Manual needle card alignment platform

By manually adjusting the platform and magnifying glass assist, the problem of high cost of automatic adjustment equipment is solved, and the low-cost and high-precision pin-up alignment effect is achieved.

CN223273252UActive Publication Date: 2025-08-26DONGGUAN HAILUN ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202422618262.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-08-26
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

The automatic adjustment equipment of the existing needle card position adjustment table is costly and does not meet the needs of some customers.

Method used

The manual pin card alignment platform is adopted, including a workbench, a magnifying glass, a chip positioning mechanism and a needle card positioning mechanism. The relative positions of the fixed base, sliding table and rotating table are adjusted through the X-axis, Y-axis and rotating manual adjustments, and the position of the chip and the needle card are accurately aligned with the magnifying glass.

Benefits of technology

It realizes low-cost high-precision chips and pin cards to meet production needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a manual needle card alignment platform, which comprises a working table, and a magnifying lens, a chip positioning mechanism and a needle card positioning mechanism which are arranged on the working table, and the needle card positioning mechanism comprises a needle card adjusting platform and a needle card adjusting mechanism, the needle card adjusting platform comprises a fixed base, a first sliding table, a second sliding table and a rotating table used for bearing a needle card, the fixed base is installed on the workbench, the first sliding table is arranged on the fixed base in a sliding mode in the X-axis direction of the workbench, and the second sliding table is arranged on the first sliding table in a sliding mode in the Y-axis direction of the workbench; the rotary table is rotatably arranged on the first sliding table, the needle card adjusting mechanism comprises an X-axis manual adjusting piece, a Y-axis manual adjusting piece and a rotary manual adjusting piece which are installed on the workbench, and the X-axis manual adjusting piece is rotated to abut against the first sliding table to move relative to the fixed base. By rotating the Y-axis manual adjusting piece, the Y-axis manual adjusting piece abuts against the second sliding table to move relative to the first sliding table, and by rotating the rotary manual adjusting piece, the rotary manual adjusting piece abuts against the rotary table to rotate relative to the second sliding table.
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Description

Technical Field

[0001] The utility model relates to the technical field of electronic component processing, in particular to a manual needle clamp alignment platform. Background Art

[0002] Chips and needle cards often need to be assembled during processing, and the chips and needle cards often need to be aligned before assembly. Before assembly, the chips and needle cards often need to be positioned by another device, which includes a carrier and a needle card position adjustment table. The carrier is used to carry the chip, and the needle card position adjustment table is used to carry the needle card. The position of the needle card is adjusted according to the position of the chip to achieve the purpose of alignment. After the needle card alignment is completed, the entire needle card position adjustment table is moved to the next processing equipment. However, the adjustment of the needle card position adjustment table often adopts automatic adjustment. Such automatic adjustment equipment often has a high overall cost and does not meet the needs of some existing customers.

[0003] In order to solve the above problems, it is necessary to provide a manual needle card alignment platform. Utility Model Content

[0004] The purpose of the utility model is to provide a manual needle clamp alignment platform with simple structure and low cost.

[0005] In order to achieve the above-mentioned purpose, the manual needle card alignment platform provided by the utility model includes a workbench and a magnifying glass, a chip positioning mechanism and a needle card positioning mechanism installed on the workbench, the magnifying glass is used to obtain the position of the chip at the chip positioning mechanism, the needle card positioning mechanism includes a needle card adjustment platform and a needle card adjustment mechanism, the needle card adjustment platform includes a fixed base, a first sliding table, a second sliding table and a rotating table for carrying the needle card, the fixed base is installed on the workbench, the first sliding table is slidably arranged on the fixed base along the X-axis direction of the workbench, and the second sliding table is slidably arranged on the fixed base along the Y-axis direction of the workbench The first slide table is slidably arranged on the first slide table, and the rotating table is rotatably arranged on the second slide table. The needle card adjustment mechanism includes an X-axis manual adjustment part, a Y-axis manual adjustment part and a rotating manual adjustment part installed on the workbench. By rotating the X-axis manual adjustment part, the X-axis manual adjustment part is pressed against the first slide table to move relative to the fixed base. By rotating the Y-axis manual adjustment part, the Y-axis manual adjustment part is pressed against the second slide table to move relative to the first slide table. By rotating the rotating manual adjustment part, the rotating manual adjustment part is pressed against the rotating table to rotate relative to the second slide table.

