Mounting device for electronic component correction
Technical Field
The invention relates to the technical field of electronic elements, in particular to a mounting device for correcting an electronic element.
Background
Electronic components are basic elements in electronic circuits, typically individually packaged, and have two or more leads or metal contacts. In order to ensure the stable operation of the circuit and avoid the self-oscillation, it is often necessary to take appropriate measures to destroy the amplitude condition and the phase condition of the self-oscillation. Electronic component correction can eliminate self-oscillation.
The existing electronic element correction is often installed on a circuit board through an installation device, but at present, the sizes of different electronic element corrections of the circuit are different, the installation device cannot adjust the sizes to adapt to the electronic element corrections of different sizes, the installation of the electronic element corrections of different sizes is inconvenient, the installation device is limited in use, and great troubles are brought to the use of workers.
Disclosure of Invention
Aiming at the problems in the prior art, the invention provides a mounting device for correcting electronic elements, which is used for correcting the electronic elements with different sizes by arranging a limiting clamping mechanism to clamp and then mount the electronic elements so as to solve the problems that the conventional electronic element correction is often mounted on a circuit board through a mounting device, but the conventional electronic element correction mounting device cannot adjust the size to adapt to the correction of the electronic elements with different sizes, is inconvenient for the correction and mounting of the electronic elements with different sizes, and causes limitation in the use of the mounting device.
In order to achieve the above purpose, the invention provides the following technical scheme: a mounting device for correcting electronic components comprises a mounting table, wherein the top of the mounting table is fixedly connected with a mounting machine body, the bottom of the mounting machine body is provided with a movable column, the bottom of the movable column is provided with a limiting clamping mechanism, and the top of the mounting table is provided with a movable positioning mechanism;
the limiting clamping mechanism comprises a limiting transverse plate, a motor and movable clamp plates, the limiting transverse plate is positioned at the bottom of the movable column and is fixedly connected with the movable column, the surface of the bottom of the movable column is provided with a fixed groove, the motor is positioned at the inner side of the fixed groove and is fixedly connected with the movable column, the output end of the motor is fixedly connected with a threaded vertical rod, the threaded vertical rod penetrates through the top of the limiting transverse plate and is movably sleeved with the limiting transverse plate, the bottom surface of the limiting transverse plate is provided with a sliding transverse groove, the number of the movable clamp plates is two, the two movable clamp plates are respectively positioned at two ends of the bottom of the limiting transverse plate, the tops of the two movable clamp plates are both fixedly connected with sliding lugs, two ends of the inner side of the sliding transverse groove are both provided with first threaded rods, the first threaded rods penetrate through the sliding lugs and are in threaded connection with the sliding lugs, and one ends of the two first threaded rods, which are far away from the sliding lugs, are both provided with first bevel gears, the utility model discloses a thread montant, including screw thread montant, first bevel gear, second bevel gear, protection diaphragm, spacing diaphragm fixed connection, screw thread montant, protection diaphragm bottom threaded connection has movable swivel nut, activity swivel nut bottom is equipped with the activity ring, the equal fixedly connected with in activity ring top both sides is connected the montant, the equal fixedly connected with in protection diaphragm bottom both ends fixed montant.
Specifically, through adjusting the distance between two movable clamping plates of spacing chucking mechanism, two movable clamping plates carry out the chucking to electronic component correction, then install the operation through the mounting plate body, after electronic component correction installation, two movable clamping plates take place to separate with electronic component correction, and the swivel nut downstream moves simultaneously, promotes to connect montant and activity ring motion, and the activity ring promotes electronic component correction motion for electronic component corrects more stable of installation.
Preferably, the movable positioning mechanism comprises a fixed transverse plate and a placing transverse plate, the surface of the top of the mounting table is provided with a limit square groove, the fixed transverse plate is positioned at the top of the inner side of the limit square groove and is fixedly connected with the mounting table, the surface of the top of the fixed transverse plate is provided with a strip-shaped chute, the placing transverse plate is positioned at the top of the fixed transverse plate, the bottom of the placing transverse plate is fixedly connected with a limit slider, the cross sections of the limit slider and the strip-shaped chute are both arranged in a convex shape, the limit slider is slidably connected with the strip-shaped chute, the surface of one side of the limit slider is provided with a threaded hole, one end of the mounting table is provided with a crank, one side of the crank is fixedly connected with a threaded transverse rod, the threaded transverse rod penetrates through the mounting table and is in threaded connection with the threaded hole, one end of the threaded transverse rod, which is far away from the crank, is provided with a second bearing, one end of the threaded transverse rod is fixedly connected with the inner wall of the second bearing, the second bearing is fixedly connected with the mounting table, and a clamping assembly is arranged at the bottom of the fixed transverse plate.
