CN204852808U - Adjusting device who removes can be controlled from top to bottom to focal plane - Google Patents

Adjusting device who removes can be controlled from top to bottom to focal plane Download PDF

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Publication number
CN204852808U
CN204852808U CN201520551546.6U CN201520551546U CN204852808U CN 204852808 U CN204852808 U CN 204852808U CN 201520551546 U CN201520551546 U CN 201520551546U CN 204852808 U CN204852808 U CN 204852808U
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CN
China
Prior art keywords
gear
sliding seat
tooth bar
focal plane
guide rail
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201520551546.6U
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Chinese (zh)
Inventor
张春天
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Individual
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Individual
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Filing date
Publication date
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Priority to CN201520551546.6U priority Critical patent/CN204852808U/en
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Publication of CN204852808U publication Critical patent/CN204852808U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses an adjusting device who removes can be controlled from top to bottom to focal plane, including base, sliding seat, camera supporting, an actuating mechanism and the 2nd actuating mechanism, the sliding seat sets up on the base with can following lateral sliding, and camera supporting sets up on the sliding seat with can following vertical slip, an actuating mechanism includes first rack, first gear and an adjust knob, and first rack transversely sets up in the upper surface of base, first gear rotatably install in the sliding seat and with a rack toothing, an adjust knob and a gear connection, the 2nd actuating mechanism includes second rack, second gear and the 2nd adjust knob, and the second rack is vertical to be set up on camera supporting, the second gear rotatably install in the sliding seat and with the 2nd rack toothing, the 2nd adjust knob with the 2nd gear connection. The utility model discloses can realize removing about focal plane upper and lower, simple structure, the distance of removal is big etc..

Description

The controlling device that focal plane can move up and down
Technical field
The utility model relates to Technical camera, particularly relates to the controlling device that a kind of focal plane can move up and down.
Background technique
Technical camera is a kind of by the various action of camera lens and focal plane (such as depart from optical axis, pitching rotates, swing and up and down, move left and right) and then make various technological adjustment, finally realizes the effects such as perspective correction, micro-landscape, depth of field control.
General, Technical camera comprises lens adjustment device and camera focal plane controlling device, the camera lens of camera is installed on lens adjustment device, camera itself is then installed in the controlling device of focal plane, first realize camera lens by lens adjustment device to tilt, the action such as to wave, realized the translation of focal plane by focal plane controlling device.But, prior art magazine focal plane controlling device, due to structure and spatial constraints, it can not realize the movement of four direction up and down, even if can move, its distance moved up and down is very little, can not adapt to the different camera lenses such as large, medium and small picture, and its structure is very complicated, cost is high.In addition, it regulates difficulty, and mobile accuracy is low.
Model utility content
The purpose of this utility model is overcome deficiency of the prior art and provide the controlling device that a kind of focal plane can move up and down.
The technological scheme that the utility model solution prior art problem adopts is: the controlling device that a kind of focal plane can move up and down, comprising:
Base;
Sliding seat, described sliding seat can transversely be arranged on described base slidably;
Camera support, described camera support can vertically be arranged on described sliding seat slidably;
First driving mechanism, described first driving mechanism comprises the first tooth bar, the first gear and the first adjusting knob, described first tooth bar is horizontally set at the upper surface of described base, described first gear to be rotatably installed in described sliding seat and to engage with described first tooth bar, described first adjusting knob is connected with described first gear, rotates to drive described first gear;
Second driving mechanism, described second driving mechanism comprises the second tooth bar, the second gear and the second adjusting knob, described second tooth bar is vertically arranged on described camera support, described second gear to be rotatably installed in described sliding seat and to engage with described second tooth bar, described second adjusting knob is connected with described second gear, rotates to drive described second gear.
Preferably, the upper surface of described base is provided with the first guide rail extended transversely, and the bottom surface of described sliding seat is provided with the first chute coordinated with described first guide rail.
Preferably, the upper surface of described first guide rail is provided with first groove extended transversely, and described first tooth bar is fixedly installed in described first groove.
Preferably, be provided with the first installation cavity communicated with described first chute in described sliding seat, described first gear is rotatably mounted in described first installation cavity, and described first adjusting knob is rotatably mounted in the first side of described sliding seat.
Preferably, described camera support comprises a vertical support plate, and described vertical support plate is installed with vertical the second guide rail extended, the second side of described sliding seat is provided with the second chute coordinated with described second guide rail.
Preferably, surface relative with described second chute on described second guide rail is provided with second groove vertically extended, and described second tooth bar is fixedly installed in described second groove.
