, the side of compensation picture frame is provided with open slot, and the compensation driving lever is installed in this open slot.
The structure of described change times driving lever and compensation driving lever is identical, become times driving lever and compensation driving lever with become times leading screw and compensation leading screw mating part be shaped as " fork " shape and inwall one side is provided with tooth bar.
Described change times driving lever and compensation driving lever are provided with through hole and are enclosed within respectively and become on times polished rod and the compensation polished rod.
Described forward and backward fixed lens assembly places the two ends up and down of lens barrel respectively, and its optical module is installed on respectively in the forward and backward picture frame, and corresponding of forward and backward picture frame is provided with coaxial blind hole, and the two ends of guide rod are inserted in respectively in the blind hole of forward and backward picture frame.
Be connected by thread bush between described rear mirror frame and the CCD interface cover.
The utlity model has following beneficial effect: owing to take such scheme, adopted two feedback system modes of displacement transducer and auto iris to make compensation assembly realize compensation completely, improved the precision and the image quality of focusing; Change times driven unit, compensation driven unit, auto iris, position transducer all are installed on the lens barrel, thereby make this apparatus structure compactness, and volume is little; Utilize high-precision lead screw transmission to substitute the band transmission of prior art, in focus process, lens barrel does not produce relative rotation with becoming between times assembly, the compensation assembly, become times assembly and compensation assembly axis direction rectilinear motion along lens barrel, guaranteed the right alignment of forward and backward fixed lens assembly, change times assembly, compensation assembly and lens barrel, easily processing is easy to assembly, has eliminated noise; Short Jiao and long burnt image quality and focusing precision have also been guaranteed simultaneously.
Description of drawings:
Accompanying drawing 1 is a structure cut-open view of the present utility model;
Accompanying drawing 2 is A-A structure cut-open views among Fig. 1;
Accompanying drawing 3 is the structural representations that become times driving lever 51 and compensation driving lever 61 among Fig. 1.
Fixed lens assembly before the 1-among the figure, fixed lens assembly behind the 2-, 3-becomes times assembly, the 4-compensation assembly, 5-becomes times driven unit, and 6-compensates driven unit, 7-lens barrel, the 8-coupling ring of focusing, 9-CCD interface cover, the 10-guide rod, picture frame before the 11-displacement transducer, 12-, the 13-rear mirror frame, the 14-thread bush, 15-auto iris;
31-becomes times balsaming lens, the 32-Zoom lens, and 33-becomes the multiplication of voltage circle, and 34-becomes times picture frame;
41-compensates trim ring, and 42-compensates balsaming lens, and 43-compensates picture frame, and 44-compensates back-up ring, 45-offset lens;
51-becomes times driving lever, and 52-becomes times leading screw, and 53-becomes times step motor, and 54-becomes times polished rod;
61-compensates driving lever, and 62-compensates leading screw, and 63-compensates step motor, and 64-compensates polished rod.
Embodiment:
The utility model is described in further detail below in conjunction with accompanying drawing:
By Fig. 1 in conjunction with shown in Figure 2, this High Precision Automatic focusing mechanism, comprise forward and backward fixed lens assembly (1,2), become times assembly 3, compensation assembly 4 and lens barrel 7, fixed lens assembly 1 before the upper end of lens barrel 7 connects by focusing coupling ring 8, have certain manual adjustments scope, with the optical property of the system of better meeting.The lower end of lens barrel 7 connects back fixed lens assembly 2 and CCD interface cover 9 successively, be provided with 2 guide rods 10 in the lens barrel 7, change times assembly 3 and compensation assembly 4 are located in the lens barrel 7 and all can slide up and down along guide rod 10, becoming times assembly 3 and compensation assembly 4 links to each other with change times driven unit 5 that is arranged on lens barrel 7 outer lead screw transmission and compensation driven unit 6 respectively, lens barrel 7 is outside equipped with and becomes the displacement transducer 11 that times assembly 3 links to each other, 11 pairs of positions that become times assembly 3 of displacement transducer are detected in real time, and signal feedback is arrived compensation assembly 4.Be provided with auto iris 15 between compensation assembly 4 and the back fixed lens assembly 2, auto iris 15 can be controlled the light transmission capacity between the compensation assembly 4 and back fixed lens group 2 in the optical system automatically by control signal, and with signal feedback to compensation assembly 4.Owing to adopted two feedback system modes of displacement transducer 11 and auto iris 15 to make compensation assembly 4 realize focusing compensation completely, improved the precision and the image quality of focusing; Change times driven unit 5, compensation driven unit 6, auto iris 15, position transducer 11 all are installed on the lens barrel 7, thereby make this apparatus structure compactness, and volume is little; Utilize high-precision lead screw transmission to substitute the band transmission of prior art, in focus process, lens barrel 7 does not produce relative rotation with becoming between times assembly 3, the compensation assembly 4, become times assembly 3 and compensation assembly 4 axis direction rectilinear motion along lens barrel 7, guaranteed the right alignment of forward and backward fixed lens assembly (1,2), change times assembly 3, compensation assembly 4 and lens barrel 7, easily processing, easy to assembly, eliminated noise; Short burnt image quality and focusing precision have also been improved simultaneously.
