CN220765080U - Optical device production processing encapsulation mechanism - Google Patents

Optical device production processing encapsulation mechanism Download PDF

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Publication number
CN220765080U
CN220765080U CN202322567209.3U CN202322567209U CN220765080U CN 220765080 U CN220765080 U CN 220765080U CN 202322567209 U CN202322567209 U CN 202322567209U CN 220765080 U CN220765080 U CN 220765080U
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China
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wall
fixedly connected
threaded rod
main body
cabinet main
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CN202322567209.3U
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Chinese (zh)
Inventor
张慧阳
侯立明
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Guilin Yiyan Technology Co ltd
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Guilin Yiyan Technology Co ltd
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Abstract

The utility model relates to the technical field of optical devices, in particular to an optical device production processing packaging mechanism, which comprises a cabinet main body, wherein first motors are fixedly connected to two sides of the bottom surface of the inner wall of the cabinet main body, first screws are fixedly connected to the output ends of the two first motors, a storage box is arranged above the first motors, first thread plates are fixedly connected to the bottoms of two side surfaces, close to the first motors, of the outer wall of the storage box, and the two first thread plates are respectively in threaded connection with the two first threaded rods. The utility model has the advantages that: two first motors keep same speed direction, and first motor rotates and drives first threaded rod and rotate, and first threaded rod and first screw thread board threaded connection simultaneously through spacing ring and dead lever, can play fixed and spacing effect to the storage box, just can realize the regulation of storage box upper and lower position, need not the staff and bow just can put into the storage box with the optical device, and more humanized is more convenient.

