Lead frame cutting device and use method

By introducing the outlet and guide mechanism into the lead frame slitting device, combining rolling and flattening components, the twisting and breaking problems of the lead frame during the cutting process is solved, production efficiency and product quality are improved, and manual operation is reduced.

CN119159392BActive Publication Date: 2025-08-12TAIXING LONGTENG ELECTRONICS CO LTD
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Patent Information

Application Number
CN202411685505.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-23
Publication Date
2025-08-12
Estimated Expiration
2044-11-23

AI Technical Summary

Technical Problem

In traditional lead frame slitting devices, the fixed position of the wire frame causes the lead frame to be easily distorted and broken during the cutting process, affecting production efficiency and product quality.

Method used

A lead frame slitting device including a wire outlet mechanism, a guide mechanism, a segment cutting mechanism, a rolling assembly and a flattening assembly is designed. By adjusting the outlet direction of the wire outlet frame and using a rolling assembly, a segment cutting assembly and a flattening assembly, a straightening assembly, and a flattening assembly are ensured to enter the segment cutting mechanism in a straight line, and the flattening process is carried out before cutting.

Benefits of technology

It effectively solves the problems of lead frame distortion and breakage, improves production efficiency and product quality, ensures slitting effect, and reduces manual operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The purpose of the present invention is to provide a lead frame slitting device and a method of use, wherein the device includes a pay-off frame with a lead frame wound thereon, and the device also includes a wire-out mechanism, a guide mechanism, and a segmentation mechanism. The guide mechanism can drive the pay-off frame and the wire-out mechanism to rotate and adjust the wire-out direction of the wire-out mechanism; the segmentation mechanism includes a rolling assembly, a segmentation assembly, and a flattening assembly. The discharge tray is arranged at the discharge end of the segmentation mechanism to receive the lead frame to be segmented. The present invention relates to the field of semiconductor lead frame processing technology. The lead frame slitting device of the present invention can effectively solve the problems of lead frame distortion and breakage in traditional devices; can improve the flatness of the lead frame and ensure the slitting effect; can improve production efficiency and reduce manual operations; can further improve product quality and meet production needs.
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Description

Technical Field

[0001] The present invention relates to the technical field of semiconductor lead frame processing, in particular to a lead frame cutting device and a use method thereof. Background Art

[0002] In traditional lead frame slitting devices, the payout frame is typically fixed in position, making it impossible to adjust the wire output direction according to actual needs. This design presents several problems. First, because the payout frame is fixed in position, the lead frame may twist when entering the slitting mechanism. This can cause the lead frame to break during the cutting process, affecting production efficiency and product quality. Second, the coiled lead frame bends when cut, making it difficult to slit, which also affects production efficiency and product quality. Therefore, traditional lead frame slitting devices have certain limitations in practical applications. Summary of the Invention

[0003] In view of the deficiencies of the prior art, the present invention provides a lead frame slitting device and a method of use, which solves the problem that the prior lead frame slitting device is difficult to be slitting and processed.

[0004] To achieve the above object, the present invention is implemented through the following technical solutions: a lead frame slitting device, the lead frame slitting device comprising a pay-off frame with a lead frame wound thereon, the lead frame slitting device further comprising: a lead outlet mechanism, a guide mechanism, a segmenting mechanism, a rolling assembly, a segmenting assembly, and a flattening assembly;

[0005] The wire outlet mechanism is fixed to the wire outlet end of the pay-off frame; the guide mechanism is connected to the pay-off frame and can drive the pay-off frame and the wire outlet mechanism to rotate and adjust the wire outlet direction of the wire outlet mechanism; the lead frame passes through the segmentation mechanism; the segmentation mechanism includes: a rolling assembly that rolls the lead frame forward; a segmentation assembly that can segment the lead frame rolled by the rolling assembly; and a flattening assembly that flattens the lead frame entering the segmentation mechanism;

[0006] The lead frame cutting device further comprises a discharge tray, which is arranged at the discharge end of the cutting mechanism and receives the cut lead frames.

[0007] Preferably, the guide mechanism includes: an assembly plate, a first motor, a driven gear and a connecting seat; the assembly plate is fixed on a fixed object; the first motor is fixed on the assembly plate, and a driving gear is provided at the output end of the first motor; the driven gear is rotatably connected to the assembly plate and meshed with the driving gear; the connecting seat is fixed on the pay-off rack; the driven gear is fixedly connected to the connecting seat.

