Point inspection jig and curing equipment
By designing a spot inspection tool that simulates the dispensing position of the carrier plate, the inaccurate spot inspection problem caused by the difference in the distance between the ultraviolet curing energy tester and the curing equipment is solved, and the complete curing and bonding effect of the glue is improved.
Patent Information
- Application Number
- CN202422116307.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-29
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-08-29
AI Technical Summary
In traditional inspection methods, the difference in the distance between the ultraviolet curing energy tester and the ultraviolet lamp of the curing equipment leads to poor accuracy and reliability of the inspection results, and incomplete curing of the glue, which affects the bonding effect and product yield.
A detection fixture is designed, including a bearing part and a dispensing marking part, which simulates the actual dispensing position of the workpiece to be cured on the carrier plate, and the detection part is flush with the dispensing marking part in the fixed groove to ensure that the distance between the detection surface and the light source is consistent, and accurate inspection is achieved.
It improves the accuracy and reliability of the inspection results, ensures that the glue is completely cured, and improves the bonding effect and product yield.
Smart Images

Figure CN223056037U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of encapsulation technology, and particularly to an inspection jig and a curing device. Background Art
[0002] During the encapsulation process of electronic devices, generally, glue is used to bond the scattered components in the components to be cured. During operation, glue is first applied between two components, and then they are sent into a curing device for ultraviolet curing to achieve the bonding of the two components. Usually, before ultraviolet curing, it is necessary to debug and inspect the ultraviolet curing energy of the curing device first, so that the ultraviolet light energy provided by the curing device can completely cure the glue in the components to be cured.
[0003] In the related art, generally, an ultraviolet light energy tester is placed on an empty carrier plate and then sent into the curing device for inspection to obtain the energy required to cure the glue in the components to be cured. However, the distance between the glue to be cured on the carrier plate and the ultraviolet lamp of the curing device is greater than the distance between the ultraviolet light energy tester and the ultraviolet lamp of the curing device. This makes the curing energy obtained by inspection less than the actual curing energy required by the components to be cured, resulting in poor accuracy and reliability of the inspection results; moreover, there is a situation where the glue is not completely cured, seriously affecting the bonding effect of the components to be cured and resulting in a low product yield. Summary of the Utility Model
[0004] The present application provides an inspection jig and a curing device to solve the technical problems in the traditional inspection method, such as poor accuracy and reliability of the inspection results due to the inspection curing energy being less than the actual required curing energy, and the situation where the glue is not completely cured, resulting in poor bonding effect and low product yield.
[0005] To this end, in a first aspect, an embodiment of the present application provides an inspection jig, including a bearing part and a glue application marking part provided on the bearing part. The bearing part is provided with a standard surface and a fixing groove recessed downward from the standard surface. The glue application marking part is located between the bottom of the fixing groove and the standard surface, and the detection surface of the detection part accommodated in the fixing groove is flush with the plane where the glue application marking part is located.
[0006] In a possible implementation manner, in the height direction of the inspection jig, the distance between the plane where the glue application marking part is located and the standard surface is 1 mm to 3 mm.
[0007] In a possible implementation manner, the bearing part is further provided with a transverse groove, which runs through the bearing part along the width direction of the inspection jig and forms part of the fixing groove. In the length direction of the inspection jig, the groove width of the transverse groove is smaller than the width of the fixing groove.
[0008] In a possible implementation, an outwardly expanding arc surface is further provided on the bearing portion, and the outwardly expanding arc surface is located at the connection between the fixed groove and the standard surface.
[0009] In a possible implementation, a first inclined surface is further provided on the bearing portion. The first inclined surface is located at the connection between the transverse groove and the standard surface and is connected to the outwardly expanding arc surface; and / or,
[0010] A second inclined surface is further provided on the bearing portion. The second inclined surface is provided on the side of the bearing portion away from the standard surface, and the second inclined surface is located at the edge of the bearing portion and extends along the width direction of the inspection jig.
[0011] In a possible implementation, a lapping ear is further included. The lapping ear is connected to the bearing portion and extends outward along the length direction of the inspection jig.
[0012] In a possible implementation, the inspection jig further includes a flexible member, and the detection member is received in the fixed groove through the flexible member.
[0013] In a possible implementation, the inspection jig further includes a cushioning member. The cushioning member is provided in the fixed groove and is located below the detection member.
