CN106842806B - Camera module burning equipment for wire passing hole appointed crimping - Google Patents

Camera module burning equipment for wire passing hole appointed crimping Download PDF

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Publication number
CN106842806B
CN106842806B CN201710212598.4A CN201710212598A CN106842806B CN 106842806 B CN106842806 B CN 106842806B CN 201710212598 A CN201710212598 A CN 201710212598A CN 106842806 B CN106842806 B CN 106842806B
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China
Prior art keywords
pressing block
range
moving mechanism
close
camera module
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CN201710212598.4A
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Chinese (zh)
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CN106842806A (en
Inventor
钟汉龙
李书毅
徐翼
李久林
雷茜
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Shenzhen Yanqianli Technology Co ltd
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Shenzhen Yanqianli Technology Co ltd
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    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B43/00Testing correct operation of photographic apparatus or parts thereof

Abstract

The invention provides camera module burning equipment with a specified crimping through wire hole, which comprises a rack and a burning mechanism arranged on the rack, wherein the burning mechanism comprises an operating workbench and a scene simulation mechanism arranged in front of the operating workbench, the operating workbench is provided with a pressing block for circuit crimping and a plurality of test positions for placing camera modules, each test position is provided with a test box, the camera modules face the scene simulation mechanism, and the pressing block is positioned on one side of the operating workbench; after the technical scheme is adopted, the operating workbench is provided with the pressing block for the circuit crimping function, when the electric wire passes through the rack, the pressing block is electrically connected with the test box, so that the electric wire is prevented from being damaged when the equipment runs, and the service life of the equipment is prolonged.