[0008] Preferably, the wire outlet mechanism includes: a wire lead housing, a guide wheel, a driving wheel, a driven wheel, an adjusting wheel and a pressing assembly; a first bottom receiving plate is fixed in the wire lead housing; the guide wheel is rotatably connected to the wire lead housing and is disposed on both sides of the first bottom receiving plate; the driving wheel and the driven wheel are disposed on both sides of the inner cavity of the wire lead housing; the adjusting wheel is rotatably connected to the upper middle portion of the inner cavity of the wire lead housing, and the driving wheel, the driven wheel and the adjusting wheel are rotatably connected via a belt; the pressing assembly presses the belt between the driving wheel and the driven wheel;

[0009] A second guide rail fixed to the lead housing is provided on the rear side of the adjusting wheel, a first slider is slidably connected to the second guide rail, the adjusting wheel is rotatably connected to the first slider, a second lifting mechanism is fixed on the lead housing, and an output end of the second lifting mechanism is fixedly connected to the first slider.

[0010] Preferably, a first guide rail fixed to the lead housing is provided on the rear side of the driven wheel, a second slider is slidably connected to the first guide rail, a baffle is provided at one end of the first guide rail, and the second slider is connected to the baffle via a spring.

[0011] Preferably, the downward pressure assembly includes: a first lifting mechanism, a connecting frame, a first pressure plate, an extended pressure plate and a connecting rod; the first lifting mechanism is fixedly connected to the lead housing; the connecting frame is fixed to the output end of the first lifting mechanism, and the inner side of the connecting frame is provided with a cavity for the belt to pass through; the first pressure plate is fixed to the bottom of the connecting frame and is close to the belt between the driving wheel and the driven wheel; the extended pressure plate is inserted into the insertion cavity on the side of the first pressure plate; the connecting rod is connected between the extended pressure plate and the second slider.

[0012] Preferably, the segment cutting mechanism also includes a segment cutting frame, in which a second bottom supporting plate is arranged; a support frame is suspended on the top of the second bottom supporting plate, and the support frame includes an upper connecting plate and a lower connecting plate; a fourth lifting mechanism is fixed on the segment cutting frame, and the output end of the fourth lifting mechanism is fixedly connected to the upper connecting plate; the rolling assembly, segment cutting assembly and flattening assembly are all arranged on the support frame.

[0013] Preferably, the rolling assembly includes: a linkage plate, a sixth lifting mechanism, a second motor, an active pressure roller and a plurality of driven pressure rollers; the linkage plate is embedded in the lower connecting plate; the sixth lifting mechanism is fixed to the upper connecting plate, and the output end is fixedly connected to the linkage plate; the second motor is fixed to the side wall of the linkage plate; the active pressure roller is rotatably connected to the side wall of the linkage plate, and is rotatably connected to the output end of the second motor through a connecting belt; a plurality of driven pressure rollers are rotatably connected to the side wall of the linkage plate, and are arranged in parallel with the active pressure roller.

[0014] Preferably, the segment cutting assembly includes a fifth lifting mechanism, which is fixed on the upper connecting plate, and a cutting head is fixed on the output end; and a notch adapted to the cutting head is opened on the lower connecting plate.

[0015] Preferably, the flattening assembly includes: a second pressing plate and a third lifting mechanism; the second pressing plate is embedded in the lower connecting plate; the third lifting mechanism is fixed on the upper connecting plate, and the output end is fixedly connected to the second pressing plate.

[0016] The present invention also provides a method for using a lead frame cutting device, comprising the following steps:

[0017] S1: The first motor drives the driving gear and the driven gear to rotate, causing the connecting seat and the pay-off frame to swing, and adjusting the angles of the pay-off frame and the lead-out mechanism so that the lead frame is led out in a straight line and introduced into the cutting mechanism;

[0018] S2. The lead frame led out from the pay-off frame enters the lead-out mechanism, and the first pressing plate is pressed downward to drive the belt to deform downward and press it onto the lead frame to shape it;

[0019] S3, the second lifting mechanism drives the first slider to slide on the second guide rail, causing the adjusting wheel to move upward or downward. At this time, the tension of the connecting belt changes, and the spring retracts or advances according to the change in tension, driving the second slider to slide on the first guide rail, driving the driven wheel to change its lateral position, thereby adjusting the tension of the connecting belt; the second slider drives the connecting rod to pull the extension pressure plate to retract in the insertion cavity, and the extension pressure plate extends the usable length of the first pressure plate;

[0020] S4, the lead frame is introduced into the cutting frame and overlapped on the second bottom supporting plate, and the fourth lifting mechanism advances to drive the support frame downward, so that the active pressure roller and the driven pressure roller are pressed onto the lead frame;

[0021] S5. The active pressing roller is driven to rotate by the second motor, pressing the lead frame to move toward the discharge tray; the third lifting mechanism drives the second pressing plate to press down to flatten and fix the lead frame; the fifth lifting mechanism advances to drive the cutting head to descend to cut the lead frame.

