Infrared induction conveying device for packaged capacitor

The use of an infrared sensing and transmission device enables precise fixing and winding of capacitors, solving the problem of uneven winding of existing capacitors and improving the consistency of capacitor transportation and use.

CN223822098UActive Publication Date: 2026-01-23ZHONGSHAN WANDONG ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202520224728.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-12
Publication Date
2026-01-23
Estimated Expiration
2035-02-12

AI Technical Summary

Technical Problem

Existing capacitor winding devices suffer from inaccurate sensing during winding, resulting in uneven winding and an inability to stop accurately, which affects the use and transportation of capacitors.

Method used

It employs an upper conveyor roller, a lower conveyor roller, an upper pulley mechanism, a lower pulley mechanism, an adjustable pulley body, a shock-absorbing guide wheel, a pressure block mechanism, a conveyor belt mechanism, a capacitor drive mechanism, a conveying platform, a buffer guide wheel mechanism, a capacitor winding mechanism, and an infrared sensing mechanism. The infrared sensing mechanism enables precise detection and control of capacitor winding.

Benefits of technology

It enables accurate fixing, stable transportation, and uniform winding of capacitors, improving the consistency of capacitor transportation and use, and ensuring the accuracy and reliability of winding.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses an infrared induction transmission device for a packaged capacitor, and relates to the technical field of capacitor appliances. One side of the upper belt wheel mechanism is provided with an adjustable belt wheel body, the adjustable belt wheel body is provided with a damping guide wheel and a pressing block mechanism, the front end of the conveying platform is provided with a conveying belt mechanism, the outer front side of the conveying belt mechanism is provided with a capacitor driving mechanism, and the right side of the conveying platform is provided with a buffer guide wheel mechanism. A capacitor winding mechanism is mounted on the right upper side of the rack, and an infrared sensing mechanism is arranged on the right side of the capacitor winding mechanism; according to the utility model, the conveying belt mechanism is used for conveying the capacitor, and the capacitor driving mechanism is used for driving the capacitor, so that the capacitor can be arranged between the upper adhesive tape and the lower adhesive tape and is convenient to fix; the fixed capacitor is wound through the capacitor winding mechanism, after winding, the wound capacitor is sensed through the infrared sensing mechanism, whether winding is in place or not can be detected conveniently, and detection is accurate.
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Description

Technical Field

[0001] This utility model belongs to the technical field of capacitor equipment, specifically relating to an infrared sensing and transmission device for encapsulated capacitors. Background Technology

[0002] A capacitor is a device that stores electrical charge. Capacitors are among the most widely used electronic components in electronic devices, extensively applied in circuits for DC blocking and AC switching, coupling, bypassing, filtering, tuning circuits, energy conversion, and control. A capacitor is formed between any two insulated conductors (including wires) that are very close together. Currently, for ease of transport and storage, several capacitors are bonded together with tape and then wound up for use and transport. However, existing capacitor winding devices rely on induction rods for sensing during winding. These inaccurate sensing can cause the winding to fail to stop, and the inconsistent size of the wound capacitors can also result. Utility Model Content

[0003] To address the problems mentioned in the background section, the purpose of this invention is to provide an infrared sensing and transmission device for encapsulated capacitors.

[0004] This utility model discloses an infrared sensing and transmission device for encapsulated capacitors, comprising a frame, an upper tape conveyor roller, a lower tape conveyor roller, an upper pulley mechanism, a lower pulley mechanism, an adjustable pulley body, a shock-absorbing guide wheel, a pressure block mechanism, a conveyor belt mechanism, a capacitor drive mechanism, a conveying platform, a buffer guide wheel mechanism, a capacitor winding mechanism, an infrared sensing mechanism, and a control box. The upper tape conveyor roller and the lower tape conveyor roller are respectively mounted on the upper left and upper right sides of the frame. The upper pulley mechanism is located on the right side of the upper tape conveyor roller, and the lower pulley mechanism is located on the right side of the lower tape conveyor roller. An adjustable pulley body is provided on one side of the upper pulley mechanism. A shock-absorbing guide wheel and a pressure block mechanism are respectively installed on the adjustable pulley body. A conveyor platform is provided on the right side between the upper conveyor roller and the lower conveyor roller. A conveyor belt mechanism is provided at the front end of the conveyor platform. A capacitor drive mechanism is provided on the outer front side of the conveyor belt mechanism. A buffer guide wheel mechanism is provided on the right side of the conveyor platform. The buffer guide wheel mechanism is installed on the frame. A capacitor winding mechanism is installed on the upper right side of the frame. An infrared sensing mechanism is provided on the right side of the capacitor winding mechanism. The control box is installed at the upper end of the frame.

