Semiconductor chip tray
By designing a combined structure for semiconductor chip trays, the problems of friction and difficulty in handling chip trays during transportation were solved, achieving both chip protection and convenient retrieval.
Patent Information
- Application Number
- CN202423307944.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Existing chip trays cause chips to rub against each other during transportation and lack independent space, resulting in poor transportation conditions and difficulty in retrieving chips.
A semiconductor chip tray was designed, which adopts a combination structure of tray body, buffer block, stop bar, carrier plate, limiting component and reset component. The interference fit of the buffer block and the rotation restriction of the limiting block prevent chip damage and facilitate the handling.
It achieves chip protection during transportation, prevents damage from friction, and simplifies the chip handling process.
Smart Images

Figure CN223560126U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of chip tray especially relates to a semiconductor chip tray. BACKGROUND
[0002] In the manufacturing process of various chips (such as integrated circuit chip, semiconductor power device, display device), it may involve the transportation, storage and other work of a large number of chips, and usually multiple chips are placed in a special chip tray for unified transportation or storage. The existing chip tray has some design defects. When transporting the chips, the chips rub against each other and have no independent space, resulting in poor transportation conditions, and it is difficult to take out the chips when taking them out. SUMMARY
[0003] The semiconductor chip tray provided by the embodiment of the present application solves the problem that the existing chip tray has some design defects, and when transporting the chips, the chips rub against each other and have no independent space, resulting in poor transportation conditions, and it is difficult to take out the chips when taking them out.
[0004] The technical scheme adopted by the embodiment of the present application is as follows.
[0005] A semiconductor chip tray, comprising a disc body, a buffer block containing chips, a stop rod preventing the chips from falling off, a first plate bearing the chips, a limiting piece limiting the chips to be located at the bottom, and a reset piece resetting the chips to the top; a plurality of bearing areas are formed on the disc body; the buffer block is arranged in the bearing area; the stop rod rotates on the disc body and corresponds to the top of the buffer block; a first groove is formed at the bottom of the bearing area; the limiting piece is arranged in the first groove; the reset piece is arranged between the first plate and the buffer block; the reset piece and the buffer block are in interference fit.
[0006] As a further improvement of the above technical scheme: a second groove is formed in the buffer block; a buffer strip is arranged on the side wall of the second groove; the buffer strip abuts against the side wall of the first plate; when the reset piece abuts against the first plate and moves upward, the buffer strip limits the moving speed of the first plate.
[0007] As a further improvement of the above technical scheme: a first rod is arranged at the bottom of the first plate; a second rod is arranged on the side wall of the first rod; a third groove is formed in the limiting piece; the third groove is helical; the second rod slides in the third groove; a limiting block is arranged at the tail of the third groove; when the second rod is located in the space composed of the limiting block and the bottom of the third groove, the limiting block limits the position of the second rod.
[0008] As a further improvement of the above technical scheme: a fourth groove is formed at the bottom of the limiting piece to facilitate rotation.
[0009] As a further improvement to the above technical solution: one end of the stop lever is hinged to the disc body; a locking block is provided on the disc body; a fifth groove is opened at the other end of the stop lever; the locking block corresponds to the fifth groove.
[0010] As a further improvement to the above technical solution: the card block and the fifth slot are spherical.
[0011] One or more technical solutions provided in the embodiments of this application have at least the following technical effects or advantages:
[0012] 1. The device employs a square-shaped disk with a support area at the top. A buffer block, also square-shaped, is located within this support area and has a second groove. Buffer blocks, cylindrical in shape, are also positioned on the sidewalls of the second groove. An array of buffer blocks is arranged on the sidewalls of the second groove, corresponding to the sidewalls of the chip. A first plate is located within the second groove, with its sidewalls interference-fitted to the sidewalls of the buffer blocks to buffer the upward or downward movement of the first plate, preventing damage to the chip. A first rod is located at the bottom of the first plate, and a first groove is formed at the bottom of the support area. The first rod slides within the first groove, and a limiting component rotates within the first groove. The limiting component has a third groove, which is spiral-shaped. A limiting block is set at the end of the third groove, which restricts the position of the second rod. The first rod is equipped with the second rod, which slides in the third groove until it abuts against and passes the limiting block. The limiting block restricts the position of the second rod. The bottom of the limiting component has a fourth groove, which is elongated and facilitates the rotation of the limiting component. A stop bar is hinged to the disc body, and a fifth groove is set at the other end of the stop bar. A locking block is set on the disc bar. When the locking block corresponds to the fifth groove, the stop bar is diagonally set on the buffer block, thereby restricting the position of the chip and making it more convenient to pick up or limit the chip. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the semiconductor chip tray in this utility model.
