Feeding device for optocoupler machining
By combining the air extraction mechanism and the drive mechanism, vacuum adsorption and continuous rotary movement of the photocoupler feeding are achieved, solving the problems of empty stroke and damage in the existing photocoupler feeding technology, and improving processing efficiency and product quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-29
- Publication Date
- 2026-04-10
AI Technical Summary
Existing optical coupler feeding methods suffer from issues such as idle travel and mechanical gripping that can easily damage the optical coupler, affecting processing efficiency and product quality.
A vacuum adsorption mechanism is used for vacuum adsorption, and a drive mechanism enables the rotation and up-and-down movement of the picking mechanism. Combined with a support mechanism, the connecting tube is prevented from tangling. The adsorption tube made of rubber material is used to reduce damage and ensure the continuity of feeding.
This reduces the risk of optocoupler damage, avoids empty strokes, improves the continuity and efficiency of feeding, and protects the integrity of the optocoupler during processing.
Smart Images

Figure CN224105040U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of light coupling processing, specifically to a feeding device for light coupling processing. BACKGROUND
[0002] Optocoupler, also known as photoelectric coupler or optical isolator, is an electronic component that transmits electrical signals through optical signals. It uses the optical connection between light emitting devices (such as light emitting diodes LED) and light receiving devices (such as phototransistors, photodiodes or photoresistors) to achieve electrical isolation between input and output.
[0003] During the production of the light coupling, a large number of processing steps and detection steps are required, and the existing light coupling feeding is mostly supplied by using the vibrating disc, and then the automatic grabbing mode is used for feeding. Such a single feeding mode will have a certain idle stroke, which will affect the processing efficiency of the light coupling, and the mechanical grabbing mode of the cylinder is used for feeding in the existing feeding process, which is easy to cause damage to the light coupling. Therefore, we propose a feeding device for light coupling processing. SUMMARY
[0004] The utility model aims at providing a feeding device for light coupling processing to solve the problems raised in the background art.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a feeding device for light coupling processing, including mounting plate and taking mechanism, the taking mechanism is used for adsorbing and taking the light coupling, a plurality of fixed slots are provided on the mounting plate, the driving mechanism for driving the taking mechanism to rotate and move up and down is arranged on the mounting plate, the taking mechanism is provided with a suction mechanism for suctioning the taking mechanism, the taking mechanism and the suction mechanism are connected through the connecting pipe, and the taking mechanism is provided with a supporting mechanism for positioning the connecting pipe.
[0006] Further, the driving mechanism includes a limiting sleeve, a limiting rod, a connecting plate, a driving motor and a driving cylinder, a plurality of limiting sleeves are fixedly installed on the mounting plate, the limiting rod is slidably connected in the limiting sleeve, the connecting plate is fixedly installed on the top of the limiting rod, the driving motor is fixedly installed on the top of the connecting plate, the output end of the driving motor is fixedly connected with the taking mechanism, the driving cylinder is fixedly installed on the bottom of the mounting plate, and the output end of the driving cylinder is fixedly connected with the connecting plate.
[0007] Further, the taking mechanism comprises connecting frames, reinforcing rods, first connecting pipes, suction pipes, connecting blocks, mounting frames and second connecting pipes, a plurality of groups of reinforcing rods are fixedly installed in the connecting frames, a plurality of groups of connecting blocks are fixedly installed outside the reinforcing rods, mounting frames are fixedly installed on the connecting frames, telescopic pipes are slidably connected to the connecting blocks and the telescopic pipes, suction pipes are fixedly communicated at the bottom of the telescopic pipes, second connecting pipes are fixedly communicated at the top of the suction pipes, springs are fixedly installed outside the telescopic pipes, and the bottom of the springs is fixedly connected with the connecting blocks.
[0008] Further, the suction mechanism comprises a shunt pipe, first connecting pipes and suction pipes, the shunt pipe is fixedly installed at the top of the reinforcing rod, the first connecting pipes are arranged through the shunt pipe and correspond to the positions of the second connecting pipes, the first connecting pipes and the second connecting pipes are communicated through the connecting pipes, and the suction pipes are rotatably connected to the top of the shunt pipe and extend into the shunt pipe.