[0005] Preferably, both the upper pulley mechanism and the lower pulley mechanism are composed of several belt pulleys.

[0006] Preferably, the adjustable pulley body includes an adjusting plate, an adjusting bolt, and an adjusting pulley; the adjusting bolt is installed on the left end face of the adjusting plate, the adjusting bolt is installed in the threaded hole of the frame, and the adjusting pulley is installed on the adjusting plate.

[0007] Preferably, the shock-absorbing guide wheel includes a mounting block, a guide frame, a guide wheel body, a shock-absorbing spring, a mounting bracket, a screw, and a locking nut; the guide frame is mounted on the lower side of the mounting block, the guide wheel body is mounted on the guide frame, the screw is mounted on the upper end of the mounting block, the shock-absorbing spring is sleeved on the screw, the screw passes through the mounting hole of the mounting bracket, the mounting bracket is mounted on the upper end of the adjustable pulley body, and a locking nut is mounted on the upper side of the screw.

[0008] Preferably, the pressing mechanism includes a pressing block, an upper plate, a guide rod, a pressure plate, a spring, an adjusting screw, and a connecting rod. One end of the connecting rod is mounted on the frame via a rotating shaft, and the other end of the connecting rod is connected to the upper end of the upper plate via a rotating shaft. Guide rods are installed on both sides of the bottom of the upper plate, and the guide rods are installed in the guide holes of the pressing block. A pressure plate is installed at the bottom of the guide rod, and a spring is sleeved on the lower side of the guide rod. An adjusting screw is installed on the upper plate, and the head of the adjusting screw contacts the upper end face of the pressing block.

[0009] Preferably, the conveyor belt mechanism includes a conveyor belt body, a guide rail, and a limiting block; a guide rail is installed on the front side of the conveyor belt body, a limiting block is provided on the front side of the guide rail, a gap is provided between the limiting block and the front end of the guide rail, and the drive rod of the capacitor drive mechanism cooperates with the gap.

[0010] Preferably, the capacitor driving mechanism includes an electric slide rail, a drive base, and a drive rod; the drive base is mounted on the slider of the electric slide rail, and the drive rod is mounted on the upper end face of the drive base.

[0011] Preferably, the buffer guide wheel mechanism includes a mounting rod, a guide fixing plate, a buffer rod, a second guide wheel body, and a spring return shaft; the guide fixing plate is installed on the right side of the mounting rod, the buffer rod is installed on the upper right end of the guide fixing plate through the spring return shaft, and the second guide wheel body is installed on the front side of the buffer rod.

[0012] Preferably, the capacitor winding mechanism includes a fixed retaining ring, a detachable retaining ring, a rotating shaft, a mounting sleeve, and a locking bolt. The fixed retaining ring is fixedly installed on the rotating shaft of the drive motor. The rotating shaft is installed at the center of the inner side wall of the fixed retaining ring. The detachable retaining ring is installed on the inner side wall of the mounting sleeve and is concentrically arranged with the mounting sleeve. The locking bolt is installed on the outer side wall of the mounting sleeve, and the head of the locking bolt contacts the outer side wall of the rotating shaft.

[0013] Preferably, the infrared sensing mechanism includes a position frame and an infrared sensor; the infrared sensor is installed at the front end of the position frame, and an adjustment slot is provided on the position frame.

[0014] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0015] 1. The tape is rapidly conveyed by the upper and lower tape conveyor rollers, which enables the tape to fix the capacitor.

[0016] Second, a conveyor belt mechanism is used to transport the capacitors, and a capacitor drive mechanism is used to drive the capacitors, so that the capacitors can be placed between the upper and lower belts, which facilitates the fixing of the capacitors.

[0017] Third, the fixed capacitor is wound by a capacitor winding mechanism. After winding, the wound capacitor is sensed by an infrared sensing mechanism to facilitate detection of whether the winding is in place and ensure accurate detection. Attached Figure Description

[0018] For ease of explanation, the present invention will be described in detail below with reference to specific embodiments and accompanying drawings.