Specifically, it is rotatory to drive the screw thread horizontal pole through rotatory crank, and the screw thread horizontal pole drives the motion of spacing slider when rotatory, and spacing slider drives and places the diaphragm motion to suitable position to the installation of electronic component correction is convenient for.
Preferably, place diaphragm one end fixedly connected with limit baffle, it is equipped with adjustable fender to place the diaphragm and keep away from limit baffle one end, adjustable fender one side both ends all are equipped with the connection horizontal pole, connect the horizontal pole and keep away from the first spring of adjustable fender one end fixedly connected with, it all has seted up fixed spout to place diaphragm one end both sides surface, connect horizontal pole and fixed spout sliding connection, first spring be located fixed spout inboard and with place diaphragm fixed connection.
Specifically, drive through pulling adjustable fender and connect the horizontal pole motion, connect the first spring of horizontal pole pulling, first spring produces elastic deformation and is stretched, will install the circuit board that electronic component rectified after that and place on placing the diaphragm, electronic component rectifies one end and the contact of limit baffle, then slowly relaxs adjustable fender, and elastic deformation is resumeed to first spring, and horizontal pole and adjustable fender motion are connected in the pulling, and adjustable fender slowly contacts with the circuit board other end each other, and the circuit board both ends are pressed from both sides tightly.
Preferably, the fixed diaphragm both sides all are equipped with the adjustable clamp, adjustable clamp one side is equipped with the bar slider, bar slider one side fixedly connected with second spring, the quantity of second spring sets up to a plurality ofly, and is a plurality of the second spring is linear array and distributes, second spring and adjustable clamp fixed connection, spacing bar groove has all been seted up on fixed diaphragm both sides surface, bar slider and spacing bar groove sliding connection.
Specifically, the movable pressing plate has a buffering effect, when the movable pressing plate is extruded, the movable pressing plate extrudes the second spring, the second spring generates elastic deformation and is compressed, and therefore the movable pressing plate moves.
Preferably, clamping components includes second threaded rod and L shape slider, spacing square inslot portion one side is equipped with L shape spout, L shape slider be located L shape spout inboard and with L shape spout sliding connection, spacing square inslot portion is kept away from L shape spout one side and is equipped with fixed bar groove, fixed diaphragm bottom both sides all are equipped with the location horizontal pole, location horizontal pole top fixedly connected with location splint, the second threaded rod is located fixed diaphragm bottom, second threaded rod both ends run through two location horizontal poles respectively and with location horizontal pole threaded connection.
Specifically, the two sides of the circuit board are clamped through two positioning clamping plates of the clamping assembly, so that the circuit board is clamped and positioned.
Preferably, L shape slider top is equipped with the screw cap, screw cap bottom fixedly connected with activity montant, activity montant bottom is equipped with the third bevel gear, the activity montant run through L shape slider top and with third bevel gear fixed connection, fixed square groove has been seted up to L shape slider bottom inboard, the third bevel gear is located fixed square groove inboard, third bevel gear one side meshing is connected with fourth bevel gear, the second threaded rod run through L shape slider one end and with fourth bevel gear fixed connection.
Concretely, it is rotatory to drive movable montant through rotatory screw cap, and movable montant drives third bevel gear and fourth bevel gear rotation, and fourth bevel gear drives the second threaded rod rotation, and second threaded rod both ends integrated into one piece has opposite direction's thread to drive two location horizontal poles and move to the middle direction, two location horizontal poles drive two location splint and press from both sides tightly to the both sides of circuit board.
Preferably, the second threaded rod is kept away from L shape slider one end and is equipped with the slip square, slip square and fixed bar groove sliding connection, slip square side fixed surface inlays and is equipped with spacing bearing, second threaded rod one end and spacing bearing inner wall fixed connection.
Specifically, when the clamping assembly moves, the sliding block slides on the inner side of the fixed strip-shaped groove, so that the clamping assembly moves more stably.
Preferably, the cross sections of the sliding lug and the sliding transverse groove are both arranged in an inverted convex shape, the sliding lug is connected with the sliding transverse groove in a sliding manner, and one side of the bottom of the movable clamping plate is fixedly connected with a protective pad.
