Module tool clamp
By designing modular tooling fixtures and using a combination of fixing plates, backing plates, and positioning plates, multiple chips can be positioned and processed simultaneously, solving the problems of low efficiency and low yield in existing technologies, and improving the production efficiency and product quality of chip manufacturing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2026-03-10
AI Technical Summary
In existing chip manufacturing processes, tooling fixtures cannot meet the production requirements of high quality and high efficiency, and there are problems such as low pass rate and high scrap rate caused by human factors.
Design a modular tooling fixture, including a fixing plate, a liner plate, and a positioning plate. The liner plate has a chip slot, and the positioning plate has a limiting hole. They are connected and fixed by screws to realize the simultaneous positioning and processing of multiple chips.
It improved the efficiency and yield of chip processing, reduced manual operations, lowered the product scrap rate, and enhanced the stability and safety of production.
Smart Images

Figure CN223980719U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a module tool fixture belongs to the technical field of chip manufacturing. BACKGROUND
[0002] In the process of chip manufacturing, the coating operation on the surface of the chip is involved, and the chip body is generally fixed by using a tool fixture, but the original production process cannot meet the requirements of higher and higher product quality and faster production progress; on the other hand, due to the complexity of the production process, combined with more human factors of the original tool fixture, the qualified rate is low, and the scrap rate is high. Therefore, the original tool is improved. UTILITY MODEL CONTENTS
[0003] The utility model aims at overcoming the deficiencies in the prior art, providing a module tool fixture, which aims to reduce manual operation, improve efficiency, increase the qualified rate and reduce the product scrap rate in the operation process.
[0004] To achieve the above-mentioned purpose, the utility model is implemented by adopting the following technical scheme:
[0005] The utility model provides a module tool fixture, which comprises:
[0006] A fixed plate;
[0007] A lining plate is provided with a plurality of chip grooves for accommodating the chip body; the lining plate is supported by the fixed plate;
[0008] A positioning plate is arranged on the lining plate and covers the chip grooves, a plurality of limiting holes corresponding to the chip grooves are formed in the positioning plate, the size of the limiting hole is smaller than the surface size of the chip body, so as to form the state that part of the surface of the chip body to be processed is exposed outside;
[0009] Among them, the positioning plate is detachably connected with the fixed plate and the lining plate.
[0010] Further, the positioning plate, the lining plate and the fixed plate are fixedly connected by a plurality of screws which penetrate the positioning plate and the lining plate in sequence, and the screws are screwed with the fixed plate.
[0011] Further, a plurality of fixed screw holes are arranged on the fixed plate and matched with the screws;
[0012] A plurality of through holes corresponding to the fixed screw holes are arranged on the lining plate;
[0013] A plurality of through mounting holes corresponding to the through holes are arranged on the positioning plate.
[0014] Further, the mounting hole is a countersunk hole, and the screw is a countersunk screw matched with the countersunk hole.
[0015] Further, the plurality of chip slots are arranged in a matrix on the backing plate.
[0016] Further, the number of limiting holes on the positioning plate is not more than the number of chip slots on the backing plate.
[0017] Further, each chip slot has a space for accommodating one chip body.
[0018] Further, the backing plate is a rectangular plate, and one of the corner angles is provided with a chamfer.
[0019] Further, the plurality of fixing screw holes are distributed in a matrix on the fixing plate.
[0020] Further, the fixing screw hole penetrates the fixing plate.
[0021] The utility model discloses reached the beneficial effect that:
[0022] The utility model provides a module tool fixture, through setting up the backing plate with a plurality of chip slots, can place a plurality of chip bodies, and the chip body is fixed through the limiting of the positioning plate fixedly connected with the backing plate, and the backing plate still provides the support through the fixing plate, can process simultaneously and make a plurality of chip bodies, and the processing efficiency is high. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is the whole structure schematic diagram of a module tool fixture provided by the utility model embodiment 1;
[0024] Figure 2 It is the plan view of the fixing plate provided by the utility model embodiment 1;
[0025] Figure 3 It is the sectional view of the fixing plate provided by the utility model embodiment 1;
[0026] Figure 4 It is the plan view of the backing plate provided by the utility model embodiment 1;
[0027] Figure 5 It is the plan view of the positioning plate provided by the utility model embodiment 1;
[0028] Figure 6 It is the whole structure exploded schematic diagram of a module tool fixture provided by the utility model embodiment 2;
[0029] 1, fixed plate; 11, fixed screw hole; 2, lining plate; 21, chip slot; 22, through hole; 3, positioning plate; 31, limiting hole; 32, mounting hole; 4, screw; 5, chip body. DETAILED DESCRIPTION
[0030] The utility model will be described further below in conjunction with the drawings. The following examples are only used to make the technical scheme of the utility model more clear, and cannot limit the protection scope of the utility model.
