Phase shifter including a dielectric layer having liquid crystal molecules configured to be rotated so as to cause phase shift
US-11196134-B2 · Dec 7, 2021 · US
US11843151B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11843151-B2 |
| Application number | US-202117512879-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 28, 2021 |
| Priority date | May 21, 2018 |
| Publication date | Dec 12, 2023 |
| Grant date | Dec 12, 2023 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A phase shifter and a method for operating the same, an antenna and a communication device are provided. The phase shifter includes: a first substrate and a second substrate opposite to each other; a dielectric layer between the first substrate and the second substrate; a first electrode on a side of the first substrate proximal to the second substrate; a second electrode on a side of the second substrate proximal to the first substrate; and a ground electrode on a side of the second substrate distal to the first substrate. The dielectric layer includes liquid crystal molecules, and the first electrode and the second electrode are configured to control rotation of the liquid crystal molecules according to different voltages respectively received by the first electrode and the second electrode. The second electrode has a one-piece structure.
Opening claim text (preview).
What is claimed is: 1. A phase shifter, comprising: a first substrate and a second substrate opposite to each other; a dielectric layer provided between the first substrate and the second substrate; a first electrode on a side of the first substrate proximal to the second substrate; a second electrode on a side of the second substrate proximal to the first substrate; and a ground electrode on a side of the second substrate distal to the first substrate; wherein the dielectric layer comprises liquid crystal molecules, and the first electrode and the second electrode are configured to control rotation of the liquid crystal molecules according to different voltages respectively received by the first electrode and the second electrode, the second electrode has a one-piece structure, the first electrode comprises a plurality of metal patches arranged periodically, and the second electrode is a microstrip. 2. A method for operating the phase shifter according to claim 1 , the method comprising: applying the different voltages to the first electrode and the second electrode, respectively, to generate an electric field between the first electrode and the second electrode, so as to cause a respective longitudinal axis of the corresponding liquid crystal molecules to be substantially parallel to a direction of the electric field. 3. The phase shifter according to claim 1 , wherein a material of the plurality of metal patches comprises aluminum, silver, gold, chromium, molybdenum, nickel, or iron. 4. The phase shifter according to claim 1 , wherein a respective longitudinal axis direction of the microstrip is the same as a direction in which the plurality of metal patches are arranged. 5. The phase shifter according to claim 1 , wherein a material of any one of the first substrate and the second substrate comprises glass, sapphire, polyethylene terephthalate, triallyl cyanurate, polyimide, or ceramic. 6. The phase shifter according to claim 1 , wherein a respective length of each of the plurality of metal patches is less than or equal to 5 times of a width of the microstrip. 7. The phase shifter according to claim 1 , wherein the ground electrode is grounded and has a sheet shape. 8. The phase shifter according to claim 1 , wherein the liquid crystal molecules are nematic liquid crystal molecules. 9. The phase shifter according to claim 8 , wherein an angle between a respective longitudinal axis direction of each of the nematic liquid crystal molecules and a plane where the second electrode is located is greater than 0 degree and less than 90 degrees. 10. The phase shifter according to claim 9 , wherein the nematic liquid crystal molecules are positive nematic liquid crystal molecules, and the angle between a respective longitudinal axis direction of each of the positive nematic liquid crystal molecules and the plane where the second electrode is located is greater than 0 degree and less than or equal to 45 degrees. 11. The phase shifter according to claim 9 , wherein the nematic liquid crystal molecules are negative nematic liquid crystal molecules, and the angle between a respective longitudinal axis direction of each of the negative nematic liquid crystal molecules and the plane where the second electrode is located is greater than 45 degrees and less than 90 degrees. 12. The phase shifter according to claim 1 , wherein a dielectric constant of each of the liquid crystal molecules in a respective longitudinal axis direction of the corresponding liquid crystal molecule is larger than a dielectric constant of the first substrate or the second substrate. 13. The phase shifter according to claim 1 , wherein the second substrate has a shape of a rectangle, and a longitudinal axis of the microstrip is parallel to a long side or a short side of the second substrate. 14. The phase shifter according to claim 13 , wherein a length of the microstrip is equal to a length or a width of the second substrate. 15. The phase shifter according to claim 1 , wherein a material of the microstrip comprises aluminum, silver, gold, chromium, molybdenum, nickel, iron, or transparent conductive oxide. 16. The phase shifter according to claim 1 , wherein the dielectric layer has a thickness of 5 microns to 10 microns. 17. A phase shifter, comprising: a first substrate and a second substrate opposite to each other; a dielectric layer provided between the first substrate and the second substrate; a first electrode on a side of the first substrate proximal to the second substrate; a second electrode on a side of the second substrate proximal to the first substrate; and a ground electrode on a side of the second substrate distal to the first substrate; wherein the dielectric layer comprises liquid crystal molecules, and the first electrode and the second electrode are configured to control rotation of the liquid crystal molecules according to different voltages respectively received by the first electrode and the second electrode, the second electrode has a one-piece structure, the first electrode comprises a plurality of metal patches arranged periodically, and wherein a period of the plurality of metal patches is less than or equal to 3 millimeters. 18. The phase shifter according to claim 17 , wherein a dielectric constant of each of the liquid crystal molecules in a respective longitudinal axis direction of the corresponding liquid crystal molecule is larger than a dielectric constant of the first substrate or the second substrate. 19. A phase shifter, comprising: a first substrate and a second substrate opposite to each other; a dielectric layer provided between the first substrate and the second substrate; a first electrode on a side of the first substrate proximal to the second substrate; a second electrode on a side of the second substrate proximal to the first substrate; and a ground electrode on a side of the second substrate distal to the first substrate; wherein the dielectric layer comprises liquid crystal molecules, and the first electrode and the second electrode are configured to control rotation of the liquid crystal molecules according to different voltages respectively received by the first electrode and the second electrode, the second electrode has a one-piece structure, the first electrode comprises a plurality of metal patches arranged periodically, and wherein each of the plurality of metal patches has a width of 0.5 millimeters to 1.5 millimeters. 20. The phase shifter according to claim 19 , wherein a dielectric constant of each of the liquid crystal molecules in a respective longitudinal axis direction of the corresponding liquid crystal molecule is larger than a dielectric constant of the first substrate or the second substrate.
using ferroelectric devices · CPC title
Phase-shifters (H01P1/165 takes precedence) · CPC title
Strip line phase-shifters (H01P1/181, H01P1/185, H01P1/19 take precedence) · CPC title
by electrical means (active lenses or reflecting arrays H01Q3/46) · CPC title
with variable phase-shifters · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.