By shown in Figure 1, described change times driven unit 5 comprises change times driving lever 51, becomes times leading screw 52 and becomes times step motor 53, become times driving lever 51 and link to each other, become times leading screw 52 and link to each other, become times driving lever 51 and be connected with change times assembly 3 with the output shaft that becomes times step motor 53 with the cooperation of change times leading screw 52 screw threads; Compensation driven unit 6 comprises compensation driving lever 61, compensation leading screw 62 and compensation step motor 63, and compensation driving lever 61 cooperates with compensation leading screw 62 screw threads and links to each other, and compensation leading screw 62 links to each other with the output shaft of compensation step motor 63, and compensation driving lever 61 is connected with compensation assembly 4.Become times step motor 53 and the action of compensation step motor 63 acknowledge(ment) signals and can become times assembly 3 and compensation assembly 4 actions, realize focusing automatically and compensation by corresponding leading screw drive.
By shown in Figure 1, described change times assembly 3 is mainly formed by becoming times balsaming lens 31, Zoom lens 32, become multiplication of voltage circle 33 and becoming times picture frame 34, change times balsaming lens 31 and Zoom lens 32 are coaxially installed on to become in times picture frame 34 and by becoming multiplication of voltage circle 33 and lock, the edge that becomes multiplication of voltage circle 33 is provided with 2 gap, is convenient to installing/dismounting; The front that becomes times picture frame 34 is provided with 2 through holes that pass guide rod 10, and the not ipsilateral that becomes times picture frame 34 is established open slot and blind hole respectively, and displacement transducer 11 is provided with the pin that is plugged in the blind hole, becomes times driving lever 51 and is installed in this open slot.Become times driving lever 51 and can drive change times picture frame 34 along guide rod 10 rectilinear motions.
By shown in Figure 1, described compensation assembly 4 comprises compensation trim ring 41, compensation balsaming lens 42, compensation picture frame 43, compensation back-up ring 44 and offset lens 45, in the coaxial successively compensation picture frame 43 of packing into of offset lens 45, compensation back-up ring 44 and compensation balsaming lens 42 and by 41 lockings of compensation trim ring, the edge of compensation trim ring 41 is provided with 2 gap, is convenient to installing/dismounting; The front of compensation picture frame 43 is provided with 2 through holes that pass guide rod 10, and the side of compensation picture frame 43 is provided with open slot, and compensation driving lever 61 is installed in this open slot.Compensation driving lever 61 can drive compensation picture frame 43 along guide rod 10 rectilinear motions.
By Fig. 1 in conjunction with shown in Figure 3, the structure that becomes times driving lever 51 and compensation driving lever 61 is identical, become times driving lever 51 and compensation driving lever 61 with become times leading screw 52 and compensation leading screw 62 mating parts be shaped as " fork " shape and inwall one side is provided with tooth bar, in order to reduce frictional resistance, corresponding opposite side has notch at interval, in order to reduce to become times driving lever 51 and compensation driving lever 61 and the contact area that becomes times leading screw 52 and compensation leading screw 62.Becoming times driving lever 51 and compensation driving lever 61 cooperates with becoming times leading screw 52 and compensate the screw thread that forms open type between the leading screw 62 respectively, the nonparallelism that becomes between times leading screw 52 and compensation leading screw 62 and the guide rod 10 can not exert an influence to becoming times driving lever 51 and compensating driving lever 61, promptly can it be blocked becoming generation deflecting torque on times assembly 3 and the compensation assembly 4, not high to the axial accuracy requirement that becomes times leading screw 52 and compensation leading screw 62 when assembling, easy to assembly, the while has also guaranteed to become the focusing precision and the compensation precision of times assembly 3 and compensation assembly 4.