[0019] Figure 1 This is a schematic diagram of the structure of this utility model;

[0020] Figure 2 This is a schematic diagram of the adjustable pulley, shock-absorbing guide wheel, and pressure block mechanism in this utility model;

[0021] Figure 3 This is a schematic diagram of the conveyor belt mechanism in this utility model;

[0022] Figure 4 This is a schematic diagram of the upper pulley mechanism in this utility model;

[0023] Figure 5 This is a schematic diagram of the buffer guide wheel mechanism in this utility model;

[0024] Figure 6 This is a schematic diagram of the capacitor winding mechanism in this utility model;

[0025] Figure 7 This is a schematic diagram of the infrared sensing mechanism in this utility model.

[0026] In the diagram: 1-Frame; 2-Upper belt conveyor roller; 3-Lower belt conveyor roller; 4-Upper pulley mechanism; 5-Lower pulley mechanism; 6-Adjustable pulley body; 7-Shock-damping guide wheel; 8-Pressure block mechanism; 9-Conveyor belt mechanism; 10-Capacitor drive mechanism; 11-Conveying platform; 12-Buffer guide wheel mechanism; 13-Capacitor winding mechanism; 14-Infrared sensing mechanism; 15-Control box;

[0027] 6-1-Adjusting plate; 6-2-Adjusting bolt; 6-3-Adjusting pulley;

[0028] 7-1-Mounting block; 7-2-Guide frame; 7-3-Guide wheel body one; 7-4-Shock-absorbing spring; 7-5-Mounting bracket; 7-6-Screw; 7-7-Locking nut;

[0029] 8-1-Pressure block; 8-2-Upper plate; 8-3-Guide rod; 8-4-Pressure plate; 8-5-Spring; 8-6-Adjusting screw; 8-7-Connecting rod;

[0030] 9-1 Conveyor belt body; 9-2 Guide rail; 9-3 Limiting block; 9-4 Gap;

[0031] 10-1-Electric slide rail; 10-2-Drive base; 10-3-Drive rod;

[0032] 12-1-Mounting rod; 12-2-Guide fixing plate; 12-3-Buffer rod; 12-4-Guide wheel body two; 12-5-Spring return shaft;

[0033] 13-1-Fixed retaining ring; 13-2-Removable retaining ring; 13-3-Spindle body; 13-4-Mounting sleeve body; 13-5-Locking bolt body;

[0034] 14-1-Position frame; 14-2-Infrared sensor; 14-3-Adjustment slot. Detailed Implementation

[0035] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model is described below with reference to specific embodiments shown in the accompanying drawings. However, it should be understood that these descriptions are merely exemplary and not intended to limit the scope of this utility model. The structures, proportions, sizes, etc., illustrated in the accompanying drawings are only for illustrative purposes to aid those skilled in the art and are not intended to limit the implementation conditions of this utility model. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in proportions, or adjustments to size, without affecting the effects and objectives achieved by this utility model, should still fall within the scope of the technical content disclosed in this utility model. Furthermore, descriptions of well-known structures and technologies are omitted in the following description to avoid unnecessarily obscuring the concept of this utility model.

[0036] It should also be noted that, in order to avoid obscuring the present invention with unnecessary details, only the structures and / or processing steps closely related to the solution according to the present invention are shown in the accompanying drawings, while other details that are not closely related to the present invention are omitted.

[0037] like Figures 1 to 7 As shown, this specific embodiment uses two conveyor rollers, one upper and one lower, to fix the capacitor. The specific technical solution includes a frame 1, an upper conveyor roller 2, a lower conveyor roller 3, an upper pulley mechanism 4, and a lower pulley mechanism 5. The upper conveyor roller 2 and the lower conveyor roller 3 are respectively installed on the upper left and upper right sides of the frame 1. The upper and lower conveyor rollers 2 and 3 transport the conveyor rollers, allowing the two conveyor rollers to fix the capacitor. The upper pulley mechanism 4 is located to the right of the upper conveyor roller 2, guiding the upper conveyor roller. The lower pulley mechanism 5 is located to the right of the lower conveyor roller 3, guiding the lower conveyor roller, thus fixing the capacitor. Both the upper pulley mechanism 4 and the lower pulley mechanism 5 consist of several belt pulleys, which guide the conveyor rollers.

