Semiconductor ARC right-feeding labeling machine
By designing a semiconductor ARC right-infeed labeling machine, the automatic labeling of the reel is achieved using loading and unloading components and sponge suction cups, solving the problem of inconsistent label positions and improving labeling quality and efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-04
- Publication Date
- 2026-04-17
AI Technical Summary
In existing technologies, the label placement position on the reel is not fixed, and it is easy to tilt, which affects the appearance and subsequent identification. There is a lack of automated and efficient labeling solutions.
Design a semiconductor ARC right-infeed labeling machine, including loading and unloading components, labeling components and printer components. The reel is positioned and rotated by a motor unit and a positioning cylinder. The label is vacuum-adsorbed by a sponge suction cup and the positioning hole ensures accurate application.
It enables automated label application on reels, improving application progress and quality, ensuring label flatness and accurate positioning, and increasing application efficiency.
Smart Images

Figure CN224131549U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of labeling machine production and application, specifically to a semiconductor ARC right-hand entry labeling machine. Background Technology
[0002] In existing technologies, after the electronic passive components are tested and packaged, labels need to be affixed to the product reel. However, in traditional processes, the labeling position on the reel is not fixed. The label only needs to be able to be attached to the reel during the affixing process, without any uniformity in the label position. Furthermore, the label is prone to tilting during the affixing process, which affects the appearance and subsequent identification.
[0003] How to automate the label application process on reels and improve the quality of label application on reels is a technical problem that urgently needs to be solved by those skilled in the art.
[0004] The information disclosed in this background section is intended only to enhance the understanding of the general background of this utility model and should not be construed as an admission or in any way implying that the information constitutes prior art known to those skilled in the art. Utility Model Content
[0005] To address the aforementioned technical problems, this utility model proposes a semiconductor ARC right-hand labeling machine to automate labeling on reels, improve the labeling progress on reels, and enhance the labeling efficiency of reel labeling.
[0006] To achieve the above objectives, the technical solution of this utility model is as follows:
[0007] A semiconductor ARC right-hand entry labeling machine includes a body, a loading and unloading assembly disposed on the body for loading and unloading reels, a labeling assembly disposed on the body for labeling the reels, and a printer assembly disposed on the body for providing labels to the labeling assembly.
[0008] The loading and unloading assembly automatically feeds the reel into the labeling assembly;
[0009] The labeling assembly is inclined and docks with the loading and unloading assembly; the labeling assembly includes an inclined base plate on the machine body, a U-shaped frame on the base plate, a motor unit on the U-shaped frame, a labeling unit on the motor unit, a positioning cylinder below the base plate, and a blocking cylinder on the base plate to block the reel; a storage area for placing the reel is formed between the base plate and the U-shaped frame; the base plate is provided with a long groove for the labeling unit to pass through and a positioning hole for the positioning cylinder to pass through;
[0010] The printer component provides labels, which are then picked up by the labeling unit and affixed to the reel.
[0011] This invention achieves automatic unloading of the reel through a loading and unloading assembly, blocks the reel with a blocking cylinder, positions and rotates the reel using a motor unit and a positioning cylinder, and uses a labeling unit to pick up labels from the printer assembly and apply them to the reel, thereby automating the labeling process on the reel and improving the labeling progress and efficiency.
[0012] It is also worth noting that the motor unit includes a motor bracket mounted on the base plate and a motor body mounted on the motor bracket. The motor body, in conjunction with the positioning cylinder, drives the reel to rotate.
[0013] It is further worth noting that the labeling unit includes a labeling bracket mounted on a motor bracket, a labeling cylinder mounted on the labeling bracket, a labeling column mounted at the end of the labeling cylinder, and a sponge suction cup mounted at the bottom of the labeling column. The sponge suction cup can vacuum-adhere to the label. Under the action of the labeling cylinder, the labeling column drives the sponge suction cup through the slot of the U-shaped frame, with the long slot positioned below the base plate, and adsorbs the label provided by the printer assembly. By using the sponge suction cup to vacuum-adhere the label, air bubbles and wrinkles that may occur during the labeling process can be eliminated, improving the labeling quality; the labeling cylinder automates label acquisition and application.