Description

Optical device production processing encapsulation mechanism
Technical Field
The utility model relates to the technical field of optical devices, in particular to a production, processing and packaging mechanism for optical devices.
Background
The optical device is divided into an active device and a passive device, wherein the optical active device is an optoelectronic device which needs external energy to drive work in an optical communication system and can convert an electric signal into an optical signal or convert the optical signal into the electric signal, and is a heart of an optical transmission system. The optical passive device is an optoelectronic device which does not need external energy to drive work, and after the optical device is manufactured, the optical passive device needs to be packaged and stored for subsequent use or processing.
In the chinese utility model CN218851120U, a light device producing, processing and packaging mechanism is disclosed, the mechanism slides and extrudes a first spring in a first chute through a first sliding block at the upper end of a scissor-type folding telescopic frame, and slides and extrudes a second spring on the surface of a sliding rod through a sliding sleeve at the lower end of the scissor-type folding telescopic frame to absorb shock, so that the vibration in the up-down direction and the left-right direction can be counteracted and absorbed simultaneously, but the mechanism needs a worker to bend down or raise the mechanism, the storage process is very inconvenient, the operation difficulty is increased, and the light device is easy to accidentally damage.
Disclosure of Invention
The object of the present utility model is to solve at least one of the technical drawbacks.
Therefore, an object of the present utility model is to provide an optical device manufacturing and packaging mechanism, which solves the problems mentioned in the background art and overcomes the shortcomings in the prior art.
In order to achieve the above object, an embodiment of an aspect of the present utility model provides an optical device manufacturing and packaging mechanism, including a cabinet main body, two sides of an inner wall bottom surface of the cabinet main body are fixedly connected with first motors, two output ends of the first motors are fixedly connected with first threaded rods, a storage box is disposed above the first motors, two side bottoms of an outer wall of the storage box, which is close to the first motors, are fixedly connected with first threaded plates, two first threaded plates are respectively in threaded connection with two first threaded rods, a bottom of one side of the outer wall of the storage box is fixedly connected with a limiting ring, a fixing rod is fixedly connected to a position, which is close to the limiting ring, of the inner wall bottom surface of the cabinet main body, and penetrates through the inside of the limiting ring, two side top surfaces of the cabinet main body are provided with second threaded rods, a cover plate is slidably connected inside the strip-shaped sliding grooves, a second threaded rod is fixedly connected to the top of one side of the outer wall of the cabinet main body, one side of the second threaded rod is fixedly connected with a second threaded plate, and the second threaded plate is fixedly connected with a second threaded plate.
By the preferred mode of arbitrary scheme, circular hole has all been seted up to cabinet main part outer wall both sides, the inside in circular hole is provided with the fan, the cabinet main part outer wall is close to the position of circular hole and all fixedly connected with filter screen.
The technical effect achieved by adopting the scheme is as follows: through using this scheme can utilize two fans to carry out ventilation treatment to the cabinet main part inside, prevent that the light device from influencing the life-span because of the damp.
By the above-mentioned scheme preferred, cabinet main part outer wall one side top fixedly connected with support frame, the top rotation of support frame is connected with the gyro wheel, the position of gyro wheel and the position looks adaptation of apron.
The technical effect achieved by adopting the scheme is as follows: through the scheme, the cover plate can be jacked up by utilizing the supporting frame and the idler wheels, and the dislocation deformation of the cover plate is prevented.
By the above-mentioned scheme preferred, the both ends of apron side are all fixedly connected with bar slider, bar slider and bar spout sliding connection, the cabinet main part outer wall is close to the position fixedly connected with rectangular plate of second threaded rod, the one end that the second threaded rod kept away from the second motor rotates with rectangular plate to be connected.
The technical effect achieved by adopting the scheme is as follows: by using the scheme, the cover plate can be in sliding connection with the cabinet main body, so that the flexibility of the novel threaded rod is improved, and the stability of the second threaded rod during rotation is improved.
By any of the above schemes, preferably, the length of the first threaded rod is adapted to the height of the inner wall of the cabinet main body, and the length of the fixed rod is equal to the height of the inner wall of the cabinet main body.
The technical effect achieved by adopting the scheme is as follows: by using this scheme, the movement range of the cabinet main body can be maximized.
By the above-mentioned scheme preferred, the length of second screw rod and the length looks adaptation of cabinet main part outer wall top surface, the length of bar spout equals with the length of cabinet main part inner wall, the length of bar slider and the length looks adaptation of bar spout.
The technical effect achieved by adopting the scheme is as follows: by using the scheme, the moving range of the cover plate can be maximized, and the stability of sliding connection of the cover plate and the cabinet main body is improved.
Compared with the prior art, the utility model has the following advantages and beneficial effects:
1. two first motors keep same speed direction, and first motor rotates and drives first threaded rod and rotate, and first threaded rod and first screw thread board threaded connection simultaneously through spacing ring and dead lever, can play fixed and spacing effect to the storage box, just can realize the regulation of storage box upper and lower position, need not the staff and bow just can put into the storage box with the optical device, and more humanized is more convenient.
2. The second threaded rod is driven to rotate through the second motor, the second threaded rod is in threaded connection with the second threaded plate, the cover plate is in sliding connection with the cabinet main body through the strip-shaped sliding groove and the strip-shaped sliding block, the cover plate is fixed and the limiting cover plate is enabled to move through the rotation of the second threaded rod, the cover plate can be driven to move, the light device can be used in a mode without manually opening the cover plate, the flexibility of the novel intelligent electronic device is further improved, the cover plate can be supported through the supporting frame and the rollers, the moving cover plate is reinforced, and the safety is guaranteed.
3. Through two fans, one is gone into one and is gone out, can ventilate to the inside ventilation of cabinet main part to prevent that the humidity from influencing the life-span of light device, and be provided with the filter, can play filterable effect to dust impurity.
Drawings
FIG. 1 is a schematic view of a first view of the present utility model;
FIG. 2 is a schematic diagram of a second view of the present utility model;
fig. 3 is a schematic structural view of a third view of the present utility model.