[0014] In a second aspect, the present application provides a curing device, including a curing member, a detection member, and the inspection jig as described above. The curing member has a curing area. The detection member is installed in the fixed groove of the inspection jig. When the inspection jig is moved to the curing area, the detection member can detect the curing energy at its detection surface.
[0015] In a possible implementation, a passage is provided on the curing member, and the passage passes through the curing area. The curing device further includes a transmission member. The transmission member passes through the curing member through the passage, and the inspection jig is placed on the transmission member.
[0016] According to the spot-check fixture and curing equipment provided by the embodiments of the present application, the spot-check fixture includes a bearing part and a dispensing marking part arranged on the bearing part. The bearing part is provided with a standard surface and a fixing groove recessed downward from the standard surface. The dispensing marking part is located between the bottom of the fixing groove and the standard surface, and the detection surface of the detection piece received in the fixing groove is flush with the plane where the dispensing marking part is located. The technical solution of the present application designs a spot-check fixture suitable for accurately spot-checking the curing energy of workpieces to be cured that have been dispensed. This spot-check fixture can simulate the situation of the carrier plate loading the workpieces to be cured. The standard surface on the bearing part is used to simulate the top surface of the carrier plate, and the dispensing marking part is used to represent the actual dispensing position of the workpieces to be cured on the carrier plate. The detection piece for detecting the curing energy is received in the fixing groove to realize the positioning of the detection piece and avoid displacement during the spot-check process, which affects the accuracy of the spot-check result. At the same time, the detection surface of the detection piece is on the same horizontal plane as the dispensing marking part in the spot-check fixture, so that the curing energy obtained by the detection piece during the spot-check can completely cure the glue on the workpieces to be cured at the same height, improve the curing effect, improve the bonding effect, and improve the product yield. In addition, since the spot-check height of the detection piece is the same as the actual height between the glue in the workpiece to be cured and the light source of the curing equipment, the curing energy obtained by the spot-check is the same as the actual required curing energy, and the spot-check result is accurate and reliable. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The drawings herein are incorporated into the specification and form a part of the specification, showing embodiments consistent with the present application, and are used together with the specification to explain the principles of the present application. In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, for those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings. One or more embodiments are exemplarily illustrated by the pictures in the corresponding drawings. These exemplary illustrations do not constitute limitations on the embodiments. Elements with the same reference numerals in the drawings are represented as similar elements, unless otherwise stated, and the drawings in the figures do not constitute a proportional limitation.
[0018] Figure 1 It is an assembly drawing of the spot-check fixture provided by the embodiments of the present application;
[0019] Figure 2 is Figure 1 a side view of
[0020] Figure 3 It is a three-dimensional structure schematic diagram of the spot-check fixture provided by the embodiments of the present application;
[0021] Figure 4 is Figure 3 a top view of
[0022] Figure 5 Another perspective schematic diagram of the inspection fixture provided by the embodiment of the present application;
[0023] Figure 6 Structural schematic diagram of the curing device provided by the embodiment of the present application.
[0024] Description of the reference numerals in the drawings:
[0025] 100, bearing part; 101, standard surface; 110, fixing groove; 120, transverse groove; 130, outward expanding arc surface; 140, first inclined surface; 150, second inclined surface;
[0026] 200, dispensing marking part;
[0027] 300, overlapping ear; 310, chamfer structure;
[0028] Z, height direction; X, width direction; Y, length direction;
[0029] 10, curing part; 20, detecting part; 21, detecting surface; 30, inspection fixture; 40, transmission part;
[0030] 1, carrier plate. Detailed implementation manners
[0031] To make the objectives, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Apparently, the described embodiments are some but not all of the embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present application without creative efforts shall fall within the protection scope of the present application.
[0032] The following disclosure provides many different embodiments or examples for implementing different structures of the present application. To simplify the disclosure of the present application, components and settings of specific examples are described below. Of course, they are only examples and are not intended to limit the present application. In addition, the present application may repeat reference numerals and / or letters in different examples. Such repetition is for the purpose of simplification and clarity and does not itself indicate the relationship between the various embodiments and / or settings discussed. In addition, the present application provides examples of various specific processes and materials, but those of ordinary skill in the art may be aware of the applicability of other processes and / or the use of other materials.
