IP Library › Granted Patent US 10,778,332
Granted Patent B2
US 10,778,332 · App. 16/530,528 · Granted Sep 15, 2020

Patch antenna for wave agility

Inventor: Solyman Ashrafi (Plano, TX)
Assignee: NXGEN PARTNERS IP, LLC
H04B10/2575H04B10/11H04B10/2581H04B10/50H04B10/5161H04B10/532H04B10/541H04J14/00H04L9/0858H04L9/3093H04L25/03006H04L25/03343H04L27/3405H04L27/362H04L27/366H04L63/06H04L25/00H04L2025/0335H04L2025/0342H04W12/04
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Quick Facts
Patent No.
US 10,778,332
App. No.
16/530,528
Granted
Sep 15, 2020
Kind
B2
Abstract

A system for enabling signal penetration into a building comprising first circuitry, located on an exterior of the building, for receiving signals at a first frequency that experiences losses when penetrating into an interior of the building and converting the received signals at the first frequency into a first format that overcome losses caused by penetrating into the interior of the building over a wireless communications link. A first patch antenna array associated with the first circuitry transmits the signals in the first format into the interior of the building via a wireless communications link and for receives signals from the interior of the building in the first format via the wireless communications link. Second circuitry, located on the interior of the building and communicatively linked with the first circuitry via the wireless communications link, receives and transmits the converted received signals in the first format that counteracts the losses caused by penetrating into the interior of the building from/to the first circuitry. A second patch antenna array associated with the second circuitry transmits the signals in the first format to the exterior of the building via the wireless communications link and for receives signals from the exterior of the building in the first format via the wireless communications link.

Claims (55)

1. A system for enabling signal penetration into a building, comprising:

first circuitry, located on an exterior of the building, for receiving signals at a first frequency that experiences losses when penetrating into an interior of the building and converting the received signals at the first frequency into a first format that overcome losses caused by penetrating into the interior of the building over a wireless communications link;

a first patch antenna array associated with the first circuitry for transmitting the signals in the first format into the interior of the building via a wireless communications link and for receiving signals from the interior of the building in the first format via the wireless communications link;

second circuitry, located on the interior of the building and communicatively linked with the first circuitry via the wireless communications link, for receiving and transmitting the converted received signals in the first format that counteracts the losses caused by penetrating into the interior of the building from/to the first circuitry; and

a second patch antenna array associated with the second circuitry for transmitting the signals in the first format to the exterior of the building via the wireless communications link and for receiving signals from the exterior of the building in the first format via the wireless communications link.

2. The system of claim 1 , wherein the first patch antenna array and the second patch antenna array transmit the signals in the first format as a directional radio wave beam that tunnels through the building.

3. The system of claim 1 , wherein the first patch antenna array and the second patch antenna array are configured in a first configuration to provide a first gain and a second configuration to provide a second gain.

4. The system of claim 1 , wherein the first frequency is selected from the group consisting of 5 GHz, 24 GHz, 28 GHz, 39 GHz, 60 GHz, 70 GHz, 80 GHz, cellular LTE frequencies, 3.5 GHz CBRS.

5. The system of claim 1 , wherein the first patch antenna array and the second patch antenna array comprise:

a first layer including a first plurality of patch antennas thereon; and

a second layer including a second plurality of patch antennas thereon connected to and located above the first layer.

6. The system of claim 5 , wherein each of the first plurality of patch antennas and the second plurality of patch antennas transmit a first beam having a first directionality and a first gain and further wherein the first patch antenna array and the second patch antenna array transmit a combined beam having a second directionality and a second gain responsive to the first beams from each of the plurality of first patch antennas and the second plurality of patch antennas, the second gain being greater than first gain from any of the first beams.

7. The system of claim 1 , wherein the first patch antenna array and the second patch antenna array comprises a microstrip patch antenna array.

8. The system of claim 1 further comprising a Wi-Fi router connected to the second circuitry for converting between the signals in the first format and a Wi-Fi version of the signals and for transmitting and receiving the Wi-Fi version of the signals within the interior of the building.

