LATERALLY MOUNTED AND PACKAGED STRUCTURE AND MANUFACTURING METHOD THEREOF
20230223321 ยท 2023-07-13
Assignee
Inventors
Cpc classification
H01L2224/16225
ELECTRICITY
H01L21/4853
ELECTRICITY
H01L23/49805
ELECTRICITY
International classification
H01L23/498
ELECTRICITY
Abstract
A manufacturing method includes performing imposition on at least two discrete double-side packaged structures such that lateral electrical connection structures located on the same side of each of the at least two discrete double-side packaged structures are coplanar; and electrically mounting a first component onto lateral electrical connection structures on the first side, where a double-side packaged structure includes a substrate, the lateral electrical connection structures are formed on the first face and the second face of the substrate, and the first face is opposite to the second face and is adjacent to the first side.
Claims
1. A manufacturing method of a laterally mounted and packaged structure, comprising: performing imposition on at least two discrete double-side packaged structures such that lateral electrical connection structures located on a same side of each of the at least two discrete double-side packaged structures are coplanar; and electrically mounting a first component onto lateral electrical connection structures on a first side of the each of the at least two discrete double-side packaged structures, wherein the each of the at least two discrete double-side packaged structures comprise a substrate, lateral electrical connection structures of the each of the at least two discrete double-side packaged structures are respectively formed on a first face and a second face of the substrate, and the first face is opposite to the second face and is adjacent to the first side.
2. The manufacturing method according to claim 1, before electrically mounting the first component onto the lateral electrical connection structures on the first side of the each of the at least two discrete double-side packaged structures, the manufacturing method further comprising: forming a first flux layer on the lateral electrical connection structures on the first side; wherein electrically mounting the first component onto the lateral electrical connection structures on the first side of the each of the at least two discrete double-side packaged structures comprise: soldering the first component onto the first flux layer on the first side.
3. The manufacturing method according to claim 1, after performing the imposition on the at least two discrete double-side packaged structures such that the lateral electrical connection structures located on the same side of the each of the at least two discrete double-side packaged structures are coplanar, the manufacturing method further comprising: forming a second flux layer on lateral electrical connection structures on a second side of the each of the at least two discrete double-side packaged structures; and soldering a second component onto the second flux layer on the second side wherein the second side is opposite to the first side.
4. The manufacturing method according to claim 1, after performing the imposition on the at least two discrete double-side packaged structures such that the lateral electrical connection structures located on the same side of the each of the at least two discrete double-side packaged structures are coplanar, the manufacturing method further comprising: forming a third flux layer on lateral electrical connection structures on a third side of the each of the at least two discrete double-side packaged structures; and soldering a third component onto the third flux layer on the third side; wherein the third side is adjacent to the first side.
5. The manufacturing method according to claim 1, wherein performing the imposition on the at least two discrete double-side packaged structures such that the lateral electrical connection structures located on the same side of the each of the at least two discrete double-side packaged structures are coplanar comprises: placing the at least two discrete double-side packaged structures into a jig, and performing the imposition by use of the jig such that the lateral electrical connection structures located on the same side of the each of the at least two discrete double-side packaged structures are coplanar.
6. The manufacturing method according to claim 5, wherein the substrate is perpendicular to a work surface of the jig.
7. The manufacturing method according to claim 5, after electrically mounting the first component onto the lateral electrical connection structures on the first side of the each of the at least two discrete double-side packaged structures, the manufacturing method further comprising: moving, away from the jig, laterally mounted and packaged structures formed by being laterally mounted.
8. The manufacturing method according to claim 1, before performing the imposition on the at least two discrete double-side packaged structures such that the lateral electrical connection structures located on the same side of each of the at least two double-side packaged structures are coplanar, the manufacturing method further comprising: splitting substrates whose two faces are mounted with components to form individual double-side packaged structures, and exposing the lateral electrical connection structures.
9. The manufacturing method according to claim 8, before splitting the substrates whose two faces are mounted with the components to form the individual double-side packaged structures, and exposing the lateral electrical connection structures, the manufacturing method further comprising: mounting components onto first faces of the substrates to form lateral electrical connection structures; molding the first faces; mounting components onto second faces of the substrates to form lateral electrical connection structures, wherein the first faces are opposite to the second faces; and molding the second faces.