[0031] In the description of the utility model, it is understood that the orientation or position relationship indicated by the terms "center", "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as indicating or implying that the indicated device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the utility model. In addition, the terms "first", "second" and the like are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" and the like can explicitly or implicitly include one or more features. In the description of the utility model, unless otherwise specified, the meaning of "a plurality of" is two or more.
[0032] In the description of the utility model, it should be noted that, unless otherwise specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication between the two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances. EMBODIMENT
[0033] Please refer to Figure 1 , the embodiment introduces a kind of module tool clamp, including fixed plate 1, lining plate 2, positioning plate 3 and multiple screws 4.
[0034] Please refer to Figure 2 、 Figure 4 And Figure 5The positioning plate 3 is detachably and fixedly connected to the fixing plate 1 and the liner plate 2, with the liner plate 2 located between the positioning plate 3 and the fixing plate 1. The liner plate 2 is provided with multiple chip slots 21 spaced apart to accommodate chip bodies 5. In this embodiment, each chip slot 21 has space to accommodate only one chip body 5. The liner plate 2 is supported by the fixing plate 1. The positioning plate 3 is disposed on the liner plate 2 and covers the chip slots 21. The positioning plate 3 has multiple limiting holes 31 corresponding to the chip slots 21. The size of the limiting holes 31 is smaller than the surface size of the chip body 5, so that part of the surface to be processed of the chip body 5 is exposed, so as to facilitate the processing of the surfaces of multiple chip bodies 5. Through the multiple chip slots 21 provided on the liner plate 2, multiple chip bodies 5 can be positioned and placed at one time, thereby realizing the batch processing of chip bodies 5, effectively improving production efficiency and reducing repetitive manual labor.
[0035] For example, as a specific embodiment, the liner 2 is made of plastic, which can reduce damage to the chip body 5 during operation. In addition, the positioning plate 3 and the fixing plate 1 are made of stainless steel with high structural strength, so that the positioning plate 3 and the fixing plate 1 can stably fix the liner 2 and the chip body 5.
[0036] For example, the positioning plate 3, the liner plate 2, and the fixing plate 1 are fixedly connected by a plurality of screws 4 that pass through the positioning plate 3, the liner plate 2, and the fixing plate 1 in sequence. The screws 4 can securely fix the positioning plate 3, the liner plate 2, and the fixing plate 1, and the screw connection also facilitates disassembly. When at least two screws 4 are connected to the positioning plate 3, the liner plate 2, and the fixing plate 1, the positioning plate 3 and the liner plate 2 can be initially positioned on the fixing plate 1, facilitating the quick installation of subsequent screws 4.
[0037] Correspondingly, the fixing plate 1 has multiple fixing screw holes 11 that are screwed into the screws 4; the liner plate 2 has multiple through holes 22 corresponding to the fixing screw holes 11; the positioning plate 3 has multiple through mounting holes 32 corresponding to the through holes 22; the screws 4 pass through the corresponding mounting holes 32 and through holes 22 in sequence, and are screwed into the corresponding fixing screw holes 11. The fixing screw holes 11, through holes 22 and mounting holes 32 are aligned vertically and can be connected by a single screw 4, thereby connecting the positioning plate 3, the liner plate 2 and the fixing plate 1. The fixing screw holes 11 are evenly distributed on the fixing plate 1, so the evenly distributed screws 4 can be evenly stressed, making the overall structure of the assembled modular tooling fixture more stable.
[0038] Among them, mounting hole 32 is a countersunk hole, and screw 4 is a countersunk screw that matches the countersunk hole. After installation, screw 4 can be embedded in the countersunk hole, thereby reducing the exposed part of screw 4, making the surface of the positioning plate 3 flatter after installation, and making subsequent processing operations safer.
[0039] Please refer to [link / reference needed] for further information. Figure 4 The chip slots 21 are arranged in a matrix on the substrate 2. Multiple fixing screw holes 11 are also arranged in a matrix on the fixing plate 1. The number of upper limit holes 31 on the positioning plate 3 is no more than the number of chip slots 21 on the substrate 2. Operators can place the chip bodies 5 sequentially on the substrate 2 according to specific working conditions, actual needs, and the number of limit holes 31, so that each chip body 5 placed in the chip slot 21 corresponds to a separate limit hole 31, meaning that a portion of the surface to be processed is exposed. The uniformly and orderly arranged chip slots 21 provide a prerequisite for subsequent high-efficiency processing.
[0040] In this embodiment, the liner 2 is a rectangular plate, and one of its corners is chamfered. The chamfer allows the operator to identify the placement direction of the liner 2. The operator can place the module tooling fixture reasonably and accurately based on the relative position of the chamfer. Correspondingly, the fixing plate 1 and the positioning plate 3 are also rectangular plates.