[0038] like Figure 1 As shown, in this specific embodiment, the position of the tape is adjusted by an adjustable pulley, and the tape is pressed against the capacitor by a pressure block mechanism. The specific technical solution is as follows: it includes an adjustable pulley 6, a shock-absorbing guide wheel 7, and a pressure block mechanism 8; an adjustable pulley 6 is provided on one side of the upper pulley mechanism 4. The adjustable pulley 6 is adjustable, allowing the tape position to be adjusted. The adjustable pulley 6 is equipped with a shock-absorbing guide wheel 7 and a pressure block mechanism 8. The shock-absorbing guide wheel 7 guides the tape, and the pressure block mechanism 8 presses the tape against the capacitor. Figure 2As shown, the adjustable pulley body 6 includes an adjusting plate 6-1, an adjusting bolt 6-2, and an adjusting pulley 6-3; the adjusting bolt 6-2 is installed on the left end face of the adjusting plate 6-1, and the adjusting bolt 6-2 can adjust the position of the adjusting plate 6-1. The adjusting bolt 6-2 is installed in the threaded hole of the frame 1, and the adjusting pulley 6-3 is installed on the adjusting plate 6-1, and the adjusting pulley 6-3 can guide the belt; Figure 2 As shown, the shock-absorbing guide wheel 7 includes a mounting block 7-1, a guide frame 7-2, a guide wheel body 7-3, a shock-absorbing spring 7-4, a mounting bracket 7-5, a screw 7-6, and a locking nut 7-7. The guide frame 7-2 is mounted on the lower side of the mounting block 7-1, allowing the guide wheel body 7-3 to be mounted. The guide wheel body 7-3 is mounted on the guide frame 7-2, guiding the tape. The screw 7-6 is mounted on the upper end of the mounting block 7-1, and the shock-absorbing spring 7-4 is sleeved on the screw 7-6, providing shock absorption. The screw 7-6 passes through the mounting hole of the mounting bracket 7-5, which is mounted on the upper end of the adjustable pulley body 6. The locking nut 7-7 is mounted on the upper side of the screw 7-6, allowing adjustment of the height of the guide wheel body 7-3 to accommodate adjustments based on the capacitor thickness. Figure 2 As shown, the pressing mechanism 8 includes a pressing block 8-1, an upper plate 8-2, a guide rod 8-3, a pressing plate 8-4, a spring 8-5, an adjusting screw 8-6, and a connecting rod 8-7. One end of the connecting rod 8-7 is mounted on the frame 1 via a rotating shaft, and the other end of the connecting rod 8-7 is connected to the upper end of the upper plate 8-2 via a rotating shaft, enabling the connecting rod 8-7 to connect with the upper plate 8-2. Guide rods 8-3 are installed on both sides of the bottom of the upper plate 8-2. Inside the guide hole of the pressure block 8-1, a pressure plate body 8-4 is installed at the bottom of the guide rod 8-3. The guide rod 8-3 can guide the pressure plate body 8-4, and the spring body 8-5 can buffer the force of the pressure plate body 8-4. The spring body 8-5 is sleeved on the lower side of the guide rod 8-3. An adjusting screw 8-6 is installed on the upper plate body 8-2. The adjusting screw 8-6 can adjust the height of the pressure block 8-1. The head of the adjusting screw 8-6 is in contact with the upper end face of the pressure block 8-1.

[0039] like Figure 1As shown, in this specific embodiment, a conveying platform is used to transport the fixed capacitors. The specific technical solution is as follows: A conveying platform 11 and a buffer guide wheel mechanism 12 are provided. The conveying platform 11 is located on the right side between the upper conveyor roller 2 and the lower conveyor roller 3. The conveying platform 11 can transport the bonded capacitors. The buffer guide wheel mechanism 12 is located on the right side of the conveying platform 11. The buffer guide wheel mechanism 12 can guide the bonded capacitors, facilitating the winding of the capacitors. The buffer guide wheel mechanism 12 is mounted on the frame 1. Figure 5 As shown, the buffer guide wheel mechanism 12 includes a mounting rod 12-1, a guide fixing plate 12-2, a buffer rod 12-3, a guide wheel body 12-4, and a spring return shaft 12-5. The guide fixing plate 12-2 is installed on the right side of the mounting rod 12-1, enabling the mounting rod 12-1 to be installed. The buffer rod 12-3 is installed on the upper right end of the guide fixing plate 12-2 via the spring return shaft 12-5, enabling the buffer rod 12-3 to be reset via the spring return shaft 12-5. The guide wheel body 12-4 is installed on the front side of the buffer rod 12-3, enabling the guide wheel body 12-4 to guide the capacitor.

