Capacitor double-track uninterrupted laser marking machine

By employing a dual-track capacitor design and a fully automated, collaborative capacitor storage and emission module, transmission module, and marking module, the problems of low production efficiency and insufficient automation in existing capacitor laser marking machines have been solved, achieving efficient and stable capacitor marking processing.

CN223762392UActive Publication Date: 2026-01-06FOSHAN ANBEIS AUTOMATION EQUIPMENT CO LTD
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Patent Information

Application Number
CN202520150989.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2026-01-06
Estimated Expiration
2035-01-22

AI Technical Summary

Technical Problem

Existing capacitive laser marking machines suffer from limited production efficiency and insufficient automation, failing to meet the demands of large-scale, high-efficiency production. Furthermore, they require significant manual intervention during the storage, transmission, and marking processes of the capacitors, affecting the consistency and stability of the markings.

Method used

It adopts a dual-track capacitor design, setting up two sets of capacitor storage and transmission modules and capacitor transmission modules to realize dual-line parallel processing of capacitors. Through the coordinated work of the fully automated capacitor storage and transmission module, capacitor transmission module, laser marking module and marking control module, the fully automated processing of capacitors from storage and transmission to marking is realized.

Benefits of technology

It significantly improves the marking efficiency of capacitors, reduces manual intervention, enhances production consistency and stability, ensures production continuity and stability, and meets the needs of large-scale, high-efficiency production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of laser marking equipment, and discloses a capacitor double-track uninterrupted laser marking machine which comprises a marking machine rack, a capacitor transmission module used for transmitting a capacitor to be marked is fixedly installed above the marking machine rack, and a laser marking module used for marking the capacitor to be marked is installed above the capacitor transmission module. A laser marking module used for carrying out laser marking on a to-be-marked capacitor conveyed on the capacitor conveying module is fixedly installed at the position, beside the right side of the capacitor conveying module, above the marking machine rack. A marking control module used for regulating and controlling the capacitor transmission module and the laser marking module is fixedly installed at the position, beside the rear side of the capacitor transmission module, above the marking machine rack, and a capacitor storing and sending module used for storing and sending capacitors to be marked is arranged on the rear side of the marking machine rack. According to the utility model, the marking efficiency is improved, full automation is realized, and the production continuity and stability are guaranteed through the double-track design.
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Description

Technical Field

[0001] This utility model belongs to the field of laser marking equipment technology, and more specifically, it relates to a capacitor dual-track uninterrupted laser marking machine. Background Technology

[0002] In the electronics manufacturing industry, capacitors are fundamental electronic components, and the accuracy and clarity of their marking information are crucial for subsequent assembly, testing, and traceability during use. Therefore, laser marking technology for capacitors has emerged and become the mainstream method for capacitor marking. Laser marking technology uses a laser beam to precisely engrave on the capacitor surface, offering advantages such as high marking speed, high accuracy, durable and unchanging markings, and strong environmental adaptability.

[0003] Existing capacitive laser marking machines typically employ a single-track design, where capacitors are fed one by one from the storage module via the transmission module into the laser marking module for marking. This design meets the laser marking needs of capacitors to a certain extent, but with the rapid development of the electronics manufacturing industry, higher demands are being placed on capacitor production efficiency and marking quality. However, existing capacitive laser marking machines are gradually revealing some problems in practical applications:

[0004] First, production efficiency is limited: Due to the single-track design, the capacitor transfer and marking processes must be performed sequentially, making parallel processing impossible. This leads to a bottleneck in production efficiency, making it difficult to meet the demands of large-scale, high-efficiency production.

[0005] Second, insufficient automation: Existing capacitive laser marking machines still require considerable manual intervention during the storage, transmission, and marking processes of capacitors, such as capacitor loading and unloading, and adjustment of marking parameters. This not only increases the difficulty and labor intensity of operation but may also introduce human error, affecting the consistency and stability of the markings.

[0006] Therefore, this utility model provides a capacitor dual-track uninterrupted laser marking machine. Utility Model Content

[0007] In view of the above-mentioned problems in the existing technology, the purpose of this utility model is to provide a capacitor dual-track uninterrupted laser marking machine, which improves marking efficiency, realizes full automation, and the dual-track design ensures production continuity and stability.