Description

Camera module burning equipment for wire passing hole appointed crimping
Technical Field
The invention belongs to the technical field of camera module manufacturing equipment, and particularly relates to camera module burning equipment.
Background
Along with the improvement of consumption level, the consumption demands on the mobile phone camera module are higher and higher, the requirements on the resolution of picture definition are high, the focusing speed of the PDAF phase focusing is quite high, and the focusing efficiency is high, so that the PDAF phase focusing is applied to the smart phone, and therefore, the PDAF test burning hardware environment of the mobile phone camera module is necessarily improved, the purposes of saving manpower and machine cost, greatly shortening the product manufacturing period and improving the consistency of the camera module and the performances of all aspects are achieved.
Disclosure of Invention
In view of the above, the present invention provides a camera module burning device for specified crimping of a wire passing hole, which includes a frame and a burning mechanism installed on the frame, wherein the burning mechanism includes an operating workbench and a scene simulation mechanism arranged in front of the operating workbench, the operating workbench is provided with a pressing block for circuit crimping and a plurality of test positions for placing camera modules, each test position is provided with a test box, the camera modules face the scene simulation mechanism, and the pressing block is located on one side of the operating workbench.
After the technical scheme is adopted, the operating workbench is provided with the pressing block for the circuit crimping function, when the electric wire passes through the rack, the pressing block is electrically connected with the test box, so that the electric wire is prevented from being damaged when the equipment runs, and the service life of the equipment is prolonged.
Preferably, the operation workbench comprises a displacement platform and a turnover platform, the turnover platform is installed on the rack through the displacement platform, and the pressing block and the test position are both arranged on the turnover platform.
Preferably, the overturning platform comprises a fixed table, a rotating shaft and an operating panel, the operating panel is connected with the fixed table through the rotating shaft, and the pressing block is installed on the fixed table.
Preferably, a bearing is arranged between the pressing block and the fixed table, an inner ring of the bearing is connected with the pressing block, and an outer ring of the bearing is connected with the fixed table.
Preferably, the pressing block is provided with a plurality of pressing block through holes matched with the diameter of the wire, and the pressing block through holes are uniformly distributed on the surface of the pressing block.
Preferably, the scene simulation mechanism comprises a close-range mechanism, a middle-range mechanism, a long-range mechanism, a white-field mechanism and a lens mechanism, and the close-range mechanism, the middle-range mechanism, the long-range mechanism, the white-field mechanism and the lens mechanism are all arranged on the rack.
Preferably, the close-range mechanism includes a close-range light source, a close-range transverse moving mechanism and a close-range longitudinal moving mechanism, the close-range light source is connected with the close-range transverse moving mechanism through the close-range longitudinal moving mechanism, and the close-range transverse moving mechanism is mounted on the frame.
Preferably, the medium scene mechanism comprises a medium scene light source, a medium scene transverse moving mechanism and a medium scene longitudinal moving mechanism, the medium scene light source is connected with the medium scene transverse moving mechanism through the medium scene longitudinal moving mechanism, and the medium scene transverse moving mechanism is installed on the rack.
Preferably, the distant view mechanism comprises a distant view moving mechanism and a distant view light source, and the distant view light source is mounted on the frame through the distant view moving mechanism.
Preferably, the device also comprises a base, wherein a sliding track group is arranged on the base, the white field mechanism and the lens mechanism are arranged on the sliding track group, and the white field mechanism and the lens mechanism move independently.
Drawings
Fig. 1 is a schematic structural diagram of a camera module burning apparatus according to a preferred embodiment of the present invention.
Fig. 2 is a schematic view of a partial structure of the camera module burning device of the present invention.
FIG. 3 is a schematic structural diagram of a recording mechanism according to the present invention.
FIG. 4 is an exploded view of the work bench of the present invention.
FIG. 5 is an exploded view of the scene simulation mechanism of the present invention.
FIG. 6 is an exploded view of the displacement platform of the present invention.
Fig. 7 is an exploded view of the flipping platform of the present invention.
Fig. 8 is an exploded view of the close-range mechanism of the present invention.
FIG. 9 is an exploded view of the middle view mechanism of the present invention.
FIG. 10 is an exploded view of the perspective mechanism of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Referring to fig. 1 to 10, the burning device for a camera module with a wire passing hole in specified compression joint provided by the embodiment of the present invention includes a frame 10, a burning mechanism 20 and a controller 30, both the burning mechanism 20 and the controller 30 are mounted on the frame 10, the frame 10 is formed by splicing heavy aluminum profiles, a cover plate 14 is disposed outside the frame 10, the cover plate 14 is detachably connected to the frame 10, the inner side of the cover plate 14 is processed in a blackened matte manner, and the outer side of the cover plate 14 is in a white-rice color state, so that the device motion stability can be satisfied, the weight of the device is effectively reduced, the processing cost of the device is saved, the practical function of the device can be improved, the appearance of the device can be improved, the purchasing desire of a user can be attracted, and the competitiveness of the device in the market can be improved.
Referring to fig. 1 to 10, an indicator light 11, a movable door 12, a roller 14 and a horizontal adjusting foot 15 are further disposed on the rack 10, the indicator light 11 is mounted at the top of the rack 10, and the indicator light 11 is connected to the controller 30, so that an operator can determine a working state of the device directly through the indicator light 30, the movable door 12 is mounted on the front side of the upper portion of the rack 10, so that the operator can pick and place the camera module, and the number of times of opening other cover plates 14 is reduced, thereby improving the production efficiency of the device.
Referring to fig. 1-10, the rollers 14 and the horizontal adjusting legs 15 are both mounted at the bottom of the frame 10, so as to further improve the shock resistance and stability of the equipment, facilitate the placement of the equipment by the operators through the rollers 14, and effectively improve the comprehensive performance of the equipment.
Referring to fig. 1-10, in the present embodiment, an anti-static ion blower (not shown) is further disposed on the rack 10, so as to effectively eliminate static electricity inside the device, thereby improving the burning precision of the device.