[0033] For ease of description, spatial relative relationship terms may be used in the text to describe the relative positional relationship or movement of one element or feature shown in the figure with respect to another element or feature. These relative relationship terms are, for example, "inside", "outside", "inner side", "outer side", "below", "beneath", "above", "over", "front", "rear", etc. Such spatial relative relationship terms are intended to include different orientations of the device during use or operation other than the orientations depicted in the figure. For example, if the device in the figure undergoes a position flip, attitude change, or motion state change, then these directional indications will change accordingly. For example, an element described as "below" or "beneath" other elements or features will then be oriented as "above" or "over" other elements or features. Therefore, the exemplary term "below" can include both the upper and lower orientations. The device can be oriented otherwise (rotated 90 degrees or in other directions) and the spatial relative relationship descriptors used in the text are interpreted accordingly.
[0034] Refer to Figures 1 to 5 , an inspection jig is provided in an embodiment of the present application, including a carrying part 100 and a dispensing and marking part 200 provided on the carrying part 100. A standard surface 101 and a fixing groove 110 recessed downward from the standard surface 101 are provided on the carrying part 100. The dispensing and marking part 200 is located between the bottom of the fixing groove 110 and the standard surface 101, and the detection surface 21 of the detection piece 20 received in the fixing groove 110 is flush with the plane where the dispensing and marking part 200 is located.
[0035] In this embodiment, an inspection jig 30 suitable for accurately inspecting the curing energy of a workpiece to be cured after dispensing is designed. The inspection jig 30 can simulate the situation of the carrier plate 1 loading the workpiece to be cured. The standard surface 101 on the carrying part 100 is used to simulate the top surface of the carrier plate 1, and the dispensing and marking part 200 is used to represent the actual dispensing position of the workpiece to be cured on the carrier plate 1. The detection piece 20 for detecting the curing energy is received in the fixing groove 110 to realize the positioning of the detection piece 20 and avoid displacement during the inspection process, which affects the accuracy of the inspection result. At the same time, the detection surface 21 of the detection piece 20 is on the same horizontal plane as the dispensing and marking part 200 in the inspection jig 30, so that the curing energy obtained by the detection piece 20 during inspection can completely cure the glue on the workpiece to be cured at the same height, improve the curing effect, improve the bonding effect, and improve the product yield. In addition, since the inspection height of the detection piece 20 is the same as the actual height between the glue on the workpiece to be cured and the light source of the curing device, the curing energy obtained by the inspection is the same as the actual required curing energy, and the inspection result is accurate and reliable.
[0036] In this embodiment, the inspection fixture 30 is configured as a composite member including at least a carrying part 100 and a dispensing marking part 200. The carrying part 100 can be a rectangular block structure with a certain thickness, and the fixing groove 110 provided thereon extends along the height direction Z of the inspection fixture 30. The fixing groove 110 can be formed as a cylindrical groove, and its radial dimension is slightly larger than the radial dimension of the test piece 20 to facilitate the operator to assemble the test piece 20. The dispensing marking part 200 can be a scale line obtained by etching, or a marking line or symbol obtained by pasting a sticker with a scale line, which is used to represent the actual dispensing position on the carrier plate 1. In this way, by simulating the actual dispensing position of the workpiece to be cured on the carrier plate 1 and the real inspection environment with the inspection fixture 30, when the test piece 20 received in the fixing groove 110 is inspected, the real curing energy required at the glue place of the workpiece to be cured on the carrier plate 1 can be restored to the greatest extent, improving the accuracy of the inspection result, the curing effect of the glue in the subsequent workpiece to be cured, the bonding effect of the workpiece to be cured, and the yield rate.
[0037] In a possible implementation manner, in the height direction Z of the inspection fixture 30, the distance between the plane where the dispensing marking part 200 is located and the reference plane 101 is 1 mm to 3 mm. With such a setting, the dispensing marking part 200 can be set at a suitable position on the carrying part 100 according to needs to adapt to carrier plates 1 with different heights and workpieces to be cured with different dispensing heights, increasing the applicable range. For example but not limited to, the distance between the plane where the dispensing marking part 200 is located and the reference plane 101 is 2 mm.
[0038] In a possible implementation manner, a transverse groove 120 is further provided on the carrying part 100. The transverse groove 120 penetrates the carrying part 100 along the width direction X of the inspection fixture 30 and forms part of the fixing groove 110. In the length direction Y of the inspection fixture 30, the groove width of the transverse groove 120 is smaller than the width of the fixing groove 110.
