Detection equipment of carrier tape for electronic component
By designing the feeding mechanism and air control components, the problems of carrier belt derailment and impurity residue during the feeding process were solved, achieving stable carrier belt conveying and efficient detection, and improving detection accuracy and product quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-31
- Publication Date
- 2026-04-07
AI Technical Summary
During the feeding process, when the remaining length of the carrier belt is short, it is easy for the belt to swing off its tail or collide with the equipment. Furthermore, impurities on the surface of the carrier belt are difficult to remove effectively, affecting the detection accuracy and product quality.
A carrier tape inspection device for electronic components was designed, comprising a feeding mechanism and an air control component. By adjusting the position of the pressure plate and the air supply direction, the carrier tape is protected and impurities are reduced, thereby solving the problems of carrier tape derailment and impurity residue.
It effectively prevents the carrier belt from derailing and tailing during the feeding process, reduces impurities in the detection area, improves detection accuracy and product quality, and ensures production stability and efficiency.
Smart Images

Figure CN121805265A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of carrier tape testing technology, specifically to a testing device for carrier tapes used in electronic components. Background Technology
[0002] The deep integration of industrial vision intelligence and carrier tape inspection is bringing revolutionary quality control upgrades to the semiconductor and electronic component packaging industry. By equipping high-resolution cameras and customized optical systems, and combining them with deep learning algorithms, industrial vision systems can perform high-speed, fully automated real-time inspection of carrier tape dimensional accuracy, hole integrity, surface defects (such as burrs and contamination), and the pose and model of mounted components. This technology not only significantly improves the accuracy and consistency of inspection, avoiding fatigue and oversights in manual visual inspection, but also enables continuous optimization of the production process through data analysis, thereby ensuring the reliability and stability of carrier tapes in high-speed automated mounting processes, fundamentally guaranteeing the production yield and efficiency of electronic products.
[0003] A utility model patent with publication number CN211741044U discloses a testing device for carrier tape used in electronic components, including a testing table, a support plate, a top plate, a fixing component, a linear module, a fixing frame, a laser sensor, a bracket, a sleeve, a nozzle, a hose, an ion fan, a fan hood, and a feeding frame. By moving the laser sensor through the linear module, the integrity of the carrier tape's internal structure can be effectively detected, preventing defects caused by cracks during processing that could affect later use, thus filtering out unqualified products. However, as the feeding process continues, when the remaining length of the carrier tape is short, the remaining portion of the tape may sag or even collide with the equipment. Summary of the Invention
[0004] To overcome the problem that when the remaining length of the carrier tape is short during the feeding process, the remaining portion of the carrier tape may tail off or even collide with the equipment, the present invention provides a detection device for carrier tape used in electronic components, including a body, and further comprising: A first mounting bracket is mounted on the outside of the machine body; The second mounting bracket is installed inside the machine body; The feeding mechanism is located outside the first mounting frame. The feeding mechanism includes a first push rod, and a feeding roller is provided outside the first push rod. The first push rod is used to adjust the relative distance between the feeding roller and the machine body. The detection mechanism is located outside the second mounting frame. The detection mechanism includes a detector and a material frame. The material frame is equipped with a transport component and a wind control component. The transport component and the wind control component are used to process the outer surface of the material during feeding.
[0005] Preferably, it further includes: The first mounting block is installed inside the first mounting bracket, and the first push rod is installed outside the first mounting block; The third mounting bracket is installed on the outside of the machine body; The second mounting block is installed inside the third mounting bracket; An adjusting element, which is mounted on the outside of the second mounting block; The discharge roller is connected to an adjusting component, which is used to adjust the distance between the discharge roller and the machine body.
[0006] Preferably, the feeding mechanism further includes: The L-shaped rod is connected to the telescopic end of the first push rod; A first cylinder is connected to an L-shaped rod, and the feed roller is installed inside the first cylinder; The second cylinder is installed at the end of the feed roller away from the first cylinder; A limiting frame is installed on the outside of the second cylinder, and a first connecting pipe is installed inside the limiting frame. The limiting frame is used to limit the position of the first connecting pipe.