[0008] The objective of this utility model can be achieved through the following technical solutions:

[0009] A capacitor dual-track uninterrupted laser marking machine includes a marking machine frame. A capacitor transmission module for transmitting capacitors to be marked is mounted and fixed on the upper part of the marking machine frame. A laser marking module for laser marking the capacitors transmitted on the capacitor transmission module is mounted and fixed on the right side of the marking machine frame. A marking control module for adjusting the capacitor transmission module and the laser marking module is mounted and fixed on the upper part of the marking machine frame, behind the capacitor transmission module. A capacitor storage and transmission module for storing and transmitting capacitors to be marked is provided at the rear of the marking machine frame.

[0010] As a further preferred technical solution of this utility model, the capacitor transmission module is provided in two sets, and the capacitor storage and generation module is provided in two sets. Each set of the capacitor storage and generation module corresponds to and cooperates with one set of the capacitor transmission module. The outlet of the capacitor storage and generation module and the inlet of the capacitor transmission module are connected by a connecting rail.

[0011] As a further preferred technical solution of this utility model, the capacitor storage and power generation module includes a capacitor storage and power generation frame. A support platform is provided below the discharge port of the capacitor storage and power generation frame. A support table is fixed on the support platform by studs. A vibrator is fixed on the support table. A first vibrator controller for adjusting the vibrator is fixed on the support platform. A second vibrator controller for adjusting the vibrator is provided next to the discharge port of the capacitor storage and power generation frame. The vibrator is connected to the connecting rail.

[0012] As a further preferred technical solution of this utility model, the two sets of capacitor transmission modules share a transmission mounting bracket. Both sets of capacitor transmission modules are fixedly mounted on the marking machine frame via the transmission mounting bracket. The capacitor transmission module includes a belt drive mechanism, a drive roller mechanism, a transmission belt, a driven roller mechanism, a fixed profile, an L-shaped support plate, a mounting side plate, a baffle, and a material blocking mechanism. The fixed profile and the mounting side plate are both fixedly mounted on the transmission mounting bracket. A driven roller mechanism is installed between the front end of the fixed profile and the front end of the mounting side plate. A drive roller mechanism is installed between the rear end of the fixed profile and the mounting side plate. The transmission belt is wrapped around the driven roller mechanism and the drive roller mechanism. The L-shaped support plate is fixedly mounted on the inner side of the fixed profile. The L-shaped support plate supports the transmission belt. A baffle is fixedly mounted on the upper surface of the fixed profile. A belt drive mechanism is fixedly mounted on the outer surface of the fixed profile. The material blocking mechanism is fixedly mounted on the lower surface of the fixed profile.

[0013] The belt drive mechanism includes a drive motor, a motor mounting plate, and a drive pulley. The belt drive mechanism is fixedly mounted on the fixed profile via the motor mounting plate. The drive motor is screwed to the motor mounting plate. The drive pulley is mounted on the output shaft of the drive motor. The driven pulley is mounted on the drive roller mechanism. The drive pulley and the driven pulley are driven by a driven belt.

[0014] As a further preferred technical solution of this utility model, the material blocking mechanism includes a first double cylinder, a second double cylinder and a third double cylinder. A I-shaped part is fixed on the movable end of the first double cylinder, and the I-shaped part of the first double cylinder is connected to a convex part.

[0015] A T-shaped component is fixed on the movable end of the second double cylinder. The T-shaped component of the second double cylinder is connected to a connector, and the connector is connected to a T-shaped component.

[0016] A T-shaped component is fixed on the movable end of the third double cylinder, and the T-shaped component of the third double cylinder is connected to the material blocking component.

[0017] As a further preferred technical solution of this utility model, the laser marking module includes a laser marking device for laser marking the capacitor to be marked transmitted on the capacitor transmission module, and a focusing shaft fixedly installed on the marking machine frame and used for manually adjusting the focus of the laser marking device. The bottom of the focusing shaft is provided with a base, and the focusing shaft is fixedly installed on the marking machine frame through the base. The focusing shaft is also provided with a slide, and a support frame is fixedly installed on the slide. The slide of the focusing shaft is fixedly connected to the laser marking device through the support frame.

