AIRTIGHT SURFACE MOUNT FUSE WITH INSERT CAVITY
20220319793 ยท 2022-10-06
Inventors
Cpc classification
International classification
Abstract
An airtight surface mount fuse with a cavity has a housing, a conductive fuse, a cover and an encapsulant. The housing has an opening and an airtight inner space. The fusible element has a part disposed inside of the airtight inner space and another part exposed from the opening. The cover is configured to fit into the opening. The encapsulant encapsulates the housing, the cover and a segment of the exposing part of the fusible element. The other segment of the fusible element is exposed from the encapsulant. The inner space of the housing is encapsulated by the encapsulant and becomes airtight. The fusible element is disposed inside of the airtight inner space to prevent the hazard occurring from arc spark interacting with flammable gases when a fusible body of the fusible element is fused. It also ensures the fusible body is affected by the external environment.
Claims
1. An airtight surface mount fuse with a cavity, comprising: a housing having an opening and an airtight inner space, wherein the opening comprises two first sides and two second sides; a fusible element having a fusible body, two intermediary portions and two conductive portions, wherein each of the intermediary portions is connected between a corresponding end of the fusible body and the corresponding conductive portion, the fusible body and the two intermediary portions are disposed inside of the inner space of the housing, and each of the conductive portions extends out of the housing from the opening; a cover disposed on the opening of the housing and comprising an external surface, two third sides and two fourth sides, wherein the external surface of the cover is flush with the two first sides of the opening; and an encapsulant encapsulating the housing, the cover and a part of the conduction portions located at the joint between the housing and the cover, wherein the two conductive portions of the fusible element have a part exposing out of the encapsulant, which is bent and attached to the encapsulant which encapsulates a corresponding part of the external surface of the cover.
2. The airtight surface mount fuse with a cavity according to claim 1, wherein the two intermediary portions and the fusible body are bent away from the opening to form an arc shape.
3. The airtight surface mount fuse with a cavity according to claim 2, wherein the height of the two first sides of the opening is higher than the height of the two second sides; the two fourth sides of the cover are disposed on the two second sides of the opening; and the two conductive portions of the fusible element are respectively disposed on the two second sides of the opening.
4. The airtight surface mount fuse with a cavity according to claim 2, wherein the cover is configured to fit into the opening; and the external surface of the cover is flush with the two first sides and the two second sides of the opening; and the part of each conductive portion of the fusible element, exposing out of the encapsulant, is attached to the encapsulant which encapsulates the corresponding second side of the opening and encapsulates an external surface of the housing.
5. The airtight surface mount fuse with a cavity according to claim 2, wherein at least one buttonhole is formed on each of the two second sides of the opening; the cover is configured to fit into the opening; a button is disposed and horizontally extended from each of the two fourth sides, respectively corresponding to the buttonholes on the second sides, and configured to assemble the corresponding buttonhole; the external surface of the cover is flush with the two second sides of the opening; and the part of each of the two conductive portions of the fusible element, exposing out of the encapsulant, is attached to the encapsulant which encapsulates the corresponding second side of the opening and encapsulates an external surface of the housing.
6. The airtight surface mount fuse with a cavity according to claim 1, wherein the fusible body of the fusible element further comprises: a first segment; and two second segments, extended from two end of the first segment, and respectively connected to the corresponding intermediary portion.
7. The airtight surface mount fuse with a cavity according to claim 2, wherein the fusible body of the fusible element further comprises: a first segment; and two second segments, extended from two end of the first segment, and respectively connected to the corresponding intermediary portion.
8. The airtight surface mount fuse with a cavity according to claim 3, wherein the fusible body of the fusible element further comprises: a first segment; and two second segments, extended from two end of the first segment, and respectively connected to the corresponding intermediary portion.
9. The airtight surface mount fuse with a cavity according to claim 4, wherein the fusible body of the fusible element further comprises: a first segment; and two second segments, extended from two end of the first segment, and respectively connected to the corresponding intermediary portion.
10. The airtight surface mount fuse with a cavity according to claim 5, wherein the fusible body of the fusible element further comprises: a first segment; and two second segments, extended from two end of the first segment, and respectively connected to the corresponding intermediary portion.
11. The airtight surface mount fuse with a cavity according to claim 6, wherein: the first segment of the fusible body is linear; and a transverse width of the two intermediary portions is greater than a transverse width of the first segment of the fusible body.
12. The airtight surface mount fuse with a cavity according to claim 10, wherein: the first segment of the fusible body is linear; and a transverse width of the two intermediary portions is greater than a transverse width of the first segment of the fusible body.
13. The airtight surface mount fuse with a cavity according to claim 11, wherein a hole is formed on each conductive portion of the fusible element.
14. The airtight surface mount fuse with a cavity according to claim 12, wherein a hole is formed on each conductive portion of the fusible element.
15. The airtight surface mount fuse with a cavity according to claim 1, wherein the material of the fusible element comprises silver, copper, nickel, tin, aluminum, zinc, or their alloys.
16. The airtight surface mount fuse with a cavity according to claim 1, wherein the fusible body of the fusible element is bent in a non-linear plane path.
17. The airtight surface mount fuse with a cavity according to claim 2, wherein the fusible body of the fusible element is bent in a non-linear plane path.
18. The airtight surface mount fuse with a cavity according to claim 3, wherein the fusible body of the fusible element is bent in a non-linear plane path.
19. The airtight surface mount fuse with a cavity according to claim 4, wherein the fusible body of the fusible element is bent in a non-linear plane path.
20. The airtight surface mount fuse with a cavity according to claim 5, wherein the fusible body of the fusible element is bent in a non-linear plane path.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012]
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DETAILED DESCRIPTION OF THE EMBODIMENTS
[0020] Referring to
[0021] As shown in
[0022] As shown in
[0023] As shown in
[0024] As shown in
[0025] In an exemplary embodiment, the exposing part of the conductive portions 23 of the fusible element 20 has not yet been bent when the cover is assembled to the fusible element 20. The exposing part of the conductive portions 23 is bent and attached to the surface 401 of the encapsulant 40 after the housing 10 and the cover 30 are encapsulated by the encapsulant 40. Referring to
[0026] Referring to
[0027] In conclusion, since the inner space of the housing becomes an airtight inner space by encapsulating the housing and the cover with the encapsulant and the fusible body of the fusible element is disposed inside of the airtight inner space, the hazard occurring from arc spark interacting with flammable gases when the fusible body is fused is prevented. It also ensures the fusible body is not affected by the external environment since the fusible body is disposed inside of the airtight inner space, so that the airtight surface mount fuse with a cavity can be used in different environments.
[0028] Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.