[0006] Preferably, the manual needle clamp alignment platform further includes a first hand-tightening locking member, and the first hand-tightening locking member is used to lock the relative movement between the first sliding platform and the fixed base.

[0007] Preferably, the manual needle clamp alignment platform further includes a second hand-tightening locking member, and the second hand-tightening locking member is used to lock the relative movement between the second sliding platform and the first sliding platform.

[0008] Preferably, the manual needle clamp alignment platform further includes a third hand-tightening locking member, and the third hand-tightening locking member is used to lock the relative rotation between the second sliding platform and the rotating platform.

[0009] Preferably, the X-axis manual adjustment member and the Y-axis manual adjustment member are micrometer adjustment members, and the rotation manual adjustment member is a micrometer adjustment member.

[0010] Preferably, the manual needle card alignment platform also includes a first guide assembly, a first connecting member and a second connecting member, the first guide assembly includes a first slider and a first slide rail, the first slide rail is installed on the workbench, the first slider is respectively connected to the first connecting member and the second connecting member, the X-axis manual adjustment member is connected to the first connecting member, the rotation manual adjustment member is connected to the second connecting member, and the first slider is slidably arranged on the first slide rail.

[0011] Preferably, the manual needle card alignment platform also includes a second guide assembly and a third connecting member, the second guide assembly includes a second slider and a second slide rail, the second slide rail is installed on the workbench, the second slider is connected to the third connecting member, the Y-axis manual adjustment member is connected to the third connecting member, and the second slider is slidably arranged on the second slide rail.

[0012] Preferably, the manual needle card alignment platform also includes a needle card positioning carrier, the needle card positioning carrier includes a connecting base and a transverse carrier, the connecting base is connected to the rotating table, the transverse carrier is connected to the connecting base, the transverse carrier is extended from the connecting base to the top of the chip positioning mechanism, the magnifying glass is located above the transverse carrier, and the X-axis position, Y-axis position and angular position of the rotating table are adjusted by comparing the position of the needle card at the transverse carrier and the chip at the chip positioning mechanism with the magnifying glass.

[0013] Preferably, the chip positioning mechanism includes a chip carrier, a first clamping member, a second clamping member and a lifting drive device. The chip carrier can be lifted and lowered on the workbench by the lifting drive device. The first clamping member and the second clamping member are used to clamp or release the chip on the chip carrier by lifting and lowering the chip carrier.

[0014] Specifically, the first clamping member and the second clamping member each include a sliding clamping member and a pushing member, the pushing member is fixed to the workbench, the sliding clamping member is slidably provided on the chip carrier and has a constant tendency to clamp the chip, and the pushing member is used to abut the sliding clamping member and release the chip by abutting the sliding clamping member.

[0015] Compared with the existing technology, the manual needle card alignment platform of the utility model adjusts the relative positions between the fixed base, the first sliding table, the second sliding table and the rotating table through the X-axis manual adjustment part, the Y-axis manual adjustment part and the rotating manual adjustment part. Compared with the adjustment method of the automated equipment, the cost is low. At the same time, the position between the chip and the needle card is observed through a magnifying glass and then adjusted, and the adjustment accuracy is high to meet production needs. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a three-dimensional diagram of the manual needle clamp alignment platform of the present utility model.

[0017] Figure 2 It is a partial structural diagram of the manual needle clamp alignment platform of the utility model.

[0018] Figure 3 This is another partial structural diagram of the manual needle clamp alignment platform of the present invention.

[0019] Figure 4 This is another partial structural diagram of the manual needle clamp alignment platform of the present invention.