[0007] Preferably, the feeding mechanism further includes: The first groove is formed inside the first cylinder, and multiple first grooves are formed; A first lifting frame is installed inside a first groove; The first lifting frame is equipped with a first pressure plate on its exterior. The first pressure plate is connected to a first connecting pipe. The interior of the first pressure plate has ventilation holes. The first pressure plate is used to limit the movement of the carrier belt.
[0008] Preferably, the feeding mechanism further includes: The second lifting frame is installed inside the first groove; The second pressure plate is connected to the second lifting frame and is used to limit the movement of the carrier belt. The third lifting frame is installed inside the first groove; A rubber sheet, which is connected to the third lifting frame, is used to support the tail end of the carrier belt.
[0009] Preferably, the testing mechanism further includes: A frame, wherein the frame is disposed below the detector; The base is mounted on the outside of the second mounting bracket.
[0010] Preferably, the transport component includes: Side panels, which are detachably mounted on the outside of the material frame; The second connecting pipe is rotatably mounted on the outside of the side plate; Outer box, which is connected to the second connecting pipe; The third connecting pipe is connected to the outer box.
[0011] Preferably, the transport component further includes: Mounting holes are formed inside the material frame; A rotating shaft, wherein the rotating shaft is disposed inside a mounting hole; The outer edge is provided at the opening of the material frame and is used to reduce wear on the carrier belt when the equipment comes into contact with it. The first arc-shaped plate is installed inside the material frame.
[0012] Preferably, the risk control component includes: A central cylinder is connected to a rotating shaft, and a second arc-shaped plate is provided inside the central cylinder to cooperate with a first arc-shaped plate. A connecting box is installed outside the central cylinder. An air outlet is provided inside the connecting box. A brush strip is installed outside the connecting box. The connecting box, which is connected to the central cylinder, is defined by a first arc plate and a second arc plate. A baffle is installed on the outside of the central cylinder, and an irregular groove is formed inside the baffle.
[0013] This invention provides a testing device for carrier tapes used in electronic components. It has the following advantages: 1. The carrier tape detection equipment for this electronic component uses a feeding mechanism to protect the remaining short length of the carrier tape during transport. As feeding progresses, when the remaining length of the carrier tape is short, the remaining portion is prone to tailing or even colliding with the equipment. Therefore, the feeding mechanism is designed to reduce carrier tape derailment by adjusting the positions of the first and second pressure plates to bring them closer to the carrier tape; and to further reduce tailing by adjusting the distance between the feeding roller, rubber plate, and material frame, thus solving the aforementioned problems. 2. The detection equipment for the carrier tape of this electronic component, through the setting of a feeding mechanism, uses the ventilation port of the first pressure plate to send air obliquely downward to the carrier tape during the carrier tape feeding process. The air supply direction is away from the machine body, which promotes the removal of impurities from the carrier tape. Furthermore, during the carrier tape feeding, the second pressure plate is located between the first cylinder and the second cylinder, and the second pressure plate does not contact the carrier tape to prevent the feed end from moving during the feeding process, which would cause the carrier tape to detach from the feed roller.
[0014] 3. The carrier tape testing equipment for this electronic component uses a testing mechanism and a detector to test the carrier tape within the frame area. Two material frames are set on both sides of the base. The carrier tape passes through the two material frames one after the other. Two sets of air control components in the two material frames supply air to the carrier tape in different directions to reduce impurities in the testing area.
[0015] 4. The carrier tape inspection equipment for this electronic component uses a wind control system. Two wind control components in two material frames deliver air to the carrier tape in different directions. During feeding, the gas carries impurities and dust towards the feed roller; during discharging, the gas carries impurities towards the discharge roller. This reduces dust and impurities in the inspection area and performs dust removal on the carrier tape before and after inspection, reducing impurities on the exterior of the carrier tape in both the inspection and post-inspection winding processes. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a structural schematic diagram from another perspective of the present invention; Figure 3 This is a schematic diagram of the feeding mechanism of the present invention; Figure 4 This is a schematic diagram of the structure of the feed roller of the present invention; Figure 5 This is a schematic diagram of the detection mechanism of the present invention; Figure 6 This is a schematic diagram of the structure of the transport component of the present invention; Figure 7 This is a schematic diagram of the material frame structure of the present invention; Figure 8 This is a schematic diagram of the risk control component of the present invention; Figure 9 This is a cross-sectional view of the central cylinder of the present invention.