Preferably, be provided with the second installation cavity communicated with described second chute in described sliding seat, described second gear is rotatably mounted in described second installation cavity, and described second adjusting knob is rotatably mounted in the 3rd side of described sliding seat.
Preferably, the upper surface of described base is provided with the hollow out escape groove extended transversely, and described vertical support plate, the second guide rail and the second tooth bar are vertically actively located in described hollow out escape groove.
Preferably, described first gear, the second gear are helical gear, and described first tooth bar and the second tooth bar are helical rack.
Preferably, described first guide rail, the second guide rail are swallow-tail way, and described first chute, the second chute are dovetail groove.
The beneficial effects of the utility model are: the controlling device that the focal plane that the utility model provides can move up and down, sliding seat is laterally slidably arranged on base, and camera support can vertically be slidably arranged on sliding seat, and can coordinate by the first tooth bar and the first gear the driving realizing moving left and right in the horizontal by sliding seat, camera support then can coordinate by the second tooth bar and the second gear the driving realizing moving up and down on vertical, so, when camera is fixed on camera support, moving up and down of focal plane can be realized.Meanwhile, structure of the present utility model is simple, and volume is little, and the distance moved up and down is large, goes for the different camera lenses such as large, medium and small picture.And, by the driving mode of gear and tooth bar, be convenient to the control of displacement distance, improve the precision of displacement distance.
Accompanying drawing explanation
Fig. 1 is the structural representation of the controlling device that the utility model embodiment focal plane can move up and down;
Fig. 2 is the structural representation of the controlling device that the focal plane formed after sliding seat biopsy cavity marker devices in the utility model embodiment can move up and down;
Fig. 3 is the using state reference drawing of the controlling device that the utility model embodiment focal plane can move up and down;
Fig. 4 is the structural representation that in the controlling device that can move up and down of the utility model embodiment focal plane, sliding seat coordinates with the first gear, the second gear.
Reference character:
Base 10;
First guide rail 101;
Hollow out escape groove 102;
Sliding seat 20;
First chute 201;
Second chute 202;
First through hole 203;
Second through hole 204;
Camera support 30;
Vertical support plate 301;
Second guide rail 3011;
First driving mechanism 40;
First tooth bar 401;
First gear 402;
First adjusting knob 403;
First axle sleeve 404;
First gear edge 4041;
First axle 405;
Screw 406,506;
Second driving mechanism 50;
Second tooth bar 501;
Second gear 502;
Second adjusting knob 503;
Second axle sleeve 504;
Second gear edge 5041;
Second axle 505.
The realization of the utility model object, functional characteristics and advantage will in conjunction with the embodiments, are described further with reference to accompanying drawing.
Embodiment
Be described below in detail embodiment of the present utility model, the example of described embodiment is shown in the drawings, and wherein same or similar label represents same or similar element or has element that is identical or similar functions from start to finish.Be exemplary below by the embodiment be described with reference to the drawings, be intended to for explaining the utility model, and can not be interpreted as restriction of the present utility model.
In description of the present utility model, it will be appreciated that, term " " center ", " longitudinal direction ", " transverse direction ", " length ", " width ", " thickness ", " on ", D score, " front ", " afterwards ", " left side ", " right side ", " vertically ", " level ", " top ", " end " " interior ", " outward ", " clockwise ", orientation or the position relationship of the instruction such as " counterclockwise " are based on orientation shown in the drawings or position relationship, only the utility model and simplified characterization for convenience of description, instead of indicate or imply that the device of indication or element must have specific orientation, with specific azimuth configuration and operation, therefore can not be interpreted as restriction of the present utility model.
In addition, term " first ", " second " only for describing object, and can not be interpreted as instruction or hint relative importance or imply the quantity indicating indicated technical characteristics.Thus, be limited with " first ", the feature of " second " can express or impliedly comprise one or more these features.In description of the present utility model, the implication of " multiple " is two or more, unless otherwise expressly limited specifically.
In the utility model, unless otherwise clearly defined and limited, the term such as term " installation ", " being connected ", " connection ", " fixing " should be interpreted broadly, and such as, can be fixedly connected with, also can be removably connect, or connect integratedly; Can be mechanical connection, also can be electrical connection; Can be directly be connected, also indirectly can be connected by intermediary, can be the connection of two element internals.For the ordinary skill in the art, the concrete meaning of above-mentioned term in the utility model can be understood as the case may be.