[0039] In this embodiment, the specific configuration of the carrying part 100 is further optimized. Specifically, the inspection fixture 30 is configured as a composite member including at least a carrying part 100, a dispensing marking part 200 and a transverse groove 120. The transverse groove 120 can be a rectangular groove, which penetrates part of the fixing groove 110 along the width direction X of the inspection fixture 30, and the groove width of the transverse groove 120 is smaller than the diameter of the fixing groove 110. In this way, a nearly cross-shaped groove is formed on the carrying part 100, which not only facilitates the operator to pick up the test piece 20 from both sides of the transverse groove 120, improving the convenience of picking up the test piece 20, but also can fix and limit the position of the test piece 20 through part of the fixing groove 110 extending along the length direction Y of the inspection fixture 30, realizing the limit of the test piece 20. The inspection fixture 30 provided in this example facilitates the operator to pick up the test piece 20 from the side of the reference plane 101, and the operation is simple.
[0040] In a possible implementation, an outwardly expanding arc surface 130 is further provided on the bearing portion 100, and the outwardly expanding arc surface 130 is located at the connection between the fixed groove 110 and the standard surface 101.
[0041] In this embodiment, the specific configuration of the bearing portion 100 is further optimized. Specifically, the inspection jig 30 is configured to include at least a composite member of the bearing portion 100, the dispensing marking portion 200, the transverse groove 120, and the outwardly expanding arc surface 130. The outwardly expanding arc surface 130 may be a minor arc surface, which is provided between the standard surface 101 and the side wall surface of the fixed groove 110; in the direction from the bottom wall of the fixed groove 110 to the standard surface 101, the outwardly expanding arc surface 130 gradually expands outward and forms a flared opening at the top of the fixed groove 110. In this way, during the assembly process of the test piece 20, the situation where the test piece 20 impacts on the top edge of the fixed groove 110 and causes damage can be avoided, and the use safety of the inspection jig 30 is improved. In addition, the setting of the outwardly expanding arc surface 130 can also reduce the risk that the hand of the operator is scratched by the top edge of the fixed groove 110, improving the use safety.
[0042] In one example, the dispensing marking portion 200 may be provided on the outwardly expanding arc surface 130 to prevent the test piece 20 from rubbing against the dispensing marking portion 200 during the assembly process, resulting in blurred scale and unclear marking, and extending the service life of the dispensing marking portion 200.
[0043] In one example, affected by the setting position of the transverse groove 120, the outwardly expanding arc surface 130 is provided with two sections, and the two ends of the outwardly expanding arc surface 130 are oppositely arranged on both sides of the transverse groove 120 to jointly form a position binding portion for the test piece 20 with the corresponding side wall of the fixed groove 110. The bearing portion 100 provided in this example can improve the force uniformity of the test piece 20, improve the stability of the inspection jig 30 for the test piece 20, improve the stability and reliability of the inspection operation, and improve the accuracy and reliability of the inspection result.
[0044] In a possible implementation, a first inclined surface 140 is further provided on the bearing portion 100, and the first inclined surface 140 is located at the connection between the transverse groove 120 and the standard surface 101 and is connected to the outwardly expanding arc surface 130.
[0045] In this embodiment, the specific configuration of the bearing part 100 is further optimized. Specifically, the inspection jig 30 is configured as a composite member including at least the bearing part 100, the dispensing marking part 200, the transverse groove 120, the outwardly expanding arc surface 130, and the first inclined surface 140. The first inclined surface 140 can be a flat surface or a convex arc surface, and is disposed between the standard surface 101 and the side wall surface of the transverse groove 120; in the direction from the bottom wall of the fixing groove 110 to the standard surface 101, the first inclined surface 140 gradually expands outward and forms a flared opening at the top of the transverse groove 120. In this way, during the process of picking up the test piece 20, the situation where the test piece 20 impacts on the top edge of the transverse groove 120 and is damaged can be avoided, improving the protection of the test piece 20. In addition, the setting of the first inclined surface 140 can also reduce the risk that the operator is scratched by the top edge of the transverse groove 120 when picking up the test piece 20 from the transverse groove 120, improving the use safety of the inspection jig 30.