[0009] Further, the supporting mechanism comprises supporting rods and positioning plates, the connecting pipes are clamped with the positioning plates, and the bottom of the positioning plates is fixedly installed on the reinforcing rod through the supporting rods.
[0010] Further, the manufacturing material of the suction pipe is rubber material.
[0011] Compared with the prior art, the taking mechanism can be vacuumized by the suction mechanism, the taking mode can reduce the damage to the photocoupler compared with the cylinder grabbing, the driving mechanism can drive the taking mechanism to continuously rotate and move up and down, the empty stroke in the photocoupler processing process is prevented, the supporting mechanism can prevent the connecting pipes from being entangled and bent when the taking mechanism and the connecting pipes continuously move up and down along with the driving mechanism, and the continuity of feeding is ensured. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 It is a first perspective view structural schematic diagram of the utility model;
[0013] Figure 2 It is a second perspective view structural schematic diagram of the utility model;
[0014] Figure 3 It is a taking mechanism and a suction mechanism perspective view connection structural schematic diagram of the utility model;
[0015] Figure 4 It is an A structure enlarged schematic diagram of the utility model.
[0016] In the figure: 1 mounting plate, 2 fixed slot, 3 drive mechanism, 4 taking mechanism, 5 suction mechanism, 6 connecting pipe, 7 supporting mechanism, 8 limiting sleeve, 9 limiting rod, 10 connecting plate, 11 drive motor, 12 drive cylinder, 13 connecting frame, 14 reinforcing rod, 15 shunt pipe, 16 first connecting pipe, 17 suction pipe, 18 connecting block, 19 mounting frame, 20 telescopic pipe, 21 adsorption pipe, 22 spring, 23 second connecting pipe, 24 supporting rod, 25 positioning plate. DETAILED DESCRIPTION
[0017] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0018] Please refer to Figures 1-4 The present application provides a technical solution: a feeding device for optical coupling processing, comprising a mounting plate 1 and a taking mechanism 4, the taking mechanism 4 is used for taking and adsorbing optical coupling, a plurality of fixed slots 2 are provided through the mounting plate 1, a drive mechanism 3 is arranged on the mounting plate 1 to drive the taking mechanism 4 to rotate and move up and down, a suction mechanism 5 is arranged on the taking mechanism 4 to suck the taking mechanism 4, the taking mechanism 4 and the suction mechanism 5 are connected through a connecting pipe 6, and a supporting mechanism 7 is arranged on the taking mechanism 4 to position the connecting pipe 6.
[0019] The suction mechanism 5 can suck the taking mechanism 4, which can reduce the damage to the optical coupling compared with the cylinder grabbing, and the drive mechanism 3 can drive the taking mechanism to continuously rotate and move up and down, so as to prevent the occurrence of idle stroke during the optical coupling processing, and when the taking mechanism 4 and the connecting pipe 6 continuously move up and down following the drive mechanism 3, the supporting mechanism 7 can prevent the connecting pipe 6 from being entangled and bent, ensuring the continuity of feeding.
[0020] Please refer to Figure 1 and Figure 2The driving mechanism 3 comprises a limiting sleeve 8, a limiting rod 9, a connecting plate 10, a driving motor 11 and a driving cylinder 12, a plurality of limiting sleeves 8 are fixedly installed on the mounting plate 1, the limiting rod 9 is slidably connected in the limiting sleeve 8, the connecting plate 10 is fixedly installed at the top of the limiting rod 9, the driving motor 11 is fixedly installed at the top of the connecting plate 10, the output end of the driving motor 11 is fixedly connected with the taking mechanism 4, the driving cylinder 12 is fixedly installed at the bottom of the mounting plate 1, and the output end of the driving cylinder 12 is fixedly connected with the connecting plate 10.
[0021] The driving motor 11 can drive the taking mechanism 4 to rotate continuously, so that the photocoupler on the vibration disc can be continuously moved to the processing station and the detection station, and the driving cylinder 12 can drive the connecting plate 10, the driving motor 11 and the taking mechanism 4 to move up and down continuously, so that the photocoupler can be conveniently moved up and down for material taking and placing, and the limiting sleeve 8 and the limiting rod 9 can limit the movement of the connecting plate 10 up and down to prevent deviation.