Shown in Fig. 4, the utility model embodiment provides the controlling device that a kind of focal plane can move up and down, and comprises base 10, sliding seat 20, camera support 30, first driving mechanism 40 and the second driving mechanism 50.
Base 10 can be configured to platy structure etc.Sliding seat 20 can transversely be arranged on base 10 slidably, and namely, sliding seat 20 transversely can horizontally slip on base 10.
Camera support 30 can vertically be arranged on described sliding seat 20 slidably, that is, on the one hand, because camera support 30 is arranged on sliding seat 20, so camera support 30 laterally can to move left and right with sliding seat 20 and mobile; On the other hand, camera support 30 can vertically slide up and down relative to sliding seat 20 itself, and that is to say, camera support 30 can slide up and down on sliding seat 20.
It should be noted that, camera support 30 can be configured to the structure being suitable for installing camera as required.
First driving mechanism 40 comprises the first tooth bar 401, first gear 402 and the first adjusting knob 403, described first tooth bar 401 is horizontally set at the upper surface of described base 10, described first gear 402 to be rotatably installed in described sliding seat 20 and to engage with described first tooth bar 401, described first adjusting knob 403 is connected with described first gear 402, rotates to drive described first gear 402.When applying rotating force to the first adjusting knob 403, first regulates rotation that the first gear 402 can be driven to rotate, because the first gear 402 engages with the first tooth bar 401, and the first tooth bar 401 is fixed on base 10, base 10 is motionless, so the first gear 402 rolls on the first tooth bar 401, so, the first tooth bar 401 can drive whole sliding seat 20 to slide on base 10.Sliding seat 20 drives further camera support 30 1 to coexist transversely side-to-side movement on base 10.
Second driving mechanism 50 comprises the second tooth bar 501, second gear 502 and the second adjusting knob 503, described second tooth bar 501 is vertically arranged on described camera support 30, described second gear 502 to be rotatably installed in described sliding seat 20 and to engage with described second tooth bar 501, described second adjusting knob 503 is connected with described second gear 502, rotates to drive described second gear 502.When applying rotating force to the second adjusting knob 503, second regulates rotation that the second gear 502 can be driven to rotate, second gear 502 engages with the second tooth bar 501, because the second tooth bar 501 is arranged on camera support 30, and camera support 30 can vertically slide by respect thereto 10, so the second gear 502 rotates, the second tooth bar 501 can be driven vertically to move up and down, the second tooth bar 501 drives further camera support 30 1 to coexist on sliding seat 20 and vertically moves up and down.
In embody rule process, only needing corresponding for camera to be fixed on camera support 30, sliding seat 20, camera support 30, camera entirety can be driven to move to the left or to the right by rotating the first adjusting knob 403.And can drives camera support 30, camera entirety be moved up or down by rotation second adjusting knob 503.So, moving up and down of the focal plane of camera is achieved.
The controlling device that the focal plane provided according to the utility model can move up and down, sliding seat 20 is laterally slidably arranged on base 10, and camera support 30 can vertically be slidably arranged on sliding seat 20, and can coordinate by the first tooth bar 401 and the first gear 402 driving realizing moving left and right in the horizontal by sliding seat 20, camera support 30 then can coordinate by the second tooth bar 501 and the second gear 502 driving realizing moving up and down on vertical, so, when camera is fixed on camera support 30, moving up and down of focal plane can be realized.Meanwhile, structure of the present utility model is simple, and volume is little, and the distance moved up and down is large, goes for the different camera lenses such as large, medium and small picture.And, by the driving mode of gear and tooth bar, be convenient to the control of displacement distance, improve the precision of displacement distance.
In an embodiment of the present utility model, the upper surface of base 10 is provided with the first guide rail 101 extended transversely, and the bottom surface of described sliding seat 20 is provided with the first chute 201 coordinated with described first guide rail 101.
That is, be slidably matched by the first guide rail 101 and the first chute 201 between sliding seat 20 and base 10, so realize sliding seat 20 can transversely side-to-side movement on base 10.In the present embodiment, sliding seat 20 transverse movement can be made more reliable and stable by the cooperation of the first guide rail 101 and the first chute 201.
Be understandable that, the first guide rail 101 can be integrated formed structure (as shown in Figure 1) with base 10, and also can be split-type structural, when for split-type structural, the first guide rail 101 can be fixed on base 10 by fastening pieces such as screws.