[0014] Figure 2 This is a partial structural diagram of the semiconductor chip tray in this utility model.
[0015] Figure 3 This is a schematic diagram of the limiting component in this utility model.
[0016] In the diagram: 1. Disc body; 11. Bearing area; 12. Locking block; 13. First groove; 2. Buffer block; 21. Second groove; 22. Buffer strip; 3. Stop bar; 31. Fifth groove; 4. First plate; 41. First rod; 42. Second rod; 5. Limiting component; 51. Third groove; 52. Limiting block; 53. Fourth groove; 6. Reset component. DETAILED DESCRIPTION
[0017] The embodiment of the present application provides a semiconductor chip tray, solves the design defects of the chip tray in the prior art, and avoids the friction between chips and the difficulty in taking out the chips when the chips are transported.
[0018] To solve the above problems, the technical scheme in the embodiment of the present application has the following general idea
[0019] In order to better understand the above technical scheme, the above technical scheme will be described in detail in combination with the drawings of the specification and the specific embodiments.
[0020] A semiconductor chip tray, comprising a disc body 1, a buffer block 2 containing chips, a stop lever 3 preventing the chips from falling off, a first plate 4 bearing the chips, a limiting piece 5 limiting the chips to be located at the bottom, and a reset piece 6 resetting the chips to the top; a plurality of bearing areas 11 are formed in the disc body 1; the buffer block 2 is arranged in the bearing area 11; the stop lever 3 is rotatable on the disc body 1 and corresponds to the top of the buffer block 2; a first groove 13 is formed in the bottom of the bearing area 11; the limiting piece 5 is arranged in the first groove 13; the reset piece 6 is arranged between the first plate 4 and the buffer block 2; and the reset piece 6 is in interference fit with the buffer block 2.
[0021] A second groove 21 is formed in the buffer block 2; a buffer strip 22 is arranged on the sidewall of the second groove 21; the buffer strip 22 abuts against the sidewall of the first plate 4; when the reset piece 6 abuts against the first plate 4 and moves upward, the buffer strip 22 limits the moving speed of the first plate 4.
[0022] A first rod 41 is arranged at the bottom of the first plate 4; a second rod 42 is arranged on the sidewall of the first rod 41; a third groove 51 is formed in the limiting piece 5; the third groove 51 is in a spiral shape; the second rod 42 slides in the third groove 51; a limiting block 52 is arranged at the tail of the third groove 51; when the second rod 42 is located in the space formed by the limiting block 52 and the bottom of the third groove 51, the limiting block 52 limits the position of the second rod 42.
[0023] A fourth groove 53 is formed at the bottom of the limiting piece 5 to facilitate rotation.
[0024] One end of the stop lever 3 is hinged to the disc body 1; a clamping block 12 is arranged on the disc body 1; the other end of the stop lever 3 is provided with a fifth groove 31; and the clamping block 12 corresponds to the fifth groove 31.
[0025] The clamping block 12 and the fifth groove 31 are in a spherical shape.
[0026] The disc body 1 is square and the top of the disc body 1 is provided with a bearing area 11, the bearing area 11 is provided with a buffer block 2, the buffer block 2 is square and the buffer block 2 is provided with a second groove 21, the sidewall of the second groove 21 is provided with a buffer block 2, the buffer block 2 is cylindrical, the buffer block 2 is arranged on the sidewall of the second groove 21, the sidewall of the buffer block 2 corresponds to the sidewall of the chip, the second groove 21 is provided with a first plate 4, the sidewall of the first plate 4 is in interference fit with the sidewall of the buffer block 2 so as to buffer the upward movement or downward movement of the first plate and prevent the first plate from damaging the chip, the bottom of the first plate is provided with a first rod 41, the bottom of the bearing area 11 is provided with a first groove 13, the first rod 41 slides in the first groove 13, a limiting piece 5 rotates in the first groove 13, the limiting piece 5 is provided with a third groove 51, the third groove 51 is spiral, the tail of the third groove 51 is provided with a limiting block 52, the limiting block 52 limits the position of a second rod 42, the first rod 41 is provided with the second rod 42, the second rod 42 slides in the third groove 51 until the second rod 42 abuts against the limiting block 52 and passes the limiting block 52, the position of the second rod 42 is limited by the limiting block 52, the bottom of the limiting piece 5 is provided with a fourth groove 53, the fourth groove 53 is strip-shaped, the fourth groove 53 facilitates the rotation of the limiting piece 5, the disc body 1 is hingedly provided with a stop lever 3, the other end of the stop lever 3 is provided with a fifth groove 31, the disc body is provided with a clamping block 12, when the clamping block 12 corresponds to the fifth groove 31, the stop lever 3 is diagonally arranged on the buffer block 2.