[0020] Figure 5 This is another partial structural diagram of the manual needle clamp alignment platform of the present invention. DETAILED DESCRIPTION

[0021] See also Figures 1 to 5, shows the specific structure of the manual needle card alignment platform of the utility model, the manual needle card alignment platform of the utility model includes a workbench 1 and a magnifying glass 2, a chip positioning mechanism 3 and a needle card positioning mechanism 4 installed on the workbench 1, the magnifying glass 2 is used to obtain the position of the chip at the chip positioning mechanism 3, the needle card positioning mechanism 4 includes a needle card adjustment platform 41 and a needle card adjustment mechanism 42, the needle card adjustment platform 41 includes a fixed base 411, a first sliding platform 412, a second sliding platform 413 and a rotating platform 414 for carrying the needle card, the fixed base 411 is installed on the workbench 1, the first sliding platform 412 is slidably provided on the fixed base 411 along the X-axis direction of the workbench 1, the second sliding platform 413 is slidably provided on the first sliding platform 412 along the Y-axis direction of the workbench 1, and the rotating platform 414 is rotatably provided on the second sliding platform 413, the needle card adjustment mechanism 42 includes an X-axis manual adjustment part 421, a Y-axis manual adjustment part 421 installed on the workbench 1 The manual adjustment member 422 and the rotating manual adjustment member 423 are used to rotate the X-axis manual adjustment member 421 so that the X-axis manual adjustment member 421 abuts the first sliding table 412 and moves relative to the fixed base 411. The Y-axis manual adjustment member 422 is used to rotate the Y-axis manual adjustment member 422 abuts the second sliding table 413 and moves relative to the first sliding table 412. The rotating manual adjustment member 423 is used to rotate the rotating manual adjustment member 423 abuts the rotating table 414 and rotates it relative to the second sliding table 413. The relative positions of the fixed base 411, the first sliding table 412, the second sliding table 413 and the rotating table 414 are adjusted by the X-axis manual adjustment member 421, the Y-axis manual adjustment member 422 and the rotating manual adjustment member 423. Compared with the adjustment method of automated equipment, the cost is low. At the same time, the position between the chip and the needle card is observed through the magnifying glass 2 and then adjusted, and the adjustment accuracy is high to meet production needs. More specifically, as follows:

[0022] See also Figures 1 to 3 The manual needle card alignment platform further includes a first hand-tightening locking member 5, which is used to lock the relative movement between the first sliding platform 412 and the fixed base 411. The first hand-tightening locking member 5 is a rotating locking screw that is locked by twisting.

[0023] See also Figures 1 to 3 The manual needle card alignment platform further includes a second hand-tightening locking member 6, which is used to lock the relative movement between the second sliding platform 413 and the first sliding platform 412. The second hand-tightening locking member 6 is a rotating locking screw that is locked by twisting.

[0024] See also Figures 1 to 3 The manual needle card alignment platform further includes a third hand-tightening locking member 7, which is used to lock the relative rotation between the second sliding platform 413 and the rotating platform 414. The third hand-tightening locking member 7 is a rotating locking screw that is locked by twisting.

[0025] See also Figures 1 to 3 , the X-axis manual adjustment member 421 and the Y-axis manual adjustment member 422 are micrometer adjustment members, and the rotation manual adjustment member 423 is a micrometer adjustment member, but is not limited thereto.

[0026] See also Figures 1 to 2 The manual needle card alignment platform further includes a first guide assembly 8, a first connecting member 9, and a second connecting member 10. The first guide assembly 8 includes a first slider 81 and a first slide rail 82. The first slide rail 82 is mounted on the workbench 1. The first slider 81 is connected to the first connecting member 9 and the second connecting member 10, respectively. The X-axis manual adjustment member 421 is connected to the first connecting member 9, and the rotation manual adjustment member 423 is connected to the second connecting member 10. The first slider 81 is slidably mounted on the first slide rail 82. This allows the X-axis manual adjustment member 421 and the rotation manual adjustment member 423 to move smoothly relative to the workbench 1, and their synchronized movement enables synchronized initial position adjustment.

[0027] See also Figures 1 to 3 The manual needle card alignment platform further includes a second guide assembly 11 and a third connecting member 12. The second guide assembly 11 includes a second slider 111 and a second slide rail 112. The second slide rail 112 is mounted on the workbench 1. The second slider 111 is connected to the third connecting member 12. The Y-axis manual adjustment member 422 is connected to the third connecting member 12. The second slider 111 is slidably mounted on the second slide rail 112. This allows the Y-axis manual adjustment member 422 to move smoothly relative to the workbench 1, and the synchronized movement can achieve synchronized preliminary position adjustment.