10. A laterally mounted and packaged structure manufactured by a manufacturing method, wherein the laterally mounted and packaged structure comprises a double-side packaged structure, the double-side packaged structure comprises a substrate and lateral electrical connection structures, the lateral electrical connection structures are respectively formed on a first face and a second face of the substrate, at least part of the lateral electrical connection structures are located on a first side, the first face is opposite to the second face and is adjacent to the first side; and the laterally mounted and packaged structure further comprises a first component located on the first side, and the first component is electrically mounted onto lateral electrical connection structures on the first side; wherein the manufacturing method comprises: performing imposition on at least two discrete double-side packaged structures such that lateral electrical connection structures located on a same side of each of the at least two discrete double-side packaged structures are coplanar; and electrically mounting a first component onto lateral electrical connection structures on a first side of the each of the at least two discrete double-side packaged structures.
11. The laterally mounted and packaged structure according to claim 10, further comprising a first flux layer, wherein the first flux layer is located between the lateral electrical connection structures and the first component, and is used for electrically connecting the lateral electrical connection structures to the first component.
12. The laterally mounted and packaged structure according to claim 10, wherein the lateral electrical connection structures comprise a metal column, and the metal column is electrically connected to the substrate; or the lateral electrical connection structures comprise an adapter substrate and a metal column, and the metal column is electrically connected to the substrate via the adapter substrate.
13. The laterally mounted and packaged structure according to claim 10, before electrically mounting the first component onto the lateral electrical connection structures on the first side of the each of the at least two discrete double-side packaged structures, the manufacturing method further comprises: forming a first flux layer on the lateral electrical connection structures on the first side; wherein electrically mounting the first component onto the lateral electrical connection structures on the first side of the each of the at least two discrete double-side packaged structures comprise: soldering the first component onto the first flux layer on the first side.
14. The laterally mounted and packaged structure according to claim 10, after performing the imposition on the at least two discrete double-side packaged structures such that the lateral electrical connection structures located on the same side of the each of the at least two discrete double-side packaged structures are coplanar, the manufacturing method further comprises: forming a second flux layer on lateral electrical connection structures on a second side of the each of the at least two discrete double-side packaged structures; and soldering a second component onto the second flux layer on the second side wherein the second side is opposite to the first side.
15. The laterally mounted and packaged structure according to claim 10, after performing the imposition on the at least two discrete double-side packaged structures such that the lateral electrical connection structures located on the same side of the each of the at least two discrete double-side packaged structures are coplanar, the manufacturing method further comprising: forming a third flux layer on lateral electrical connection structures on a third side of the each of the at least two discrete double-side packaged structures; and soldering a third component onto the third flux layer on the third side; wherein the third side is adjacent to the first side.
16. The laterally mounted and packaged structure according to claim 10, wherein performing the imposition on the at least two discrete double-side packaged structures such that the lateral electrical connection structures located on the same side of the each of the at least two discrete double-side packaged structures are coplanar comprises: placing the at least two discrete double-side packaged structures into a jig, and performing the imposition by use of the jig such that the lateral electrical connection structures located on the same side of the each of the at least two discrete double-side packaged structures are coplanar.
17. The laterally mounted and packaged structure according to claim 16, wherein the substrate is perpendicular to a work surface of the jig.
18. The laterally mounted and packaged structure according to claim 16, after electrically mounting the first component onto the lateral electrical connection structures on the first side of the each of the at least two discrete double-side packaged structures, the manufacturing method further comprising: moving, away from the jig, laterally mounted and packaged structures formed by being laterally mounted.
19. The laterally mounted and packaged structure according to claim 10, before performing the imposition on the at least two discrete double-side packaged structures such that the lateral electrical connection structures located on the same side of each of the at least two double-side packaged structures are coplanar, the manufacturing method further comprising: splitting substrates whose two faces are mounted with components to form individual double-side packaged structures, and exposing the lateral electrical connection structures.
