Arrangement device for shaping triode pins
By designing an arrangement device for transistor pin shaping, the automated arrangement and stacking of transistors was realized, solving the problem of difficult alignment during manual stacking and improving the processing efficiency of pin shaping.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2026-03-24
AI Technical Summary
In the current process of pin shaping after packaging transistors, manual stacking is not easy to align, resulting in low processing efficiency.
Design a transistor pin alignment device, including a first conveyor belt, a guide frame and a rectangular alignment frame. Through the design of automatic conveying and the guide frame, the transistors are automatically aligned and stacked. By utilizing the matching shape of the guide frame and the rectangular alignment frame and the pushing mechanism, the transistors are automatically shaped.
This improved the processing efficiency of transistor pin shaping, reduced manual operation time, and increased production efficiency.
Smart Images

Figure CN224030184U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to triode production technical field, especially related to a triode pin shaping uses arrangement device. BACKGROUND
[0002] The triode completes the structure after packaging as shown in Figure 5 Its three pins are usually parallel structures, and need to be bent and shaped using shaping tools or equipment to adapt to the position of the solder pad on the circuit board. The utility model patent with publication number CN221620646U discloses a triode pin shaping device, which can simultaneously bend and orient the pins of multiple stacked triodes. However, before bending, the multiple triodes need to be stacked neatly by hand and then placed in the shaping device for shaping. Since the triodes are small, it is not easy to align them by hand, which is time-consuming. It is necessary to provide an arrangement device to assist in arrangement and stacking to improve processing efficiency. UTILITY MODEL CONTENT
[0003] To solve the above-mentioned prior art defects, the present application provides a triode pin shaping arrangement device, which can automatically transport multiple triodes into a guide frame, complete automatic arrangement and stacking, and improve processing efficiency.
[0004] To achieve the above-mentioned purpose, the utility model adopts the following technology:
[0005] A triode pin shaping arrangement device, comprising:
[0006] A first conveyor belt for conveying triodes, a vertical guide frame is provided at the end of the first conveyor belt for accommodating triodes falling from the end of the first conveyor belt, and the shape of the opening at the bottom of the guide frame matches the cross-sectional shape of the main body of the vertical triode;
[0007] A second conveyor belt is provided below the first conveyor belt, and the conveying direction of the second conveyor belt is parallel to the conveying direction of the first conveyor belt;
[0008] A rectangular arrangement frame is provided above the second conveyor belt, a plurality of vertical partitions are arranged in the length direction in the rectangular arrangement frame for separating multiple rectangular accommodation areas matching the main body of the triode in the rectangular arrangement frame, and the height of the rectangular accommodation area matches the height of the main body of the vertical triode.
[0009] Further, the height of the side of the guide frame close to the first conveyor belt is lower than the height of the top of the first conveyor belt, and the height of the side of the guide frame close to the first conveyor belt is higher than the height of the top of the first conveyor belt.
[0010] Further, the guiding frame close to the side of the first conveying belt comprises an inclined section and a vertical section, the vertical section is below the inclined section, the bottom of the inclined section is inclined towards the side of the guiding frame away from the first conveying belt, and the side of the guiding frame away from the first conveying belt is parallel to the vertical section.
[0011] Further, the side of the guiding frame away from the first conveying belt and the bottom of the vertical section are provided with notches, when the triode is in the rectangular containing area, the pins of the triode are in the coverage range of the notches.
[0012] Further, the thickness of the partition plate is 2 times the thickness of the side wall at both ends of the rectangular arrangement frame.
[0013] Further, the end of the second conveying belt is provided with a receiving table, the height of the receiving table matches the height of the top of the second conveying belt, one end of the receiving table is aligned with one side of the second conveying belt, the one end of the receiving table is provided with a pushing mechanism, and the moving direction of the pushing end of the pushing mechanism is parallel to the width direction of the second conveying belt.
[0014] The utility model has the advantages that:
[0015] The triode is automatically conveyed into the guiding frame through the first conveying belt, the triode in the guiding frame automatically falls into the rectangular arrangement frame, the arrangement and stacking are completed, the subsequent pin bending and shaping are facilitated, and the processing efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a whole structure perspective view of the embodiment of the application.
[0017] Figure 2 It is Figure 1 It is an enlarged view of A part in the middle.
[0018] Figure 3 It is a structure perspective view of the rectangular arrangement frame in the embodiment of the application.
[0019] Figure 4 It is a structure perspective view of the triode falling into the rectangular arrangement frame from the guiding frame in the embodiment of the application.
[0020] Figure 5 It is a structure perspective view of the triode after packaging.