In the figure: the novel multifunctional intelligent cabinet temperature-control device comprises a cabinet body, a 2-fan, a 3-second screw plate, a 4-rectangular plate, a 5-supporting frame, 6-rollers, 7-bar-shaped sliding grooves, an 8-storage box, 9-second motors, 10-second threaded rods, 11-round holes, 12-first threaded rods, 13-first screw plates, 14-first motors, 15-fixed rods, 16-limiting rings, 17-cover plates, 18-bar-shaped sliding blocks and 19-filter screens.
Detailed Description
The present utility model will be further described with reference to the accompanying drawings, but the scope of the present utility model is not limited to the following.
Embodiment one: as shown in fig. 1 to 3, an optical device production processing encapsulation mechanism, it includes cabinet main part 1, the equal fixedly connected with first motor 14 in both sides of cabinet main part 1 inner wall bottom surface, the equal fixedly connected with first threaded rod 12 of output of two first motors 14, the top of first motor 14 is provided with storage box 8, the outer wall of storage box 8 is close to the equal fixedly connected with first thread board 13 in both sides bottom of first motor 14, two first thread boards 13 respectively with two first threaded rod 12 threaded connection, the bottom fixedly connected with spacing ring 16 in storage box 8 outer wall one side, the position fixedly connected with dead lever 15 that the inner wall bottom surface of cabinet main part 1 is close to spacing ring 16, dead lever 15 passes from spacing ring 16 inside, bar spout 7 has been seted up to the both sides top surface of cabinet main part 1, bar spout 7 inside sliding connection has apron 17, the top fixedly connected with second motor 9 in one side of cabinet main part 1 outer wall one side, the output of second motor 9 fixedly connected with second thread board 10, one side fixedly connected with second threaded rod 3 of second threaded rod 10, one side of 17 is close to second threaded rod 10, second threaded rod 3 and second threaded rod 10 threaded board.
As an alternative technical scheme of the utility model, two sides of the outer wall of the cabinet main body 1 are provided with the circular holes 11, the fans 2 are arranged in the circular holes 11, the positions, close to the circular holes 11, of the outer wall of the cabinet main body 1 are fixedly connected with the filter screens 19, and by using the scheme, the two fans 2 can be utilized to ventilate the inside of the cabinet main body 1, so that the service life of optical devices is prevented from being influenced by damp.
As an alternative technical scheme of the utility model, the top of one side of the outer wall of the cabinet main body 1 is fixedly connected with the supporting frame 5, the top of the supporting frame 5 is rotationally connected with the roller 6, the position of the roller 6 is matched with the position of the cover plate 17, and the cover plate 17 can be jacked up by using the supporting frame 5 and the roller 6 to prevent the cover plate 17 from dislocation deformation.
As an alternative technical scheme of the utility model, two ends of one side surface of the cover plate 17 are fixedly connected with the strip-shaped sliding blocks 18, the strip-shaped sliding blocks 18 are in sliding connection with the strip-shaped sliding grooves 7, the rectangular plate 4 is fixedly connected to the outer wall of the cabinet main body 1 close to the second threaded rod 10, one end of the second threaded rod 10 far away from the second motor 9 is rotationally connected with the rectangular plate 4, the cover plate 17 can be in sliding connection with the cabinet main body 1 by using the scheme, flexibility of the utility model is improved, and stability of the second threaded rod 10 during rotation is improved.
As an alternative solution of the present utility model, the length of the first threaded rod 12 is adapted to the height of the inner wall of the cabinet body 1, and the length of the fixing rod 15 is equal to the height of the inner wall of the cabinet body 1, by which the movement range of the cabinet body 1 can be maximized.
As an alternative solution of the present utility model, the length of the second threaded rod 10 is adapted to the length of the top surface of the outer wall of the cabinet body 1, the length of the bar-shaped sliding groove 7 is equal to the length of the inner wall of the cabinet body 1, and the length of the bar-shaped sliding block 18 is adapted to the length of the bar-shaped sliding groove 7, by which the moving range of the cover 17 can be maximized and the stability of the sliding connection of the cover 17 with the cabinet body 1 can be increased.
The optical device production, processing and packaging mechanism has the following working principle:
1) The two first motors 14 keep the same speed direction, the first motors 14 rotate to drive the first threaded rods 12 to rotate, the first threaded rods 12 are in threaded connection with the first threaded plates 13, meanwhile, the limiting rings 16 and the fixing rods 15 play a role in fixing and limiting the storage box 8, the upper and lower positions of the storage box 8 can be adjusted, a worker does not need to bend down to put optical devices into the storage box 8, and humanization is more convenient;
2) The second threaded rod 10 is driven to rotate by the second motor 9, the second threaded rod 10 is in threaded connection with the second threaded plate 3, the cover plate 17 is in sliding connection with the cabinet main body 1 through the strip-shaped sliding groove 7 and the strip-shaped sliding block 18, the cover plate 17 and the limiting cover plate 17 are fixed, the cover plate 17 can be driven to move by the rotation of the second threaded rod 10, the cover plate 17 can be opened manually, the light device can be used, the flexibility of the utility model is further improved, the cover plate 17 can be supported by the support frame 5 and the roller 6, the movable cover plate 17 is reinforced, and the safety is guaranteed;
3) Through two fans 2, one is gone into one, can ventilate to the inside ventilation of cabinet main part 1 to prevent that the humidity from influencing the life-span of light device, and be provided with filter 19, can play filterable effect to dust impurity.
To sum up, this light device production processing encapsulation mechanism, first, two first motors 14 keep same speed direction, first motor 14 rotates and drives first threaded rod 12 and rotate, first threaded rod 12 and first threaded plate 13 threaded connection, simultaneously through spacing ring 16 and dead lever 15, can play fixed and spacing effect to storage box 8, just can realize the regulation of storage box 8 upper and lower position, need not the staff and bow just can put into storage box 8 with the light device, more humanized is more convenient, second drive second threaded rod 10 through second motor 9 and rotate, second threaded rod 10 and second threaded plate 3 threaded connection, wherein apron 17 passes through bar spout 7 and bar slider 18 and cabinet main part 1 sliding connection, play the effect of fixed apron 17 and spacing apron 17, second threaded rod 10 rotates just can drive apron 17 and remove, need not the manual work and open the light device of mode, further increase the flexibility of this utility model, and can play the gyro wheel 17 through support frame 5 and 6, consolidate the effect of removing, guarantee that the security is last apron 17, two filter plates 2 can play the effect to the filter plate through the fan that two air inlet and outlet bodies are ventilated, the filter plate 1 has the dust, and filter the inside can be influenced by the ventilation cabinet.
Although embodiments of the present utility model have been shown and described above, it will be understood that the above embodiments are illustrative and not to be construed as limiting the utility model, and that variations, modifications, alternatives, and variations may be made in the above embodiments by those skilled in the art without departing from the spirit and principles of the utility model. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (6)