In conjunction with shown in Figure 3, change times driving lever 51 and compensation driving lever 61 are provided with through hole and are enclosed within respectively and become on times polished rod 54 and the compensation polished rod 64 by Fig. 1.Become times polished rod 54 and compensation polished rod 64 plays spacing effect, can avoid becoming times driving lever 51 and compensation driving lever 61 and becoming times leading screw 52 and compensation leading screw 62 breaks away from because of vibration or other reason cause.
By Fig. 1 in conjunction with shown in Figure 2, described forward and backward fixed lens assembly (1,2) place the two ends up and down of lens barrel 7 respectively, its optical module is installed on forward and backward picture frame (12 respectively, 13) in, corresponding of forward and backward picture frame (12,13) is provided with coaxial blind hole, the two ends of guide rod 10 are inserted in respectively in the blind hole of forward and backward picture frame (12,13).Guaranteed the right alignment of forward and backward fixed lens assembly (1,2), change times assembly 3 and compensation assembly 4.
, be connected by thread bush 14 between rear mirror frame (13) and the CCD interface cover 9 in conjunction with shown in Figure 2 by Fig. 1.Easy installation and removal.
During actual the use, described change times driven unit 5 drives described change times assembly 3 and carries out zoom, when to be stopped, the position signalling of described displacement transducer 11 feeds back to described auto iris 15 after treatment to control corresponding luminous flux, simultaneously position signalling is fed back to compensation driven unit 4, drive described compensation assembly 4 and compensate back and forth, the continuous comparison processing that the CCD unit carries out the image acquisition signal feeds back to described compensation driven unit 4 to stop compensation when finding best picture quality.
Claims (8)
1. High Precision Automatic focusing mechanism, before comprising, back fixed lens assembly (1,2), become times assembly (3), compensation assembly (4) and lens barrel (7), fixed lens assembly (1) before the upper end of lens barrel (7) connects by focusing coupling ring (8), the lower end of lens barrel (7) connects back fixed lens assembly (2) and CCD interface cover (9) successively, it is characterized in that: be provided with 2 guide rods (10) in the lens barrel (7), change times assembly (3) and compensation assembly (4) are located in the lens barrel (7) and all can slide up and down along guide rod (10), becoming times assembly (3) and compensation assembly (4) links to each other with change times driven unit (5) that is arranged on the outer lead screw transmission of lens barrel (7) and compensation driven unit (6) respectively, lens barrel (7) is outside equipped with and becomes the displacement transducer (11) that a times assembly (3) links to each other, and is provided with auto iris (15) between compensation assembly (4) and the back fixed lens assembly (2).
2. High Precision Automatic focusing mechanism according to claim 1, it is characterized in that: described change times driven unit (5) comprises change times driving lever (51), becomes times leading screw (52) and becomes times step motor (53), becoming times driving lever (51) links to each other with the cooperation of change times leading screw (52) screw thread, become times leading screw (52) and link to each other, become times driving lever (51) and be connected with change times assembly (3) with the output shaft that becomes times step motor (53); Compensation driven unit (6) comprises compensation driving lever (61), compensation leading screw (62) and compensation step motor (63), compensation driving lever (61) cooperates with compensation leading screw (62) screw thread and links to each other, compensation leading screw (62) links to each other with the output shaft of compensation step motor (63), and compensation driving lever (61) is connected with compensation assembly (4).
3. High Precision Automatic focusing mechanism according to claim 2, it is characterized in that: become times assembly (3) and mainly form by becoming times balsaming lens (31), Zoom lens (32), become multiplication of voltage circle (33) and becoming times picture frame (34), change times balsaming lens (31) and Zoom lens (32) are coaxially installed on to become in times picture frame (34) and by becoming multiplication of voltage circle (33) and lock, and the edge of change multiplication of voltage circle (33) is provided with 2 gap; The front that becomes times picture frame (34) is provided with 2 through holes that pass guide rod (10), and the not ipsilateral that becomes times picture frame (34) is established open slot and blind hole respectively, and displacement transducer (11) is provided with the pin that is plugged in the blind hole, becomes times driving lever (51) and is installed in this open slot.