9. The system of claim 1 further comprising:

wherein the first circuitry further comprises a first transceiver, implementing a first transmission chipset for RF transmissions in the first format that counteracts losses occurring when penetrating into the interior of the building, for receiving the signals at the first frequency and converting the received signals at the first frequency into the first format that overcomes the losses caused by penetrating into the interior of the building; and

wherein the second circuitry further comprises a second transceiver, implementing the first transmission chipset, for receiving and transmitting the converted signals in the first format from/to the first transceiver on the outside of the building.

10. A system for enabling signal penetration into a building, comprising:

first circuitry, located on an exterior of the building, for receiving signals at a first frequency that experiences losses when penetrating into an interior of the building and converting the received signals at the first frequency into a first format that overcome losses caused by penetrating into the interior of the building;

a first patch antenna array located on the exterior of the building associated with the first circuitry for transmitting the signals in the first format into the interior of the building via a first wireless communications link;

a second patch antenna array located on the exterior of the building associated with the first circuitry for receiving signals from the interior of the building in the first format via a second wireless communications link;

second circuitry, located on the interior of the building and communicatively linked with the first circuitry via the first wireless communications link and the second wireless communications link, for receiving and transmitting the converted received signals in the first format that counteracts the losses caused by penetrating into the interior of the building from/to the first circuitry; and

a third patch antenna array located on the interior of the building associated with the second circuitry for transmitting the signals in the first format to the second patch antenna array via the second wireless communications link

a fourth patch antenna array located on the interior of the building associated with the second circuitry for receiving signals from the first patch antenna array in the first format via the first wireless communications link.

11. The system of claim 10 , wherein the first patch antenna array and the third patch antenna array transmit the signals in the first format as a directional radio wave beam that tunnels through the building.

12. The system of claim 10 , wherein the first patch antenna array and the third patch antenna array are configured in a first configuration to provide a first gain and a second configuration to provide a second gain.

13. The system of claim 10 , wherein the first frequency is selected from the group consisting of 5 GHz, 24 GHz, 28 GHz, 39 GHz, 60 GHz, 70 GHz, 80 GHz, cellular LTE frequencies, 3.5 GHz CBRS.

14. The system of claim 10 , wherein the first patch antenna array, the second patch antenna array, the third patch antenna array and the fourth patch antenna array comprise:

a first layer including a first plurality of patch antennas thereon; and

a second layer including a second plurality of patch antennas thereon connected to and located above the first layer.

15. The system of claim 14 , wherein each of the first plurality of patch antennas and the second plurality of patch antennas transmit a first beam having a first directionality and a first gain and further wherein the first patch antenna array and the third patch antenna array transmit a combined beam having a second directionality and a second gain responsive to the first beams from each of the plurality of first patch antennas and the second plurality of patch antennas, the second gain being greater than first gain from any of the first beams.

16. The system of claim 10 , wherein the first patch antenna array, the second patch antenna array, the third patch antenna array and the fourth patch antenna array comprises a microstrip patch antenna array.

17. The system of claim 10 further comprising a Wi-Fi router connected to the second circuitry for converting between the signals in the first format and a Wi-Fi version of the signals and for transmitting and receiving the Wi-Fi version of the signals within the interior of the building.

18. The system of claim 10 further comprising:

wherein the first circuitry further comprises a first transceiver, implementing a first transmission chipset for RF transmissions in the first format that counteracts losses occurring when penetrating into the interior of the building, for receiving the signals at the first frequency and converting the received signals at the first frequency into the first format that overcomes the losses caused by penetrating into the interior of the building; and

wherein the second circuitry further comprises a second transceiver, implementing the first transmission chipset, for receiving and transmitting the converted signals in the first format from/to the first transceiver on the outside of the building.

