Claims
- 1. An integrated planar antenna comprising:a dielectric slab, said dielectric slab being made of a dielectric material having a material dielectric constant; and at least one antenna element patterned on the dielectric slab, said antenna elements operating at a predetermined resonant frequency, wherein the dielectric slab includes a plurality of voids extending through the slab that vary the material dielectric constant of the slab to be an effective dielectric constant that acts to reduce resonant waves in the slab, said plurality of voids being selectively locally optimized at a predetermined location in the slab so that the density of the voids is greater at some locations in the slab than at other locations in the slab, wherein the plurally of voids are locally limited between an inner antenna ring element and an outer antenna ring element.
- 2. The antenna according to claim 1 wherein the plurality of voids are distributed across the slab in a predetermined symmetrical configuration.
- 3. The antenna according to claim 1 wherein the plurality of voids extend completely through the slab.
- 4. The antenna according to claim 1 further comprising an antenna feed electrically coupled to the at least one antenna element, wherein the plurality of voids are also localized proximate to the feed so as to decrease the effective dielectric constant of the slab material locally around the feed.
- 5. The antenna according to claim 1 wherein at least one antenna element is a slot antenna element formed in a metalization ground plane patterned on the slab.
- 6. The antenna according to claim 1 wherein the plurality of voids have an average lateral dimension less than about {fraction (1/20)}th of the wave length of the resonant frequency.
- 7. The antenna according to claim 1 wherein the slab is separated into a plurality of radial slab sections where each section includes a different pattern of voids.
- 8. The antenna according to claim 1 wherein the plurality of voids are filled with a dielectric material that is different from the slab material.
- 9. An integrated planar antenna comprising:a dielectric slab, said dielectric slab being made of a dielectric material having a material dielectric constant; a metalized ground plane patterned on the slab, said ground plane including a first slot antenna element and a second slot antenna element formed therein, where the slot antenna elements are operational at a predetermined frequency band, wherein the first and second slot antenna elements are two concentric ring antenna elements; and a microstrip feed line patterned on a surface of the slab opposite to the ground plane, said feed line being electrically coupled to the antenna elements by a shorting via extending through the slab, wherein the slab includes a plurality of voids extending through the slab that vary the material dielectric constant to be an effective dielectric constant that acts to reduce resonant waves in the slab, said plurality voids being confined within an outer one of the two concentric ring antenna elements.
- 10. The antenna according to claim 9 wherein the plurality of voids are distributed across the slab in a predetermined symmetrical configuration.
- 11. The antenna according to claim 9 wherein the plurality of voids extend completely through the slab.
- 12. The antenna according to claim 9 wherein the plurality of voids are selectively locally optimized at a predetermined location in the slab so that the density of the voids is greater at some locations in the slab than at other locations in the slab.
- 13. The antenna according to claim 9 wherein the plurality of voids are also localized proximate to the feed line so as to decrease the effective dielectric constant of the slab material locally around the feed line.
- 14. The antenna according to claim 9 wherein the plurality of voids have an average lateral dimension less than about {fraction (1/20)}th of the wave length of the resonant frequency.
- 15. The antenna according to claim 9 wherein the slab is separated into a plurality of radial slab sections where each section includes a different pattern of holes.
- 16. The antenna according to claim 9 wherein the plurality of voids are filled with a material that is different from the slab material.
- 17. A method of providing a printed planar antenna, said method comprising the steps of:providing a dielectric slab being made of a dielectric material having a material dielectric constant; forming at least two concentric antenna elements on the slab that operate at a predetermined resonant frequency band; and forming a plurality of voids in the slab to vary the material dielectric constant to be an effective dielectric constant that acts to reduce resonant waves in the slab, wherein forming the voids includes forming the voids within an outer one of the at least two concentric antenna elements.
- 18. The method according to claim 17 wherein the step of forming a plurality of voids includes distributing the voids across the slab in a predetermined symmetrical configuration.
- 19. The method according to claim 17 wherein the step of forming a plurality of voids includes selectively locally forming the voids in the slab so that the density of the voids is greater at some locations in the slab than at other locations in the slab.
- 20. The method according to claim 17 further comprising the step of forming an antenna feed electrically coupled to the antenna elements, wherein the step of forming the plurality of voids also includes forming the voids proximate to the feed so as to decrease the effective dielectric constant of the slab material locally around the feed.