[0040] like Figure 1 As shown, in this specific embodiment, the capacitor is conveyed by a conveyor belt mechanism and driven by a capacitor driving mechanism, so that the capacitor is positioned between two upper and lower adhesive strips. The specific technical solution is as follows: it includes a conveyor belt mechanism 9 and a capacitor driving mechanism 10; the front end of the conveyor platform 11 is provided with the conveyor belt mechanism 9, which enables the output of the capacitor; the outer front side of the conveyor belt mechanism 9 is provided with the capacitor driving mechanism 10, which drives the capacitor on the conveyor belt mechanism 9 between the upper and lower adhesive strips, allowing the adhesive strips to bond the capacitor. The conveyor belt mechanism 9 includes... The system includes a conveyor belt 9-1, a guide rail 9-2, and a limiting block 9-3. The guide rail 9-2 is installed on the front side of the conveyor belt 9-1. The conveyor belt 9-1 conveys the capacitor, and the guide rail 9-2 guides the capacitor. A limiting block 9-3 is installed on the front side of the guide rail 9-2, limiting the capacitor. A gap 9-4 is provided between the limiting block 9-3 and the front end of the guide rail 9-2. This gap 9-4 allows the drive rod of the capacitor drive mechanism 10 to operate, enabling the capacitor to move between the upper and lower belts. The drive rod of the capacitor drive mechanism 10 cooperates with the gap 9-4. Figure 4As shown, the capacitor driving mechanism 10 includes an electric slide rail 10-1, a drive seat 10-2, and a drive rod 10-3. The drive seat 10-2 is mounted on the slider of the electric slide rail 10-1, and the electric slide rail 10-1 can drive the drive seat 10-2 to move. The drive rod 10-3 is mounted on the upper end face of the drive seat 10-2, and the drive seat 10-2 can drive the drive rod 10-3 to move back and forth. The drive rod 10-3 can drive the capacitor to move between the upper and lower tapes, so that the capacitor can be fixed.

[0041] like Figure 1 As shown, in this specific embodiment, to achieve capacitor winding, a capacitor winding mechanism 13 is used for winding, and an infrared sensing mechanism 14 is used to sense the winding position. The specific technical solution is as follows: it includes a capacitor winding mechanism 13, an infrared sensing mechanism 14, and a control box 15; the capacitor winding mechanism 13 is installed on the upper right side of the frame 1, and the capacitor winding mechanism 13 can achieve capacitor winding; an infrared sensing mechanism 14 is provided on the right side of the capacitor winding mechanism 13, and the infrared sensing mechanism 14 can sense the thickness of the capacitor winding; the control box 15 is installed at the upper end of the frame 1, and the control box 15 can realize control; as... Figure 6 As shown, the capacitor winding mechanism 13 includes a fixed retaining ring 13-1, a detachable retaining ring 13-2, a rotating shaft 13-3, a mounting sleeve 13-4, and a locking bolt 13-5. The fixed retaining ring 13-1 is fixedly mounted on the rotating shaft of the drive motor, and the drive motor can drive the fixed retaining ring 13-1 to rotate. The rotating shaft 13-3 is installed at the center of the inner sidewall of the fixed retaining ring 13-1, and the detachable retaining ring 13-2 is installed on the inner sidewall of the mounting sleeve 13-4. 2. The detachable retaining ring 13-2 allows for quick disassembly and installation. The detachable retaining ring 13-2 is concentrically positioned with the mounting sleeve 13-4. During installation, quick installation is achieved through the mounting sleeve 13-4, and the installation is highly stable. A locking bolt 13-5 is installed on the outer wall of the mounting sleeve 13-4, which locks the mounting sleeve 13-4. The head of the locking bolt 13-5 contacts the outer wall of the rotating shaft 13-3. Figure 7 As shown, the infrared sensing mechanism 14 includes a position frame 14-1 and an infrared sensor 14-2. The infrared sensor 14-2 is installed at the front end of the position frame 14-1. An adjustment slot 14-3 is provided on the position frame 14-1. The adjustment slot 14-3 of the position frame 14-1 can adjust the installation position. At the same time, the infrared sensor 14-2 can sense when the winding thickness is reached and stop the winding.