[0027] Because adopt the disc body 1 is square and the disc body 1 top is set up with the bearing area 11, the bearing area 11 is provided with the buffer block 2, the buffer block 2 is square and the buffer block 2 is set up with the second groove 21, the sidewall of second groove 21 is provided with the buffer block 2, the buffer block 2 is cylindrical, the buffer block 2 is arrayed on the sidewall of second groove 21, the sidewall of buffer block 2 corresponds with the sidewall of chip, the first plate 4 is set up in the second groove 21, the sidewall of first plate 4 is interference fit with the sidewall of buffer block 2 to buffer the upward or downward of first block, prevent its damage to chip, the bottom of first block is provided with the first rod 41, the bottom of bearing area 11 is set up with the first groove 13, the first rod 41 is located in the first groove 13 and slides, the limiting piece 5 rotates in the first groove 13, the third groove 51 is set up on the limiting piece 5, the third groove 51 is spiral, the tail of third groove 51 is provided with the limiting block 52, the limiting block 52 limits the position of second rod 42, the second rod 42 is set up on the first rod 41, the second rod 42 slides in the third groove 51 until the second rod 42 abuts against the limiting block 52 and passes the limiting block 52, the position of second rod 42 is limited by limiting block 52, the bottom of limiting piece 5 is set up with the fourth groove 53, the fourth groove 53 is strip-shaped, the fourth groove 53 facilitates the rotation of limiting piece 5, the disc body 1 is hinged with the stop lever 3, the other end of stop lever 3 is set up with the fifth groove 31, the disc is provided with the clamping block 12, when the clamping block 12 corresponds with the fifth groove 31, the stop lever 3 is diagonally set on the buffer block 2, thereby limiting the position of chip is realized, and it is more convenient to take or limit the chip.
[0028] Although preferred embodiments of the present application have been described, those skilled in the art who understand the inventive concept after the basic concept is known, can make additional changes and modifications to these embodiments. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications falling within the scope of the present application.
[0029] Obviously, those skilled in the art can make various changes and modifications to the present application without departing from the spirit and scope of the present application. Thus, if these modifications and variations of the present application fall within the scope of the claims of the present application and their equivalents, the present application also intends to include these changes and modifications.
Claims
1. A semiconductor chip tray, characterized in that, The device includes a disk body (1), a buffer block (2) for accommodating chips, a stop bar (3) to prevent chips from detaching, a first plate (4) for carrying chips, a limiting member (5) for limiting the chips to the bottom, and a reset member (6) for resetting the chips to the top. The disk body (1) has several carrying areas (11). The buffer block (2) is disposed in the carrying area (11). The stop bar (3) rotates on the disk body (1) and the stop bar (3) corresponds to the top of the buffer block (2). The bottom of the carrying area (11) has a first groove (13). The limiting member (5) is disposed in the first groove (13). The reset member (6) is disposed between the first plate (4) and the buffer block (2). The reset member (6) and the buffer block (2) are interference-fitted.
2. The semiconductor chip tray as described in claim 1, characterized in that, The buffer block (2) has a second groove (21) inside; a buffer strip (22) is provided on the side wall of the second groove (21); the buffer strip (22) abuts against the side wall of the first plate (4); when the reset member (6) moves upward against the first plate (4), the buffer strip (22) restricts the moving speed of the first plate (4).
3. The semiconductor chip tray as described in claim 2, characterized in that, A first rod (41) is provided at the bottom of the first plate (4); a second rod (42) is provided on the side wall of the first rod (41); a third groove (51) is provided on the limiting member (5); the third groove (51) is spiral; the second rod (42) slides in the third groove (51); a limiting block (52) is provided at the tail of the third groove (51); when the second rod (42) is located in the space formed by the limiting block (52) and the bottom of the third groove (51), the limiting block (52) restricts the position of the second rod (42).
4. The semiconductor chip tray as described in claim 3, characterized in that, The bottom of the limiting member (5) is provided with a fourth groove (53) to facilitate rotation.
5. The semiconductor chip tray as described in claim 1, characterized in that, One end of the stop lever (3) is hinged to the disc body (1); a locking block (12) is provided on the disc body (1); a fifth groove (31) is opened at the other end of the stop lever (3); the locking block (12) corresponds to the fifth groove (31).
6. The semiconductor chip tray as described in claim 5, characterized in that, The card block (12) and the fifth groove (31) are spherical.