GROUNDING ELASTIC COMPONENT
20190296458 ยท 2019-09-26
Inventors
Cpc classification
B32B15/04
PERFORMING OPERATIONS; TRANSPORTING
H01R4/64
ELECTRICITY
B32B2266/0214
PERFORMING OPERATIONS; TRANSPORTING
B32B3/08
PERFORMING OPERATIONS; TRANSPORTING
B32B5/18
PERFORMING OPERATIONS; TRANSPORTING
B32B3/30
PERFORMING OPERATIONS; TRANSPORTING
B32B7/12
PERFORMING OPERATIONS; TRANSPORTING
International classification
H01R4/64
ELECTRICITY
B32B7/12
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention discloses a grounding elastic component, including a elastic body and a conductive thin film. A convex block is provided on a lower surface of the elastic body, which convex block divides the lower surface of the elastic body into a first region and a second region. A conductive metal layer is provided on one side of the conductive thin film, and the other side of the conductive thin film, which is opposite to the one side the conductive metal layer is provided on, is wrapped on an upper surface, the first region of the lower surface and a side wall of the elastic body. The conductive thin film is bonded with the upper surface and the first region of the lower surface of the elastic body by a non-conductive double-sided adhesive. A double-sided adhesive tape is provided on the second region of the lower surface of the elastic body. The present invention can achieve that the resistance value does not change with the changing of compression amount, the resistance value is more stable, the bounciness force is stable and the production cost is low.
Claims
1. A grounding elastic component, comprising an elastic body and a conductive thin film; wherein a convex block is provided on a lower surface of the elastic body, which the convex block divides the lower surface of the elastic body into a first region and a second region; a conductive metal layer is provided on one side of the conductive thin film, and the other side of the conductive thin film, which is opposite to another side the conductive metal layer is provided on, is wrapped on an upper surface, the first region of the lower surface and a side wall of the elastic body; the conductive thin film is bonded with the upper surface and the first region of the lower surface of the elastic body by a non-conductive double-sided adhesive; and a double-sided adhesive tape is provided on the second region of the lower surface of the elastic body.
2. The grounding elastic component as claimed in claim 1, wherein the elastic body is a silicone foam.
3. The grounding elastic component as claimed in claim 1, wherein the thickness of the conductive thin film is less than 0.02 mm.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0009]
[0010]
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
[0011] It should be understood that in the case that no conflict occurs, the embodiments and the technical features thereof in this application can be combined with each other. The present disclose is further described in detail in accordance with the figures.
[0012] As shown in
[0013] The conductive function of the grounding elastic component mainly depends on the conductive metal layer 3 of the conductive film 2 itself, and does not rely on any conductive adhesive or conductive foam, namely, the conductive metal layer 3 itself contacts with a grounding matter. The conductive metal layer 3 has a stable overall structure, the resistance value of which is also very stable. Since the conductive metal layer 3 is very thin and of a good deformation character, even if the elastic body 1 is stressed and compressed, it will not affect the structure of the conductive metal layer 3. The current goes directly from upper to lower without going through other conductors any longer, the resistance is small and very stable, and it is not affected by forms.
[0014] The whole resistance value of this structure only depends on the conductive metal layer 3 itself and thus can be controlled singly. The resistance value is very low, stable and of an advantage of high resistance consistency, which is especially applicable for some devices with strict requirement for resistance value, such as grounding of radio frequency antenna, which requires low resistance and stable grounding performance.
[0015] The conductive thin film 2 is wrapped on the upper surface, the first region 11 of the lower surface and the side wall of the elastic body 1, and the thickness of the conductive thin film 2 is less than 0.02 mm. Since this open-type wrapped structure is used, the stable elastic body 1 which reacts stably to bounce force can be chosen as a filler in the middle, such as silicone foam, by this way, a stable bounce force can be achieved. The stress of the open-type wrapped structure in a compression state is very small, and one side of the elastic body 1 is not restricted, thus the volume can become smaller, which saves space. The elastic body 1 with good elasticity can, even on a narrow contacting point, guarantee a good contact. By choosing an appropriate elastic body 1, it can guarantee the bounce force stays consistent and works normally in various high temperature situations.
[0016] The above is a specific implementation of the present invention; and it should be pointed out that a normal person skilled in the art can still, without beyond the principle of the present invention, make improvements and retouching which shall be considered as the protection scope of the present invention as well.