[0022] Please refer to Figure 1 , Figure 2 , Figure 3 and Figure 4 , the taking mechanism 4 comprises a connecting frame 13, a reinforcing rod 14, a first connecting pipe 16, an air suction pipe 17, a connecting block 18, a mounting frame 19 and a second connecting pipe 23, a plurality of reinforcing rods 14 are fixedly installed in the connecting frame 13, a plurality of connecting blocks 18 are fixedly installed on the outer portion of the reinforcing rod 14, the mounting frame 19 is fixedly installed on the connecting frame 13, the telescopic pipe 20 is slidably connected with the connecting block 18 and the telescopic pipe 20, the bottom of the telescopic pipe 20 is fixedly communicated with the adsorption pipe 21, the top of the adsorption pipe 21 is fixedly communicated with the second connecting pipe 23, the outer portion of the telescopic pipe 20 is fixedly installed with the spring 22, and the bottom of the spring 22 is fixedly connected with the connecting block 18.
[0023] The second connecting pipe 23, the telescopic pipe 20 and the adsorption pipe 21 are communicated with the connecting pipe 6, then the adsorption and taking of the photocoupler can be completed through the adsorption pipe 21 when the connecting frame 13 is lowered, the telescopic pipe 20 can slide along the connecting block 18 and the mounting frame 19, so that the photocoupler can be prevented from being excessively squeezed and damaged when the adsorption pipe 21 moves down for adsorption, and the spring 22 can pull the telescopic pipe 20 and the adsorption pipe 21 to reset.
[0024] Please refer to Figure 1 , Figure 2 and Figure 3The air extraction mechanism 5 comprises a shunt pipe 15, a first connecting pipe 16 and an air extraction pipe 17, the top of the reinforcing rod 14 is fixedly provided with the shunt pipe 15, the first connecting pipe 16 is arranged through the shunt pipe 15 and corresponds to the position of the second connecting pipe 23, the first connecting pipe 16 and the second connecting pipe 23 are communicated through the connecting pipe 6, and the top of the shunt pipe 15 is rotatably connected with the air extraction pipe 17 extending into the shunt pipe 15.
[0025] When the connecting frame 13 rotates, the air extraction pipe 17 rotatably connected with the shunt pipe 15 can conveniently extract air when the connecting frame 13 and the shunt pipe 15 rotate, and then the first connecting pipe 16 and the connecting pipe 6 are connected with the second connecting pipe 23 to extract air.
[0026] Please refer to Figure 1 and Figure 3 The supporting mechanism 7 comprises a supporting rod 24 and a positioning plate 25, the outer portion of the connecting pipe 6 is clamped with the positioning plate 25 provided with an arc shape on both sides, and the bottom of the positioning plate 25 is fixedly installed on the reinforcing rod 14 through the supporting rod 24.
[0027] The connecting pipe 6 is clamped and installed on the outer portion of the positioning plate 25, and the positioning plate 25 is provided with an arc shape on both sides, so that the connecting pipe 6 cannot be bent and wound when it moves up and down.
[0028] Please refer to Figure 1 and Figure 4 The manufacturing material of the adsorption pipe 21 is rubber material, and the rubber material manufacturing adsorption pipe 21 can be fully contacted and adsorbed with the optical coupling.
[0029] In use, first, the set suction mechanism 5 can suck the taking mechanism 4, such taking mode can reduce the damage to the photocoupler relative to the cylinder grabbing, and the set driving mechanism 3 can drive the taking mechanism to continuously rotate the material and move the material up and down, so as to prevent the occurrence of idle stroke in the photocoupler processing process, and when the taking mechanism 4 and the connecting pipe 6 continuously follow the driving mechanism 3 to move up and down, the set supporting mechanism 7 can prevent the connecting pipe 6 from winding and bending, ensure the continuity of feeding, the set driving motor 11 can drive the taking mechanism 4 to continuously rotate, so that the photocoupler on the vibration disc can be continuously moved to the processing station and the detection station, and the set driving cylinder 12 can drive the connecting plate 10, the driving motor 11 and the taking mechanism 4 to continuously move up and down, so as to facilitate the up and down movement of the photocoupler, and the connecting plate 10 can be limited by the limiting sleeve 8 and the limiting rod 9 when moving up and down, so as to prevent the connecting plate 10 from deviating when moving up and down, the second connecting pipe 23, the telescopic pipe 20 and the adsorption pipe 21 are communicated with the connecting pipe 6, then the adsorption pipe 21 can complete the adsorption and taking of the photocoupler when the connecting frame 13 descends, the telescopic pipe 20 can slide along the connecting block 18 and the mounting frame 19, so as to avoid the photocoupler from being excessively pressed and damaged when the adsorption pipe 21 moves down for adsorption, and the spring 22 can pull the telescopic pipe 20 and the adsorption pipe 21 to reset, when the connecting frame 13 rotates, the suction pipe 17 in communication with the rotating of the shunt pipe 15 can facilitate the suction when the connecting frame 13 and the shunt pipe 15 rotate, then the first connecting pipe 16 and the connecting pipe 6 are connected with the second connecting pipe 23 for suction, the connecting pipe 6 can be clamped and installed outside the positioning plate 25, and the positioning plate 25 is set as arc-shaped on both sides, so as to prevent the connecting pipe 6 from being bent and wound when following the up and down movement.