19. A system for enabling signal penetration into a building, comprising:

first circuitry, located on an exterior of the building, for receiving signals at a first frequency that experiences losses when penetrating into an interior of the building and converting the received signals at the first frequency into a first format that overcome losses caused by penetrating into the interior of the building over a wireless communications link;

a first patch antenna array associated with the first circuitry for transmitting the signals in the first format into the interior of the building via a wireless communications link and for receiving signals from the interior of the building in the first format via the wireless communications link, wherein the first patch antenna array comprises:

a first layer including a first plurality of patch antennas thereon, the first layer connected to the building; and

a second layer including a second plurality of patch antennas thereon connected to the first layer;

second circuitry, located on the interior of the building and communicatively linked with the first circuitry via the wireless communications link, for receiving and transmitting the converted received signals in the first format that counteracts the losses caused by penetrating into the interior of the building from/to the first circuitry; and

a second patch antenna array associated with the second circuitry for transmitting the signals in the first format to the exterior of the building via the wireless communications link and for receiving signals from the exterior of the building in the first format via the wireless communications link, wherein the second patch antenna array comprises:

a third layer including a third plurality of patch antennas thereon, the third layer connected to the building;

a fourth layer including a fourth plurality of patch antennas thereon connected to the third layer; and

wherein each of the first plurality of patch antennas and the second plurality of patch antennas transmit a first beam having a first directionality and a first gain and further wherein the first patch antenna array and the second patch antenna array transmit a combined beam having a second directionality and a second gain responsive to the first beams from each of the plurality of first patch antennas and the second plurality of patch antennas, the second gain being greater than first gain from any of the first beams.

20. The system of claim 19 , wherein the first patch antenna array and the second patch antenna array transmit the signals in the first format as a directional radio wave beam that tunnels through the building.

21. The system of claim 19 , wherein the first frequency is selected from the group consisting of 5 GHz, 24 GHz, 28 GHz, 39 GHz, 60 GHz, 70 GHz, 80 GHz, cellular LTE frequencies, 3.5 GHz CBRS.

22. The system of claim 19 , wherein the first patch antenna array and the second patch antenna array comprises a microstrip patch antenna array.

23. The system of claim 19 further comprising a Wi-Fi router connected to the second circuitry for converting between the signals in the first format and a Wi-Fi version of the signals and for transmitting and receiving the Wi-Fi version of the signals within the interior of the building.

24. A system for enabling signal penetration into a building, comprising:

first circuitry, located on an exterior of the building, for receiving signals at a first frequency that experiences losses when penetrating into an interior of the building and converting the received signals at the first frequency into a first format that overcome losses caused by penetrating into the interior of the building over a wireless communications link;

a first patch antenna array associated with the first circuitry for transmitting the signals in the first format into the interior of the building via a wireless communications link;

second circuitry, located on the interior of the building and communicatively linked with the first circuitry via the wireless communications link, for receiving the converted signals in the first format that counteracts the losses caused by penetrating into the interior of the building from/to the first circuitry; and

a second patch antenna array associated with the second circuitry for receiving the converted signals in the first format from the exterior of the building in the first format via the wireless communications link.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 27, 2019
From: ASHRAFI, SOLYMAN
To: NXGEN PARTNERS IP, LLC
Reel/Frame 050185/0736 →
Continuity (25)
Continuation 15926087 · Mar 20, 2018
Continuation In Part 15466320 · Mar 22, 2017
Continuation In Part 15357808 · Nov 21, 2016
Continuation 15144297 · May 2, 2016
Continuation 14323082 · Jul 3, 2014
Continuation In Part 15636142 · Jun 28, 2017
Continuation 15457444 · Mar 13, 2017
Continuation 15187315 · Jun 20, 2016
Provisional Application 62474937 · Mar 22, 2017
Provisional Application 62549314 · Aug 23, 2017
Provisional Application 62550219 · Aug 25, 2017
Provisional Application 62559286 · Sep 15, 2017
Provisional Application 62598268 · Dec 13, 2017
Provisional Application 62638555 · Mar 5, 2018
Provisional Application 62317829 · Apr 4, 2016
Provisional Application 62321245 · Apr 12, 2016
Provisional Application 62368417 · Jul 29, 2016
Provisional Application 62369393 · Aug 1, 2016
Provisional Application 62425432 · Nov 22, 2016
Provisional Application 61975142 · Apr 4, 2014
Provisional Application 62182227 · Jun 19, 2015
Provisional Application 62333838 · Sep 28, 2015
Provisional Application 62242056 · Oct 15, 2015
Provisional Application 62311633 · Mar 22, 2016
Related Publication 20190372671A1 · Dec 5, 2019
Cited By (5)
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