[0017] In the diagram: 1. Machine body; 2. First mounting frame; 3. First mounting block; 4. Feeding mechanism; 401. First push rod; 402. L-shaped rod; 403. First cylinder; 404. First groove; 405. Feeding roller; 406. Second cylinder; 407. Limiting frame; 408. First connecting pipe; 409. First lifting frame; 410. First pressure plate; 411. Second lifting frame; 412. Second pressure plate; 413. Third lifting frame; 414. Rubber plate; 5. Second mounting frame; 6. Detection mechanism; 601. Detector; 602. Frame; 603. Bottom 604. Base; 605. Material frame; 606. Transport component; 6051. Side plate; 6052. Second connecting pipe; 6053. Outer box; 6054. Third connecting pipe; 6055. Mounting hole; 6056. Rotating shaft; 6057. Outer edge; 6058. First arc plate; 606. Air control component; 6061. Center cylinder; 6062. Connecting box; 6063. Air outlet; 6064. Baffle; 6065. Irregular groove; 6066. Brush strip; 6067. Second arc plate; 7. Third mounting bracket; 8. Second mounting block; 9. Adjusting component; 10. Discharge roller. Detailed Implementation
[0018] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and design various embodiments with various modifications suitable for a particular purpose.
[0019] like Figures 1-9 As shown, the present invention provides a technical solution: a testing device for carrier tapes for electronic components is described below.
[0020] Including the main body 1, it also includes: First mounting bracket 2, the first mounting bracket 2 is installed on the outside of the body 1; The second mounting bracket 5 is installed inside the body 1; The feeding mechanism 4 is located outside the first mounting frame 2. The feeding mechanism 4 includes a first push rod 401, which is an electric push rod. A feeding roller 405 is provided outside the first push rod 401. The first push rod 401 is used to adjust the relative distance between the feeding roller 405 and the machine body 1. The detection mechanism 6 is located outside the second mounting frame 5. The detection mechanism 6 includes a detector 601 and a material frame 604. The material frame 604 is a transparent frame 602. There are two material frames 604, which are located on both sides of the detector 601. The material frame 604 is equipped with a transport component 605 and a wind control component 606. The transport component 605 and the wind control component 606 are used to process the outer surface of the material during feeding. The first mounting block 3 is installed inside the first mounting bracket 2, and the first push rod 401 is installed outside the first mounting block 3; The third mounting bracket 7 is installed on the outside of the body 1; The second mounting block 8 is installed inside the third mounting bracket 7; Adjusting component 9, which consists of a horizontally positioned electric push rod and an L-shaped connecting rod, is installed on the outside of the second mounting block 8; The discharge roller 10 is connected to the adjusting component 9. The relative distance between the discharge roller 10 and the machine body 1 can be adjusted by adjusting the stroke of the electric push rod in the adjusting component 9.
[0021] Before using the equipment, one end of the carrier belt is cleaned and then connected to an external traction machine via the feeding mechanism 4, two material frames 604, and the discharge roller 10. The external traction machine drives the feeding of the carrier belt. Under the operation of the transport component 605 and the air control component 606, the carrier belt moves to the area below the detector 601. The detector 601 inspects the outer surface of the carrier belt. The detector 601 uses an online vision inspection system, which analyzes the defects on the outer surface of the carrier belt after capturing images with an industrial camera.