[0022] Beneficial effects:

[0023] The lead frame slitting device and method provided by the present invention incorporates a wire-out mechanism at the outlet end of the payout frame, which guides and flattens the lead frames and automatically adjusts the belt length. This design effectively addresses the lead frame distortion and breakage issues associated with conventional devices, improving production efficiency and product quality.

[0024] At the same time, the present invention can also adjust the length of the first pressing plate and the extension pressing plate, thereby assisting in the gap while flattening the lead frame. This design can further improve the flatness of the lead frame and ensure the slitting effect.

[0025] Furthermore, the cutting mechanism can also transport the cut lead frames through the roller assembly during the slitting process, and can also guide the movement of the lead frames. This design can improve production efficiency and reduce manual operation.

[0026] Finally, before cutting, a second pressing plate presses the lead frame together, flattening it while also securing it to ensure optimal slitting. This design further improves product quality and meets production needs.

[0027] In general, the lead frame slitting device of the present invention can effectively solve the problems of lead frame distortion and breakage in traditional devices; can improve the flatness of the lead frame and ensure the slitting effect; can improve production efficiency and reduce manual operations; and can further improve product quality and meet production needs. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.

[0029] Figure 2 It is the front view of the outlet mechanism of the present invention.

[0030] Figure 3 It is a schematic diagram of the connection frame structure of the present invention.

[0031] Figure 4 It is a schematic diagram of the connection structure between the extension pressing plate and the first pressing plate of the present invention.

[0032] Figure 5 It is a schematic structural diagram of the segment cutting mechanism of the present invention.

[0033] Figure 6 It is a three-dimensional schematic diagram of the internal structure of the segment cutting mechanism of the present invention.

[0034] Figure 7 It is a schematic diagram of the three-dimensional structure of the linkage plate of the present invention.

[0035] Explanation of symbols in the figure: 1. Assembly plate; 2. First motor; 3. Driving gear; 4. Driven gear; 5. Connecting seat; 6. Pay-off frame; 7. Outgoing wire mechanism; 71. Lead housing; 72. Driving wheel; 73. Driven wheel; 74. Adjusting wheel; 75. First lifting mechanism; 76. Second lifting mechanism; 77. Belt; 78. First slider; 79. First guide rail; 710. Guide wheel; 711. First pressure plate; 712. Connecting frame; 713. Second guide rail; 714. Baffle; 715. Extended pressure plate; 716. First bottom receiving plate; 71 7. Receiving cavity; 718. Inserting cavity; 719. Spring; 720. Second slider; 721. Connecting rod; 8. Lead frame; 9. Segment cutting mechanism; 91. Segment cutting frame; 92. Third lifting mechanism; 93. Fourth lifting mechanism; 94. Fifth lifting mechanism; 95. Sixth lifting mechanism; 96. Upper connecting plate; 97. Lower connecting plate; 98. Second pressure plate; 99. Second bottom receiving plate; 910. Cutting head; 911. Interlocking plate; 912. Second motor; 913. Connecting belt; 914. Active pressure roller; 915. Driven pressure roller; 10. Discharge tray. DETAILED DESCRIPTION

[0036] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. As long as the effects of the present invention can be exerted, various changes can be made to the embodiments.

[0037] By those skilled in the art, the components in this case are connected in sequence. The specific connection and operation sequence should refer to the following working principle. The detailed connection means are well-known technologies in this field. The following mainly introduces the working principle and process.

[0038] Reference Figure 1-7 A lead frame slitting apparatus according to this embodiment will be described.