[0018] As a further preferred technical solution of this utility model, the marking control module includes a marking control housing, and the marking control module is mounted and fixed on the top of the marking machine frame through the marking control housing. The marking control housing is provided with a control panel and a group of control buttons.

[0019] As a further preferred technical solution of this utility model, a pneumatic valve group is also installed and fixed on the top of the marking machine frame. The pneumatic valve group is connected to and controls the first double cylinder, the second double cylinder and the third double cylinder through air pipes.

[0020] As a further preferred technical solution of this utility model, a rectangular mounting component is provided at the bottom of the capacitor storage and power generation rack, and anti-vibration and anti-slip feet are fixedly installed on the rectangular mounting component of the capacitor storage and power generation rack, and casters are also fixedly installed on the rectangular mounting component of the capacitor storage and power generation rack.

[0021] As a further preferred technical solution of this utility model, the bottom of the marking machine frame is provided with a rectangular mounting component, and anti-vibration and anti-slip feet are fixedly installed on the rectangular mounting component of the marking machine frame, and casters are also fixedly installed on the rectangular mounting component of the marking machine frame.

[0022] As described above, the capacitive dual-track uninterrupted laser marking machine provided by this utility model has the following beneficial effects:

[0023] 1. This utility model utilizes the aforementioned capacitor dual-track uninterrupted laser marking machine. Compared with existing technologies, due to its structure and dual-track design, with two sets of capacitor storage and emission modules and two sets of capacitor transmission modules, it achieves parallel processing of capacitors on both lines. This design significantly improves the marking efficiency of capacitors, enabling the machine to transmit and mark two sets of capacitors simultaneously, thus meeting the needs of large-scale, high-efficiency production. Furthermore, through the coordinated work of the capacitor storage and emission module, capacitor transmission module, laser marking module, and marking control module, this utility model achieves fully automated processing of capacitors from storage and transmission to marking. This highly automated design reduces manual intervention, lowers operational difficulty and labor intensity, while improving production consistency and stability.

[0024] 2. This utility model utilizes the above-mentioned capacitor dual-track uninterrupted laser marking machine. Compared with the prior art, due to the adoption of such a structure and the dual-track design, the equipment can alternately feed and mark during the production process. Even if one track fails or needs maintenance, the other track can continue to work, ensuring the continuity and stability of production.

[0025] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0026] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0027] Figure 1 This is a structural schematic diagram of a capacitor dual-track uninterrupted laser marking machine according to this utility model application;

[0028] Figure 2This is a schematic diagram of the capacitor storage and emission module of a capacitor dual-track uninterrupted laser marking machine according to this utility model application.

[0029] Figure 3 This is a schematic diagram of the capacitor transmission module of a capacitor dual-track uninterrupted laser marking machine according to this utility model application.

[0030] Figure 4 for Figure 3 Enlarged schematic diagram of point I in the middle.

[0031] Summary of figure labels and their descriptions:

[0032] 100. Marking machine frame; 200. Capacitor transmission module; 210. Belt drive mechanism; 220. Driven roller mechanism; 230. Transmission belt; 240. Driven roller mechanism; 250. Fixed profile; 260. L-shaped support plate; 270. Mounting side plate; 280. Baffle; 290. Material blocking mechanism; 291. First double cylinder; 292. Second double cylinder; 293. Third double cylinder; 300. Laser marking module; 310. Laser marking device 320. Focusing shaft; 330. Base; 340. Support frame; 400. Marking control module; 410. Marking control housing; 420. Control panel; 430. Control button group; 500. Capacitor storage and power generation module; 510. Capacitor storage and power generation frame; 520. Support platform; 530. Support stand; 540. Vibrator; 550. First vibrator controller; 560. Second vibrator controller; 600. Transmission mounting bracket; 700. Pneumatic valve group. Detailed Implementation

[0033] The following specific embodiments illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification.