[0022] The feeding mechanism 4 also includes: L-shaped rod 402, which is connected to the telescopic end of the first push rod 401; The first cylinder 403 is connected to the L-shaped rod 402, and the feed roller 405 is installed inside the first cylinder 403; The second cylinder 406 is installed at the end of the feed roller 405 away from the first cylinder 403; The limiting frame 407 is installed on the outside of the second cylinder 406, and the first connecting pipe 408 is installed inside the limiting frame 407. The first connecting pipe 408 is connected to the external fan. The first groove 404 is formed inside the first cylinder 403, and multiple first grooves 404 are formed. The first lifting frame 409 is composed of an electric push rod and a frame body vertically arranged in the corresponding first groove 404. The first lifting frame 409 is installed inside the first groove 404. The first lifting frame 409 is externally mounted with a first pressure plate 410. The first pressure plate 410 has a cavity inside. The first pressure plate 410 is connected to the first connecting pipe 408. The first pressure plate 410 has ventilation holes inside. The first pressure plate 410 is made of rubber. The second lifting frame 411 is composed of an electric push rod and a frame body vertically arranged in the corresponding first groove 404. The second lifting frame 411 is installed inside the first groove 404. The second pressure plate 412 is connected to the second lifting frame 411, and the second pressure plate 412 is made of rubber. The third lifting frame 413 is composed of an electric push rod and a frame body vertically arranged in the corresponding first groove 404. The third lifting frame 413 is installed inside the first groove 404. Rubber plate 414 is connected to the third lifting frame 413.
[0023] The process of feeding the carrier belt is completed using feeding mechanism 4: When the carrier belt is being fed, the electric push rod in the first lifting frame 409 is adjusted to its maximum stroke state. At this time, the first pressure plate 410 outside the first lifting frame 409 is away from the carrier belt. The external fan is started, and the gas enters the first pressure plate 410 through the first connecting pipe 408 and moves in a downward direction through the vent, promoting the movement of dust and impurities on the carrier belt away from the machine body 1.
[0024] The electric push rod in the second lifting frame 411 is adjusted to a medium stroke. At this time, the second pressure plate 412 outside the second lifting frame 411 is between the first cylinder 403 and the second cylinder 406, and the second pressure plate 412 does not contact the carrier belt, so as to prevent the feeding end from moving when the carrier belt is fed, causing the carrier belt to detach from the feeding roller 405.
[0025] The process of using feeding mechanism 4 to drive the remaining shorter length of carrier belt for feeding: As the feeding process proceeds, the strokes of the electric push rods in the first lifting frame 409 and the second lifting frame 411 are gradually shortened, causing the first pressure plate 410 and the second pressure plate 412 to gradually approach the carrier belt. The traction speed of the external traction machine is reduced, and then the stroke of the first push rod 401 is gradually shortened. The first push rod 401 drives the L-shaped rod 402, the first cylinder 403, the feed roller 405, and the second cylinder 406 to approach the machine body 1. As the remaining length of the carrier belt continues to shorten, after the carrier belt falls onto the rubber plate 414, it completely leaves the feed roller 405, and then the first push rod 401 is adjusted back to its initial stroke.
[0026] By setting up the feeding mechanism 4, the remaining shorter length of the carrier belt is transported in a protective manner. As the feeding process progresses, when the remaining length of the carrier belt is short, the remaining part of the carrier belt is prone to tailing or even colliding with the equipment. Therefore, the feeding mechanism 4 is set up to reduce the occurrence of carrier belt derailment by adjusting the positions of the first pressure plate 410 and the second pressure plate 412 so that the first pressure plate 410 and the second pressure plate 412 are closer to the carrier belt; and by adjusting the distance between the feeding roller 405, the rubber plate 414 and the material frame 604, the occurrence of carrier belt tailing is reduced, thereby solving the above problems.
[0027] By setting up the feeding mechanism 4, during the carrier belt feeding process, the ventilation port of the first pressure plate 410 sends air obliquely downward to the carrier belt, with the airflow direction away from the machine body 1, promoting the removal of impurities from the carrier belt. Furthermore, during carrier belt feeding, the second pressure plate 412 is positioned between the first cylinder 403 and the second cylinder 406, and the second pressure plate 412 does not contact the carrier belt, preventing the feeding end from moving during carrier belt feeding and causing the carrier belt to detach from the feeding roller 405.
[0028] Testing agency 6 also includes: The frame 602 is located below the detector 601; The base 603 is mounted on the outside of the second mounting bracket 5.
