Claims
- 1. An EHF antenna for generating a uniform hemispherical signal comprising:
- a signal generation means for transmitting an EHF signal;
- a lens means, said lens means having a first surface and a second surface, and a body portion disposed between said first surface and said second surface;
- said lens means being disposed away from yet proximate to said signal generation means such that signals generated by said signal generation means will pass through said first surface and through said body portion of said lens and through said second surface;
- said signal generation means being disposed in a fixed orientation relative to said lens means;
- said lens means functioning to create a nearly uniform hemispherical far-field distribution of the energy of said signal which passes therethrough;
- wherein said first surface is a surface of rotation about a Z axis defined by the approximate coordinates, where an X axis is orthogonal to said Z axis,
- ______________________________________Z X Z X______________________________________0.0 N/A 3.0 1.660.5 2.84 3.5 1.541.0 2.21 4.0 1.351.5 1.93 4.5 1.012.0 1.81 5.0 0.002.5 1.74 .______________________________________
- 2. An EHF antenna as described in claim 1, wherein said second surface is a surface of rotation about said Z axis defined by the equation
- X=7-(1+(X/2.5).sup.2).sup.1/2.
- 3. An EHF antenna as described in claim 2, wherein said lens means is composed of a material having a dielectric constant of approximately 2.54.
- 4. An EHF antenna for generating a uniform hemispherical signal comprising:
- a signal generation means for transmitting an EHF signal;
- a lens means, said lens means having a first surface and a second surface, and a body portion disposed between said first surface and said second surface;
- said signal generation means being disposed in a fixed orientation relative to said lens means;
- said lens means being disposed in the far-field of said signal generation means, such that signals generated by said signal generation means will pass through said first surface and through said body portion and through said second surface;
- said lens means functioning to create a nearly uniform hemispherical far-field distribution of the energy of said signal which passes therethrough;
- a surface matching layer being disposed upon said first surface and said second surface,
- wherein said first surface is a surface of rotation about a Z axis defined by the approximate coordinates, where an X axis is orthogonal to said Z axis,
- ______________________________________Z X Z X______________________________________0.0 N/A 3.0 1.660.5 2.84 3.5 1.541.0 2.21 4.0 1.351.5 1.93 4.5 1.012.0 1.81 5.0 0.002.5 1.74______________________________________
- said second surface is a surface of rotation about said Z axis defined by the equation,
- Z=7-(1+(X/2.5).sup.2).sup.1/2
- and said lens means is composed of a material having a dielectric constant of approximately 2.54.
- 5. A lens for an EHF antenna for generating a uniform hemispherical signal comprising:
- a first surface and a second surface and a body portion disposed between said first surface and said second surface;
- a surface matching layer being disposed upon said first surface and said second surface;
- said first surface being shaped to receive and refract a single EHF signal pulse such that an internal lens signal distribution is formed through said body portion;
- said second surface being formed such that said internal lens signal will be refracted upon passage through said second surface to create a nearly uniform hemispherical signal in the far field of said lens;
- wherein said first surface is a surface of rotation about a Z axis defined by the approximate coordinates, where an X axis is orthogonal to said Z axis,
- ______________________________________Z X Z X______________________________________0.0 N/A 3.0 1.660.5 2.84 3.5 1.541.0 2.21 4.0 1.351.5 1.93 4.5 1.012.0 1.81 5.0 0.002.5 1.74______________________________________
- and said second surface is a surface of rotation about said Z axis defined by the equation,
- Z=7-(1+(X/2.5).sup.2).sup.178 .
- 6. A lens for an EHF antenna as described in claim 5, wherein said lens is composed of a material having a dielectric constant of approximately 2.54.
- 7. A method of creating a uniform hemispherical EHF signal comprising:
- transmitting an EHF signal utilizing a signal generating means, said signal having a defined far-field pattern;
- placing a lens means within said far-field pattern such that said EHF signal passes through said lens means;
- fixedly engaging said signal generating means relative to said lens means;
- forming a first surface upon said lens means such that said EHF signal passes through said first surface, said first surface being shaped such that said EHF signal is refracted by said first surface;
- forming a second surface upon said lens means such that said EHF signal within said lens means is transmitted through said second surface, said second surface being shaped such that said EHF signal is refracted upon transmission through said second surface to produce a nearly uniform hemispherical EHF signal;
- wherein said first surface is a surface of rotation about a Z axis defined by the approximate coordinates, where an X axis is orthogonal to said Z axis,
- ______________________________________Z X Z X______________________________________0.0 N/A 3.0 1.660.5 2.84 3.5 1.541.0 2.21 4.0 1.351.5 1.93 4.5 1.012.0 1.81 5.0 0.002.5 1.74______________________________________
- and said second surface being a surface of rotation about said Z axis defined by the equation,
- Z=7-(1+(X/2.5).sup.2).sup.1/2.
- 8. The method of manufacturing a lens for an EHF antenna to refract an EHF signal from a signal generating source, to produce a uniform hemispherical signal comprising:
- determining the far-field pattern of a signal pulse from said signal generating source;
- shaping a first surface of said lens utilizing said far-field pattern, such that a single signal pulse from said signal generating means will be refracted by said first surface to create an internal EHF signal distribution within a body portion of said lens;
- shaping a second surface of said lens such that said internal signal will be refracted by said second surface to create a nearly uniform hemispherical EHF signal distribution at a far-field distance from said lens;
- wherein said first surface is shaped as a surface of rotation about a Z axis defined by the approximate coordinates, where an X axis is orthogonal to said Z axis,
- ______________________________________Z X Z X______________________________________0.0 N/A 3.0 1.660.5 2.84 3.5 1.541.0 2.21 4.0 1.351.5 1.93 4.5 1.012.0 1.81 5.0 0.002.5 1.74______________________________________
- said second surface is shaped as a surface of rotation about said Z axis defined by the equation,
- Z=7-(1+)X/2.5).sup.2).sup.1/2
- and said lens is composed of a material having a dielectric constant of approximately 2.54.
- 9. A method of manufacturing a lens described in claim 8, further including the step of attaching a surface matching layer to said first surface and said second surface.
- 10. A method of manufacturing a lens as described in claim 9, wherein said surface matching layer has an effective dielectric constant in the range of from 1.50 to 1.60, and
- said surface matching layer is formed from a plurality of layers having differing dielectric constants, said plurality of layers, in combination, functioning to create said surface matching layer having said effective dielectric constant.
Parent Case Info
This is a continuation of copending application(s) Ser. No. 07/494,035 filed on Mar. 14, 1990, now abandoned.
US Referenced Citations (5)
Foreign Referenced Citations (1)
Number |
Date |
Country |
1043125 |
Sep 1966 |
GBX |
Continuations (1)
|
Number |
Date |
Country |
Parent |
494035 |
Mar 1990 |
|