[0039] like Figure 1 The device shown includes a coiled payout frame 6 with a lead frame 8 wound around it. It also includes a wire discharging mechanism 7, a guide mechanism, a cutting mechanism 9, and a discharge tray 10. The wire discharging mechanism 7 is fixed to the wire discharging end of the payout frame 6 and assists in the extraction of the coiled lead frame 8 from the payout frame 6. The guide mechanism is connected to the payout frame 6 and drives the payout frame 6 and the wire discharging mechanism 7 to rotate, adjusting the wire discharging direction of the wire discharging mechanism 7.

[0040] like Figure 1As shown, the guide mechanism includes an assembly plate 1, a first motor 2, a driven gear 4 and a connecting seat 5. The assembly plate 1 is fixed on a fixed object; the first motor 2 is fixed on the assembly plate 1, and the output end of the first motor 2 is provided with a driving gear 3; the driven gear 4 is rotatably connected to the assembly plate 1 and meshed with the driving gear 3; the connecting seat 5 is fixed on the pay-off frame 6; the driven gear 4 is fixedly connected to the connecting seat 5. When in use, the first motor 2 drives the driving gear 3 to drive the driven gear 4 to rotate, and the driven gear 4 drives the connecting seat 5 and the pay-off frame 6 to rotate, thereby adjusting the outlet direction of the pay-off frame 6 and the outlet mechanism 7. Make the outlet mechanism 7 and the segmentation mechanism 9 straight, ensure that the lead frame 8 enters the segmentation mechanism 9 in a straight line, and prevent the lead frame 8 from entering the segmentation mechanism 9 in a twisted state and causing it to break.

[0041] like Figure 2 As shown, the wire outlet mechanism 7 includes a wire lead housing 71 , a guide wheel 710 , a pressing assembly, a driving wheel 72 , a driven wheel 73 and an adjusting wheel 74 .

[0042] A first bottom support plate 716 is fixed within the lead housing 71; a guide wheel 710 is rotatably connected to the lead housing 71 and is located on either side of the first bottom support plate 716; a driving wheel 72 and a driven wheel 73 are located on either side of the inner cavity of the lead housing 71; an adjusting wheel 74 is rotatably connected to the upper middle portion of the inner cavity of the lead housing 71, with the driving wheel 72, the driven wheel 73, and the adjusting wheel 74 being rotatably connected via a belt 77; the driving wheel 72 is connected to a servo motor that can drive the driving wheel 72 to rotate. When the driving wheel 72 rotates, the driven wheel 73 and the adjusting wheel 74 rotate synchronously via the belt 77. The lead frame 8 is overlapped on the first bottom support plate 716, and the rotating belt 77 contacts the lead frame 8, driving the lead frame 8 outward through friction.

[0043] A first guide rail 79 fixed to the lead housing 71 is provided on the rear side of the driven wheel 73 , a second slider 720 is slidably connected to the first guide rail 79 , a baffle 714 is provided at one end of the first guide rail 79 , and the second slider 720 is connected to the baffle 714 via a spring 719 .

[0044] A second guide rail 713 fixed to the lead housing 71 is provided on the rear side of the adjusting wheel 74, and a first slider 78 is slidably connected to the second guide rail 713. The adjusting wheel 74 is rotatably connected to the first slider 78. A second lifting mechanism 76 is fixed on the lead housing 71, and the output end of the second lifting mechanism 76 is fixedly connected to the first slider 78.

[0045] The pressing assembly presses the belt 77 between the driving wheel 72 and the driven wheel 73 ; the pressing assembly includes a first lifting mechanism 75 , a connecting frame 712 , a first pressing plate 711 , an extending pressing plate 715 and a connecting rod 721 .

[0046] The first lifting mechanism 75 is fixedly connected to the lead housing 71; the connecting frame 712 is fixed at the output end of the first lifting mechanism 75, and the inner side of the connecting frame 712 is provided with a cavity 717 for the belt 77 to pass through; the connecting frame 712 is fixed at the output end of the first lifting mechanism 75, and the inner side of the connecting frame 712 is provided with a cavity 717 for the belt 77 to pass through; the extended pressure plate 715 is inserted into the insertion cavity 718 on the side of the first pressure plate 711; the connecting rod 721 is connected between the extended pressure plate 715 and the second slider 720.