More specifically, in an embodiment of the present utility model, the upper surface of the first guide rail 101 is provided with first groove extended transversely, and described first tooth bar 401 is fixedly installed in described first groove.Such as, in Fig. 1 example shown, the first groove is rectangle groove, and the first tooth bar 401 is just positioned at the first groove, and its two ends are respectively by a fastening screw trip bolt and the first guide rail 101 fixing and locking.
The present embodiment, first tooth bar 401 is arranged in the first groove can form similar mosaic structure with the first guide rail 101, overall structure can be simplified, reduced volume, simultaneously, also guarantee between the first tooth bar 401 and the first guide rail 101 fixing more solid and reliable, improve the reliability of this controlling device entirety.
In an embodiment of the present utility model, the first installation cavity communicated with described first chute 201 is provided with in sliding seat 20, first gear 402 is rotatably mounted in described first installation cavity, and described first adjusting knob 403 is rotatably mounted in the first side of described sliding seat 20.So, by arranging the first installation cavity in sliding seat 20, then be installed in the first installation cavity by hiding for the first gear 402, the installation that can be convenient to the first gear 402 is fixed, and also makes the first gear 402 more closely reliable with coordinating of the first tooth bar 401.Meanwhile, make structure more simply compact.
Further, in example of the present utility model, for the ease of being equipped with between the first gear 402 and sliding seat 20, first side is provided with the first through hole 203 communicated with described first installation cavity, the first axle sleeve 404 is provided with in described first through hole 203, the outer periphery of described first axle sleeve 404 are formed with first gear edge 4041, and first gear edge 4041 is fixed on the first side by screw 406.
Corresponding, the first gear 402 is formed on one first axle 405, and one end of the first axle 405 is rotatably arranged at a sidewall of the first installation cavity, and the other end of the first axle 405 to be rotatably arranged in the first axle sleeve 404 and to be connected with the first adjusting knob 403.
When assembling, can first the first gear 402 and the first axle 405 be loaded in the first installation cavity, again the first axle sleeve 404 cover is connected on the first axle 405, and is loaded in the first through hole 203, finally by screw 406, the first gear edge 4041 of the first axle sleeve 404 is fixed on the first side.So, its easy installation and removal, meanwhile, can ensure the solid and reliable of structure.
In an embodiment of the present utility model, camera support 30 comprises a vertical support plate 301, this vertical support plate 301 is installed with vertical the second guide rail 3011 extended, the second side of described sliding seat 20 is provided with the second chute 202 coordinated with described second guide rail 3011.
That is, between vertical support plate 301 and sliding seat 20 be being slidably matched and then realizing vertical support plate 301 and vertically move up and down on sliding seat 20 by the second guide rail 3011 and the second chute 202.So, vertical support plate 301 vertical motion can be made more reliable and stable by the cooperation of the second guide rail 3011 and the second chute 202.
More favorably, in an embodiment of the present utility model, surface relative with described second chute 202 on the second guide rail 3011 is provided with second groove vertically extended, and described second tooth bar 501 is fixedly installed in described second groove.Such as, in Fig. 1 example shown, the second groove is rectangle groove, and the second tooth bar 501 is just vertically arranged in the second groove, and its two ends are respectively by a fastening screw trip bolt and the second guide rail 3011 fixing and locking.
In the present embodiment, second tooth bar 501 is arranged in the second groove can form similar mosaic structure with the second guide rail 3011, overall structure can be simplified, reduced volume, simultaneously, also guarantee between the second tooth bar 501 and the second guide rail 3011 fixing more solid and reliable, improve the reliability of this controlling device entirety.
It should be noted that, in preferred embodiment of the present utility model, the first guide rail 101, second guide rail 3011 is swallow-tail way, and described first chute 201, second chute 202 is dovetail groove.So, can make to be slidably matched more reliably by dovetail groove with coordinating of swallow-tail way, structure is more simple, slides more reliable and stable.
In an embodiment of the present utility model, the second installation cavity communicated with described second chute 202 is provided with in sliding seat 20, described second gear 502 is rotatably mounted in described second installation cavity, and described second adjusting knob 503 is rotatably mounted in the 3rd side of described sliding seat 20.So, by arranging the second installation cavity in sliding seat 20, then being installed in the second installation cavity by hiding for the second gear 502, the installation between the second gear 502 and sliding seat 20 can be facilitated to fix, meanwhile, the second gear 502 is also facilitated to coordinate with the second tooth bar 501 more closely reliable.In addition, also make structure more simply compact.
