Flat panel array antenna with integrated polarization rotator
US-2017271776-A1 · Sep 21, 2017 · US
US12322865B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12322865-B2 |
| Application number | US-202318382413-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 20, 2023 |
| Priority date | Feb 15, 2018 |
| Publication date | Jun 3, 2025 |
| Grant date | Jun 3, 2025 |
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In some embodiments, an antenna module includes an antenna element having a first side and a second side opposite the first side, the first side comprising a radiating side of the antenna element and a support structure disposed at the second side of the antenna element and configured to define a cavity, the support structure including a portion configured to reduce signal leakage between the antenna element and the cavity.
Opening claim text (preview).
The embodiments of the invention in which an exclusive property or privilege is claimed are defined as follows: 1. An antenna module comprising: an antenna element having a first side and a second side opposite the first side, the first side comprising a radiating side of the antenna element; and a support structure disposed at the second side of the antenna element and configured to define a cavity, the support structure including a portion configured to reduce signal leakage between the antenna element and the cavity, wherein the portion configured to reduce signal leakage between the antenna element and the cavity includes a plurality of signal pathways. 2. The antenna module of claim 1 , wherein the plurality of signal pathways corresponds to a plurality of vias having at least one end electrically coupled to a ground signal. 3. The antenna module of claim 2 , wherein the plurality of vias each have a length that is substantially equal to a height of the support structure. 4. The antenna module of claim 1 , wherein the support structure includes a first signal pathway configured to electrically couple the antenna element to a printed circuit board (PCB). 5. The antenna module of claim 4 , wherein the first signal pathway is interspersed between at least two signal pathways of a second plurality of signal pathways configured to electrically isolate the first signal pathway. 6. The antenna module of claim 5 , wherein at least a portion of the first signal pathway is disposed between two or more pathways of the second plurality of signal pathways. 7. The antenna module of claim 6 , wherein the second plurality of signal pathways at least partially surrounds the first signal pathway. 8. The antenna module of claim 5 , wherein at least a portion of the second plurality of signal pathways is configured to reduce signal leakage between the antenna element and the cavity. 9. The antenna module of claim 1 , further comprising: an amplifier disposed within the cavity and electrically coupled to the antenna element, wherein the portion configured to reduce signal leakage between the antenna element and the cavity reduces signal leakage between the antenna element and the amplifier. 10. The antenna module of claim 9 , wherein the amplifier is disposed on a side of a PCB, wherein the side of the PCB is physically coupled to the antenna module. 11. The antenna module of claim 9 , wherein the amplifier is disposed at the second side of the antenna element. 12. The antenna module of claim 9 , wherein the amplifier comprises a power amplifier (PA) or a low noise amplifier (LNA). 13. The antenna module of claim 4 , wherein the antenna element comprises a dipole antenna, a patch antenna, a slot antenna, a micro-strip antenna, or a uni-directional antenna. 14. The antenna module of claim 1 , wherein the support structure comprises a frame. 15. A support structure for an antenna module comprising: a first side configured for being electrically coupled to an antenna; a second side opposite the first side, the second side configured for being electrically coupled to a printed circuit board (PCB); and a plurality of signal pathways disposed between the first side and the second side, the plurality of signal pathways configured to shield an RF signal pathway. 16. The support structure of claim 15 , wherein the RF signal pathway is disposed between at least two signal pathways of the plurality of signal pathways. 17. The support structure of claim 15 , wherein each of the plurality of signal pathways are configured to electrically couple to a ground signal. 18. The support structure of claim 15 , wherein the RF signal pathway is configured to electrically couple to at least one of a low noise amplifier (LNA) and a power amplifier (PA) on the PCB. 19. The support structure of claim 15 , wherein the second side is configured to be spaced from the PCB by a distance determined at least in part by the support structure. 20. The support structure of claim 15 , wherein the RF signal pathway comprises a first via and the plurality of signal pathways comprises a plurality of vias. 21. The support structure of claim 15 , wherein the support structure comprises a frame. 22. The support structure of claim 15 , wherein a cavity is formed between the first side and the second side of the support structure. 23. The support structure of claim 22 , wherein an amplifier is disposed within the cavity.
associated with surface mounted components · CPC title
with receiving set · CPC title
varying the relative phase or relative amplitude of energisation between two or more active radiating elements; varying the distribution of energy across a radiating aperture ({H01Q3/12,} H01Q3/22, H01Q3/24 take precedence) · CPC title
Combinations of antenna units polarised in different directions for transmitting or receiving circularly and elliptically polarised waves or waves linearly polarised in any direction {(circularly polarised patch antennas H01Q9/0428; circularly polarised horns H01Q13/0241; cross-polarised horns H01Q13/0258; polarisation converters H01Q15/242; cross-polarised rear feeds H01Q19/136; crossed polarisation dual antenna H01Q25/001)} · CPC title
radiating a circular polarised wave · CPC title
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