[0047] During operation, the second lifting mechanism 76 drives the first slider 78 to slide on the second guide rail 713, so that the adjusting wheel 74 moves upward or downward. At this time, the tension of the connecting belt 913 changes, and the spring 719 retracts or advances according to the change in tension, driving the second slider 720 to slide on the first guide rail 79, driving the driven wheel 73 to change its lateral position, and thereby adjusting the tension of the connecting belt 913; the second slider 720 drives the connecting rod 721 to pull the extension pressure plate 715 to retract in the insertion cavity 718, and the extension pressure plate 715 extends the usable length of the first pressure plate 711; the first lifting mechanism 75 advances, driving the first pressure plate 711 and the extension pressure plate 715 to descend synchronously, and the synchronous pressing belt 77 to descend, adjusting the gap between the belt 77 and the first bottom supporting plate 716, and thereby adjusting the pre-pressure of the belt 77 pressing down the lead frame 8. Moreover, when the driving wheel 72 works intermittently, the belt 77 also works intermittently. At this time, the first pressing plate 711 and the extension pressing plate 715 continue to descend and can be pressed on the lead frame 8, thereby flattening the lead frame 8 so that the lead frame 8 can be led out in a flat shape.

[0048] A discharge tray 10 is located at the discharge end of the segmenting mechanism 9 and receives the segmented lead frames 8. The lead frames 8 pass through the segmenting mechanism 9. The segmenting mechanism 9 comprises a rolling assembly, a segmenting assembly, and a flattening assembly. The rolling assembly rolls the lead frames 8 forward; the segmenting assembly segments the lead frames 8 being rolled by the rolling assembly; and the flattening assembly flattens the lead frames 8 that enter the segmenting mechanism 9.

[0049] The segment cutting mechanism 9 further includes a segment cutting frame 91, in which a second bottom receiving plate 99 is provided; a support frame is suspended on the top of the second bottom receiving plate 99, and the support frame includes an upper connecting plate 96 and a lower connecting plate 97. A fourth lifting mechanism 93 is fixed to the segment cutting frame 91, and the output end of the fourth lifting mechanism 93 is fixedly connected to the upper connecting plate 96;

[0050] The rolling assembly, the cutting assembly and the flattening assembly are all arranged on the supporting frame.

[0051] The rolling assembly includes a linkage plate 911, a sixth lifting mechanism 95, a second motor 912, an active pressure roller 914, and a plurality of driven pressure rollers 915. The linkage plate 911 is embedded in the lower connecting plate 97; the sixth lifting mechanism 95 is fixed to the upper connecting plate 96, with its output end fixedly connected to the linkage plate 911; the second motor 912 is fixed to the side wall of the linkage plate 911; the active pressure roller 914 is rotatably connected to the side wall of the linkage plate 911 and is rotatably connected to the output end of the second motor 912 via a connecting belt 913; and a plurality of driven pressure rollers 915 are rotatably connected to the side wall of the linkage plate 911 and arranged in parallel with the active pressure roller 914. A connecting belt also connects the active pressure roller 914 to each of the driven pressure rollers 915.

[0052] The lead frame 8 is introduced into the cutting frame 91 and overlapped on the second bottom supporting plate 99 . The fourth lifting mechanism 93 advances to drive the support frame downward, so that the active pressure roller 914 and the driven pressure roller 915 are pressed onto the lead frame 8 .

[0053] The segment cutting assembly includes a fifth lifting mechanism 94 , which is fixed on the upper connecting plate 96 , and a cutting head 910 is fixed on the output end; a notch adapted to the cutting head 910 is opened on the lower connecting plate 97 .

[0054] The flattening assembly includes a second pressing plate 98 and a third lifting mechanism 92. The second pressing plate 98 is embedded in the lower connecting plate 97; the third lifting mechanism 92 is fixed to the upper connecting plate 96, and the output end is fixedly connected to the second pressing plate 98.

[0055] Furthermore, the active pressing roller 914 is driven to rotate by the second motor 912, rolling the lead frame 8 to move toward the discharge tray 10; the third lifting mechanism 92 drives the second pressing plate 98 to press down to flatten and fix the lead frame 8; the fifth lifting mechanism 94 advances to drive the cutting head 910 to descend to achieve cutting of the lead frame 8.

[0056] In the lead frame slitting method of this embodiment, the lead frame slitting device described above is used, and the method includes the following steps:

[0057] S1, the first motor 2 drives the driving gear 3 and the driven gear 4 to rotate so that the connecting seat 5 and the wire pay-off frame 6 swing, and the angle of the wire pay-off frame 6 and the wire outlet mechanism 7 is adjusted so that the lead frame 8 is led out in a straight line and introduced into the cutting mechanism 9;

[0058] S2. The lead frame 8 drawn out from the pay-off frame 6 enters the lead-out mechanism 7. The first pressing plate 711 is pressed downward, driving the belt 77 to deform downward and press onto the lead frame 8 to shape it.