[0030] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A feeding device for optical coupling processing, comprising a mounting plate (1) and a taking mechanism (4) for taking optical coupling adsorption, a plurality of sets of fixing grooves (2) are provided through the mounting plate (1), characterized in that: The installation plate (1) is provided with a driving mechanism (3) for rotating and moving up and down the taking mechanism (4), the taking mechanism (4) is provided with an air extraction mechanism (5) for extracting air from the taking mechanism (4), the taking mechanism (4) and the air extraction mechanism (5) are connected through a connecting pipe (6), and the taking mechanism (4) is provided with a supporting mechanism (7) for positioning the connecting pipe (6).
2. The feeding device for optical coupling processing according to claim 1, characterized in that: The driving mechanism (3) comprises a limiting sleeve (8), a limiting rod (9), a connecting plate (10), a driving motor (11) and a driving cylinder (12), a plurality of limiting sleeves (8) are fixedly installed on the installation plate (1), the limiting rod (9) is slidably connected in the limiting sleeve (8), the connecting plate (10) is fixedly installed on the top of the limiting rod (9), the driving motor (11) is fixedly installed on the top of the connecting plate (10), the output end of the driving motor (11) is fixedly connected with the taking mechanism (4), and the driving cylinder (12) is fixedly installed on the bottom of the installation plate (1) and fixedly connected with the connecting plate (10).
3. The feeding device for optical coupling processing according to claim 2, characterized in that: The taking mechanism (4) comprises a connecting frame (13), a reinforcing rod (14), a first connecting pipe (16), an air extraction pipe (17), a connecting block (18), a mounting frame (19) and a second connecting pipe (23), a plurality of reinforcing rods (14) are fixedly installed in the connecting frame (13), a plurality of connecting blocks (18) are fixedly installed on the outer portion of the reinforcing rod (14), the mounting frame (19) is fixedly installed on the connecting frame (13), the connecting block (18) is slidably connected with the telescopic pipe (20), the bottom of the telescopic pipe (20) is fixedly communicated with the adsorption pipe (21), the top of the adsorption pipe (21) is fixedly communicated with the second connecting pipe (23), the outer portion of the telescopic pipe (20) is fixedly installed with a spring (22), and the bottom of the spring (22) is fixedly connected with the connecting block (18).
4. The feeding device for optical coupling processing according to claim 3, characterized in that: The air extraction mechanism (5) comprises a shunt pipe (15), a first connecting pipe (16) and an air extraction pipe (17), the shunt pipe (15) is fixedly installed on the top of the reinforcing rod (14), the first connecting pipe (16) is arranged through the shunt pipe (15) and corresponds to the position of the second connecting pipe (23), the first connecting pipe (16) and the second connecting pipe (23) are communicated through the connecting pipe (6), and the air extraction pipe (17) is rotatably connected to the top of the shunt pipe (15) and extends into the shunt pipe (15).
5. The device according to claim 4, wherein: The supporting mechanism (7) comprises a supporting rod (24) and a positioning plate (25), the connecting pipe (6) is clamped with the positioning plate (25), and the bottom of the positioning plate (25) is fixedly installed on the reinforcing rod (14) through the supporting rod (24).
6. The feeding device for optical coupling processing according to claim 5, characterized in that: The manufacturing material of the adsorption pipe (21) is rubber material.