Specifically, all set up slip lug and slip cross slot cross section into the font of falling protruding for drive slip lug motion more stable when first threaded rod is rotatory.
Preferably, two first bearings are arranged on one side of each sliding lug, the first bearings are embedded in the side walls of the two ends of the inner portion of each sliding transverse groove and are fixedly connected with the limiting transverse plate, and one end of each first threaded rod is fixedly connected with the inner wall of each first bearing.
Specifically, first threaded rod is rotatory at first bearing inboard, has promoted the rotatory stability of first threaded rod.
Preferably, the connecting vertical rod is fixedly connected with the movable threaded sleeve, the fixed vertical rod penetrates through the movable threaded sleeve and is movably sleeved with the movable threaded sleeve, and the movable ring at the bottom of the fixed vertical rod is fixedly connected.
Specifically, when electronic component rectifies the installation, the rotatory simultaneously drive movable swivel nut downstream of screw thread montant, promote to connect montant and activity ring motion, activity ring promotes electronic component rectifies the motion, rectifies the installation more stable with electronic component.
The embodiment of the invention has the following advantages:
1. the electronic component correction device is used for correcting and clamping electronic components of different sizes by arranging the limiting clamping mechanism and then installing the electronic components, the distance between the two movable clamping plates of the limiting clamping mechanism is adjusted, the electronic components are corrected and clamped by the two movable clamping plates, and then the installation operation is carried out through the installation machine body.
2. The movable positioning mechanism is arranged to position and clamp circuit boards of different sizes so as to facilitate correction of installation of electronic elements, the movable positioning mechanism and the clamping assembly are used to clamp the circuit boards in the transverse direction and the longitudinal direction, so that the circuit boards of different sizes are positioned and clamped, then the crank is rotated to drive the threaded cross rod to rotate, the threaded cross rod rotates to drive the limiting slide block and the placing transverse plate to move, the circuit boards are moved to proper positions, then the electronic elements are corrected and installed, the installation device is convenient and quick to operate, correction of the installation of the electronic elements is more convenient and rapid, meanwhile, the circuit boards of different sizes can be positioned and clamped, and the application range of the installation device is expanded.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below. It should be apparent that the drawings in the following description are merely exemplary, and that other embodiments can be derived from the drawings provided by those of ordinary skill in the art without inventive effort.
The structures, ratios, sizes, and the like shown in the present specification are only used for matching with the contents disclosed in the specification, so as to be understood and read by those skilled in the art, and are not used to limit the conditions that the present invention can be implemented, so that the present invention has no technical significance, and any structural modifications, changes in the ratio relationship, or adjustments of the sizes, without affecting the effects and the achievable by the present invention, should still fall within the range that the technical contents disclosed in the present invention can cover.
FIG. 1 is a schematic view of the overall structure provided by the present invention;
FIG. 2 is an exploded view of the present invention providing a positive stop chucking mechanism;
FIG. 3 is an exploded view of the present invention providing a movable positioning mechanism;
FIG. 4 is a front cross-sectional view provided by the present invention;
FIG. 5 is a side cross-sectional view provided by the present invention;
FIG. 6 is an enlarged view of the portion A of FIG. 4 according to the present invention;
FIG. 7 is an enlarged view of the portion B of FIG. 5 according to the present invention;
fig. 8 is an exploded view of the structure of the clamping assembly provided by the present invention.
In the figure: 1 mounting table, 2 mounting machine body, 3 movable column, 4 limit transverse plate, 5 motor, 6 movable clamping plate, 7 fixed groove, 8 thread vertical rod, 9 sliding transverse groove, 10 sliding convex block, 11 first threaded rod, 12 first bevel gear, 13 second bevel gear, 14 protective transverse plate, 15 movable screw sleeve, 16 movable ring, 17 connecting vertical rod, 18 fixed vertical rod, 19 fixed transverse plate, 20 placing transverse plate, 21 limit square groove, 22 strip-shaped sliding groove, 23 limit sliding block, 24 threaded hole, 25 crank, 26 thread cross rod, 27 limit baffle, 28 movable baffle, 29 connecting cross rod, 30 first spring, 31 fixed sliding groove, 32 movable pressing plate, 33 strip-shaped sliding block, 34 second spring, 35 limit strip-shaped groove, 36 second threaded rod, 37L-shaped sliding block, 38L-shaped sliding groove, 39 fixed strip-shaped groove, 40 positioning cross rod, 41 positioning clamping plate, 42 screw cap, 43 movable vertical rod, 44 third bevel gear, 45 a fourth bevel gear, 46 a sliding square block and 47 a fixed square groove.
