Hybrid antenna array
US-2024421498-A1 · Dec 19, 2024 · US
US9825366B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9825366-B2 |
| Application number | US-201414573152-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 17, 2014 |
| Priority date | Jan 6, 2013 |
| Publication date | Nov 21, 2017 |
| Grant date | Nov 21, 2017 |
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A printed circuit board antenna and a printed circuit board are disclosed. The printed circuit board antenna includes a feeding part having at least one first branch; a coupling interdigital part having at least one second branch, where a gap is formed between the first branch and the second branch; a grounding part, where a gap is formed between the grounding part and the feeding part, a gap is formed between the grounding part and the coupling interdigital part, an opening is provided on the grounding part, and a feeding point of the feeding part extends out from the opening. The embodiments of the present invention resolve a problem of relatively low efficiency when high-frequency bandwidth of an antenna is relatively wide, implementing that efficiency meets a product requirement in an entire range of bandwidth.
Opening claim text (preview).
What is claimed is: 1. A printed circuit board antenna, comprising: a feeding part comprising a first straight line segment type and a first branch, wherein the first branch extends out from one side of the first straight line segment type; a coupling interdigital part comprising a second straight line segment type and a second branch, wherein the second branch extends out from one side of the second straight line segment type, wherein the first straight line segment type of the feeding part and the second straight line segment type of the coupling interdigital part are about parallel, and wherein a first gap is formed between the first branch of the feeding part and the second branch of the interdigital part; and a grounding part, wherein a second gap is formed between the grounding part and the feeding part, wherein a third gap is formed between the grounding part and the coupling interdigital part, wherein an opening is provided on the grounding part, wherein a feeding point of the feeding part extends out from the opening, and wherein the grounding part comprises a ring that surrounds an outside of the feeding part and the coupling interdigital part. 2. The printed circuit board antenna according to claim 1 , wherein the second branch and the first branch are disposed in an opposite alternation manner. 3. The printed circuit board antenna according to claim 2 , wherein a length of the first branch is equal to a length of the second branch. 4. The printed circuit board antenna according to claim 2 , wherein a length of the first branch is unequal to a length of the second branch. 5. The printed circuit board antenna according to claim 2 , wherein a first gap distance between the first branch and the second branch is equal. 6. The printed circuit board antenna according to claim 2 , wherein a first gap distance between the first branch and the second branch is unequal. 7. The printed circuit board antenna according to claim 2 , wherein a second gap distance between the grounding part and the feeding part s equal. 8. The printed circuit board antenna according to claim 2 , wherein a second gap distance between the grounding part and the feeding part is unequal. 9. The printed circuit board antenna according to claim 2 , wherein a third gap distance between the grounding part and the coupling interdigital part is equal. 10. The printed circuit board antenna according to claim 2 , wherein a third gap distance between the grounding part and the coupling interdigital part is unequal. 11. The printed circuit board antenna according to claim 1 , wherein the grounding part comprises a rectangular ring, and wherein the coupling interdigital part is fully enclosed within the rectangular ring. 12. The printed circuit board antenna according to claim 11 , wherein a grounding point is further disposed on the outside of the grounding part. 13. The printed circuit board antenna according to claim 1 , wherein the coupling interdigital part is electrically isolated from and physically separated from both the feeding part and the grounding part. 14. A printed circuit board, comprising: a printed circuit board antenna, wherein the printed circuit board antenna comprises: a feeding part comprising a first straight line segment type and a first branch, wherein the first branch extends out from one side of the first straight type; a coupling interdigital part comprising a second straight line segment type and a second branch, wherein the second branch extends out from one side of the second straight line segment type, wherein the first straight line segment type of the feeding part and the second straight line segment type of the coupling interdigital part are about parallel, and wherein a first gap is formed between the first branch of the feeding part and the second branch of the coupling interdigital part; and a grounding part, wherein a second gap is formed between the grounding part and the feeding part, wherein a third gap is formed between the grounding part and the coupling interdigital part, wherein an opening is provided on the grounding part, wherein a feeding point of the feeding part extends out from the opening, and wherein the grounding part comprises a ring that surrounds an outside of the feeding part and the coupling interdigital part. 15. The printed circuit board according to claim 14 , wherein the second branch and the first branch are disposed in an opposite alternation manner. 16. The printed circuit board according to claim 14 , wherein the grounding part comprises a rectangular ring, and wherein the coupling interdigital part is fully enclosed within the rectangular ring. 17. The printed circuit board according to claim 14 , wherein a grounding point is further disposed on the outside of the grounding part. 18. The printed circuit board according to claim 14 , wherein a microstrip feeder is configured on the printed circuit board, and wherein the microstrip feeder is electrically connected to the feeding point. 19. The printed circuit board according to claim 18 , wherein an impedance characteristic of the microstrip feeder is 50 ohms. 20. The printed circuit board according to claim 14 , wherein the coupling interdigital part is electrically isolated from and physically separated from both the feeding part and the grounding part.
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Combination of fed elements with parasitic elements · CPC title
within a radiating element or between connected radiating elements · CPC title
with folded element, the folded parts being spaced apart a small fraction of the operating wavelength · CPC title
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