Intelligent umbrella and/or robotic shading system with ultra-low energy transceivers
US-10554436-B2 · Feb 4, 2020 · US
US11075457B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11075457-B2 |
| Application number | US-201816133912-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 18, 2018 |
| Priority date | Sep 18, 2018 |
| Publication date | Jul 27, 2021 |
| Grant date | Jul 27, 2021 |
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Disclosed are antenna devices, system, and method for packaging and configuring an antenna system into a first configuration and a second configuration. The antenna system may include one or more swivel plates coupling components of the antenna such that they are configured for rotation about one or more axis. Locking apparatuses for each swivel plate may be provided for locking the antenna system into a desired configuration or state. The antenna system may be configured into a first configuration and/or a first state for use and into a second configuration and/or second state for shipping, packaging and storage.
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What is claimed is: 1. A device for configuring an antenna system into each of a first configuration and a second configuration, comprising: a backing structure; a feed arm; a first swivel plate, attached to each of and positioned between the backing structure and the feed arm, configured to facilitate horizontal rotation of the feed arm into at least one of a first configuration and a second configuration, wherein the horizontal rotation arises in a plane perpendicular to a plane along which the backing structure extends upwards for a given height; a locking apparatus configured for securing the first swivel plate at each of a first angle when the antenna system is configured into the first configuration, and a second angle when the antenna system is configured into the second configuration; a second swivel plate configured to facilitate vertical rotation of the feed arm upward into a folded state and downward into an unfolded state; a second locking mechanism configured to facilitate locking of the second swivel plate in either the folded state or the unfolded state; wherein when the first swivel plate is locked in the first configuration and the second swivel plate is locked in the unfolded state, the antenna system is configured for operational use; and wherein when the first swivel plate is locked in the second configuration and the second swivel plate is locked in the folded state, the antenna system is configured for at least one of shipping, storage, and packaging in a single package. 2. The device of claim 1 , comprising: a reflector; a low-noise bandwidth converter; and wherein the reflector is attached to the backing structure; wherein the low-noise bandwidth converter is attached to the feed arm; wherein, when in the first configuration, the device is configured to at least one of send and receive radio frequency signals; and wherein, when in the first configuration, the device is configured to withstand static and dynamic loads. 3. The device of claim 2 , wherein the static and dynamic loads include wind loads up to 155 miles per hour. 4. The device of claim 2 , comprising instructions for at least one of unfolding, unpacking, assembly, and installation of the device. 5. The device of claim 1 , wherein the device includes a reflector having a reflector height, a reflector length, and a reflector width; wherein dimensions of the device in each of the first configuration and the second configuration are dominated by at least one of the reflector height and the reflector length; and wherein a width of the device in the first configuration is dominated by the reflector width. 6. A method for installing an antenna, comprising: rotating a feed arm from a second configuration into a first configuration using a first swivel plate coupling a backing structure to the feed arm; and locking the feed arm into the first configuration; second rotating the feed arm in a downward direction from a folded state and into an unfolded state; wherein a second swivel plate couples the feed arm to the backing structure and is configured to facilitate the second rotating of the feed arm from the folded state into the unfolded state; locking the second swivel plate in the unfolded state; wherein the antenna, when configured in each of the first configuration and the unfolded state, is configured for operational use; and wherein the antenna, when in the second configuration and the folded state, is configured for at least one of storage, shipping and packaging. 7. The method of claim 6 , wherein the antenna, when in locked in the first configuration, is configured to withstand static loads and dynamic loads. 8. The method of claim 6 , wherein the antenna, when in the unfolded state, is capable of withstanding static loads and dynamic loads. 9. The method of claim 8 , wherein the antenna is capable of withstanding wind loads up to 155 miles per hour. 10. The method of claim 8 , comprising: providing folding, packing, assembly, or installation instructions on the antenna. 11. The method of claim 6 , wherein the antenna includes a reflector having a reflector height, a reflector length, and a reflector width; wherein dimensions of the antenna in each of the first configuration and the second configuration is dominated by at least one of the reflector height and the reflector length; and wherein a width of the antenna in the first configuration is dominated by the reflector width.
wherein the primary active element is fixed and the reflecting device is movable · CPC title
the primary radiating source being a single radiating element, e.g. a dipole, a slot, a waveguide termination (H01Q19/15 takes precedence) · CPC title
Damping of vibrations; Means for reducing wind-induced forces · CPC title
Means for collapsing antennas or parts thereof (collapsible loop antennas H01Q7/02; means for collapsing H-antennas or Yagi antennas H01Q19/04) · CPC title
curved in two dimensions [2D], e.g. paraboloidal · CPC title
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