[0028] See also Figures 1 to 3 The manual needle card alignment platform also includes a needle card positioning carrier 13. The needle card positioning carrier 13 includes a connecting base 131 and a transverse carrier 132. The connecting base 131 is connected to the rotating table 414. The rotating manual adjustment member 423 presses against the rotating table 414 by pressing against the connecting base 131, thereby making the pressing action more flexible. The transverse carrier 132 is connected to the connecting base 131. The transverse carrier 132 extends from the connecting base 131 to the top of the chip positioning mechanism 3. The magnifying glass 2 is located above the transverse carrier 132. The magnifying glass 2 is used to compare the position of the needle card at the transverse carrier 132 and the chip at the chip positioning mechanism 3 to adjust the X-axis position, Y-axis position and angle position of the rotating table 414.

[0029] See also Figure 5The chip positioning mechanism 3 of the manual pin-card alignment platform includes a chip carrier 31, a first clamping member 32, a second clamping member 33 and a lifting drive device 34. The chip carrier 31 is installed on the workbench 1 in a liftable manner through the lifting drive device 34. The first clamping member 32 and the second clamping member 33 clamp or release the chip on the chip carrier 31 by lifting and lowering the chip carrier 31.

[0030] See also Figures 1 to 3 The first clamping member 32 and the second clamping member 33 of the manual needle card alignment platform each include a sliding clamping member 35 and a pushing member 36. The pushing member 36 is fixed to the workbench 1. The sliding clamping member 35 is slidably arranged on the chip carrier 31 and has a tendency to clamp the chip through the elastic member. The pushing member 36 is used to push against the sliding clamping member 35 and release the chip by pushing against the sliding clamping member 35. It can be understood that the pushing member 36 is provided with an inclined surface arranged along the height direction of the workbench 1, and the sliding of the sliding clamping member 35 during the lifting process is achieved by pushing against the inclined surface.

[0031] See also Figures 1 to 5 , showing the working process of the manual needle card alignment platform of the utility model as follows:

[0032] The chip is placed in the groove of the chip carrier 31. The chip carrier 31 can rise relative to the workbench 1 through the lifting drive device 34. During the rising process, the rise of the chip carrier 31 causes the first clamping member 32 and the second clamping member 33 to clamp the chip on the chip carrier 31. The magnifying glass 2 obtains the position of the chip at the chip positioning mechanism 3 and the position of the pin card at the transverse carrier 132. The position of the chip at the pin card at the transverse carrier 132 is compared with the position of the chip at the chip positioning mechanism 3 by the magnifying glass 2. At this time, the fixed base 411, the first sliding stage 412, the second sliding stage 413 and the rotating stage 414 are all in the initial position. The image information obtained by the magnifying glass 2 is manually turned to the X-axis manual adjustment member 421, the Y-axis manual adjustment member 422 and the rotating manual adjustment member 423. By rotating the X-axis manual adjustment member The dynamic adjustment member 421 causes the X-axis manual adjustment member 421 to press against the first sliding table 412 and move relative to the fixed base 411. By rotating the Y-axis manual adjustment member 422, the Y-axis manual adjustment member 422 presses against the second sliding table 413 and moves relative to the first sliding table 412. By rotating the rotary manual adjustment member 423, the rotary manual adjustment member 423 presses against the rotating table 414 and rotates relative to the second sliding table 413. After adjusting the X-axis position, Y-axis position and angular position of the rotating table 414, the first hand-tightening locking member 5 locks the relative movement between the first sliding table 412 and the fixed base 411, the second hand-tightening locking member 6 locks the relative movement between the second sliding table 413 and the first sliding table 412, and the third hand-tightening locking member 7 locks the relative rotation between the second sliding table 413 and the rotating table 414.

[0033] The relative positions among the fixed base 411, the first sliding table 412, the second sliding table 413 and the rotating table 414 are adjusted by the X-axis manual adjustment member 421, the Y-axis manual adjustment member 422 and the rotating manual adjustment member 423. Compared with the adjustment method of the automated equipment, the cost is low. At the same time, the position between the chip and the needle card is observed through the magnifying glass 2 and then adjusted, and the adjustment accuracy is high to meet production needs.