[0021] The drawings show that: the first conveying belt is 1, the triode is 2, the guiding frame is 3, the second conveying belt is 4, the rectangular arrangement frame is 5, the receiving table is 6, the pushing mechanism is 7, the partition plate is 501, the rectangular containing area is 502, the main body is 201, the pin is 202, the inclined section is 301, the vertical section is 302, and the notch is 303. DETAILED DESCRIPTION
[0022] In order to make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the embodiments of the utility model will be described in detail below with reference to the drawings, but the embodiments described by the utility model are part of the embodiments of the utility model, rather than all the embodiments.
[0023] The application provides a triode pin shaping arrangement device, as shown in the drawings, comprising a first conveying belt 1, a second conveying belt 4, a rectangular arrangement frame 5 and the like. Figures 1-5
[0024] Specifically, the first conveying belt 1 is used for conveying triodes 2, and the triodes 2 are horizontally placed above the first conveying belt 1 during conveying; the first conveying belt 1 is provided with a vertical guide frame 3 at the end, which is used for accommodating the triodes 2 falling from the end of the first conveying belt 1; the shape of the bottom opening of the guide frame 3 matches the cross-sectional shape of the main body 201 of the vertical triode 2; the second conveying belt 4 is arranged below the first conveying belt 1 at intervals, and the conveying direction of the second conveying belt 4 is parallel to the conveying direction of the first conveying belt 1; the rectangular arrangement frame 5 is arranged above the second conveying belt 4, and a plurality of vertical partitions 501 are arranged in the length direction in the rectangular arrangement frame 5, which are used for separating a plurality of rectangular accommodation areas 502 matching the shape of the main body 201 of the triode 2 in the rectangular arrangement frame 5, and the height of the rectangular accommodation area 502 matches the height of the main body 201 of the vertical triode 2.
[0025] In use, the triodes 2 are horizontally placed above the first conveying belt 1, and the pins 202 of the triodes 2 are directed towards the end of the first conveying belt 1; meanwhile, the rectangular arrangement frame 5 is placed above the second conveying belt 4, and the second conveying belt 4 is controlled to drive the rectangular arrangement frame 5 to move below the guide frame 3, so that the rectangular accommodation area 502 close to the end of the second conveying belt 4 in the rectangular arrangement frame 5 is aligned with the bottom opening of the guide frame 3; when the triode 2 reaches the end of the first conveying belt 1 and falls into the guide frame 3, because the shape of the bottom opening of the guide frame 3 matches the cross-sectional shape of the main body 201 of the vertical triode 2, the triode 2 will keep a vertical state when falling out of the guide frame 3, and then falls into the rectangular accommodation area 502 in the rectangular arrangement frame 5; then the second conveying belt 4 is controlled to drive the rectangular arrangement frame 5 to continue moving, so that the next rectangular accommodation area 502 is aligned with the bottom opening of the guide frame 3, and the next triode 2 falls into the rectangular accommodation area 502; then the above steps are repeated, so that the guide frame 3 is filled with triodes 2; the rectangular arrangement frame 5 is turned upward to a vertical state, and the arrangement and stacking of the triodes 2 are completed, which is convenient for subsequent bending and shaping of the pins 202 of the triodes 2 on the shaping equipment.
[0026] Specifically, refer to Figure 4 The height of the side of the guide frame 3 close to the first conveying belt 1 is lower than the top height of the first conveying belt 1, so that the triodes 2 reaching the end of the first conveying belt 1 can fall into the guide frame 3, and the height of the side of the guide frame 3 close to the first conveying belt 1 is higher than the top height of the first conveying belt 1, so as to block the triodes 2 and prevent the triodes 2 from moving out of the guide frame 3.
[0027] Specifically, referring to Figure 4 The side of the guide frame 3 close to the first conveying belt 1 comprises an inclined section 301 and a vertical section 302, the vertical section 302 is below the inclined section 301, and the bottom of the inclined section 301 is inclined towards the side of the guide frame 3 away from the first conveying belt 1, and the side of the guide frame 3 away from the first conveying belt 1 is parallel to the vertical section 302. By arranging the inclined section 301, the accommodation space at the top of the guide frame 3 can be increased, and the triodes 2 can gradually fall along the inclined section 301 into the space between the vertical section 302 and the other side of the guide frame 3, so that the triodes 2 in the guide frame 3 are not stuck due to the triodes 2 falling into the guide frame 3 through the too small opening at the top of the guide frame 3.