[0034] It should be noted that the structures, proportions, and sizes depicted in the accompanying drawings are merely for illustrative purposes and to aid those skilled in the art. They are not intended to limit the scope of this invention and therefore have no substantial technical significance. Any modifications to the structure, changes in proportions, or adjustments to size, provided they do not affect the effectiveness or purpose of this invention, should still fall within the scope of the technical content disclosed herein. Furthermore, the terms "upper," "lower," "left," "right," "middle," and "one" used in this specification are merely for clarity and not intended to limit the scope of this invention. Changes or adjustments to their relative relationships, without substantially altering the technical content, should also be considered within the scope of this invention. Specific structures can be described with reference to the accompanying drawings of the patent application.

[0035] This utility model provides a capacitive dual-track uninterrupted laser marking machine. Please refer to [link / reference]. Figures 1 to 4 As shown, the laser marking machine includes a marking machine frame 100. A capacitor transmission module 200 for transmitting capacitors to be marked is mounted and fixed on the top of the marking machine frame 100. A laser marking module 300 for laser marking the capacitors to be marked transmitted on the capacitor transmission module 200 is mounted and fixed on the top of the marking machine frame 100 to the right side of the capacitor transmission module 200. A marking control module 400 for controlling the capacitor transmission module 200 and the laser marking module 300 is mounted and fixed on the top of the marking machine frame 100 to the rear side of the capacitor transmission module 200. A capacitor storage and transmission module 500 for storing and transmitting capacitors to be marked is provided on the rear side of the marking machine frame 100.

[0036] In this embodiment, two sets of capacitor transmission modules 200 and two sets of capacitor storage and generation modules 500 are provided. Each set of capacitor storage and generation modules 500 corresponds to one set of capacitor transmission modules 200. The outlet of the capacitor storage and generation module 500 and the inlet of the capacitor transmission module 200 are connected by a connecting rail.

[0037] Combination Figure 2 As shown, the capacitor storage and power generation module 500 includes a capacitor storage and power generation frame 510. A support platform 520 is provided below the discharge port of the capacitor storage and power generation frame 510. A support table 530 is fixedly installed on the support platform 520 by studs. A vibrator 540 is fixedly installed on the support table 530. A first vibrator controller 550 for adjusting the vibrator 540 is fixedly installed on the support platform 520. A second vibrator controller 560 for adjusting the vibrator 540 is provided next to the discharge port of the capacitor storage and power generation frame 510. The vibrator 540 is connected to the connecting rail.

[0038] Combination Figure 3 and Figure 4As shown, the two sets of capacitor transmission modules 200 share a transmission mounting bracket 600. Both sets of capacitor transmission modules 200 are fixedly mounted on the marking machine frame 100 via the transmission mounting bracket 600. Each capacitor transmission module 200 includes a belt drive mechanism 210, a drive roller mechanism 220, a transmission belt 230, a driven roller mechanism 240, a fixed profile 250, an L-shaped support plate 260, a mounting side plate 270, a baffle 280, and a material blocking mechanism 290. The fixed profile 250 and the mounting side plate 270 are both fixedly mounted on the transmission mounting bracket 600. The front ends of the fixed profile 250 and the mounting side plate 270 are... A driven roller mechanism 240 is installed between the fixed profile 250 and the rear end of the mounting side plate 270. A driving roller mechanism 220 is installed between the rear end of the fixed profile 250 and the mounting side plate 270. The driven roller mechanism 240 and the driving roller mechanism 220 are covered by the transmission belt 230. The L-shaped support plate 260 is fixedly installed on the inner side of the fixed profile 250. The L-shaped support plate 260 supports the transmission belt 230. A baffle 280 is fixedly installed on the upper end surface of the fixed profile 250. A belt drive mechanism 210 is fixedly installed on the outer side surface of the fixed profile 250. The material blocking mechanism 290 is fixedly installed on the lower end surface of the fixed profile 250.

[0039] The belt drive mechanism 210 includes a drive motor, a motor mounting plate, and a drive pulley. The belt drive mechanism 210 is fixedly mounted on the fixed profile 250 via the motor mounting plate. The drive motor is screwed to the motor mounting plate. A drive pulley is mounted on the output shaft of the drive motor. A driven pulley is mounted on the drive roller mechanism 220. The drive pulley and the driven pulley are driven by a driven belt.