[0014] It is also worth noting that the device includes a label positioning component for positioning the label application position on the reel. The label positioning component has a first positioning hole that matches the label width, and a second positioning hole that mates with the first positioning hole is provided at the label application position on the reel. When the first and second positioning holes are aligned, it indicates that the reel is in the accurate label application position. The cooperation between the first positioning hole on the label positioning component and the second positioning hole on the reel further improves the accuracy of the label application position.
[0015] It is further worth noting that the loading and unloading assembly includes a support plate mounted on the machine body, a pair of guide rails disposed below the support plate, a connecting rod disposed at the head end of the guide rails and connecting the two guide rail head ends, a gate cylinder disposed on the connecting rod, a first support plate disposed at the head end of the gate cylinder, a second support plate disposed on the guide rails, a unloading plate disposed below the guide rails, and an unloading drive unit for driving the unloading plate to rotate around one end of the unloading plate; the first support plate and the second support plate are disposed between the guide rails and the support plate, the head end of the unloading plate is hinged to the bottom of the support plate, and when the unloading plate is in a horizontal position, the distance between the unloading plate and the first support plate is the thickness of the reel.
[0016] It is further worth noting that the feeding drive unit includes a feeding cylinder mounted on the feeding plate and a fixing plate mounted on the feeding plate. The head end of the feeding cylinder is connected to the fixing end, and the end of the feeding cylinder is fixedly connected to the feeding plate in cooperation with the fixing end. The feeding cylinder can drive the feeding plate to rotate around the top of the feeding plate. Through the feeding drive unit in conjunction with the first support plate and the second support plate, the reel can be dropped sequentially, and the feeding plate can be rotated under the action of the feeding cylinder. When the feeding plate rotates, the reel slides down into the labeling assembly under its own gravity.
[0017] It is also worth noting that the loading and unloading assembly includes three loading columns that limit the position of the reel on the upper surface of the bearing plate, and the three loading columns form a loading bin for placing the reel.
[0018] It is also worth noting that the printer assembly includes a printer body and a label placement plate disposed at the front end of the printer body. The label placement plate is disposed parallel to the base plate and is directly opposite the elongated slot.
[0019] This utility model has the following advantages:
[0020] 1. This utility model achieves automatic unloading of the reel through the loading and unloading assembly, blocks the reel with a blocking cylinder, positions and rotates the reel using a motor unit and a positioning cylinder, and uses a labeling unit to obtain labels from the printer assembly and apply them to the reel, thereby achieving the purpose of automating labeling on the reel, improving the labeling progress on the reel, and increasing the labeling efficiency of the reel.
[0021] 2. This utility model uses a sponge suction cup to vacuum-adsorb the label, which can eliminate air bubbles and wrinkles that may occur during the label application process, thus improving the label application quality; and uses a labeling cylinder to automate the label acquisition and application process.
[0022] 3. This utility model further improves the accuracy of label placement by cooperating the first positioning hole on the label positioning component and the second positioning hole on the reel.
[0023] 4. This utility model enables the reel to fall sequentially through the feeding drive unit in conjunction with the first support plate and the second support plate. Under the action of the feeding cylinder, the feeding plate can rotate. When the feeding plate rotates, the reel slides down into the labeling assembly under its own gravity. Attached Figure Description
[0024] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0025] Figure 1 This is a schematic diagram of the structure of a semiconductor ARC right-entry labeling machine disclosed in an embodiment of the present invention;
[0026] Figure 2 This is a schematic diagram of the labeling component in a semiconductor ARC right-entry labeling machine disclosed in an embodiment of the present invention;
[0027] Figure 3 This is a side view schematic diagram of a labeling component in a semiconductor ARC right-entry labeling machine disclosed in an embodiment of the present utility model;
[0028] Figure 4 This is a top view schematic diagram of a labeling component in a semiconductor ARC right-entry labeling machine disclosed in an embodiment of this utility model;
[0029] Figure 5 for Figure 4 Enlarged view of point A in the middle;
[0030] Figure 6 This is a schematic diagram of the loading and unloading assembly in a semiconductor ARC right-infeed labeling machine disclosed in an embodiment of the present invention;
[0031] Figure 7 This is a bottom view schematic diagram of the loading and unloading assembly in a semiconductor ARC right-entry labeling machine disclosed in an embodiment of this utility model;
[0032] Figure 8 This is a schematic diagram of the printer assembly in a semiconductor ARC right-entry labeling machine disclosed in an embodiment of the present invention;
[0033] The numbers and letters in the diagram represent the names of the corresponding components:
[0034] 1. Machine body 2. Loading / unloading assembly 21. Bearing plate 22. Guide rail 23. Connecting rod 24. Gate cylinder 25. First support plate
[0035] 26. Second support plate 27. Feeding plate 281. Feeding cylinder 282. Fixing plate 283. Fixing end 28. Feeding column
[0036] 3. Labeling assembly 31. Base plate 32. U-shaped frame 331. Motor bracket 332. Motor body 341. Labeling bracket
[0037] 342. Labeling cylinder; 343. Labeling column; 344. Sponge suction cup; 35. Positioning cylinder; 36. Blocking cylinder; 37. Long groove.