4. High Precision Automatic focusing mechanism according to claim 2, it is characterized in that: compensation assembly (4) comprises compensation trim ring (41), compensation balsaming lens (42), compensation picture frame (43), compensation back-up ring (44) and offset lens (45), offset lens (45), in the coaxial successively compensation picture frame (43) of packing into of compensation back-up ring (44) and compensation balsaming lens (42) and by compensation trim ring (41) locking, the edge of compensation trim ring (41) is provided with 2 gap, the front of compensation picture frame (43) is provided with 2 through holes that pass guide rod (10), the side of compensation picture frame (43) is provided with open slot, and compensation driving lever (61) is installed in this open slot.
5. according to claim 2,3 or 4 described High Precision Automatic focusing mechanisms, it is characterized in that: the structure that becomes times driving lever (51) and compensation driving lever (61) is identical, become times driving lever (51) and compensation driving lever (61) with become times leading screw (52) and compensation leading screw (62) mating part be shaped as " fork " shape and inwall one side is provided with tooth bar.
6. High Precision Automatic focusing mechanism according to claim 5 is characterized in that: change times driving lever (51) and compensation driving lever (61) are provided with through hole and are enclosed within respectively and become on times polished rod (54) and the compensation polished rod (64).
7. according to claim 1,2,3 or 4 described High Precision Automatic focusing mechanisms, it is characterized in that: forward and backward fixed lens assembly (1,2) place the two ends up and down of lens barrel (7) respectively, its optical module is installed on forward and backward picture frame (12 respectively, 13) in, corresponding of forward and backward picture frame (12,13) is provided with coaxial blind hole, the two ends of guide rod (10) are inserted in respectively in the blind hole of forward and backward picture frame (12,13).
8. High Precision Automatic focusing mechanism according to claim 7 is characterized in that: be connected by thread bush (14) between rear mirror frame (13) and the CCD interface cover (9).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN2009202021651U CN201594155U (en) | 2009-12-09 | 2009-12-09 | High-precision automatic focusing device |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN2009202021651U CN201594155U (en) | 2009-12-09 | 2009-12-09 | High-precision automatic focusing device |
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| Publication Number | Publication Date |
|---|---|
| CN201594155U true CN201594155U (en) | 2010-09-29 |
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| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN2009202021651U Expired - Fee Related CN201594155U (en) | 2009-12-09 | 2009-12-09 | High-precision automatic focusing device |
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| CN (1) | CN201594155U (en) |
Cited By (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN104238093A (en) * | 2013-06-18 | 2014-12-24 | 信泰光学(深圳)有限公司 | Zoom lens and focusing mechanism of optical instrument |
| TWI486665B (en) * | 2013-05-03 | 2015-06-01 | Sintai Optical Shenzhen Co Ltd | Optical device |
| CN111323988A (en) * | 2018-12-17 | 2020-06-23 | 中国科学院长春光学精密机械与物理研究所 | Focusing control system, control method and optical measuring device |
| CN112327561A (en) * | 2020-11-26 | 2021-02-05 | 舜宇光学(中山)有限公司 | Image plane adjustment device and zoom lens |
-
2009
- 2009-12-09 CN CN2009202021651U patent/CN201594155U/en not_active Expired - Fee Related
Cited By (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| TWI486665B (en) * | 2013-05-03 | 2015-06-01 | Sintai Optical Shenzhen Co Ltd | Optical device |
| US9348109B2 (en) | 2013-05-03 | 2016-05-24 | Sintai Optical (Shenzhen) Co., Ltd. | Optical device |
| CN104238093A (en) * | 2013-06-18 | 2014-12-24 | 信泰光学(深圳)有限公司 | Zoom lens and focusing mechanism of optical instrument |
| CN111323988A (en) * | 2018-12-17 | 2020-06-23 | 中国科学院长春光学精密机械与物理研究所 | Focusing control system, control method and optical measuring device |
| CN112327561A (en) * | 2020-11-26 | 2021-02-05 | 舜宇光学(中山)有限公司 | Image plane adjustment device and zoom lens |
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Legal Events
| Date | Code | Title | Description |
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| C14 | Grant of patent or utility model | ||
| GR01 | Patent grant | ||
| C17 | Cessation of patent right | ||
| CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20100929 Termination date: 20111209 |