Referring to fig. 1-10, the recording mechanism 20 includes an operating table 40 and a scene simulation mechanism 50, the scene simulation mechanism 50 includes a close-range mechanism 80, a middle-range mechanism 90, a distant-range mechanism 100, a white-field mechanism 110, a lens mechanism 120 and a base 130, the close-range mechanism 80 is disposed on the left side of the front of the operating table 40, the middle-range mechanism 90 is disposed on the right side of the front of the operating table 40, the distant-range mechanism 100 is disposed in the front of the operating table 40, the white-field mechanism 110 and the lens mechanism 120 are both horizontally and freely movably mounted between the distant-range mechanism 100 and the operating table 40, the close-range mechanism 80, the middle-range mechanism 90, the distant-range mechanism 100, the white-field mechanism 110 and the lens mechanism 120 are all electrically connected to the controller 30, so that one-key operation can be implemented by the controller 30, thereby recording and performing various tests on the camera module, therefore, the output of labor cost is reduced, the processing efficiency of product production is improved, the manufacturing period of the product is shortened, and the consistency and the performances of all aspects of the product are improved.
Referring to fig. 1 to 10, the operating platform 40 includes a displacement platform 70 and a turning platform 60, the displacement platform 70 includes a supporting platform 71 and a supporting seat 77, the supporting platform 71 is mounted on the frame 10 through the supporting seat 77, the two sides of the supporting seat 77 are provided with the wire-routing drag chains 78, and the electric wires can enter the supporting platform 71 and the turning platform 60 through the wire-routing drag chains 78 on the two sides, so that the electric wires can be protected, the electric wires are prevented from being disordered to cause equipment failure, and the attractiveness of the equipment is improved.
Referring to fig. 1-10, the supporting platform 71 is provided with a driving motor 75, a pulley set 76, a screw assembly 74, a supporting platform slide rail 72 and a supporting platform slide block 73, the screw rod assembly 74 is in transmission connection with the driving motor 75 through the belt pulley set 76, and the driving motor 75 is installed between the supporting platform 71 and the supporting seat 77, so that the using space of the device is effectively saved, in this embodiment, the number of the support table slide rails 72 is two, the number of the support table sliders 73 is four, the turning platform 60 is coupled to the supporting platform 71 by the supporting platform slider 73 and the supporting platform slide 72, and the turning platform 60 is connected with the driving motor 75 through the screw rod assembly 74, after the technical scheme is adopted, not only improves the motion stability and accuracy of the turnover platform 60, but also facilitates the disassembly and maintenance of the equipment.
Referring to fig. 1 to 10, the turning platform 60 includes a fixed table 61, a rotating shaft 65 and an operating panel 62, the operating panel 62 is rotatably connected to the fixed table 61 through the rotating shaft 65, the rotating shaft 65 is driven by a motor, so that the operating panel 62 realizes a 90-degree rotation angle on the fixed table 61, and an operator can conveniently pick and place a camera module, the turning platform 60 is connected to the supporting table 71 through the fixed table 61, in this embodiment, the motor used on the turning platform 60 is a stepping motor with an encoder and is combined with a reducer, so that the rotation angle and displacement change of the operating panel 62 are ensured, and the processing stability of a product is further improved.
Referring to fig. 1-10, the operation panel 62 is provided with a plurality of test positions 68, each test position 68 is provided with a test box 66, a fixture 64, a gland plate 63 and a telescopic rotary cylinder 67, in this embodiment, the number of the test boxes 66, the fixtures 64, the gland plate 63 and the telescopic rotary cylinders 67 is four, the test boxes 66 and the fixtures 64 are respectively arranged at the rear and the front of the test position 68, the gland plate 63 is arranged on the test position 68 through the telescopic rotary cylinder 67, the position of the gland plate 63 corresponds to the position of the fixture 64, and when a camera module is placed into the fixture 64, the gland plate 63 fixes the camera module on the fixture 64 through the telescopic rotary cylinder 67; after the burning of camera module and the test finishes, gland plate 63 separates with camera module through flexible revolving cylinder 67 to the operating personnel of being convenient for takes out the camera module, carries out the burning of next a set of camera module and tests, thereby reaches the high-efficient purpose of using manpower sparingly cost, has realized alone quadruplex position, eight station or sixteen station operations, has improved the machining efficiency of product simultaneously.
Referring to fig. 1 to 10, a pressing block 69 is further disposed on the turning platform 60, the pressing block 69 is mounted on one side of the fixing table 61, a bearing (not shown in the drawing) is arranged between the pressing block 69 and the fixed table 61, the inner ring of the bearing is connected with the pressing block 69, the outer ring of the bearing is connected with the fixed table 61, after the electric wire enters the wire-running drag chain 78 from the rack 10, the electric wire passes through the pressing block 69 and then is electrically connected with the test box 66, so that the electric wire is prevented from being damaged when the operation panel 62 rotates, in this embodiment, the pressing block 69 is provided with a plurality of pressing block through holes (not shown) matching with the diameter of the wire, so that the wire is fixed on the pressing block through holes after passing through the pressing block through holes, thereby preventing the operating panel 62 from pulling and grinding the wire when rotating, and prolonging the service life of the device and ensuring the safety.
Referring to fig. 1-10, the close-range mechanism 80 includes a close-range light source 81, a close-range lateral moving mechanism 83 and a close-range longitudinal moving mechanism 82, the close-range lateral moving mechanism 83 includes a close-range driving motor 87, a close-range fixing base 88 and a close-range displacement platform 89, the close-range fixing base 88 is provided with a first guide rail assembly 882 and a first screw rod assembly 881, the number of the first guide rail assemblies 882 is two, the first guide rail assemblies 882 are installed on two sides of the first screw rod assembly 881, the close-range fixing base 88 is installed on the frame 10, the close-range displacement platform 89 is connected with the close-range fixing base 88 through the first guide rail assembly 882, the close-range driving motor 87 is installed on the close-range fixing base 88, the close-range displacement platform 89 is connected with the close-range driving motor 87 through the first screw rod assembly 881 in a transmission manner, the close-range longitudinal moving mechanism 82 is mounted on the close-range displacement platform 89, and the close-range light source 81 is fixed on the close-range longitudinal moving mechanism 82, so that the front and back positions of the close-range mechanism 80 and the test position 68 can be conveniently adjusted, and the best test effect of the device is realized.