Detailed Description
The present invention is described in terms of particular embodiments, other advantages and features of the invention will become apparent to those skilled in the art from the following disclosure, and it is to be understood that the described embodiments are merely exemplary of the invention and that it is not intended to limit the invention to the particular embodiments disclosed. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example 1:
referring to the attached drawings 1-7, the mounting device for electronic component correction provided by the invention comprises a mounting table 1, wherein the top of the mounting table 1 is fixedly connected with a mounting machine body 2, the bottom of the mounting machine body 2 is provided with a movable column 3, the bottom of the movable column 3 is provided with a limiting clamping mechanism, and the top of the mounting table 1 is provided with a movable positioning mechanism;
the limiting and clamping mechanism comprises a limiting transverse plate 4, a motor 5 and movable clamp plates 6, the limiting transverse plate 4 is positioned at the bottom of the movable column 3 and fixedly connected with the movable column 3, a fixed groove 7 is formed in the surface of the bottom of the movable column 3, the motor 5 is positioned inside the fixed groove 7 and fixedly connected with the movable column 3, a threaded vertical rod 8 is fixedly connected with the output end of the motor 5, the threaded vertical rod 8 penetrates through the top of the limiting transverse plate 4 and is movably sleeved with the limiting transverse plate 4, a sliding transverse groove 9 is formed in the surface of the bottom of the limiting transverse plate 4, the number of the movable clamp plates 6 is two, the two movable clamp plates 6 are respectively positioned at two ends of the bottom of the limiting transverse plate 4, sliding convex blocks 10 are fixedly connected at the tops of the two movable clamp plates 6, first threaded rods 11 are respectively arranged at two ends of the inner side of the sliding transverse groove 9, the first threaded rods 11 penetrate through the sliding convex blocks 10 and are in threaded connection with the sliding convex blocks 10, the two first threaded rods 11 are respectively provided with a first bevel gear 12 at one end far away from the sliding convex block 10, the outer side of the middle part of each threaded vertical rod 8 is fixedly connected with a second bevel gear 13, the second bevel gears 13 are respectively connected with the two first bevel gears 12 in a meshed manner, the bottom of each second bevel gear 13 is provided with a protective transverse plate 14, the protective transverse plates 14 are fixedly connected with the limiting transverse plates 4, the threaded vertical rods 8 penetrate through the protective transverse plates 14 and are movably sleeved with the protective transverse plates 14, the bottom of each threaded vertical rod 8 is in threaded connection with a movable threaded sleeve 15, the bottom of each movable threaded sleeve 15 is provided with a movable circular ring 16, the two sides of the top of each movable circular ring 16 are respectively and fixedly connected with a connecting vertical rod 17, each connecting vertical rod 17 is fixedly connected with the movable threaded sleeve 15, the two ends of the bottom of each protective transverse plate 14 are respectively and fixedly connected with a fixed vertical rod 18, each fixed vertical rod 18 penetrates through the movable threaded sleeves 15 and is movably sleeved with the movable threaded sleeves 15, the bottom of the fixed vertical rod 18 is fixedly connected with a movable circular ring 16;
in this embodiment, the distance between the two movable clamping plates 6 of the limiting and clamping mechanism is adjusted, and the two movable clamping plates 6 clamp the electronic components to correct the electronic components, so as to correct, clamp and position the electronic components with different sizes, and then the mounting operation is performed through the mounting machine body 2.