[0029] Transport component 605 includes: Side plate 6051, side plate 6051 is detachably installed on the outside of material frame 604; The second connecting pipe 6052 is rotatably mounted on the outside of the side plate 6051; Outer box 6053, which is connected to the second connecting tube 6052; The third connecting pipe 6054 is connected to the second external blower and the third connecting pipe 6054 is connected to the outer box 6053. Mounting holes 6055 are provided in several places and are located inside the material frame 604. The rotating shaft 6056 is connected to the output end of the motor and is located inside the mounting hole 6055. Outer edge 6057, the outer edge 6057 is set at the opening of the material frame 604, and two outer edges 6057 are symmetrically set at the openings on both sides of the material frame 604. The outer edge 6057 is made of rubber. The first arc-shaped plate 6058 is installed inside the material frame 604 and is made of magnetic material.
[0030] The process of testing the carrier tape using testing agency 6: After the carrier belt passes through the material frame 604 near the feed roller 405, it moves to the top of the base 603. At this time, the carrier belt is directly below the detector 601. The detector 601 starts to detect the carrier belt at the target position. The carrier belt gradually moves to the material frame 604 near the discharge roller 10 and then completes the discharge operation through the discharge roller 10.
[0031] During the process of the carrier belt entering the material frame 604, multiple rotating shafts 6056 in the two material frames 604 are driven by their corresponding motors. The rotating shafts 6056 control the rotation of the corresponding air control components 606, and the air control components 606 in the two material frames 604 perform air supply work in different directions to the carrier belt.
[0032] By setting up the detection mechanism 6, the detector 601 is used to detect the carrier belt within the frame 602. Two material frames 604 are set on both sides of the base 603. The carrier belt passes through the two material frames 604 one after the other. The two sets of air control components 606 in the two material frames 604 deliver air to the carrier belt in different directions to reduce impurities in the detection area.
[0033] Risk control component 606 includes: The center cylinder 6061 is connected to the rotating shaft 6056. The interior of the center cylinder 6061 is provided with a second arc plate 6067, which is made of magnetic material and cooperates with the first arc plate 6058. A connecting box 6062 is installed outside the central cylinder 6061 and is connected to the central cylinder 6061. An air outlet 6063 is provided inside the connecting box 6062. A brush strip 6066 is installed on the outside of the connecting box 6062. The brush strip 6066 is set as a soft brush strip 6066. Baffle 6064 is installed on the outside of the central cylinder 6061, and a special groove 6065 is opened inside the baffle 6064.
[0034] The working process of using the air control component 606 for carrier belt air supply: During feeding, the motor drives the rotating shaft 6056 to rotate. The rotating shaft 6056 drives the central cylinder 6061, connecting box 6062, brush strip 6066, and second connecting pipe 6052 to rotate. The brush strip 6066 contacts the carrier belt and drives impurities away from the base 603. The second external fan is started, and the gas moves through the air outlet 6063 in the connecting box 6062 to the opening of the material frame 604 near the feed roller 405, promoting the detachment of impurities from the material frame 604.
[0035] Since the first arc plate 6058 and the second arc plate 6067 are attracted and fixed, during the rotation of the central cylinder 6061, only the connecting box 6062 near the carrier belt in the vertical direction is connected to the central cylinder 6061, thereby controlling the direction of air supply.
[0036] During discharge, the motor drives the rotating shaft 6056 to rotate. The rotating shaft 6056 drives the central cylinder 6061, connecting box 6062, brush strip 6066, and second connecting pipe 6052 to rotate. The brush strip 6066 contacts the carrier belt and drives the impurities away from the base 603. The second external fan is started, and the gas moves through the air outlet 6063 in the connecting box 6062 to the opening of the material frame 604 near the discharge roller 10, promoting the detachment of impurities from the material frame 604.
[0037] By setting up air control components 606, two air control components 606 in the two material frames 604 perform air supply operations on the carrier belt in different directions. During feeding, the gas carries impurities and dust towards the feed roller 405; during discharging, the gas carries impurities towards the discharge roller 10. This reduces dust and impurities in the detection area and performs dust removal on the carrier belt before and after detection, reducing impurities on the outside of the carrier belt in the detection area and also reducing impurities on the outside of the carrier belt after winding.