[0038] 38. Label positioning component; 381. First positioning hole; 382. Second positioning hole; 4. Printer assembly; 41. Printer body.
[0039] 42. Label placement board. Detailed Implementation
[0040] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.
[0041] This utility model provides a semiconductor ARC right-hand feed labeling machine. Its working principle is to realize the automatic feeding of the reel through the loading and unloading assembly, to block the reel through the blocking cylinder, and to realize the positioning and rotation of the reel by the motor unit and the positioning cylinder. The labeling unit picks up the label from the printer assembly and applies it to the reel, thereby realizing the automation of labeling on the reel and improving the labeling progress and efficiency of reel labeling.
[0042] The present invention will be further described in detail below with reference to embodiments and specific implementation methods.
[0043] like Figure 1 As shown, a semiconductor ARC right-hand entry labeling machine includes a body 1, a loading and unloading assembly 2 disposed on the body 1 for loading and unloading reels, a labeling assembly 3 disposed on the body 1 for labeling the reels, and a printer assembly 4 disposed on the body 1 for providing labels to the labeling assembly 3.
[0044] The loading and unloading assembly 2 automatically feeds the reel into the labeling assembly;
[0045] like Figure 2 and Figure 3As shown, the labeling assembly 3 is inclined and docks with the loading / unloading assembly 2. The labeling assembly 3 includes an inclined base plate 31 on the machine body 1, a U-shaped frame 32 on the base plate 31, a motor unit on the U-shaped frame 32, a labeling unit on the motor unit, a positioning cylinder 35 below the base plate 31, and a blocking cylinder 36 on the base plate 31 to block the reel. A storage area for placing the reel is formed between the base plate 31 and the U-shaped frame 32. The base plate 31 is provided with a long slot 37 for the labeling unit to pass through and a positioning hole for the positioning cylinder to pass through (not shown; opening holes on the support plate to facilitate the extension of the positioning cylinder is a relatively mature technology and will not be described in detail). The printer assembly 4 provides labels, which are then picked up by the labeling unit and affixed to the reel. In actual use, the labeling unit first passes through the long slot to pick up a label from the printer assembly 4 and returns to its initial position. Then, the loading and unloading assembly 2 feeds the reel into the labeling assembly 3. Because the labeling assembly 3 is tilted, the reel slides along the base plate 31 as it enters the assembly until it is stopped by the blocking cylinder 36. Then, the positioning cylinder 35 extends from the positioning hole to position the reel, while the motor unit presses down, causing the reel to rotate until it is in the correct labeling position. The labeling unit then applies the label. After labeling is completed, the blocking cylinder 36 retracts, allowing the reel to proceed to the next process for collection. Since the reel is no longer obstructing the long slot, the labeling unit can simultaneously pick up new labels, thus achieving automation and continuity in label application.
[0046] In another embodiment, for example Figure 3 The motor unit includes a motor bracket 331 mounted on the base plate 31 and a motor body 332 mounted on the motor bracket 331. The motor body 332, in conjunction with the positioning cylinder 35, drives the reel to rotate.
[0047] The labeling unit includes a labeling bracket 341 mounted on a motor bracket 331, a labeling cylinder 342 mounted on the labeling bracket 341, a labeling column 343 at the end of the labeling cylinder 342, and a sponge suction cup 344 at the bottom of the labeling column 343. The sponge suction cup 344 can vacuum-adhere to the label. Under the action of the labeling cylinder 342, the labeling column 343 drives the sponge suction cup 344 through the slot of the U-shaped frame 32 and into the long slot below the base plate 31, thus adsorbing the label provided by the printer assembly 4. Because the sponge suction cup 344 can vacuum-adhere to the label, it can ensure the flatness of the label during the application process, avoid the appearance of air bubbles or wrinkles, and ensure the labeling quality.