In order to move the circuit board placed on the placing transverse plate 20 to the correct position for properly mounting the electronic component, the device is realized by adopting the following technical scheme: the movable positioning mechanism comprises a fixed transverse plate 19 and a placing transverse plate 20, a limiting square groove 21 is formed in the surface of the top of the mounting table 1, the fixed transverse plate 19 is located at the top of the inner side of the limiting square groove 21 and is fixedly connected with the mounting table 1, a strip-shaped sliding groove 22 is formed in the surface of the top of the fixed transverse plate 19, the placing transverse plate 20 is located at the top of the fixed transverse plate 19, a limiting slide block 23 is fixedly connected to the bottom of the placing transverse plate 20, the cross sections of the limiting slide block 23 and the strip-shaped sliding groove 22 are both in a convex shape, the limiting slide block 23 is slidably connected with the strip-shaped sliding groove 22, a threaded hole 24 is formed in the surface of one side of the limiting slide block 23, a crank 25 is arranged at one end of the mounting table 1, a threaded cross rod 26 is fixedly connected to one side of the crank 25, the threaded cross rod 26 penetrates through the mounting table 1 and is in threaded connection with the threaded hole 24, and a second bearing is arranged at one end of the threaded cross rod 26, which is far away from the crank 25, one end of the threaded cross rod 26 is fixedly connected with the inner wall of a second bearing, the second bearing is fixedly connected with the mounting table 1, and the bottom of the fixed transverse plate 19 is provided with a clamping assembly;
wherein, in order to carry out the purpose of location chucking with the circuit board both ends, this device adopts following technical scheme to realize: one end of the placing transverse plate 20 is fixedly connected with a limiting baffle 27, one end of the placing transverse plate 20, far away from the limiting baffle 27, is provided with a movable baffle 28, two ends of one side of the movable baffle 28 are respectively provided with a connecting cross rod 29, one end of the connecting cross rod 29, far away from the movable baffle 28, is fixedly connected with a first spring 30, two side surfaces of one end of the placing transverse plate 20 are respectively provided with a fixed sliding chute 31, the connecting cross rod 29 is in sliding connection with the fixed sliding chutes 31, and the first spring 30 is positioned on the inner side of the fixed sliding chutes 31 and is fixedly connected with the placing transverse plate 20;
wherein, in order to realize the purpose that the sliding lug 10 slides more stably in the sliding transverse groove 9, the device adopts the following technical scheme: the cross sections of the sliding convex block 10 and the sliding transverse groove 9 are all set to be inverted-convex, the sliding convex block 10 is connected with the sliding transverse groove 9 in a sliding mode, one side of the bottom of the movable clamp plate 6 is fixedly connected with a protection pad, two sides of the sliding convex block 10 are respectively provided with a first bearing, the first bearings are respectively embedded in the side walls of two ends inside the sliding transverse groove 9 and are fixedly connected with the limiting transverse plate 4, and one end of the first threaded rod 11 is fixedly connected with the inner wall of the first bearing.
The using process of the invention is as follows: when the electronic component correcting and mounting device is used for correcting and mounting an electronic component, the circuit board is positioned and clamped, after the electronic component is corrected and aligned with the appointed position of the circuit board, the motor 5 is started, the motor 5 operates, the output end of the motor 5 drives the thread vertical rod 8 to rotate, the thread vertical rod 8 drives the second bevel gear 13 to rotate, the second bevel gear 13 respectively drives the two first bevel gears 12 to rotate, as the two first bevel gears 12 are respectively positioned at two sides of the second bevel gear 13, the rotating directions of the two first bevel gears 12 are opposite, the two first threaded rods 11 respectively drive the two sliding lugs 10 to move in the inner side of the sliding transverse groove 9 while rotating, the two first bevel gears 12 respectively drive the two first threaded rods 11 to rotate, the two sliding lugs 10 respectively drive the two sliding clamping plates 6 to move towards the middle while rotating the two first threaded rods 11, the two movable clamping plates 6 respectively drive the two protective pads to move towards the middle, and the two protective pads are mutually contacted with the electronic component correction to correct and clamp the electronic component;
and then starting the mounting machine body 2 to mount the electronic component correction, after the electronic component correction is carried out, separating the two movable clamping plates 6 from the electronic component correction, simultaneously moving the movable threaded sleeve 15 downwards, pushing the connecting vertical rod 17 by the movable threaded sleeve to move, pushing the movable circular ring 16 to move by the connecting vertical rod 17, and pushing the electronic component correction by the movable circular ring 16, so that the electronic component correction and mounting are more stable.