[0041] Additionally, please refer to [link / reference needed]. Figure 3 The fixing screw hole 11 passes through the fixing plate 1. Example
[0042] Please see Figure 6 The difference between this embodiment and Embodiment 1 is that the fixing plate 1, the liner plate 2, and the positioning plate 3 are all polygonal plates, specifically hexagonal structures, and multiple chip bodies 5 can also be placed in a matrix. Furthermore, in this embodiment, the polygonal plate can distribute the force more effectively and achieve better stability when subjected to impacts such as drops.
[0043] The application process of the modular tooling fixture provided in this embodiment involves the following steps:
[0044] Work should be carried out under the following environmental conditions: ambient temperature (23°C±5°C), humidity (30%~70%), normal atmospheric pressure, and the workplace should be clean, free of pollution, and equipped with electrostatic protection measures.
[0045] First, clean the liner 2, positioning plate 3, and fixing plate 1.
[0046] Use a suction cup to hold the chip body 5 and place it into the substrate. The orientation of the chip body 5 should be consistent (handle it gently to avoid damaging the pins of the chip body 5).
[0047] Place the liner 2 on the fixing plate 1, and then cover the liner 2 with the positioning plate 3, so that the positioning plate 3 fixes the chip body 5 and is in a tight fit with it.
[0048] Secure the positioning plate 3 with screw 4, but do not tighten the screw 4.
[0049] To check if all chip bodies 5 are in the correct position, you can gently move the chip body 5 and observe if there is any slight shaking.
[0050] After confirming that everything is correct, tighten all screws 4, and then perform surface finishing.
[0051] After the surface finishing is completed, remove all screws 4 first;
[0052] Gently remove the positioning plate 3, and place the chip body 5, which is held in place by a suction cup, into the tray;
[0053] If the chip body 5 is stuck to the positioning plate 3, gently press it downwards with your hand to remove the chip body 5 and place it in the tray.
[0054] In summary, the modular tooling fixture of this utility model has the following characteristics:
[0055] This utility model improves the original method of clamping a single chip body 5 by using a specially designed liner 2 and positioning plate 3 to clamp multiple chip bodies 5 simultaneously, thereby enabling high-efficiency, batch processing and effectively improving production efficiency.
[0056] Because multiple chip bodies 5 can be clamped and processed at once, repetitive manual labor can be reduced, thus reducing errors caused by manual operation, improving the scrap rate and increasing the yield.
[0057] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A modular tooling fixture, characterized by, The utility model relates to a chip processing device, including: Fixed plate (1); Lining plate (2) are provided with the interval distribution multiple chip slot (21) for accommodating chip body;The lining plate (2) is supported by the fixed plate (1); Positioning plate (3) is set up on the lining plate (2) and covers chip slot (21), and the positioning plate (3) is set up multiple limit hole (31) with chip slot (21) corresponding, and the size of limit hole (31) is less than the surface size of chip body, to form the state that part of the surface of chip body to be processed is exposed; Wherein, the positioning plate (3) with fixed plate (1), lining plate (2) are detachable fixed connection.
2. A modular tooling fixture according to claim 1, wherein, Positioning plate (3), lining plate (2) and the fixed plate (1) are fixedly connected by multiple screws (4) that are sequentially penetrated through positioning plate (3) and lining plate (2), and the screw (4) is screwed with fixed plate (1).
3. A modular tooling fixture according to claim 2, wherein, The fixed plate (1) is equipped with multiple fixed screw holes (11) with screw (4) screwing cooperation; The lining plate (2) is equipped with multiple through hole (22) with fixed screw hole (11) corresponding; The positioning plate (3) is equipped with multiple through mounting hole (32) with through hole (22) corresponding.
4. A modular tooling fixture according to claim 3, wherein, The mounting hole (32) is countersunk hole, and the screw (4) is countersunk screw matched with the countersunk hole.
5. The modular tooling fixture of claim 1, wherein, Multiple chip slot (21) is arranged in matrix on the lining plate (2).
6. A modular tooling fixture according to claim 1, wherein, The number of limit hole (31) on the positioning plate (3) is not more than the number of chip slot (21) on the lining plate (2).
7. A modular tooling fixture according to claim 1 wherein, Each chip slot (21) has the space of accommodating one chip body.
8. The modular tooling fixture of claim 1, wherein, The lining plate (2) is rectangular plate, and one of the corner is provided with chamfer.
9. A modular tooling fixture according to claim 3, wherein, Multiple fixed screw hole (11) is distributed in matrix on the fixed plate (1).
10. The modular tooling clamp of claim 3, wherein, The fixed screw hole (11) penetrates the fixed plate (1).