Further, in a specific embodiment of the present utility model, for the ease of being equipped with between the second gear 502 and sliding seat 20,3rd side is provided with the second through hole 204 communicated with described second installation cavity, the second axle sleeve 504 is provided with in described second through hole 204, the outer periphery of described second axle sleeve 504 are formed with second gear edge 5041, and second gear edge 5041 is fixed on the 3rd side by screw 506.
Corresponding, the second gear 502 is formed on one second axle 505, and one end of the second axle 505 is rotatably arranged at a sidewall of the second installation cavity, and the other end of the second axle 505 to be rotatably arranged in the second axle sleeve 504 and to be connected with the second adjusting knob 503.
When assembling, can first the second gear 502 and the second axle 505 be loaded in the second installation cavity, again the second axle sleeve 504 cover is connected on the second axle 505, and is loaded in the second through hole 204, finally by screw 506, the second gear edge 5041 of the second axle sleeve 504 is fixed on the 3rd side.So, its easy installation and removal, meanwhile, can ensure the solid and reliable of structure.
In a preferred embodiment of the present utility model, the upper surface of base 10 is provided with the hollow out escape groove 102 extended transversely, and vertical support plate 301, second guide rail 3011 and the second tooth bar 501 are vertically actively located in described hollow out escape groove 102.So, can make under the prerequisite not increasing volume, what the second guide rail 3011, second tooth bar 501 can be made to extend is longer, to realize larger vertical displacement distance.
More favorably, in an example of the present utility model, the first side is parallel with the second side, the 3rd side and described first side, the second lateral vertical.So, the first gear 402 and the second gear 502 vertical dislocation can be made to install, on the one hand, can simplified structure, reduce the volume of sliding seat 20, on the other hand, user can be convenient to and operate adjustment first adjusting knob 403 and second and regulate and rotate.
It should be noted that, in preferred embodiment of the present utility model, the first gear 402, second gear 502 is helical gear, and described first tooth bar 401 and the second tooth bar 501 are helical rack.
Adopt the mode that coordinates with helical rack of helical gear, on the one hand, displacement distance control can be made more accurately, on the other hand, can make adjustment first adjusting knob 403 and the second adjusting knob 503 more laborsaving.
In sum, the controlling device that a kind of focal plane that the utility model provides can move up and down, sliding seat 20 is laterally slidably arranged on base 10, and camera support 30 can vertically be slidably arranged on sliding seat 20, and can coordinate by the first tooth bar 401 and the first gear 402 driving realizing moving left and right in the horizontal by sliding seat 20, camera support 30 then can coordinate by the second tooth bar 501 and the second gear 502 driving realizing moving up and down on vertical, so, when camera is fixed on camera support 30, moving up and down of focal plane can be realized.Meanwhile, structure of the present utility model is simple, and volume is little, and the distance moved up and down is large, goes for the different camera lenses such as large, medium and small picture.And, by the driving mode of gear and tooth bar, be convenient to the control of displacement distance, improve the precision of displacement distance.
In the description of this specification, specific features, structure, material or feature that the description of reference term " embodiment ", " some embodiments ", " example ", " concrete example " or " some examples " etc. means to describe in conjunction with this embodiment or example are contained at least one embodiment of the present utility model or example.In this manual, identical embodiment or example are not necessarily referred to the schematic representation of above-mentioned term.And the specific features of description, structure, material or feature can combine in an appropriate manner in any one or more embodiment or example.
Although illustrate and described embodiment of the present utility model above, be understandable that, above-described embodiment is exemplary, can not be interpreted as restriction of the present utility model, those of ordinary skill in the art can change above-described embodiment when not departing from principle of the present utility model and aim, revising, replacing and modification in scope of the present utility model.。

Claims (10)

1. the focal plane controlling device that can move up and down, is characterized in that, comprising:
Base;
Sliding seat, described sliding seat can transversely be arranged on described base slidably;
Camera support, described camera support can vertically be arranged on described sliding seat slidably;
First driving mechanism, described first driving mechanism comprises the first tooth bar, the first gear and the first adjusting knob, described first tooth bar is horizontally set at the upper surface of described base, described first gear to be rotatably installed in described sliding seat and to engage with described first tooth bar, described first adjusting knob is connected with described first gear, rotates to drive described first gear;
Second driving mechanism, described second driving mechanism comprises the second tooth bar, the second gear and the second adjusting knob, described second tooth bar is vertically arranged on described camera support, described second gear to be rotatably installed in described sliding seat and to engage with described second tooth bar, described second adjusting knob is connected with described second gear, rotates to drive described second gear.