[0042] The working principle of this specific embodiment is as follows: In use, the tape is installed on the upper tape conveyor roller 2 and the lower tape conveyor roller 3 respectively, and the upper and lower tapes are conveyed and guided by the upper pulley mechanism 4 and the lower pulley mechanism 5. At the same time, the position of the upper tape is adjusted by the adjustable pulley body, and then the upper tape is guided by the shock-absorbing guide wheel 7. The conveyor belt mechanism 9 can realize the conveying of the capacitor, and the capacitor is driven by the capacitor drive mechanism 10, so that the capacitor is pushed between the upper and lower tapes. The shock-absorbing guide wheel 7 realizes the initial compression of the tape, and the pressure block mechanism 8 can realize the secondary compression of the tape, which can realize the fixation of the capacitor. The fixed capacitor is conveyed on the conveyor platform 11 and guided by the buffer guide wheel mechanism 12. The capacitor is wound by the electric winding mechanism 13. When the infrared sensing mechanism 14 senses the fixed capacitor, its electric winding mechanism 13 stops. At this time, the locking bolt 13-5 is loosened, and the detachable retaining ring 13-2 is removed to remove the wound capacitor.

[0043] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered exemplary and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention.

[0044] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. An infrared sensing and transmitting device for a packaged capacitor, characterized in that: The system includes a frame (1), an upper conveyor roller (2), a lower conveyor roller (3), an upper pulley mechanism (4), a lower pulley mechanism (5), an adjustable pulley body (6), a shock-absorbing guide wheel (7), a pressure block mechanism (8), a conveyor belt mechanism (9), a capacitor drive mechanism (10), a conveyor platform (11), a buffer guide wheel mechanism (12), a capacitor winding mechanism (13), an infrared sensing mechanism (14), and a control box (15). The upper conveyor roller (2) and the lower conveyor roller (3) are respectively installed on the upper left and upper right sides of the frame (1). An upper pulley mechanism (4) is located on the right side of the upper conveyor roller (2), and a lower pulley mechanism (5) is located on the right side of the lower conveyor roller (3). A pressure block mechanism (8), a lower pulley mechanism (9), a capacitor drive mechanism (10), a conveyor platform (11), a buffer guide wheel mechanism (12), a capacitor winding mechanism (13), an infrared sensing mechanism (14), and a control box (15). Adjustable pulley body (6), shock-absorbing guide wheel (7) and pressure block mechanism (8) are respectively installed on the adjustable pulley body (6), a conveying platform (11) is set on the right side between the upper conveyor roller (2) and the lower conveyor roller (3), a conveyor belt mechanism (9) is set at the front end of the conveyor platform (11), a capacitor drive mechanism (10) is set on the outer front side of the conveyor belt mechanism (9), a buffer guide wheel mechanism (12) is set on the right side of the conveyor platform (11), the buffer guide wheel mechanism (12) is installed on the frame (1), a capacitor winding mechanism (13) is installed on the upper right side of the frame (1), an infrared sensing mechanism (14) is set on the right side of the capacitor winding mechanism (13), and a control box (15) is installed on the upper end of the frame (1).

2. The infrared sensing and transmitting device for a packaged capacitor according to claim 1, characterized in that: Both the upper pulley mechanism (4) and the lower pulley mechanism (5) are composed of several belt pulleys.

3. The infrared sensing and transmitting device for a packaged capacitor according to claim 1, characterized in that: The adjustable pulley body (6) includes an adjusting plate (6-1), an adjusting bolt (6-2), and an adjusting pulley (6-3); the adjusting bolt (6-2) is installed on the left end face of the adjusting plate (6-1), the adjusting bolt (6-2) is installed in the threaded hole of the frame (1), and the adjusting pulley (6-3) is installed on the adjusting plate (6-1).