[0059] S3. The second lifting mechanism 76 drives the first slider 78 to slide on the second guide rail 713, causing the adjusting wheel 74 to move upward or downward. At this time, the tension of the connecting belt 913 changes, and the spring 719 retracts or advances according to the change in tension, driving the second slider 720 to slide on the first guide rail 79, driving the driven wheel 73 to change its lateral position, thereby adjusting the tension of the connecting belt 913; the second slider 720 drives the connecting rod 721 to pull the extension pressure plate 715 to retract into the insertion cavity 718, thereby extending the usable length of the first pressure plate 711;

[0060] S4. The lead frame 8 is introduced into the cutting frame 91 and overlapped on the second bottom receiving plate 99. The fourth lifting mechanism 93 advances and drives the support frame to descend, so that the active pressure roller 914 and the driven pressure roller 915 are pressed onto the lead frame 8.

[0061] S5. The active pressing roller 914 is driven to rotate by the second motor 912, rolling the lead frame 8 to move toward the discharge tray 10; the third lifting mechanism 92 drives the second pressing plate 98 to press down to flatten and fix the lead frame 8; the fifth lifting mechanism 94 advances to drive the cutting head 910 to descend to cut the lead frame 8.

[0062] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A lead frame slitting device, comprising a pay-off frame (6) wound with a lead frame (8), characterized in that: The lead frame cutting device further comprises: A wire outlet mechanism (7) is fixed to the wire outlet end of the pay-off frame (6); A guide mechanism is connected to the pay-off frame (6), and can drive the pay-off frame (6) and the outlet mechanism (7) to rotate, thereby adjusting the outlet direction of the outlet mechanism (7); A cutting mechanism (9), wherein the lead frame (8) passes through the cutting mechanism (9); the cutting mechanism (9) comprises: A rolling assembly for rolling the lead frame (8) and conveying it forward; a cutting assembly capable of cutting the lead frame (8) rolled and conveyed by the rolling assembly into segments; A flattening component is used to flatten the lead frame (8) that has entered the cutting mechanism (9); The lead frame slitting device further comprises a discharge tray (10) arranged at the discharge end of the segmenting mechanism (9) and receiving the segmented lead frame (8); The outlet mechanism (7) comprises: A lead housing (71), wherein a first bottom receiving plate (716) is fixed in the lead housing (71); Guide wheels (710) are rotatably connected to the lead housing (71) and are disposed on both sides of the first bottom receiving plate (716); A driving wheel (72), a driven wheel (73) and an adjusting wheel (74), wherein the driving wheel (72) and the driven wheel (73) are respectively arranged on both sides of the inner cavity of the lead housing (71); the adjusting wheel (74) is rotatably connected to the upper middle portion of the inner cavity of the lead housing (71); the driving wheel (72), the driven wheel (73) and the adjusting wheel (74) are rotatably connected via a belt (77); A pressing assembly is provided to press the belt (77) between the driving wheel (72) and the driven wheel (73); A second guide rail (713) fixed to the lead housing (71) is provided on the rear side of the regulating wheel (74), a first slider (78) is slidably connected to the second guide rail (713), the regulating wheel (74) is rotatably connected to the first slider (78), a second lifting mechanism (76) is fixed to the lead housing (71), and an output end of the second lifting mechanism (76) is fixedly connected to the first slider (78).

2. The lead frame cutting device according to claim 1, characterized in that: The guiding mechanism comprises: An assembly plate (1) is fixed to a fixed object; A first motor (2) is fixed on the assembly plate (1), and a driving gear (3) is provided at the output end of the first motor (2); A driven gear (4) is rotatably connected to the assembly plate (1) and meshedly connected to the driving gear (3); The connecting seat (5) is fixed on the pay-off frame (6); the driven gear (4) is fixedly connected to the connecting seat (5).

3. The lead frame cutting device according to claim 2, characterized in that: A first guide rail (79) fixed to the lead housing (71) is provided on the rear side of the driven wheel (73); a second slider (720) is slidably connected to the first guide rail (79); a baffle (714) is provided at one end of the first guide rail (79); and the second slider (720) is connected to the baffle (714) via a spring (719).