[0040] The material blocking mechanism 290 includes a first double cylinder 291, a second double cylinder 292 and a third double cylinder 293. A I-shaped part is fixed on the movable end of the first double cylinder 291, and the I-shaped part of the first double cylinder 291 is connected to a convex part.

[0041] A T-shaped component is fixed on the movable end of the second double cylinder 292. The T-shaped component of the second double cylinder 292 is connected to a connector, and the connector is connected to a T-shaped component.

[0042] A T-shaped component is fixed on the movable end of the third double cylinder 293, and the T-shaped component of the third double cylinder 293 is connected to the material blocking component.

[0043] The laser marking module 300 includes a laser marking device 310 for laser marking the capacitor to be marked transmitted on the capacitor transmission module 200, and a focusing shaft 320 fixedly installed on the marking machine frame 100 for manually adjusting the focus of the laser marking device 310. The bottom of the focusing shaft 320 is provided with a base 330, and the focusing shaft 320 is fixedly installed on the marking machine frame 100 through the base 330. The focusing shaft 320 is also provided with a slide, and a support frame 340 is fixedly installed on the slide. The slide of the focusing shaft 320 is fixedly connected to the laser marking device 310 through the support frame 340.

[0044] The marking control module 400 includes a marking control housing 410, which is mounted and fixed on the top of the marking machine frame 100. The marking control housing 410 is provided with a control panel 420 and a control button group 430. The marking control module 400 allows operators to easily control the machine.

[0045] A pneumatic valve assembly 700 is also installed and fixed on the top of the marking machine frame 100. The pneumatic valve assembly 700 is connected to and controls the first double cylinder 291, the second double cylinder 292 and the third double cylinder 293 through air pipes. The pneumatic valve assembly 700 enhances the flexibility and controllability of this utility model.

[0046] The bottom of the capacitor storage and power generation rack 510 is provided with a rectangular mounting component, and anti-vibration and anti-slip feet are fixedly installed on the rectangular mounting component of the capacitor storage and power generation rack 510. Casters are also fixedly installed on the rectangular mounting component of the capacitor storage and power generation rack 510.

[0047] The bottom of the marking machine frame 100 is provided with a rectangular mounting component, and anti-vibration and anti-slip feet are fixedly installed on the rectangular mounting component of the marking machine frame 100. Casters are also fixedly installed on the rectangular mounting component of the marking machine frame 100.

[0048] It should be noted that both the capacitor storage and generator frame 510 and the marking machine frame 100 are equipped with shock-absorbing and anti-slip feet and casters at the bottom, ensuring the stability of the machine during operation and facilitating its movement and installation. Furthermore, the connections and fixation between components employ reliable methods to ensure the stability and durability of the machine during long-term operation.

[0049] 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 illustrative 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. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A capacitive dual track uninterrupted laser marking machine characterized in that, The laser marking machine comprises a marking machine frame, a capacitor transmission module is fixedly installed above the marking machine frame and is used for transmitting capacitors to be marked, a laser marking module is fixedly installed above the marking machine frame on the right side of the capacitor transmission module and is used for marking the capacitors to be marked transmitted by the capacitor transmission module, a marking control module is fixedly installed above the marking machine frame on the rear side of the capacitor transmission module and is used for controlling the capacitor transmission module and the laser marking module, and a capacitor storage and sending module is arranged on the rear side of the marking machine frame and is used for storing and sending capacitors to be marked.

2. A capacitive dual track non-stop laser marking machine according to claim 1, characterized in that, The capacitor transmission module is provided with two groups, the capacitor storage and sending module is provided with two groups, each group of the capacitor storage and sending module is correspondingly matched with one group of the capacitor transmission module, and the discharge port of the capacitor storage and sending module is connected with the feeding port of the capacitor transmission module through a connection track.

3. A capacitive dual track non-stop laser marking machine according to claim 2, characterized in that, The capacitor storage and sending module comprises a capacitor storage and sending frame, a support platform is arranged below the discharge port of the capacitor storage and sending frame, a support table is fixedly installed above the support platform through a stud, a vibrator is fixedly installed on the support table, a first vibrator controller for controlling the vibrator is fixedly installed on the support platform, a second vibrator controller for controlling the vibrator is arranged beside the discharge port of the capacitor storage and sending frame, and the vibrator is connected with the connection track.