[0048] In another embodiment, such as Figure 4 and Figure 5 As shown, the device also includes a label positioning component 38 for positioning the labeling position on the reel. The label positioning component 38 has a first positioning hole 381 that matches the label width, and a second positioning hole 382 that mates with the first positioning hole 381 is provided at the labeling position on the reel. When the first positioning hole 381 and the second positioning hole 382 are aligned, it indicates that the reel is in the accurate labeling position. When the first positioning hole 381 and the second positioning hole 382 are not aligned, the motor body 332 can drive the reel to rotate until the first positioning hole 381 and the second positioning hole 382 are aligned, thereby placing the reel in the accurate labeling position, achieving consistency in the labeling position of the reel, and facilitating subsequent information identification.
[0049] In another embodiment, such as Figure 6 and Figure 7 The loading and unloading assembly 2 includes a support plate 21 mounted on the machine body 1, a pair of guide rails 22 disposed below the support plate 21, a connecting rod 23 disposed at the head end of the guide rails 22 and connecting the head ends of the two guide rails 22, a gate cylinder 24 disposed on the connecting rod 23, a first support plate 25 disposed at the head end of the gate cylinder 24, a second support plate 26 disposed on the guide rails 22, a unloading plate 27 disposed below the guide rails 22, and an unloading drive unit for driving the unloading plate 27 to rotate around one end of the unloading plate 27; the first support plate 25 and the second support plate 26 are disposed between the guide rails 22 and the support plate 21, the head end of the unloading plate 27 is hinged to the bottom of the support plate 21, and when the unloading plate 27 is in a horizontal position, the distance between the unloading plate 27 and the first support plate 25 is the thickness of the reel, and the support plate 21 is provided with a circular groove for the reel to fall.
[0050] The feeding drive unit includes a feeding cylinder 281 mounted on a feeding plate 27 and a fixing plate 282 mounted on the feeding plate 27. The head end of the feeding cylinder 281 is connected to a fixing end 283, and the end of the feeding cylinder 281 cooperates with the fixing end 283 to be fixedly connected to the feeding plate. The feeding cylinder 281 can drive the feeding plate 27 to rotate around its top end. Through the feeding drive unit in conjunction with the first support plate 25 and the second support plate 26, the reel can be dropped sequentially. When the feeding plate 27 rotates, the reel slides downwards into the labeling assembly under its own gravity. In actual operation, the reels are stacked from top to bottom and rest on the first support plate 25 and the second support plate 26. At this time, the unloading plate 27 is also in a horizontal position. When the next reel is needed, the first support plate 25 is pulled out from under the reel under the action of the gate cylinder 24. Since the second support plate 26 is fixed, when the first support plate 25 is pulled out, the reel below acts on the unloading plate 27. At this time, the unloading cylinder 281 moves, causing the unloading plate 27 to slowly rotate, transitioning from a horizontal position to an inclined position. At the same time, the first support plate 25 returns to its initial position under the action of the gate cylinder 24, providing support for the reel that has not fallen. As the unloading plate 27 continues to tilt downward, the reel slides down continuously under the action of gravity until the unloading plate 27 aligns with the bottom plate 31 and the reel enters the labeling assembly.
[0051] In another embodiment, for example Figure 6 As shown, the loading and unloading assembly 2 includes three loading columns 29 disposed on the upper surface of the support plate 21 to limit the position of the reel. The three loading columns 29 form a loading bin for placing the reel. The presence of the three loading columns 29 can limit the position of the reel, preventing the reel from being stuck on the support plate and unable to fall.
[0052] In another embodiment, such as Figure 8 As shown, the printer assembly 4 includes a printer body 41 and a label placement plate 42 disposed at the front end of the printer body 41. The label placement plate 42 is arranged parallel to the base plate and faces the elongated slot. The printer body 41 enables automatic and continuous label printing, and as printing progresses, the printed labels are positioned on the label placement plate 42 for gripping by the sponge suction cup. Furthermore, the bottom end of the label placement plate 42 is hinged, allowing for angle adjustment.