4. The lead frame cutting device according to claim 3, characterized in that: The pressing assembly comprises: A first lifting mechanism (75) is fixedly connected to the lead housing (71); A connecting frame (712) is fixed to the output end of the first lifting mechanism (75), and a cavity (717) is provided on the inner side of the connecting frame (712) for the belt (77) to pass through; A first pressing plate (711) is fixed to the bottom of the connecting frame (712) and is close to the belt (77) between the driving wheel (72) and the driven wheel (73); An extended pressing plate (715) is inserted into the insertion cavity (718) on the side of the first pressing plate (711); The connecting rod (721) is connected between the extension pressing plate (715) and the second sliding block (720).

5. The lead frame cutting device according to claim 4, characterized in that: The segment cutting mechanism (9) further comprises a segment cutting frame (91), wherein a second bottom receiving plate (99) is provided in the segment cutting frame (91); a support frame is suspended on the top of the second bottom receiving plate (99), wherein the support frame comprises an upper connecting plate (96) and a lower connecting plate (97); a fourth lifting mechanism (93) is fixed on the segment cutting frame (91), and an output end of the fourth lifting mechanism (93) is fixedly connected to the upper connecting plate (96); The rolling assembly, the cutting assembly and the flattening assembly are all arranged on the support frame.

6. The lead frame cutting device according to claim 5, characterized in that: The rolling assembly comprises: A connecting plate (911) is embedded in the lower connecting plate (97); A sixth lifting mechanism (95) is fixed on the upper connecting plate (96), and an output end is fixedly connected to the connecting plate (911); a second motor (912) fixed on a side wall of the linkage plate (911); An active pressure roller (914) is rotatably connected to the side wall of the linkage plate (911) and is rotatably connected to the output end of the second motor (912) via a connecting belt (913); A plurality of driven pressure rollers (915) are rotatably connected to the side wall of the linkage plate (911) and are arranged in parallel with the active pressure roller (914).

7. The lead frame cutting device according to claim 6, characterized in that: The cutting assembly comprises a fifth lifting mechanism (94), the fifth lifting mechanism (94) is fixed on the upper connecting plate (96), and a cutting head (910) is fixed on the output end; the lower connecting plate (97) is provided with a notch adapted to the cutting head (910).

8. The lead frame cutting device according to claim 7, characterized in that: The flattening assembly comprises: A second pressing plate (98) is embedded in the lower connecting plate (97); The third lifting mechanism (92) is fixed on the upper connecting plate (96), and the output end is fixedly connected to the second pressing plate (98).

9. A method for using a lead frame slitting device, using the lead frame slitting device according to claim 8, characterized in that: The steps include: S1, the first motor (2) drives the driving gear (3) and the driven gear (4) to rotate so that the connecting seat (5) and the pay-off frame (6) swing, and adjusts the angle of the pay-off frame (6) and the lead-out mechanism (7) so that the lead frame (8) is led out in a straight line and introduced into the cutting mechanism (9); S2, the lead frame (8) led out from the pay-off frame (6) enters the lead-out mechanism (7), and the first pressing plate (711) pressed downward drives the belt (77) to deform downward and press onto the lead frame (8) to shape it; S3, the second lifting mechanism (76) drives the first slider (78) to slide on the second guide rail (713), so that the adjusting wheel (74) moves upward or downward, at which time the tension of the connecting belt (913) changes, and the spring (719) retracts or advances according to the change in tension, driving the second slider (720) to slide on the first guide rail (79), driving the driven wheel (73) to change its lateral position, thereby adjusting the tension of the connecting belt (913); the second slider (720) drives the connecting rod (721) to pull the extension pressure plate (715) to retract in the insertion cavity (718), and the extension pressure plate (715) extends the usable length of the first pressure plate (711); S4, the lead frame (8) is introduced into the cutting frame (91) and overlapped on the second bottom receiving plate (99), and the fourth lifting mechanism (93) advances to drive the support frame downward, so that the active pressure roller (914) and the driven pressure roller (915) are pressed onto the lead frame (8); S5. The active pressing roller (914) is driven to rotate by the second motor (912), and the lead frame (8) is pressed to move toward the discharge tray (10); the third lifting mechanism (92) drives the second pressing plate (98) to press down to flatten and fix the lead frame (8); the fifth lifting mechanism (94) advances to drive the cutting blade (910) to descend to cut the lead frame (8).

Citation Information

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