[0038] Working principle: Before using the equipment, clean one end of the carrier belt and connect it to the external traction machine through the feeding mechanism 4, two material frames 604 and the discharge roller 10. The external traction machine drives the feeding of the carrier belt.
[0039] When the carrier belt is being fed, the electric push rod in the first lifting frame 409 is adjusted to its maximum stroke state. At this time, the first pressure plate 410 outside the first lifting frame 409 is away from the carrier belt. The external fan is started, and the gas enters the first pressure plate 410 through the first connecting pipe 408 and moves in a downward direction through the vent, promoting the movement of dust and impurities on the carrier belt away from the machine body 1.
[0040] The electric push rod in the second lifting frame 411 is adjusted to a medium stroke. At this time, the second pressure plate 412 outside the second lifting frame 411 is between the first cylinder 403 and the second cylinder 406, and the second pressure plate 412 does not contact the carrier belt, so as to prevent the feeding end from moving when the carrier belt is fed, causing the carrier belt to detach from the feeding roller 405.
[0041] After the carrier belt passes through the material frame 604 near the feed roller 405, it moves to the top of the base 603. At this time, the carrier belt is directly below the detector 601. The detector 601 starts to detect the carrier belt at the target position. The carrier belt gradually moves to the material frame 604 near the discharge roller 10 and then completes the discharge operation through the discharge roller 10.
[0042] During the process of the carrier belt entering the material frame 604, multiple rotating shafts 6056 in the two material frames 604 are driven by their corresponding motors. The rotating shafts 6056 control the rotation of the corresponding air control components 606, and the air control components 606 in the two material frames 604 perform air supply work in different directions to the carrier belt.
[0043] During feeding, the motor drives the rotating shaft 6056 to rotate. The rotating shaft 6056 drives the central cylinder 6061, connecting box 6062, brush strip 6066, and second connecting pipe 6052 to rotate. The brush strip 6066 contacts the carrier belt and drives impurities away from the base 603. The second external fan is started, and the gas moves through the air outlet 6063 in the connecting box 6062 to the opening of the material frame 604 near the feed roller 405, promoting the detachment of impurities from the material frame 604.
[0044] Since the first arc plate 6058 and the second arc plate 6067 are attracted and fixed, during the rotation of the central cylinder 6061, only the connecting box 6062 near the carrier belt in the vertical direction is connected to the central cylinder 6061, thereby controlling the direction of air supply.
[0045] During discharge, the motor drives the rotating shaft 6056 to rotate. The rotating shaft 6056 drives the central cylinder 6061, connecting box 6062, brush strip 6066, and second connecting pipe 6052 to rotate. The brush strip 6066 contacts the carrier belt and drives the impurities away from the base 603. The second external fan is started, and the gas moves through the air outlet 6063 in the connecting box 6062 to the opening of the material frame 604 near the discharge roller 10, promoting the detachment of impurities from the material frame 604.
[0046] As the feeding process proceeds, the strokes of the electric push rods in the first lifting frame 409 and the second lifting frame 411 are gradually shortened, causing the first pressure plate 410 and the second pressure plate 412 to gradually approach the carrier belt. Subsequently, the stroke of the first push rod 401 is gradually shortened, causing the L-shaped rod 402, the first cylinder 403, the feed roller 405, and the second cylinder 406 to approach the machine body 1. As the remaining length of the carrier belt continues to shorten, after the carrier belt falls onto the rubber plate 414, it completely leaves the feed roller 405, and then the first push rod 401 is adjusted back to its initial stroke.
[0047] Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. All other embodiments obtained by those skilled in the art and related fields based on the embodiments of the present invention without inventive effort should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention, unless otherwise specified or limited, shall be implemented according to conventional means in the art.