[0028] Preferably, referring to Figure 2 , Figure 4 The side of the guide frame 3 away from the first conveying belt 1 and the bottom of the vertical section 302 are both provided with a notch 303, and when the triodes 2 are in the rectangular accommodation area 502, the pins 202 of the triodes 2 are in the coverage range of the notch 303. By this arrangement, the distance between the second conveying belt 4 and the guide frame 3 can be reduced, so that the height of the bottom of the guide frame 3 matches the height of the top of the rectangular arrangement frame 5, the pins 202 of the triodes 2 can pass through the notch 303, the guide frame 3 can move forward, and a certain distance between the guide frame 3 and the rectangular arrangement frame 5 is not required to avoid the pins 202 of the triodes 2 being blocked by the bottom of the guide frame 3 when the guide frame 3 moves, so that the triodes 2 are not deviated after falling out of the guide frame 3.
[0029] Specifically, referring to Figure 3 The thickness of the partition plate 501 is twice the thickness of the side walls at both ends of the rectangular arrangement frame 5. When multiple guide frames 3 are placed on the second conveying belt 4, the sum of the thicknesses of the end walls of the adjacent two guide frames 3 is equal to the thickness of the partition plate 501, and the second conveying belt 4 only needs to move the guide frames 3 by the same preset distance each time, so that the rectangular accommodation areas 502 in the multiple guide frames 3 can be aligned with the bottom openings of the guide frames 3 in turn.
[0030] Preferably, referring to Figure 1 , Figure 2The end of the second conveying belt 4 is provided with a receiving table 6, the height of the receiving table 6 matches the top height of the second conveying belt 4, one end of the receiving table 6 is aligned with one side of the second conveying belt 4, and the receiving table 6 is provided with a pushing mechanism 7 at one end, and the moving direction of the pushing end of the pushing mechanism 7 is parallel to the width direction of the second conveying belt 4. After the second conveying belt 4 conveys the guide frame 3 to the receiving table 6, the pushing end of the pushing mechanism 7 is controlled to push out, so that the plurality of rectangular arrangement frames 5 can be neatly stacked.
[0031] The above is only part of the embodiments of the present application and is not used to limit the present application.
Claims
1. A transistor pin arrangement device, characterized in that, include: The first conveyor belt (1) is used to transport the transistor (2). The end of the first conveyor belt (1) is provided with a vertical guide frame (3) for accommodating the transistor (2) falling from the end of the first conveyor belt (1). The shape of the bottom opening of the guide frame (3) matches the cross-sectional shape of the body (201) of the vertical transistor (2). The second conveyor belt (4) is spaced below the first conveyor belt (1), and its conveying direction is parallel to the conveying direction of the first conveyor belt (1). A rectangular arrangement frame (5) is located above the second conveyor belt (4). Multiple vertical partitions (501) are arranged in the rectangular arrangement frame (5) along the length direction to divide the rectangular arrangement frame (5) into multiple rectangular accommodating areas (502) that match the shape of the main body (201) of the transistor (2). The height of the rectangular accommodating area (502) matches the height of the main body (201) of the vertical transistor (2).
2. The transistor pin arrangement device according to claim 1, characterized in that, The height of the guide frame (3) on the side closest to the first conveyor belt (1) is lower than the top height of the first conveyor belt (1), and the height of the guide frame (3) on the side closest to the first conveyor belt (1) is higher than the top height of the first conveyor belt (1).
3. The transistor pin arrangement device according to claim 2, characterized in that, The guide frame (3) includes an inclined section (301) and a vertical section (302) on the side near the first conveyor belt (1). The vertical section (302) is below the inclined section (301). The bottom of the inclined section (301) is inclined toward the side of the guide frame (3) away from the first conveyor belt (1). The side of the guide frame (3) away from the first conveyor belt (1) is parallel to the vertical section (302).
4. The transistor pin arrangement device according to claim 3, characterized in that, The guide frame (3) has a notch (303) on the side away from the first conveyor belt (1) and at the bottom of the vertical section (302). When the transistor (2) is in the rectangular accommodating area (502), the pin (202) of the transistor (2) is within the coverage of the notch (303).
5. The transistor pin arrangement device according to claim 1, characterized in that, The thickness of the partition (501) is twice the thickness of the sidewalls at both ends of the rectangular arrangement frame (5).
6. The transistor pin arrangement device according to claim 1, characterized in that, The end of the second conveyor belt (4) is provided with a receiving platform (6). The height of the receiving platform (6) matches the top height of the second conveyor belt (4). One end of the receiving platform (6) is aligned with one side of the second conveyor belt (4). One end of the receiving platform (6) is provided with a pushing mechanism (7). The direction of movement of the pushing end of the pushing mechanism (7) is parallel to the width direction of the second conveyor belt (4).
Citation Information
Patent Citations
Triode pin shaping device
CN221620646U