4. The infrared sensing and transmitting device for a packaged capacitor according to claim 1, characterized in that: The shock-absorbing guide wheel (7) includes a mounting block (7-1), a guide frame (7-2), a guide wheel body (7-3), a shock-absorbing spring (7-4), a mounting bracket (7-5), a screw (7-6), and a locking nut (7-7). The guide frame (7-2) is mounted on the lower side of the mounting block (7-1), the guide wheel body (7-3) is mounted on the guide frame (7-2), the screw (7-6) is mounted on the upper end of the mounting block (7-1), the shock-absorbing spring (7-4) is sleeved on the screw (7-6), the screw (7-6) passes through the mounting hole of the mounting bracket (7-5), the mounting bracket (7-5) is mounted on the upper end of the adjustable pulley body (6), and the locking nut (7-7) is mounted on the upper side of the screw (7-6).

5. The infrared sensing and transmitting device for a packaged capacitor according to claim 1, characterized in that: The pressing mechanism (8) includes a pressing block (8-1), an upper plate (8-2), a guide rod (8-3), a pressure plate (8-4), a spring (8-5), an adjusting screw (8-6), and a connecting rod (8-7). One end of the connecting rod (8-7) is mounted on the frame (1) via a rotating shaft, and the other end of the connecting rod (8-7) is connected to the upper end of the upper plate (8-2) via a rotating shaft. Guide rods (8-3) are installed on both sides of the bottom of the upper plate (8-2). The guide rods (8-3) are installed in the guide holes of the pressing block (8-1). The pressure plate (8-4) is installed at the bottom of the guide rod (8-3). The spring (8-5) is sleeved on the lower side of the guide rod (8-3). An adjusting screw (8-6) is installed on the upper plate (8-2). The head of the adjusting screw (8-6) is in contact with the upper end face of the pressing block (8-1).

6. The infrared sensing and transmitting device for a packaged capacitor according to claim 1, characterized in that: The conveyor belt mechanism (9) includes a conveyor belt body (9-1), a guide rail (9-2), and a limiting block (9-3). The guide rail (9-2) is installed on the front side of the conveyor belt body (9-1), and the limiting block (9-3) is provided on the front side of the guide rail (9-2). A gap (9-4) is provided between the limiting block (9-3) and the front end of the guide rail (9-2), and the driving rod of the capacitor driving mechanism (10) cooperates with the gap (9-4).

7. The infrared sensing and transmitting device for a packaged capacitor according to claim 1, characterized in that: The capacitor driving mechanism (10) includes an electric slide rail (10-1), a drive seat (10-2), and a drive rod (10-3); the drive seat (10-2) is mounted on the slider of the electric slide rail (10-1), and the drive rod (10-3) is mounted on the upper end face of the drive seat (10-2).

8. The infrared sensing and transmitting device for a packaged capacitor according to claim 1, characterized in that: The buffer guide wheel mechanism (12) includes a mounting rod (12-1), a guide fixing plate (12-2), a buffer rod (12-3), a second guide wheel body (12-4), and a spring return shaft (12-5). The guide fixing plate (12-2) is installed on the right side of the mounting rod (12-1), and the buffer rod (12-3) is installed on the upper right end of the guide fixing plate (12-2) through the spring return shaft (12-5). The second guide wheel body (12-4) is installed on the front side of the buffer rod (12-3).

9. The infrared sensing and transmitting device for a packaged capacitor according to claim 1, characterized in that: The capacitor winding mechanism (13) includes a fixed retaining ring (13-1), a detachable retaining ring (13-2), a rotating shaft (13-3), a mounting sleeve (13-4), and a locking bolt (13-5). The fixed retaining ring (13-1) is fixedly installed on the rotating shaft of the drive motor. The rotating shaft (13-3) is installed at the center of the inner side wall of the fixed retaining ring (13-1). The detachable retaining ring (13-2) is installed on the inner side wall of the mounting sleeve (13-4). The detachable retaining ring (13-2) and the mounting sleeve (13-4) are concentrically arranged. The locking bolt (13-5) is installed on the outer side wall of the mounting sleeve (13-4). The head of the locking bolt (13-5) is in contact with the outer side wall of the rotating shaft (13-3).

10. The infrared sensing and transmitting device for a packaged capacitor according to claim 1, characterized in that: The infrared sensing mechanism (14) includes a position frame (14-1) and an infrared sensor (14-2); the infrared sensor (14-2) is installed at the front end of the position frame (14-1), and an adjustment slot (14-3) is provided on the position frame (14-1).