[0046] In one example, four first inclined surfaces 140 are provided. One first inclined surface 140 is connected to each of the opposite sides of one outwardly expanding arc surface 130, and the two first inclined surfaces 140 on this side are on the same straight line. That is to say, the first inclined surface 140, the outwardly expanding arc surface 130, and the other first inclined surface 140 are arranged and connected in sequence along the width direction X of the inspection jig 30 to form a chamfer structure at the top of the cross-shaped groove, improving the use safety of the inspection jig 30.
[0047] In a possible implementation manner, a second inclined surface 150 is further provided on the bearing part 100. The second inclined surface 150 is disposed on the side of the bearing part 100 away from the standard surface 101, and the second inclined surface 150 is located at the edge of the bearing part 100 and extends along the width direction X of the inspection jig 30.
[0048] In this embodiment, the specific configuration of the bearing part 100 is further optimized. Specifically, the inspection jig 30 is configured as a composite member including at least the bearing part 100, the dispensing marking part 200, the transverse groove 120, the outwardly expanding arc surface 130, and the second inclined surface 150. The second inclined surface 150 can be a flat surface or a convex arc surface, and is disposed at the bottom of the bearing part 100 and is located outside the first inclined surface 140 and the outwardly expanding arc surface 130; in the direction from the bottom wall of the fixing groove 110 to the standard surface 101, the second inclined surface 150 gradually expands outward, so that the bottom edge of the bearing part 100 can have a smooth transition, avoiding the inspection jig 30 from scratching other components, such as the track, the carrier plate 1, etc., improving the use safety of the inspection jig 30.
[0049] In a possible implementation manner, a lapping ear 300 is further included. The lapping ear 300 is connected to the bearing part 100 and extends outward along the length direction Y of the inspection jig 30.
[0050] In this embodiment, the specific configuration of the inspection jig 30 is further optimized. Specifically, the inspection jig 30 is configured as a combined component including at least a bearing portion 100, a dispensing marking portion 200, and a lapping ear 300. The lapping ear 300 can be a plate-like structure, which is folded outward and vertically connected to the side wall of the bearing portion 100 to form an internal corner mounting portion there, facilitating the mounting of the entire inspection jig 30 on the track. The lapping ear 300 can be provided in a small section in the width direction X of the bearing portion 100, so as to achieve the lapping of the inspection jig 30 and the track, reduce the material used for the lapping ear 300, lower the cost, reduce the overall weight of the inspection jig 30, and facilitate subsequent handling and transfer. The inspection jig 30 provided in this example is light in weight and convenient for transfer.
[0051] Of course, in other embodiments, the lapping ear 300 can also be provided in the entire width direction X of the bearing portion 100 to improve the lapping stability and reliability of the inspection jig 30 with the track and improve the accuracy of the inspection result. The inspection jig 30 provided in this example has strong lapping stability and high accuracy of the inspection result.
[0052] In one example, a chamfer structure 310 is provided at the corner of the lapping ear 300 away from the bearing portion 100 to avoid scratching people; at the same time, it can also prevent the sharp corner from scratching the guide rail or other components and improve the use safety.
[0053] In a possible implementation manner, the inspection jig 30 further includes a flexible member (not shown in the figure), and the detecting member 20 is received in the fixing groove 110 through the flexible member.
[0054] In this embodiment, the specific configuration of the inspection jig 30 is further optimized. Specifically, the inspection jig 30 is configured as a combined component including at least a bearing portion 100, a dispensing marking portion 200, and a flexible member. The flexible member can be an elastic rubber ring or a soft rubber elastomer, etc. It can be sleeved on the outer side of the detecting member 20 and abutted against the inner wall of the fixing groove 110 to limit and fasten the position of the detecting member 20 in the radial direction of the fixing groove 110, avoid the detecting member 20 from shaking and moving during the movement, and improve the detection stability and reliability of the detecting member 20.
[0055] Of course, in other embodiments, the flexible member can also be an arc segment, which can be inserted into the side wall of the fixing groove 110 by means of clamping and protrude radially inward from the fixing groove 110; at this time, only the detecting member 20 needs to be placed in the fixing groove 110, and the flexible member protruding radially inward will abut against the outer wall of the detecting member 20 and firmly assemble the detecting member 20 on the bearing portion 100.
[0056] In a possible implementation, the inspection fixture 30 further includes a cushioning member (not shown in the figure), which is disposed in the fixing groove 110 and is located below the detecting member 20.
