PACKAGE BASE CORE AND SENSOR PACKAGE STRUCTURE
20180068912 ยท 2018-03-08
Inventors
- CHUNG-HSIEN HSIN (Hsin-Chu County, TW)
- Chen-Pin Peng (Hsin-Chu County, TW)
- Chien-Heng Lin (Hsin-Chu County, TW)
- Kun-Chih Hsieh (Hsin-Chu County, TW)
Cpc classification
H01L31/0203
ELECTRICITY
B81C2203/0154
PERFORMING OPERATIONS; TRANSPORTING
H01L2924/00014
ELECTRICITY
H01L23/564
ELECTRICITY
H01L27/14625
ELECTRICITY
H01L23/04
ELECTRICITY
H01L23/16
ELECTRICITY
H01L2924/00014
ELECTRICITY
International classification
H01L23/04
ELECTRICITY
H01L23/16
ELECTRICITY
Abstract
The present disclosure provides a package base core and a sensor package structure. The package base core includes a substrate and at least one stopper, or the package base core includes a substrate, at least one stopper, and a compound. The sensor package structure includes a substrate, a first stopper, a second stopper, a sensing member, a first compound, a second compound, and a translucent member. The stopper (or the first and second stoppers) of the present disclosure is provided to form with a protruding portion on the substrate, so that an overflowing of the compound can be avoided, thereby increasing the reliability of the package base core.
Claims
1. A package base core, comprising: a substrate having an upper surface and a lower surface opposite to the upper surface; and two stoppers disposed on the upper surface, each of the two stoppers including an exposed portion and a shielding portion arranged beside the exposed portion, wherein a distance between the two exposed portions is defined as a first distance, a distance between the two shielding portions is defined as a second distance, and the first distance is larger than the second distance.
2. The package base core as claimed in claim 1, further comprising a compound, wherein the compound is disposed on a portion of the upper surface corresponding in position to the second distance and covers the two shielding portions.
3. The package base core as claimed in claim 2, wherein a side of the compound has a slanting angle with respect to a fictitious plane perpendicular to the substrate.
4. The package base core as claimed in claim 2, wherein the compound further includes a step portion arranged distant from the substrate.
5. The package base core as claimed in claim 1, wherein in each of the two stoppers, the exposed portion includes a protrusion and a covering layer covering the protrusion, and the covering layer is connected to the shielding portion.
6. The package base core as claimed in claim 5, wherein each of the protrusions is made of metal.
7. The package base core as claimed in claim 5, wherein in each of the two stoppers, the covering layer and the shielding portion are made of the same material.
8. A package base core, comprising: a substrate having an upper surface and a lower surface opposite to the upper surface; at least one connecting pad disposed on the upper surface; two stoppers disposed on a portion of the upper surface adjacent to the at least one connecting pad, each of the two stoppers including an exposed portion and a shielding portion arranged beside the exposed portion; and a compound disposed on the two shielding portions.
9. A sensor package structure, comprising: a substrate having an upper surface and a lower surface opposite to the upper surface; a first stopper disposed on the upper surface, the first stopper including a first exposed portion and a first shielding portion arranged beside the first exposed portion; a second stopper disposed on the upper surface, and the second stopper including a second exposed portion and a second shielding portion arranged beside the second exposed portion; a sensing member arranged between the first stopper and the second stopper; a first compound disposed on the upper surface and covering the first shielding portion; a second compound disposed on the upper surface and covering the second shielding portion; and a translucent member arranged above the sensing member, wherein two opposite ends of the translucent member are respectively connected to the first compound and the second compound.
10. The sensor package structure as claimed in claim 9, wherein a distance between the first exposed portion and the second exposed portion is smaller than that between the first shielding portion and the second shielding portion, and the sensing member is arranged between the first exposed portion and the second exposed portion.
11. The sensor package structure as claimed in claim 10, wherein each of the first exposed portion and the second exposed portion includes a protrusion and a covering layer covering the protrusion.
12. The sensor package structure as claimed in claim 9, wherein a portion of the first compound covers the first shielding portion, the other portion of the first compound is disposed on the substrate, a portion of the second compound covers the second shielding portion, and the other portion of the second compound is disposed on the substrate.
13. The sensor package structure as claimed in claim 12, wherein a side of the first compound arranged adjacent to the first exposed portion has a first slanting angle with respect to a fictitious plane perpendicular to the substrate, and a side of the second compound arranged adjacent to the second exposed portion has a second slanting angle with respect to the fictitious plane.