20. The laterally mounted and packaged structure according to claim 19, before splitting the substrates whose two faces are mounted with the components to form the individual double-side packaged structures, and exposing the lateral electrical connection structures, the manufacturing method further comprising: mounting components onto first faces of the substrates to form lateral electrical connection structures; molding the first faces; mounting components onto second faces of the substrates to form lateral electrical connection structures, wherein the first faces are opposite to the second faces; and molding the second faces.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION
[0027] The present disclosure is further described hereinafter in detail in conjunction with drawings and embodiments. It is to be understood that the embodiments described herein are merely intended to explain the present disclosure. Additionally, it is to be noted that for ease of description, only part, not all, of the structures related to the present disclosure are illustrated in the drawings.
[0028]
[0029] In S101, imposition is performed on at least two discrete double-side packaged structures such that lateral electrical connection structures located on the same side of each of the at least two discrete double-side packaged structures are coplanar.
[0030] Referring to
[0031] Referring to
[0032] Referring to
[0033] Referring to
[0034] In S102, a first component 113 is electrically mounted onto lateral electrical connection structures on the first side.
[0035] Referring to
[0036] In the manufacturing method of a laterally mounted and packaged structure provided by the embodiments of the present disclosure, the imposition is performed on the at least two discrete double-side packaged structures such that the lateral electrical connection structures located on the same side of each of the at least two discrete double-side packaged structures are coplanar, one of the lateral electrical connection structures on the substrate 101 is electrically led out to the first side of a respective double-side packaged structure, and the first side is mounted with the first component 113 so that a laterally mounted and packaged structure is formed.
[0037] In other embodiments, a second side face may be mounted with a second component, a third side face may be mounted with a third component, and a fourth side face may be mounted with a fourth component. Alternatively, at least two of the first component, the second component, the third component and the fourth component are mounted.
[0038] Components (including the first component, the second component, the third component and the fourth component) may be mounted in various manners, for example, surface mounting, flip-chip bonding and wire bonding. Embodiments are illustrated using an example in which a component is mounted onto a side face by being reflowed by use of a flux.
[0039]
[0040] In S201, imposition is performed on at least two discrete double-side packaged structures such that lateral electrical connection structures located on the same side of each of the at least two discrete double-side packaged structures are coplanar.
[0041] In S202, a first flux layer 114 is formed on lateral electrical connection structures on a first side.
[0042] Referring to
[0043] In S203, a first component 113 is soldered onto the first flux layer 114 on the first side.
[0044] Referring to
[0045] In the manufacturing method of a laterally mounted and packaged structure provided by the embodiments of the present disclosure, the imposition is performed on the at least two discrete double-side packaged structures such that the lateral electrical connection structures located on the same side of each of the at least two discrete double-side packaged structures are coplanar, the first flux layer 114 is formed on the lateral electrical connection structures on the first side, and the first component 113 is soldered onto the first flux layer 114 on the first side so that one of the lateral electrical connection structures on the substrate 101 can be electrically led out to the first side of a respective double-side packaged structure, and the first side is mounted with the first component 113, thus forming a laterally mounted and packaged structure.
[0046] Optionally, the preceding step S201 may be refined into the following steps: The at least two discrete double-side packaged structures are placed into a jig, and the imposition is performed by use of the jig such that the lateral electrical connection structures in the double-side packaged structures located on the same side are coplanar.
[0047] Optionally, referring to
[0048] Optionally, after the preceding step S203, the manufacturing method of a laterally mounted and packaged structure further includes that the laterally mounted and packaged structures formed by being laterally mounted are moved away from the jig. That is, after the first component 113 is laterally mounted, the jig for securing the product is moved, and the formed laterally mounted and packaged structure array is taken out of the jig by use of such manners as an automatic picker or a mechanical arm to form individual laterally mounted and packaged structures as shown in
[0049]
[0050] In S301, imposition is performed on at least two discrete double-side packaged structures such that lateral electrical connection structures located on the same side of each of the at least two discrete double-side packaged structures are coplanar.
[0051] In S302, a first flux layer 114 is formed on lateral electrical connection structures on a first side.
[0052] In S303, a first component 113 is soldered onto the first flux layer 114 on the first side.
[0053] In S304, a second flux layer 116 is formed on lateral electrical connection structures on a second side.
[0054] Referring to
[0055] In S305, a second component 115 is soldered onto the second flux layer 116 on the second side.