Referring to fig. 1 to 10, the close-range longitudinal moving mechanism 82 includes a close-range longitudinal driving motor 84, a close-range longitudinal fixing table 85 and a second lead screw assembly 86, the second lead screw assembly 86 and the close-range longitudinal driving motor 84 are both disposed on the close-range longitudinal fixing table 85, the second lead screw assembly 86 is in transmission connection with the close-range longitudinal driving motor 84, and the close-range light source 81 is mounted on the second lead screw assembly 86, so as to adjust the up-down position of the close-range light source 81, and improve the flexibility and applicability of the apparatus.
Referring to fig. 1-10, the center view mechanism 90 includes a center view light source 91 for testing the shooting capability of the center view of the camera module, a center view transverse moving mechanism 93 and a center view longitudinal moving mechanism 92, the center view transverse moving mechanism 93 includes a center view driving motor 97, a center view fixing base 99 and a center view displacement platform 98, the center view fixing base 99 is provided with two second guide rail assemblies 991 and three lead screw assemblies 992, the second guide rail assemblies 991 are mounted on two sides of the third lead screw assembly 992, the center view fixing base 99 is mounted on the frame 10, the center view displacement platform 98 is connected with the center view fixing base 99 through the second guide rail assemblies 991, the center view driving motor 97 is mounted on the center view fixing base 99, the center view displacement platform 98 is in transmission connection with the center view driving motor 97 through the third lead screw assembly 992, the middle view longitudinal moving mechanism 92 is mounted on the middle view displacement platform 98, and the middle view light source 91 is fixed on the middle view longitudinal moving mechanism 92, so that the front and back positions of the close view mechanism 90 and the test position 68 can be conveniently adjusted, and the best test effect of the device is realized.
Referring to fig. 1-10, the middle view longitudinal moving mechanism 92 includes a middle view longitudinal driving motor 95, a middle view longitudinal fixing table 94 and a fourth screw assembly 96, the fourth screw assembly 96 and the middle view longitudinal driving motor 95 are both disposed on the middle view longitudinal fixing table 94, the fourth screw assembly 96 is in transmission connection with the middle view longitudinal driving motor 95, and the middle view light source 91 is mounted on the fourth screw assembly 96, so as to adjust the up-down position of the middle view light source 91, and improve the flexibility and applicability of the device.
Referring to fig. 1-10, in the present embodiment, the close-range driving motor 87 and the middle-range driving motor 97 are stepping motors, and the close-range longitudinal driving motor 84 and the middle-range longitudinal driving motor 95 are servo motors, so as to further improve the accuracy and stability of the apparatus.
Referring to fig. 1 to 10, the distant view mechanism 100 includes a distant view light source 101 and a distant view moving mechanism 102 for testing the distant view shooting capability of the camera module, the distant view moving mechanism 102 includes a distant view fixing platform 102, a distant view driving motor 103, a first belt pulley set 104, a fifth screw component 106 and a third guide rail component 105, the distant view driving motor 103, the first belt pulley set 104, the fifth screw component 106 and the third guide rail component 105 are all mounted on the distant view fixing platform 102, the fifth screw component 106 is in transmission connection with the distant view driving motor 103 through the first belt pulley set 104, the distant view light source 101 is in transmission connection with the first belt pulley set 104 through the fifth screw component 106, so that the distance between the distant view light source 101 and the test site 68 can be controlled by operating the distant view driving motor 103.
Referring to fig. 1-10, the white field mechanism 110 includes a white field light source 111 mounted on the white field mechanism, a suction nozzle 112 and a driving cylinder 113, wherein the suction nozzle 112 is mounted on the white field mechanism 110 in a telescopic manner through the driving cylinder 113; when the camera module shoots a white field light source, the suction nozzle 112 retracts into the white field mechanism 110; when the camera module shoots another scene test which needs the opposite white field light source, the suction nozzle 112 extends out of the white field mechanism 110, the camera is completely blocked, and then shooting is carried out, so that the number of parts of the equipment is reduced, and the design of the equipment is more compact.
Referring to fig. 1 to 10, the lens mechanism 120 is provided with distance increasing mirrors 121, the number of the distance increasing mirrors 121 is the same as that of the test sites 68, and the positions of the distance increasing mirrors 121 correspond to those of the test sites 68, so that the device realizes a long-distance test function at a limited distance, and the application range of the device is further improved.
Referring to fig. 1 to 10, in this embodiment, the base 130 is provided with two sets of sliding track groups 131, each set of sliding track group 131 includes a first belt pulley 132, a first slider 133, a traction block 134, a sliding rail 135, a second slider 136, a second belt pulley 137 and a belt 138, the second belt pulley 137 is connected to the motor, one end of the belt 138 is connected to one end of the traction block 134, the other end of the belt is connected to the other end of the traction block 134 after sequentially passing around the first belt pulley 132 and the second belt pulley 137, the sliding rail 135 is installed inside a ring surrounded by the belt 138, the first slider 133 and the second slider 136 are installed on the sliding rail 135, the white field mechanism 110 and the lens mechanism 120 are respectively installed on the two sets of sliding track groups 131, and the white field mechanism 110 and the lens mechanism 120 are respectively fixedly connected to the traction block 134 on each set, therefore, the white field mechanism 110 and the lens mechanism 120 are independent of each other, the movement does not interfere, the number of parts of the device is reduced again, and the whole structure of the device is more compact.
Referring to fig. 1-10, in the present embodiment, the controller 30 is electrically connected to the displacement platform 70, the turning platform 60, the close-range mechanism 80, the middle-range mechanism 90, the long-range mechanism 100, the white-field mechanism 110, and the lens mechanism 120, so as to facilitate one-key operation, that is, to control the camera module to move or turn over on the displacement platform 70 and the turning platform 60, the close-range mechanism 80, the middle-range mechanism 90, the long-range mechanism 100, the white-field mechanism 110, and the lens mechanism 120 combine with the testing requirements, to perform position adjustment, to implement automatic operation, and an operator does not need to pay attention to the recording and testing process, only needs to know the final result, thereby efficiently saving the waste of labor cost, shortening the product manufacturing cycle, and improving the consistency and performance of various aspects of the product.
Referring to fig. 1 to 10, in this embodiment, an operator may manually place a camera module into the test position 68 for operation, or may place the camera module into the test position 68 for operation through a manipulator, so as to implement a full-automatic function of the equipment, and further improve the processing efficiency of the product and the utilization rate of the equipment.
The above description is only exemplary of the present invention and should not be taken as limiting the invention, as any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (6)