14. The sensor package structure as claimed in claim 9, wherein the first compound has a first step portion, the second compound has a second step portion, and two opposite ends of the translucent member are respectively disposed on the first step portion and the second step portion.
15. The sensor package structure as claimed in claim 9, further comprising at least one first connecting pad and at least one second connecting pad, wherein the at least one first connecting pad is arranged between the first exposed portion and the sensing member, and the at least one second connecting pad is arranged between the second exposed portion and the sensing member.
16. The sensor package structure as claimed in claim 15, wherein the sensing member is electrically connected to the at least one first connecting pad and the at least one second connecting pad by use of conductive wires.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0030] References are hereunder made to the detailed descriptions and appended drawings in connection with the present disclosure. However, the appended drawings are merely provided for exemplary purposes, and should not be construed as restricting the scope of the present disclosure.
First Embodiment
[0031] Reference is first made to
[0032] As shown in
[0033] As shown in
[0034] Each of the stoppers 20, 20 (i.e., the first stopper 20 or the second stopper 20) can be formed in a circle ring shape or a square ring shape. Each of the stoppers 20, 20 can be a metallic ring fixed on the upper surface 11 of the substrate 10.
[0035] The two exposed portions 21, 21 have a first distance D1 there-between, the two shielding portions 22, 22 are arranged adjacent to each other and have a second distance D2 there-between, and the first distance D1 is larger than the second distance D2. Specifically, a distance between the first exposed portion 21 and the second exposed portion 21 is defined as the first distance D1, and a distance between the first shielding portion 22 and the second shielding portion 22 is defined as the second distance D2.
[0036] In addition, the package base core 100 in the present embodiment further includes a connecting pad 50 disposed on the upper surface 11. It should be noted that the connecting pad 50 can be disposed on or not disposed on the substrate 10.
Second Embodiment
[0037] Reference is made to
[0038] Moreover, each of the protrusions 211, 211 can be made of metal, and each covering layer 212, 212 and the connected shielding portion 22, 22 can be made of the same material.
Third Embodiment
[0039] Reference is made to
[0040] As shown in
Fourth Embodiment
[0041] Reference is made to
[0042] As shown in
Fifth Embodiment
[0043] Reference is made to
Sixth Embodiment
[0044] Reference is made to
[0045] As shown in
[0046] As shown in
[0047] The second stopper 320 is disposed on the upper surface 11 of the substrate 10. The second stopper 320 has a second exposed portion 321 and a second shielding portion 322 arranged beside the second exposed portion 321. It should be noted that the first stopper 310 and the second stopper 320 are in a mirror symmetrical arrangement.
[0048] As shown in
[0049] As shown in
[0050] As shown in
[0051] As shown in
[0052] As shown in
[0053] As shown in
[0054] Accordingly, the first stopper 310 and the second stopper 320 of the sensor package structure 300 are provided to avoid an overflowing of the first compound 340 or the second compound 350, so that the translucent member 360 is not polluted and prevented from functioning normally.
[0055] In addition, the sensor package structure 300 further includes at least one first connecting pad 391 and at least one second connecting pad 392. The at least one first connecting pad 391 is arranged between the first exposed portion 311 and the sensing member 330, and at least one second connecting pad 392 is arranged between the second exposed portion 321 and the sensing member 330.
[0056] The first connecting pad 391 and the second connecting pad 392 can be electrically connected to the circuit or the via hole of the substrate 10. The sensing member 330 is electrically connected to the first connecting pad 391 and the second connecting pad 392 by using conductive wires 331, thereby establishing an electrical connection between the sensing member 330 and the circuit of the substrate 10. It should be noted that the first connecting pad 391 and the second connecting pad 392 can be disposed on or not disposed on the substrate 10.
[0057] In summary, the first stopper 310 and the second stopper 320 are provided to avoid an overflowing of the compound 30 (or the first compound 340 and the second compound 350), so that the package base core 100 or the sensor package structure 300 can maintain the normal function thereof and can increase the reliability thereof.
[0058] The descriptions illustrated supra set forth simply the preferred embodiments of the present disclosure; however, the characteristics of the present disclosure are by no means restricted thereto. All changes, alterations, or modifications conveniently considered by those skilled in the art are deemed to be encompassed within the scope of the present disclosure delineated by the following claims.