4. A capacitive dual track non-stop laser marking machine according to claim 2, characterized in that, The two groups of capacitor transmission modules share one transmission installation support, and the two groups of capacitor transmission modules are fixedly installed on the marking machine frame through the transmission installation support, the capacitor transmission module comprises a belt driving mechanism, a driving roller mechanism, a transmission belt, a driven roller mechanism, a fixed profile, an L-shaped supporting plate, an installation side plate, a baffle and a blocking mechanism, the fixed profile and the installation side plate are fixedly installed on the transmission installation support, the driven roller mechanism is installed between the front ends of the fixed profile and the installation side plate, the driving roller mechanism is installed between the rear ends of the fixed profile and the installation side plate, the transmission belt is sleeved on the driven roller mechanism and the driving roller mechanism, the L-shaped supporting plate is fixedly installed on the inner side of the fixed profile, the L-shaped supporting plate supports the transmission belt, the baffle is fixedly installed on the upper end surface of the fixed profile, the belt driving mechanism is fixedly installed on the outer side surface of the fixed profile, and the blocking mechanism is fixedly installed on the lower end surface of the fixed profile. The belt driving mechanism comprises a driving motor, a motor installation plate and a driving wheel, the belt driving mechanism is fixedly installed on the fixed profile through the motor installation plate, the driving motor is screwed with the motor installation plate, the driving wheel is installed on the output shaft of the driving motor, the driven wheel is installed on the driving roller mechanism, and the driving wheel and the driven wheel are connected through a driven belt.

5. A capacitive dual track non-stop laser marking machine according to claim 4, characterized in that, The blocking mechanism comprises a first double cylinder, a second double cylinder and a third double cylinder, a workpiece is fixed on the movable end of the first double cylinder, and the workpiece of the first double cylinder is connected with a convex piece; A soil-shaped piece is fixed on the movable end of the second double cylinder, the soil-shaped piece of the second double cylinder is connected with a connecting piece, and the connecting piece is connected with a T-shaped piece; A soil-shaped piece is fixed on the movable end of the third double cylinder, and the soil-shaped piece of the third double cylinder is connected with a blocking piece.

6. A capacitive dual track non-stop laser marking machine according to claim 2, wherein, The laser marking module comprises a laser marker for laser marking the capacitor to be marked transmitted by the capacitor transmission module, and a focusing shaft fixedly installed with the marking machine rack and used for manually adjusting the focal length of the laser marker, the bottom of the focusing shaft is provided with a base, the focusing shaft is fixedly installed on the marking machine rack through the base, the focusing shaft is further provided with a sliding table, a support frame is fixedly installed on the sliding table, and the sliding table of the focusing shaft is fixedly connected with the laser marker through the support frame.

7. A capacitive dual track non-stop laser marking machine according to claim 2, wherein, The marking control module comprises a marking control shell, the marking control module is installed and fixed above the marking machine rack through the marking control shell, and the marking control shell is provided with a control panel and a control button group.

8. A capacitive dual track non-stop laser marking machine according to claim 5, characterized in that, A pneumatic valve group is further installed and fixed above the marking machine rack, and the pneumatic valve group is connected and controlled with the first double cylinder, the second double cylinder and the third double cylinder through an air pipe.

9. A capacitive dual track non-stop laser marking machine according to claim 3, wherein, The bottom of the capacitor storage and transmission rack is provided with a rectangular mounting piece, an anti-vibration and anti-skid foot cup is fixedly installed on the rectangular mounting piece of the capacitor storage and transmission rack, and a castor is further fixedly installed on the rectangular mounting piece of the capacitor storage and transmission rack.

10. A capacitive dual track non-stop laser marking machine according to any one of claims 1 to 9, characterized in that, The bottom of the capacitor storage and transmission rack is provided with a rectangular mounting piece, an anti-vibration and anti-skid foot cup is fixedly installed on the rectangular mounting piece of the capacitor storage and transmission rack, and a castor is further fixedly installed on the rectangular mounting piece of the capacitor storage and transmission rack.