1. The utility model provides a camera module burns record equipment of appointed crimping of line hole, includes the frame and installs the burning record mechanism in the frame, its characterized in that: the burning mechanism comprises an operating workbench and a scene simulation mechanism arranged in front of the operating workbench, the operating workbench is provided with a pressing block for circuit crimping and a plurality of test positions for placing camera modules, each test position is provided with a test box, the camera modules face the scene simulation mechanism, and the pressing block is positioned on one side of the operating workbench;
the operation workbench comprises a displacement platform and a turning platform, the displacement platform comprises a supporting table and a supporting seat, the supporting table is mounted on the frame through the supporting seat, the pressing block and the test position are both arranged on the turning platform, wiring drag chains are arranged on two sides of the supporting seat, and electric wires enter the supporting table and the turning platform through the wiring drag chains on the two sides;
the supporting table is provided with a driving motor, a belt pulley group, a screw rod assembly, a supporting table slide rail and a supporting table slide block, the screw rod assembly is in transmission connection with the driving motor through the belt pulley group, and the driving motor is arranged between the supporting table and the supporting seat;
the overturning platform comprises a fixed table, a rotating shaft and an operating panel, the operating panel is connected with the fixed table through the rotating shaft, the pressing block is installed on the fixed table, and the rotating shaft is driven by a motor;
the turning platform is provided with a pressing block, the pressing block is installed on one side of a fixing table on the turning platform, a bearing is arranged between the pressing block and the fixing table, and the pressing block is provided with a plurality of pressing block through holes matched with the diameter of the wire so as to fix the wire on the pressing block through holes after the wire passes through the pressing block through holes;
every still install tool, gland board and flexible revolving cylinder on the test position, the quantity of test box, tool, gland board and flexible revolving cylinder is four, test box, tool set up respectively on the rear and the place ahead of test position, the gland board passes through flexible revolving cylinder installs on the test position, just the position of gland board with the position of tool is corresponding.
2. The camera module burning device for the wire passing hole specified crimping of claim 1, wherein: the scene simulation mechanism comprises a close-range mechanism, a middle-range mechanism, a long-range mechanism, a white-field mechanism and a lens mechanism, and the close-range mechanism, the middle-range mechanism, the long-range mechanism, the white-field mechanism and the lens mechanism are all arranged on the rack.
3. The camera module burning device for the wire passing hole appointed crimping of claim 2, wherein: the close shot mechanism comprises a close shot light source, a close shot transverse moving mechanism and a close shot longitudinal moving mechanism, the close shot light source is connected with the close shot transverse moving mechanism through the close shot longitudinal moving mechanism, and the close shot transverse moving mechanism is installed on the rack.
4. The camera module burning device for the wire passing hole appointed crimping of claim 2, wherein: the middle scene mechanism comprises a middle scene light source, a middle scene transverse moving mechanism and a middle scene longitudinal moving mechanism, the middle scene light source is connected with the middle scene transverse moving mechanism through the middle scene longitudinal moving mechanism, and the middle scene transverse moving mechanism is installed on the rack.
5. The camera module burning device for the wire passing hole appointed crimping of claim 2, wherein: the long shot mechanism comprises a long shot moving mechanism and a long shot light source, and the long shot light source is installed on the rack through the long shot moving mechanism.
6. The camera module burning device for the wire passing hole appointed crimping of claim 2, wherein: the white field mechanism and the lens mechanism are arranged on the sliding track group and move independently.
CN201710212598.4A 2017-04-01 2017-04-01 Camera module burning equipment for wire passing hole appointed crimping Active CN106842806B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201710212598.4A CN106842806B (en) 2017-04-01 2017-04-01 Camera module burning equipment for wire passing hole appointed crimping