[0056] Referring to
[0057] In this embodiment of the present disclosure, after the first component 113 is soldered onto the first flux layer 114 on the first side, the second flux layer 116 is formed on the lateral electrical connection structures on the second side, and the second component 115 is soldered onto the second flux layer 116 on the second side. Therefore, the first side is mounted with the first component 113, and the second side is mounted with the second component 115 so that a laterally mounted and packaged structure whose two opposite side faces are each mounted with the components is formed.
[0058]
[0059] In 401, imposition is performed on at least two discrete double-side packaged structures such that lateral electrical connection structures located on the same side of each of the at least two discrete double-side packaged structures are coplanar.
[0060] In S402, a first flux layer 114 is formed on lateral electrical connection structures on a first side, and a second flux layer 116 is formed on lateral electrical connection structures on a second side.
[0061] In S403, a first component 113 is soldered onto the first flux layer 114 on the first side, and a second component 115 is soldered onto the second flux layer 116 on the second side.
[0062] In this embodiment of the present disclosure, after the first flux layer 114 is formed on the lateral electrical connection structures on the first side, and the second flux layer 116 is formed on the lateral electrical connection structures on the second side, the first component 113 is soldered onto the first flux layer 114 on the first side, and the second component 115 is soldered onto the second flux layer 116 on the second side. Therefore, the first side is mounted with the first component 113, and the second side is mounted with the second component 115 so that a laterally mounted and packaged structure is formed.
[0063]
[0064] In S501, imposition is performed on at least two discrete double-side packaged structures such that where lateral electrical connection structures located on the same side of each of the at least two discrete double-side packaged structures are coplanar.
[0065] In S502, a first flux layer 114 is formed on lateral electrical connection structures on a first side.
[0066] In S503, a first component 113 is soldered onto the first flux layer 114 on the first side.
[0067] In S504, a third flux layer 118 is formed on lateral electrical connection structures on a third side.
[0068] Referring to
[0069] In S505, a third component 117 is soldered onto the third flux layer 118 on the third side.
[0070] Referring to
[0071] In this embodiment of the present disclosure, after the first component 113 is soldered onto the first flux layer 114 on the first side, the third flux layer 118 is formed on the lateral electrical connection structures on the third side, and the third component 117 is soldered onto the third flux layer 118 on the third side. Therefore, the first side is mounted with the first component 113, and the third side is mounted with the third component 117 so that a laterally mounted and packaged structure whose two adjacent side faces are each mounted with the components is formed.
[0072]
[0073] In S601, imposition is performed on at least two discrete double-side packaged structures such that lateral electrical connection structures located on the same side of each of the at least two discrete double-side packaged structures are coplanar.
[0074] In S602, a first flux layer 114 is formed on lateral electrical connection structures on a first side, and a third flux layer 118 is formed on lateral electrical connection structures on a third side.
[0075] In S603, a first component 113 is soldered onto the first flux layer 114 on the first side, and a third component 117 is soldered onto the third flux layer 118 on the third side.
[0076] In this embodiment of the present disclosure, after the first flux layer 114 is formed on the lateral electrical connection structures on the first side, and the third flux layer 118 is formed on the lateral electrical connection structures on the third side, the first component 113 is soldered onto the first flux layer 114 on the first side, and the third component 117 is soldered onto the third flux layer 118 on the third side. Therefore, the first side is mounted with the first component 113, and the third side is mounted with the third component 117 so that a laterally mounted and packaged structure is formed.
[0077]
[0078] In one embodiment, after the first flux layer 114, the second flux layer 116 and the third flux layer 118 may be formed first, the first component 113 is soldered onto the first flux layer 114 on the first side, the second component 115 is soldered onto the second flux layer 116 on the second side, and the third component 117 is soldered onto the third flux layer 118 on the third side.
[0079] In another embodiment, after the first flux layer 114 is formed, the first component 113 is soldered onto the first flux layer 114 on the first side; after the second flux layer 116 is formed, the second component 115 is soldered onto the second flux layer 116 on the second side; and after the third flux layer 118 is formed, the third component 117 is soldered onto the third flux layer 118 on the third side.