Example 2:
referring to fig. 8, the mounting device for electronic component calibration provided by the invention comprises a clamping assembly and a second threaded rod 36 and an L-shaped sliding block 37, wherein an L-shaped sliding groove 38 is arranged on one side inside a limiting square groove 21, the L-shaped sliding block 37 is positioned on the inner side of the L-shaped sliding groove 38 and is in sliding connection with the L-shaped sliding groove 38, a fixed strip-shaped groove 39 is arranged on one side of the limiting square groove 21, which is far away from the L-shaped sliding groove 38, two sides of the bottom of a fixed transverse plate 19 are respectively provided with a positioning cross rod 40, the top of the positioning cross rod 40 is fixedly connected with a positioning clamping plate 41, the second threaded rod 36 is positioned at the bottom of the fixed transverse plate 19, two ends of the second threaded rod 36 respectively penetrate through the two positioning cross rods 40 and are in threaded connection with the positioning cross rod 40, the top of the L-shaped sliding block 37 is provided with a screw cap 42, the bottom of the screw cap 42 is fixedly connected with a movable vertical rod 43, the bottom of the movable vertical rod 43 is provided with a third bevel gear 44, the movable vertical rod 43 penetrates through the top of the L-shaped sliding block 37 and is fixedly connected with a third bevel gear 44, a fixed square groove 47 is formed in the inner side of the bottom of the L-shaped sliding block 37, the third bevel gear 44 is located on the inner side of the fixed square groove 47, a fourth bevel gear 45 is connected to one side of the third bevel gear 44 in a meshed mode, the second threaded rod 36 penetrates through one end of the L-shaped sliding block 37 and is fixedly connected with the fourth bevel gear 45, a sliding block 46 is arranged at one end, far away from the L-shaped sliding block 37, of the second threaded rod 36, the sliding block 46 is in sliding connection with the fixed strip-shaped groove 39, a limiting bearing is fixedly embedded in the surface of one side of the sliding block 46, and one end of the second threaded rod 36 is fixedly connected with the inner wall of the limiting bearing;
fixed diaphragm 19 both sides all are equipped with movable press plate 32, movable press plate 32 one side is equipped with bar slider 33, bar slider 33 one side fixedly connected with second spring 34, the quantity of second spring 34 sets up to a plurality ofly, and is a plurality of second spring 34 is linear array and distributes, second spring 34 and movable press plate 32 fixed connection, spacing bar groove 35 has all been seted up on fixed diaphragm 19 both sides surface, bar slider 33 and spacing bar groove 35 sliding connection.
The using process of the invention is as follows: before the electronic component is corrected and installed, firstly, the movable baffle 28 is pulled, the movable baffle 28 drives the connecting cross rod 29 to move on the inner side of the fixed chute 31, the connecting cross rod 29 pulls the first spring 30, the first spring 30 generates elastic deformation and is stretched, then a circuit board needing to be corrected and installed with the electronic component is placed on the placing transverse plate 20, one correcting end of the electronic component is contacted with the limiting baffle 27, then the movable baffle 28 is slowly released, the elastic deformation of the first spring 30 is recovered, the connecting cross rod 29 and the movable baffle 28 are pulled to move, the movable baffle 28 is slowly contacted with the other end of the circuit board, and two ends of the circuit board are clamped;
then the screw cap 42 is rotated, the screw cap 42 drives the movable vertical rod 43 to rotate, the movable vertical rod 43 drives the third bevel gear 44 to rotate, the third bevel gear 44 drives the fourth bevel gear 45 to rotate, the fourth bevel gear 45 drives the second threaded rod 36 to rotate, because the two ends of the second threaded rod 36 are integrally formed with screw teeth in opposite directions, the two ends of the second threaded rod 36 respectively rotate at the inner sides of the two positioning cross rods 40, so that the second threaded rod 36 drives the two positioning cross rods 40 to move towards the middle direction, the two positioning cross rods 40 drive the two positioning clamp plates 41 to move, and simultaneously when the positioning clamp plates 41 move, the positioning clamp plates 41 extrude the movable press plate 32, the movable press plate 32 extrudes the second spring 34, the second spring 34 generates elastic deformation and is compressed, and the two positioning clamp plates 41 clamp the two sides of the circuit board;
then the crank 25 is rotated, the crank 25 drives the threaded cross rod 26 to rotate, the threaded cross rod 26 drives the limiting slide block 23 to move on the inner side of the strip-shaped chute 22 while rotating, the limiting slide block 23 drives the placing transverse plate 20 to move, the placing transverse plate 20 drives the circuit board to move, the circuit board drives the clamping assembly to move, and the circuit board moves to a proper position so as to facilitate the installation of electronic component correction.
The above description is only a preferred embodiment of the present invention, and any person skilled in the art may modify the present invention or modify it into an equivalent technical solution by using the technical solution described above. Therefore, any simple modifications or equivalent substitutions made in accordance with the technical solution of the present invention are within the scope of the claims of the present invention.