[0053] Through the above methods, the semiconductor ARC right-hand feed labeling machine provided by this utility model realizes automatic feeding of the reel through the loading and unloading components, forms a blocking cylinder to block the reel, and uses a motor unit and a positioning cylinder to realize the positioning and rotation of the reel. The labeling unit obtains labels from the printer component and applies them to the reel, thereby achieving the purpose of automating labeling on the reel and improving the labeling progress and efficiency of reel labeling.
[0054] The above description is only a preferred embodiment of the semiconductor ARC right-entry labeling machine disclosed in this utility model. It should be noted that for those skilled in the art, several modifications and improvements can be made without departing from the inventive concept of this utility model, and these all fall within the protection scope of this utility model.
Claims
1. A semiconductor ARC right-in machine labeler characterized by, The device includes an organism, a loading and unloading assembly disposed on the machine body for loading and unloading reels, a labeling assembly disposed on the machine body for labeling the reels, and a printer assembly disposed on the machine body for providing labels to the labeling assembly; The loading and unloading assembly automatically feeds the reel into the labeling assembly; The labeling assembly is inclined and docks with the loading and unloading assembly; the labeling assembly includes an inclined base plate on the machine body, a U-shaped frame on the base plate, a motor unit on the U-shaped frame, a labeling unit on the motor unit, a positioning cylinder below the base plate, and a blocking cylinder on the base plate to block the reel; a storage area for placing the reel is formed between the base plate and the U-shaped frame; the base plate is provided with a long groove for the labeling unit to pass through and a positioning hole for the positioning cylinder to pass through; The printer component provides labels, which are then picked up by the labeling unit and affixed to the reel. The motor unit includes a motor bracket mounted on the base plate and a motor body mounted on the motor bracket. The motor body, in conjunction with the positioning cylinder, drives the reel to rotate. The labeling unit includes a labeling bracket mounted on a motor bracket, a labeling cylinder mounted on the labeling bracket, a labeling column mounted at the end of the labeling cylinder, and a sponge suction cup mounted at the bottom of the labeling column. The sponge suction cup can vacuum-adsorb the label. Under the action of the labeling cylinder, the labeling column drives the sponge suction cup through the slot of the U-shaped frame and the long slot to be placed below the base plate, thus adsorbing the label provided by the printer assembly.
2. A semi-automatic ARC right-in labeler according to claim 1, wherein, It also includes a label positioning component for positioning the labeling position on the reel; the label positioning component is provided with a first positioning hole that matches the width of the label, and a second positioning hole that cooperates with the first positioning hole is provided at the labeling position on the reel. When the first positioning hole and the second positioning hole are aligned, it indicates that the reel is in the accurate labeling position.
3. A semi-ARC right-in machine labeling machine according to claim 1, characterized in that, The loading and unloading assembly includes a support plate mounted on the machine body, a pair of guide rails disposed below the support plate, a connecting rod disposed at the head end of the guide rails and connecting the two guide rail head ends, a gate cylinder disposed on the connecting rod, a first support plate disposed at the head end of the gate cylinder, a second support plate disposed on the guide rails, a unloading plate disposed below the guide rails, and an unloading drive unit for driving the unloading plate to rotate around one end of the unloading plate; the first support plate and the second support plate are disposed between the guide rails and the support plate, the head end of the unloading plate is hinged to the bottom of the support plate, and when the unloading plate is in a horizontal position, the distance between the unloading plate and the first support plate is the thickness of the reel.
4. A semi-ARC right-in machine labelling machine according to claim 3, characterised in that, The feeding drive unit includes a feeding cylinder mounted on a feeding plate and a fixing plate mounted on the feeding plate. The head end of the feeding cylinder is connected to the fixing end, and the feeding cylinder can drive the feeding plate to rotate around the top end of the feeding plate.
5. A semi-automatic ARC right-in machine labeling machine according to claim 3, characterized in that, The loading and unloading assembly includes three loading columns that limit the position of the reel on the upper surface of the bearing plate. The three loading columns form a loading bin for placing the reel.
6. A semi-automatic ARC right-in machine labeling machine according to claim 1, characterized in that, The printer assembly comprises a printer body and a label placement plate arranged at the front end of the printer body, the label placement plate is arranged in parallel with the bottom plate, and the label placement plate is arranged opposite to the long slot.