[0057] In this embodiment, the specific configuration of the inspection fixture 30 is further optimized. Specifically, the inspection fixture 30 is configured to be at least a combined component including a carrying portion 100, a dispensing and marking portion 200, and a cushioning member. The cushioning member can be a washer or a backing plate, etc., and is flexibly disposed at the bottom of the fixing groove 110 of the carrying portion 100 for adjusting the height of the detecting member 20, so that the inspection fixture 30 can be applicable to detecting members 20 of different heights, thereby improving the applicable range. In addition, the cushioning member can also be used to detect the radiation curing energy required by the detecting member 20 for glues at different heights, increasing the simulation scenario range of the inspection fixture 30 and improving the inspection performance of the inspection fixture 30.
[0058] In addition, as Figure 6 shown, the present application provides a curing device, which includes a curing member 10, a detecting member 20, and the inspection fixture 30 as described above. The curing member 10 has a curing area. The detecting member 20 is installed in the fixing groove 110 of the inspection fixture 30. When the inspection fixture 30 is moved to the curing area, the detecting member 20 can detect the curing energy at its detecting surface 21.
[0059] In this embodiment, a curing device for inspecting the curing energy of the curing member 10 by using the inspection fixture 30 is provided. The curing device is configured to be at least a combined component including a curing member 10, a detecting member 20, and the inspection fixture 30. The curing member 10 can be a box structure, in which a control main board, a circuit, a light source, an operation module, etc. are provided. An operator can set the size of the subsequent curing energy for curing the glue in the workpiece to be cured on the carrier 1 on the operation module of the curing member 10 according to the curing energy value inspected on the detecting member 20. The size of the curing energy can be calibrated by the operation power of the light source. The detecting member 20 can be an ultraviolet light energy tester, whose top surface is the detecting surface 21. A sensor and a display screen are provided on the detecting surface 21. A main control board is provided in the detecting member 20, and the main control board is electrically connected to the sensor and the display screen respectively. The above-mentioned sensor is used to receive the light energy signal transmitted from the curing member 10 and feedback the light energy signal to the main control board. The main control board displays the optimal curing energy value on the display screen according to the light energy signal for the operator's reference. The specific structure of the inspection fixture 30 refers to the above embodiment. Since this curing device adopts all the technical solutions of the above all embodiments, it has at least all the beneficial effects brought by the technical solutions of the above embodiments, which will not be elaborated one by one here. The curing device provided in this example has a simple structure, provides accurate curing energy, has a good curing effect, there is no incomplete curing situation, and the bonding effect of the workpiece to be cured is good.
[0060] In a possible implementation, a passage is provided on the curing member 10. The passage passes through the curing area. The curing device further includes a transmission member 40. The transmission member 40 passes through the curing member 10 through the passage. The inspection jig 30 is placed on the transmission member 40.
[0061] In this embodiment, the specific configuration of the curing device is further optimized. Specifically, the curing device is configured to include at least a combination component of a curing member 10, a detection member 20, an inspection jig 30, and a transmission member 40. The transmission member 40 can be a track, which includes two guide rails that extend synchronously and are spaced apart from each other, so as to realize intelligent inspection and intelligent curing of the curing device through the transmission member 40, and improve the inspection efficiency and curing efficiency. A passage is provided at the bottom of the curing member 10 and penetrates through it. The width dimension of the passage is equivalent to the width dimension of the transmission member 40 to facilitate the passage of the transmission member 40; the height dimension of the passage is greater than the width dimension of the transmission member 40 to facilitate the installation of other integrated components or components to be cured on the transmission member 40. The curing device provided in this example has high curing and inspection efficiency, high accuracy of inspection results, high curing efficiency, good curing effect, high quality of cured products, and high yield.
[0062] In an example, a light source is provided at the top of the passage. The light source is located above the curing area. The detection member 20 is used to detect the light energy radiated by the light source onto the detection surface 21. The curing device is configured to include at least a combination component of a curing member 10, a detection member 20, an inspection jig 30, a transmission member, and a light source. The light source can be an ultraviolet lamp, which is provided at the top of the passage and has a certain height distance from the transmission member 40 to avoid the interference of the transmission member 40 with the radiation curing energy of the light source. At the same time, accurate curing energy can be provided to the inspection jig 30 or the carrier plate 1 mounted on the transmission member 40 through this distance, improving the curing effect.