1. The utility model provides an optical device production processing encapsulation mechanism which characterized in that: including case main part (1), the equal fixedly connected with first motor (14) in both sides of case main part (1) inner wall bottom surface, two the output of first motor (14) is first threaded rod (12) of equal fixedly connected with, the top of first motor (14) is provided with storage box (8), the outer wall of storage box (8) is close to the equal fixedly connected with first screw thread board (13) in both sides bottom of first motor (14), two first screw thread board (13) respectively with two first threaded rod (12) threaded connection, the bottom fixedly connected with spacing ring (16) of storage box (8) outer wall one side, the position fixedly connected with dead lever (15) that the inner wall bottom surface of case main part (1) is close to spacing ring (16), bar spout (7) are seted up to the both sides top surface of case main part (1), bar spout (7) inside sliding connection has apron (17), the motor of case main part (1) outer wall top (9) are close to second threaded rod (9) of second screw thread board (9) fixedly connected with second threaded rod (10), the second threaded rod (10) is in threaded connection with the second threaded plate (3).
2. The optical device manufacturing and packaging mechanism according to claim 1, wherein: circular holes (11) are formed in two sides of the outer wall of the cabinet main body (1), a fan (2) is arranged in the circular holes (11), and a filter screen (19) is fixedly connected to the outer wall of the cabinet main body (1) close to the positions of the circular holes (11).
3. The optical device manufacturing and packaging mechanism according to claim 2, wherein: the novel multifunctional cabinet is characterized in that a supporting frame (5) is fixedly connected to the top of one side of the outer wall of the cabinet main body (1), a roller (6) is rotatably connected to the top of the supporting frame (5), and the position of the roller (6) is matched with the position of the cover plate (17).
4. A light device manufacturing and packaging mechanism as recited in claim 3, wherein: the two ends of one side face of the cover plate (17) are fixedly connected with strip-shaped sliding blocks (18), the strip-shaped sliding blocks (18) are in sliding connection with the strip-shaped sliding grooves (7), a rectangular plate (4) is fixedly connected to the outer wall of the cabinet main body (1) close to the position of the second threaded rod (10), and one end, far away from the second motor (9), of the second threaded rod (10) is rotationally connected with the rectangular plate (4).
5. The optical device manufacturing and packaging mechanism according to claim 4, wherein: the length of the first threaded rod (12) is matched with the height of the inner wall of the cabinet main body (1), and the length of the fixing rod (15) is equal to the height of the inner wall of the cabinet main body (1).
6. The optical device manufacturing and packaging mechanism according to claim 5, wherein: the length of the second threaded rod (10) is matched with the length of the top surface of the outer wall of the cabinet main body (1), the length of the strip-shaped sliding groove (7) is equal to the length of the inner wall of the cabinet main body (1), and the length of the strip-shaped sliding block (18) is matched with the length of the strip-shaped sliding groove (7).
CN202322567209.3U 2023-09-21 2023-09-21 Optical device production processing encapsulation mechanism Active CN220765080U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322567209.3U CN220765080U (en) 2023-09-21 2023-09-21 Optical device production processing encapsulation mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322567209.3U CN220765080U (en) 2023-09-21 2023-09-21 Optical device production processing encapsulation mechanism

Publications (1)

Publication Number Publication Date
CN220765080U true CN220765080U (en) 2024-04-12

Family

ID=90604717

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322567209.3U Active CN220765080U (en) 2023-09-21 2023-09-21 Optical device production processing encapsulation mechanism

Country Status (1)

Country Link
CN (1) CN220765080U (en)

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