Claims
1. A testing device for carrier tapes used in electronic components, comprising a body (1), characterized in that, Also includes: The first mounting bracket (2) is mounted on the outside of the body (1); The second mounting bracket (5) is installed inside the body (1); Feeding mechanism (4), the feeding mechanism (4) is located outside the first mounting frame (2), the feeding mechanism (4) includes a first push rod (401), a feeding roller (405) is provided outside the first push rod (401), the first push rod (401) is used to adjust the relative distance between the feeding roller (405) and the machine body (1); The detection mechanism (6) is located outside the second mounting frame (5). The detection mechanism (6) includes a detector (601) and a material frame (604). The material frame (604) is equipped with a transport component (605) and a wind control component (606). The transport component (605) and the wind control component (606) are used to process the outer surface of the material during feeding.
2. The testing equipment for carrier tapes for electronic components according to claim 1, characterized in that: Also includes: The first mounting block (3) is installed inside the first mounting bracket (2), and the first push rod (401) is installed outside the first mounting block (3); The third mounting bracket (7) is mounted on the outside of the body (1); The second mounting block (8) is installed inside the third mounting bracket (7); Adjustment element (9), said adjustment element (9) is mounted on the outside of the second mounting block (8); The discharge roller (10) is connected to the adjusting member (9).
3. The testing equipment for carrier tapes for electronic components according to claim 1, characterized in that: The feeding mechanism (4) further includes: L-shaped rod (402), the L-shaped rod (402) is connected to the telescopic end of the first push rod (401); A first cylinder (403) is connected to an L-shaped rod (402), and the feed roller (405) is installed inside the first cylinder (403); The second cylinder (406) is installed at the end of the feed roller (405) away from the first cylinder (403); A limiting frame (407) is installed on the outside of the second cylinder (406), and a first connecting pipe (408) is installed inside the limiting frame (407).
4. The testing equipment for carrier tapes for electronic components according to claim 3, characterized in that: The feeding mechanism (4) further includes: The first groove (404) is formed inside the first cylinder (403), and multiple first grooves (404) are formed. The first lifting frame (409) is installed inside the first groove (404); The first lifting frame (409) is equipped with a first pressure plate (410) on its exterior. The first pressure plate (410) is connected to the first connecting pipe (408). Ventilation holes are provided inside the first pressure plate (410).
5. The testing equipment for carrier tapes for electronic components according to claim 4, characterized in that: The feeding mechanism (4) further includes: The second lifting frame (411) is installed inside the first groove (404); The second pressure plate (412) is connected to the second lifting frame (411); The third lifting frame (413) is installed inside the first groove (404); A rubber sheet (414) is connected to a third lifting frame (413).
6. The testing equipment for carrier tapes for electronic components according to claim 1, characterized in that: The testing facility (6) also includes: A frame (602) is disposed below the detector (601); The base (603) is mounted on the outside of the second mounting bracket (5).
7. The testing equipment for carrier tapes for electronic components according to claim 6, characterized in that: The transport component (605) includes: Side plate (6051), said side plate (6051) is detachably installed on the outside of the material frame (604); The second connecting pipe (6052) is rotatably mounted on the outside of the side plate (6051); Outer box (6053), the outer box (6053) is connected to the second connecting pipe (6052); The third connecting pipe (6054) is connected to the outer box (6053).
8. The testing equipment for carrier tapes for electronic components according to claim 7, characterized in that: The transport component (605) also includes: Mounting hole (6055), the mounting hole (6055) is formed inside the material frame (604); A rotating shaft (6056) is disposed inside a mounting hole (6055); Outer edge (6057), the outer edge (6057) is disposed at the opening of the material frame (604); The first arc plate (6058) is installed inside the material frame (604).
9. The testing equipment for carrier tapes for electronic components according to claim 8, characterized in that: The risk control component (606) includes: A central cylinder (6061) is connected to a rotating shaft (6056), and a second arc-shaped plate (6067) is provided inside the central cylinder (6061). A connecting box (6062) is installed on the outside of the central cylinder (6061). An air outlet (6063) is provided inside the connecting box (6062). A brush strip (6066) is installed on the outside of the connecting box (6062). A baffle (6064) is installed on the outside of the central cylinder (6061), and a shaped groove (6065) is provided inside the baffle (6064).
Citation Information
Patent Citations
Detection device of carrier tape for electronic components
CN211741044U