[0063] It should be understood that the terms used in this specification are only for the purpose of describing specific example embodiments and are not intended to be limiting. Unless the context clearly indicates otherwise, the singular forms "a", "an", and "the" as used in this specification may also include the plural forms. The terms "including", "comprising", "containing", and "having" are inclusive and therefore specify the presence of the stated features, steps, operations, elements, and / or components, but do not preclude the presence or addition of one or more other features, steps, operations, elements, components, and / or combinations thereof. The method steps, processes, and operations described in this specification are not to be construed as necessarily requiring them to be performed in the specific order described or illustrated, unless the execution order is clearly indicated. It should also be understood that additional or alternative steps may be used.
[0064] Although terms such as first, second, third, etc. may be used herein to describe multiple elements, components, regions, layers, and / or sections, these elements, components, regions, layers, and / or sections should not be limited by these terms. These terms may be used only to distinguish one element, component, region, layer, or section from another region, layer, or section. Unless the context clearly indicates otherwise, terms such as "first", "second", and other numerical terms do not imply an order or sequence when used in the text. Thus, the first element, component, region, layer, or section discussed below may be referred to as the second element, component, region, layer, or section without departing from the teachings of the exemplary embodiments.
[0065] The above are only specific embodiments of the present application, enabling those skilled in the art to understand or implement the present application. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to these embodiments shown herein, but rather will conform to the broadest scope consistent with the principles and novel features claimed herein.
Claims
1. A spot inspection jig, characterized in that, It includes a carrying part (100) and a dispensing marking part (200) provided on the carrying part (100). A standard surface (101) and a fixing groove (110) recessed downward from the standard surface (101) are provided on the carrying part (100). The dispensing marking part (200) is located between the bottom of the fixing groove (110) and the standard surface (101). The detection surface (21) of a detection part (20) received in the fixing groove (110) is flush with the plane where the dispensing marking part (200) is located.
2. The inspection jig according to claim 1, wherein In the height direction (Z) of the spot inspection jig (30), the distance between the plane where the dispensing marking part (200) is located and the standard surface (101) is 1 mm to 3 mm.
3. The inspection jig according to claim 1, wherein A transverse groove (120) is further provided on the carrying part (100). The transverse groove (120) penetrates the carrying part (100) along the width direction (X) of the spot inspection jig (30) and forms part of the fixing groove (110). In the length direction (Y) of the spot inspection jig (30), the groove width of the transverse groove (120) is smaller than the width of the fixing groove (110).
4. The spot inspection fixture according to claim 3, characterized in that, An outwardly expanding arc surface (130) is further provided on the carrying part (100). The outwardly expanding arc surface (130) is located at the connection between the fixing groove (110) and the standard surface (101).
5. The spot inspection jig according to claim 4, characterized in that, A first inclined surface (140) is further provided on the carrying part (100). The first inclined surface (140) is located at the connection between the transverse groove (120) and the standard surface (101) and is connected to the outwardly expanding arc surface (130); and / or, A second inclined surface (150) is further provided on the carrying part (100). The second inclined surface (150) is provided on the side of the carrying part (100) away from the standard surface (101). The second inclined surface (150) is located at the edge of the carrying part (100) and extends along the width direction (X) of the spot inspection jig (30).
6. The spot inspection jig according to claim 1, characterized in that, It further includes a lapping ear (300). The lapping ear (300) is connected to the carrying part (100) and extends outward along the length direction (Y) of the spot inspection jig (30).
7. The inspection jig according to claim 1, characterized in that, The spot inspection jig (30) further includes a flexible part. The detection part (20) is received in the fixing groove (110) through the flexible part.
8. The inspection jig according to claim 1, wherein, The spot inspection jig (30) further includes a cushioning part. The cushioning part is provided in the fixing groove (110) and is located below the detection part (20).
9. A curing device, characterized in that, It includes a curing part (10), a detection part (20), and the spot inspection jig (30) according to any one of claims 1 to 8. The curing part (10) has a curing area. The detection part (20) is installed in the fixing groove (110) of the spot inspection jig (30). When the spot inspection jig (30) is moved to the curing area, the detection part (20) can detect the curing energy at its detection surface (21).
10. The curing device according to claim 9, characterized in that, The cured part (10) is provided with a passageway, and the passageway passes through the curing area. The curing device further includes a transmission member (40), and the transmission member (40) passes through the cured part (10) through the passageway, and the inspection jig (30) is placed on the transmission member (40).