[0034] The above disclosure is only a preferred embodiment of the present invention and certainly cannot be used to limit the scope of rights of the present invention. Therefore, equivalent changes made according to the scope of the patent application of the present invention still fall within the scope covered by the present invention.

Claims

1. A manual needle card alignment platform, characterized in that: It includes a workbench and a magnifying glass, a chip positioning mechanism and a needle card positioning mechanism installed on the workbench. The magnifying glass is used to obtain the position of the chip at the chip positioning mechanism. The needle card positioning mechanism includes a needle card adjustment platform and a needle card adjustment mechanism. The needle card adjustment platform includes a fixed base, a first sliding platform, a second sliding platform and a rotating platform for carrying the needle card. The fixed base is installed on the workbench, the first sliding platform is slidably arranged on the fixed base along the X-axis direction of the workbench, and the second sliding platform is slidably arranged on the first sliding platform along the Y-axis direction of the workbench. The table is rotatably provided on the second sliding table, and the needle card adjustment mechanism includes an X-axis manual adjustment part, a Y-axis manual adjustment part and a rotating manual adjustment part installed on the workbench. By rotating the X-axis manual adjustment part, the X-axis manual adjustment part is pressed against the first sliding table to move relative to the fixed base, and by rotating the Y-axis manual adjustment part, the Y-axis manual adjustment part is pressed against the second sliding table to move relative to the first sliding table, and by rotating the rotating manual adjustment part, the rotating manual adjustment part is pressed against the rotating table to rotate relative to the second sliding table.

2. The manual needle card alignment platform according to claim 1, characterized in that: It also includes a first hand-tightening locking member, which is used to lock the relative movement between the first sliding platform and the fixed base.

3. The manual needle card alignment platform according to claim 1, characterized in that: It also includes a second hand-tightening locking member, which is used to lock the relative movement between the second sliding platform and the first sliding platform.

4. The manual needle card alignment platform according to claim 1, characterized in that: It also includes a third hand-tightening locking member, which is used to lock the relative rotation between the second sliding platform and the rotating platform.

5. The manual needle card alignment platform according to claim 1, characterized in that: The X-axis manual adjustment part and the Y-axis manual adjustment part are micrometer adjustment parts, and the rotation manual adjustment part is a micrometer adjustment part.

6. The manual needle card alignment platform according to claim 1, characterized in that: It also includes a first guide assembly, a first connecting member and a second connecting member. The first guide assembly includes a first slider and a first slide rail. The first slide rail is installed on the workbench. The first slider is connected to the first connecting member and the second connecting member respectively. The X-axis manual adjustment member is connected to the first connecting member, and the rotation manual adjustment member is connected to the second connecting member. The first slider is slidably arranged on the first slide rail.

7. The manual needle card alignment platform according to claim 1, characterized in that: It also includes a second guide assembly and a third connecting member, the second guide assembly includes a second slider and a second slide rail, the second slide rail is installed on the workbench, the second slider is connected to the third connecting member, the Y-axis manual adjustment member is connected to the third connecting member, and the second slider is slidably arranged on the second slide rail.

8. The manual needle card alignment platform according to claim 1, characterized in that: It also includes a needle card positioning carrier, which includes a connecting base and a transverse carrier. The connecting base is connected to the rotating table, and the transverse carrier is connected to the connecting base. The transverse carrier is extended from the connecting base to the top of the chip positioning mechanism. The magnifying glass is located above the transverse carrier. The X-axis position, Y-axis position and angular position of the rotating table are adjusted by comparing the position of the needle card at the transverse carrier and the chip at the chip positioning mechanism with the magnifying glass.

9. The manual needle card alignment platform according to claim 1, characterized in that: The chip positioning mechanism includes a chip carrier, a first clamping member, a second clamping member and a lifting drive device. The chip carrier is installed on the workbench in a liftable manner by the lifting drive device. The first clamping member and the second clamping member are clamped or released by the lifting of the chip carrier.

10. The manual needle card alignment platform according to claim 9, characterized in that: The first clamping member and the second clamping member each include a sliding clamping member and a pushing member, wherein the pushing member is fixed to the workbench, the sliding clamping member is slidably disposed on the chip carrier and has a constant tendency to clamp the chip, and the pushing member is used to abut the sliding clamping member and release the chip by abutting the sliding clamping member.