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Application Number Priority Date Filing Date Title
CN201710212598.4A CN106842806B (en) 2017-04-01 2017-04-01 Camera module burning equipment for wire passing hole appointed crimping

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CN106842806A CN106842806A (en) 2017-06-13
CN106842806B true CN106842806B (en) 2022-05-24

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Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108093253A (en) * 2018-01-25 2018-05-29 深圳眼千里科技有限公司 The horizontal burnt section all-in-one machine of burning four

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US5881324A (en) * 1995-08-21 1999-03-09 Canon Kabushiki Kaisha Image blur prevention apparatus
CN203057316U (en) * 2012-12-28 2013-07-10 昆山丘钛微电子科技有限公司 A camera module OTP burning device
CN105530509A (en) * 2015-11-23 2016-04-27 深圳市东盈讯达电子有限公司 Four-work station camera module multi-point parameter automatic detection device
CN205374978U (en) * 2015-07-24 2016-07-06 东莞市铭宣机电有限公司 Automatic simulating measurement setup of mobile phone camera module PDAF
CN105872533A (en) * 2016-03-31 2016-08-17 深圳大宇精雕科技有限公司 Camera module detection device of burning equipment
CN106019801A (en) * 2016-05-13 2016-10-12 昆山丘钛微电子科技有限公司 Camera module PDAF double-station testing and burning integrated machine

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5881324A (en) * 1995-08-21 1999-03-09 Canon Kabushiki Kaisha Image blur prevention apparatus
CN203057316U (en) * 2012-12-28 2013-07-10 昆山丘钛微电子科技有限公司 A camera module OTP burning device
CN205374978U (en) * 2015-07-24 2016-07-06 东莞市铭宣机电有限公司 Automatic simulating measurement setup of mobile phone camera module PDAF
CN105530509A (en) * 2015-11-23 2016-04-27 深圳市东盈讯达电子有限公司 Four-work station camera module multi-point parameter automatic detection device
CN105872533A (en) * 2016-03-31 2016-08-17 深圳大宇精雕科技有限公司 Camera module detection device of burning equipment
CN106019801A (en) * 2016-05-13 2016-10-12 昆山丘钛微电子科技有限公司 Camera module PDAF double-station testing and burning integrated machine

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