- 21. An integrated planar antenna comprising:a dielectric slab, said dielectric slab being made of a dielectric material having a material dielectric constant; and at least two concentric antenna elements patterned on the dielectric slab, said antenna elements operating at a predetermined resonant frequency, wherein the dielectric slab includes a plurality of voids extending through the slab that vary the material dielectric constant of the slab to be an effective dielectric constant that acts to reduce resonant waves in the slab, said plurality of voids being selectively locally optimized at a predetermined location in the slab so that the density of the voids is greater at some locations in the slab than at other locations in the slab, wherein the plurality of voids are confined within an outer one of the at least two concentric antenna elements.
- 22. An integrated planar antenna comprising:a dielectric slab, said dielectric slab being made of a dielectric material having a material dielectric constant; and at least one antenna element patterned on the dielectric slab, said antenna element operating at a predetermined resonant frequency, wherein the dielectric slab includes a plurality of voids extending through the slab that vary the material dielectric constant of the slab to be an effective dielectric constant that acts to reduce resonant waves in the slab, said plurality of voids being selectively locally optimized at a predetermined location in the slab so that the density of the voids is greater at some locations in the slab than at other locations in the slab, wherein the plurality of voids are locally positioned around and within an inner ring element.
- 23. An integrated planar antenna comprising:a dielectric slab, said dielectric slab being made of a dielectric material having a material dielectric constant; a metalized ground plane patterned on the slab, said ground plane including a first slot antenna element and a second slot antenna element formed therein and being operational at a predetermined frequency band, wherein the first and second antenna elements are two concentric antenna elements; and a microstrip feed line patterned on a surface of the slab opposite to the ground plane, said feed line being electrically coupled to the antenna elements by a shorting via extending through the slab, wherein the slab includes a plurality of voids extending through the slab that vary the material dielectric constant to be an effective dielectric constant that acts to reduce resonant waves in the slab, said plurality voids being limited between an inner antenna ring element and an outer antenna ring element.
- 24. An integrated planar antenna comprising:a dielectric slab, said dielectric slab being made of a dielectric material having a material dielectric constant; a metalized ground plane patterned on the slab, said ground plane including a first slot antenna element and a second slot antenna element formed therein and being operational at a predetermined frequency band, wherein the first and second antenna elements are concentric ring antenna elements; and a microstrip feed line patterned on a surface of the slab opposite to the ground plane, said feed line being electrically coupled to the antenna elements by a shorting via extending through the slab, wherein the slab includes a plurality of voids extending through the slab that vary the material dielectric constant to be an effective dielectric constant that acts to reduce resonant waves in the slab, said plurality of voids being locally positioned around and within an inner ring element.
- 25. A method of providing a printed planar antenna, said method comprising the steps of:providing a dielectric slab being made of a dielectric material having a material dielectric constant; patterning at least one antenna element on the slab that operates at a predetermined resonant frequency band; and forming a plurality of voids in the slab to vary the material dielectric constant to be an effective dielectric constant that acts to reduce resonant waves in the slab, wherein forming the voids includes forming the plurality of voids to be locally limited between an inner antenna ring element and an outer antenna ring element.
- 26. A method of providing a printed planar antenna, said method comprising the steps of:providing a dielectric slab being made of a dielectric material having a material dielectric constant; patterning at least one antenna element on the slab that operates at a predetermined resonant frequency band; and forming a plurality of voids in the slab to vary the material dielectric constant to be an effective dielectric constant that acts to reduce resonant waves in the slab, wherein forming the voids includes forming the plurality of voids to be locally positioned around and within an inner ring element.
CROSS REFERENCE TO RELATED APPLICATIONS
This is a Continuation-in-Part application of international application PCT/US99/24526, filed Oct. 20, 1999, published under PCT Article 21(2) in English, and U.S. patent application Ser. No. 09/178,118, filed Oct. 23, 1998, now U.S. Pat. No. 6,081,239 issued Jun. 27, 2000.
US Referenced Citations (20)
Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
PCT/US99/24526 |
Oct 1999 |
US |
Child |
09/838711 |
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US |
Parent |
09/178118 |
Oct 1998 |
US |
Child |
PCT/US99/24526 |
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US |