Antenna radome
US-D805503-S · Dec 19, 2017 · US
US10110274B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10110274-B2 |
| Application number | US-201715418175-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 27, 2017 |
| Priority date | Jan 27, 2017 |
| Publication date | Oct 23, 2018 |
| Grant date | Oct 23, 2018 |
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Aspects of the subject disclosure may include, for example a communication device that includes first and second waveguide devices that provide communications via electromagnetic waves that propagate along a transmission medium without utilizing an electrical return path, where the electromagnetic waves are guided by the transmission medium. The communication device can include a housing supporting a first plurality of antennas and a second plurality of antennas. The communication device can include a support structure physically connecting the first and second waveguide devices with the housing. Other embodiments are disclosed.
Opening claim text (preview).
What is claimed is: 1. A communication device comprising: first and second waveguide devices that provide communications via electromagnetic waves that propagate along a transmission medium without requiring an electrical return path, wherein the electromagnetic waves are guided by the transmission medium; a first wireless device including a first plurality of antennas; first and second cables coupling the first wireless device with the first and second waveguide devices, respectively; a support structure physically connecting the first and second waveguide devices with the first wireless device; and a second wireless device including a second plurality of antennas that are rotatable, wherein the first wireless device facilitates communicating wireless signals utilizing a communication protocol that is different from another communication protocol utilized by the second wireless device. 2. The communication device of claim 1 , wherein the first and second cables include dielectric cores. 3. The communication device of claim 1 , wherein the support structure includes a group of first joints that is pivotally connected with each other to enable rotational movement in a single plane. 4. The communication device of claim 3 , wherein the support structure includes a plurality of second joints that is pivotally connected with the group of first joints to enable rotational movement in a second plane that is orthogonal to the single plane. 5. The communication device of claim 1 , wherein the first plurality of antennas of the first wireless device includes an array of polyrod antennas. 6. The communication device of claim 1 , wherein the first plurality of antennas of the first wireless device includes dielectric antennas having a conical shape. 7. The communication device of claim 1 , wherein the second plurality of antennas is independently rotatable. 8. The communication device of claim 1 , wherein the second plurality of antennas is rotatable with respect to an altitude and with respect to an azimuth of a longitudinal axis of one of the second plurality of antennas. 9. The communication device of claim 1 , wherein each of the first and second waveguide devices comprises a wireless transceiver for communicating directly with each other. 10. The communication device of claim 1 , wherein each of the first and second waveguide devices comprises: a core including a plurality of core portions; and a connection mechanism that is movable to first and second positions, wherein a first movement of the connection mechanism to the first position causes the plurality of core portions to separate to provide access to an opening through the core, and wherein a second movement of the connection mechanism to the second position causes the plurality of core portions to be together circumscribing the transmission medium positioned through the opening of the core. 11. The communication device of claim 10 , wherein each of the first and second waveguide devices comprises: a winding around the core; and a transmitter, wherein, when the core is positioned to circumscribe the transmission medium, a current flowing through the transmission medium provides power to the transmitter via an inductive coupling that utilizes the core and the winding, wherein, when the core is positioned to circumscribe the transmission medium, the transmitter transmits the communications via the electromagnetic waves that propagate along the transmission medium. 12. The communication device of claim 1 , further comprising a housing defining an opening that connects with a utility pole supporting the transmission medium, wherein the support structure is pivotally connected with the housing to enable rotational movement in two orthogonal planes. 13. A communication device comprising: first and second waveguide devices that provide communications via electromagnetic waves that propagate along a transmission medium without requiring an electrical return path, wherein the electromagnetic waves are guided by the transmission medium, wherein each of the first and second waveguide devices comprises: a core including a plurality of core portions that is separable to provide access to an opening through the core; a winding around the core; and a transmitter, wherein, when the core is positioned to circumscribe the transmission medium, a current flowing through the transmission medium provides power to the transmitter via an inductive coupling that utilizes the core and the winding; a housing including a plurality of antennas that is independently rotatable; and a support structure physically connecting the first and second waveguide devices with the housing. 14. The communication device of claim 13 , wherein the plurality of antennas is independently rotatable with respect to an altitude and with respect to an azimuth of a longitudinal axis of one of the plurality of antennas. 15. The communication device of claim 13 , further comprising: a wireless device including a group of other antennas; and first and second cables coupling the wireless device with the first and second waveguide devices, respectively, wherein the first and second cables include dielectric cores. 16. The communication device of claim 13 , wherein the transmitter of each of the first and second waveguide devices comprises a wireless transceiver for communicating directly with each other. 17. A communication device comprising: first and second waveguide devices that provide communications via electromagnetic waves that propagate along a transmission medium without requiring an electrical return path, wherein the electromagnetic waves are guided by the transmission medium; a housing supporting a first plurality of antennas and a second plurality of antennas; a support structure physically connecting the first and second waveguide devices with the housing; and first and second cables coupling the first and second waveguide devices with the first plurality of antennas, and wherein the second plurality of antennas is independently rotatable. 18. The communication device of claim 17 , wherein each of the first and second waveguide devices comprises: a core including a plurality of core portions that is separable to provide access to an opening through the core; a winding around the core; and a transmitter, wherein, when the core is positioned to circumscribe the transmission medium, a current flowing through the transmission medium provides power to the transmitter via an inductive coupling that utilizes the core and the winding. 19. The communication device of claim 17 , wherein each of the first and second waveguide devices comprises a wireless transceiver for communicating directly with each other. 20. The communication device of claim 17 , wherein the first and second cables include dielectric cores.
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