2. the focal plane according to claim 1 controlling device that can move up and down, it is characterized in that, the upper surface of described base is provided with the first guide rail extended transversely, and the bottom surface of described sliding seat is provided with the first chute coordinated with described first guide rail.
3. the focal plane according to claim 2 controlling device that can move up and down, it is characterized in that, the upper surface of described first guide rail is provided with first groove extended transversely, and described first tooth bar is fixedly installed in described first groove.
4. the focal plane according to claim 3 controlling device that can move up and down, it is characterized in that, the first installation cavity communicated with described first chute is provided with in described sliding seat, described first gear is rotatably mounted in described first installation cavity, and described first adjusting knob is rotatably mounted in the first side of described sliding seat.
5. the focal plane according to claim 4 controlling device that can move up and down, it is characterized in that, described camera support comprises a vertical support plate, described vertical support plate is installed with vertical the second guide rail extended, the second side of described sliding seat is provided with the second chute coordinated with described second guide rail.
6. the focal plane according to claim 5 controlling device that can move up and down, it is characterized in that, surface relative with described second chute on described second guide rail is provided with second groove vertically extended, and described second tooth bar is fixedly installed in described second groove.
7. the focal plane according to claim 5 controlling device that can move up and down, it is characterized in that, the second installation cavity communicated with described second chute is provided with in described sliding seat, described second gear is rotatably mounted in described second installation cavity, and described second adjusting knob is rotatably mounted in the 3rd side of described sliding seat.
8. the focal plane according to claim 6 controlling device that can move up and down, it is characterized in that, the upper surface of described base is provided with the hollow out escape groove extended transversely, and described vertical support plate, the second guide rail and the second tooth bar are vertically actively located in described hollow out escape groove.
9. the focal plane according to claim 7 controlling device that can move up and down, it is characterized in that, described first gear, the second gear are helical gear, and described first tooth bar and the second tooth bar are helical rack.
10. the focal plane according to claim 6 controlling device that can move up and down, it is characterized in that, described first guide rail, the second guide rail are swallow-tail way, and described first chute, the second chute are dovetail groove.
CN201520551546.6U 2015-07-27 2015-07-27 Adjusting device who removes can be controlled from top to bottom to focal plane Expired - Fee Related CN204852808U (en)

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Application Number Priority Date Filing Date Title
CN201520551546.6U CN204852808U (en) 2015-07-27 2015-07-27 Adjusting device who removes can be controlled from top to bottom to focal plane

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106264009A (en) * 2016-08-25 2017-01-04 太仓市华天冲压五金制品厂 A kind of frame rail for small-sized rack
CN108036174A (en) * 2018-01-12 2018-05-15 深圳市道通科技股份有限公司 A kind of holder device
CN108759888A (en) * 2018-05-29 2018-11-06 江苏昊科汽车空调有限公司 A kind of adjustment sliding block for detection sensor installation
CN109140153A (en) * 2018-09-28 2019-01-04 武汉精立电子技术有限公司 A kind of liquid crystal display panel optical detection camera micromatic setting
CN110500475A (en) * 2019-08-28 2019-11-26 三度文化科技(清远)有限公司 A kind of special stand with 3D shooting function
CN112903584A (en) * 2021-01-19 2021-06-04 西安奕斯伟硅片技术有限公司 Device for adjusting position of detection light source relative to wafer to be detected

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106264009A (en) * 2016-08-25 2017-01-04 太仓市华天冲压五金制品厂 A kind of frame rail for small-sized rack
CN108036174A (en) * 2018-01-12 2018-05-15 深圳市道通科技股份有限公司 A kind of holder device
CN108759888A (en) * 2018-05-29 2018-11-06 江苏昊科汽车空调有限公司 A kind of adjustment sliding block for detection sensor installation
CN109140153A (en) * 2018-09-28 2019-01-04 武汉精立电子技术有限公司 A kind of liquid crystal display panel optical detection camera micromatic setting
CN109140153B (en) * 2018-09-28 2024-04-05 武汉精立电子技术有限公司 Fine adjustment device for optical detection camera of liquid crystal display panel
CN110500475A (en) * 2019-08-28 2019-11-26 三度文化科技(清远)有限公司 A kind of special stand with 3D shooting function
CN110500475B (en) * 2019-08-28 2021-07-20 三度文化科技(清远)有限公司 Special support with 3D shoots function
CN112903584A (en) * 2021-01-19 2021-06-04 西安奕斯伟硅片技术有限公司 Device for adjusting position of detection light source relative to wafer to be detected

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