[0080]
[0081] In one embodiment, after the first flux layer 114, the second flux layer 116, the third flux layer 118 and a fourth flux layer 120 may be formed first, the first component 113 is soldered onto the first flux layer 114 on the first side, the second component 115 is soldered onto the second flux layer 116 on the second side, the third component 117 is soldered onto the third flux layer 118 on the third side, and the fourth component 119 is soldered onto the fourth flux layer 120 on the fourth side.
[0082] In another embodiment, after the first flux layer 114 is formed, the first component 113 is soldered onto the first flux layer 114 on the first side; after the second flux layer 116 is formed, the second component 115 is soldered onto the second flux layer 116 on the second side; after the third flux layer 118 is formed, the third component 117 is soldered onto the third flux layer 118 on the third side; and after the fourth flux layer 120 is formed, the fourth component 119 is soldered onto the fourth flux layer 120 on the fourth side.
[0083]
[0084] In S701, components are mounted onto first faces of substrates 101 to form lateral electrical connection structures.
[0085] Referring to
[0086] In S702, the first faces are molded.
[0087] Referring to
[0088] In S703, components are mounted onto second faces of the substrates 101 to form lateral electrical connection structures, and the first faces are opposite to the second faces.
[0089] Referring to
[0090] In S704, the second faces are molded.
[0091] Referring to
[0092] In S705, the substrates 101 whose two faces are mounted with the components are split to form individual double-side packaged structures, and lateral electrical connection structures are exposed.
[0093] Referring to
[0094] In the manufacturing method of a double-side packaged structure provided by this embodiment of the present disclosure, the components are mounted onto the first faces of the substrates 101 to form the lateral electrical connection structures, the first faces are molded, the components are mounted onto the second faces of the substrates 101 to form the lateral electrical connection structures, the first faces are opposite to the second faces, the second faces are molded, the substrates 101 whose two faces are mounted with the components are split to form individual double-side packaged structures, and the lateral electrical connection structures are exposed.
[0095] Embodiments of the present disclosure further provided a laterally mounted and packaged structure manufactured by the preceding manufacturing method. Referring to
[0096] The first side of the double-side packaged structure is provided with at least one first component 113. Exemplarily, referring to
[0097] Embodiments of the present disclosure provide a laterally mounted and packaged structure. One of the lateral electrical connection structures on the substrate 101 is electrically led out to the first side of a respective double-side packaged structure, and the first side is mounted with the first component 113 so that a laterally mounted and packaged structure is formed.
[0098] Optionally, referring to
[0099] Optionally, referring to
[0100] The second side of the double-side packaged structure is provided with at least one second component 115. Exemplarily, referring to
[0101] Optionally, referring to
[0102] The third side of the double-side packaged structure is provided with at least one third component 117. Exemplarily, referring to
[0103] Optionally, referring to
[0104] Exemplarily, referring to
[0105] Optionally, referring to
[0106] The fourth side of the double-side packaged structure is provided with at least one fourth component 119. Exemplarily, referring to
[0107]
[0108] Exemplarily, referring to
[0109]
[0110] Exemplarily, referring to
[0111] Exemplarily, referring to
[0112] Optionally, in the direction perpendicular to the substrate 101, the first-face lateral electrical connection structure 102 has the height less than the thickness of the first face molding glue 106, and the perpendicular distance between the first-face lateral electrical connection structure 102 and the first face molding glue 106 is greater than 0.05 mm. In the direction perpendicular to the substrate 101, the second-face lateral electrical connection structure 107 has the height less than the thickness of the second face molding glue 111, and the perpendicular distance between the second-face lateral electrical connection structure 107 and the second face molding glue 111 is greater than 0.05 mm.
[0113] Optionally, in the direction perpendicular to the substrate 101, the first component 113 (the first subcomponent 1131 and the second subcomponent 1132 are included) has a thickness less than the perpendicular distance between the first face molding glue 106 and the second face molding glue 111.
[0114] In the manufacturing method of a laterally mounted and packaged structure provided by the embodiments of the present disclosure, the imposition is performed on the at least two discrete double-side packaged structures such that the lateral electrical connection structures located on the same side of each of the at least two discrete double-side packaged structures are coplanar, one of the lateral electrical connection structures on the substrate is electrically led out to the first side of a respective double-side packaged structure, and the first side is mounted with the first component so that a laterally mounted and packaged structure is formed.